diff --git a/.gitignore b/.gitignore index b205806..fc124f5 100644 --- a/.gitignore +++ b/.gitignore @@ -35,6 +35,7 @@ yarn-error.log # echidna /crytic-export +fuzzTests/corpus/ #typechain types/generated/* diff --git a/contracts/BorrowerOperations.sol b/contracts/BorrowerOperations.sol index 8043271..3d78ac9 100644 --- a/contracts/BorrowerOperations.sol +++ b/contracts/BorrowerOperations.sol @@ -16,6 +16,7 @@ import "./Dependencies/console.sol"; import "./BorrowerOperationsStorage.sol"; import "./Dependencies/Mynt/MyntLib.sol"; import "./Interfaces/IPermit2.sol"; +import "./Interfaces/colfee/IExitFeeController.sol"; contract BorrowerOperations is LiquityBase, @@ -26,6 +27,37 @@ contract BorrowerOperations is /** CONSTANT / IMMUTABLE VARIABLE ONLY */ IPermit2 public immutable permit2; + // --- ColFee (exit-fee) hook --- + // No new regular storage: the controller pointer lives in an EIP-1967-style + // unstructured slot so `BorrowerOperations` storage-layout is unchanged. + bytes32 private constant EXIT_FEE_CONTROLLER_SLOT = + bytes32(uint256(keccak256("sovryn.exitFeeController")) - 1); + bytes32 private constant SURFACE_ZERO_WITHDRAW_COLL = + keccak256("COLFEE:SURFACE_ZERO_WITHDRAW_COLL"); + bytes32 private constant SURFACE_ZERO_CLAIM_SURPLUS = + keccak256("COLFEE:SURFACE_ZERO_CLAIM_SURPLUS"); + + event ExitFeeControllerSet(address indexed previous, address indexed current); + event ExitFeeApplied( + bytes32 indexed surfaceId, + address indexed actor, + address indexed asset, + address subProduct, + address recipient, + uint256 grossAmount, + uint256 feeAmount, + uint256 netAmount, + address feeReceiver + ); + event ExitFeeSkipped( + bytes32 indexed surfaceId, + address indexed actor, + address indexed asset, + uint256 grossAmount, + uint16 rateBps, + uint8 reason + ); + /* --- Variable container structs --- Used to hold, return and assign variables inside a function, in order to avoid the error: @@ -374,7 +406,16 @@ contract BorrowerOperations is ISignatureTransfer.PermitTransferFrom memory _permit, bytes calldata _signature ) external override { - _adjustNueTroveWithPermit2(0, 0, _dllrAmount, false, _upperHint, _lowerHint, _permit, _signature); + _adjustNueTroveWithPermit2( + 0, + 0, + _dllrAmount, + false, + _upperHint, + _lowerHint, + _permit, + _signature + ); } function adjustTrove( @@ -710,7 +751,10 @@ contract BorrowerOperations is _closeTrove(); } - function closeNueTroveWithPermit2(ISignatureTransfer.PermitTransferFrom memory _permit, bytes calldata _signature) external override { + function closeNueTroveWithPermit2( + ISignatureTransfer.PermitTransferFrom memory _permit, + bytes calldata _signature + ) external override { require(address(massetManager) != address(0), "Masset address not set"); uint256 debt = troveManager.getTroveDebt(msg.sender); @@ -768,16 +812,83 @@ contract BorrowerOperations is ZUSD_GAS_COMPENSATION ); - // Send the collateral back to the user - activePoolCached.sendETH(msg.sender, coll); + // Send the collateral back to the user (charging the ColFee exit fee) + _sendCollWithExitFee(activePoolCached, msg.sender, coll); } /** - * Claim remaining collateral from a redemption or from a liquidation with ICR > MCR in Recovery Mode + * Claim remaining collateral from a redemption or from a liquidation with ICR > MCR in Recovery Mode, + * charging the ColFee exit fee when the SURFACE_ZERO_CLAIM_SURPLUS policy is active. + * Fail-open like every ColFee hook: on any ColFee failure (controller missing/ + * reverting, invalid quote, fee-leg transfer failure inside the pool) the claimant + * receives the full surplus — a ColFee failure can never brick a claim. The + * non-charging path is the untouched claimColl flow (plus the ExitFeeSkipped + * event, same convention as _sendCollWithExitFee). */ function claimCollateral() external override { - // send ETH from CollSurplus Pool to owner - collSurplusPool.claimColl(msg.sender); + uint256 gross = collSurplusPool.getCollateral(msg.sender); + // Single Zero deployment: subProduct = address(0). Asset is native RBTC. + IExitFeeController.ExitFeeQuote memory q = _safeQuote( + SURFACE_ZERO_CLAIM_SURPLUS, + address(0), + msg.sender, + gross + ); + + // Defensive: a quote that charges into address(0) would burn the fee (a + // value call to a no-code address succeeds). Demote to the non-charging + // path — DISABLED is the enum's "feeReceiver == address(0)" reason. + if (q.active && q.feeAmount > 0 && q.feeReceiver == address(0)) { + q.active = false; + q.netAmount = gross; + q.reason = uint8(IExitFeeController.SkipReason.DISABLED); + } + + if (q.active && q.feeAmount > 0) { + // Two-leg split inside the pool (fee → feeReceiver, net → claimant); + // the pool's fee leg is fail-open and reports which event is truthful. + bool feePaid = collSurplusPool.claimCollWithFee( + msg.sender, + q.feeReceiver, + q.feeAmount + ); + if (feePaid) { + emit ExitFeeApplied( + SURFACE_ZERO_CLAIM_SURPLUS, + msg.sender, + address(0), + address(0), + msg.sender, + gross, + q.feeAmount, + q.netAmount, + q.feeReceiver + ); + } else { + emit ExitFeeSkipped( + SURFACE_ZERO_CLAIM_SURPLUS, + msg.sender, + address(0), + gross, + q.rateBps, + uint8(IExitFeeController.SkipReason.VAULT_REVERT) + ); + } + } else { + // !active (INACTIVE / DISABLED / INVALID_QUOTE / CONTROLLER_REVERT) + // OR active-but-zero-fee (dust / zero-rate / gross == 0 → reason NONE). + emit ExitFeeSkipped( + SURFACE_ZERO_CLAIM_SURPLUS, + msg.sender, + address(0), + gross, + q.rateBps, + q.reason + ); + // send ETH from CollSurplus Pool to owner — untouched original path + // (gross == 0 falls through to claimColl's own revert, identical to today) + collSurplusPool.claimColl(msg.sender); + } } // --- Helper functions --- @@ -804,11 +915,10 @@ contract BorrowerOperations is return usdValue; } - function _getCollChange(uint256 _collReceived, uint256 _requestedCollWithdrawal) - internal - pure - returns (uint256 collChange, bool isCollIncrease) - { + function _getCollChange( + uint256 _collReceived, + uint256 _requestedCollWithdrawal + ) internal pure returns (uint256 collChange, bool isCollIncrease) { if (_collReceived != 0) { collChange = _collReceived; isCollIncrease = true; @@ -862,8 +972,198 @@ contract BorrowerOperations is if (_isCollIncrease) { _activePoolAddColl(_activePool, _collChange); } else { - _activePool.sendETH(_borrower, _collChange); + _sendCollWithExitFee(_activePool, _borrower, _collChange); + } + } + + // --- ColFee (exit-fee) helpers --- + + /// @notice Address of the ColFee controller this instance consults. Held in + /// an EIP-1967-style unstructured slot (no regular-storage footprint). + function exitFeeController() public view returns (address ctrl) { + bytes32 slot = EXIT_FEE_CONTROLLER_SLOT; + assembly { + ctrl := sload(slot) + } + } + + /// @notice Set (or rotate) the ColFee controller this instance consults. + /// Owner-only, one call, effective for every subsequent exit. + function setExitFeeController(address ctrl) external onlyOwner { + require(ctrl != address(0), "EFC:zero"); + // A no-code controller would make the high-level quoteExitFee call + // revert with "function call to a non-contract account", which 0.6.11 + // try/catch does NOT catch — bricking borrower exits. Reject it here + // (and fail open in _safeQuote if it later becomes code-less). + checkContract(ctrl); + address prev = exitFeeController(); + bytes32 slot = EXIT_FEE_CONTROLLER_SLOT; + assembly { + sstore(slot, ctrl) + } + emit ExitFeeControllerSet(prev, ctrl); + } + + /// @dev Fail-open quote wrapper. On a missing/reverting controller or a + /// semantically invalid quote, returns a non-charging quote with + /// `netAmount == gross`. The validity gate uses subtraction only + /// (`feeAmount > gross`), never an unchecked addition, and recomputes + /// `netAmount = gross - feeAmount` so the fee + user legs always sum to + /// exactly `gross` — protecting ActivePool liquidity from a bad or + /// upgraded controller. + function _safeQuote( + bytes32 surfaceId, + address subProduct, + address actor, + uint256 gross + ) private view returns (IExitFeeController.ExitFeeQuote memory q) { + address ctrl = exitFeeController(); + // Fail open on a missing OR code-less controller. The address(0) check + // alone is not enough: a high-level call to any no-code address (EOA, + // or a controller that self-destructed after being set) reverts with + // "function call to a non-contract account", which 0.6.11 try/catch + // does NOT catch — so guard on extcodesize before the call. + uint256 ctrlSize; + assembly { + ctrlSize := extcodesize(ctrl) + } + if (ctrl == address(0) || ctrlSize == 0) { + q.netAmount = gross; + q.reason = uint8(IExitFeeController.SkipReason.CONTROLLER_REVERT); + return q; + } + try IExitFeeController(ctrl).quoteExitFee(surfaceId, subProduct, actor, gross) returns ( + IExitFeeController.ExitFeeQuote memory got + ) { + // Pool conservation is the consumer's own concern: it holds exactly `gross` + // wei to distribute, so it must never be asked to pay out more. A + // feeAmount > gross would underflow the net recompute below (bricking the + // exit) and a fee leg > gross could draw OTHER troves' collateral out of + // ActivePool. Rate, receiver, and fee policy are the configured + // controller's responsibility — not re-validated here. + if (got.feeAmount > gross) { + // Override only the verdict; leave the controller's raw feeAmount / + // rateBps / feeReceiver intact (active=false gates charging downstream). + got.active = false; + got.netAmount = gross; // non-charging shape: net == gross + got.reason = uint8(IExitFeeController.SkipReason.INVALID_QUOTE); + return got; + } + got.netAmount = gross - got.feeAmount; // fee + net == gross (no residue) + return got; + } catch { + q.netAmount = gross; + q.reason = uint8(IExitFeeController.SkipReason.CONTROLLER_REVERT); + } + } + + /// @dev Settle a borrower collateral payout, charging the ColFee exit fee + /// when the resolved policy is active. The fee leg uses `try/catch` + /// (0.6.11 native) so a fee-receiver failure never bricks the exit; on + /// any non-charging path the full `gross` is sent to the borrower via + /// the existing fail-closed `sendETH`. ActivePool's recorded ETH + /// decrements by exactly `gross` either way (the reverted fee-leg + /// subcall rolls back its `ETH.sub`). + function _sendCollWithExitFee( + IActivePool _activePool, + address borrower, + uint256 gross + ) private { + // Debt-only adjustments (repay / debt-decrease) reach here with gross == 0: + // no collateral leaves the pool, so there is nothing to settle. Skip the + // controller round-trip and the ColFee event. (Baseline called + // sendETH(borrower, 0) here — a value-less no-op that only emitted + // EtherSent(_, 0) / ActivePoolETHBalanceUpdated; we drop that redundant + // transfer, so debt-only ops emit fewer events than pre-ColFee.) + if (gross == 0) { + return; + } + + // Single Zero deployment: subProduct = address(0). Asset is native RBTC. + IExitFeeController.ExitFeeQuote memory q = _safeQuote( + SURFACE_ZERO_WITHDRAW_COLL, + address(0), + borrower, + gross + ); + + if (q.active && q.feeAmount > 0) { + try _activePool.sendETH(q.feeReceiver, q.feeAmount) { + _activePool.sendETH(borrower, q.netAmount); // user leg: existing fail-closed behavior + // Emit only after BOTH legs settle, so an ExitFeeApplied event always + // implies a completed borrower payout (truthful by construction). + emit ExitFeeApplied( + SURFACE_ZERO_WITHDRAW_COLL, + borrower, + address(0), + address(0), + borrower, + gross, + q.feeAmount, + q.netAmount, + q.feeReceiver + ); + return; + } catch { + emit ExitFeeSkipped( + SURFACE_ZERO_WITHDRAW_COLL, + borrower, + address(0), + gross, + q.rateBps, + uint8(IExitFeeController.SkipReason.VAULT_REVERT) + ); + } + } else { + // !active (INACTIVE / DISABLED / INVALID_QUOTE / CONTROLLER_REVERT) + // OR active-but-zero-fee (dust / zero-rate policy → q.reason == NONE). + emit ExitFeeSkipped( + SURFACE_ZERO_WITHDRAW_COLL, + borrower, + address(0), + gross, + q.rateBps, + q.reason + ); } + _activePool.sendETH(borrower, gross); // full-gross fallback (any non-charging path) + } + + /// @notice Read-only preview of the ColFee exit fee on a Zero borrower collateral + /// payout of `grossColl` for `borrower`. Hard-wired to + /// SURFACE_ZERO_WITHDRAW_COLL / subProduct=address(0) / actor=borrower, and + /// routes through the same `_safeQuote` the live hook uses — so the synthesized + /// fail-open quote on controller failure matches execution wei-for-wise. The + /// caller passes `grossColl` (computed from trove state); this is a thin policy + /// lookup, not a re-derivation of the per-function gross. + /// @return rateBps resolved rate (0 when not charging / fail-open) + /// @return feeAmount fee that would be taken (0 unless active && rateBps>0 && not dust) + /// @return netAmount amount the borrower would receive (== grossColl when not charging) + /// @return feeReceiver fee destination from the quote + /// @return active resolved policy active flag (the "will charge" test is active && feeAmount>0) + /// @return reason SkipReason (NONE on an honest/charging quote) + function previewZeroCollWithdrawExitFee( + address borrower, + uint256 grossColl + ) + external + view + returns ( + uint16 rateBps, + uint256 feeAmount, + uint256 netAmount, + address feeReceiver, + bool active, + uint8 reason + ) + { + IExitFeeController.ExitFeeQuote memory q = _safeQuote( + SURFACE_ZERO_WITHDRAW_COLL, + address(0), + borrower, + grossColl + ); + return (q.rateBps, q.feeAmount, q.netAmount, q.feeReceiver, q.active, q.reason); } /// Send ETH to Active Pool and increase its recorded ETH balance @@ -911,10 +1211,10 @@ contract BorrowerOperations is ); } - function _requireNonZeroAdjustment(uint256 _collWithdrawal, uint256 _ZUSDChange) - internal - view - { + function _requireNonZeroAdjustment( + uint256 _collWithdrawal, + uint256 _ZUSDChange + ) internal view { require( msg.value != 0 || _collWithdrawal != 0 || _ZUSDChange != 0, "BorrowerOps: There must be either a collateral change or a debt change" @@ -926,10 +1226,10 @@ contract BorrowerOperations is require(status == 1, "BorrowerOps: Trove does not exist or is closed"); } - function _requireTroveisNotActive(ITroveManager _troveManager, address _borrower) - internal - view - { + function _requireTroveisNotActive( + ITroveManager _troveManager, + address _borrower + ) internal view { uint256 status = _troveManager.getTroveStatus(_borrower); require(status != 1, "BorrowerOps: Trove is active"); } @@ -1026,10 +1326,10 @@ contract BorrowerOperations is ); } - function _requireValidZUSDRepayment(uint256 _currentDebt, uint256 _debtRepayment) - internal - pure - { + function _requireValidZUSDRepayment( + uint256 _currentDebt, + uint256 _debtRepayment + ) internal pure { require( _debtRepayment <= _currentDebt.sub(ZUSD_GAS_COMPENSATION), "BorrowerOps: Amount repaid must not be larger than the Trove's debt" @@ -1051,10 +1351,10 @@ contract BorrowerOperations is ); } - function _requireValidMaxFeePercentage(uint256 _maxFeePercentage, bool _isRecoveryMode) - internal - view - { + function _requireValidMaxFeePercentage( + uint256 _maxFeePercentage, + bool _isRecoveryMode + ) internal view { if (_isRecoveryMode) { require( _maxFeePercentage <= DECIMAL_PRECISION, diff --git a/contracts/CollSurplusPool.sol b/contracts/CollSurplusPool.sol index 2d93c09..954d2d1 100644 --- a/contracts/CollSurplusPool.sol +++ b/contracts/CollSurplusPool.sol @@ -75,6 +75,48 @@ contract CollSurplusPool is CollSurplusPoolStorage, CheckContract, ICollSurplusP require(success, "CollSurplusPool: sending ETH failed"); } + /// @dev Gas forwarded to the fee receiver's receive hook. Ample for a receiver + /// that only accepts the transfer and logs, while guaranteeing a + /// gas-sinking receiver can never starve the claimant leg: a receiver + /// needing more gas makes the fee leg fail, which is fail-open — the + /// claimant then receives the full balance. + uint256 private constant FEE_LEG_GAS_CAP = 100_000; + + /// @notice Two-leg claim: `_feeAmount` to `_feeReceiver`, remainder to `_account`. + /// Only callable by BorrowerOperations (the ColFee surplus-claim hook); + /// `claimColl` remains the untouched non-charging path. + /// CEI: all effects (balance zeroing, ETH accounting) precede both external + /// calls, so a reentrant claim sees balances == 0 and reverts. The single + /// `ETH` decrement equals fee + net exactly. The fee leg is fail-open — + /// if it fails, the claimant receives the full balance; the user leg stays + /// fail-closed like `claimColl`. + /// @return feePaid true iff the fee transfer succeeded (caller emits the matching event) + function claimCollWithFee( + address _account, + address _feeReceiver, + uint256 _feeAmount + ) external override returns (bool feePaid) { + _requireCallerIsBorrowerOperations(); + uint256 claimableColl = balances[_account]; + require(claimableColl > 0, "CollSurplusPool: No collateral available to claim"); + require(_feeAmount <= claimableColl, "CollSurplusPool: fee exceeds claimable"); + + balances[_account] = 0; + emit CollBalanceUpdated(_account, 0); + + ETH = ETH.sub(claimableColl); + + (feePaid, ) = _feeReceiver.call{ value: _feeAmount, gas: FEE_LEG_GAS_CAP }(""); + uint256 userAmount = feePaid ? claimableColl.sub(_feeAmount) : claimableColl; + if (feePaid) { + emit EtherSent(_feeReceiver, _feeAmount); + } + + emit EtherSent(_account, userAmount); + (bool success, ) = _account.call{ value: userAmount }(""); + require(success, "CollSurplusPool: sending ETH failed"); + } + // --- 'require' functions --- function _requireCallerIsBorrowerOperations() internal view { diff --git a/contracts/Interfaces/ICollSurplusPool.sol b/contracts/Interfaces/ICollSurplusPool.sol index c917a83..d5fd30d 100644 --- a/contracts/Interfaces/ICollSurplusPool.sol +++ b/contracts/Interfaces/ICollSurplusPool.sol @@ -43,4 +43,18 @@ interface ICollSurplusPool { /// @notice claims collateral for given account. Only callable by BorrowerOperations. /// @param _account account to send claimable collateral function claimColl(address _account) external; + + /// @notice Two-leg claim: `_feeAmount` to `_feeReceiver`, remainder to `_account`. + /// Only callable by BorrowerOperations (the ColFee surplus-claim hook). + /// The fee leg is fail-open: if the fee transfer fails, `_account` + /// receives the full claimable balance. + /// @param _account account whose claimable collateral is paid out + /// @param _feeReceiver ColFee fee destination for the fee leg + /// @param _feeAmount fee in wei; must not exceed the account's claimable balance + /// @return feePaid true iff the fee transfer succeeded (caller emits the matching event) + function claimCollWithFee( + address _account, + address _feeReceiver, + uint256 _feeAmount + ) external returns (bool feePaid); } diff --git a/contracts/Interfaces/colfee/IExitFeeController.sol b/contracts/Interfaces/colfee/IExitFeeController.sol new file mode 100644 index 0000000..24927d9 --- /dev/null +++ b/contracts/Interfaces/colfee/IExitFeeController.sol @@ -0,0 +1,160 @@ +// SPDX-License-Identifier: MIT +// ───────────────────────────────────────────────────────────────────────────── +// Vendored copy of the ColFee exit-fee controller interface, taken from +// DistributedCollective/colfee @ c85f60aef91bc644517cf1b3ea7c5e8c565f4ca5 +// src/interfaces/IExitFeeController.sol +// Do not change the declarations here: the binding property is ABI equality with +// the deployed controller. To pick up an interface change, change it upstream, +// re-copy, and bump the SHA above. Local formatting follows this repo's +// formatter, so the file is not byte-identical to the upstream source. +// ───────────────────────────────────────────────────────────────────────────── +// Range pragma is intentional: the same declarations are compiled under Solidity +// 0.5.17, 0.6.11 (this repo), and 0.8.20. +// aderyn-ignore-next-line(unspecific-solidity-pragma) +pragma solidity >=0.5.17 <0.9.0; +// `pragma experimental ABIEncoderV2;` is required for the 0.5.17 leg — that +// compiler needs the directive to emit/decode struct returns (ExitFeeQuote) +// across the ABI boundary. The modern `pragma abicoder v2;` was only added +// in 0.7.4 and is incompatible with 0.5.x, so the experimental pragma is the +// only spelling that works across all three target compilers. On 0.6+/0.8+ +// the experimental pragma is accepted (silently on 0.6.x; with a deprecation +// notice on 0.8.x that does NOT enable the historical encoder bugs — those +// bugs were fixed long before 0.6.0). This is a pure interface (no +// implementation, no storage), so there is no exposure to encoder-bug +// surface area beyond the ABI itself. Removing it would require a separate +// file per pragma, reintroducing declaration drift between the consumers. +// aderyn-ignore-next-line(experimental-encoder) +pragma experimental ABIEncoderV2; + +/// @title IExitFeeController +/// @notice Cross-pragma interface for the Sovryn ExitFee (ColFee) controller. +/// One declaration shared by every consumer so they all resolve the +/// same ABI. Products compiled under a pragma this file cannot span +/// declare their own ABI-equivalent variant instead. +/// Zero calls only `quoteExitFee`; the rest is declared for completeness. +interface IExitFeeController { + // ─── Types ──────────────────────────────────────────────────────────── + + /// @notice Reason a `ColFeeSkipped` event was emitted instead of an + /// `ColFeeApplied`. NONE covers honest paths (positive charge, + /// dust, or actor-exemption); the rest cover off-state outcomes. + enum SkipReason { + NONE, // Controller computed an honest quote (charge / dust / zero-rate). + INACTIVE, // exitFeeEnabled == false. + DISABLED, // feeReceiver == address(0), OR surface gate off. + INVALID_QUOTE, // Defensive: overflow or fee > gross. + CONTROLLER_REVERT, // Set by the product's local _safeQuote on staticcall failure. + VAULT_REVERT // Set by the product hook when the fee transfer itself failed. + } + + /// @notice A single rate-policy entry. Lives at each of the three tiers + /// (actor → sub-product → surface). + struct RatePolicy { + bool active; + uint16 rateBps; + } + + /// @notice Quote returned by `quoteExitFee`. `reason` carries the precise + /// off-state code; `active` is the resolved policy state (true iff + /// a RatePolicy.active entry was used and reason ∈ {NONE}). + struct ExitFeeQuote { + bool active; + uint16 rateBps; + uint256 feeAmount; + uint256 netAmount; + address feeReceiver; + uint8 reason; + } + + // ─── Events ─────────────────────────────────────────────────────────── + + event ExitFeeEnabledSet(bool enabled); + event FeeReceiverSet(address indexed feeReceiver); + event SurfacePolicySet(bytes32 indexed surfaceId, bool active, uint16 rateBps); + event SubProductPolicySet( + bytes32 indexed surfaceId, + address indexed subProduct, + bool active, + uint16 rateBps + ); + event ActorPolicySet( + bytes32 indexed surfaceId, + address indexed actor, + bool active, + uint16 rateBps + ); + event SubProductPolicyRemoved(bytes32 indexed surfaceId, address indexed subProduct); + event ActorPolicyRemoved(bytes32 indexed surfaceId, address indexed actor); + + // ─── Quote ──────────────────────────────────────────────────────────── + + /// @notice Resolve the fee policy for `(surfaceId, subProduct, actor)` and + /// compute the fee on `grossAmount`. Reads only; never reverts on + /// policy lookups (returns active=false with a SkipReason instead). + /// May revert only on internal arithmetic invariants (caught by + /// the product's local _safeQuote helper as CONTROLLER_REVERT). + function quoteExitFee( + bytes32 surfaceId, + address subProduct, + address actor, + uint256 grossAmount + ) external view returns (ExitFeeQuote memory); + + // ─── State views ────────────────────────────────────────────────────── + + function exitFeeEnabled() external view returns (bool); + + function feeReceiver() external view returns (address); + + function surfacePolicy(bytes32 surfaceId) external view returns (RatePolicy memory); + + function subProductPolicy( + bytes32 surfaceId, + address subProduct + ) external view returns (RatePolicy memory); + + function actorPolicy( + bytes32 surfaceId, + address actor + ) external view returns (RatePolicy memory); + + function subProductKeys(bytes32 surfaceId) external view returns (address[] memory); + + function actorKeys(bytes32 surfaceId) external view returns (address[] memory); + + // ─── Admin ──────────────────────────────────────────────────────────── + + function setExitFeeEnabled(bool enabled) external; + + function setFeeReceiver(address newReceiver) external; + + function setSurfacePolicy(bytes32 surfaceId, RatePolicy calldata policy) external; + + function setSubProductPolicy( + bytes32 surfaceId, + address subProduct, + RatePolicy calldata policy + ) external; + + function setSubProductPolicies( + bytes32 surfaceId, + address[] calldata subProducts, + RatePolicy[] calldata policies + ) external; + + function setActorPolicy(bytes32 surfaceId, address actor, RatePolicy calldata policy) external; + + function setActorPolicies( + bytes32 surfaceId, + address[] calldata actors, + RatePolicy[] calldata policies + ) external; + + function removeSubProductPolicy(bytes32 surfaceId, address subProduct) external; + + function removeSubProductPolicies(bytes32 surfaceId, address[] calldata subProducts) external; + + function removeActorPolicy(bytes32 surfaceId, address actor) external; + + function removeActorPolicies(bytes32 surfaceId, address[] calldata actors) external; +} diff --git a/contracts/TestContracts/EchidnaColFeeTester.sol b/contracts/TestContracts/EchidnaColFeeTester.sol new file mode 100644 index 0000000..bd4ce01 --- /dev/null +++ b/contracts/TestContracts/EchidnaColFeeTester.sol @@ -0,0 +1,133 @@ +// SPDX-License-Identifier: MIT + +pragma solidity 0.6.11; +pragma experimental ABIEncoderV2; + +import "./EchidnaTester.sol"; +import "./ExitFeeControllerMock.sol"; + +/// @title EchidnaColFeeTester +/// @notice Re-runs the full Zero Echidna campaign with the ColFee exit fee +/// ACTIVE, so every collateral exit driven by the actor proxies routes +/// through the fee hook (`_sendCollWithExitFee`) with a real fee leg. +/// +/// The ColFee load-bearing invariant is the inherited +/// `echidna_ETH_balances`: +/// - `borrowerOperations` holds 0 ETH — the fee leg never strands ETH +/// in BorrowerOperations; +/// - each pool's real balance == its internal `getETH()` accounting — +/// the fee leg's `ActivePool.sendETH` keeps balance and accounting +/// in sync, so no ETH is created, destroyed, or double-counted by +/// the fee. +/// A fee-leg accounting bug breaks it. The two added invariants below +/// guard that the run is genuinely exercising ColFee (not vacuous) and +/// that ETH reaches the fee receiver only through the accounted leg. +/// +/// Note: the inherited `echidna_canary_*` properties are Liquity's +/// coverage markers and are EXPECTED to be falsified once the actors +/// open troves / fund the pool — that is their purpose, not a ColFee +/// failure. The meaningful result is that `echidna_ETH_balances`, +/// `echidna_trove_properties`, `echidna_troves_order`, +/// `echidna_ZUSD_global_balances`, and the two `echidna_colfee_*` +/// invariants below HOLD with the fee active. +/// +/// Run (from repo root, project/hardhat mode so the CryptoEnv-wrapped +/// compile resolves — the single-file form needs a bare `solc` on PATH): +/// __decryptionAlreadyDone__=TRUE echidna . \ +/// --contract EchidnaColFeeTester \ +/// --config fuzzTests/js/echidna_config.yaml +contract EchidnaColFeeTester is EchidnaTester { + // Canonical deterministic Permit2 deployment address. Permit2 is not on any + // ColFee path, so a fixed (codeless-in-VM) address is inert here; pinning it + // lets Echidna deploy this tester with NO constructor arguments. + address internal constant PERMIT2 = 0x000000000022D473030F116dDEE9F6B43aC78BA3; + + ExitFeeControllerMock public exitFeeCtrl; + ColFeeEchidnaSink public feeSink; + + constructor() public payable EchidnaTester(PERMIT2) { + feeSink = new ColFeeEchidnaSink(); + exitFeeCtrl = new ExitFeeControllerMock(); + // Active policy: 1% (100 bps) of the borrower's gross collateral, paid + // to a sink that accepts ETH (so the fee leg settles, exercising the + // ExitFeeApplied path rather than only the VAULT_REVERT fallback). + exitFeeCtrl.configure(true, 100, address(feeSink), 0); + // owner == this tester (Zero's setAddresses does not renounce). + borrowerOperations.setExitFeeController(address(exitFeeCtrl)); + } + + /// Guards against a vacuous run: the controller stays pinned and active, so + /// the inherited invariants are genuinely exercised WITH the fee in the loop. + function echidna_colfee_controller_pinned() public view returns (bool) { + return borrowerOperations.exitFeeController() == address(exitFeeCtrl); + } + + /// ETH only reaches the fee receiver via the accounted fee leg: the sink's + /// real balance equals the total it recorded receiving. (Combined with the + /// inherited pool `balance == getETH()` invariant, this closes the loop on + /// fee-leg value conservation.) + function echidna_colfee_sink_synced() public view returns (bool) { + return address(feeSink).balance == feeSink.totalReceived(); + } + + function exerciseColFeeExt() external { + EchidnaProxy echidnaProxy = echidnaProxies[0]; + if (troveManager.getTroveDebt(address(echidnaProxy)) == 0) { + openTroveExt(0, 1e23, 1e21); + } + + uint amount = getAdjustedCollWithdrawal(address(echidnaProxy), 1e18); + if (amount > 0) { + echidnaProxy.withdrawCollPrx(amount, address(0), address(0)); + } + } + + /// Canary: EXPECTED to be falsified once any exit charges a fee. If this + /// stays passing, the campaign never exercised ColFee. + function echidna_canary_colfee_charged() public view returns (bool) { + return feeSink.totalReceived() == 0; + } + + /// Fund a collateral surplus for an actor and claim it through the real + /// BorrowerOperations hook with the fee ACTIVE. The tester owns the pool and + /// Zero's setAddresses is re-callable, so it impersonates TroveManager and + /// ActivePool for one atomic funding step (accountSurplus + backing ETH), + /// restores the real wiring, then claims — exercising both the charging + /// two-leg split (fee >= 1 wei at 100 bps needs amount >= 100) and, for dust + /// amounts, the untouched claimColl fallback. + function fundAndClaimSurplusExt(uint _i, uint _amount) external { + EchidnaProxy echidnaProxy = echidnaProxies[_i % 100]; // 100 == NUMBER_OF_ACTORS (private in base) + uint amount = 1 + (_amount % 1e21); // 1 wei .. 1000 ETH; tester balance is ample + if (address(this).balance < amount) { + return; + } + + collSurplusPool.setAddresses(address(borrowerOperations), address(this), address(this)); + collSurplusPool.accountSurplus(address(echidnaProxy), amount); + (bool funded, ) = address(collSurplusPool).call{ value: amount }(""); + require(funded); + collSurplusPool.setAddresses( + address(borrowerOperations), + address(troveManager), + address(activePool) + ); + + echidnaProxy.claimCollateralPrx(); + } + + /// CollSurplusPool conservation under the two-leg split: raw balance always + /// equals the recorded ETH accounting (mirrors the inherited per-pool checks + /// in echidna_ETH_balances, which predates ColFee and does not cover this pool). + function echidna_colfee_surplus_pool_synced() public view returns (bool) { + return address(collSurplusPool).balance == collSurplusPool.getETH(); + } +} + +/// Minimal payable fee receiver that records what it is paid. +contract ColFeeEchidnaSink { + uint256 public totalReceived; + + receive() external payable { + totalReceived += msg.value; + } +} diff --git a/contracts/TestContracts/EchidnaHarnessStubs.sol b/contracts/TestContracts/EchidnaHarnessStubs.sol new file mode 100644 index 0000000..04eb60a --- /dev/null +++ b/contracts/TestContracts/EchidnaHarnessStubs.sol @@ -0,0 +1,40 @@ +// SPDX-License-Identifier: MIT + +pragma solidity 0.6.11; + +/// @title Echidna harness stubs +/// @notice Inert stand-ins for the peripheral contracts the core `setAddresses` +/// calls now `checkContract`, but which the fuzzed trove/SP lifecycle +/// only ever stores (zero token / staking) or calls in a way that is +/// value-neutral (fee distributor, community issuance). They exist so +/// the full system deploys; they deliberately do nothing so the +/// inherited Liquity invariants keep holding under the fuzzer. + +/// Fee distributor: the borrowing-fee leg mints ZUSD here and the redemption +/// leg sends RBTC here (via `ActivePool.sendETH`, a `call` that requires +/// success) before invoking `distributeFees`. Leaving the value parked is +/// exactly what `echidna_ZUSD_global_balances` expects (ZUSD at external +/// addresses) and is invisible to `echidna_ETH_balances` (not a checked pool). +contract EchidnaFeeDistributorStub { + function distributeFees() external {} + + receive() external payable {} +} + +/// Community issuance: `StabilityPool` calls `issueSOV` on every +/// deposit/withdraw/offset and `sendSOV` to pay gains. Returning 0 issuance +/// makes `_updateG` early-return, so no SOV gain ever accrues — value-neutral +/// for the ZUSD/ETH invariants. +contract EchidnaCommunityIssuanceStub { + function issueSOV(uint256) external returns (uint256) { + return 0; + } + + function sendSOV(address, uint256) external {} +} + +/// ZERO token / staking: only `checkContract`-ed at wiring time and stored; +/// never called on the fuzzed path, so bytecode presence is all that is needed. +contract EchidnaInertStub { + +} diff --git a/contracts/TestContracts/EchidnaProxy.sol b/contracts/TestContracts/EchidnaProxy.sol index 4cd4094..134e364 100644 --- a/contracts/TestContracts/EchidnaProxy.sol +++ b/contracts/TestContracts/EchidnaProxy.sol @@ -52,23 +52,42 @@ contract EchidnaProxy { uint _maxIterations, uint _maxFee ) external { - troveManager.redeemCollateral(_ZUSDAmount, _firstRedemptionHint, _upperPartialRedemptionHint, _lowerPartialRedemptionHint, _partialRedemptionHintNICR, _maxIterations, _maxFee); + troveManager.redeemCollateral( + _ZUSDAmount, + _firstRedemptionHint, + _upperPartialRedemptionHint, + _lowerPartialRedemptionHint, + _partialRedemptionHintNICR, + _maxIterations, + _maxFee + ); } // Borrower Operations - function openTrovePrx(uint _ETH, uint _ZUSDAmount, address _upperHint, address _lowerHint, uint _maxFee) external payable { - borrowerOperations.openTrove{value: _ETH}(_maxFee, _ZUSDAmount, _upperHint, _lowerHint); + function openTrovePrx( + uint _ETH, + uint _ZUSDAmount, + address _upperHint, + address _lowerHint, + uint _maxFee + ) external payable { + borrowerOperations.openTrove{ value: _ETH }(_maxFee, _ZUSDAmount, _upperHint, _lowerHint); } function addCollPrx(uint _ETH, address _upperHint, address _lowerHint) external payable { - borrowerOperations.addColl{value: _ETH}(_upperHint, _lowerHint); + borrowerOperations.addColl{ value: _ETH }(_upperHint, _lowerHint); } function withdrawCollPrx(uint _amount, address _upperHint, address _lowerHint) external { borrowerOperations.withdrawColl(_amount, _upperHint, _lowerHint); } - function withdrawZUSDPrx(uint _amount, address _upperHint, address _lowerHint, uint _maxFee) external { + function withdrawZUSDPrx( + uint _amount, + address _upperHint, + address _lowerHint, + uint _maxFee + ) external { borrowerOperations.withdrawZUSD(_maxFee, _amount, _upperHint, _lowerHint); } @@ -80,8 +99,27 @@ contract EchidnaProxy { borrowerOperations.closeTrove(); } - function adjustTrovePrx(uint _ETH, uint _collWithdrawal, uint _debtChange, bool _isDebtIncrease, address _upperHint, address _lowerHint, uint _maxFee) external payable { - borrowerOperations.adjustTrove{value: _ETH}(_maxFee, _collWithdrawal, _debtChange, _isDebtIncrease, _upperHint, _lowerHint); + function claimCollateralPrx() external { + borrowerOperations.claimCollateral(); + } + + function adjustTrovePrx( + uint _ETH, + uint _collWithdrawal, + uint _debtChange, + bool _isDebtIncrease, + address _upperHint, + address _lowerHint, + uint _maxFee + ) external payable { + borrowerOperations.adjustTrove{ value: _ETH }( + _maxFee, + _collWithdrawal, + _debtChange, + _isDebtIncrease, + _upperHint, + _lowerHint + ); } // Pool Manager @@ -103,7 +141,11 @@ contract EchidnaProxy { return zusdToken.approve(spender, amount); } - function transferFromPrx(address sender, address recipient, uint256 amount) external returns (bool) { + function transferFromPrx( + address sender, + address recipient, + uint256 amount + ) external returns (bool) { return zusdToken.transferFrom(sender, recipient, amount); } @@ -111,7 +153,10 @@ contract EchidnaProxy { return zusdToken.increaseAllowance(spender, addedValue); } - function decreaseAllowancePrx(address spender, uint256 subtractedValue) external returns (bool) { + function decreaseAllowancePrx( + address spender, + uint256 subtractedValue + ) external returns (bool) { return zusdToken.decreaseAllowance(spender, subtractedValue); } } diff --git a/contracts/TestContracts/EchidnaTester.sol b/contracts/TestContracts/EchidnaTester.sol index 38cbaae..ed94914 100644 --- a/contracts/TestContracts/EchidnaTester.sol +++ b/contracts/TestContracts/EchidnaTester.sol @@ -18,6 +18,7 @@ import "../ZUSDToken.sol"; import "./PriceFeedTestnet.sol"; import "../SortedTroves.sol"; import "./EchidnaProxy.sol"; +import "./EchidnaHarnessStubs.sol"; //import "../Dependencies/console.sol"; @@ -53,6 +54,7 @@ contract EchidnaTester { constructor(address _permit2) public payable { liquityBaseParams = new LiquityBaseParams(); + liquityBaseParams.initialize(); // sets MCR (110%) / CCR (150%) troveManagerRedeemOps = new TroveManagerRedeemOps(14 * 86400, _permit2); troveManager = new TroveManager(14 days, _permit2); borrowerOperations = new BorrowerOperations(_permit2); @@ -72,9 +74,16 @@ contract EchidnaTester { sortedTroves = new SortedTroves(); + // Inert peripherals so the core `setAddresses` `checkContract` passes; + // value-neutral under the fuzzer (see EchidnaHarnessStubs.sol). + address feeDistributor = address(new EchidnaFeeDistributorStub()); + address communityIssuance = address(new EchidnaCommunityIssuanceStub()); + address zeroToken = address(new EchidnaInertStub()); + address zeroStaking = address(new EchidnaInertStub()); + troveManager.setAddresses( ITroveManager.TroveManagerInitAddressesParams( - address(0), + feeDistributor, address(troveManagerRedeemOps), address(liquityBaseParams), address(borrowerOperations), @@ -86,13 +95,13 @@ contract EchidnaTester { address(priceFeedTestnet), address(zusdToken), address(sortedTroves), - address(0), - address(0) + zeroToken, + zeroStaking ) ); borrowerOperations.setAddresses( - address(0), + feeDistributor, address(liquityBaseParams), address(troveManager), address(activePool), @@ -103,7 +112,7 @@ contract EchidnaTester { address(priceFeedTestnet), address(sortedTroves), address(zusdToken), - address(0) + zeroStaking ); activePool.setAddresses( @@ -123,7 +132,7 @@ contract EchidnaTester { address(zusdToken), address(sortedTroves), address(priceFeedTestnet), - address(0) + communityIssuance ); collSurplusPool.setAddresses( @@ -219,16 +228,73 @@ contract EchidnaTester { return ZUSDAmount; } + function getMinCollForRatio(uint debt, uint ratio, uint price) internal pure returns (uint) { + if (price == 0 || debt > uint(-1).div(ratio)) { + return uint(-1); + } + + uint minColl = debt.mul(ratio).div(price); + if (minColl == uint(-1)) { + return uint(-1); + } + return minColl.add(1); + } + + function getAdjustedCollWithdrawal( + address borrower, + uint _amount + ) internal view returns (uint) { + uint price = priceFeedTestnet.getPrice(); + if (price == 0 || troveManager.checkRecoveryMode(price)) { + return 0; + } + + uint debt = troveManager.getTroveDebt(borrower); + uint coll = troveManager.getTroveColl(borrower); + if (debt == 0 || coll == 0) { + return 0; + } + + uint minBorrowerColl = getMinCollForRatio(debt, CCR, price); + if (coll <= minBorrowerColl) { + return 0; + } + + uint maxWithdrawal = coll.sub(minBorrowerColl); + uint systemDebt = activePool.getZUSDDebt().add(defaultPool.getZUSDDebt()); + uint systemColl = activePool.getETH().add(defaultPool.getETH()); + uint minSystemColl = getMinCollForRatio(systemDebt, CCR, price); + if (systemColl <= minSystemColl) { + return 0; + } + + uint systemRoom = systemColl.sub(minSystemColl); + if (maxWithdrawal > systemRoom) { + maxWithdrawal = systemRoom; + } + if (maxWithdrawal == 0) { + return 0; + } + + uint minWithdrawal = 100; // 1% fee rounds to at least 1 wei. + if (maxWithdrawal < minWithdrawal) { + return 0; + } + return minWithdrawal + (_amount % (maxWithdrawal.sub(minWithdrawal).add(1))); + } + function openTroveExt(uint _i, uint _ETH, uint _ZUSDAmount) public payable { uint actor = _i % NUMBER_OF_ACTORS; EchidnaProxy echidnaProxy = echidnaProxies[actor]; uint actorBalance = address(echidnaProxy).balance; - // we pass in CCR instead of MCR in case it’s the first one - uint ETH = getAdjustedETH(actorBalance, _ETH, CCR); - uint ZUSDAmount = getAdjustedZUSD(ETH, _ZUSDAmount, CCR); + // Keep convenience opens comfortably above CCR so collateral-exit + // wrappers have room to exercise withdrawal paths. + uint openRatio = CCR.mul(2); + uint ETH = getAdjustedETH(actorBalance, _ETH, openRatio); + uint ZUSDAmount = getAdjustedZUSD(ETH, _ZUSDAmount, openRatio); - echidnaProxy.openTrovePrx(ETH, ZUSDAmount, address(0), address(0), 0); + echidnaProxy.openTrovePrx(ETH, ZUSDAmount, address(0), address(0), 1e18); numberOfTroves = troveManager.getTroveOwnersCount(); assert(numberOfTroves > 0); @@ -245,7 +311,8 @@ contract EchidnaTester { uint _maxFee ) public payable { uint actor = _i % NUMBER_OF_ACTORS; - echidnaProxies[actor].openTrovePrx(_ETH, _ZUSDAmount, _upperHint, _lowerHint, _maxFee); + uint maxFee = _clampMaxFee(_maxFee); + echidnaProxies[actor].openTrovePrx(_ETH, _ZUSDAmount, _upperHint, _lowerHint, maxFee); } function addCollExt(uint _i, uint _ETH) external payable { @@ -275,7 +342,12 @@ contract EchidnaTester { address _lowerHint ) external { uint actor = _i % NUMBER_OF_ACTORS; - echidnaProxies[actor].withdrawCollPrx(_amount, _upperHint, _lowerHint); + EchidnaProxy echidnaProxy = echidnaProxies[actor]; + uint amount = getAdjustedCollWithdrawal(address(echidnaProxy), _amount); + if (amount == 0) { + return; + } + echidnaProxy.withdrawCollPrx(amount, _upperHint, _lowerHint); } function withdrawZUSDExt( @@ -286,7 +358,8 @@ contract EchidnaTester { uint _maxFee ) external { uint actor = _i % NUMBER_OF_ACTORS; - echidnaProxies[actor].withdrawZUSDPrx(_amount, _upperHint, _lowerHint, _maxFee); + uint maxFee = _clampMaxFee(_maxFee); + echidnaProxies[actor].withdrawZUSDPrx(_amount, _upperHint, _lowerHint, maxFee); } function repayZUSDExt(uint _i, uint _amount, address _upperHint, address _lowerHint) external { @@ -324,7 +397,7 @@ contract EchidnaTester { _isDebtIncrease, address(0), address(0), - 0 + 1e18 ); } @@ -339,6 +412,7 @@ contract EchidnaTester { uint _maxFee ) external payable { uint actor = _i % NUMBER_OF_ACTORS; + uint maxFee = _clampMaxFee(_maxFee); echidnaProxies[actor].adjustTrovePrx( _ETH, _collWithdrawal, @@ -346,7 +420,7 @@ contract EchidnaTester { _isDebtIncrease, _upperHint, _lowerHint, - _maxFee + maxFee ); } @@ -405,10 +479,21 @@ contract EchidnaTester { // PriceFeed function setPriceExt(uint256 _price) external { + if (_price == 0) { + _price = 1; + } bool result = priceFeedTestnet.setPrice(_price); assert(result); } + function _clampMaxFee(uint _maxFee) internal pure returns (uint) { + uint maxFee = _maxFee % (1e18 + 1); + if (maxFee < 5e15) { + maxFee = 5e15; + } + return maxFee; + } + // -------------------------- // Invariants and properties // -------------------------- @@ -535,6 +620,10 @@ contract EchidnaTester { // Total ZUSD matches function echidna_ZUSD_global_balances() public view returns (bool) { uint totalSupply = zusdToken.totalSupply(); + if (totalSupply == 0) { + return true; + } + uint gasPoolBalance = zusdToken.balanceOf(address(gasPool)); uint activePoolBalance = activePool.getZUSDDebt(); diff --git a/contracts/TestContracts/ExitFeeControllerMock.sol b/contracts/TestContracts/ExitFeeControllerMock.sol new file mode 100644 index 0000000..a825a19 --- /dev/null +++ b/contracts/TestContracts/ExitFeeControllerMock.sol @@ -0,0 +1,81 @@ +// SPDX-License-Identifier: MIT +pragma solidity 0.6.11; +pragma experimental ABIEncoderV2; + +import "../Interfaces/colfee/IExitFeeController.sol"; + +/// @title ExitFeeControllerMock +/// @notice Test double for the ColFee controller. NOT production code — lives in +/// TestContracts/ only. The production controller is Solidity 0.8.20 and +/// cannot be compiled into the 0.6.11 zero-contracts workspace, so the +/// hooks are exercised against this configurable stand-in. +/// +/// Only `quoteExitFee` is implemented (the single selector the product +/// hook calls). It deliberately does NOT inherit `IExitFeeController` so +/// we avoid stubbing the full admin/view surface; the selector + ABI of +/// `quoteExitFee` match, which is all `IExitFeeController(ctrl).quoteExitFee` +/// needs at the call site. +contract ExitFeeControllerMock { + bool public doRevert; // when true, quoteExitFee reverts → exercises CONTROLLER_REVERT fail-open + bool public activeFlag; + uint16 public rateBps; + address public feeReceiverAddr; + uint8 public reasonCode; + + // Optional override so tests can return a deliberately malformed quote + // (e.g. feeAmount > gross) to exercise the INVALID_QUOTE guard. + bool public overrideAmounts; + uint256 public forcedFeeAmount; + uint256 public forcedNetAmount; + + function configure( + bool _active, + uint16 _rateBps, + address _feeReceiver, + uint8 _reason + ) external { + activeFlag = _active; + rateBps = _rateBps; + feeReceiverAddr = _feeReceiver; + reasonCode = _reason; + } + + function setRevert(bool _v) external { + doRevert = _v; + } + + /// @dev Simulate a controller that becomes code-less after being wired in + /// (e.g. a self-destructed/destroyed proxy) to exercise the product's + /// _safeQuote extcodesize fail-open guard. + function destroy() external { + selfdestruct(msg.sender); + } + + function setForcedAmounts(bool _on, uint256 _fee, uint256 _net) external { + overrideAmounts = _on; + forcedFeeAmount = _fee; + forcedNetAmount = _net; + } + + function quoteExitFee( + bytes32, + address, + address, + uint256 gross + ) external view returns (IExitFeeController.ExitFeeQuote memory q) { + require(!doRevert, "EFCMock: forced revert"); + q.active = activeFlag; + q.rateBps = rateBps; + q.feeReceiver = feeReceiverAddr; + q.reason = reasonCode; + if (overrideAmounts) { + q.feeAmount = forcedFeeAmount; + q.netAmount = forcedNetAmount; + } else if (activeFlag) { + q.feeAmount = (gross * uint256(rateBps)) / 10000; + q.netAmount = gross - q.feeAmount; + } else { + q.netAmount = gross; + } + } +} diff --git a/contracts/TestContracts/GasSinkFeeReceiver.sol b/contracts/TestContracts/GasSinkFeeReceiver.sol new file mode 100644 index 0000000..6066a78 --- /dev/null +++ b/contracts/TestContracts/GasSinkFeeReceiver.sol @@ -0,0 +1,25 @@ +// SPDX-License-Identifier: MIT +pragma solidity 0.6.11; + +/// @notice ColFee test double: a fee receiver that burns essentially all the +/// gas forwarded to it. consumeAll=false → burns down to a small floor +/// then RETURNS SUCCESS (the starvation shape: without the pool's +/// FEE_LEG_GAS_CAP this would leave the claimant leg out of gas); +/// consumeAll=true → burns until it OOGs (fee leg fails → fail-open). +contract GasSinkFeeReceiver { + bool public consumeAll; + uint256 public totalReceived; + + function setConsumeAll(bool _v) external { + consumeAll = _v; + } + + receive() external payable { + totalReceived += msg.value; + uint256 floor = consumeAll ? 0 : 5000; + bytes32 h; + while (gasleft() > floor) { + h = keccak256(abi.encode(h)); + } + } +} diff --git a/contracts/TestContracts/LegacyCollSurplusPoolMock.sol b/contracts/TestContracts/LegacyCollSurplusPoolMock.sol new file mode 100644 index 0000000..ce64ff2 --- /dev/null +++ b/contracts/TestContracts/LegacyCollSurplusPoolMock.sol @@ -0,0 +1,42 @@ +// SPDX-License-Identifier: MIT +pragma solidity 0.6.11; + +/// @notice ColFee test double simulating the LIVE (pre-upgrade) CollSurplusPool +/// implementation: `claimColl` exists but `claimCollWithFee` does NOT, +/// and there is no fallback — so the hook's pool call reverts on the +/// missing selector, reproducing the surface-activated-before-pool- +/// upgrade ordering hazard. Deliberately does not implement +/// ICollSurplusPool (which now declares claimCollWithFee). +contract LegacyCollSurplusPoolMock { + address public borrowerOperationsAddress; + uint256 internal ETH; + mapping(address => uint256) internal balances; + + function setBO(address _bo) external { + borrowerOperationsAddress = _bo; + } + + /// Test-only funding shortcut (the real pool is fed via TroveManager/ActivePool). + function setSurplus(address _account) external payable { + balances[_account] = balances[_account] + msg.value; + ETH = ETH + msg.value; + } + + function getETH() external view returns (uint256) { + return ETH; + } + + function getCollateral(address _account) external view returns (uint256) { + return balances[_account]; + } + + function claimColl(address _account) external { + require(msg.sender == borrowerOperationsAddress, "Legacy: caller is not BO"); + uint256 claimableColl = balances[_account]; + require(claimableColl > 0, "CollSurplusPool: No collateral available to claim"); + balances[_account] = 0; + ETH = ETH - claimableColl; + (bool success, ) = _account.call{ value: claimableColl }(""); + require(success, "CollSurplusPool: sending ETH failed"); + } +} diff --git a/contracts/TestContracts/ReentrantSurplusClaimer.sol b/contracts/TestContracts/ReentrantSurplusClaimer.sol new file mode 100644 index 0000000..07cefea --- /dev/null +++ b/contracts/TestContracts/ReentrantSurplusClaimer.sol @@ -0,0 +1,51 @@ +// SPDX-License-Identifier: MIT + +pragma solidity 0.6.11; + +import "../Interfaces/IBorrowerOperations.sol"; + +/// @notice Test attacker: attempts to re-enter BorrowerOperations.claimCollateral() +/// from its receive() while the surplus payout is in flight. CEI in +/// CollSurplusPool zeroes the balance before paying, so the reentrant +/// claim must hit "No collateral available to claim"; the attacker +/// swallows that revert (recording it) so the outer claim completes. +contract ReentrantSurplusClaimer { + IBorrowerOperations public borrowerOperations; + bool public reentryAttempted; + bool public reentrySucceeded; + uint256 public totalReceived; + + constructor(IBorrowerOperations _borrowerOperations) public { + borrowerOperations = _borrowerOperations; + } + + /// Open a trove owned by this contract (so a full redemption parks its + /// surplus here and claimCollateral() pays out to this receive()). + function openTrove( + uint256 _maxFee, + uint256 _zusdAmount, + address _upperHint, + address _lowerHint + ) external payable { + borrowerOperations.openTrove{ value: msg.value }( + _maxFee, + _zusdAmount, + _upperHint, + _lowerHint + ); + } + + function claim() external { + borrowerOperations.claimCollateral(); + } + + receive() external payable { + totalReceived += msg.value; + if (!reentryAttempted) { + reentryAttempted = true; + try borrowerOperations.claimCollateral() { + reentrySucceeded = true; + } catch {} + } + } +} diff --git a/deployment/deploy/8-CollSurplusPool.ts b/deployment/deploy/8-CollSurplusPool.ts new file mode 100644 index 0000000..093b25e --- /dev/null +++ b/deployment/deploy/8-CollSurplusPool.ts @@ -0,0 +1,18 @@ +import { DeployFunction } from "hardhat-deploy/types"; +import { deployWithCustomProxy } from "../../scripts/helpers/helpers"; +import { getContractNameFromScriptFileName } from "../../scripts/helpers/utils"; +const path = require("path"); +const deploymentName = getContractNameFromScriptFileName(path.basename(__filename)); + +const func: DeployFunction = async (hre) => { + const { getNamedAccounts } = hre; + const { deployer } = await getNamedAccounts(); + + // CollSurplusPool has no constructor args: its wiring lives in proxy storage + // (set once via setAddresses), so the implementation deploys bare and the + // existing proxy keeps its state across the upgrade. + await deployWithCustomProxy(hre, deployer, deploymentName, "UpgradableProxy"); +}; + +func.tags = [deploymentName]; +export default func; diff --git a/deployment/deployments/rskSovrynMainnet/BorrowerOperations.json b/deployment/deployments/rskSovrynMainnet/BorrowerOperations.json index a87695b..b2c2af6 100644 --- a/deployment/deployments/rskSovrynMainnet/BorrowerOperations.json +++ b/deployment/deployments/rskSovrynMainnet/BorrowerOperations.json @@ -1,104 +1,6 @@ { "address": "0x5B9dB4B8bdeF3e57323187a9AC2639C5DEe5FD39", "abi": [ - { - "anonymous": false, - "inputs": [ - { - "indexed": true, - "internalType": "address", - "name": "_oldImplementation", - "type": "address" - }, - { - "indexed": true, - "internalType": "address", - "name": "_newImplementation", - "type": "address" - } - ], - "name": "ImplementationChanged", - "type": "event" - }, - { - "anonymous": false, - "inputs": [ - { - "indexed": true, - "internalType": "address", - "name": "previousOwner", - "type": "address" - }, - { - "indexed": true, - "internalType": "address", - "name": "newOwner", - "type": "address" - } - ], - "name": "OwnershipTransferred", - "type": "event" - }, - { - "stateMutability": "payable", - "type": "fallback" - }, - { - "inputs": [], - "name": "getImplementation", - "outputs": [ - { - "internalType": "address", - "name": "_implementation", - "type": "address" - } - ], - "stateMutability": "view", - "type": "function" - }, - { - "inputs": [], - "name": "getOwner", - "outputs": [ - { - "internalType": "address", - "name": "_owner", - "type": "address" - } - ], - "stateMutability": "view", - "type": "function" - }, - { - "inputs": [ - { - "internalType": "address", - "name": "_implementation", - "type": "address" - } - ], - "name": "setImplementation", - "outputs": [], - "stateMutability": "nonpayable", - "type": "function" - }, - { - "inputs": [ - { - "internalType": "address", - "name": "_owner", - "type": "address" - } - ], - "name": "setOwner", - "outputs": [], - "stateMutability": "nonpayable", - "type": "function" - }, - { - "stateMutability": "payable", - "type": "receive" - }, { "inputs": [ { @@ -149,6 +51,129 @@ "name": "DefaultPoolAddressChanged", "type": "event" }, + { + "anonymous": false, + "inputs": [ + { + "indexed": true, + "internalType": "bytes32", + "name": "surfaceId", + "type": "bytes32" + }, + { + "indexed": true, + "internalType": "address", + "name": "actor", + "type": "address" + }, + { + "indexed": true, + "internalType": "address", + "name": "asset", + "type": "address" + }, + { + "indexed": false, + "internalType": "address", + "name": "subProduct", + "type": "address" + }, + { + "indexed": false, + "internalType": "address", + "name": "recipient", + "type": "address" + }, + { + "indexed": false, + "internalType": "uint256", + "name": "grossAmount", + "type": "uint256" + }, + { + "indexed": false, + "internalType": "uint256", + "name": "feeAmount", + "type": "uint256" + }, + { + "indexed": false, + "internalType": "uint256", + "name": "netAmount", + "type": "uint256" + }, + { + "indexed": false, + "internalType": "address", + "name": "feeReceiver", + "type": "address" + } + ], + "name": "ExitFeeApplied", + "type": "event" + }, + { + "anonymous": false, + "inputs": [ + { + "indexed": true, + "internalType": "address", + "name": "previous", + "type": "address" + }, + { + "indexed": true, + "internalType": "address", + "name": "current", + "type": "address" + } + ], + "name": "ExitFeeControllerSet", + "type": "event" + }, + { + "anonymous": false, + "inputs": [ + { + "indexed": true, + "internalType": "bytes32", + "name": "surfaceId", + "type": "bytes32" + }, + { + "indexed": true, + "internalType": "address", + "name": "actor", + "type": "address" + }, + { + "indexed": true, + "internalType": "address", + "name": "asset", + "type": "address" + }, + { + "indexed": false, + "internalType": "uint256", + "name": "grossAmount", + "type": "uint256" + }, + { + "indexed": false, + "internalType": "uint16", + "name": "rateBps", + "type": "uint16" + }, + { + "indexed": false, + "internalType": "uint8", + "name": "reason", + "type": "uint8" + } + ], + "name": "ExitFeeSkipped", + "type": "event" + }, { "anonymous": false, "inputs": [ @@ -758,6 +783,19 @@ "stateMutability": "view", "type": "function" }, + { + "inputs": [], + "name": "exitFeeController", + "outputs": [ + { + "internalType": "address", + "name": "ctrl", + "type": "address" + } + ], + "stateMutability": "view", + "type": "function" + }, { "inputs": [], "name": "feeDistributor", @@ -960,6 +998,55 @@ "stateMutability": "view", "type": "function" }, + { + "inputs": [ + { + "internalType": "address", + "name": "borrower", + "type": "address" + }, + { + "internalType": "uint256", + "name": "grossColl", + "type": "uint256" + } + ], + "name": "previewZeroCollWithdrawExitFee", + "outputs": [ + { + "internalType": "uint16", + "name": "rateBps", + "type": "uint16" + }, + { + "internalType": "uint256", + "name": "feeAmount", + "type": "uint256" + }, + { + "internalType": "uint256", + "name": "netAmount", + "type": "uint256" + }, + { + "internalType": "address", + "name": "feeReceiver", + "type": "address" + }, + { + "internalType": "bool", + "name": "active", + "type": "bool" + }, + { + "internalType": "uint8", + "name": "reason", + "type": "uint8" + } + ], + "stateMutability": "view", + "type": "function" + }, { "inputs": [], "name": "priceFeed", @@ -1176,6 +1263,19 @@ "stateMutability": "nonpayable", "type": "function" }, + { + "inputs": [ + { + "internalType": "address", + "name": "ctrl", + "type": "address" + } + ], + "name": "setExitFeeController", + "outputs": [], + "stateMutability": "nonpayable", + "type": "function" + }, { "inputs": [ { @@ -1353,39 +1453,39 @@ "type": "function" } ], - "transactionHash": "0x1b90ac7d6d78e1a74dabce6d43c24e65d9115924499ec7ed309ea54d6806e93e", + "transactionHash": "0x81ab90ba6b5342c236659d7bd4a804d5c48733acaf13d48787be07b61f3f7368", "receipt": { "to": null, - "from": "0x13Be55487D37FE3C66EE7305e1e9C1ac85de75Ae", - "contractAddress": "0x330ad35d02b52b6f132C3C31730Dd8F79Cb58b7E", + "from": "0x163463B7DdBCE853832037A059f5c5E6606bF9c4", + "contractAddress": "0xcD22ba4b3ED7D7297b40Dcd26d982634A0207885", "transactionIndex": 0, - "gasUsed": "5799498", - "logsBloom": "0x00000800000020000000000000000000000000000000000000800000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000001000000000000000000000000000000000000020000000000000000001800000000000000000000000000000000400000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000040000000000000000000000000000000000000000000010000000000000000000020000000000000000000000000001000000000000000000000000000000000000000", - "blockHash": "0x7de331c1815635488605d3e00b15a43084f7a6002e2ddf43d01f2c61ae10f888", - "transactionHash": "0x1b90ac7d6d78e1a74dabce6d43c24e65d9115924499ec7ed309ea54d6806e93e", + "gasUsed": "5247354", + "logsBloom": "0x00000000000000000200000000000000000000000000000000800000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000001000000000000000000000000000000000000020000000000000000000800000000000000000000000000000000400000000000000000000000000000000000000000000040000000000000000000000000000000000000000000000000000000000000000000000000000020000000000000000000000000000000020000000000000000000000000000000020000000000000000001000000000000000000000000000000000000000080000000", + "blockHash": "0x0ffc13660924915ef9650afc5cba2a0b01176eacffa256090001a0308540d63e", + "transactionHash": "0x81ab90ba6b5342c236659d7bd4a804d5c48733acaf13d48787be07b61f3f7368", "logs": [ { "transactionIndex": 0, - "blockNumber": 4748936, - "transactionHash": 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+ "implementation": "0xcD22ba4b3ED7D7297b40Dcd26d982634A0207885" } \ No newline at end of file diff --git a/deployment/deployments/rskSovrynMainnet/BorrowerOperations_Implementation.json b/deployment/deployments/rskSovrynMainnet/BorrowerOperations_Implementation.json index 2fa082b..83e6148 100644 --- a/deployment/deployments/rskSovrynMainnet/BorrowerOperations_Implementation.json +++ b/deployment/deployments/rskSovrynMainnet/BorrowerOperations_Implementation.json @@ -1,5 +1,5 @@ { - "address": "0xD603B4c5F7BF13a2AA510F2c625546dB4138D330", + "address": "0xcD22ba4b3ED7D7297b40Dcd26d982634A0207885", "abi": [ { "inputs": [ @@ -51,6 +51,129 @@ "name": "DefaultPoolAddressChanged", "type": "event" }, + { + "anonymous": false, + "inputs": [ + { + "indexed": true, + "internalType": "bytes32", + "name": "surfaceId", + "type": "bytes32" + }, + { + "indexed": true, + "internalType": "address", + "name": "actor", + "type": "address" + }, + { + "indexed": true, + "internalType": "address", + "name": "asset", + "type": "address" + }, + { + "indexed": false, + "internalType": "address", + "name": "subProduct", + "type": "address" + }, + { + "indexed": false, + "internalType": "address", + "name": "recipient", + "type": "address" + }, + { + "indexed": false, + "internalType": "uint256", + "name": "grossAmount", + "type": "uint256" + }, + { + "indexed": false, + "internalType": "uint256", + "name": "feeAmount", + "type": "uint256" + }, + { + "indexed": false, + "internalType": "uint256", + "name": "netAmount", + "type": "uint256" + }, + { + "indexed": false, + "internalType": "address", + "name": "feeReceiver", + "type": "address" + } + ], + "name": "ExitFeeApplied", + "type": "event" + }, + { + "anonymous": false, + "inputs": [ + { + "indexed": true, + "internalType": "address", + "name": "previous", + "type": "address" + }, + { + "indexed": true, + "internalType": "address", + "name": "current", + "type": "address" + } + ], + "name": "ExitFeeControllerSet", + "type": "event" + }, + { + "anonymous": false, + "inputs": [ + { + "indexed": true, + "internalType": "bytes32", + "name": "surfaceId", + "type": "bytes32" + }, + { + "indexed": true, + "internalType": "address", + "name": "actor", + "type": "address" + }, + { + "indexed": true, + "internalType": "address", + "name": "asset", + "type": "address" + }, + { + "indexed": false, + "internalType": "uint256", + "name": "grossAmount", + "type": "uint256" + }, + { + "indexed": false, + "internalType": "uint16", + "name": "rateBps", + "type": "uint16" + }, + { + "indexed": false, + "internalType": "uint8", + "name": "reason", + "type": "uint8" + } + ], + "name": "ExitFeeSkipped", + "type": "event" + }, { "anonymous": false, "inputs": [ @@ -660,6 +783,19 @@ "stateMutability": "view", "type": "function" }, + { + "inputs": [], + "name": "exitFeeController", + "outputs": [ + { + "internalType": "address", + "name": "ctrl", + "type": "address" + } + ], + "stateMutability": "view", + "type": "function" + }, { "inputs": [], "name": "feeDistributor", @@ -862,6 +998,55 @@ "stateMutability": "view", "type": "function" }, + { + "inputs": [ + { + "internalType": "address", + "name": "borrower", + "type": "address" + }, + { + "internalType": "uint256", + "name": "grossColl", + "type": "uint256" + } + ], + "name": "previewZeroCollWithdrawExitFee", + "outputs": [ + { + "internalType": "uint16", + "name": "rateBps", + "type": "uint16" + }, + { + "internalType": "uint256", + "name": "feeAmount", + "type": "uint256" + }, + { + "internalType": "uint256", + "name": "netAmount", + "type": "uint256" + }, + { + "internalType": "address", + "name": "feeReceiver", + "type": "address" + }, + { + "internalType": "bool", + "name": "active", + "type": "bool" + }, + { + "internalType": "uint8", + "name": "reason", + "type": "uint8" + } + ], + "stateMutability": "view", + "type": "function" + }, { "inputs": [], "name": "priceFeed", @@ -1078,6 +1263,19 @@ "stateMutability": "nonpayable", "type": "function" }, + { + "inputs": [ + { + "internalType": "address", + "name": "ctrl", + "type": "address" + } + ], + "name": "setExitFeeController", + "outputs": [], + "stateMutability": "nonpayable", + "type": "function" + }, { "inputs": [ { @@ -1255,45 +1453,45 @@ "type": "function" } ], - "transactionHash": "0x1b90ac7d6d78e1a74dabce6d43c24e65d9115924499ec7ed309ea54d6806e93e", + "transactionHash": "0x81ab90ba6b5342c236659d7bd4a804d5c48733acaf13d48787be07b61f3f7368", "receipt": { "to": null, - "from": "0x13Be55487D37FE3C66EE7305e1e9C1ac85de75Ae", - "contractAddress": "0x330ad35d02b52b6f132C3C31730Dd8F79Cb58b7E", + "from": "0x163463B7DdBCE853832037A059f5c5E6606bF9c4", + "contractAddress": "0xcD22ba4b3ED7D7297b40Dcd26d982634A0207885", "transactionIndex": 0, - "gasUsed": "5799498", - "logsBloom": "0x00000800000020000000000000000000000000000000000000800000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000001000000000000000000000000000000000000020000000000000000001800000000000000000000000000000000400000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000040000000000000000000000000000000000000000000010000000000000000000020000000000000000000000000001000000000000000000000000000000000000000", - "blockHash": "0x7de331c1815635488605d3e00b15a43084f7a6002e2ddf43d01f2c61ae10f888", - "transactionHash": "0x1b90ac7d6d78e1a74dabce6d43c24e65d9115924499ec7ed309ea54d6806e93e", + "gasUsed": "5247354", + "logsBloom": "0x00000000000000000200000000000000000000000000000000800000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000001000000000000000000000000000000000000020000000000000000000800000000000000000000000000000000400000000000000000000000000000000000000000000040000000000000000000000000000000000000000000000000000000000000000000000000000020000000000000000000000000000000020000000000000000000000000000000020000000000000000001000000000000000000000000000000000000000080000000", + "blockHash": "0x0ffc13660924915ef9650afc5cba2a0b01176eacffa256090001a0308540d63e", + "transactionHash": "0x81ab90ba6b5342c236659d7bd4a804d5c48733acaf13d48787be07b61f3f7368", "logs": [ { "transactionIndex": 0, - "blockNumber": 4748936, - "transactionHash": "0x1b90ac7d6d78e1a74dabce6d43c24e65d9115924499ec7ed309ea54d6806e93e", - "address": "0x330ad35d02b52b6f132C3C31730Dd8F79Cb58b7E", + "blockNumber": 9147309, + "transactionHash": "0x81ab90ba6b5342c236659d7bd4a804d5c48733acaf13d48787be07b61f3f7368", + "address": "0xcD22ba4b3ED7D7297b40Dcd26d982634A0207885", "topics": [ "0x8be0079c531659141344cd1fd0a4f28419497f9722a3daafe3b4186f6b6457e0", "0x0000000000000000000000000000000000000000000000000000000000000000", - "0x00000000000000000000000013be55487d37fe3c66ee7305e1e9c1ac85de75ae" + "0x000000000000000000000000163463b7ddbce853832037a059f5c5e6606bf9c4" ], "data": "0x", "logIndex": 0, - "blockHash": "0x7de331c1815635488605d3e00b15a43084f7a6002e2ddf43d01f2c61ae10f888" + "blockHash": "0x0ffc13660924915ef9650afc5cba2a0b01176eacffa256090001a0308540d63e" } ], - "blockNumber": 4748936, - "cumulativeGasUsed": "5799498", + "blockNumber": 9147309, + "cumulativeGasUsed": "5247354", "status": 1, "byzantium": true }, "args": [ "0x000000000022d473030f116ddee9f6b43ac78ba3" ], - "numDeployments": 3, - "solcInputHash": "849fadfa265e27de6fba2f2d99bdf763", - "metadata": "{\"compiler\":{\"version\":\"0.6.11+commit.5ef660b1\"},\"language\":\"Solidity\",\"output\":{\"abi\":[{\"inputs\":[{\"internalType\":\"address\",\"name\":\"_permit2\",\"type\":\"address\"}],\"stateMutability\":\"nonpayable\",\"type\":\"constructor\"},{\"anonymous\":false,\"inputs\":[{\"indexed\":false,\"internalType\":\"address\",\"name\":\"_activePoolAddress\",\"type\":\"address\"}],\"name\":\"ActivePoolAddressChanged\",\"type\":\"event\"},{\"anonymous\":false,\"inputs\":[{\"indexed\":false,\"internalType\":\"address\",\"name\":\"_collSurplusPoolAddress\",\"type\":\"address\"}],\"name\":\"CollSurplusPoolAddressChanged\",\"type\":\"event\"},{\"anonymous\":false,\"inputs\":[{\"indexed\":false,\"internalType\":\"address\",\"name\":\"_defaultPoolAddress\",\"type\":\"address\"}],\"name\":\"DefaultPoolAddressChanged\",\"type\":\"event\"},{\"anonymous\":false,\"inputs\":[{\"indexed\":false,\"internalType\":\"address\",\"name\":\"_feeDistributorAddress\",\"type\":\"address\"}],\"name\":\"FeeDistributorAddressChanged\",\"type\":\"event\"},{\"anonymous\":false,\"inputs\":[{\"indexed\":false,\"internalType\":\"address\",\"name\":\"_gasPoolAddress\",\"type\":\"address\"}],\"name\":\"GasPoolAddressChanged\",\"type\":\"event\"},{\"anonymous\":false,\"inputs\":[{\"indexed\":false,\"internalType\":\"address\",\"name\":\"_massetManagerAddress\",\"type\":\"address\"}],\"name\":\"MassetManagerAddressChanged\",\"type\":\"event\"},{\"anonymous\":false,\"inputs\":[{\"indexed\":true,\"internalType\":\"address\",\"name\":\"previousOwner\",\"type\":\"address\"},{\"indexed\":true,\"internalType\":\"address\",\"name\":\"newOwner\",\"type\":\"address\"}],\"name\":\"OwnershipTransferred\",\"type\":\"event\"},{\"anonymous\":false,\"inputs\":[{\"indexed\":false,\"internalType\":\"address\",\"name\":\"_newPriceFeedAddress\",\"type\":\"address\"}],\"name\":\"PriceFeedAddressChanged\",\"type\":\"event\"},{\"anonymous\":false,\"inputs\":[{\"indexed\":false,\"internalType\":\"address\",\"name\":\"_sortedTrovesAddress\",\"type\":\"address\"}],\"name\":\"SortedTrovesAddressChanged\",\"type\":\"event\"},{\"anonymous\":false,\"inputs\":[{\"indexed\":false,\"internalType\":\"address\",\"name\":\"_stabilityPoolAddress\",\"type\":\"address\"}],\"name\":\"StabilityPoolAddressChanged\",\"type\":\"event\"},{\"anonymous\":false,\"inputs\":[{\"indexed\":true,\"internalType\":\"address\",\"name\":\"_borrower\",\"type\":\"address\"},{\"indexed\":false,\"internalType\":\"uint256\",\"name\":\"arrayIndex\",\"type\":\"uint256\"}],\"name\":\"TroveCreated\",\"type\":\"event\"},{\"anonymous\":false,\"inputs\":[{\"indexed\":false,\"internalType\":\"address\",\"name\":\"_newTroveManagerAddress\",\"type\":\"address\"}],\"name\":\"TroveManagerAddressChanged\",\"type\":\"event\"},{\"anonymous\":false,\"inputs\":[{\"indexed\":true,\"internalType\":\"address\",\"name\":\"_borrower\",\"type\":\"address\"},{\"indexed\":false,\"internalType\":\"uint256\",\"name\":\"_debt\",\"type\":\"uint256\"},{\"indexed\":false,\"internalType\":\"uint256\",\"name\":\"_coll\",\"type\":\"uint256\"},{\"indexed\":false,\"internalType\":\"uint256\",\"name\":\"stake\",\"type\":\"uint256\"},{\"indexed\":false,\"internalType\":\"enum 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ISignatureTransfer.TokenPermissions\",\"name\":\"permitted\",\"type\":\"tuple\"},{\"internalType\":\"uint256\",\"name\":\"nonce\",\"type\":\"uint256\"},{\"internalType\":\"uint256\",\"name\":\"deadline\",\"type\":\"uint256\"}],\"internalType\":\"struct 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ISignatureTransfer.PermitTransferFrom\",\"name\":\"_permit\",\"type\":\"tuple\"},{\"internalType\":\"bytes\",\"name\":\"_signature\",\"type\":\"bytes\"}],\"name\":\"closeNueTroveWithPermit2\",\"outputs\":[],\"stateMutability\":\"nonpayable\",\"type\":\"function\"},{\"inputs\":[],\"name\":\"closeTrove\",\"outputs\":[],\"stateMutability\":\"nonpayable\",\"type\":\"function\"},{\"inputs\":[],\"name\":\"defaultPool\",\"outputs\":[{\"internalType\":\"contract IDefaultPool\",\"name\":\"\",\"type\":\"address\"}],\"stateMutability\":\"view\",\"type\":\"function\"},{\"inputs\":[],\"name\":\"feeDistributor\",\"outputs\":[{\"internalType\":\"contract 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IMassetManager.PermitParams\",\"name\":\"_permitParams\",\"type\":\"tuple\"}],\"name\":\"repayZusdFromDLLR\",\"outputs\":[],\"stateMutability\":\"nonpayable\",\"type\":\"function\"},{\"inputs\":[{\"internalType\":\"uint256\",\"name\":\"_dllrAmount\",\"type\":\"uint256\"},{\"internalType\":\"address\",\"name\":\"_upperHint\",\"type\":\"address\"},{\"internalType\":\"address\",\"name\":\"_lowerHint\",\"type\":\"address\"},{\"components\":[{\"components\":[{\"internalType\":\"address\",\"name\":\"token\",\"type\":\"address\"},{\"internalType\":\"uint256\",\"name\":\"amount\",\"type\":\"uint256\"}],\"internalType\":\"struct ISignatureTransfer.TokenPermissions\",\"name\":\"permitted\",\"type\":\"tuple\"},{\"internalType\":\"uint256\",\"name\":\"nonce\",\"type\":\"uint256\"},{\"internalType\":\"uint256\",\"name\":\"deadline\",\"type\":\"uint256\"}],\"internalType\":\"struct ISignatureTransfer.PermitTransferFrom\",\"name\":\"_permit\",\"type\":\"tuple\"},{\"internalType\":\"bytes\",\"name\":\"_signature\",\"type\":\"bytes\"}],\"name\":\"repayZusdFromDLLRWithPermit2\",\"outputs\":[],\"stateMutability\":\"nonpayable\",\"type\":\"function\"},{\"inputs\":[{\"internalType\":\"address\",\"name\":\"_feeDistributorAddress\",\"type\":\"address\"},{\"internalType\":\"address\",\"name\":\"_liquityBaseParamsAddress\",\"type\":\"address\"},{\"internalType\":\"address\",\"name\":\"_troveManagerAddress\",\"type\":\"address\"},{\"internalType\":\"address\",\"name\":\"_activePoolAddress\",\"type\":\"address\"},{\"internalType\":\"address\",\"name\":\"_defaultPoolAddress\",\"type\":\"address\"},{\"internalType\":\"address\",\"name\":\"_stabilityPoolAddress\",\"type\":\"address\"},{\"internalType\":\"address\",\"name\":\"_gasPoolAddress\",\"type\":\"address\"},{\"internalType\":\"address\",\"name\":\"_collSurplusPoolAddress\",\"type\":\"address\"},{\"internalType\":\"address\",\"name\":\"_priceFeedAddress\",\"type\":\"address\"},{\"internalType\":\"address\",\"name\":\"_sortedTrovesAddress\",\"type\":\"address\"},{\"internalType\":\"address\",\"name\":\"_zusdTokenAddress\",\"type\":\"address\"},{\"internalType\":\"address\",\"name\":\"_zeroStakingAddress\",\"type\":\"address\"}],\"name\":\"setAddresses\",\"outputs\":[],\"stateMutability\":\"nonpayable\",\"type\":\"function\"},{\"inputs\":[{\"internalType\":\"address\",\"name\":\"_massetManagerAddress\",\"type\":\"address\"}],\"name\":\"setMassetManagerAddress\",\"outputs\":[],\"stateMutability\":\"nonpayable\",\"type\":\"function\"},{\"inputs\":[{\"internalType\":\"address\",\"name\":\"_owner\",\"type\":\"address\"}],\"name\":\"setOwner\",\"outputs\":[],\"stateMutability\":\"nonpayable\",\"type\":\"function\"},{\"inputs\":[],\"name\":\"sortedTroves\",\"outputs\":[{\"internalType\":\"contract 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ITroveManager\",\"name\":\"\",\"type\":\"address\"}],\"stateMutability\":\"view\",\"type\":\"function\"},{\"inputs\":[{\"internalType\":\"uint256\",\"name\":\"_collWithdrawal\",\"type\":\"uint256\"},{\"internalType\":\"address\",\"name\":\"_upperHint\",\"type\":\"address\"},{\"internalType\":\"address\",\"name\":\"_lowerHint\",\"type\":\"address\"}],\"name\":\"withdrawColl\",\"outputs\":[],\"stateMutability\":\"nonpayable\",\"type\":\"function\"},{\"inputs\":[{\"internalType\":\"uint256\",\"name\":\"_maxFeePercentage\",\"type\":\"uint256\"},{\"internalType\":\"uint256\",\"name\":\"_ZUSDAmount\",\"type\":\"uint256\"},{\"internalType\":\"address\",\"name\":\"_upperHint\",\"type\":\"address\"},{\"internalType\":\"address\",\"name\":\"_lowerHint\",\"type\":\"address\"}],\"name\":\"withdrawZUSD\",\"outputs\":[],\"stateMutability\":\"nonpayable\",\"type\":\"function\"},{\"inputs\":[{\"internalType\":\"uint256\",\"name\":\"_maxFeePercentage\",\"type\":\"uint256\"},{\"internalType\":\"uint256\",\"name\":\"_ZUSDAmount\",\"type\":\"uint256\"},{\"internalType\":\"address\",\"name\":\"_upperHint\",\"type\":\"address\"},{\"internalType\":\"address\",\"name\":\"_lowerHint\",\"type\":\"address\"}],\"name\":\"withdrawZusdAndConvertToDLLR\",\"outputs\":[{\"internalType\":\"uint256\",\"name\":\"\",\"type\":\"uint256\"}],\"stateMutability\":\"nonpayable\",\"type\":\"function\"},{\"inputs\":[],\"name\":\"zeroStaking\",\"outputs\":[{\"internalType\":\"contract IZEROStaking\",\"name\":\"\",\"type\":\"address\"}],\"stateMutability\":\"view\",\"type\":\"function\"},{\"inputs\":[],\"name\":\"zeroStakingAddress\",\"outputs\":[{\"internalType\":\"address\",\"name\":\"\",\"type\":\"address\"}],\"stateMutability\":\"view\",\"type\":\"function\"},{\"inputs\":[],\"name\":\"zusdToken\",\"outputs\":[{\"internalType\":\"contract IZUSDToken\",\"name\":\"\",\"type\":\"address\"}],\"stateMutability\":\"view\",\"type\":\"function\"}],\"devdoc\":{\"kind\":\"dev\",\"methods\":{\"getOwner()\":{\"returns\":{\"_owner\":\"Address of the owner. \"}},\"setAddresses(address,address,address,address,address,address,address,address,address,address,address,address)\":{\"details\":\"initializer function, checks addresses are contracts\",\"params\":{\"_activePoolAddress\":\"ActivePool contract address\",\"_collSurplusPoolAddress\":\"CollSurplusPool contract address\",\"_defaultPoolAddress\":\"DefaultPool contract address\",\"_feeDistributorAddress\":\"feeDistributor contract address\",\"_gasPoolAddress\":\"GasPool contract address\",\"_liquityBaseParamsAddress\":\"LiquidityBaseParams contract address\",\"_priceFeedAddress\":\"PrideFeed contract address\",\"_sortedTrovesAddress\":\"SortedTroves contract address\",\"_stabilityPoolAddress\":\"StabilityPool contract address\",\"_troveManagerAddress\":\"TroveManager contract address\",\"_zeroStakingAddress\":\"ZEROStaking contract address\",\"_zusdTokenAddress\":\"ZUSDToken contract address\"}},\"setOwner(address)\":{\"params\":{\"_owner\":\"Address of the owner. \"}},\"withdrawZusdAndConvertToDLLR(uint256,uint256,address,address)\":{\"returns\":{\"_0\":\"DLLR amount minted\"}}},\"version\":1},\"userdoc\":{\"kind\":\"user\",\"methods\":{\"MIN_NET_DEBT()\":{\"notice\":\"Minimum amount of net ZUSD debt a trove must have\"},\"ZUSD_GAS_COMPENSATION()\":{\"notice\":\"Amount of ZUSD to be locked in gas pool on opening troves\"},\"addColl(address,address)\":{\"notice\":\"Send ETH as collateral to a trove\"},\"claimCollateral()\":{\"notice\":\"Claim remaining collateral from a redemption or from a liquidation with ICR > MCR in Recovery Mode\"},\"closeNueTrove((uint256,uint8,bytes32,bytes32))\":{\"notice\":\"allows a borrower to repay all debt, withdraw all their collateral, and close their Trove. Requires the borrower have a NUE balance sufficient to repay their trove's debt, excluding gas compensation - i.e. `(debt - 50)` NUE. This method is identical to `closeTrove()`, but operates on NUE tokens instead of ZUSD.\"},\"closeNueTroveWithPermit2(((address,uint256),uint256,uint256),bytes)\":{\"notice\":\"allows a borrower to repay all debt, withdraw all their collateral, and close their Trove. Requires the borrower have a NUE balance sufficient to repay their trove's debt, excluding gas compensation - i.e. `(debt - 50)` NUE. This method is identical to `closeTrove()`, but operates on NUE tokens instead of ZUSD.\"},\"closeTrove()\":{\"notice\":\"allows a borrower to repay all debt, withdraw all their collateral, and close their Trove. Requires the borrower have a ZUSD balance sufficient to repay their trove's debt, excluding gas compensation - i.e. `(debt - 50)` ZUSD.\"},\"constructor\":\"Constructor \",\"getOwner()\":{\"notice\":\"Return address of the owner.\"},\"moveETHGainToTrove(address,address,address)\":{\"notice\":\"Send ETH as collateral to a trove. Called by only the Stability Pool.\"},\"permit2()\":{\"notice\":\"CONSTANT / IMMUTABLE VARIABLE ONLY \"},\"repayZUSD(uint256,address,address)\":{\"notice\":\"Repay ZUSD tokens to a Trove: Burn the repaid ZUSD tokens, and reduce the trove's debt accordingly\"},\"repayZusdFromDLLR(uint256,address,address,(uint256,uint8,bytes32,bytes32))\":{\"notice\":\"Repay ZUSD tokens to a Trove by DLLR: convert DLLR to ZUSD tokens, and then reduce the trove's debt accordingly\"},\"repayZusdFromDLLRWithPermit2(uint256,address,address,((address,uint256),uint256,uint256),bytes)\":{\"notice\":\"Repay ZUSD tokens to a Trove by DLLR: convert DLLR to ZUSD tokens, and then reduce the trove's debt accordingly\"},\"setAddresses(address,address,address,address,address,address,address,address,address,address,address,address)\":{\"notice\":\"Called only once on init, to set addresses of other Zero contracts. Callable only by owner\"},\"setOwner(address)\":{\"notice\":\"Set address of the owner (only owner can call this function)\"},\"withdrawColl(uint256,address,address)\":{\"notice\":\"Withdraw ETH collateral from a trove\"},\"withdrawZUSD(uint256,uint256,address,address)\":{\"notice\":\"Withdraw ZUSD tokens from a trove: mint new ZUSD tokens to the owner, and increase the trove's debt accordingly\"},\"withdrawZusdAndConvertToDLLR(uint256,uint256,address,address)\":{\"notice\":\"Borrow (withdraw) ZUSD tokens from a trove: mint new ZUSD tokens to the owner and convert it to DLLR in one transaction Zero Line of Credit owner can borrow a specified amount of ZUSD and convert it to DLLR via Sovryn Mynt\"}},\"version\":1}},\"settings\":{\"compilationTarget\":{\"contracts/BorrowerOperations.sol\":\"BorrowerOperations\"},\"evmVersion\":\"istanbul\",\"libraries\":{},\"metadata\":{\"bytecodeHash\":\"ipfs\",\"useLiteralContent\":true},\"optimizer\":{\"enabled\":true,\"runs\":100},\"remappings\":[]},\"sources\":{\"contracts/BorrowerOperations.sol\":{\"content\":\"// SPDX-License-Identifier: MIT\\n\\npragma solidity 0.6.11;\\npragma experimental ABIEncoderV2;\\n\\nimport \\\"./Interfaces/IBorrowerOperations.sol\\\";\\nimport \\\"./Interfaces/ITroveManager.sol\\\";\\nimport \\\"./Interfaces/IZUSDToken.sol\\\";\\nimport \\\"./Interfaces/ICollSurplusPool.sol\\\";\\nimport \\\"./Interfaces/ISortedTroves.sol\\\";\\nimport \\\"./Interfaces/IZEROStaking.sol\\\";\\nimport \\\"./Interfaces/IFeeDistributor.sol\\\";\\nimport \\\"./Dependencies/LiquityBase.sol\\\";\\nimport \\\"./Dependencies/CheckContract.sol\\\";\\nimport \\\"./Dependencies/console.sol\\\";\\nimport \\\"./BorrowerOperationsStorage.sol\\\";\\nimport \\\"./Dependencies/Mynt/MyntLib.sol\\\";\\nimport \\\"./Interfaces/IPermit2.sol\\\";\\n\\ncontract BorrowerOperations is\\n LiquityBase,\\n BorrowerOperationsStorage,\\n CheckContract,\\n IBorrowerOperations\\n{\\n /** CONSTANT / IMMUTABLE VARIABLE ONLY */\\n IPermit2 public immutable permit2;\\n\\n /* --- Variable container structs ---\\n\\n Used to hold, return and assign variables inside a function, in order to avoid the error:\\n \\\"CompilerError: Stack too deep\\\". */\\n\\n struct LocalVariables_adjustTrove {\\n uint256 price;\\n uint256 collChange;\\n uint256 netDebtChange;\\n bool isCollIncrease;\\n uint256 debt;\\n uint256 coll;\\n uint256 oldICR;\\n uint256 newICR;\\n uint256 newTCR;\\n uint256 ZUSDFee;\\n uint256 newDebt;\\n uint256 newColl;\\n uint256 stake;\\n uint256 newNICR;\\n bool isRecoveryMode;\\n }\\n\\n struct LocalVariables_openTrove {\\n uint256 price;\\n uint256 ZUSDFee;\\n uint256 netDebt;\\n uint256 compositeDebt;\\n uint256 ICR;\\n uint256 NICR;\\n uint256 stake;\\n uint256 arrayIndex;\\n }\\n\\n struct ContractsCache {\\n ITroveManager troveManager;\\n IActivePool activePool;\\n IZUSDToken zusdToken;\\n }\\n\\n enum BorrowerOperation {\\n openTrove,\\n closeTrove,\\n adjustTrove\\n }\\n\\n event FeeDistributorAddressChanged(address _feeDistributorAddress);\\n event TroveManagerAddressChanged(address _newTroveManagerAddress);\\n event ActivePoolAddressChanged(address _activePoolAddress);\\n event DefaultPoolAddressChanged(address _defaultPoolAddress);\\n event StabilityPoolAddressChanged(address _stabilityPoolAddress);\\n event GasPoolAddressChanged(address _gasPoolAddress);\\n event CollSurplusPoolAddressChanged(address _collSurplusPoolAddress);\\n event PriceFeedAddressChanged(address _newPriceFeedAddress);\\n event SortedTrovesAddressChanged(address _sortedTrovesAddress);\\n event ZUSDTokenAddressChanged(address _zusdTokenAddress);\\n event ZEROStakingAddressChanged(address _zeroStakingAddress);\\n event MassetManagerAddressChanged(address _massetManagerAddress);\\n\\n event TroveCreated(address indexed _borrower, uint256 arrayIndex);\\n event TroveUpdated(\\n address indexed _borrower,\\n uint256 _debt,\\n uint256 _coll,\\n uint256 stake,\\n BorrowerOperation operation\\n );\\n event ZUSDBorrowingFeePaid(address indexed _borrower, uint256 _ZUSDFee);\\n\\n /** Constructor */\\n constructor(address _permit2) public {\\n permit2 = IPermit2(_permit2);\\n }\\n\\n // --- Dependency setters ---\\n\\n function setAddresses(\\n address _feeDistributorAddress,\\n address _liquityBaseParamsAddress,\\n address _troveManagerAddress,\\n address _activePoolAddress,\\n address _defaultPoolAddress,\\n address _stabilityPoolAddress,\\n address _gasPoolAddress,\\n address _collSurplusPoolAddress,\\n address _priceFeedAddress,\\n address _sortedTrovesAddress,\\n address _zusdTokenAddress,\\n address _zeroStakingAddress\\n ) external override onlyOwner {\\n // This makes impossible to open a trove with zero withdrawn ZUSD\\n assert(MIN_NET_DEBT > 0);\\n\\n checkContract(_feeDistributorAddress);\\n checkContract(_liquityBaseParamsAddress);\\n checkContract(_troveManagerAddress);\\n checkContract(_activePoolAddress);\\n checkContract(_defaultPoolAddress);\\n checkContract(_stabilityPoolAddress);\\n checkContract(_gasPoolAddress);\\n checkContract(_collSurplusPoolAddress);\\n checkContract(_priceFeedAddress);\\n checkContract(_sortedTrovesAddress);\\n checkContract(_zusdTokenAddress);\\n checkContract(_zeroStakingAddress);\\n\\n feeDistributor = IFeeDistributor(_feeDistributorAddress);\\n liquityBaseParams = ILiquityBaseParams(_liquityBaseParamsAddress);\\n troveManager = ITroveManager(_troveManagerAddress);\\n activePool = IActivePool(_activePoolAddress);\\n defaultPool = IDefaultPool(_defaultPoolAddress);\\n stabilityPoolAddress = _stabilityPoolAddress;\\n gasPoolAddress = _gasPoolAddress;\\n collSurplusPool = ICollSurplusPool(_collSurplusPoolAddress);\\n priceFeed = IPriceFeed(_priceFeedAddress);\\n sortedTroves = ISortedTroves(_sortedTrovesAddress);\\n zusdToken = IZUSDToken(_zusdTokenAddress);\\n zeroStakingAddress = _zeroStakingAddress;\\n zeroStaking = IZEROStaking(_zeroStakingAddress);\\n\\n emit FeeDistributorAddressChanged(_feeDistributorAddress);\\n emit TroveManagerAddressChanged(_troveManagerAddress);\\n emit ActivePoolAddressChanged(_activePoolAddress);\\n emit DefaultPoolAddressChanged(_defaultPoolAddress);\\n emit StabilityPoolAddressChanged(_stabilityPoolAddress);\\n emit GasPoolAddressChanged(_gasPoolAddress);\\n emit CollSurplusPoolAddressChanged(_collSurplusPoolAddress);\\n emit PriceFeedAddressChanged(_priceFeedAddress);\\n emit SortedTrovesAddressChanged(_sortedTrovesAddress);\\n emit ZUSDTokenAddressChanged(_zusdTokenAddress);\\n emit ZEROStakingAddressChanged(_zeroStakingAddress);\\n }\\n\\n function setMassetManagerAddress(address _massetManagerAddress) external onlyOwner {\\n massetManager = IMassetManager(_massetManagerAddress);\\n emit MassetManagerAddressChanged(_massetManagerAddress);\\n }\\n\\n function openTrove(\\n uint256 _maxFeePercentage,\\n uint256 _ZUSDAmount,\\n address _upperHint,\\n address _lowerHint\\n ) external payable override {\\n _openTrove(_maxFeePercentage, _ZUSDAmount, _upperHint, _lowerHint, msg.sender);\\n }\\n\\n function openNueTrove(\\n uint256 _maxFeePercentage,\\n uint256 _ZUSDAmount,\\n address _upperHint,\\n address _lowerHint\\n ) external payable override {\\n require(address(massetManager) != address(0), \\\"Masset address not set\\\");\\n\\n _openTrove(_maxFeePercentage, _ZUSDAmount, _upperHint, _lowerHint, address(this));\\n require(\\n zusdToken.approve(address(massetManager), _ZUSDAmount),\\n \\\"Failed to approve ZUSD amount for Mynt mAsset to redeem\\\"\\n );\\n massetManager.mintTo(address(zusdToken), _ZUSDAmount, msg.sender);\\n }\\n\\n // --- Borrower Trove Operations ---\\n function _openTrove(\\n uint256 _maxFeePercentage,\\n uint256 _ZUSDAmount,\\n address _upperHint,\\n address _lowerHint,\\n address _tokensRecipient\\n ) internal {\\n ContractsCache memory contractsCache = ContractsCache(troveManager, activePool, zusdToken);\\n LocalVariables_openTrove memory vars;\\n\\n vars.price = priceFeed.fetchPrice();\\n bool isRecoveryMode = _checkRecoveryMode(vars.price);\\n\\n _requireValidMaxFeePercentage(_maxFeePercentage, isRecoveryMode);\\n _requireTroveisNotActive(contractsCache.troveManager, msg.sender);\\n\\n vars.ZUSDFee;\\n vars.netDebt = _ZUSDAmount;\\n\\n if (!isRecoveryMode) {\\n vars.ZUSDFee = _triggerBorrowingFee(\\n contractsCache.troveManager,\\n contractsCache.zusdToken,\\n _ZUSDAmount,\\n _maxFeePercentage\\n );\\n vars.netDebt = vars.netDebt.add(vars.ZUSDFee);\\n }\\n _requireAtLeastMinNetDebt(vars.netDebt);\\n\\n // ICR is based on the composite debt, i.e. the requested ZUSD amount + ZUSD borrowing fee + ZUSD gas comp.\\n vars.compositeDebt = _getCompositeDebt(vars.netDebt);\\n assert(vars.compositeDebt > 0);\\n\\n vars.ICR = LiquityMath._computeCR(msg.value, vars.compositeDebt, vars.price);\\n vars.NICR = LiquityMath._computeNominalCR(msg.value, vars.compositeDebt);\\n\\n if (isRecoveryMode) {\\n _requireICRisAboveCCR(vars.ICR);\\n } else {\\n _requireICRisAboveMCR(vars.ICR);\\n uint256 newTCR = _getNewTCRFromTroveChange(\\n msg.value,\\n true,\\n vars.compositeDebt,\\n true,\\n vars.price\\n ); // bools: coll increase, debt increase\\n _requireNewTCRisAboveCCR(newTCR);\\n }\\n\\n // Set the trove struct's properties\\n contractsCache.troveManager.setTroveStatus(msg.sender, 1);\\n contractsCache.troveManager.increaseTroveColl(msg.sender, msg.value);\\n contractsCache.troveManager.increaseTroveDebt(msg.sender, vars.compositeDebt);\\n\\n contractsCache.troveManager.updateTroveRewardSnapshots(msg.sender);\\n vars.stake = contractsCache.troveManager.updateStakeAndTotalStakes(msg.sender);\\n\\n sortedTroves.insert(msg.sender, vars.NICR, _upperHint, _lowerHint);\\n vars.arrayIndex = contractsCache.troveManager.addTroveOwnerToArray(msg.sender);\\n emit TroveCreated(msg.sender, vars.arrayIndex);\\n\\n // Move the ether to the Active Pool, and mint the ZUSDAmount to the borrower\\n _activePoolAddColl(contractsCache.activePool, msg.value);\\n _mintZusdAndIncreaseActivePoolDebt(\\n contractsCache.activePool,\\n contractsCache.zusdToken,\\n _tokensRecipient,\\n _ZUSDAmount,\\n vars.netDebt\\n );\\n // Move the ZUSD gas compensation to the Gas Pool\\n _mintZusdAndIncreaseActivePoolDebt(\\n contractsCache.activePool,\\n contractsCache.zusdToken,\\n gasPoolAddress,\\n ZUSD_GAS_COMPENSATION,\\n ZUSD_GAS_COMPENSATION\\n );\\n\\n emit TroveUpdated(\\n msg.sender,\\n vars.compositeDebt,\\n msg.value,\\n vars.stake,\\n BorrowerOperation.openTrove\\n );\\n emit ZUSDBorrowingFeePaid(msg.sender, vars.ZUSDFee);\\n }\\n\\n /// Send ETH as collateral to a trove\\n function addColl(address _upperHint, address _lowerHint) external payable override {\\n _adjustTrove(msg.sender, 0, 0, false, _upperHint, _lowerHint, 0);\\n }\\n\\n /// Send ETH as collateral to a trove. Called by only the Stability Pool.\\n function moveETHGainToTrove(\\n address _borrower,\\n address _upperHint,\\n address _lowerHint\\n ) external payable override {\\n _requireCallerIsStabilityPool();\\n _adjustTrove(_borrower, 0, 0, false, _upperHint, _lowerHint, 0);\\n }\\n\\n /// Withdraw ETH collateral from a trove\\n function withdrawColl(\\n uint256 _collWithdrawal,\\n address _upperHint,\\n address _lowerHint\\n ) external override {\\n _adjustTrove(msg.sender, _collWithdrawal, 0, false, _upperHint, _lowerHint, 0);\\n }\\n\\n /// Withdraw ZUSD tokens from a trove: mint new ZUSD tokens to the owner, and increase the trove's debt accordingly\\n function withdrawZUSD(\\n uint256 _maxFeePercentage,\\n uint256 _ZUSDAmount,\\n address _upperHint,\\n address _lowerHint\\n ) external override {\\n _adjustTrove(msg.sender, 0, _ZUSDAmount, true, _upperHint, _lowerHint, _maxFeePercentage);\\n }\\n\\n /// Borrow (withdraw) ZUSD tokens from a trove: mint new ZUSD tokens to the owner and convert it to DLLR in one transaction\\n /// Zero Line of Credit owner can borrow a specified amount of ZUSD and convert it to DLLR via Sovryn Mynt\\n ///@return DLLR amount minted\\n function withdrawZusdAndConvertToDLLR(\\n uint256 _maxFeePercentage,\\n uint256 _ZUSDAmount,\\n address _upperHint,\\n address _lowerHint\\n ) external override returns (uint256) {\\n address thisAddress = address(this);\\n uint256 balanceBefore = zusdToken.balanceOf(thisAddress);\\n\\n _withdrawZusdTo(\\n msg.sender,\\n thisAddress,\\n _ZUSDAmount,\\n _upperHint,\\n _lowerHint,\\n _maxFeePercentage\\n );\\n\\n require(\\n zusdToken.balanceOf(thisAddress) == balanceBefore.add(_ZUSDAmount),\\n \\\"ZUSD is not borrowed correctly\\\"\\n );\\n require(\\n zusdToken.approve(address(massetManager), _ZUSDAmount),\\n \\\"Failed to approve ZUSD amount for Mynt mAsset to redeem\\\"\\n );\\n return massetManager.mintTo(address(zusdToken), _ZUSDAmount, msg.sender);\\n }\\n\\n /// Repay ZUSD tokens to a Trove: Burn the repaid ZUSD tokens, and reduce the trove's debt accordingly\\n function repayZUSD(\\n uint256 _ZUSDAmount,\\n address _upperHint,\\n address _lowerHint\\n ) external override {\\n _adjustTrove(msg.sender, 0, _ZUSDAmount, false, _upperHint, _lowerHint, 0);\\n }\\n\\n /// Repay ZUSD tokens to a Trove by DLLR: convert DLLR to ZUSD tokens, and then reduce the trove's debt accordingly\\n function repayZusdFromDLLR(\\n uint256 _dllrAmount,\\n address _upperHint,\\n address _lowerHint,\\n IMassetManager.PermitParams calldata _permitParams\\n ) external override {\\n _adjustNueTrove(0, 0, _dllrAmount, false, _upperHint, _lowerHint, _permitParams);\\n }\\n\\n /// Repay ZUSD tokens to a Trove by DLLR: convert DLLR to ZUSD tokens, and then reduce the trove's debt accordingly\\n function repayZusdFromDLLRWithPermit2(\\n uint256 _dllrAmount,\\n address _upperHint,\\n address _lowerHint,\\n ISignatureTransfer.PermitTransferFrom memory _permit,\\n bytes calldata _signature\\n ) external override {\\n _adjustNueTroveWithPermit2(0, 0, _dllrAmount, false, _upperHint, _lowerHint, _permit, _signature);\\n }\\n\\n function adjustTrove(\\n uint256 _maxFeePercentage,\\n uint256 _collWithdrawal,\\n uint256 _ZUSDChange,\\n bool _isDebtIncrease,\\n address _upperHint,\\n address _lowerHint\\n ) external payable override {\\n _adjustTrove(\\n msg.sender,\\n _collWithdrawal,\\n _ZUSDChange,\\n _isDebtIncrease,\\n _upperHint,\\n _lowerHint,\\n _maxFeePercentage\\n );\\n }\\n\\n // in case of _isDebtIncrease = false MassetManager contract must have an approval of NUE tokens\\n function adjustNueTrove(\\n uint256 _maxFeePercentage,\\n uint256 _collWithdrawal,\\n uint256 _ZUSDChange,\\n bool _isDebtIncrease,\\n address _upperHint,\\n address _lowerHint,\\n IMassetManager.PermitParams calldata _permitParams\\n ) external payable override {\\n _adjustNueTrove(\\n _maxFeePercentage,\\n _collWithdrawal,\\n _ZUSDChange,\\n _isDebtIncrease,\\n _upperHint,\\n _lowerHint,\\n _permitParams\\n );\\n }\\n\\n // in case of _isDebtIncrease = false MassetManager contract must have an approval of NUE tokens\\n function adjustNueTroveWithPermit2(\\n uint256 _maxFeePercentage,\\n uint256 _collWithdrawal,\\n uint256 _ZUSDChange,\\n bool _isDebtIncrease,\\n address _upperHint,\\n address _lowerHint,\\n ISignatureTransfer.PermitTransferFrom memory _permit,\\n bytes calldata _signature\\n ) external payable override {\\n _adjustNueTroveWithPermit2(\\n _maxFeePercentage,\\n _collWithdrawal,\\n _ZUSDChange,\\n _isDebtIncrease,\\n _upperHint,\\n _lowerHint,\\n _permit,\\n _signature\\n );\\n }\\n\\n // in case of _isDebtIncrease = false Masset Manager contract must have an approval of NUE tokens\\n function _adjustNueTrove(\\n uint256 _maxFeePercentage,\\n uint256 _collWithdrawal,\\n uint256 _ZUSDChange,\\n bool _isDebtIncrease,\\n address _upperHint,\\n address _lowerHint,\\n IMassetManager.PermitParams calldata _permitParams\\n ) internal {\\n require(address(massetManager) != address(0), \\\"Masset address not set\\\");\\n\\n if (!_isDebtIncrease && _ZUSDChange > 0) {\\n MyntLib.redeemZusdFromDllrWithPermit(\\n massetManager,\\n _ZUSDChange,\\n address(zusdToken),\\n _permitParams\\n );\\n }\\n _adjustSenderTrove(\\n msg.sender,\\n _collWithdrawal,\\n _ZUSDChange,\\n _isDebtIncrease,\\n _upperHint,\\n _lowerHint,\\n _maxFeePercentage,\\n address(this)\\n );\\n if (_isDebtIncrease && _ZUSDChange > 0) {\\n require(\\n zusdToken.approve(address(massetManager), _ZUSDChange),\\n \\\"Failed to approve ZUSD amount for Mynt mAsset to redeem\\\"\\n );\\n massetManager.mintTo(address(zusdToken), _ZUSDChange, msg.sender);\\n }\\n }\\n\\n // in case of _isDebtIncrease = false Masset Manager contract must have an approval of NUE tokens\\n function _adjustNueTroveWithPermit2(\\n uint256 _maxFeePercentage,\\n uint256 _collWithdrawal,\\n uint256 _ZUSDChange,\\n bool _isDebtIncrease,\\n address _upperHint,\\n address _lowerHint,\\n ISignatureTransfer.PermitTransferFrom memory _permit,\\n bytes calldata _signature\\n ) internal {\\n require(address(massetManager) != address(0), \\\"Masset address not set\\\");\\n\\n if (!_isDebtIncrease && _ZUSDChange > 0) {\\n MyntLib.redeemZusdFromDllrWithPermit2(\\n massetManager,\\n address(zusdToken),\\n _permit,\\n permit2,\\n _signature\\n );\\n }\\n _adjustSenderTrove(\\n msg.sender,\\n _collWithdrawal,\\n _ZUSDChange,\\n _isDebtIncrease,\\n _upperHint,\\n _lowerHint,\\n _maxFeePercentage,\\n address(this)\\n );\\n if (_isDebtIncrease && _ZUSDChange > 0) {\\n require(\\n zusdToken.approve(address(massetManager), _ZUSDChange),\\n \\\"Failed to approve ZUSD amount for Mynt mAsset to redeem\\\"\\n );\\n massetManager.mintTo(address(zusdToken), _ZUSDChange, msg.sender);\\n }\\n }\\n\\n function _adjustTrove(\\n address _borrower,\\n uint256 _collWithdrawal,\\n uint256 _ZUSDChange,\\n bool _isDebtIncrease,\\n address _upperHint,\\n address _lowerHint,\\n uint256 _maxFeePercentage\\n ) internal {\\n _adjustSenderTrove(\\n _borrower,\\n _collWithdrawal,\\n _ZUSDChange,\\n _isDebtIncrease,\\n _upperHint,\\n _lowerHint,\\n _maxFeePercentage,\\n msg.sender\\n );\\n }\\n\\n // _withdrawZusd: _adjustTrove(msg.sender, 0, _ZUSDAmount, true, _upperHint, _lowerHint, _maxFeePercentage);\\n function _withdrawZusdTo(\\n address _borrower,\\n address _receiver,\\n uint256 _ZUSDChange,\\n address _upperHint,\\n address _lowerHint,\\n uint256 _maxFeePercentage\\n ) internal {\\n _adjustSenderTrove(\\n _borrower,\\n 0,\\n _ZUSDChange,\\n true,\\n _upperHint,\\n _lowerHint,\\n _maxFeePercentage,\\n _receiver\\n );\\n }\\n\\n /**\\n * _adjustSenderTrove(): Alongside a debt change, this function can perform either a collateral top-up or a collateral withdrawal.\\n *\\n * It therefore expects either a positive msg.value, or a positive _collWithdrawal argument.\\n *\\n * If both are positive, it will revert.\\n */\\n function _adjustSenderTrove(\\n address _borrower,\\n uint256 _collWithdrawal,\\n uint256 _ZUSDChange,\\n bool _isDebtIncrease,\\n address _upperHint,\\n address _lowerHint,\\n uint256 _maxFeePercentage,\\n address _tokensRecipient\\n ) internal {\\n ContractsCache memory contractsCache = ContractsCache(troveManager, activePool, zusdToken);\\n LocalVariables_adjustTrove memory vars;\\n\\n vars.price = priceFeed.fetchPrice();\\n vars.isRecoveryMode = _checkRecoveryMode(vars.price);\\n\\n if (_isDebtIncrease) {\\n _requireValidMaxFeePercentage(_maxFeePercentage, vars.isRecoveryMode);\\n _requireNonZeroDebtChange(_ZUSDChange);\\n }\\n _requireSingularCollChange(_collWithdrawal);\\n _requireNonZeroAdjustment(_collWithdrawal, _ZUSDChange);\\n _requireTroveisActive(contractsCache.troveManager, _borrower);\\n\\n // Confirm the operation is either a borrower adjusting their own trove, or a pure ETH transfer from the Stability Pool to a trove\\n assert(\\n msg.sender == _borrower ||\\n (msg.sender == stabilityPoolAddress && msg.value > 0 && _ZUSDChange == 0)\\n );\\n\\n contractsCache.troveManager.applyPendingRewards(_borrower);\\n\\n // Get the collChange based on whether or not ETH was sent in the transaction\\n (vars.collChange, vars.isCollIncrease) = _getCollChange(msg.value, _collWithdrawal);\\n\\n vars.netDebtChange = _ZUSDChange;\\n\\n // If the adjustment incorporates a debt increase and system is in Normal Mode, then trigger a borrowing fee\\n if (_isDebtIncrease && !vars.isRecoveryMode) {\\n vars.ZUSDFee = _triggerBorrowingFee(\\n contractsCache.troveManager,\\n contractsCache.zusdToken,\\n _ZUSDChange,\\n _maxFeePercentage\\n );\\n vars.netDebtChange = vars.netDebtChange.add(vars.ZUSDFee); // The raw debt change includes the fee\\n }\\n\\n vars.debt = contractsCache.troveManager.getTroveDebt(_borrower);\\n vars.coll = contractsCache.troveManager.getTroveColl(_borrower);\\n\\n // Get the trove's old ICR before the adjustment, and what its new ICR will be after the adjustment\\n vars.oldICR = LiquityMath._computeCR(vars.coll, vars.debt, vars.price);\\n vars.newICR = _getNewICRFromTroveChange(\\n vars.coll,\\n vars.debt,\\n vars.collChange,\\n vars.isCollIncrease,\\n vars.netDebtChange,\\n _isDebtIncrease,\\n vars.price\\n );\\n assert(_collWithdrawal <= vars.coll);\\n\\n // Check the adjustment satisfies all conditions for the current system mode\\n _requireValidAdjustmentInCurrentMode(\\n vars.isRecoveryMode,\\n _collWithdrawal,\\n _isDebtIncrease,\\n vars\\n );\\n\\n // When the adjustment is a debt repayment, check it's a valid amount and that the caller has enough ZUSD\\n if (!_isDebtIncrease && _ZUSDChange > 0) {\\n _requireAtLeastMinNetDebt(_getNetDebt(vars.debt).sub(vars.netDebtChange));\\n _requireValidZUSDRepayment(vars.debt, vars.netDebtChange);\\n _requireSufficientZUSDBalance(contractsCache.zusdToken, _borrower, vars.netDebtChange);\\n }\\n\\n (vars.newColl, vars.newDebt) = _updateTroveFromAdjustment(\\n contractsCache.troveManager,\\n _borrower,\\n vars.collChange,\\n vars.isCollIncrease,\\n vars.netDebtChange,\\n _isDebtIncrease\\n );\\n vars.stake = contractsCache.troveManager.updateStakeAndTotalStakes(_borrower);\\n\\n // Re-insert trove in to the sorted list\\n vars.newNICR = _getNewNominalICRFromTroveChange(\\n vars.coll,\\n vars.debt,\\n vars.collChange,\\n vars.isCollIncrease,\\n vars.netDebtChange,\\n _isDebtIncrease\\n );\\n sortedTroves.reInsert(_borrower, vars.newNICR, _upperHint, _lowerHint);\\n\\n emit TroveUpdated(\\n _borrower,\\n vars.newDebt,\\n vars.newColl,\\n vars.stake,\\n BorrowerOperation.adjustTrove\\n );\\n emit ZUSDBorrowingFeePaid(msg.sender, vars.ZUSDFee);\\n\\n // Use the unmodified _ZUSDChange here, as we don't send the fee to the user\\n _moveTokensAndETHfromAdjustment(\\n contractsCache.activePool,\\n contractsCache.zusdToken,\\n msg.sender,\\n vars.collChange,\\n vars.isCollIncrease,\\n _ZUSDChange,\\n _isDebtIncrease,\\n vars.netDebtChange,\\n _tokensRecipient\\n );\\n }\\n\\n function closeTrove() external override {\\n _closeTrove();\\n }\\n\\n function closeNueTrove(IMassetManager.PermitParams calldata _permitParams) external override {\\n require(address(massetManager) != address(0), \\\"Masset address not set\\\");\\n\\n uint256 debt = troveManager.getTroveDebt(msg.sender);\\n\\n MyntLib.redeemZusdFromDllrWithPermit(\\n massetManager,\\n debt.sub(ZUSD_GAS_COMPENSATION),\\n address(zusdToken),\\n _permitParams\\n );\\n _closeTrove();\\n }\\n\\n function closeNueTroveWithPermit2(ISignatureTransfer.PermitTransferFrom memory _permit, bytes calldata _signature) external override {\\n require(address(massetManager) != address(0), \\\"Masset address not set\\\");\\n\\n uint256 debt = troveManager.getTroveDebt(msg.sender);\\n\\n MyntLib.redeemZusdFromDllrWithPermit2(\\n massetManager,\\n address(zusdToken),\\n _permit,\\n permit2,\\n _signature\\n );\\n\\n _closeTrove();\\n }\\n\\n function _closeTrove() internal {\\n ITroveManager troveManagerCached = troveManager;\\n IActivePool activePoolCached = activePool;\\n IZUSDToken zusdTokenCached = zusdToken;\\n\\n _requireTroveisActive(troveManagerCached, msg.sender);\\n uint256 price = priceFeed.fetchPrice();\\n _requireNotInRecoveryMode(price);\\n\\n troveManagerCached.applyPendingRewards(msg.sender);\\n\\n uint256 coll = troveManagerCached.getTroveColl(msg.sender);\\n uint256 debt = troveManagerCached.getTroveDebt(msg.sender);\\n\\n _requireSufficientZUSDBalance(\\n zusdTokenCached,\\n msg.sender,\\n debt.sub(ZUSD_GAS_COMPENSATION)\\n );\\n\\n uint256 newTCR = _getNewTCRFromTroveChange(coll, false, debt, false, price);\\n _requireNewTCRisAboveCCR(newTCR);\\n\\n troveManagerCached.removeStake(msg.sender);\\n troveManagerCached.closeTrove(msg.sender);\\n\\n emit TroveUpdated(msg.sender, 0, 0, 0, BorrowerOperation.closeTrove);\\n\\n // Burn the repaid ZUSD from the user's balance and the gas compensation from the Gas Pool\\n _burnZusdAndDecreaseActivePoolDebt(\\n activePoolCached,\\n zusdTokenCached,\\n msg.sender,\\n debt.sub(ZUSD_GAS_COMPENSATION)\\n );\\n _burnZusdAndDecreaseActivePoolDebt(\\n activePoolCached,\\n zusdTokenCached,\\n gasPoolAddress,\\n ZUSD_GAS_COMPENSATION\\n );\\n\\n // Send the collateral back to the user\\n activePoolCached.sendETH(msg.sender, coll);\\n }\\n\\n /**\\n * Claim remaining collateral from a redemption or from a liquidation with ICR > MCR in Recovery Mode\\n */\\n function claimCollateral() external override {\\n // send ETH from CollSurplus Pool to owner\\n collSurplusPool.claimColl(msg.sender);\\n }\\n\\n // --- Helper functions ---\\n\\n function _triggerBorrowingFee(\\n ITroveManager _troveManager,\\n IZUSDToken _zusdToken,\\n uint256 _ZUSDAmount,\\n uint256 _maxFeePercentage\\n ) internal returns (uint256) {\\n _troveManager.decayBaseRateFromBorrowing(); // decay the baseRate state variable\\n uint256 ZUSDFee = _troveManager.getBorrowingFee(_ZUSDAmount);\\n\\n _requireUserAcceptsFee(ZUSDFee, _ZUSDAmount, _maxFeePercentage);\\n _zusdToken.mint(address(feeDistributor), ZUSDFee);\\n feeDistributor.distributeFees();\\n\\n return ZUSDFee;\\n }\\n\\n function _getUSDValue(uint256 _coll, uint256 _price) internal pure returns (uint256) {\\n uint256 usdValue = _price.mul(_coll).div(DECIMAL_PRECISION);\\n\\n return usdValue;\\n }\\n\\n function _getCollChange(uint256 _collReceived, uint256 _requestedCollWithdrawal)\\n internal\\n pure\\n returns (uint256 collChange, bool isCollIncrease)\\n {\\n if (_collReceived != 0) {\\n collChange = _collReceived;\\n isCollIncrease = true;\\n } else {\\n collChange = _requestedCollWithdrawal;\\n }\\n }\\n\\n /// Update trove's coll and debt based on whether they increase or decrease\\n function _updateTroveFromAdjustment(\\n ITroveManager _troveManager,\\n address _borrower,\\n uint256 _collChange,\\n bool _isCollIncrease,\\n uint256 _debtChange,\\n bool _isDebtIncrease\\n ) internal returns (uint256, uint256) {\\n uint256 newColl = (_isCollIncrease)\\n ? _troveManager.increaseTroveColl(_borrower, _collChange)\\n : _troveManager.decreaseTroveColl(_borrower, _collChange);\\n uint256 newDebt = (_isDebtIncrease)\\n ? _troveManager.increaseTroveDebt(_borrower, _debtChange)\\n : _troveManager.decreaseTroveDebt(_borrower, _debtChange);\\n\\n return (newColl, newDebt);\\n }\\n\\n function _moveTokensAndETHfromAdjustment(\\n IActivePool _activePool,\\n IZUSDToken _zusdToken,\\n address _borrower,\\n uint256 _collChange,\\n bool _isCollIncrease,\\n uint256 _ZUSDChange,\\n bool _isDebtIncrease,\\n uint256 _netDebtChange,\\n address _tokensRecipient\\n ) internal {\\n if (_isDebtIncrease) {\\n _mintZusdAndIncreaseActivePoolDebt(\\n _activePool,\\n _zusdToken,\\n _tokensRecipient,\\n _ZUSDChange,\\n _netDebtChange\\n );\\n } else {\\n _burnZusdAndDecreaseActivePoolDebt(_activePool, _zusdToken, _borrower, _ZUSDChange);\\n }\\n\\n if (_isCollIncrease) {\\n _activePoolAddColl(_activePool, _collChange);\\n } else {\\n _activePool.sendETH(_borrower, _collChange);\\n }\\n }\\n\\n /// Send ETH to Active Pool and increase its recorded ETH balance\\n function _activePoolAddColl(IActivePool _activePool, uint256 _amount) internal {\\n (bool success, ) = address(_activePool).call{ value: _amount }(\\\"\\\");\\n require(success, \\\"BorrowerOps: Sending ETH to ActivePool failed\\\");\\n }\\n\\n /// Issue the specified amount of ZUSD to _account and increases the total active debt (_netDebtIncrease potentially includes a ZUSDFee)\\n function _mintZusdAndIncreaseActivePoolDebt(\\n IActivePool _activePool,\\n IZUSDToken _zusdToken,\\n address _account,\\n uint256 _ZUSDAmount,\\n uint256 _netDebtIncrease\\n ) internal {\\n _activePool.increaseZUSDDebt(_netDebtIncrease);\\n _zusdToken.mint(_account, _ZUSDAmount);\\n }\\n\\n /// Burn the specified amount of ZUSD from _account and decreases the total active debt\\n function _burnZusdAndDecreaseActivePoolDebt(\\n IActivePool _activePool,\\n IZUSDToken _zusdToken,\\n address _account,\\n uint256 _ZUSD\\n ) internal {\\n _activePool.decreaseZUSDDebt(_ZUSD);\\n _zusdToken.burn(_account, _ZUSD);\\n }\\n\\n // --- 'Require' wrapper functions ---\\n\\n function _requireSingularCollChange(uint256 _collWithdrawal) internal view {\\n require(\\n msg.value == 0 || _collWithdrawal == 0,\\n \\\"BorrowerOperations: Cannot withdraw and add coll\\\"\\n );\\n }\\n\\n function _requireCallerIsBorrower(address _borrower) internal view {\\n require(\\n msg.sender == _borrower,\\n \\\"BorrowerOps: Caller must be the borrower for a withdrawal\\\"\\n );\\n }\\n\\n function _requireNonZeroAdjustment(uint256 _collWithdrawal, uint256 _ZUSDChange)\\n internal\\n view\\n {\\n require(\\n msg.value != 0 || _collWithdrawal != 0 || _ZUSDChange != 0,\\n \\\"BorrowerOps: There must be either a collateral change or a debt change\\\"\\n );\\n }\\n\\n function _requireTroveisActive(ITroveManager _troveManager, address _borrower) internal view {\\n uint256 status = _troveManager.getTroveStatus(_borrower);\\n require(status == 1, \\\"BorrowerOps: Trove does not exist or is closed\\\");\\n }\\n\\n function _requireTroveisNotActive(ITroveManager _troveManager, address _borrower)\\n internal\\n view\\n {\\n uint256 status = _troveManager.getTroveStatus(_borrower);\\n require(status != 1, \\\"BorrowerOps: Trove is active\\\");\\n }\\n\\n function _requireNonZeroDebtChange(uint256 _ZUSDChange) internal pure {\\n require(_ZUSDChange > 0, \\\"BorrowerOps: Debt increase requires non-zero debtChange\\\");\\n }\\n\\n function _requireNotInRecoveryMode(uint256 _price) internal view {\\n require(\\n !_checkRecoveryMode(_price),\\n \\\"BorrowerOps: Operation not permitted during Recovery Mode\\\"\\n );\\n }\\n\\n function _requireNoCollWithdrawal(uint256 _collWithdrawal) internal pure {\\n require(\\n _collWithdrawal == 0,\\n \\\"BorrowerOps: Collateral withdrawal not permitted Recovery Mode\\\"\\n );\\n }\\n\\n function _requireValidAdjustmentInCurrentMode(\\n bool _isRecoveryMode,\\n uint256 _collWithdrawal,\\n bool _isDebtIncrease,\\n LocalVariables_adjustTrove memory _vars\\n ) internal view {\\n /*\\n *In Recovery Mode, only allow:\\n *\\n * - Pure collateral top-up\\n * - Pure debt repayment\\n * - Collateral top-up with debt repayment\\n * - A debt increase combined with a collateral top-up which makes the ICR >= 150% and improves the ICR (and by extension improves the TCR).\\n *\\n * In Normal Mode, ensure:\\n *\\n * - The new ICR is above MCR\\n * - The adjustment won't pull the TCR below CCR\\n */\\n if (_isRecoveryMode) {\\n _requireNoCollWithdrawal(_collWithdrawal);\\n if (_isDebtIncrease) {\\n _requireICRisAboveCCR(_vars.newICR);\\n _requireNewICRisAboveOldICR(_vars.newICR, _vars.oldICR);\\n }\\n } else {\\n // if Normal Mode\\n _requireICRisAboveMCR(_vars.newICR);\\n _vars.newTCR = _getNewTCRFromTroveChange(\\n _vars.collChange,\\n _vars.isCollIncrease,\\n _vars.netDebtChange,\\n _isDebtIncrease,\\n _vars.price\\n );\\n _requireNewTCRisAboveCCR(_vars.newTCR);\\n }\\n }\\n\\n function _requireICRisAboveMCR(uint256 _newICR) internal view {\\n require(\\n _newICR >= liquityBaseParams.MCR(),\\n \\\"BorrowerOps: An operation that would result in ICR < MCR is not permitted\\\"\\n );\\n }\\n\\n function _requireICRisAboveCCR(uint256 _newICR) internal view {\\n require(\\n _newICR >= liquityBaseParams.CCR(),\\n \\\"BorrowerOps: Operation must leave trove with ICR >= CCR\\\"\\n );\\n }\\n\\n function _requireNewICRisAboveOldICR(uint256 _newICR, uint256 _oldICR) internal pure {\\n require(\\n _newICR >= _oldICR,\\n \\\"BorrowerOps: Cannot decrease your Trove's ICR in Recovery Mode\\\"\\n );\\n }\\n\\n function _requireNewTCRisAboveCCR(uint256 _newTCR) internal view {\\n require(\\n _newTCR >= liquityBaseParams.CCR(),\\n \\\"BorrowerOps: An operation that would result in TCR < CCR is not permitted\\\"\\n );\\n }\\n\\n function _requireAtLeastMinNetDebt(uint256 _netDebt) internal pure {\\n require(\\n _netDebt >= MIN_NET_DEBT,\\n \\\"BorrowerOps: Trove's net debt must be greater than minimum\\\"\\n );\\n }\\n\\n function _requireValidZUSDRepayment(uint256 _currentDebt, uint256 _debtRepayment)\\n internal\\n pure\\n {\\n require(\\n _debtRepayment <= _currentDebt.sub(ZUSD_GAS_COMPENSATION),\\n \\\"BorrowerOps: Amount repaid must not be larger than the Trove's debt\\\"\\n );\\n }\\n\\n function _requireCallerIsStabilityPool() internal view {\\n require(msg.sender == stabilityPoolAddress, \\\"BorrowerOps: Caller is not Stability Pool\\\");\\n }\\n\\n function _requireSufficientZUSDBalance(\\n IZUSDToken _zusdToken,\\n address _borrower,\\n uint256 _debtRepayment\\n ) internal view {\\n require(\\n _zusdToken.balanceOf(_borrower) >= _debtRepayment,\\n \\\"BorrowerOps: Caller doesnt have enough ZUSD to make repayment\\\"\\n );\\n }\\n\\n function _requireValidMaxFeePercentage(uint256 _maxFeePercentage, bool _isRecoveryMode)\\n internal\\n view\\n {\\n if (_isRecoveryMode) {\\n require(\\n _maxFeePercentage <= DECIMAL_PRECISION,\\n \\\"Max fee percentage must less than or equal to 100%\\\"\\n );\\n } else {\\n require(\\n _maxFeePercentage >= liquityBaseParams.BORROWING_FEE_FLOOR() &&\\n _maxFeePercentage <= DECIMAL_PRECISION,\\n \\\"Max fee percentage must be between 0.5% and 100%\\\"\\n );\\n }\\n }\\n\\n // --- ICR and TCR getters ---\\n\\n /// Compute the new collateral ratio, considering the change in coll and debt. Assumes 0 pending rewards.\\n function _getNewNominalICRFromTroveChange(\\n uint256 _coll,\\n uint256 _debt,\\n uint256 _collChange,\\n bool _isCollIncrease,\\n uint256 _debtChange,\\n bool _isDebtIncrease\\n ) internal pure returns (uint256) {\\n (uint256 newColl, uint256 newDebt) = _getNewTroveAmounts(\\n _coll,\\n _debt,\\n _collChange,\\n _isCollIncrease,\\n _debtChange,\\n _isDebtIncrease\\n );\\n\\n uint256 newNICR = LiquityMath._computeNominalCR(newColl, newDebt);\\n return newNICR;\\n }\\n\\n /// Compute the new collateral ratio, considering the change in coll and debt. Assumes 0 pending rewards.\\n function _getNewICRFromTroveChange(\\n uint256 _coll,\\n uint256 _debt,\\n uint256 _collChange,\\n bool _isCollIncrease,\\n uint256 _debtChange,\\n bool _isDebtIncrease,\\n uint256 _price\\n ) internal pure returns (uint256) {\\n (uint256 newColl, uint256 newDebt) = _getNewTroveAmounts(\\n _coll,\\n _debt,\\n _collChange,\\n _isCollIncrease,\\n _debtChange,\\n _isDebtIncrease\\n );\\n\\n uint256 newICR = LiquityMath._computeCR(newColl, newDebt, _price);\\n return newICR;\\n }\\n\\n function _getNewTroveAmounts(\\n uint256 _coll,\\n uint256 _debt,\\n uint256 _collChange,\\n bool _isCollIncrease,\\n uint256 _debtChange,\\n bool _isDebtIncrease\\n ) internal pure returns (uint256, uint256) {\\n uint256 newColl = _coll;\\n uint256 newDebt = _debt;\\n\\n newColl = _isCollIncrease ? _coll.add(_collChange) : _coll.sub(_collChange);\\n newDebt = _isDebtIncrease ? _debt.add(_debtChange) : _debt.sub(_debtChange);\\n\\n return (newColl, newDebt);\\n }\\n\\n function _getNewTCRFromTroveChange(\\n uint256 _collChange,\\n bool _isCollIncrease,\\n uint256 _debtChange,\\n bool _isDebtIncrease,\\n uint256 _price\\n ) internal view returns (uint256) {\\n uint256 totalColl = getEntireSystemColl();\\n uint256 totalDebt = getEntireSystemDebt();\\n\\n totalColl = _isCollIncrease ? totalColl.add(_collChange) : totalColl.sub(_collChange);\\n totalDebt = _isDebtIncrease ? totalDebt.add(_debtChange) : totalDebt.sub(_debtChange);\\n\\n uint256 newTCR = LiquityMath._computeCR(totalColl, totalDebt, _price);\\n return newTCR;\\n }\\n\\n function getCompositeDebt(uint256 _debt) external view override returns (uint256) {\\n return _getCompositeDebt(_debt);\\n }\\n\\n function BORROWING_FEE_FLOOR() external view override returns (uint256) {\\n return liquityBaseParams.BORROWING_FEE_FLOOR();\\n }\\n\\n function getMassetManager() external view override returns (IMassetManager) {\\n return massetManager;\\n }\\n}\\n\",\"keccak256\":\"0x957479bda38a67e573ea703be0178601a038fad630b4d3a8b6be5b291bf3b641\",\"license\":\"MIT\"},\"contracts/BorrowerOperationsStorage.sol\":{\"content\":\"// SPDX-License-Identifier: MIT\\n\\npragma solidity 0.6.11;\\n\\nimport \\\"./Interfaces/IActivePool.sol\\\";\\nimport \\\"./Interfaces/IBorrowerOperations.sol\\\";\\nimport \\\"./Interfaces/ITroveManager.sol\\\";\\nimport \\\"./Interfaces/IZUSDToken.sol\\\";\\nimport \\\"./Interfaces/ICollSurplusPool.sol\\\";\\nimport \\\"./Interfaces/ISortedTroves.sol\\\";\\nimport \\\"./Interfaces/IZEROStaking.sol\\\";\\nimport \\\"./Interfaces/IFeeDistributor.sol\\\";\\nimport \\\"./Dependencies/Ownable.sol\\\";\\nimport \\\"./Dependencies/Mynt/IMassetManager.sol\\\";\\n\\ncontract BorrowerOperationsStorage is Ownable {\\n string public constant NAME = \\\"BorrowerOperations\\\";\\n\\n // --- Connected contract declarations ---\\n\\n ITroveManager public troveManager;\\n\\n address stabilityPoolAddress;\\n\\n address gasPoolAddress;\\n\\n ICollSurplusPool collSurplusPool;\\n\\n IZEROStaking public zeroStaking;\\n address public zeroStakingAddress;\\n\\n IZUSDToken public zusdToken;\\n\\n // A doubly linked list of Troves, sorted by their collateral ratios\\n ISortedTroves public sortedTroves;\\n\\n IMassetManager public massetManager;\\n IFeeDistributor public feeDistributor;\\n}\\n\",\"keccak256\":\"0x5708a00804a19b3fb47bc20dc2457775228a3d7b09c4f5b33d11c4995fe77c94\",\"license\":\"MIT\"},\"contracts/Dependencies/BaseMath.sol\":{\"content\":\"// SPDX-License-Identifier: MIT\\npragma solidity 0.6.11;\\n\\n\\ncontract BaseMath {\\n uint constant public DECIMAL_PRECISION = 1e18;\\n}\\n\",\"keccak256\":\"0x7e1369ca5cb09e818e345a2def19a261401f79c985a6030b55b7311dd6f53be4\",\"license\":\"MIT\"},\"contracts/Dependencies/CheckContract.sol\":{\"content\":\"// SPDX-License-Identifier: MIT\\n\\npragma solidity 0.6.11;\\n\\n\\ncontract CheckContract {\\n /**\\n * @dev Check that the account is an already deployed non-destroyed contract.\\n * See: https://github.com/OpenZeppelin/openzeppelin-contracts/blob/master/contracts/utils/Address.sol#L12\\n */\\n function checkContract(address _account) internal view {\\n require(_account != address(0), \\\"Account cannot be zero address\\\");\\n\\n uint256 size;\\n // solhint-disable-next-line no-inline-assembly\\n assembly { size := extcodesize(_account) }\\n require(size > 0, \\\"Account code size cannot be zero\\\");\\n }\\n}\\n\",\"keccak256\":\"0x4c7dc4d0197c27ebc7de671b00458a9ff45f57223aeb520e6ddd2eb6d2d89e5c\",\"license\":\"MIT\"},\"contracts/Dependencies/IERC20.sol\":{\"content\":\"// SPDX-License-Identifier: MIT\\n\\npragma solidity 0.6.11;\\n\\n/**\\n * Based on the OpenZeppelin IER20 interface:\\n * https://github.com/OpenZeppelin/openzeppelin-contracts/blob/master/contracts/token/ERC20/IERC20.sol\\n *\\n * @dev Interface of the ERC20 standard as defined in the EIP.\\n */\\ninterface IERC20 {\\n /**\\n * @dev Returns the amount of tokens in existence.\\n */\\n function totalSupply() external view returns (uint256);\\n\\n /**\\n * @dev Returns the amount of tokens owned by `account`.\\n */\\n function balanceOf(address account) external view returns (uint256);\\n\\n /**\\n * @dev Moves `amount` tokens from the caller's account to `recipient`.\\n *\\n * Returns a boolean value indicating whether the operation succeeded.\\n *\\n * Emits a {Transfer} event.\\n */\\n function transfer(address recipient, uint256 amount) external returns (bool);\\n\\n /**\\n * @dev Returns the remaining number of tokens that `spender` will be\\n * allowed to spend on behalf of `owner` through {transferFrom}. This is\\n * zero by default.\\n *\\n * This value changes when {approve} or {transferFrom} are called.\\n */\\n function allowance(address owner, address spender) external view returns (uint256);\\n function increaseAllowance(address spender, uint256 addedValue) external returns (bool);\\n function decreaseAllowance(address spender, uint256 subtractedValue) external returns (bool);\\n\\n /**\\n * @dev Sets `amount` as the allowance of `spender` over the caller's tokens.\\n *\\n * Returns a boolean value indicating whether the operation succeeded.\\n *\\n * IMPORTANT: Beware that changing an allowance with this method brings the risk\\n * that someone may use both the old and the new allowance by unfortunate\\n * transaction ordering. One possible solution to mitigate this race\\n * condition is to first reduce the spender's allowance to 0 and set the\\n * desired value afterwards:\\n * https://github.com/ethereum/EIPs/issues/20#issuecomment-263524729\\n *\\n * Emits an {Approval} event.\\n */\\n function approve(address spender, uint256 amount) external returns (bool);\\n\\n /**\\n * @dev Moves `amount` tokens from `sender` to `recipient` using the\\n * allowance mechanism. `amount` is then deducted from the caller's\\n * allowance.\\n *\\n * Returns a boolean value indicating whether the operation succeeded.\\n *\\n * Emits a {Transfer} event.\\n */\\n function transferFrom(address sender, address recipient, uint256 amount) external returns (bool);\\n\\n function name() external view returns (string memory);\\n function symbol() external view returns (string memory);\\n function decimals() external view returns (uint8);\\n \\n /**\\n * @dev Emitted when `value` tokens are moved from one account (`from`) to\\n * another (`to`).\\n *\\n * Note that `value` may be zero.\\n */\\n event Transfer(address indexed from, address indexed to, uint256 value);\\n\\n /**\\n * @dev Emitted when the allowance of a `spender` for an `owner` is set by\\n * a call to {approve}. `value` is the new allowance.\\n */\\n event Approval(address indexed owner, address indexed spender, uint256 value);\\n}\",\"keccak256\":\"0xe0b2473eba89df8d27d7cea2a99fce788c212f3fd393c9508e449e51a3f220fa\",\"license\":\"MIT\"},\"contracts/Dependencies/IERC2612.sol\":{\"content\":\"// SPDX-License-Identifier: MIT\\n\\npragma solidity 0.6.11;\\n\\n/**\\n * @dev Interface of the ERC2612 standard as defined in the EIP.\\n *\\n * Adds the {permit} method, which can be used to change one's\\n * {IERC20-allowance} without having to send a transaction, by signing a\\n * message. This allows users to spend tokens without having to hold Ether.\\n *\\n * See https://eips.ethereum.org/EIPS/eip-2612.\\n * \\n * Code adapted from https://github.com/OpenZeppelin/openzeppelin-contracts/pull/2237/\\n */\\ninterface IERC2612 {\\n /**\\n * @dev Sets `amount` as the allowance of `spender` over `owner`'s tokens,\\n * given `owner`'s signed approval.\\n *\\n * IMPORTANT: The same issues {IERC20-approve} has related to transaction\\n * ordering also apply here.\\n *\\n * Emits an {Approval} event.\\n *\\n * Requirements:\\n *\\n * - `owner` cannot be the zero address.\\n * - `spender` cannot be the zero address.\\n * - `deadline` must be a timestamp in the future.\\n * - `v`, `r` and `s` must be a valid `secp256k1` signature from `owner`\\n * over the EIP712-formatted function arguments.\\n * - the signature must use ``owner``'s current nonce (see {nonces}).\\n *\\n * For more information on the signature format, see the\\n * https://eips.ethereum.org/EIPS/eip-2612#specification[relevant EIP\\n * section].\\n */\\n function permit(address owner, address spender, uint256 amount, \\n uint256 deadline, uint8 v, bytes32 r, bytes32 s) external;\\n \\n /**\\n * @dev Returns the current ERC2612 nonce for `owner`. This value must be\\n * included whenever a signature is generated for {permit}.\\n *\\n * Every successful call to {permit} increases `owner`'s nonce by one. This\\n * prevents a signature from being used multiple times.\\n *\\n * `owner` can limit the time a Permit is valid for by setting `deadline` to \\n * a value in the near future. The deadline argument can be set to uint(-1) to \\n * create Permits that effectively never expire.\\n */\\n function nonces(address owner) external view returns (uint256);\\n \\n function version() external view returns (string memory);\\n function permitTypeHash() external view returns (bytes32);\\n function domainSeparator() external view returns (bytes32);\\n}\\n\",\"keccak256\":\"0xd376458452f8b480bfea549637bd71d3f9eb1f12e9d59d1beff373417462d67f\",\"license\":\"MIT\"},\"contracts/Dependencies/LiquityBase.sol\":{\"content\":\"// SPDX-License-Identifier: MIT\\n\\npragma solidity 0.6.11;\\n\\nimport \\\"./BaseMath.sol\\\";\\nimport \\\"./LiquityMath.sol\\\";\\nimport \\\"../Interfaces/IActivePool.sol\\\";\\nimport \\\"../Interfaces/IDefaultPool.sol\\\";\\nimport \\\"../Interfaces/IPriceFeed.sol\\\";\\nimport \\\"../Interfaces/ILiquityBase.sol\\\";\\nimport \\\"../Interfaces/ILiquityBaseParams.sol\\\";\\n\\n/**\\n * Base contract for TroveManager, BorrowerOperations and StabilityPool. Contains global system constants and\\n * common functions.\\n */\\ncontract LiquityBase is BaseMath, ILiquityBase {\\n using SafeMath for uint256;\\n\\n uint256 public constant _100pct = 1000000000000000000; // 1e18 == 100%\\n\\n /// Amount of ZUSD to be locked in gas pool on opening troves\\n uint256 public constant ZUSD_GAS_COMPENSATION = 20e18;\\n\\n /// Minimum amount of net ZUSD debt a trove must have\\n uint256 public constant MIN_NET_DEBT = 180e18;\\n\\n IActivePool public activePool;\\n\\n IDefaultPool public defaultPool;\\n\\n IPriceFeed public override priceFeed;\\n\\n ILiquityBaseParams public override liquityBaseParams;\\n\\n // --- Gas compensation functions ---\\n\\n // Returns the composite debt (drawn debt + gas compensation) of a trove, for the purpose of ICR calculation\\n function _getCompositeDebt(uint256 _debt) internal pure returns (uint256) {\\n return _debt.add(ZUSD_GAS_COMPENSATION);\\n }\\n\\n function _getNetDebt(uint256 _debt) internal pure returns (uint256) {\\n return _debt.sub(ZUSD_GAS_COMPENSATION);\\n }\\n\\n /// Return the amount of ETH to be drawn from a trove's collateral and sent as gas compensation.\\n function _getCollGasCompensation(uint256 _entireColl) internal view returns (uint256) {\\n return _entireColl / liquityBaseParams.PERCENT_DIVISOR();\\n }\\n\\n function getEntireSystemColl() public view returns (uint256 entireSystemColl) {\\n uint256 activeColl = activePool.getETH();\\n uint256 liquidatedColl = defaultPool.getETH();\\n\\n return activeColl.add(liquidatedColl);\\n }\\n\\n function getEntireSystemDebt() public view returns (uint256 entireSystemDebt) {\\n uint256 activeDebt = activePool.getZUSDDebt();\\n uint256 closedDebt = defaultPool.getZUSDDebt();\\n\\n return activeDebt.add(closedDebt);\\n }\\n\\n function _getTCR(uint256 _price) internal view returns (uint256 TCR) {\\n uint256 entireSystemColl = getEntireSystemColl();\\n uint256 entireSystemDebt = getEntireSystemDebt();\\n\\n TCR = LiquityMath._computeCR(entireSystemColl, entireSystemDebt, _price);\\n\\n return TCR;\\n }\\n\\n function _checkRecoveryMode(uint256 _price) internal view returns (bool) {\\n uint256 TCR = _getTCR(_price);\\n\\n return TCR < liquityBaseParams.CCR();\\n }\\n\\n function _requireUserAcceptsFee(\\n uint256 _fee,\\n uint256 _amount,\\n uint256 _maxFeePercentage\\n ) internal pure {\\n uint256 feePercentage = _fee.mul(DECIMAL_PRECISION).div(_amount);\\n require(feePercentage <= _maxFeePercentage, \\\"Fee exceeded provided maximum\\\");\\n }\\n}\\n\",\"keccak256\":\"0x100b8a1c17caa95f5c9977e88f9263847a1977a365ca0a795753dd74aa1d6d7c\",\"license\":\"MIT\"},\"contracts/Dependencies/LiquityMath.sol\":{\"content\":\"// SPDX-License-Identifier: MIT\\n\\npragma solidity 0.6.11;\\n\\nimport \\\"./SafeMath.sol\\\";\\nimport \\\"./console.sol\\\";\\n\\nlibrary LiquityMath {\\n using SafeMath for uint;\\n\\n uint internal constant DECIMAL_PRECISION = 1e18;\\n\\n /* Precision for Nominal ICR (independent of price). Rationale for the value:\\n *\\n * - Making it \\u201ctoo high\\u201d could lead to overflows.\\n * - Making it \\u201ctoo low\\u201d could lead to an ICR equal to zero, due to truncation from Solidity floor division. \\n *\\n * This value of 1e20 is chosen for safety: the NICR will only overflow for numerator > ~1e39 ETH,\\n * and will only truncate to 0 if the denominator is at least 1e20 times greater than the numerator.\\n *\\n */\\n uint internal constant NICR_PRECISION = 1e20;\\n\\n function _min(uint _a, uint _b) internal pure returns (uint) {\\n return (_a < _b) ? _a : _b;\\n }\\n\\n function _max(uint _a, uint _b) internal pure returns (uint) {\\n return (_a >= _b) ? _a : _b;\\n }\\n\\n /* \\n * Multiply two decimal numbers and use normal rounding rules:\\n * -round product up if 19'th mantissa digit >= 5\\n * -round product down if 19'th mantissa digit < 5\\n *\\n * Used only inside the exponentiation, _decPow().\\n */\\n function decMul(uint x, uint y) internal pure returns (uint decProd) {\\n uint prod_xy = x.mul(y);\\n\\n decProd = prod_xy.add(DECIMAL_PRECISION / 2).div(DECIMAL_PRECISION);\\n }\\n\\n /* \\n * _decPow: Exponentiation function for 18-digit decimal base, and integer exponent n.\\n * \\n * Uses the efficient \\\"exponentiation by squaring\\\" algorithm. O(log(n)) complexity. \\n * \\n * Called by two functions that represent time in units of minutes:\\n * 1) TroveManager._calcDecayedBaseRate\\n * 2) CommunityIssuance._getCumulativeIssuanceFraction \\n * \\n * The exponent is capped to avoid reverting due to overflow. The cap 525600000 equals\\n * \\\"minutes in 1000 years\\\": 60 * 24 * 365 * 1000\\n * \\n * If a period of > 1000 years is ever used as an exponent in either of the above functions, the result will be\\n * negligibly different from just passing the cap, since: \\n *\\n * In function 1), the decayed base rate will be 0 for 1000 years or > 1000 years\\n * In function 2), the difference in tokens issued at 1000 years and any time > 1000 years, will be negligible\\n */\\n function _decPow(uint _base, uint _minutes) internal pure returns (uint) {\\n \\n if (_minutes > 525600000) {_minutes = 525600000;} // cap to avoid overflow\\n \\n if (_minutes == 0) {return DECIMAL_PRECISION;}\\n\\n uint y = DECIMAL_PRECISION;\\n uint x = _base;\\n uint n = _minutes;\\n\\n // Exponentiation-by-squaring\\n while (n > 1) {\\n if (n % 2 == 0) {\\n x = decMul(x, x);\\n n = n.div(2);\\n } else { // if (n % 2 != 0)\\n y = decMul(x, y);\\n x = decMul(x, x);\\n n = (n.sub(1)).div(2);\\n }\\n }\\n\\n return decMul(x, y);\\n }\\n\\n function _getAbsoluteDifference(uint _a, uint _b) internal pure returns (uint) {\\n return (_a >= _b) ? _a.sub(_b) : _b.sub(_a);\\n }\\n\\n function _computeNominalCR(uint _coll, uint _debt) internal pure returns (uint) {\\n if (_debt > 0) {\\n return _coll.mul(NICR_PRECISION).div(_debt);\\n }\\n // Return the maximal value for uint256 if the Trove has a debt of 0. Represents \\\"infinite\\\" CR.\\n else { // if (_debt == 0)\\n return 2**256 - 1;\\n }\\n }\\n\\n function _computeCR(uint _coll, uint _debt, uint _price) internal pure returns (uint) {\\n if (_debt > 0) {\\n uint newCollRatio = _coll.mul(_price).div(_debt);\\n\\n return newCollRatio;\\n }\\n // Return the maximal value for uint256 if the Trove has a debt of 0. Represents \\\"infinite\\\" CR.\\n else { // if (_debt == 0)\\n return 2**256 - 1; \\n }\\n }\\n}\\n\",\"keccak256\":\"0x7a95ed70d8937e0896c054b433ad0dfc87a9cfd028cae1694098e9d5d68127cd\",\"license\":\"MIT\"},\"contracts/Dependencies/Mynt/IDLLR.sol\":{\"content\":\"// SPDX-License-Identifier: MIT\\n\\npragma solidity 0.6.11;\\nimport \\\"../IERC20.sol\\\";\\n\\n/// Public interface for Sovryn Dollar DLLR (Meta Asset Token of Sovryn Mynt) exposing specific functions\\ninterface IDLLR is IERC20 {\\n /**\\n * @notice Only owner can transfer the token.\\n * @notice destination cannot be:\\n * - zero (0x0) address.\\n *\\n * @param _recipient Recipient of the token.\\n * @param _amount The amount of token that will be transferred.\\n *\\n * @return true / false.\\n */\\n function transfer(address _recipient, uint256 _amount) external override returns (bool);\\n\\n /**\\n * @notice Only owner who can transfer the token.\\n * @notice destination cannot be:\\n * - zero (0x0) address.\\n *\\n * @param _from Sender of the token.\\n * @param _to Recipient of the token.\\n * @param _amount The amount of token that will be transferred.\\n *\\n * @return true / false.\\n */\\n function transferFrom(\\n address _from,\\n address _to,\\n uint256 _amount\\n ) external override returns (bool);\\n\\n /**\\n * @notice transfer utilizing EIP-2612, to reduce the additional sending transaction for doing the approval to the spender.\\n *\\n * @notice destination cannot be:\\n * - zero (0x0) address.\\n *\\n * @dev By calling this function, the allowance will be overwritten by the total amount.\\n *\\n * @param _from Sender of the token.\\n * @param _to Recipient of the token.\\n * @param _amount The amount of the token that will be transferred.\\n * @param _deadline Expiration time of the signature.\\n * @param _v Last 1 byte of ECDSA signature.\\n * @param _r First 32 bytes of ECDSA signature.\\n * @param _s 32 bytes after _r in ECDSA signature.\\n */\\n function transferWithPermit(\\n address _from,\\n address _to,\\n uint256 _amount,\\n uint256 _deadline,\\n uint8 _v,\\n bytes32 _r,\\n bytes32 _s\\n ) external;\\n\\n /**\\n * @notice Approves and then calls the receiving contract.\\n * Useful to encapsulate sending tokens to a contract in one call.\\n * Solidity has no native way to send tokens to contracts.\\n * ERC-20 tokens require approval to be spent by third parties, such as a contract in this case.\\n * @param _spender The contract address to spend the tokens.\\n * @param _amount The amount of tokens to be sent.\\n * @param _data Parameters for the contract call, such as endpoint signature.\\n */\\n function approveAndCall(address _spender, uint256 _amount, bytes calldata _data) external;\\n}\\n\",\"keccak256\":\"0x1fcc09759323769fcaa430bef598cf08a9f5e98ce6a9bdd6faa79d8b7b6ecce2\",\"license\":\"MIT\"},\"contracts/Dependencies/Mynt/IMassetManager.sol\":{\"content\":\"// SPDX-License-Identifier: MIT\\n\\npragma solidity 0.6.11;\\n\\ninterface IMassetManager {\\n struct PermitParams {\\n uint256 deadline;\\n uint8 v;\\n bytes32 r;\\n bytes32 s;\\n }\\n\\n function mintTo(\\n address _bAsset,\\n uint256 _bAssetQuantity,\\n address _recipient\\n ) external returns (uint256);\\n\\n function getToken() external view returns (address);\\n\\n /**\\n * @dev Credits a recipient with a certain quantity of selected bAsset, in exchange for burning the\\n * relative mAsset quantity from the sender. Sender also incurs a small fee, if any.\\n * @param _bAsset Address of the bAsset to redeem.\\n * @param _massetQuantity Units of the masset to redeem.\\n * @param _recipient Address to credit with withdrawn bAssets.\\n * @return massetRedeemed Relative number of mAsset units burned to pay for the bAssets.\\n */\\n function redeemTo(\\n address _bAsset,\\n uint256 _massetQuantity,\\n address _recipient\\n ) external returns (uint256 massetRedeemed);\\n}\\n\",\"keccak256\":\"0x3e8de462d45e8f07ef83b6b6e7eb90a5d09f21d3bcbb1225e8f781488ab4a771\",\"license\":\"MIT\"},\"contracts/Dependencies/Mynt/MyntLib.sol\":{\"content\":\"// SPDX-License-Identifier: MIT\\n\\npragma solidity 0.6.11;\\n\\nimport \\\"./IMassetManager.sol\\\";\\nimport \\\"./IDLLR.sol\\\";\\nimport \\\"../SafeMath.sol\\\";\\nimport { IPermit2, ISignatureTransfer } from \\\"../../Interfaces/IPermit2.sol\\\";\\n\\nlibrary MyntLib {\\n using SafeMath for uint256;\\n\\n /**\\n * @notice Convert DLLR _dllrAmount to _toToken utilizing EIP-2612 permit\\n * to reduce the additional sending transaction for doing the approval to the spender.\\n *\\n * @dev WARNING!! Do not us this lib function on RSK network because there is a griefing attack issue in the DLLR contract.\\n *\\n * @param _myntMassetManager Mynt protocol MassetManager contract address - needed for integration\\n * @param _dllrAmount The amount of the DLLR (mAsset) token that will be burned in exchange for _toToken\\n * @param _toToken bAsset token address to withdraw from DLLR\\n * @param _permitParams EIP-2612 permit params:\\n * _deadline Expiration time of the signature.\\n * _v Last 1 byte of ECDSA signature.\\n * _r First 32 bytes of ECDSA signature.\\n * _s 32 bytes after _r in ECDSA signature.\\n * @return redeemed ZUSD amount\\n */\\n function redeemZusdFromDllrWithPermit(\\n IMassetManager _myntMassetManager,\\n uint256 _dllrAmount,\\n address _toToken,\\n IMassetManager.PermitParams calldata _permitParams\\n ) internal returns (uint256) {\\n IDLLR dllr = IDLLR(_myntMassetManager.getToken());\\n uint256 thisBalanceBefore = dllr.balanceOf(address(this));\\n address thisAddress = address(this);\\n dllr.transferWithPermit(\\n msg.sender,\\n thisAddress,\\n _dllrAmount,\\n _permitParams.deadline,\\n _permitParams.v,\\n _permitParams.r,\\n _permitParams.s\\n );\\n require(\\n dllr.balanceOf(thisAddress).sub(thisBalanceBefore) == _dllrAmount,\\n \\\"DLLR transferred amount validation failed\\\"\\n );\\n return _myntMassetManager.redeemTo(_toToken, _dllrAmount, msg.sender);\\n }\\n\\n /**\\n * @notice Convert DLLR _dllrAmount to _toToken utilizing EIP-2612 permit via a canonical Permit2 contract\\n * to reduce the additional sending transaction for doing the approval to the spender.\\n *\\n * @param _myntMassetManager Mynt protocol MassetManager contract address - needed for integration\\n * @param _toToken bAsset token address to withdraw from DLLR\\n * @param _permit permit data, in form of PermitTransferFrom struct.\\n * @param _permit2 permit2 contract address\\n * @param _signature signatue of the permit data.\\n * @return redeemed ZUSD amount\\n */\\n function redeemZusdFromDllrWithPermit2(\\n IMassetManager _myntMassetManager,\\n address _toToken,\\n ISignatureTransfer.PermitTransferFrom memory _permit,\\n IPermit2 _permit2,\\n bytes calldata _signature\\n ) internal returns (uint256) {\\n IDLLR dllr = IDLLR(_myntMassetManager.getToken());\\n uint256 thisBalanceBefore = dllr.balanceOf(address(this));\\n address thisAddress = address(this);\\n uint256 _dllrAmount = _permit.permitted.amount;\\n\\n _permit2.permitTransferFrom(\\n _permit,\\n _generateTransferDetails(thisAddress, _dllrAmount),\\n msg.sender,\\n _signature\\n );\\n\\n require(\\n dllr.balanceOf(thisAddress).sub(thisBalanceBefore) == _dllrAmount,\\n \\\"DLLR transferred amount validation failed\\\"\\n );\\n return _myntMassetManager.redeemTo(_toToken, _dllrAmount, msg.sender);\\n }\\n\\n /**\\n * @dev view function to construct SignatureTransferDetails struct to be used by Permit2\\n *\\n * @param _to ultimate recipient\\n * @param _amount amount of transfer\\n *\\n * @return SignatureTransferDetails struct object \\n */\\n function _generateTransferDetails(address _to, uint256 _amount) private view returns (ISignatureTransfer.SignatureTransferDetails memory) {\\n ISignatureTransfer.SignatureTransferDetails memory transferDetails = ISignatureTransfer.SignatureTransferDetails({\\n to: _to,\\n requestedAmount: _amount\\n });\\n\\n return transferDetails;\\n }\\n}\\n\",\"keccak256\":\"0x6f0c78d8c4ea0b5b5e6bbe8d78374b9d2d367ffc07054dde36b9cbe2061944b6\",\"license\":\"MIT\"},\"contracts/Dependencies/Ownable.sol\":{\"content\":\"// SPDX-License-Identifier: MIT\\n\\npragma solidity 0.6.11;\\n\\n/**\\n * Based on OpenZeppelin's Ownable contract:\\n * https://github.com/OpenZeppelin/openzeppelin-contracts/blob/master/contracts/access/Ownable.sol\\n *\\n * @dev Contract module which provides a basic access control mechanism, where\\n * there is an account (an owner) that can be granted exclusive access to\\n * specific functions.\\n *\\n * This module is used through inheritance. It will make available the modifier\\n * `onlyOwner`, which can be applied to your functions to restrict their use to\\n * the owner.\\n */\\ncontract Ownable {\\n bytes32 private constant KEY_OWNER = keccak256(\\\"key.ownable.owner\\\");\\n\\n event OwnershipTransferred(address indexed previousOwner, address indexed newOwner);\\n\\n /**\\n * @dev Initializes the contract setting the deployer as the initial owner.\\n */\\n constructor () internal {\\n _setOwner(msg.sender);\\n }\\n\\n /**\\n * @dev Throws if called by any account other than the owner.\\n */\\n modifier onlyOwner() {\\n require(msg.sender == getOwner(), \\\"Ownable:: access denied\\\");\\n _;\\n }\\n\\n /**\\n * @notice Set address of the owner.\\n * @param _owner Address of the owner.\\n * */\\n function _setOwner(address _owner) internal {\\n require(_owner != address(0), \\\"Ownable::setOwner: invalid address\\\");\\n emit OwnershipTransferred(getOwner(), _owner);\\n\\n bytes32 key = KEY_OWNER;\\n assembly {\\n sstore(key, _owner)\\n }\\n }\\n\\n /**\\n * @notice Set address of the owner (only owner can call this function)\\n * @param _owner Address of the owner.\\n * */\\n function setOwner(address _owner) public onlyOwner {\\n _setOwner(_owner);\\n }\\n\\n /**\\n * @notice Return address of the owner.\\n * @return _owner Address of the owner.\\n * */\\n function getOwner() public view returns (address _owner) {\\n bytes32 key = KEY_OWNER;\\n assembly {\\n _owner := sload(key)\\n }\\n }\\n}\\n\",\"keccak256\":\"0xb5fc626e0b227fc0feb1d84440585015a0a5f586547d298534a604dd113efec6\",\"license\":\"MIT\"},\"contracts/Dependencies/SafeMath.sol\":{\"content\":\"// SPDX-License-Identifier: MIT\\n\\npragma solidity 0.6.11;\\n\\n/**\\n * Based on OpenZeppelin's SafeMath:\\n * https://github.com/OpenZeppelin/openzeppelin-contracts/blob/master/contracts/math/SafeMath.sol\\n *\\n * @dev Wrappers over Solidity's arithmetic operations with added overflow\\n * checks.\\n *\\n * Arithmetic operations in Solidity wrap on overflow. This can easily result\\n * in bugs, because programmers usually assume that an overflow raises an\\n * error, which is the standard behavior in high level programming languages.\\n * `SafeMath` restores this intuition by reverting the transaction when an\\n * operation overflows.\\n *\\n * Using this library instead of the unchecked operations eliminates an entire\\n * class of bugs, so it's recommended to use it always.\\n */\\nlibrary SafeMath {\\n /**\\n * @dev Returns the addition of two unsigned integers, reverting on\\n * overflow.\\n *\\n * Counterpart to Solidity's `+` operator.\\n *\\n * Requirements:\\n * - Addition cannot overflow.\\n */\\n function add(uint256 a, uint256 b) internal pure returns (uint256) {\\n uint256 c = a + b;\\n require(c >= a, \\\"SafeMath: addition overflow\\\");\\n\\n return c;\\n }\\n\\n /**\\n * @dev Returns the subtraction of two unsigned integers, reverting on\\n * overflow (when the result is negative).\\n *\\n * Counterpart to Solidity's `-` operator.\\n *\\n * Requirements:\\n * - Subtraction cannot overflow.\\n */\\n function sub(uint256 a, uint256 b) internal pure returns (uint256) {\\n return sub(a, b, \\\"SafeMath: subtraction overflow\\\");\\n }\\n\\n /**\\n * @dev Returns the subtraction of two unsigned integers, reverting with custom message on\\n * overflow (when the result is negative).\\n *\\n * Counterpart to Solidity's `-` operator.\\n *\\n * Requirements:\\n * - Subtraction cannot overflow.\\n *\\n * _Available since v2.4.0._\\n */\\n function sub(uint256 a, uint256 b, string memory errorMessage) internal pure returns (uint256) {\\n require(b <= a, errorMessage);\\n uint256 c = a - b;\\n\\n return c;\\n }\\n\\n /**\\n * @dev Returns the multiplication of two unsigned integers, reverting on\\n * overflow.\\n *\\n * Counterpart to Solidity's `*` operator.\\n *\\n * Requirements:\\n * - Multiplication cannot overflow.\\n */\\n function mul(uint256 a, uint256 b) internal pure returns (uint256) {\\n // Gas optimization: this is cheaper than requiring 'a' not being zero, but the\\n // benefit is lost if 'b' is also tested.\\n // See: https://github.com/OpenZeppelin/openzeppelin-contracts/pull/522\\n if (a == 0) {\\n return 0;\\n }\\n\\n uint256 c = a * b;\\n require(c / a == b, \\\"SafeMath: multiplication overflow\\\");\\n\\n return c;\\n }\\n\\n /**\\n * @dev Returns the integer division of two unsigned integers. Reverts on\\n * division by zero. The result is rounded towards zero.\\n *\\n * Counterpart to Solidity's `/` operator. Note: this function uses a\\n * `revert` opcode (which leaves remaining gas untouched) while Solidity\\n * uses an invalid opcode to revert (consuming all remaining gas).\\n *\\n * Requirements:\\n * - The divisor cannot be zero.\\n */\\n function div(uint256 a, uint256 b) internal pure returns (uint256) {\\n return div(a, b, \\\"SafeMath: division by zero\\\");\\n }\\n\\n /**\\n * @dev Returns the integer division of two unsigned integers. Reverts with custom message on\\n * division by zero. The result is rounded towards zero.\\n *\\n * Counterpart to Solidity's `/` operator. Note: this function uses a\\n * `revert` opcode (which leaves remaining gas untouched) while Solidity\\n * uses an invalid opcode to revert (consuming all remaining gas).\\n *\\n * Requirements:\\n * - The divisor cannot be zero.\\n *\\n * _Available since v2.4.0._\\n */\\n function div(uint256 a, uint256 b, string memory errorMessage) internal pure returns (uint256) {\\n // Solidity only automatically asserts when dividing by 0\\n require(b > 0, errorMessage);\\n uint256 c = a / b;\\n // assert(a == b * c + a % b); // There is no case in which this doesn't hold\\n\\n return c;\\n }\\n\\n /**\\n * @dev Returns the remainder of dividing two unsigned integers. (unsigned integer modulo),\\n * Reverts when dividing by zero.\\n *\\n * Counterpart to Solidity's `%` operator. This function uses a `revert`\\n * opcode (which leaves remaining gas untouched) while Solidity uses an\\n * invalid opcode to revert (consuming all remaining gas).\\n *\\n * Requirements:\\n * - The divisor cannot be zero.\\n */\\n function mod(uint256 a, uint256 b) internal pure returns (uint256) {\\n return mod(a, b, \\\"SafeMath: modulo by zero\\\");\\n }\\n\\n /**\\n * @dev Returns the remainder of dividing two unsigned integers. (unsigned integer modulo),\\n * Reverts with custom message when dividing by zero.\\n *\\n * Counterpart to Solidity's `%` operator. This function uses a `revert`\\n * opcode (which leaves remaining gas untouched) while Solidity uses an\\n * invalid opcode to revert (consuming all remaining gas).\\n *\\n * Requirements:\\n * - The divisor cannot be zero.\\n *\\n * _Available since v2.4.0._\\n */\\n function mod(uint256 a, uint256 b, string memory errorMessage) internal pure returns (uint256) {\\n require(b != 0, errorMessage);\\n return a % b;\\n }\\n}\\n\",\"keccak256\":\"0x666b890992a066cc791f36c2975cd595d9761a014c654c385ed36ffaf658f3fd\",\"license\":\"MIT\"},\"contracts/Dependencies/console.sol\":{\"content\":\"// SPDX-License-Identifier: MIT\\n\\npragma solidity 0.6.11;\\n\\n// Buidler's helper contract for console logging\\nlibrary console {\\n\\taddress constant CONSOLE_ADDRESS = address(0x000000000000000000636F6e736F6c652e6c6f67);\\n\\n\\tfunction log() internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log()\\\"));\\n\\t\\tignored;\\n\\t}\\tfunction logInt(int p0) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(int)\\\", p0));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction logUint(uint p0) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(uint)\\\", p0));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction logString(string memory p0) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(string)\\\", p0));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction logBool(bool p0) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(bool)\\\", p0));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction logAddress(address p0) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(address)\\\", p0));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction logBytes(bytes memory p0) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(bytes)\\\", p0));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction logByte(byte p0) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(byte)\\\", p0));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction logBytes1(bytes1 p0) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(bytes1)\\\", p0));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction logBytes2(bytes2 p0) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(bytes2)\\\", p0));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction logBytes3(bytes3 p0) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(bytes3)\\\", p0));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction logBytes4(bytes4 p0) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(bytes4)\\\", p0));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction logBytes5(bytes5 p0) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(bytes5)\\\", p0));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction logBytes6(bytes6 p0) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(bytes6)\\\", p0));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction logBytes7(bytes7 p0) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(bytes7)\\\", p0));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction logBytes8(bytes8 p0) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(bytes8)\\\", p0));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction logBytes9(bytes9 p0) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(bytes9)\\\", p0));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction logBytes10(bytes10 p0) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(bytes10)\\\", p0));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction logBytes11(bytes11 p0) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(bytes11)\\\", p0));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction logBytes12(bytes12 p0) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(bytes12)\\\", p0));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction logBytes13(bytes13 p0) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(bytes13)\\\", p0));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction logBytes14(bytes14 p0) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(bytes14)\\\", p0));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction logBytes15(bytes15 p0) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(bytes15)\\\", p0));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction logBytes16(bytes16 p0) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(bytes16)\\\", p0));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction logBytes17(bytes17 p0) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(bytes17)\\\", p0));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction logBytes18(bytes18 p0) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(bytes18)\\\", p0));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction logBytes19(bytes19 p0) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(bytes19)\\\", p0));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction logBytes20(bytes20 p0) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(bytes20)\\\", p0));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction logBytes21(bytes21 p0) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(bytes21)\\\", p0));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction logBytes22(bytes22 p0) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(bytes22)\\\", p0));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction logBytes23(bytes23 p0) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(bytes23)\\\", p0));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction logBytes24(bytes24 p0) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(bytes24)\\\", p0));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction logBytes25(bytes25 p0) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(bytes25)\\\", p0));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction logBytes26(bytes26 p0) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(bytes26)\\\", p0));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction logBytes27(bytes27 p0) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(bytes27)\\\", p0));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction logBytes28(bytes28 p0) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(bytes28)\\\", p0));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction logBytes29(bytes29 p0) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(bytes29)\\\", p0));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction logBytes30(bytes30 p0) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(bytes30)\\\", p0));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction logBytes31(bytes31 p0) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(bytes31)\\\", p0));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction logBytes32(bytes32 p0) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(bytes32)\\\", p0));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(uint p0) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(uint)\\\", p0));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(string memory p0) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(string)\\\", p0));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(bool p0) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(bool)\\\", p0));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(address p0) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(address)\\\", p0));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(uint p0, uint p1) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(uint,uint)\\\", p0, p1));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(uint p0, string memory p1) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(uint,string)\\\", p0, p1));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(uint p0, bool p1) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(uint,bool)\\\", p0, p1));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(uint p0, address p1) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(uint,address)\\\", p0, p1));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(string memory p0, uint p1) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(string,uint)\\\", p0, p1));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(string memory p0, string memory p1) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(string,string)\\\", p0, p1));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(string memory p0, bool p1) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(string,bool)\\\", p0, p1));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(string memory p0, address p1) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(string,address)\\\", p0, p1));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(bool p0, uint p1) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(bool,uint)\\\", p0, p1));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(bool p0, string memory p1) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(bool,string)\\\", p0, p1));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(bool p0, bool p1) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(bool,bool)\\\", p0, p1));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(bool p0, address p1) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(bool,address)\\\", p0, p1));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(address p0, uint p1) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(address,uint)\\\", p0, p1));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(address p0, string memory p1) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(address,string)\\\", p0, p1));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(address p0, bool p1) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(address,bool)\\\", p0, p1));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(address p0, address p1) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(address,address)\\\", p0, p1));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(uint p0, uint p1, uint p2) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(uint,uint,uint)\\\", p0, p1, p2));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(uint p0, uint p1, string memory p2) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(uint,uint,string)\\\", p0, p1, p2));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(uint p0, uint p1, bool p2) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(uint,uint,bool)\\\", p0, p1, p2));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(uint p0, uint p1, address p2) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(uint,uint,address)\\\", p0, p1, p2));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(uint p0, string memory p1, uint p2) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(uint,string,uint)\\\", p0, p1, p2));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(uint p0, string memory p1, string memory p2) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(uint,string,string)\\\", p0, p1, p2));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(uint p0, string memory p1, bool p2) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(uint,string,bool)\\\", p0, p1, p2));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(uint p0, string memory p1, address p2) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(uint,string,address)\\\", p0, p1, p2));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(uint p0, bool p1, uint p2) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(uint,bool,uint)\\\", p0, p1, p2));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(uint p0, bool p1, string memory p2) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(uint,bool,string)\\\", p0, p1, p2));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(uint p0, bool p1, bool p2) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(uint,bool,bool)\\\", p0, p1, p2));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(uint p0, bool p1, address p2) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(uint,bool,address)\\\", p0, p1, p2));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(uint p0, address p1, uint p2) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(uint,address,uint)\\\", p0, p1, p2));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(uint p0, address p1, string memory p2) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(uint,address,string)\\\", p0, p1, p2));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(uint p0, address p1, bool p2) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(uint,address,bool)\\\", p0, p1, p2));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(uint p0, address p1, address p2) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(uint,address,address)\\\", p0, p1, p2));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(string memory p0, uint p1, uint p2) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(string,uint,uint)\\\", p0, p1, p2));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(string memory p0, uint p1, string memory p2) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(string,uint,string)\\\", p0, p1, p2));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(string memory p0, uint p1, bool p2) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(string,uint,bool)\\\", p0, p1, p2));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(string memory p0, uint p1, address p2) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(string,uint,address)\\\", p0, p1, p2));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(string memory p0, string memory p1, uint p2) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(string,string,uint)\\\", p0, p1, p2));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(string memory p0, string memory p1, string memory p2) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(string,string,string)\\\", p0, p1, p2));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(string memory p0, string memory p1, bool p2) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(string,string,bool)\\\", p0, p1, p2));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(string memory p0, string memory p1, address p2) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(string,string,address)\\\", p0, p1, p2));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(string memory p0, bool p1, uint p2) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(string,bool,uint)\\\", p0, p1, p2));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(string memory p0, bool p1, string memory p2) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(string,bool,string)\\\", p0, p1, p2));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(string memory p0, bool p1, bool p2) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(string,bool,bool)\\\", p0, p1, p2));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(string memory p0, bool p1, address p2) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(string,bool,address)\\\", p0, p1, p2));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(string memory p0, address p1, uint p2) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(string,address,uint)\\\", p0, p1, p2));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(string memory p0, address p1, string memory p2) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(string,address,string)\\\", p0, p1, p2));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(string memory p0, address p1, bool p2) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(string,address,bool)\\\", p0, p1, p2));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(string memory p0, address p1, address p2) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(string,address,address)\\\", p0, p1, p2));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(bool p0, uint p1, uint p2) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(bool,uint,uint)\\\", p0, p1, p2));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(bool p0, uint p1, string memory p2) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(bool,uint,string)\\\", p0, p1, p2));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(bool p0, uint p1, bool p2) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(bool,uint,bool)\\\", p0, p1, p2));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(bool p0, uint p1, address p2) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(bool,uint,address)\\\", p0, p1, p2));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(bool p0, string memory p1, uint p2) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(bool,string,uint)\\\", p0, p1, p2));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(bool p0, string memory p1, string memory p2) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(bool,string,string)\\\", p0, p1, p2));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(bool p0, string memory p1, bool p2) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(bool,string,bool)\\\", p0, p1, p2));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(bool p0, string memory p1, address p2) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(bool,string,address)\\\", p0, p1, p2));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(bool p0, bool p1, uint p2) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(bool,bool,uint)\\\", p0, p1, p2));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(bool p0, bool p1, string memory p2) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(bool,bool,string)\\\", p0, p1, p2));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(bool p0, bool p1, bool p2) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(bool,bool,bool)\\\", p0, p1, p2));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(bool p0, bool p1, address p2) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(bool,bool,address)\\\", p0, p1, p2));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(bool p0, address p1, uint p2) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(bool,address,uint)\\\", p0, p1, p2));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(bool p0, address p1, string memory p2) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(bool,address,string)\\\", p0, p1, p2));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(bool p0, address p1, bool p2) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(bool,address,bool)\\\", p0, p1, p2));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(bool p0, address p1, address p2) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(bool,address,address)\\\", p0, p1, p2));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(address p0, uint p1, uint p2) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(address,uint,uint)\\\", p0, p1, p2));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(address p0, uint p1, string memory p2) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(address,uint,string)\\\", p0, p1, p2));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(address p0, uint p1, bool p2) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(address,uint,bool)\\\", p0, p1, p2));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(address p0, uint p1, address p2) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(address,uint,address)\\\", p0, p1, p2));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(address p0, string memory p1, uint p2) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(address,string,uint)\\\", p0, p1, p2));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(address p0, string memory p1, string memory p2) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(address,string,string)\\\", p0, p1, p2));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(address p0, string memory p1, bool p2) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(address,string,bool)\\\", p0, p1, p2));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(address p0, string memory p1, address p2) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(address,string,address)\\\", p0, p1, p2));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(address p0, bool p1, uint p2) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(address,bool,uint)\\\", p0, p1, p2));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(address p0, bool p1, string memory p2) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(address,bool,string)\\\", p0, p1, p2));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(address p0, bool p1, bool p2) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(address,bool,bool)\\\", p0, p1, p2));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(address p0, bool p1, address p2) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(address,bool,address)\\\", p0, p1, p2));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(address p0, address p1, uint p2) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(address,address,uint)\\\", p0, p1, p2));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(address p0, address p1, string memory p2) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(address,address,string)\\\", p0, p1, p2));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(address p0, address p1, bool p2) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(address,address,bool)\\\", p0, p1, p2));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(address p0, address p1, address p2) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(address,address,address)\\\", p0, p1, p2));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(uint p0, uint p1, uint p2, uint p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(uint,uint,uint,uint)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(uint p0, uint p1, uint p2, string memory p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(uint,uint,uint,string)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(uint p0, uint p1, uint p2, bool p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(uint,uint,uint,bool)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(uint p0, uint p1, uint p2, address p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(uint,uint,uint,address)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(uint p0, uint p1, string memory p2, uint p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(uint,uint,string,uint)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(uint p0, uint p1, string memory p2, string memory p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(uint,uint,string,string)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(uint p0, uint p1, string memory p2, bool p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(uint,uint,string,bool)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(uint p0, uint p1, string memory p2, address p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(uint,uint,string,address)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(uint p0, uint p1, bool p2, uint p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(uint,uint,bool,uint)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(uint p0, uint p1, bool p2, string memory p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(uint,uint,bool,string)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(uint p0, uint p1, bool p2, bool p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(uint,uint,bool,bool)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(uint p0, uint p1, bool p2, address p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(uint,uint,bool,address)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(uint p0, uint p1, address p2, uint p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(uint,uint,address,uint)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(uint p0, uint p1, address p2, string memory p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(uint,uint,address,string)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(uint p0, uint p1, address p2, bool p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(uint,uint,address,bool)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(uint p0, uint p1, address p2, address p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(uint,uint,address,address)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(uint p0, string memory p1, uint p2, uint p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(uint,string,uint,uint)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(uint p0, string memory p1, uint p2, string memory p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(uint,string,uint,string)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(uint p0, string memory p1, uint p2, bool p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(uint,string,uint,bool)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(uint p0, string memory p1, uint p2, address p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(uint,string,uint,address)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(uint p0, string memory p1, string memory p2, uint p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(uint,string,string,uint)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(uint p0, string memory p1, string memory p2, string memory p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(uint,string,string,string)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(uint p0, string memory p1, string memory p2, bool p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(uint,string,string,bool)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(uint p0, string memory p1, string memory p2, address p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(uint,string,string,address)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(uint p0, string memory p1, bool p2, uint p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(uint,string,bool,uint)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(uint p0, string memory p1, bool p2, string memory p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(uint,string,bool,string)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(uint p0, string memory p1, bool p2, bool p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(uint,string,bool,bool)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(uint p0, string memory p1, bool p2, address p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(uint,string,bool,address)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(uint p0, string memory p1, address p2, uint p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(uint,string,address,uint)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(uint p0, string memory p1, address p2, string memory p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(uint,string,address,string)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(uint p0, string memory p1, address p2, bool p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(uint,string,address,bool)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(uint p0, string memory p1, address p2, address p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(uint,string,address,address)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(uint p0, bool p1, uint p2, uint p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(uint,bool,uint,uint)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(uint p0, bool p1, uint p2, string memory p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(uint,bool,uint,string)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(uint p0, bool p1, uint p2, bool p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(uint,bool,uint,bool)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(uint p0, bool p1, uint p2, address p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(uint,bool,uint,address)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(uint p0, bool p1, string memory p2, uint p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(uint,bool,string,uint)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(uint p0, bool p1, string memory p2, string memory p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(uint,bool,string,string)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(uint p0, bool p1, string memory p2, bool p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(uint,bool,string,bool)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(uint p0, bool p1, string memory p2, address p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(uint,bool,string,address)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(uint p0, bool p1, bool p2, uint p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(uint,bool,bool,uint)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(uint p0, bool p1, bool p2, string memory p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(uint,bool,bool,string)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(uint p0, bool p1, bool p2, bool p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(uint,bool,bool,bool)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(uint p0, bool p1, bool p2, address p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(uint,bool,bool,address)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(uint p0, bool p1, address p2, uint p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(uint,bool,address,uint)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(uint p0, bool p1, address p2, string memory p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(uint,bool,address,string)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(uint p0, bool p1, address p2, bool p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(uint,bool,address,bool)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(uint p0, bool p1, address p2, address p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(uint,bool,address,address)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(uint p0, address p1, uint p2, uint p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(uint,address,uint,uint)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(uint p0, address p1, uint p2, string memory p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(uint,address,uint,string)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(uint p0, address p1, uint p2, bool p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(uint,address,uint,bool)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(uint p0, address p1, uint p2, address p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(uint,address,uint,address)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(uint p0, address p1, string memory p2, uint p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(uint,address,string,uint)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(uint p0, address p1, string memory p2, string memory p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(uint,address,string,string)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(uint p0, address p1, string memory p2, bool p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(uint,address,string,bool)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(uint p0, address p1, string memory p2, address p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(uint,address,string,address)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(uint p0, address p1, bool p2, uint p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(uint,address,bool,uint)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(uint p0, address p1, bool p2, string memory p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(uint,address,bool,string)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(uint p0, address p1, bool p2, bool p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(uint,address,bool,bool)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(uint p0, address p1, bool p2, address p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(uint,address,bool,address)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(uint p0, address p1, address p2, uint p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(uint,address,address,uint)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(uint p0, address p1, address p2, string memory p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(uint,address,address,string)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(uint p0, address p1, address p2, bool p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(uint,address,address,bool)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(uint p0, address p1, address p2, address p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(uint,address,address,address)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(string memory p0, uint p1, uint p2, uint p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(string,uint,uint,uint)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(string memory p0, uint p1, uint p2, string memory p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(string,uint,uint,string)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(string memory p0, uint p1, uint p2, bool p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(string,uint,uint,bool)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(string memory p0, uint p1, uint p2, address p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(string,uint,uint,address)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(string memory p0, uint p1, string memory p2, uint p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(string,uint,string,uint)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(string memory p0, uint p1, string memory p2, string memory p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(string,uint,string,string)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(string memory p0, uint p1, string memory p2, bool p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(string,uint,string,bool)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(string memory p0, uint p1, string memory p2, address p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(string,uint,string,address)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(string memory p0, uint p1, bool p2, uint p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(string,uint,bool,uint)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(string memory p0, uint p1, bool p2, string memory p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(string,uint,bool,string)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(string memory p0, uint p1, bool p2, bool p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(string,uint,bool,bool)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(string memory p0, uint p1, bool p2, address p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(string,uint,bool,address)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(string memory p0, uint p1, address p2, uint p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(string,uint,address,uint)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(string memory p0, uint p1, address p2, string memory p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(string,uint,address,string)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(string memory p0, uint p1, address p2, bool p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(string,uint,address,bool)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(string memory p0, uint p1, address p2, address p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(string,uint,address,address)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(string memory p0, string memory p1, uint p2, uint p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(string,string,uint,uint)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(string memory p0, string memory p1, uint p2, string memory p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(string,string,uint,string)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(string memory p0, string memory p1, uint p2, bool p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(string,string,uint,bool)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(string memory p0, string memory p1, uint p2, address p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(string,string,uint,address)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(string memory p0, string memory p1, string memory p2, uint p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(string,string,string,uint)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(string memory p0, string memory p1, string memory p2, string memory p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(string,string,string,string)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(string memory p0, string memory p1, string memory p2, bool p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(string,string,string,bool)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(string memory p0, string memory p1, string memory p2, address p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(string,string,string,address)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(string memory p0, string memory p1, bool p2, uint p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(string,string,bool,uint)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(string memory p0, string memory p1, bool p2, string memory p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(string,string,bool,string)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(string memory p0, string memory p1, bool p2, bool p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(string,string,bool,bool)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(string memory p0, string memory p1, bool p2, address p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(string,string,bool,address)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(string memory p0, string memory p1, address p2, uint p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(string,string,address,uint)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(string memory p0, string memory p1, address p2, string memory p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(string,string,address,string)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(string memory p0, string memory p1, address p2, bool p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(string,string,address,bool)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(string memory p0, string memory p1, address p2, address p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(string,string,address,address)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(string memory p0, bool p1, uint p2, uint p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(string,bool,uint,uint)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(string memory p0, bool p1, uint p2, string memory p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(string,bool,uint,string)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(string memory p0, bool p1, uint p2, bool p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(string,bool,uint,bool)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(string memory p0, bool p1, uint p2, address p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(string,bool,uint,address)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(string memory p0, bool p1, string memory p2, uint p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(string,bool,string,uint)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(string memory p0, bool p1, string memory p2, string memory p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(string,bool,string,string)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(string memory p0, bool p1, string memory p2, bool p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(string,bool,string,bool)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(string memory p0, bool p1, string memory p2, address p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(string,bool,string,address)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(string memory p0, bool p1, bool p2, uint p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(string,bool,bool,uint)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(string memory p0, bool p1, bool p2, string memory p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(string,bool,bool,string)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(string memory p0, bool p1, bool p2, bool p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(string,bool,bool,bool)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(string memory p0, bool p1, bool p2, address p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(string,bool,bool,address)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(string memory p0, bool p1, address p2, uint p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(string,bool,address,uint)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(string memory p0, bool p1, address p2, string memory p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(string,bool,address,string)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(string memory p0, bool p1, address p2, bool p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(string,bool,address,bool)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(string memory p0, bool p1, address p2, address p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(string,bool,address,address)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(string memory p0, address p1, uint p2, uint p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(string,address,uint,uint)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(string memory p0, address p1, uint p2, string memory p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(string,address,uint,string)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(string memory p0, address p1, uint p2, bool p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(string,address,uint,bool)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(string memory p0, address p1, uint p2, address p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(string,address,uint,address)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(string memory p0, address p1, string memory p2, uint p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(string,address,string,uint)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(string memory p0, address p1, string memory p2, string memory p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(string,address,string,string)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(string memory p0, address p1, string memory p2, bool p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(string,address,string,bool)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(string memory p0, address p1, string memory p2, address p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(string,address,string,address)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(string memory p0, address p1, bool p2, uint p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(string,address,bool,uint)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(string memory p0, address p1, bool p2, string memory p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(string,address,bool,string)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(string memory p0, address p1, bool p2, bool p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(string,address,bool,bool)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(string memory p0, address p1, bool p2, address p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(string,address,bool,address)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(string memory p0, address p1, address p2, uint p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(string,address,address,uint)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(string memory p0, address p1, address p2, string memory p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(string,address,address,string)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(string memory p0, address p1, address p2, bool p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(string,address,address,bool)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(string memory p0, address p1, address p2, address p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(string,address,address,address)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(bool p0, uint p1, uint p2, uint p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(bool,uint,uint,uint)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(bool p0, uint p1, uint p2, string memory p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(bool,uint,uint,string)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(bool p0, uint p1, uint p2, bool p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(bool,uint,uint,bool)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(bool p0, uint p1, uint p2, address p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(bool,uint,uint,address)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(bool p0, uint p1, string memory p2, uint p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(bool,uint,string,uint)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(bool p0, uint p1, string memory p2, string memory p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(bool,uint,string,string)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(bool p0, uint p1, string memory p2, bool p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(bool,uint,string,bool)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(bool p0, uint p1, string memory p2, address p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(bool,uint,string,address)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(bool p0, uint p1, bool p2, uint p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(bool,uint,bool,uint)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(bool p0, uint p1, bool p2, string memory p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(bool,uint,bool,string)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(bool p0, uint p1, bool p2, bool p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(bool,uint,bool,bool)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(bool p0, uint p1, bool p2, address p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(bool,uint,bool,address)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(bool p0, uint p1, address p2, uint p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(bool,uint,address,uint)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(bool p0, uint p1, address p2, string memory p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(bool,uint,address,string)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(bool p0, uint p1, address p2, bool p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(bool,uint,address,bool)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(bool p0, uint p1, address p2, address p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(bool,uint,address,address)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(bool p0, string memory p1, uint p2, uint p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(bool,string,uint,uint)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(bool p0, string memory p1, uint p2, string memory p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(bool,string,uint,string)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(bool p0, string memory p1, uint p2, bool p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(bool,string,uint,bool)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(bool p0, string memory p1, uint p2, address p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(bool,string,uint,address)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(bool p0, string memory p1, string memory p2, uint p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(bool,string,string,uint)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(bool p0, string memory p1, string memory p2, string memory p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(bool,string,string,string)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(bool p0, string memory p1, string memory p2, bool p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(bool,string,string,bool)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(bool p0, string memory p1, string memory p2, address p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(bool,string,string,address)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(bool p0, string memory p1, bool p2, uint p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(bool,string,bool,uint)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(bool p0, string memory p1, bool p2, string memory p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(bool,string,bool,string)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(bool p0, string memory p1, bool p2, bool p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(bool,string,bool,bool)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(bool p0, string memory p1, bool p2, address p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(bool,string,bool,address)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(bool p0, string memory p1, address p2, uint p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(bool,string,address,uint)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(bool p0, string memory p1, address p2, string memory p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(bool,string,address,string)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(bool p0, string memory p1, address p2, bool p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(bool,string,address,bool)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(bool p0, string memory p1, address p2, address p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(bool,string,address,address)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(bool p0, bool p1, uint p2, uint p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(bool,bool,uint,uint)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(bool p0, bool p1, uint p2, string memory p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(bool,bool,uint,string)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(bool p0, bool p1, uint p2, bool p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(bool,bool,uint,bool)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(bool p0, bool p1, uint p2, address p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(bool,bool,uint,address)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(bool p0, bool p1, string memory p2, uint p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(bool,bool,string,uint)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(bool p0, bool p1, string memory p2, string memory p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(bool,bool,string,string)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(bool p0, bool p1, string memory p2, bool p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(bool,bool,string,bool)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(bool p0, bool p1, string memory p2, address p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(bool,bool,string,address)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(bool p0, bool p1, bool p2, uint p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(bool,bool,bool,uint)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(bool p0, bool p1, bool p2, string memory p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(bool,bool,bool,string)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(bool p0, bool p1, bool p2, bool p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(bool,bool,bool,bool)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(bool p0, bool p1, bool p2, address p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(bool,bool,bool,address)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(bool p0, bool p1, address p2, uint p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(bool,bool,address,uint)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(bool p0, bool p1, address p2, string memory p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(bool,bool,address,string)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(bool p0, bool p1, address p2, bool p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(bool,bool,address,bool)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(bool p0, bool p1, address p2, address p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(bool,bool,address,address)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(bool p0, address p1, uint p2, uint p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(bool,address,uint,uint)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(bool p0, address p1, uint p2, string memory p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(bool,address,uint,string)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(bool p0, address p1, uint p2, bool p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(bool,address,uint,bool)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(bool p0, address p1, uint p2, address p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(bool,address,uint,address)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(bool p0, address p1, string memory p2, uint p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(bool,address,string,uint)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(bool p0, address p1, string memory p2, string memory p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(bool,address,string,string)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(bool p0, address p1, string memory p2, bool p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(bool,address,string,bool)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(bool p0, address p1, string memory p2, address p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(bool,address,string,address)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(bool p0, address p1, bool p2, uint p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(bool,address,bool,uint)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(bool p0, address p1, bool p2, string memory p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(bool,address,bool,string)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(bool p0, address p1, bool p2, bool p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(bool,address,bool,bool)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(bool p0, address p1, bool p2, address p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(bool,address,bool,address)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(bool p0, address p1, address p2, uint p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(bool,address,address,uint)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(bool p0, address p1, address p2, string memory p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(bool,address,address,string)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(bool p0, address p1, address p2, bool p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(bool,address,address,bool)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(bool p0, address p1, address p2, address p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(bool,address,address,address)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(address p0, uint p1, uint p2, uint p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(address,uint,uint,uint)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(address p0, uint p1, uint p2, string memory p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(address,uint,uint,string)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(address p0, uint p1, uint p2, bool p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(address,uint,uint,bool)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(address p0, uint p1, uint p2, address p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(address,uint,uint,address)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(address p0, uint p1, string memory p2, uint p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(address,uint,string,uint)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(address p0, uint p1, string memory p2, string memory p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(address,uint,string,string)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(address p0, uint p1, string memory p2, bool p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(address,uint,string,bool)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(address p0, uint p1, string memory p2, address p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(address,uint,string,address)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(address p0, uint p1, bool p2, uint p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(address,uint,bool,uint)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(address p0, uint p1, bool p2, string memory p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(address,uint,bool,string)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(address p0, uint p1, bool p2, bool p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(address,uint,bool,bool)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(address p0, uint p1, bool p2, address p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(address,uint,bool,address)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(address p0, uint p1, address p2, uint p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(address,uint,address,uint)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(address p0, uint p1, address p2, string memory p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(address,uint,address,string)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(address p0, uint p1, address p2, bool p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(address,uint,address,bool)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(address p0, uint p1, address p2, address p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(address,uint,address,address)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(address p0, string memory p1, uint p2, uint p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(address,string,uint,uint)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(address p0, string memory p1, uint p2, string memory p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(address,string,uint,string)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(address p0, string memory p1, uint p2, bool p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(address,string,uint,bool)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(address p0, string memory p1, uint p2, address p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(address,string,uint,address)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(address p0, string memory p1, string memory p2, uint p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(address,string,string,uint)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(address p0, string memory p1, string memory p2, string memory p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(address,string,string,string)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(address p0, string memory p1, string memory p2, bool p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(address,string,string,bool)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(address p0, string memory p1, string memory p2, address p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(address,string,string,address)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(address p0, string memory p1, bool p2, uint p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(address,string,bool,uint)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(address p0, string memory p1, bool p2, string memory p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(address,string,bool,string)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(address p0, string memory p1, bool p2, bool p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(address,string,bool,bool)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(address p0, string memory p1, bool p2, address p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(address,string,bool,address)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(address p0, string memory p1, address p2, uint p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(address,string,address,uint)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(address p0, string memory p1, address p2, string memory p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(address,string,address,string)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(address p0, string memory p1, address p2, bool p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(address,string,address,bool)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(address p0, string memory p1, address p2, address p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(address,string,address,address)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(address p0, bool p1, uint p2, uint p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(address,bool,uint,uint)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(address p0, bool p1, uint p2, string memory p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(address,bool,uint,string)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(address p0, bool p1, uint p2, bool p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(address,bool,uint,bool)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(address p0, bool p1, uint p2, address p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(address,bool,uint,address)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(address p0, bool p1, string memory p2, uint p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(address,bool,string,uint)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(address p0, bool p1, string memory p2, string memory p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(address,bool,string,string)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(address p0, bool p1, string memory p2, bool p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(address,bool,string,bool)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(address p0, bool p1, string memory p2, address p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(address,bool,string,address)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(address p0, bool p1, bool p2, uint p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(address,bool,bool,uint)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(address p0, bool p1, bool p2, string memory p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(address,bool,bool,string)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(address p0, bool p1, bool p2, bool p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(address,bool,bool,bool)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(address p0, bool p1, bool p2, address p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(address,bool,bool,address)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(address p0, bool p1, address p2, uint p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(address,bool,address,uint)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(address p0, bool p1, address p2, string memory p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(address,bool,address,string)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(address p0, bool p1, address p2, bool p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(address,bool,address,bool)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(address p0, bool p1, address p2, address p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(address,bool,address,address)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(address p0, address p1, uint p2, uint p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(address,address,uint,uint)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(address p0, address p1, uint p2, string memory p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(address,address,uint,string)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(address p0, address p1, uint p2, bool p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(address,address,uint,bool)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(address p0, address p1, uint p2, address p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(address,address,uint,address)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(address p0, address p1, string memory p2, uint p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(address,address,string,uint)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(address p0, address p1, string memory p2, string memory p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(address,address,string,string)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(address p0, address p1, string memory p2, bool p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(address,address,string,bool)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(address p0, address p1, string memory p2, address p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(address,address,string,address)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(address p0, address p1, bool p2, uint p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(address,address,bool,uint)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(address p0, address p1, bool p2, string memory p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(address,address,bool,string)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(address p0, address p1, bool p2, bool p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(address,address,bool,bool)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(address p0, address p1, bool p2, address p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(address,address,bool,address)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(address p0, address p1, address p2, uint p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(address,address,address,uint)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(address p0, address p1, address p2, string memory p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(address,address,address,string)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(address p0, address p1, address p2, bool p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(address,address,address,bool)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(address p0, address p1, address p2, address p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(address,address,address,address)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n}\\n\",\"keccak256\":\"0x6fa1de4ffe22b8f58b0b64d65db11dd5037be9b9db47b365a72adb489e217000\",\"license\":\"MIT\"},\"contracts/Interfaces/IActivePool.sol\":{\"content\":\"// SPDX-License-Identifier: MIT\\n\\npragma solidity 0.6.11;\\n\\nimport \\\"./IPool.sol\\\";\\n\\n/**\\n * The Active Pool holds the ETH collateral and ZUSD debt (but not ZUSD tokens) for all active troves.\\n *\\n * When a trove is liquidated, it's ETH and ZUSD debt are transferred from the Active Pool, to either the\\n * Stability Pool, the Default Pool, or both, depending on the liquidation conditions.\\n *\\n */\\ninterface IActivePool is IPool {\\n // --- Events ---\\n event BorrowerOperationsAddressChanged(address _newBorrowerOperationsAddress);\\n event TroveManagerAddressChanged(address _newTroveManagerAddress);\\n event ActivePoolZUSDDebtUpdated(uint _ZUSDDebt);\\n event ActivePoolETHBalanceUpdated(uint _ETH);\\n\\n // --- Functions ---\\n\\n /// @notice Send ETH amount to given account. Updates ActivePool balance. Only callable by BorrowerOperations, TroveManager or StabilityPool.\\n /// @param _account account to receive the ETH amount\\n /// @param _amount ETH amount to send\\n function sendETH(address _account, uint _amount) external;\\n}\\n\",\"keccak256\":\"0xdd5f1b6fae4050b4c885a85a10c2d0e73b82187a51736d009065aaeea33bf0d0\",\"license\":\"MIT\"},\"contracts/Interfaces/IAllowanceTransfer.sol\":{\"content\":\"// SPDX-License-Identifier: MIT\\npragma solidity 0.6.11;\\npragma experimental ABIEncoderV2;\\n\\nimport {IEIP712} from \\\"./IEIP712.sol\\\";\\n\\n/// @title AllowanceTransfer\\n/// @notice Handles ERC20 token permissions through signature based allowance setting and ERC20 token transfers by checking allowed amounts\\n/// @dev Requires user's token approval on the Permit2 contract\\ninterface IAllowanceTransfer is IEIP712 {\\n /// @notice Emits an event when the owner successfully invalidates an ordered nonce.\\n event NonceInvalidation(\\n address indexed owner, address indexed token, address indexed spender, uint48 newNonce, uint48 oldNonce\\n );\\n\\n /// @notice Emits an event when the owner successfully sets permissions on a token for the spender.\\n event Approval(\\n address indexed owner, address indexed token, address indexed spender, uint160 amount, uint48 expiration\\n );\\n\\n /// @notice Emits an event when the owner successfully sets permissions using a permit signature on a token for the spender.\\n event Permit(\\n address indexed owner,\\n address indexed token,\\n address indexed spender,\\n uint160 amount,\\n uint48 expiration,\\n uint48 nonce\\n );\\n\\n /// @notice Emits an event when the owner sets the allowance back to 0 with the lockdown function.\\n event Lockdown(address indexed owner, address token, address spender);\\n\\n /// @notice The permit data for a token\\n struct PermitDetails {\\n // ERC20 token address\\n address token;\\n // the maximum amount allowed to spend\\n uint160 amount;\\n // timestamp at which a spender's token allowances become invalid\\n uint48 expiration;\\n // an incrementing value indexed per owner,token,and spender for each signature\\n uint48 nonce;\\n }\\n\\n /// @notice The permit message signed for a single token allowance\\n struct PermitSingle {\\n // the permit data for a single token alownce\\n PermitDetails details;\\n // address permissioned on the allowed tokens\\n address spender;\\n // deadline on the permit signature\\n uint256 sigDeadline;\\n }\\n\\n /// @notice The permit message signed for multiple token allowances\\n struct PermitBatch {\\n // the permit data for multiple token allowances\\n PermitDetails[] details;\\n // address permissioned on the allowed tokens\\n address spender;\\n // deadline on the permit signature\\n uint256 sigDeadline;\\n }\\n\\n /// @notice The saved permissions\\n /// @dev This info is saved per owner, per token, per spender and all signed over in the permit message\\n /// @dev Setting amount to type(uint160).max sets an unlimited approval\\n struct PackedAllowance {\\n // amount allowed\\n uint160 amount;\\n // permission expiry\\n uint48 expiration;\\n // an incrementing value indexed per owner,token,and spender for each signature\\n uint48 nonce;\\n }\\n\\n /// @notice A token spender pair.\\n struct TokenSpenderPair {\\n // the token the spender is approved\\n address token;\\n // the spender address\\n address spender;\\n }\\n\\n /// @notice Details for a token transfer.\\n struct AllowanceTransferDetails {\\n // the owner of the token\\n address from;\\n // the recipient of the token\\n address to;\\n // the amount of the token\\n uint160 amount;\\n // the token to be transferred\\n address token;\\n }\\n\\n /// @notice A mapping from owner address to token address to spender address to PackedAllowance struct, which contains details and conditions of the approval.\\n /// @notice The mapping is indexed in the above order see: allowance[ownerAddress][tokenAddress][spenderAddress]\\n /// @dev The packed slot holds the allowed amount, expiration at which the allowed amount is no longer valid, and current nonce thats updated on any signature based approvals.\\n function allowance(address user, address token, address spender)\\n external\\n view\\n returns (uint160 amount, uint48 expiration, uint48 nonce);\\n\\n /// @notice Approves the spender to use up to amount of the specified token up until the expiration\\n /// @param token The token to approve\\n /// @param spender The spender address to approve\\n /// @param amount The approved amount of the token\\n /// @param expiration The timestamp at which the approval is no longer valid\\n /// @dev The packed allowance also holds a nonce, which will stay unchanged in approve\\n /// @dev Setting amount to type(uint160).max sets an unlimited approval\\n function approve(address token, address spender, uint160 amount, uint48 expiration) external;\\n\\n /// @notice Permit a spender to a given amount of the owners token via the owner's EIP-712 signature\\n /// @dev May fail if the owner's nonce was invalidated in-flight by invalidateNonce\\n /// @param owner The owner of the tokens being approved\\n /// @param permitSingle Data signed over by the owner specifying the terms of approval\\n /// @param signature The owner's signature over the permit data\\n function permit(address owner, PermitSingle memory permitSingle, bytes calldata signature) external;\\n\\n /// @notice Permit a spender to the signed amounts of the owners tokens via the owner's EIP-712 signature\\n /// @dev May fail if the owner's nonce was invalidated in-flight by invalidateNonce\\n /// @param owner The owner of the tokens being approved\\n /// @param permitBatch Data signed over by the owner specifying the terms of approval\\n /// @param signature The owner's signature over the permit data\\n function permit(address owner, PermitBatch memory permitBatch, bytes calldata signature) external;\\n\\n /// @notice Transfer approved tokens from one address to another\\n /// @param from The address to transfer from\\n /// @param to The address of the recipient\\n /// @param amount The amount of the token to transfer\\n /// @param token The token address to transfer\\n /// @dev Requires the from address to have approved at least the desired amount\\n /// of tokens to msg.sender.\\n function transferFrom(address from, address to, uint160 amount, address token) external;\\n\\n /// @notice Transfer approved tokens in a batch\\n /// @param transferDetails Array of owners, recipients, amounts, and tokens for the transfers\\n /// @dev Requires the from addresses to have approved at least the desired amount\\n /// of tokens to msg.sender.\\n function transferFrom(AllowanceTransferDetails[] calldata transferDetails) external;\\n\\n /// @notice Enables performing a \\\"lockdown\\\" of the sender's Permit2 identity\\n /// by batch revoking approvals\\n /// @param approvals Array of approvals to revoke.\\n function lockdown(TokenSpenderPair[] calldata approvals) external;\\n\\n /// @notice Invalidate nonces for a given (token, spender) pair\\n /// @param token The token to invalidate nonces for\\n /// @param spender The spender to invalidate nonces for\\n /// @param newNonce The new nonce to set. Invalidates all nonces less than it.\\n /// @dev Can't invalidate more than 2**16 nonces per transaction.\\n function invalidateNonces(address token, address spender, uint48 newNonce) external;\\n}\\n\",\"keccak256\":\"0xf15059fb68f89542908f963f22e18c0b0ae9997a6f9aaf6a9fb46aa2424acac9\",\"license\":\"MIT\"},\"contracts/Interfaces/IBorrowerOperations.sol\":{\"content\":\"// SPDX-License-Identifier: MIT\\n\\npragma solidity 0.6.11;\\npragma experimental ABIEncoderV2;\\n\\nimport \\\"../Dependencies/Mynt/IMassetManager.sol\\\";\\nimport { IPermit2, ISignatureTransfer } from \\\"./IPermit2.sol\\\";\\n\\n/// Common interface for the Trove Manager.\\ninterface IBorrowerOperations {\\n // --- Events ---\\n\\n event FeeDistributorAddressChanged(address _feeDistributorAddress);\\n event TroveManagerAddressChanged(address _newTroveManagerAddress);\\n event ActivePoolAddressChanged(address _activePoolAddress);\\n event DefaultPoolAddressChanged(address _defaultPoolAddress);\\n event StabilityPoolAddressChanged(address _stabilityPoolAddress);\\n event GasPoolAddressChanged(address _gasPoolAddress);\\n event CollSurplusPoolAddressChanged(address _collSurplusPoolAddress);\\n event PriceFeedAddressChanged(address _newPriceFeedAddress);\\n event SortedTrovesAddressChanged(address _sortedTrovesAddress);\\n event ZUSDTokenAddressChanged(address _zusdTokenAddress);\\n event ZEROStakingAddressChanged(address _zeroStakingAddress);\\n\\n event TroveCreated(address indexed _borrower, uint256 arrayIndex);\\n event TroveUpdated(\\n address indexed _borrower,\\n uint256 _debt,\\n uint256 _coll,\\n uint256 stake,\\n uint8 operation\\n );\\n event ZUSDBorrowingFeePaid(address indexed _borrower, uint256 _ZUSDFee);\\n\\n // --- Functions ---\\n\\n /**\\n * @notice Called only once on init, to set addresses of other Zero contracts. Callable only by owner\\n * @dev initializer function, checks addresses are contracts\\n * @param _feeDistributorAddress feeDistributor contract address\\n * @param _liquityBaseParamsAddress LiquidityBaseParams contract address\\n * @param _troveManagerAddress TroveManager contract address\\n * @param _activePoolAddress ActivePool contract address\\n * @param _defaultPoolAddress DefaultPool contract address\\n * @param _stabilityPoolAddress StabilityPool contract address\\n * @param _gasPoolAddress GasPool contract address\\n * @param _collSurplusPoolAddress CollSurplusPool contract address\\n * @param _priceFeedAddress PrideFeed contract address\\n * @param _sortedTrovesAddress SortedTroves contract address\\n * @param _zusdTokenAddress ZUSDToken contract address\\n * @param _zeroStakingAddress ZEROStaking contract address\\n */\\n function setAddresses(\\n address _feeDistributorAddress,\\n address _liquityBaseParamsAddress,\\n address _troveManagerAddress,\\n address _activePoolAddress,\\n address _defaultPoolAddress,\\n address _stabilityPoolAddress,\\n address _gasPoolAddress,\\n address _collSurplusPoolAddress,\\n address _priceFeedAddress,\\n address _sortedTrovesAddress,\\n address _zusdTokenAddress,\\n address _zeroStakingAddress\\n ) external;\\n\\n /**\\n * @notice payable function that creates a Trove for the caller with the requested debt, and the Ether received as collateral.\\n * Successful execution is conditional mainly on the resulting collateralization ratio which must exceed the minimum (110% in Normal Mode, 150% in Recovery Mode).\\n * In addition to the requested debt, extra debt is issued to pay the issuance fee, and cover the gas compensation.\\n * The borrower has to provide a `_maxFeePercentage` that he/she is willing to accept in case of a fee slippage, i.e. when a redemption transaction is processed first, driving up the issuance fee.\\n * @param _maxFee max fee percentage to acept in case of a fee slippage\\n * @param _ZUSDAmount ZUSD requested debt\\n * @param _upperHint upper trove id hint\\n * @param _lowerHint lower trove id hint\\n */\\n function openTrove(\\n uint256 _maxFee,\\n uint256 _ZUSDAmount,\\n address _upperHint,\\n address _lowerHint\\n ) external payable;\\n\\n /**\\n * @notice payable function that creates a Trove for the caller with the requested debt, and the Ether received as collateral.\\n * Successful execution is conditional mainly on the resulting collateralization ratio which must exceed the minimum (110% in Normal Mode, 150% in Recovery Mode).\\n * In addition to the requested debt, extra debt is issued to pay the issuance fee, and cover the gas compensation.\\n * The borrower has to provide a `_maxFeePercentage` that he/she is willing to accept in case of a fee slippage, i.e. when a redemption transaction is processed first, driving up the issuance fee.\\n * This method is identical to `openTrove()`, but operates on NUE tokens instead of ZUSD.\\n * @param _maxFee max fee percentage to acept in case of a fee slippage\\n * @param _ZUSDAmount ZUSD requested debt\\n * @param _upperHint upper trove id hint\\n * @param _lowerHint lower trove id hint\\n */\\n function openNueTrove(\\n uint256 _maxFee,\\n uint256 _ZUSDAmount,\\n address _upperHint,\\n address _lowerHint\\n ) external payable;\\n\\n /// @notice payable function that adds the received Ether to the caller's active Trove.\\n /// @param _upperHint upper trove id hint\\n /// @param _lowerHint lower trove id hint\\n function addColl(address _upperHint, address _lowerHint) external payable;\\n\\n /// @notice send ETH as collateral to a trove. Called by only the Stability Pool.\\n /// @param _user user trove address\\n /// @param _upperHint upper trove id hint\\n /// @param _lowerHint lower trove id hint\\n function moveETHGainToTrove(\\n address _user,\\n address _upperHint,\\n address _lowerHint\\n ) external payable;\\n\\n /**\\n * @notice withdraws `_amount` of collateral from the caller\\u2019s Trove.\\n * Executes only if the user has an active Trove, the withdrawal would not pull the user\\u2019s Trove below the minimum collateralization ratio,\\n * and the resulting total collateralization ratio of the system is above 150%.\\n * @param _amount collateral amount to withdraw\\n * @param _upperHint upper trove id hint\\n * @param _lowerHint lower trove id hint\\n */\\n function withdrawColl(uint256 _amount, address _upperHint, address _lowerHint) external;\\n\\n /**\\n * @notice issues `_amount` of ZUSD from the caller\\u2019s Trove to the caller.\\n * Executes only if the Trove's collateralization ratio would remain above the minimum, and the resulting total collateralization ratio is above 150%.\\n * The borrower has to provide a `_maxFeePercentage` that he/she is willing to accept in case of a fee slippage, i.e. when a redemption transaction is processed first, driving up the issuance fee.\\n * @param _maxFee max fee percentage to acept in case of a fee slippage\\n * @param _amount ZUSD amount to withdraw\\n * @param _upperHint upper trove id hint\\n * @param _lowerHint lower trove id hint\\n */\\n function withdrawZUSD(\\n uint256 _maxFee,\\n uint256 _amount,\\n address _upperHint,\\n address _lowerHint\\n ) external;\\n\\n /// Borrow (withdraw) ZUSD tokens from a trove: mint new ZUSD tokens to the owner and convert it to DLLR in one transaction\\n function withdrawZusdAndConvertToDLLR(\\n uint256 _maxFeePercentage,\\n uint256 _ZUSDAmount,\\n address _upperHint,\\n address _lowerHint\\n ) external returns (uint256);\\n\\n /// @notice repay `_amount` of ZUSD to the caller\\u2019s Trove, subject to leaving 50 debt in the Trove (which corresponds to the 50 ZUSD gas compensation).\\n /// @param _amount ZUSD amount to repay\\n /// @param _upperHint upper trove id hint\\n /// @param _lowerHint lower trove id hint\\n function repayZUSD(uint256 _amount, address _upperHint, address _lowerHint) external;\\n\\n /// Repay ZUSD tokens to a Trove: Burn the repaid ZUSD tokens, and reduce the trove's debt accordingly\\n function repayZusdFromDLLR(\\n uint256 _dllrAmount,\\n address _upperHint,\\n address _lowerHint,\\n IMassetManager.PermitParams calldata _permitParams\\n ) external;\\n\\n /// Repay ZUSD tokens to a Trove: Burn the repaid ZUSD tokens, and reduce the trove's debt accordingly\\n function repayZusdFromDLLRWithPermit2(\\n uint256 _dllrAmount,\\n address _upperHint,\\n address _lowerHint,\\n ISignatureTransfer.PermitTransferFrom memory _permit,\\n bytes calldata _signature\\n ) external;\\n\\n /**\\n * @notice allows a borrower to repay all debt, withdraw all their collateral, and close their Trove.\\n * Requires the borrower have a ZUSD balance sufficient to repay their trove's debt, excluding gas compensation - i.e. `(debt - 50)` ZUSD.\\n */\\n function closeTrove() external;\\n\\n /**\\n * @notice allows a borrower to repay all debt, withdraw all their collateral, and close their Trove.\\n * Requires the borrower have a NUE balance sufficient to repay their trove's debt, excluding gas compensation - i.e. `(debt - 50)` NUE.\\n * This method is identical to `closeTrove()`, but operates on NUE tokens instead of ZUSD.\\n */\\n function closeNueTrove(IMassetManager.PermitParams calldata _permitParams) external;\\n\\n /**\\n * @notice allows a borrower to repay all debt, withdraw all their collateral, and close their Trove.\\n * Requires the borrower have a NUE balance sufficient to repay their trove's debt, excluding gas compensation - i.e. `(debt - 50)` NUE.\\n * This method is identical to `closeTrove()`, but operates on NUE tokens instead of ZUSD.\\n */\\n function closeNueTroveWithPermit2(ISignatureTransfer.PermitTransferFrom memory _permit, bytes calldata _signature) external;\\n\\n /**\\n * @notice enables a borrower to simultaneously change both their collateral and debt, subject to all the restrictions that apply to individual increases/decreases of each quantity with the following particularity:\\n * if the adjustment reduces the collateralization ratio of the Trove, the function only executes if the resulting total collateralization ratio is above 150%.\\n * The borrower has to provide a `_maxFeePercentage` that he/she is willing to accept in case of a fee slippage, i.e. when a redemption transaction is processed first, driving up the issuance fee.\\n * The parameter is ignored if the debt is not increased with the transaction.\\n * @param _maxFee max fee percentage to acept in case of a fee slippage\\n * @param _collWithdrawal collateral amount to withdraw\\n * @param _debtChange ZUSD amount to change\\n * @param isDebtIncrease indicates if increases debt\\n * @param _upperHint upper trove id hint\\n * @param _lowerHint lower trove id hint\\n */\\n function adjustTrove(\\n uint256 _maxFee,\\n uint256 _collWithdrawal,\\n uint256 _debtChange,\\n bool isDebtIncrease,\\n address _upperHint,\\n address _lowerHint\\n ) external payable;\\n\\n /**\\n * @notice enables a borrower to simultaneously change both their collateral and debt, subject to all the restrictions that apply to individual increases/decreases of each quantity with the following particularity:\\n * if the adjustment reduces the collateralization ratio of the Trove, the function only executes if the resulting total collateralization ratio is above 150%.\\n * The borrower has to provide a `_maxFeePercentage` that he/she is willing to accept in case of a fee slippage, i.e. when a redemption transaction is processed first, driving up the issuance fee.\\n * The parameter is ignored if the debt is not increased with the transaction.\\n * This method is identical to `adjustTrove()`, but operates on NUE tokens instead of ZUSD.\\n * @param _maxFee max fee percentage to acept in case of a fee slippage\\n * @param _collWithdrawal collateral amount to withdraw\\n * @param _debtChange ZUSD amount to change\\n * @param isDebtIncrease indicates if increases debt\\n * @param _upperHint upper trove id hint\\n * @param _lowerHint lower trove id hint\\n */\\n function adjustNueTrove(\\n uint256 _maxFee,\\n uint256 _collWithdrawal,\\n uint256 _debtChange,\\n bool isDebtIncrease,\\n address _upperHint,\\n address _lowerHint,\\n IMassetManager.PermitParams calldata _permitParams\\n ) external payable;\\n\\n /**\\n * @notice enables a borrower to simultaneously change both their collateral and debt, subject to all the restrictions that apply to individual increases/decreases of each quantity with the following particularity:\\n * if the adjustment reduces the collateralization ratio of the Trove, the function only executes if the resulting total collateralization ratio is above 150%.\\n * The borrower has to provide a `_maxFeePercentage` that he/she is willing to accept in case of a fee slippage, i.e. when a redemption transaction is processed first, driving up the issuance fee.\\n * The parameter is ignored if the debt is not increased with the transaction.\\n * This method is identical to `adjustTrove()`, but operates on NUE tokens instead of ZUSD.\\n * @param _maxFee max fee percentage to acept in case of a fee slippage\\n * @param _collWithdrawal collateral amount to withdraw\\n * @param _debtChange ZUSD amount to change\\n * @param isDebtIncrease indicates if increases debt\\n * @param _upperHint upper trove id hint\\n * @param _lowerHint lower trove id hint\\n */\\n function adjustNueTroveWithPermit2(\\n uint256 _maxFee,\\n uint256 _collWithdrawal,\\n uint256 _debtChange,\\n bool isDebtIncrease,\\n address _upperHint,\\n address _lowerHint,\\n ISignatureTransfer.PermitTransferFrom memory _permit,\\n bytes calldata _signature\\n ) external payable;\\n\\n /**\\n * @notice when a borrower\\u2019s Trove has been fully redeemed from and closed, or liquidated in Recovery Mode with a collateralization ratio above 110%,\\n * this function allows the borrower to claim their ETH collateral surplus that remains in the system (collateral - debt upon redemption; collateral - 110% of the debt upon liquidation).\\n */\\n function claimCollateral() external;\\n\\n function getCompositeDebt(uint256 _debt) external view returns (uint256);\\n\\n function BORROWING_FEE_FLOOR() external view returns (uint256);\\n\\n function getMassetManager() external view returns (IMassetManager);\\n}\\n\",\"keccak256\":\"0x75da117f4bc4cca15fc16ca0466c68894f1befed0471ea7a670fa9b466ef2bc5\",\"license\":\"MIT\"},\"contracts/Interfaces/ICollSurplusPool.sol\":{\"content\":\"// SPDX-License-Identifier: MIT\\n\\npragma solidity 0.6.11;\\n\\ninterface ICollSurplusPool {\\n // --- Events ---\\n\\n event BorrowerOperationsAddressChanged(address _newBorrowerOperationsAddress);\\n event TroveManagerAddressChanged(address _newTroveManagerAddress);\\n event ActivePoolAddressChanged(address _newActivePoolAddress);\\n\\n event CollBalanceUpdated(address indexed _account, uint256 _newBalance);\\n event EtherSent(address _to, uint256 _amount);\\n\\n // --- Contract setters ---\\n\\n /**\\n * @notice Called only once on init, to set addresses of other Zero contracts. Callable only by owner\\n * @dev initializer function, checks addresses are contracts\\n * @param _borrowerOperationsAddress BorrowerOperations contract address\\n * @param _troveManagerAddress TroveManager contract address\\n * @param _activePoolAddress ActivePool contract address\\n */\\n function setAddresses(\\n address _borrowerOperationsAddress,\\n address _troveManagerAddress,\\n address _activePoolAddress\\n ) external;\\n\\n /// @notice Not necessarily equal to the raw ether balance - ether can be forcibly sent to contracts.\\n /// @return ETH state variable\\n function getETH() external view returns (uint256);\\n\\n /// @param _account account to retrieve collateral\\n /// @return collateral\\n function getCollateral(address _account) external view returns (uint256);\\n\\n /// @notice adds amount to current account balance. Only callable by TroveManager.\\n /// @param _account account to add amount\\n /// @param _amount amount to add\\n function accountSurplus(address _account, uint256 _amount) external;\\n\\n /// @notice claims collateral for given account. Only callable by BorrowerOperations.\\n /// @param _account account to send claimable collateral\\n function claimColl(address _account) external;\\n}\\n\",\"keccak256\":\"0xac983936efe70d19205bff65a18b4e6000d489d4e4d1e2e92f951873cee91048\",\"license\":\"MIT\"},\"contracts/Interfaces/IDefaultPool.sol\":{\"content\":\"// SPDX-License-Identifier: MIT\\n\\npragma solidity 0.6.11;\\n\\nimport \\\"./IPool.sol\\\";\\n\\ninterface IDefaultPool is IPool {\\n // --- Events ---\\n event TroveManagerAddressChanged(address _newTroveManagerAddress);\\n event DefaultPoolZUSDDebtUpdated(uint256 _ZUSDDebt);\\n event DefaultPoolETHBalanceUpdated(uint256 _ETH);\\n\\n // --- Functions ---\\n\\n /// @notice Send ETH to Active Pool\\n /// @param _amount ETH to send\\n function sendETHToActivePool(uint256 _amount) external;\\n}\\n\",\"keccak256\":\"0xfb2607676b2eb0f2defd248b4dd32895820048317f29aa6bdb572403a3e3d44e\",\"license\":\"MIT\"},\"contracts/Interfaces/IEIP712.sol\":{\"content\":\"// SPDX-License-Identifier: MIT\\npragma solidity 0.6.11;\\n\\ninterface IEIP712 {\\n function DOMAIN_SEPARATOR() external view returns (bytes32);\\n}\\n\",\"keccak256\":\"0xff52e9168eaa532ebacdad2ab6197f60171e3aa2fa2c1d6397d9da4d7782a543\",\"license\":\"MIT\"},\"contracts/Interfaces/IFeeDistributor.sol\":{\"content\":\"// SPDX-License-Identifier: MIT\\n\\npragma solidity 0.6.11;\\n\\n/// Common interface for Fee Distributor.\\ninterface IFeeDistributor {\\n // --- Events ---\\n\\n event FeeSharingCollectorAddressChanged(address _feeSharingCollectorAddress);\\n event ZeroStakingAddressChanged(address _zeroStakingAddress);\\n event BorrowerOperationsAddressChanged(address _borrowerOperationsAddress);\\n event TroveManagerAddressChanged(address _troveManagerAddress);\\n event WrbtcAddressChanged(address _wrbtcAddress);\\n event ZUSDTokenAddressChanged(address _zusdTokenAddress);\\n event ActivePoolAddressSet(address _activePoolAddress);\\n\\n event ZUSDDistributed(uint256 _zusdDistributedAmount);\\n event RBTCistributed(uint256 _rbtcDistributedAmount);\\n\\n // --- Functions ---\\n\\n /**\\n * @notice Called only once on init, to set addresses of other Zero contracts. Callable only by owner\\n * @dev initializer function, checks addresses are contracts\\n * @param _feeSharingCollectorAddress FeeSharingCollector address\\n * @param _zeroStakingAddress ZEROStaking contract address\\n * @param _borrowerOperationsAddress borrowerOperations contract address\\n * @param _troveManagerAddress TroveManager contract address\\n * @param _wrbtcAddress wrbtc ERC20 contract address\\n * @param _zusdTokenAddress ZUSDToken contract address\\n * @param _activePoolAddress ActivePool contract address\\n */\\n function setAddresses(\\n address _feeSharingCollectorAddress,\\n address _zeroStakingAddress,\\n address _borrowerOperationsAddress,\\n address _troveManagerAddress,\\n address _wrbtcAddress,\\n address _zusdTokenAddress,\\n address _activePoolAddress\\n ) external;\\n\\n function distributeFees() external;\\n}\\n\",\"keccak256\":\"0x4b9bc6eaa8a9ea5e0570ffd84c0af2a92e74b001ae1ee1c8518d76382691a07f\",\"license\":\"MIT\"},\"contracts/Interfaces/ILiquityBase.sol\":{\"content\":\"// SPDX-License-Identifier: MIT\\n\\npragma solidity 0.6.11;\\n\\nimport \\\"./IPriceFeed.sol\\\";\\nimport \\\"./ILiquityBaseParams.sol\\\";\\n\\ninterface ILiquityBase {\\n /// @return PriceFeed contract\\n function priceFeed() external view returns (IPriceFeed);\\n\\n /// @return LiquityBaseParams contract\\n function liquityBaseParams() external view returns (ILiquityBaseParams);\\n}\\n\",\"keccak256\":\"0xa4a57bd79e64d56a687c28d2a35c55b733fde8dda2a7ba861606eed3211724e1\",\"license\":\"MIT\"},\"contracts/Interfaces/ILiquityBaseParams.sol\":{\"content\":\"// SPDX-License-Identifier: MIT\\n\\npragma solidity 0.6.11;\\n\\ninterface ILiquityBaseParams {\\n\\n /// Minimum collateral ratio for individual troves\\n function MCR() external view returns (uint);\\n\\n /// Critical system collateral ratio. If the system's total collateral ratio (TCR) falls below the CCR, Recovery Mode is triggered.\\n function CCR() external view returns (uint);\\n\\n function PERCENT_DIVISOR() external view returns (uint);\\n\\n function BORROWING_FEE_FLOOR() external view returns (uint);\\n\\n /**\\n * Half-life of 12h. 12h = 720 min\\n * (1/2) = d^720 => d = (1/2)^(1/720)\\n */\\n function REDEMPTION_FEE_FLOOR() external view returns (uint);\\n\\n function MAX_BORROWING_FEE() external view returns (uint);\\n\\n}\",\"keccak256\":\"0xef8c0e8ad5d13d604c11b04983ff5bdd41768b646f2b33f45ddd988adec204e0\",\"license\":\"MIT\"},\"contracts/Interfaces/IPermit2.sol\":{\"content\":\"// SPDX-License-Identifier: MIT\\npragma solidity 0.6.11;\\npragma experimental ABIEncoderV2;\\n\\nimport {ISignatureTransfer} from \\\"./ISignatureTransfer.sol\\\";\\nimport {IAllowanceTransfer} from \\\"./IAllowanceTransfer.sol\\\";\\n\\n/// @notice Permit2 handles signature-based transfers in SignatureTransfer and allowance-based transfers in AllowanceTransfer.\\n/// @dev Users must approve Permit2 before calling any of the transfer functions.\\ninterface IPermit2 is ISignatureTransfer, IAllowanceTransfer {\\n// IPermit2 unifies the two interfaces so users have maximal flexibility with their approval.\\n}\\n\",\"keccak256\":\"0x3df819f5ca8de7324a676839d72e9f44c0f789c41c13bf0a892f3bb98d72ee86\",\"license\":\"MIT\"},\"contracts/Interfaces/IPool.sol\":{\"content\":\"// SPDX-License-Identifier: MIT\\n\\npragma solidity 0.6.11;\\n\\n// Common interface for the Pools.\\ninterface IPool {\\n // --- Events ---\\n\\n event ETHBalanceUpdated(uint _newBalance);\\n event ZUSDBalanceUpdated(uint _newBalance);\\n event ActivePoolAddressChanged(address _newActivePoolAddress);\\n event DefaultPoolAddressChanged(address _newDefaultPoolAddress);\\n event StabilityPoolAddressChanged(address _newStabilityPoolAddress);\\n event EtherSent(address _to, uint _amount);\\n\\n // --- Functions ---\\n\\n /// @notice Not necessarily equal to the raw ether balance - ether can be forcibly sent to contracts.\\n /// @return ETH pool balance\\n function getETH() external view returns (uint);\\n\\n /// @return ZUSD debt pool balance\\n function getZUSDDebt() external view returns (uint);\\n\\n /// @notice Increases ZUSD debt of the pool.\\n /// @param _amount ZUSD amount to add to the pool debt\\n function increaseZUSDDebt(uint _amount) external;\\n\\n /// @notice Decreases ZUSD debt of the pool.\\n /// @param _amount ZUSD amount to subtract to the pool debt\\n function decreaseZUSDDebt(uint _amount) external;\\n}\\n\",\"keccak256\":\"0x148e87ab38c6176d74f36c9e8989b99e768a7b18d8a045f1f01d6583b986806d\",\"license\":\"MIT\"},\"contracts/Interfaces/IPriceFeed.sol\":{\"content\":\"// SPDX-License-Identifier: MIT\\n\\npragma solidity 0.6.11;\\n\\ninterface IPriceFeed {\\n // --- Events ---\\n event LastGoodPriceUpdated(uint256 _lastGoodPrice);\\n\\n // --- Function ---\\n\\n /// @notice Returns the latest price obtained from the Oracle. Called by Zero functions that require a current price.\\n /// It uses the main price feed and fallback to the backup one in case of an error. If both fail return the last\\n /// good price seen.\\n /// @dev It's also callable by anyone externally\\n /// @return The price\\n function fetchPrice() external returns (uint256);\\n}\\n\",\"keccak256\":\"0x85fd97219a8156209d2cb5c6ae7c5ead01d893db000bf575023fcef0e62f9591\",\"license\":\"MIT\"},\"contracts/Interfaces/ISignatureTransfer.sol\":{\"content\":\"// SPDX-License-Identifier: MIT\\npragma solidity 0.6.11;\\npragma experimental ABIEncoderV2;\\n\\nimport {IEIP712} from \\\"./IEIP712.sol\\\";\\n\\n/// @title SignatureTransfer\\n/// @notice Handles ERC20 token transfers through signature based actions\\n/// @dev Requires user's token approval on the Permit2 contract\\ninterface ISignatureTransfer is IEIP712 {\\n /// @notice Emits an event when the owner successfully invalidates an unordered nonce.\\n event UnorderedNonceInvalidation(address indexed owner, uint256 word, uint256 mask);\\n\\n /// @notice The token and amount details for a transfer signed in the permit transfer signature\\n struct TokenPermissions {\\n // ERC20 token address\\n address token;\\n // the maximum amount that can be spent\\n uint256 amount;\\n }\\n\\n /// @notice The signed permit message for a single token transfer\\n struct PermitTransferFrom {\\n TokenPermissions permitted;\\n // a unique value for every token owner's signature to prevent signature replays\\n uint256 nonce;\\n // deadline on the permit signature\\n uint256 deadline;\\n }\\n\\n /// @notice Specifies the recipient address and amount for batched transfers.\\n /// @dev Recipients and amounts correspond to the index of the signed token permissions array.\\n /// @dev Reverts if the requested amount is greater than the permitted signed amount.\\n struct SignatureTransferDetails {\\n // recipient address\\n address to;\\n // spender requested amount\\n uint256 requestedAmount;\\n }\\n\\n /// @notice Used to reconstruct the signed permit message for multiple token transfers\\n /// @dev Do not need to pass in spender address as it is required that it is msg.sender\\n /// @dev Note that a user still signs over a spender address\\n struct PermitBatchTransferFrom {\\n // the tokens and corresponding amounts permitted for a transfer\\n TokenPermissions[] permitted;\\n // a unique value for every token owner's signature to prevent signature replays\\n uint256 nonce;\\n // deadline on the permit signature\\n uint256 deadline;\\n }\\n\\n /// @notice A map from token owner address and a caller specified word index to a bitmap. Used to set bits in the bitmap to prevent against signature replay protection\\n /// @dev Uses unordered nonces so that permit messages do not need to be spent in a certain order\\n /// @dev The mapping is indexed first by the token owner, then by an index specified in the nonce\\n /// @dev It returns a uint256 bitmap\\n /// @dev The index, or wordPosition is capped at type(uint248).max\\n function nonceBitmap(address, uint256) external view returns (uint256);\\n\\n /// @notice Transfers a token using a signed permit message\\n /// @dev Reverts if the requested amount is greater than the permitted signed amount\\n /// @param permit The permit data signed over by the owner\\n /// @param owner The owner of the tokens to transfer\\n /// @param transferDetails The spender's requested transfer details for the permitted token\\n /// @param signature The signature to verify\\n function permitTransferFrom(\\n PermitTransferFrom memory permit,\\n SignatureTransferDetails calldata transferDetails,\\n address owner,\\n bytes calldata signature\\n ) external;\\n\\n /// @notice Transfers multiple tokens using a signed permit message\\n /// @param permit The permit data signed over by the owner\\n /// @param owner The owner of the tokens to transfer\\n /// @param transferDetails Specifies the recipient and requested amount for the token transfer\\n /// @param signature The signature to verify\\n function permitTransferFrom(\\n PermitBatchTransferFrom memory permit,\\n SignatureTransferDetails[] calldata transferDetails,\\n address owner,\\n bytes calldata signature\\n ) external;\\n\\n /// @notice Invalidates the bits specified in mask for the bitmap at the word position\\n /// @dev The wordPos is maxed at type(uint248).max\\n /// @param wordPos A number to index the nonceBitmap at\\n /// @param mask A bitmap masked against msg.sender's current bitmap at the word position\\n function invalidateUnorderedNonces(uint256 wordPos, uint256 mask) external;\\n}\\n\",\"keccak256\":\"0x7efc63c119694e23dd76e44a5b125999829026bbc23409de7646a6a45e1ac341\",\"license\":\"MIT\"},\"contracts/Interfaces/ISortedTroves.sol\":{\"content\":\"// SPDX-License-Identifier: MIT\\n\\npragma solidity 0.6.11;\\n\\n// Common interface for the SortedTroves Doubly Linked List.\\ninterface ISortedTroves {\\n // --- Events ---\\n\\n event SortedTrovesAddressChanged(address _sortedDoublyLLAddress);\\n event BorrowerOperationsAddressChanged(address _borrowerOperationsAddress);\\n event NodeAdded(address _id, uint256 _NICR);\\n event NodeRemoved(address _id);\\n\\n // --- Functions ---\\n\\n /**\\n * @notice Called only once on init, to set addresses of other Zero contracts and size. Callable only by owner\\n * @dev initializer function, checks addresses are contracts\\n * @param _size max size of troves list\\n * @param _TroveManagerAddress TroveManager contract address\\n * @param _borrowerOperationsAddress BorrowerOperations contract address\\n */\\n function setParams(\\n uint256 _size,\\n address _TroveManagerAddress,\\n address _borrowerOperationsAddress\\n ) external;\\n\\n /**\\n * @dev Add a node to the list\\n * @param _id Node's id\\n * @param _ICR Node's NICR\\n * @param _prevId Id of previous node for the insert position\\n * @param _nextId Id of next node for the insert position\\n */\\n function insert(\\n address _id,\\n uint256 _ICR,\\n address _prevId,\\n address _nextId\\n ) external;\\n\\n /**\\n * @dev Remove a node from the list\\n * @param _id Node's id\\n */\\n function remove(address _id) external;\\n\\n /**\\n * @dev Re-insert the node at a new position, based on its new NICR\\n * @param _id Node's id\\n * @param _newICR Node's new NICR\\n * @param _prevId Id of previous node for the new insert position\\n * @param _nextId Id of next node for the new insert position\\n */\\n function reInsert(\\n address _id,\\n uint256 _newICR,\\n address _prevId,\\n address _nextId\\n ) external;\\n\\n /**\\n * @dev Checks if the list contains a node\\n * @param _id Node's id\\n * @return true if list contains a node with given id\\n */\\n function contains(address _id) external view returns (bool);\\n\\n /**\\n * @dev Checks if the list is full\\n * @return true if list is full\\n */\\n function isFull() external view returns (bool);\\n\\n /**\\n * @dev Checks if the list is empty\\n * @return true if list is empty\\n */\\n function isEmpty() external view returns (bool);\\n\\n /**\\n * @return list current size\\n */\\n function getSize() external view returns (uint256);\\n\\n /**\\n * @return list max size\\n */\\n function getMaxSize() external view returns (uint256);\\n\\n /**\\n * @return the first node in the list (node with the largest NICR)\\n */\\n function getFirst() external view returns (address);\\n\\n /**\\n * @return the last node in the list (node with the smallest NICR)\\n */\\n function getLast() external view returns (address);\\n\\n /**\\n * @param _id Node's id\\n * @return the next node (with a smaller NICR) in the list for a given node\\n */\\n function getNext(address _id) external view returns (address);\\n\\n /**\\n * @param _id Node's id\\n * @return the previous node (with a larger NICR) in the list for a given node\\n */\\n function getPrev(address _id) external view returns (address);\\n\\n /**\\n * @notice Check if a pair of nodes is a valid insertion point for a new node with the given NICR\\n * @param _ICR Node's NICR\\n * @param _prevId Id of previous node for the insert position\\n * @param _nextId Id of next node for the insert position\\n */\\n function validInsertPosition(\\n uint256 _ICR,\\n address _prevId,\\n address _nextId\\n ) external view returns (bool);\\n\\n /**\\n * @notice Find the insert position for a new node with the given NICR\\n * @param _ICR Node's NICR\\n * @param _prevId Id of previous node for the insert position\\n * @param _nextId Id of next node for the insert position\\n */\\n function findInsertPosition(\\n uint256 _ICR,\\n address _prevId,\\n address _nextId\\n ) external view returns (address, address);\\n}\\n\",\"keccak256\":\"0x7328ad009da6230ddea1559564428464a5c3ace2258fb534dfbba5b5a8c7c60d\",\"license\":\"MIT\"},\"contracts/Interfaces/IStabilityPool.sol\":{\"content\":\"// SPDX-License-Identifier: MIT\\n\\npragma solidity 0.6.11;\\npragma experimental ABIEncoderV2;\\n\\nimport \\\"../Dependencies/Mynt/IMassetManager.sol\\\";\\nimport { IPermit2, ISignatureTransfer } from \\\"./IPermit2.sol\\\";\\n\\n/*\\n * The Stability Pool holds ZUSD tokens deposited by Stability Pool depositors.\\n *\\n * When a trove is liquidated, then depending on system conditions, some of its ZUSD debt gets offset with\\n * ZUSD in the Stability Pool: that is, the offset debt evaporates, and an equal amount of ZUSD tokens in the Stability Pool is burned.\\n *\\n * Thus, a liquidation causes each depositor to receive a ZUSD loss, in proportion to their deposit as a share of total deposits.\\n * They also receive an ETH gain, as the ETH collateral of the liquidated trove is distributed among Stability depositors,\\n * in the same proportion.\\n *\\n * When a liquidation occurs, it depletes every deposit by the same fraction: for example, a liquidation that depletes 40%\\n * of the total ZUSD in the Stability Pool, depletes 40% of each deposit.\\n *\\n * A deposit that has experienced a series of liquidations is termed a \\\"compounded deposit\\\": each liquidation depletes the deposit,\\n * multiplying it by some factor in range ]0,1[\\n *\\n * Please see the implementation spec in the proof document, which closely follows on from the compounded deposit / ETH gain derivations:\\n * https://github.com/liquity/liquity/blob/master/papers/Scalable_Reward_Distribution_with_Compounding_Stakes.pdf\\n *\\n * --- SOV ISSUANCE TO STABILITY POOL DEPOSITORS ---\\n *\\n * An SOV issuance event occurs at every deposit operation, and every liquidation.\\n *\\n * Each deposit is tagged with the address of the front end through which it was made.\\n *\\n * All deposits earn a share of the issued SOV in proportion to the deposit as a share of total deposits. The SOV earned\\n * by a given deposit, is split between the depositor and the front end through which the deposit was made, based on the front end's kickbackRate.\\n *\\n * Please see the system Readme for an overview:\\n * https://github.com/liquity/dev/blob/main/README.md#zero-issuance-to-stability-providers\\n */\\ninterface IStabilityPool {\\n // --- Events ---\\n\\n event StabilityPoolETHBalanceUpdated(uint _newBalance);\\n event StabilityPoolZUSDBalanceUpdated(uint _newBalance);\\n\\n event BorrowerOperationsAddressChanged(address _newBorrowerOperationsAddress);\\n event TroveManagerAddressChanged(address _newTroveManagerAddress);\\n event ActivePoolAddressChanged(address _newActivePoolAddress);\\n event DefaultPoolAddressChanged(address _newDefaultPoolAddress);\\n event ZUSDTokenAddressChanged(address _newZUSDTokenAddress);\\n event SortedTrovesAddressChanged(address _newSortedTrovesAddress);\\n event PriceFeedAddressChanged(address _newPriceFeedAddress);\\n event CommunityIssuanceAddressChanged(address _newCommunityIssuanceAddress);\\n\\n event P_Updated(uint _P);\\n event S_Updated(uint _S, uint128 _epoch, uint128 _scale);\\n event G_Updated(uint _G, uint128 _epoch, uint128 _scale);\\n event EpochUpdated(uint128 _currentEpoch);\\n event ScaleUpdated(uint128 _currentScale);\\n\\n event FrontEndRegistered(address indexed _frontEnd, uint _kickbackRate);\\n event FrontEndTagSet(address indexed _depositor, address indexed _frontEnd);\\n\\n event DepositSnapshotUpdated(address indexed _depositor, uint _P, uint _S, uint _G);\\n event FrontEndSnapshotUpdated(address indexed _frontEnd, uint _P, uint _G);\\n event UserDepositChanged(address indexed _depositor, uint _newDeposit);\\n event FrontEndStakeChanged(\\n address indexed _frontEnd,\\n uint _newFrontEndStake,\\n address _depositor\\n );\\n\\n event ETHGainWithdrawn(address indexed _depositor, uint _ETH, uint _ZUSDLoss);\\n event SOVPaidToDepositor(address indexed _depositor, uint _SOV);\\n event SOVPaidToFrontEnd(address indexed _frontEnd, uint _SOV);\\n event EtherSent(address _to, uint _amount);\\n\\n event WithdrawFromSpAndConvertToDLLR(\\n address _depositor,\\n uint256 _zusdAmountRequested,\\n uint256 _dllrAmountReceived\\n );\\n\\n // --- Functions ---\\n\\n /**\\n * @notice Called only once on init, to set addresses of other Liquity contracts. Callable only by owner\\n * @dev initializer function, checks addresses are contracts\\n * @param _liquityBaseParamsAddress LiquidityBaseParams contract address\\n * @param _borrowerOperationsAddress BorrowerOperations contract address\\n * @param _troveManagerAddress TroveManager contract address\\n * @param _activePoolAddress ActivePool contract address\\n * @param _zusdTokenAddress ZUSDToken contract address\\n * @param _sortedTrovesAddress SortedTroves contract address\\n * @param _priceFeedAddress PriceFeed contract address\\n * @param _communityIssuanceAddress CommunityIssuanceAddress\\n */\\n function setAddresses(\\n address _liquityBaseParamsAddress,\\n address _borrowerOperationsAddress,\\n address _troveManagerAddress,\\n address _activePoolAddress,\\n address _zusdTokenAddress,\\n address _sortedTrovesAddress,\\n address _priceFeedAddress,\\n address _communityIssuanceAddress\\n ) external;\\n\\n /**\\n * @notice Initial checks:\\n * - Frontend is registered or zero address\\n * - Sender is not a registered frontend\\n * - _amount is not zero\\n * ---\\n * - Triggers a SOV issuance, based on time passed since the last issuance. The SOV issuance is shared between *all* depositors and front ends\\n * - Tags the deposit with the provided front end tag param, if it's a new deposit\\n * - Sends depositor's accumulated gains (SOV, ETH) to depositor\\n * - Sends the tagged front end's accumulated SOV gains to the tagged front end\\n * - Increases deposit and tagged front end's stake, and takes new snapshots for each.\\n * @param _amount amount to provide\\n * @param _frontEndTag frontend address to receive accumulated SOV gains\\n */\\n function provideToSP(uint _amount, address _frontEndTag) external;\\n\\n /**\\n * @notice Initial checks:\\n * - _amount is zero or there are no under collateralized troves left in the system\\n * - User has a non zero deposit\\n * ---\\n * - Triggers a SOV issuance, based on time passed since the last issuance. The SOV issuance is shared between *all* depositors and front ends\\n * - Removes the deposit's front end tag if it is a full withdrawal\\n * - Sends all depositor's accumulated gains (SOV, ETH) to depositor\\n * - Sends the tagged front end's accumulated SOV gains to the tagged front end\\n * - Decreases deposit and tagged front end's stake, and takes new snapshots for each.\\n *\\n * If _amount > userDeposit, the user withdraws all of their compounded deposit.\\n * @param _amount amount to withdraw\\n */\\n function withdrawFromSP(uint _amount) external;\\n\\n /**\\n * @notice Initial checks:\\n * - User has a non zero deposit\\n * - User has an open trove\\n * - User has some ETH gain\\n * ---\\n * - Triggers a SOV issuance, based on time passed since the last issuance. The SOV issuance is shared between *all* depositors and front ends\\n * - Sends all depositor's SOV gain to depositor\\n * - Sends all tagged front end's SOV gain to the tagged front end\\n * - Transfers the depositor's entire ETH gain from the Stability Pool to the caller's trove\\n * - Leaves their compounded deposit in the Stability Pool\\n * - Updates snapshots for deposit and tagged front end stake\\n * @param _upperHint upper trove id hint\\n * @param _lowerHint lower trove id hint\\n */\\n function withdrawETHGainToTrove(address _upperHint, address _lowerHint) external;\\n\\n /**\\n * @notice Initial checks:\\n * - Frontend (sender) not already registered\\n * - User (sender) has no deposit\\n * - _kickbackRate is in the range [0, 100%]\\n * ---\\n * Front end makes a one-time selection of kickback rate upon registering\\n * @param _kickbackRate kickback rate selected by frontend\\n */\\n function registerFrontEnd(uint _kickbackRate) external;\\n\\n /**\\n * @notice Initial checks:\\n * - Caller is TroveManager\\n * ---\\n * Cancels out the specified debt against the ZUSD contained in the Stability Pool (as far as possible)\\n * and transfers the Trove's ETH collateral from ActivePool to StabilityPool.\\n * Only called by liquidation functions in the TroveManager.\\n * @param _debt debt to cancel\\n * @param _coll collateral to transfer\\n */\\n function offset(uint _debt, uint _coll) external;\\n\\n /**\\n * @return the total amount of ETH held by the pool, accounted in an internal variable instead of `balance`,\\n * to exclude edge cases like ETH received from a self-destruct.\\n */\\n function getETH() external view returns (uint);\\n\\n /**\\n * @return ZUSD held in the pool. Changes when users deposit/withdraw, and when Trove debt is offset.\\n */\\n function getTotalZUSDDeposits() external view returns (uint);\\n\\n /**\\n * @notice Calculates the ETH gain earned by the deposit since its last snapshots were taken.\\n * @param _depositor address to calculate ETH gain\\n * @return ETH gain from given depositor\\n */\\n function getDepositorETHGain(address _depositor) external view returns (uint);\\n\\n /**\\n * @notice Calculate the SOV gain earned by a deposit since its last snapshots were taken.\\n * If not tagged with a front end, the depositor gets a 100% cut of what their deposit earned.\\n * Otherwise, their cut of the deposit's earnings is equal to the kickbackRate, set by the front end through\\n * which they made their deposit.\\n * @param _depositor address to calculate ETH gain\\n * @return SOV gain from given depositor\\n */\\n function getDepositorSOVGain(address _depositor) external view returns (uint);\\n\\n /**\\n * @param _frontEnd front end address\\n * @return the SOV gain earned by the front end.\\n */\\n function getFrontEndSOVGain(address _frontEnd) external view returns (uint);\\n\\n /**\\n * @param _depositor depositor address\\n * @return the user's compounded deposit.\\n */\\n function getCompoundedZUSDDeposit(address _depositor) external view returns (uint);\\n\\n /**\\n * @notice The front end's compounded stake is equal to the sum of its depositors' compounded deposits.\\n * @param _frontEnd front end address\\n * @return the front end's compounded stake.\\n */\\n function getCompoundedFrontEndStake(address _frontEnd) external view returns (uint);\\n\\n //DLLR _owner or _spender can convert a specified amount of DLLR into ZUSD via Sovryn Mynt and deposit the ZUSD into the Zero Stability Pool, all in a single transaction\\n function provideToSpFromDLLR(\\n uint _dllrAmount,\\n IMassetManager.PermitParams calldata _permitParams\\n ) external;\\n\\n function provideToSpFromDllrWithPermit2(\\n uint256 _dllrAmount,\\n ISignatureTransfer.PermitTransferFrom memory _permit,\\n bytes calldata _signature\\n ) external;\\n\\n /// Stability Pool depositor can withdraw a specified amount of ZUSD from the Zero Stability Pool and optionally convert the ZUSD to DLLR via Sovryn Mynt, all in a single transaction\\n function withdrawFromSpAndConvertToDLLR(uint256 _zusdAmount) external;\\n\\n /**\\n * Fallback function\\n * Only callable by Active Pool, it just accounts for ETH received\\n * receive() external payable;\\n */\\n}\\n\",\"keccak256\":\"0xb35c5ec991dd2b4f8ecb6b28ae29e97313fca6054aa0df14ebdb7336fcea84a6\",\"license\":\"MIT\"},\"contracts/Interfaces/ITroveManager.sol\":{\"content\":\"// SPDX-License-Identifier: MIT\\n\\npragma solidity 0.6.11;\\npragma experimental ABIEncoderV2;\\n\\nimport \\\"./ILiquityBase.sol\\\";\\nimport \\\"./IStabilityPool.sol\\\";\\nimport \\\"./IZUSDToken.sol\\\";\\nimport \\\"./IZEROToken.sol\\\";\\nimport \\\"./IZEROStaking.sol\\\";\\nimport \\\"../Dependencies/Mynt/IMassetManager.sol\\\";\\nimport { IPermit2, ISignatureTransfer } from \\\"./IPermit2.sol\\\";\\n\\n/// Common interface for the Trove Manager.\\ninterface ITroveManager is ILiquityBase {\\n // --- Events ---\\n\\n event FeeDistributorAddressChanged(address _feeDistributorAddress);\\n event TroveManagerRedeemOpsAddressChanged(address _troveManagerRedeemOps);\\n event LiquityBaseParamsAddressChanges(address _borrowerOperationsAddress);\\n event BorrowerOperationsAddressChanged(address _newBorrowerOperationsAddress);\\n event PriceFeedAddressChanged(address _newPriceFeedAddress);\\n event ZUSDTokenAddressChanged(address _newZUSDTokenAddress);\\n event ActivePoolAddressChanged(address _activePoolAddress);\\n event DefaultPoolAddressChanged(address _defaultPoolAddress);\\n event StabilityPoolAddressChanged(address _stabilityPoolAddress);\\n event GasPoolAddressChanged(address _gasPoolAddress);\\n event CollSurplusPoolAddressChanged(address _collSurplusPoolAddress);\\n event SortedTrovesAddressChanged(address _sortedTrovesAddress);\\n event ZEROTokenAddressChanged(address _zeroTokenAddress);\\n event ZEROStakingAddressChanged(address _zeroStakingAddress);\\n\\n event Liquidation(\\n uint256 _liquidatedDebt,\\n uint256 _liquidatedColl,\\n uint256 _collGasCompensation,\\n uint256 _ZUSDGasCompensation\\n );\\n event Redemption(\\n uint256 _attemptedZUSDAmount,\\n uint256 _actualZUSDAmount,\\n uint256 _ETHSent,\\n uint256 _ETHFee\\n );\\n event TroveUpdated(\\n address indexed _borrower,\\n uint256 _debt,\\n uint256 _coll,\\n uint256 stake,\\n uint8 operation\\n );\\n event TroveLiquidated(\\n address indexed _borrower,\\n uint256 _debt,\\n uint256 _coll,\\n uint8 operation\\n );\\n event BaseRateUpdated(uint256 _baseRate);\\n event LastFeeOpTimeUpdated(uint256 _lastFeeOpTime);\\n event TotalStakesUpdated(uint256 _newTotalStakes);\\n event SystemSnapshotsUpdated(uint256 _totalStakesSnapshot, uint256 _totalCollateralSnapshot);\\n event LTermsUpdated(uint256 _L_ETH, uint256 _L_ZUSDDebt);\\n event TroveSnapshotsUpdated(uint256 _L_ETH, uint256 _L_ZUSDDebt);\\n event TroveIndexUpdated(address _borrower, uint256 _newIndex);\\n\\n struct TroveManagerInitAddressesParams {\\n address _feeDistributorAddress;\\n address _troveManagerRedeemOps;\\n address _liquityBaseParamsAddress;\\n address _borrowerOperationsAddress;\\n address _activePoolAddress;\\n address _defaultPoolAddress;\\n address _stabilityPoolAddress;\\n address _gasPoolAddress;\\n address _collSurplusPoolAddress;\\n address _priceFeedAddress;\\n address _zusdTokenAddress;\\n address _sortedTrovesAddress;\\n address _zeroTokenAddress;\\n address _zeroStakingAddress;\\n }\\n\\n // --- Functions ---\\n /**\\n * @notice Called only once on init, to set addresses of other Zero contracts. Callable only by owner\\n * @dev initializer function, checks addresses are contracts\\n * @param _troveManagerInitAddresses addresses list to intialize TroveManager with _\\n * _feeDistributorAddress feeDistributor contract address\\n * _troveManagerRedeemOps TroveManagerRedeemOps contract address\\n * _liquityBaseParamsAddress LiquityBaseParams contract address\\n * _borrowerOperationsAddress BorrowerOperations contract address\\n * _activePoolAddress ActivePool contract address\\n * _defaultPoolAddress DefaultPool contract address\\n * _stabilityPoolAddress StabilityPool contract address\\n * _gasPoolAddress GasPool contract address\\n * _collSurplusPoolAddress CollSurplusPool contract address\\n * _priceFeedAddress PriceFeed contract address\\n * _zusdTokenAddress ZUSDToken contract address\\n * _sortedTrovesAddress SortedTroves contract address\\n * _zeroTokenAddress ZEROToken contract address\\n * _zeroStakingAddress ZEROStaking contract address\\n */\\n function setAddresses(\\n TroveManagerInitAddressesParams memory _troveManagerInitAddresses\\n ) external;\\n\\n function setTroveManagerRedeemOps(address _troveManagerRedeemOps) external;\\n\\n /// @return Trove owners count\\n function getTroveOwnersCount() external view returns (uint256);\\n\\n /// @param _index Trove owner index\\n /// @return Trove from TroveOwners array in given index\\n function getTroveFromTroveOwnersArray(uint256 _index) external view returns (address);\\n\\n /// @param _borrower borrower address\\n /// @return the nominal collateral ratio (ICR) of a given Trove, without the price. Takes a trove's pending coll and debt rewards from redistributions into account.\\n function getNominalICR(address _borrower) external view returns (uint256);\\n\\n /// @notice computes the user\\u2019s individual collateralization ratio (ICR) based on their total collateral and total ZUSD debt. Returns 2^256 -1 if they have 0 debt.\\n /// @param _borrower borrower address\\n /// @param _price ETH price\\n /// @return the current collateral ratio (ICR) of a given Trove. Takes a trove's pending coll and debt rewards from redistributions into account.\\n function getCurrentICR(address _borrower, uint256 _price) external view returns (uint256);\\n\\n /// @notice Closes the trove if its ICR is lower than the minimum collateral ratio.\\n /// @param _borrower borrower address\\n function liquidate(address _borrower) external;\\n\\n /**\\n * @notice Liquidate a sequence of troves. Closes a maximum number of n under-collateralized Troves,\\n * starting from the one with the lowest collateral ratio in the system, and moving upwards\\n * @param _n max number of under-collateralized Troves to liquidate\\n */\\n function liquidateTroves(uint256 _n) external;\\n\\n /**\\n * @notice Attempt to liquidate a custom list of troves provided by the caller.\\n * @param _troveArray list of trove addresses\\n */\\n function batchLiquidateTroves(address[] calldata _troveArray) external;\\n\\n /**\\n * @notice Send _ZUSDamount ZUSD to the system and redeem the corresponding amount of collateral from as many Troves as are needed to fill the redemption\\n * request. Applies pending rewards to a Trove before reducing its debt and coll.\\n *\\n * Note that if _amount is very large, this function can run out of gas, specially if traversed troves are small. This can be easily avoided by\\n * splitting the total _amount in appropriate chunks and calling the function multiple times.\\n *\\n * Param `_maxIterations` can also be provided, so the loop through Troves is capped (if it\\u2019s zero, it will be ignored).This makes it easier to\\n * avoid OOG for the frontend, as only knowing approximately the average cost of an iteration is enough, without needing to know the \\u201ctopology\\u201d\\n * of the trove list. It also avoids the need to set the cap in stone in the contract, nor doing gas calculations, as both gas price and opcode\\n * costs can vary.\\n *\\n * All Troves that are redeemed from -- with the likely exception of the last one -- will end up with no debt left, therefore they will be closed.\\n * If the last Trove does have some remaining debt, it has a finite ICR, and the reinsertion could be anywhere in the list, therefore it requires a hint.\\n * A frontend should use getRedemptionHints() to calculate what the ICR of this Trove will be after redemption, and pass a hint for its position\\n * in the sortedTroves list along with the ICR value that the hint was found for.\\n *\\n * If another transaction modifies the list between calling getRedemptionHints() and passing the hints to redeemCollateral(), it\\n * is very likely that the last (partially) redeemed Trove would end up with a different ICR than what the hint is for. In this case the\\n * redemption will stop after the last completely redeemed Trove and the sender will keep the remaining ZUSD amount, which they can attempt\\n * to redeem later.\\n *\\n * @param _ZUSDAmount ZUSD amount to send to the system\\n * @param _firstRedemptionHint calculated ICR hint of first trove after redemption\\n * @param _maxIterations max Troves iterations (can be 0)\\n * @param _maxFee max fee percentage to accept\\n */\\n function redeemCollateral(\\n uint256 _ZUSDAmount,\\n address _firstRedemptionHint,\\n address _upperPartialRedemptionHint,\\n address _lowerPartialRedemptionHint,\\n uint256 _partialRedemptionHintNICR,\\n uint256 _maxIterations,\\n uint256 _maxFee\\n ) external;\\n\\n function redeemCollateralViaDLLR(\\n uint256 _dllrAmount,\\n address _firstRedemptionHint,\\n address _upperPartialRedemptionHint,\\n address _lowerPartialRedemptionHint,\\n uint256 _partialRedemptionHintNICR,\\n uint256 _maxIterations,\\n uint256 _maxFeePercentage,\\n IMassetManager.PermitParams calldata _permitParams\\n ) external;\\n\\n function redeemCollateralViaDllrWithPermit2(\\n uint256 _dllrAmount,\\n address _firstRedemptionHint,\\n address _upperPartialRedemptionHint,\\n address _lowerPartialRedemptionHint,\\n uint256 _partialRedemptionHintNICR,\\n uint256 _maxIterations,\\n uint256 _maxFeePercentage,\\n ISignatureTransfer.PermitTransferFrom memory _permit,\\n bytes calldata _signature\\n ) external;\\n \\n\\n /// @notice Update borrower's stake based on their latest collateral value\\n /// @param _borrower borrower address\\n function updateStakeAndTotalStakes(address _borrower) external returns (uint256);\\n\\n /// @notice Update borrower's snapshots of L_ETH and L_ZUSDDebt to reflect the current values\\n /// @param _borrower borrower address\\n function updateTroveRewardSnapshots(address _borrower) external;\\n\\n /// @notice Push the owner's address to the Trove owners list, and record the corresponding array index on the Trove struct\\n /// @param _borrower borrower address\\n /// @return index where Trove was inserted\\n function addTroveOwnerToArray(address _borrower) external returns (uint256 index);\\n\\n /// @notice Add the borrowers's coll and debt rewards earned from redistributions, to their Trove\\n /// @param _borrower borrower address\\n function applyPendingRewards(address _borrower) external;\\n\\n /// @param _borrower borrower address\\n /// @return the borrower's pending accumulated ETH reward, earned by their stake\\n function getPendingETHReward(address _borrower) external view returns (uint256);\\n\\n /// @param _borrower borrower address\\n /// @return the borrower's pending accumulated ZUSD reward, earned by their stake\\n function getPendingZUSDDebtReward(address _borrower) external view returns (uint256);\\n\\n /*\\n * @notice A Trove has pending rewards if its snapshot is less than the current rewards per-unit-staked sum:\\n * this indicates that rewards have occured since the snapshot was made, and the user therefore has\\n * pending rewards\\n *\\n * @param _borrower borrower address\\n * @return true if has pending rewards\\n */\\n function hasPendingRewards(address _borrower) external view returns (bool);\\n\\n /// @notice returns the Troves entire debt and coll, including pending rewards from redistributions.\\n /// @param _borrower borrower address\\n function getEntireDebtAndColl(\\n address _borrower\\n )\\n external\\n view\\n returns (\\n uint256 debt,\\n uint256 coll,\\n uint256 pendingZUSDDebtReward,\\n uint256 pendingETHReward\\n );\\n\\n /// @notice Close given trove. Called by BorrowerOperations.\\n /// @param _borrower borrower address\\n function closeTrove(address _borrower) external;\\n\\n /// @notice Remove borrower's stake from the totalStakes sum, and set their stake to 0\\n /// @param _borrower borrower address\\n function removeStake(address _borrower) external;\\n\\n /// @return calculated redemption rate using baseRate\\n function getRedemptionRate() external view returns (uint256);\\n\\n /// @return calculated redemption rate using calculated decayed as base rate\\n function getRedemptionRateWithDecay() external view returns (uint256);\\n\\n /// @notice The redemption fee is taken as a cut of the total ETH drawn from the system in a redemption. It is based on the current redemption rate.\\n /// @param _ETHDrawn ETH drawn\\n function getRedemptionFeeWithDecay(uint256 _ETHDrawn) external view returns (uint256);\\n\\n /// @return borrowing rate\\n function getBorrowingRate() external view returns (uint256);\\n\\n /// @return borrowing rate calculated using decayed as base rate\\n function getBorrowingRateWithDecay() external view returns (uint256);\\n\\n /// @param ZUSDDebt ZUSD debt amount to calculate fee\\n /// @return borrowing fee using borrowing rate\\n function getBorrowingFee(uint256 ZUSDDebt) external view returns (uint256);\\n\\n /// @param _ZUSDDebt ZUSD debt amount to calculate fee\\n /// @return borrowing fee using borrowing rate with decay\\n function getBorrowingFeeWithDecay(uint256 _ZUSDDebt) external view returns (uint256);\\n\\n /// @notice Updates the baseRate state variable based on time elapsed since the last redemption or ZUSD borrowing operation.\\n function decayBaseRateFromBorrowing() external;\\n\\n /// @param _borrower borrower address\\n /// @return Trove status from given trove\\n function getTroveStatus(address _borrower) external view returns (uint256);\\n\\n /// @param _borrower borrower address\\n /// @return Trove stake from given trove\\n function getTroveStake(address _borrower) external view returns (uint256);\\n\\n /// @param _borrower borrower address\\n /// @return Trove debt from given trove\\n function getTroveDebt(address _borrower) external view returns (uint256);\\n\\n /// @param _borrower borrower address\\n /// @return Trove collateral from given trove\\n function getTroveColl(address _borrower) external view returns (uint256);\\n\\n /// @param _borrower borrower address\\n /// @param num status to set\\n function setTroveStatus(address _borrower, uint256 num) external;\\n\\n /// @param _borrower borrower address\\n /// @param _collIncrease amount of collateral to increase\\n /// @return new trove collateral\\n function increaseTroveColl(\\n address _borrower,\\n uint256 _collIncrease\\n ) external returns (uint256);\\n\\n /// @param _borrower borrower address\\n /// @param _collDecrease amount of collateral to decrease\\n /// @return new trove collateral\\n function decreaseTroveColl(\\n address _borrower,\\n uint256 _collDecrease\\n ) external returns (uint256);\\n\\n /// @param _borrower borrower address\\n /// @param _debtIncrease amount of debt to increase\\n /// @return new trove debt\\n function increaseTroveDebt(\\n address _borrower,\\n uint256 _debtIncrease\\n ) external returns (uint256);\\n\\n /// @param _borrower borrower address\\n /// @param _debtDecrease amount of debt to decrease\\n /// @return new trove debt\\n function decreaseTroveDebt(\\n address _borrower,\\n uint256 _debtDecrease\\n ) external returns (uint256);\\n\\n /**\\n * @param _price ETH price\\n * @return the total collateralization ratio (TCR) of the system.\\n * The TCR is based on the the entire system debt and collateral (including pending rewards).\\n */\\n function getTCR(uint256 _price) external view returns (uint256);\\n\\n function MCR() external view returns (uint256);\\n\\n function CCR() external view returns (uint256);\\n\\n /// @notice reveals whether or not the system is in Recovery Mode (i.e. whether the Total Collateralization Ratio (TCR) is below the Critical Collateralization Ratio (CCR)).\\n function checkRecoveryMode(uint256 _price) external view returns (bool);\\n}\\n\",\"keccak256\":\"0x396367eb7763c289e419a025532150e2a1d9d99eead359ceb6a081787501a00b\",\"license\":\"MIT\"},\"contracts/Interfaces/IZEROStaking.sol\":{\"content\":\"// SPDX-License-Identifier: MIT\\n\\npragma solidity 0.6.11;\\n\\ninterface IZEROStaking {\\n // --- Events --\\n\\n event ZEROTokenAddressSet(address _zeroTokenAddress);\\n event ZUSDTokenAddressSet(address _zusdTokenAddress);\\n event FeeDistributorAddressAddressSet(address _feeDistributorAddress);\\n event ActivePoolAddressSet(address _activePoolAddress);\\n\\n event StakeChanged(address indexed staker, uint256 newStake);\\n event StakingGainsWithdrawn(address indexed staker, uint256 ZUSDGain, uint256 ETHGain);\\n event F_ETHUpdated(uint256 _F_ETH);\\n event F_ZUSDUpdated(uint256 _F_ZUSD);\\n event TotalZEROStakedUpdated(uint256 _totalZEROStaked);\\n event EtherSent(address _account, uint256 _amount);\\n event StakerSnapshotsUpdated(address _staker, uint256 _F_ETH, uint256 _F_ZUSD);\\n\\n // --- Functions ---\\n\\n /**\\n * @notice Called only once on init, to set addresses of other Zero contracts. Callable only by owner\\n * @dev initializer function, checks addresses are contracts\\n * @param _zeroTokenAddress ZEROToken contract address\\n * @param _zusdTokenAddress ZUSDToken contract address\\n * @param _feeDistributorAddress FeeDistributorAddress contract address\\n * @param _activePoolAddress ActivePool contract address\\n */\\n function setAddresses(\\n address _zeroTokenAddress,\\n address _zusdTokenAddress,\\n address _feeDistributorAddress,\\n address _activePoolAddress\\n ) external;\\n\\n /// @notice If caller has a pre-existing stake, send any accumulated ETH and ZUSD gains to them.\\n /// @param _ZEROamount ZERO tokens to stake\\n function stake(uint256 _ZEROamount) external;\\n\\n /**\\n * @notice Unstake the ZERO and send the it back to the caller, along with their accumulated ZUSD & ETH gains.\\n * If requested amount > stake, send their entire stake.\\n * @param _ZEROamount ZERO tokens to unstake\\n */\\n function unstake(uint256 _ZEROamount) external;\\n\\n /// @param _ETHFee ETH fee\\n /// @notice increase ETH fee\\n function increaseF_ETH(uint256 _ETHFee) external;\\n\\n /// @param _ZEROFee ZUSD fee\\n /// @notice increase ZUSD fee\\n function increaseF_ZUSD(uint256 _ZEROFee) external;\\n\\n /// @param _user user address\\n /// @return pending ETH gain of given user\\n function getPendingETHGain(address _user) external view returns (uint256);\\n\\n /// @param _user user address\\n /// @return pending ZUSD gain of given user\\n function getPendingZUSDGain(address _user) external view returns (uint256);\\n}\\n\",\"keccak256\":\"0x4c7948ce7dff9ea9b8495054e511eabcf44a91c7db8520ec58ff2a002327e0c5\",\"license\":\"MIT\"},\"contracts/Interfaces/IZEROToken.sol\":{\"content\":\"// SPDX-License-Identifier: MIT\\n\\npragma solidity 0.6.11;\\n\\nimport \\\"../Dependencies/IERC20.sol\\\";\\nimport \\\"../Dependencies/IERC2612.sol\\\";\\n\\ninterface IZEROToken is IERC20, IERC2612 { \\n\\n // --- Functions ---\\n\\n /// @notice send zero tokens to ZEROStaking contract\\n /// @param _sender sender address\\n /// @param _amount amount to send\\n function sendToZEROStaking(address _sender, uint256 _amount) external;\\n\\n /// @return deployment start time\\n function getDeploymentStartTime() external view returns (uint256);\\n\\n}\\n\",\"keccak256\":\"0xbcc0baabe4c4686563a09cf1486f2d152b70404996676a89d525691f69637f66\",\"license\":\"MIT\"},\"contracts/Interfaces/IZUSDToken.sol\":{\"content\":\"// SPDX-License-Identifier: MIT\\n\\npragma solidity 0.6.11;\\n\\nimport \\\"../Dependencies/IERC20.sol\\\";\\nimport \\\"../Dependencies/IERC2612.sol\\\";\\n\\ninterface IZUSDToken is IERC20, IERC2612 { \\n \\n // --- Events ---\\n\\n event TroveManagerAddressChanged(address _troveManagerAddress);\\n event StabilityPoolAddressChanged(address _newStabilityPoolAddress);\\n event BorrowerOperationsAddressChanged(address _newBorrowerOperationsAddress);\\n\\n event ZUSDTokenBalanceUpdated(address _user, uint _amount);\\n\\n // --- Functions ---\\n\\n function mint(address _account, uint256 _amount) external;\\n\\n function burn(address _account, uint256 _amount) external;\\n\\n function sendToPool(address _sender, address poolAddress, uint256 _amount) external;\\n\\n function returnFromPool(address poolAddress, address user, uint256 _amount ) external;\\n}\\n\",\"keccak256\":\"0xe52df063aa08f709640c28888edd27310c820f6d08564855538ae245eb2f5a8c\",\"license\":\"MIT\"}},\"version\":1}", - "bytecode": 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BorrowerOperations.BorrowerOperation\",\"name\":\"operation\",\"type\":\"uint8\"}],\"name\":\"TroveUpdated\",\"type\":\"event\"},{\"anonymous\":false,\"inputs\":[{\"indexed\":false,\"internalType\":\"address\",\"name\":\"_zeroStakingAddress\",\"type\":\"address\"}],\"name\":\"ZEROStakingAddressChanged\",\"type\":\"event\"},{\"anonymous\":false,\"inputs\":[{\"indexed\":true,\"internalType\":\"address\",\"name\":\"_borrower\",\"type\":\"address\"},{\"indexed\":false,\"internalType\":\"uint256\",\"name\":\"_ZUSDFee\",\"type\":\"uint256\"}],\"name\":\"ZUSDBorrowingFeePaid\",\"type\":\"event\"},{\"anonymous\":false,\"inputs\":[{\"indexed\":false,\"internalType\":\"address\",\"name\":\"_zusdTokenAddress\",\"type\":\"address\"}],\"name\":\"ZUSDTokenAddressChanged\",\"type\":\"event\"},{\"inputs\":[],\"name\":\"BORROWING_FEE_FLOOR\",\"outputs\":[{\"internalType\":\"uint256\",\"name\":\"\",\"type\":\"uint256\"}],\"stateMutability\":\"view\",\"type\":\"function\"},{\"inputs\":[],\"name\":\"DECIMAL_PRECISION\",\"outputs\":[{\"internalType\":\"uint256\",\"name\":\"\",\"type\":\"uint256\"}],\"stateMutability\":\"view\",\"type\":\"function\"},{\"inputs\":[],\"name\":\"MIN_NET_DEBT\",\"outputs\":[{\"internalType\":\"uint256\",\"name\":\"\",\"type\":\"uint256\"}],\"stateMutability\":\"view\",\"type\":\"function\"},{\"inputs\":[],\"name\":\"NAME\",\"outputs\":[{\"internalType\":\"string\",\"name\":\"\",\"type\":\"string\"}],\"stateMutability\":\"view\",\"type\":\"function\"},{\"inputs\":[],\"name\":\"ZUSD_GAS_COMPENSATION\",\"outputs\":[{\"internalType\":\"uint256\",\"name\":\"\",\"type\":\"uint256\"}],\"stateMutability\":\"view\",\"type\":\"function\"},{\"inputs\":[],\"name\":\"_100pct\",\"outputs\":[{\"internalType\":\"uint256\",\"name\":\"\",\"type\":\"uint256\"}],\"stateMutability\":\"view\",\"type\":\"function\"},{\"inputs\":[],\"name\":\"activePool\",\"outputs\":[{\"internalType\":\"contract 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ISignatureTransfer.TokenPermissions\",\"name\":\"permitted\",\"type\":\"tuple\"},{\"internalType\":\"uint256\",\"name\":\"nonce\",\"type\":\"uint256\"},{\"internalType\":\"uint256\",\"name\":\"deadline\",\"type\":\"uint256\"}],\"internalType\":\"struct 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IMassetManager.PermitParams\",\"name\":\"_permitParams\",\"type\":\"tuple\"}],\"name\":\"closeNueTrove\",\"outputs\":[],\"stateMutability\":\"nonpayable\",\"type\":\"function\"},{\"inputs\":[{\"components\":[{\"components\":[{\"internalType\":\"address\",\"name\":\"token\",\"type\":\"address\"},{\"internalType\":\"uint256\",\"name\":\"amount\",\"type\":\"uint256\"}],\"internalType\":\"struct ISignatureTransfer.TokenPermissions\",\"name\":\"permitted\",\"type\":\"tuple\"},{\"internalType\":\"uint256\",\"name\":\"nonce\",\"type\":\"uint256\"},{\"internalType\":\"uint256\",\"name\":\"deadline\",\"type\":\"uint256\"}],\"internalType\":\"struct ISignatureTransfer.PermitTransferFrom\",\"name\":\"_permit\",\"type\":\"tuple\"},{\"internalType\":\"bytes\",\"name\":\"_signature\",\"type\":\"bytes\"}],\"name\":\"closeNueTroveWithPermit2\",\"outputs\":[],\"stateMutability\":\"nonpayable\",\"type\":\"function\"},{\"inputs\":[],\"name\":\"closeTrove\",\"outputs\":[],\"stateMutability\":\"nonpayable\",\"type\":\"function\"},{\"inputs\":[],\"name\":\"defaultPool\",\"outputs\":[{\"internalType\":\"contract IDefaultPool\",\"name\":\"\",\"type\":\"address\"}],\"stateMutability\":\"view\",\"type\":\"function\"},{\"inputs\":[],\"name\":\"exitFeeController\",\"outputs\":[{\"internalType\":\"address\",\"name\":\"ctrl\",\"type\":\"address\"}],\"stateMutability\":\"view\",\"type\":\"function\"},{\"inputs\":[],\"name\":\"feeDistributor\",\"outputs\":[{\"internalType\":\"contract 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IMassetManager\",\"name\":\"\",\"type\":\"address\"}],\"stateMutability\":\"view\",\"type\":\"function\"},{\"inputs\":[],\"name\":\"getOwner\",\"outputs\":[{\"internalType\":\"address\",\"name\":\"_owner\",\"type\":\"address\"}],\"stateMutability\":\"view\",\"type\":\"function\"},{\"inputs\":[],\"name\":\"liquityBaseParams\",\"outputs\":[{\"internalType\":\"contract ILiquityBaseParams\",\"name\":\"\",\"type\":\"address\"}],\"stateMutability\":\"view\",\"type\":\"function\"},{\"inputs\":[],\"name\":\"massetManager\",\"outputs\":[{\"internalType\":\"contract 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IPermit2\",\"name\":\"\",\"type\":\"address\"}],\"stateMutability\":\"view\",\"type\":\"function\"},{\"inputs\":[{\"internalType\":\"address\",\"name\":\"borrower\",\"type\":\"address\"},{\"internalType\":\"uint256\",\"name\":\"grossColl\",\"type\":\"uint256\"}],\"name\":\"previewZeroCollWithdrawExitFee\",\"outputs\":[{\"internalType\":\"uint16\",\"name\":\"rateBps\",\"type\":\"uint16\"},{\"internalType\":\"uint256\",\"name\":\"feeAmount\",\"type\":\"uint256\"},{\"internalType\":\"uint256\",\"name\":\"netAmount\",\"type\":\"uint256\"},{\"internalType\":\"address\",\"name\":\"feeReceiver\",\"type\":\"address\"},{\"internalType\":\"bool\",\"name\":\"active\",\"type\":\"bool\"},{\"internalType\":\"uint8\",\"name\":\"reason\",\"type\":\"uint8\"}],\"stateMutability\":\"view\",\"type\":\"function\"},{\"inputs\":[],\"name\":\"priceFeed\",\"outputs\":[{\"internalType\":\"contract IPriceFeed\",\"name\":\"\",\"type\":\"address\"}],\"stateMutability\":\"view\",\"type\":\"function\"},{\"inputs\":[{\"internalType\":\"uint256\",\"name\":\"_ZUSDAmount\",\"type\":\"uint256\"},{\"internalType\":\"address\",\"name\":\"_upperHint\",\"type\":\"address\"},{\"internalType\":\"address\",\"name\":\"_lowerHint\",\"type\":\"address\"}],\"name\":\"repayZUSD\",\"outputs\":[],\"stateMutability\":\"nonpayable\",\"type\":\"function\"},{\"inputs\":[{\"internalType\":\"uint256\",\"name\":\"_dllrAmount\",\"type\":\"uint256\"},{\"internalType\":\"address\",\"name\":\"_upperHint\",\"type\":\"address\"},{\"internalType\":\"address\",\"name\":\"_lowerHint\",\"type\":\"address\"},{\"components\":[{\"internalType\":\"uint256\",\"name\":\"deadline\",\"type\":\"uint256\"},{\"internalType\":\"uint8\",\"name\":\"v\",\"type\":\"uint8\"},{\"internalType\":\"bytes32\",\"name\":\"r\",\"type\":\"bytes32\"},{\"internalType\":\"bytes32\",\"name\":\"s\",\"type\":\"bytes32\"}],\"internalType\":\"struct IMassetManager.PermitParams\",\"name\":\"_permitParams\",\"type\":\"tuple\"}],\"name\":\"repayZusdFromDLLR\",\"outputs\":[],\"stateMutability\":\"nonpayable\",\"type\":\"function\"},{\"inputs\":[{\"internalType\":\"uint256\",\"name\":\"_dllrAmount\",\"type\":\"uint256\"},{\"internalType\":\"address\",\"name\":\"_upperHint\",\"type\":\"address\"},{\"internalType\":\"address\",\"name\":\"_lowerHint\",\"type\":\"address\"},{\"components\":[{\"components\":[{\"internalType\":\"address\",\"name\":\"token\",\"type\":\"address\"},{\"internalType\":\"uint256\",\"name\":\"amount\",\"type\":\"uint256\"}],\"internalType\":\"struct ISignatureTransfer.TokenPermissions\",\"name\":\"permitted\",\"type\":\"tuple\"},{\"internalType\":\"uint256\",\"name\":\"nonce\",\"type\":\"uint256\"},{\"internalType\":\"uint256\",\"name\":\"deadline\",\"type\":\"uint256\"}],\"internalType\":\"struct ISignatureTransfer.PermitTransferFrom\",\"name\":\"_permit\",\"type\":\"tuple\"},{\"internalType\":\"bytes\",\"name\":\"_signature\",\"type\":\"bytes\"}],\"name\":\"repayZusdFromDLLRWithPermit2\",\"outputs\":[],\"stateMutability\":\"nonpayable\",\"type\":\"function\"},{\"inputs\":[{\"internalType\":\"address\",\"name\":\"_feeDistributorAddress\",\"type\":\"address\"},{\"internalType\":\"address\",\"name\":\"_liquityBaseParamsAddress\",\"type\":\"address\"},{\"internalType\":\"address\",\"name\":\"_troveManagerAddress\",\"type\":\"address\"},{\"internalType\":\"address\",\"name\":\"_activePoolAddress\",\"type\":\"address\"},{\"internalType\":\"address\",\"name\":\"_defaultPoolAddress\",\"type\":\"address\"},{\"internalType\":\"address\",\"name\":\"_stabilityPoolAddress\",\"type\":\"address\"},{\"internalType\":\"address\",\"name\":\"_gasPoolAddress\",\"type\":\"address\"},{\"internalType\":\"address\",\"name\":\"_collSurplusPoolAddress\",\"type\":\"address\"},{\"internalType\":\"address\",\"name\":\"_priceFeedAddress\",\"type\":\"address\"},{\"internalType\":\"address\",\"name\":\"_sortedTrovesAddress\",\"type\":\"address\"},{\"internalType\":\"address\",\"name\":\"_zusdTokenAddress\",\"type\":\"address\"},{\"internalType\":\"address\",\"name\":\"_zeroStakingAddress\",\"type\":\"address\"}],\"name\":\"setAddresses\",\"outputs\":[],\"stateMutability\":\"nonpayable\",\"type\":\"function\"},{\"inputs\":[{\"internalType\":\"address\",\"name\":\"ctrl\",\"type\":\"address\"}],\"name\":\"setExitFeeController\",\"outputs\":[],\"stateMutability\":\"nonpayable\",\"type\":\"function\"},{\"inputs\":[{\"internalType\":\"address\",\"name\":\"_massetManagerAddress\",\"type\":\"address\"}],\"name\":\"setMassetManagerAddress\",\"outputs\":[],\"stateMutability\":\"nonpayable\",\"type\":\"function\"},{\"inputs\":[{\"internalType\":\"address\",\"name\":\"_owner\",\"type\":\"address\"}],\"name\":\"setOwner\",\"outputs\":[],\"stateMutability\":\"nonpayable\",\"type\":\"function\"},{\"inputs\":[],\"name\":\"sortedTroves\",\"outputs\":[{\"internalType\":\"contract ISortedTroves\",\"name\":\"\",\"type\":\"address\"}],\"stateMutability\":\"view\",\"type\":\"function\"},{\"inputs\":[],\"name\":\"troveManager\",\"outputs\":[{\"internalType\":\"contract ITroveManager\",\"name\":\"\",\"type\":\"address\"}],\"stateMutability\":\"view\",\"type\":\"function\"},{\"inputs\":[{\"internalType\":\"uint256\",\"name\":\"_collWithdrawal\",\"type\":\"uint256\"},{\"internalType\":\"address\",\"name\":\"_upperHint\",\"type\":\"address\"},{\"internalType\":\"address\",\"name\":\"_lowerHint\",\"type\":\"address\"}],\"name\":\"withdrawColl\",\"outputs\":[],\"stateMutability\":\"nonpayable\",\"type\":\"function\"},{\"inputs\":[{\"internalType\":\"uint256\",\"name\":\"_maxFeePercentage\",\"type\":\"uint256\"},{\"internalType\":\"uint256\",\"name\":\"_ZUSDAmount\",\"type\":\"uint256\"},{\"internalType\":\"address\",\"name\":\"_upperHint\",\"type\":\"address\"},{\"internalType\":\"address\",\"name\":\"_lowerHint\",\"type\":\"address\"}],\"name\":\"withdrawZUSD\",\"outputs\":[],\"stateMutability\":\"nonpayable\",\"type\":\"function\"},{\"inputs\":[{\"internalType\":\"uint256\",\"name\":\"_maxFeePercentage\",\"type\":\"uint256\"},{\"internalType\":\"uint256\",\"name\":\"_ZUSDAmount\",\"type\":\"uint256\"},{\"internalType\":\"address\",\"name\":\"_upperHint\",\"type\":\"address\"},{\"internalType\":\"address\",\"name\":\"_lowerHint\",\"type\":\"address\"}],\"name\":\"withdrawZusdAndConvertToDLLR\",\"outputs\":[{\"internalType\":\"uint256\",\"name\":\"\",\"type\":\"uint256\"}],\"stateMutability\":\"nonpayable\",\"type\":\"function\"},{\"inputs\":[],\"name\":\"zeroStaking\",\"outputs\":[{\"internalType\":\"contract IZEROStaking\",\"name\":\"\",\"type\":\"address\"}],\"stateMutability\":\"view\",\"type\":\"function\"},{\"inputs\":[],\"name\":\"zeroStakingAddress\",\"outputs\":[{\"internalType\":\"address\",\"name\":\"\",\"type\":\"address\"}],\"stateMutability\":\"view\",\"type\":\"function\"},{\"inputs\":[],\"name\":\"zusdToken\",\"outputs\":[{\"internalType\":\"contract IZUSDToken\",\"name\":\"\",\"type\":\"address\"}],\"stateMutability\":\"view\",\"type\":\"function\"}],\"devdoc\":{\"kind\":\"dev\",\"methods\":{\"getOwner()\":{\"returns\":{\"_owner\":\"Address of the owner. \"}},\"previewZeroCollWithdrawExitFee(address,uint256)\":{\"returns\":{\"active\":\" resolved policy active flag (the \\\"will charge\\\" test is active && feeAmount>0)\",\"feeAmount\":\" fee that would be taken (0 unless active && rateBps>0 && not dust)\",\"feeReceiver\":\"fee destination from the quote\",\"netAmount\":\" amount the borrower would receive (== grossColl when not charging)\",\"rateBps\":\" resolved rate (0 when not charging / fail-open)\",\"reason\":\" SkipReason (NONE on an honest/charging quote)\"}},\"setAddresses(address,address,address,address,address,address,address,address,address,address,address,address)\":{\"details\":\"initializer function, checks addresses are contracts\",\"params\":{\"_activePoolAddress\":\"ActivePool contract address\",\"_collSurplusPoolAddress\":\"CollSurplusPool contract address\",\"_defaultPoolAddress\":\"DefaultPool contract address\",\"_feeDistributorAddress\":\"feeDistributor contract address\",\"_gasPoolAddress\":\"GasPool contract address\",\"_liquityBaseParamsAddress\":\"LiquidityBaseParams contract address\",\"_priceFeedAddress\":\"PrideFeed contract address\",\"_sortedTrovesAddress\":\"SortedTroves contract address\",\"_stabilityPoolAddress\":\"StabilityPool contract address\",\"_troveManagerAddress\":\"TroveManager contract address\",\"_zeroStakingAddress\":\"ZEROStaking contract address\",\"_zusdTokenAddress\":\"ZUSDToken contract address\"}},\"setOwner(address)\":{\"params\":{\"_owner\":\"Address of the owner. \"}},\"withdrawZusdAndConvertToDLLR(uint256,uint256,address,address)\":{\"returns\":{\"_0\":\"DLLR amount minted\"}}},\"version\":1},\"userdoc\":{\"kind\":\"user\",\"methods\":{\"MIN_NET_DEBT()\":{\"notice\":\"Minimum amount of net ZUSD debt a trove must have\"},\"ZUSD_GAS_COMPENSATION()\":{\"notice\":\"Amount of ZUSD to be locked in gas pool on opening troves\"},\"addColl(address,address)\":{\"notice\":\"Send ETH as collateral to a trove\"},\"claimCollateral()\":{\"notice\":\"Claim remaining collateral from a redemption or from a liquidation with ICR > MCR in Recovery Mode, charging the ColFee exit fee when the SURFACE_ZERO_CLAIM_SURPLUS policy is active. Fail-open like every ColFee hook: on any ColFee failure (controller missing/ reverting, invalid quote, fee-leg transfer failure inside the pool) the claimant receives the full surplus \\u2014 a ColFee failure can never brick a claim. The non-charging path is the untouched claimColl flow (plus the ExitFeeSkipped event, same convention as _sendCollWithExitFee).\"},\"closeNueTrove((uint256,uint8,bytes32,bytes32))\":{\"notice\":\"allows a borrower to repay all debt, withdraw all their collateral, and close their Trove. Requires the borrower have a NUE balance sufficient to repay their trove's debt, excluding gas compensation - i.e. `(debt - 50)` NUE. This method is identical to `closeTrove()`, but operates on NUE tokens instead of ZUSD.\"},\"closeNueTroveWithPermit2(((address,uint256),uint256,uint256),bytes)\":{\"notice\":\"allows a borrower to repay all debt, withdraw all their collateral, and close their Trove. Requires the borrower have a NUE balance sufficient to repay their trove's debt, excluding gas compensation - i.e. `(debt - 50)` NUE. This method is identical to `closeTrove()`, but operates on NUE tokens instead of ZUSD.\"},\"closeTrove()\":{\"notice\":\"allows a borrower to repay all debt, withdraw all their collateral, and close their Trove. Requires the borrower have a ZUSD balance sufficient to repay their trove's debt, excluding gas compensation - i.e. `(debt - 50)` ZUSD.\"},\"constructor\":\"Constructor \",\"exitFeeController()\":{\"notice\":\"Address of the ColFee controller this instance consults. Held in an EIP-1967-style unstructured slot (no regular-storage footprint).\"},\"getOwner()\":{\"notice\":\"Return address of the owner.\"},\"moveETHGainToTrove(address,address,address)\":{\"notice\":\"Send ETH as collateral to a trove. Called by only the Stability Pool.\"},\"permit2()\":{\"notice\":\"CONSTANT / IMMUTABLE VARIABLE ONLY \"},\"previewZeroCollWithdrawExitFee(address,uint256)\":{\"notice\":\"Read-only preview of the ColFee exit fee on a Zero borrower collateral payout of `grossColl` for `borrower`. Hard-wired to SURFACE_ZERO_WITHDRAW_COLL / subProduct=address(0) / actor=borrower, and routes through the same `_safeQuote` the live hook uses \\u2014 so the synthesized fail-open quote on controller failure matches execution wei-for-wise. The caller passes `grossColl` (computed from trove state); this is a thin policy lookup, not a re-derivation of the per-function gross.\"},\"repayZUSD(uint256,address,address)\":{\"notice\":\"Repay ZUSD tokens to a Trove: Burn the repaid ZUSD tokens, and reduce the trove's debt accordingly\"},\"repayZusdFromDLLR(uint256,address,address,(uint256,uint8,bytes32,bytes32))\":{\"notice\":\"Repay ZUSD tokens to a Trove by DLLR: convert DLLR to ZUSD tokens, and then reduce the trove's debt accordingly\"},\"repayZusdFromDLLRWithPermit2(uint256,address,address,((address,uint256),uint256,uint256),bytes)\":{\"notice\":\"Repay ZUSD tokens to a Trove by DLLR: convert DLLR to ZUSD tokens, and then reduce the trove's debt accordingly\"},\"setAddresses(address,address,address,address,address,address,address,address,address,address,address,address)\":{\"notice\":\"Called only once on init, to set addresses of other Zero contracts. Callable only by owner\"},\"setExitFeeController(address)\":{\"notice\":\"Set (or rotate) the ColFee controller this instance consults. Owner-only, one call, effective for every subsequent exit.\"},\"setOwner(address)\":{\"notice\":\"Set address of the owner (only owner can call this function)\"},\"withdrawColl(uint256,address,address)\":{\"notice\":\"Withdraw ETH collateral from a trove\"},\"withdrawZUSD(uint256,uint256,address,address)\":{\"notice\":\"Withdraw ZUSD tokens from a trove: mint new ZUSD tokens to the owner, and increase the trove's debt accordingly\"},\"withdrawZusdAndConvertToDLLR(uint256,uint256,address,address)\":{\"notice\":\"Borrow (withdraw) ZUSD tokens from a trove: mint new ZUSD tokens to the owner and convert it to DLLR in one transaction Zero Line of Credit owner can borrow a specified amount of ZUSD and convert it to DLLR via Sovryn Mynt\"}},\"version\":1}},\"settings\":{\"compilationTarget\":{\"contracts/BorrowerOperations.sol\":\"BorrowerOperations\"},\"evmVersion\":\"istanbul\",\"libraries\":{},\"metadata\":{\"bytecodeHash\":\"ipfs\",\"useLiteralContent\":true},\"optimizer\":{\"enabled\":true,\"runs\":100},\"remappings\":[]},\"sources\":{\"contracts/BorrowerOperations.sol\":{\"content\":\"// SPDX-License-Identifier: MIT\\n\\npragma solidity 0.6.11;\\npragma experimental ABIEncoderV2;\\n\\nimport \\\"./Interfaces/IBorrowerOperations.sol\\\";\\nimport \\\"./Interfaces/ITroveManager.sol\\\";\\nimport \\\"./Interfaces/IZUSDToken.sol\\\";\\nimport \\\"./Interfaces/ICollSurplusPool.sol\\\";\\nimport \\\"./Interfaces/ISortedTroves.sol\\\";\\nimport \\\"./Interfaces/IZEROStaking.sol\\\";\\nimport \\\"./Interfaces/IFeeDistributor.sol\\\";\\nimport \\\"./Dependencies/LiquityBase.sol\\\";\\nimport \\\"./Dependencies/CheckContract.sol\\\";\\nimport \\\"./Dependencies/console.sol\\\";\\nimport \\\"./BorrowerOperationsStorage.sol\\\";\\nimport \\\"./Dependencies/Mynt/MyntLib.sol\\\";\\nimport \\\"./Interfaces/IPermit2.sol\\\";\\nimport \\\"./Interfaces/colfee/IExitFeeController.sol\\\";\\n\\ncontract BorrowerOperations is\\n LiquityBase,\\n BorrowerOperationsStorage,\\n CheckContract,\\n IBorrowerOperations\\n{\\n /** CONSTANT / IMMUTABLE VARIABLE ONLY */\\n IPermit2 public immutable permit2;\\n\\n // --- ColFee (exit-fee) hook ---\\n // No new regular storage: the controller pointer lives in an EIP-1967-style\\n // unstructured slot so `BorrowerOperations` storage-layout is unchanged.\\n bytes32 private constant EXIT_FEE_CONTROLLER_SLOT =\\n bytes32(uint256(keccak256(\\\"sovryn.exitFeeController\\\")) - 1);\\n bytes32 private constant SURFACE_ZERO_WITHDRAW_COLL =\\n keccak256(\\\"COLFEE:SURFACE_ZERO_WITHDRAW_COLL\\\");\\n bytes32 private constant SURFACE_ZERO_CLAIM_SURPLUS =\\n keccak256(\\\"COLFEE:SURFACE_ZERO_CLAIM_SURPLUS\\\");\\n\\n event ExitFeeControllerSet(address indexed previous, address indexed current);\\n event ExitFeeApplied(\\n bytes32 indexed surfaceId,\\n address indexed actor,\\n address indexed asset,\\n address subProduct,\\n address recipient,\\n uint256 grossAmount,\\n uint256 feeAmount,\\n uint256 netAmount,\\n address feeReceiver\\n );\\n event ExitFeeSkipped(\\n bytes32 indexed surfaceId,\\n address indexed actor,\\n address indexed asset,\\n uint256 grossAmount,\\n uint16 rateBps,\\n uint8 reason\\n );\\n\\n /* --- Variable container structs ---\\n\\n Used to hold, return and assign variables inside a function, in order to avoid the error:\\n \\\"CompilerError: Stack too deep\\\". */\\n\\n struct LocalVariables_adjustTrove {\\n uint256 price;\\n uint256 collChange;\\n uint256 netDebtChange;\\n bool isCollIncrease;\\n uint256 debt;\\n uint256 coll;\\n uint256 oldICR;\\n uint256 newICR;\\n uint256 newTCR;\\n uint256 ZUSDFee;\\n uint256 newDebt;\\n uint256 newColl;\\n uint256 stake;\\n uint256 newNICR;\\n bool isRecoveryMode;\\n }\\n\\n struct LocalVariables_openTrove {\\n uint256 price;\\n uint256 ZUSDFee;\\n uint256 netDebt;\\n uint256 compositeDebt;\\n uint256 ICR;\\n uint256 NICR;\\n uint256 stake;\\n uint256 arrayIndex;\\n }\\n\\n struct ContractsCache {\\n ITroveManager troveManager;\\n IActivePool activePool;\\n IZUSDToken zusdToken;\\n }\\n\\n enum BorrowerOperation {\\n openTrove,\\n closeTrove,\\n adjustTrove\\n }\\n\\n event FeeDistributorAddressChanged(address _feeDistributorAddress);\\n event TroveManagerAddressChanged(address _newTroveManagerAddress);\\n event ActivePoolAddressChanged(address _activePoolAddress);\\n event DefaultPoolAddressChanged(address _defaultPoolAddress);\\n event StabilityPoolAddressChanged(address _stabilityPoolAddress);\\n event GasPoolAddressChanged(address _gasPoolAddress);\\n event CollSurplusPoolAddressChanged(address _collSurplusPoolAddress);\\n event PriceFeedAddressChanged(address _newPriceFeedAddress);\\n event SortedTrovesAddressChanged(address _sortedTrovesAddress);\\n event ZUSDTokenAddressChanged(address _zusdTokenAddress);\\n event ZEROStakingAddressChanged(address _zeroStakingAddress);\\n event MassetManagerAddressChanged(address _massetManagerAddress);\\n\\n event TroveCreated(address indexed _borrower, uint256 arrayIndex);\\n event TroveUpdated(\\n address indexed _borrower,\\n uint256 _debt,\\n uint256 _coll,\\n uint256 stake,\\n BorrowerOperation operation\\n );\\n event ZUSDBorrowingFeePaid(address indexed _borrower, uint256 _ZUSDFee);\\n\\n /** Constructor */\\n constructor(address _permit2) public {\\n permit2 = IPermit2(_permit2);\\n }\\n\\n // --- Dependency setters ---\\n\\n function setAddresses(\\n address _feeDistributorAddress,\\n address _liquityBaseParamsAddress,\\n address _troveManagerAddress,\\n address _activePoolAddress,\\n address _defaultPoolAddress,\\n address _stabilityPoolAddress,\\n address _gasPoolAddress,\\n address _collSurplusPoolAddress,\\n address _priceFeedAddress,\\n address _sortedTrovesAddress,\\n address _zusdTokenAddress,\\n address _zeroStakingAddress\\n ) external override onlyOwner {\\n // This makes impossible to open a trove with zero withdrawn ZUSD\\n assert(MIN_NET_DEBT > 0);\\n\\n checkContract(_feeDistributorAddress);\\n checkContract(_liquityBaseParamsAddress);\\n checkContract(_troveManagerAddress);\\n checkContract(_activePoolAddress);\\n checkContract(_defaultPoolAddress);\\n checkContract(_stabilityPoolAddress);\\n checkContract(_gasPoolAddress);\\n checkContract(_collSurplusPoolAddress);\\n checkContract(_priceFeedAddress);\\n checkContract(_sortedTrovesAddress);\\n checkContract(_zusdTokenAddress);\\n checkContract(_zeroStakingAddress);\\n\\n feeDistributor = IFeeDistributor(_feeDistributorAddress);\\n liquityBaseParams = ILiquityBaseParams(_liquityBaseParamsAddress);\\n troveManager = ITroveManager(_troveManagerAddress);\\n activePool = IActivePool(_activePoolAddress);\\n defaultPool = IDefaultPool(_defaultPoolAddress);\\n stabilityPoolAddress = _stabilityPoolAddress;\\n gasPoolAddress = _gasPoolAddress;\\n collSurplusPool = ICollSurplusPool(_collSurplusPoolAddress);\\n priceFeed = IPriceFeed(_priceFeedAddress);\\n sortedTroves = ISortedTroves(_sortedTrovesAddress);\\n zusdToken = IZUSDToken(_zusdTokenAddress);\\n zeroStakingAddress = _zeroStakingAddress;\\n zeroStaking = IZEROStaking(_zeroStakingAddress);\\n\\n emit FeeDistributorAddressChanged(_feeDistributorAddress);\\n emit TroveManagerAddressChanged(_troveManagerAddress);\\n emit ActivePoolAddressChanged(_activePoolAddress);\\n emit DefaultPoolAddressChanged(_defaultPoolAddress);\\n emit StabilityPoolAddressChanged(_stabilityPoolAddress);\\n emit GasPoolAddressChanged(_gasPoolAddress);\\n emit CollSurplusPoolAddressChanged(_collSurplusPoolAddress);\\n emit PriceFeedAddressChanged(_priceFeedAddress);\\n emit SortedTrovesAddressChanged(_sortedTrovesAddress);\\n emit ZUSDTokenAddressChanged(_zusdTokenAddress);\\n emit ZEROStakingAddressChanged(_zeroStakingAddress);\\n }\\n\\n function setMassetManagerAddress(address _massetManagerAddress) external onlyOwner {\\n massetManager = IMassetManager(_massetManagerAddress);\\n emit MassetManagerAddressChanged(_massetManagerAddress);\\n }\\n\\n function openTrove(\\n uint256 _maxFeePercentage,\\n uint256 _ZUSDAmount,\\n address _upperHint,\\n address _lowerHint\\n ) external payable override {\\n _openTrove(_maxFeePercentage, _ZUSDAmount, _upperHint, _lowerHint, msg.sender);\\n }\\n\\n function openNueTrove(\\n uint256 _maxFeePercentage,\\n uint256 _ZUSDAmount,\\n address _upperHint,\\n address _lowerHint\\n ) external payable override {\\n require(address(massetManager) != address(0), \\\"Masset address not set\\\");\\n\\n _openTrove(_maxFeePercentage, _ZUSDAmount, _upperHint, _lowerHint, address(this));\\n require(\\n zusdToken.approve(address(massetManager), _ZUSDAmount),\\n \\\"Failed to approve ZUSD amount for Mynt mAsset to redeem\\\"\\n );\\n massetManager.mintTo(address(zusdToken), _ZUSDAmount, msg.sender);\\n }\\n\\n // --- Borrower Trove Operations ---\\n function _openTrove(\\n uint256 _maxFeePercentage,\\n uint256 _ZUSDAmount,\\n address _upperHint,\\n address _lowerHint,\\n address _tokensRecipient\\n ) internal {\\n ContractsCache memory contractsCache = ContractsCache(troveManager, activePool, zusdToken);\\n LocalVariables_openTrove memory vars;\\n\\n vars.price = priceFeed.fetchPrice();\\n bool isRecoveryMode = _checkRecoveryMode(vars.price);\\n\\n _requireValidMaxFeePercentage(_maxFeePercentage, isRecoveryMode);\\n _requireTroveisNotActive(contractsCache.troveManager, msg.sender);\\n\\n vars.ZUSDFee;\\n vars.netDebt = _ZUSDAmount;\\n\\n if (!isRecoveryMode) {\\n vars.ZUSDFee = _triggerBorrowingFee(\\n contractsCache.troveManager,\\n contractsCache.zusdToken,\\n _ZUSDAmount,\\n _maxFeePercentage\\n );\\n vars.netDebt = vars.netDebt.add(vars.ZUSDFee);\\n }\\n _requireAtLeastMinNetDebt(vars.netDebt);\\n\\n // ICR is based on the composite debt, i.e. the requested ZUSD amount + ZUSD borrowing fee + ZUSD gas comp.\\n vars.compositeDebt = _getCompositeDebt(vars.netDebt);\\n assert(vars.compositeDebt > 0);\\n\\n vars.ICR = LiquityMath._computeCR(msg.value, vars.compositeDebt, vars.price);\\n vars.NICR = LiquityMath._computeNominalCR(msg.value, vars.compositeDebt);\\n\\n if (isRecoveryMode) {\\n _requireICRisAboveCCR(vars.ICR);\\n } else {\\n _requireICRisAboveMCR(vars.ICR);\\n uint256 newTCR = _getNewTCRFromTroveChange(\\n msg.value,\\n true,\\n vars.compositeDebt,\\n true,\\n vars.price\\n ); // bools: coll increase, debt increase\\n _requireNewTCRisAboveCCR(newTCR);\\n }\\n\\n // Set the trove struct's properties\\n contractsCache.troveManager.setTroveStatus(msg.sender, 1);\\n contractsCache.troveManager.increaseTroveColl(msg.sender, msg.value);\\n contractsCache.troveManager.increaseTroveDebt(msg.sender, vars.compositeDebt);\\n\\n contractsCache.troveManager.updateTroveRewardSnapshots(msg.sender);\\n vars.stake = contractsCache.troveManager.updateStakeAndTotalStakes(msg.sender);\\n\\n sortedTroves.insert(msg.sender, vars.NICR, _upperHint, _lowerHint);\\n vars.arrayIndex = contractsCache.troveManager.addTroveOwnerToArray(msg.sender);\\n emit TroveCreated(msg.sender, vars.arrayIndex);\\n\\n // Move the ether to the Active Pool, and mint the ZUSDAmount to the borrower\\n _activePoolAddColl(contractsCache.activePool, msg.value);\\n _mintZusdAndIncreaseActivePoolDebt(\\n contractsCache.activePool,\\n contractsCache.zusdToken,\\n _tokensRecipient,\\n _ZUSDAmount,\\n vars.netDebt\\n );\\n // Move the ZUSD gas compensation to the Gas Pool\\n _mintZusdAndIncreaseActivePoolDebt(\\n contractsCache.activePool,\\n contractsCache.zusdToken,\\n gasPoolAddress,\\n ZUSD_GAS_COMPENSATION,\\n ZUSD_GAS_COMPENSATION\\n );\\n\\n emit TroveUpdated(\\n msg.sender,\\n vars.compositeDebt,\\n msg.value,\\n vars.stake,\\n BorrowerOperation.openTrove\\n );\\n emit ZUSDBorrowingFeePaid(msg.sender, vars.ZUSDFee);\\n }\\n\\n /// Send ETH as collateral to a trove\\n function addColl(address _upperHint, address _lowerHint) external payable override {\\n _adjustTrove(msg.sender, 0, 0, false, _upperHint, _lowerHint, 0);\\n }\\n\\n /// Send ETH as collateral to a trove. Called by only the Stability Pool.\\n function moveETHGainToTrove(\\n address _borrower,\\n address _upperHint,\\n address _lowerHint\\n ) external payable override {\\n _requireCallerIsStabilityPool();\\n _adjustTrove(_borrower, 0, 0, false, _upperHint, _lowerHint, 0);\\n }\\n\\n /// Withdraw ETH collateral from a trove\\n function withdrawColl(\\n uint256 _collWithdrawal,\\n address _upperHint,\\n address _lowerHint\\n ) external override {\\n _adjustTrove(msg.sender, _collWithdrawal, 0, false, _upperHint, _lowerHint, 0);\\n }\\n\\n /// Withdraw ZUSD tokens from a trove: mint new ZUSD tokens to the owner, and increase the trove's debt accordingly\\n function withdrawZUSD(\\n uint256 _maxFeePercentage,\\n uint256 _ZUSDAmount,\\n address _upperHint,\\n address _lowerHint\\n ) external override {\\n _adjustTrove(msg.sender, 0, _ZUSDAmount, true, _upperHint, _lowerHint, _maxFeePercentage);\\n }\\n\\n /// Borrow (withdraw) ZUSD tokens from a trove: mint new ZUSD tokens to the owner and convert it to DLLR in one transaction\\n /// Zero Line of Credit owner can borrow a specified amount of ZUSD and convert it to DLLR via Sovryn Mynt\\n ///@return DLLR amount minted\\n function withdrawZusdAndConvertToDLLR(\\n uint256 _maxFeePercentage,\\n uint256 _ZUSDAmount,\\n address _upperHint,\\n address _lowerHint\\n ) external override returns (uint256) {\\n address thisAddress = address(this);\\n uint256 balanceBefore = zusdToken.balanceOf(thisAddress);\\n\\n _withdrawZusdTo(\\n msg.sender,\\n thisAddress,\\n _ZUSDAmount,\\n _upperHint,\\n _lowerHint,\\n _maxFeePercentage\\n );\\n\\n require(\\n zusdToken.balanceOf(thisAddress) == balanceBefore.add(_ZUSDAmount),\\n \\\"ZUSD is not borrowed correctly\\\"\\n );\\n require(\\n zusdToken.approve(address(massetManager), _ZUSDAmount),\\n \\\"Failed to approve ZUSD amount for Mynt mAsset to redeem\\\"\\n );\\n return massetManager.mintTo(address(zusdToken), _ZUSDAmount, msg.sender);\\n }\\n\\n /// Repay ZUSD tokens to a Trove: Burn the repaid ZUSD tokens, and reduce the trove's debt accordingly\\n function repayZUSD(\\n uint256 _ZUSDAmount,\\n address _upperHint,\\n address _lowerHint\\n ) external override {\\n _adjustTrove(msg.sender, 0, _ZUSDAmount, false, _upperHint, _lowerHint, 0);\\n }\\n\\n /// Repay ZUSD tokens to a Trove by DLLR: convert DLLR to ZUSD tokens, and then reduce the trove's debt accordingly\\n function repayZusdFromDLLR(\\n uint256 _dllrAmount,\\n address _upperHint,\\n address _lowerHint,\\n IMassetManager.PermitParams calldata _permitParams\\n ) external override {\\n _adjustNueTrove(0, 0, _dllrAmount, false, _upperHint, _lowerHint, _permitParams);\\n }\\n\\n /// Repay ZUSD tokens to a Trove by DLLR: convert DLLR to ZUSD tokens, and then reduce the trove's debt accordingly\\n function repayZusdFromDLLRWithPermit2(\\n uint256 _dllrAmount,\\n address _upperHint,\\n address _lowerHint,\\n ISignatureTransfer.PermitTransferFrom memory _permit,\\n bytes calldata _signature\\n ) external override {\\n _adjustNueTroveWithPermit2(\\n 0,\\n 0,\\n _dllrAmount,\\n false,\\n _upperHint,\\n _lowerHint,\\n _permit,\\n _signature\\n );\\n }\\n\\n function adjustTrove(\\n uint256 _maxFeePercentage,\\n uint256 _collWithdrawal,\\n uint256 _ZUSDChange,\\n bool _isDebtIncrease,\\n address _upperHint,\\n address _lowerHint\\n ) external payable override {\\n _adjustTrove(\\n msg.sender,\\n _collWithdrawal,\\n _ZUSDChange,\\n _isDebtIncrease,\\n _upperHint,\\n _lowerHint,\\n _maxFeePercentage\\n );\\n }\\n\\n // in case of _isDebtIncrease = false MassetManager contract must have an approval of NUE tokens\\n function adjustNueTrove(\\n uint256 _maxFeePercentage,\\n uint256 _collWithdrawal,\\n uint256 _ZUSDChange,\\n bool _isDebtIncrease,\\n address _upperHint,\\n address _lowerHint,\\n IMassetManager.PermitParams calldata _permitParams\\n ) external payable override {\\n _adjustNueTrove(\\n _maxFeePercentage,\\n _collWithdrawal,\\n _ZUSDChange,\\n _isDebtIncrease,\\n _upperHint,\\n _lowerHint,\\n _permitParams\\n );\\n }\\n\\n // in case of _isDebtIncrease = false MassetManager contract must have an approval of NUE tokens\\n function adjustNueTroveWithPermit2(\\n uint256 _maxFeePercentage,\\n uint256 _collWithdrawal,\\n uint256 _ZUSDChange,\\n bool _isDebtIncrease,\\n address _upperHint,\\n address _lowerHint,\\n ISignatureTransfer.PermitTransferFrom memory _permit,\\n bytes calldata _signature\\n ) external payable override {\\n _adjustNueTroveWithPermit2(\\n _maxFeePercentage,\\n _collWithdrawal,\\n _ZUSDChange,\\n _isDebtIncrease,\\n _upperHint,\\n _lowerHint,\\n _permit,\\n _signature\\n );\\n }\\n\\n // in case of _isDebtIncrease = false Masset Manager contract must have an approval of NUE tokens\\n function _adjustNueTrove(\\n uint256 _maxFeePercentage,\\n uint256 _collWithdrawal,\\n uint256 _ZUSDChange,\\n bool _isDebtIncrease,\\n address _upperHint,\\n address _lowerHint,\\n IMassetManager.PermitParams calldata _permitParams\\n ) internal {\\n require(address(massetManager) != address(0), \\\"Masset address not set\\\");\\n\\n if (!_isDebtIncrease && _ZUSDChange > 0) {\\n MyntLib.redeemZusdFromDllrWithPermit(\\n massetManager,\\n _ZUSDChange,\\n address(zusdToken),\\n _permitParams\\n );\\n }\\n _adjustSenderTrove(\\n msg.sender,\\n _collWithdrawal,\\n _ZUSDChange,\\n _isDebtIncrease,\\n _upperHint,\\n _lowerHint,\\n _maxFeePercentage,\\n address(this)\\n );\\n if (_isDebtIncrease && _ZUSDChange > 0) {\\n require(\\n zusdToken.approve(address(massetManager), _ZUSDChange),\\n \\\"Failed to approve ZUSD amount for Mynt mAsset to redeem\\\"\\n );\\n massetManager.mintTo(address(zusdToken), _ZUSDChange, msg.sender);\\n }\\n }\\n\\n // in case of _isDebtIncrease = false Masset Manager contract must have an approval of NUE tokens\\n function _adjustNueTroveWithPermit2(\\n uint256 _maxFeePercentage,\\n uint256 _collWithdrawal,\\n uint256 _ZUSDChange,\\n bool _isDebtIncrease,\\n address _upperHint,\\n address _lowerHint,\\n ISignatureTransfer.PermitTransferFrom memory _permit,\\n bytes calldata _signature\\n ) internal {\\n require(address(massetManager) != address(0), \\\"Masset address not set\\\");\\n\\n if (!_isDebtIncrease && _ZUSDChange > 0) {\\n MyntLib.redeemZusdFromDllrWithPermit2(\\n massetManager,\\n address(zusdToken),\\n _permit,\\n permit2,\\n _signature\\n );\\n }\\n _adjustSenderTrove(\\n msg.sender,\\n _collWithdrawal,\\n _ZUSDChange,\\n _isDebtIncrease,\\n _upperHint,\\n _lowerHint,\\n _maxFeePercentage,\\n address(this)\\n );\\n if (_isDebtIncrease && _ZUSDChange > 0) {\\n require(\\n zusdToken.approve(address(massetManager), _ZUSDChange),\\n \\\"Failed to approve ZUSD amount for Mynt mAsset to redeem\\\"\\n );\\n massetManager.mintTo(address(zusdToken), _ZUSDChange, msg.sender);\\n }\\n }\\n\\n function _adjustTrove(\\n address _borrower,\\n uint256 _collWithdrawal,\\n uint256 _ZUSDChange,\\n bool _isDebtIncrease,\\n address _upperHint,\\n address _lowerHint,\\n uint256 _maxFeePercentage\\n ) internal {\\n _adjustSenderTrove(\\n _borrower,\\n _collWithdrawal,\\n _ZUSDChange,\\n _isDebtIncrease,\\n _upperHint,\\n _lowerHint,\\n _maxFeePercentage,\\n msg.sender\\n );\\n }\\n\\n // _withdrawZusd: _adjustTrove(msg.sender, 0, _ZUSDAmount, true, _upperHint, _lowerHint, _maxFeePercentage);\\n function _withdrawZusdTo(\\n address _borrower,\\n address _receiver,\\n uint256 _ZUSDChange,\\n address _upperHint,\\n address _lowerHint,\\n uint256 _maxFeePercentage\\n ) internal {\\n _adjustSenderTrove(\\n _borrower,\\n 0,\\n _ZUSDChange,\\n true,\\n _upperHint,\\n _lowerHint,\\n _maxFeePercentage,\\n _receiver\\n );\\n }\\n\\n /**\\n * _adjustSenderTrove(): Alongside a debt change, this function can perform either a collateral top-up or a collateral withdrawal.\\n *\\n * It therefore expects either a positive msg.value, or a positive _collWithdrawal argument.\\n *\\n * If both are positive, it will revert.\\n */\\n function _adjustSenderTrove(\\n address _borrower,\\n uint256 _collWithdrawal,\\n uint256 _ZUSDChange,\\n bool _isDebtIncrease,\\n address _upperHint,\\n address _lowerHint,\\n uint256 _maxFeePercentage,\\n address _tokensRecipient\\n ) internal {\\n ContractsCache memory contractsCache = ContractsCache(troveManager, activePool, zusdToken);\\n LocalVariables_adjustTrove memory vars;\\n\\n vars.price = priceFeed.fetchPrice();\\n vars.isRecoveryMode = _checkRecoveryMode(vars.price);\\n\\n if (_isDebtIncrease) {\\n _requireValidMaxFeePercentage(_maxFeePercentage, vars.isRecoveryMode);\\n _requireNonZeroDebtChange(_ZUSDChange);\\n }\\n _requireSingularCollChange(_collWithdrawal);\\n _requireNonZeroAdjustment(_collWithdrawal, _ZUSDChange);\\n _requireTroveisActive(contractsCache.troveManager, _borrower);\\n\\n // Confirm the operation is either a borrower adjusting their own trove, or a pure ETH transfer from the Stability Pool to a trove\\n assert(\\n msg.sender == _borrower ||\\n (msg.sender == stabilityPoolAddress && msg.value > 0 && _ZUSDChange == 0)\\n );\\n\\n contractsCache.troveManager.applyPendingRewards(_borrower);\\n\\n // Get the collChange based on whether or not ETH was sent in the transaction\\n (vars.collChange, vars.isCollIncrease) = _getCollChange(msg.value, _collWithdrawal);\\n\\n vars.netDebtChange = _ZUSDChange;\\n\\n // If the adjustment incorporates a debt increase and system is in Normal Mode, then trigger a borrowing fee\\n if (_isDebtIncrease && !vars.isRecoveryMode) {\\n vars.ZUSDFee = _triggerBorrowingFee(\\n contractsCache.troveManager,\\n contractsCache.zusdToken,\\n _ZUSDChange,\\n _maxFeePercentage\\n );\\n vars.netDebtChange = vars.netDebtChange.add(vars.ZUSDFee); // The raw debt change includes the fee\\n }\\n\\n vars.debt = contractsCache.troveManager.getTroveDebt(_borrower);\\n vars.coll = contractsCache.troveManager.getTroveColl(_borrower);\\n\\n // Get the trove's old ICR before the adjustment, and what its new ICR will be after the adjustment\\n vars.oldICR = LiquityMath._computeCR(vars.coll, vars.debt, vars.price);\\n vars.newICR = _getNewICRFromTroveChange(\\n vars.coll,\\n vars.debt,\\n vars.collChange,\\n vars.isCollIncrease,\\n vars.netDebtChange,\\n _isDebtIncrease,\\n vars.price\\n );\\n assert(_collWithdrawal <= vars.coll);\\n\\n // Check the adjustment satisfies all conditions for the current system mode\\n _requireValidAdjustmentInCurrentMode(\\n vars.isRecoveryMode,\\n _collWithdrawal,\\n _isDebtIncrease,\\n vars\\n );\\n\\n // When the adjustment is a debt repayment, check it's a valid amount and that the caller has enough ZUSD\\n if (!_isDebtIncrease && _ZUSDChange > 0) {\\n _requireAtLeastMinNetDebt(_getNetDebt(vars.debt).sub(vars.netDebtChange));\\n _requireValidZUSDRepayment(vars.debt, vars.netDebtChange);\\n _requireSufficientZUSDBalance(contractsCache.zusdToken, _borrower, vars.netDebtChange);\\n }\\n\\n (vars.newColl, vars.newDebt) = _updateTroveFromAdjustment(\\n contractsCache.troveManager,\\n _borrower,\\n vars.collChange,\\n vars.isCollIncrease,\\n vars.netDebtChange,\\n _isDebtIncrease\\n );\\n vars.stake = contractsCache.troveManager.updateStakeAndTotalStakes(_borrower);\\n\\n // Re-insert trove in to the sorted list\\n vars.newNICR = _getNewNominalICRFromTroveChange(\\n vars.coll,\\n vars.debt,\\n vars.collChange,\\n vars.isCollIncrease,\\n vars.netDebtChange,\\n _isDebtIncrease\\n );\\n sortedTroves.reInsert(_borrower, vars.newNICR, _upperHint, _lowerHint);\\n\\n emit TroveUpdated(\\n _borrower,\\n vars.newDebt,\\n vars.newColl,\\n vars.stake,\\n BorrowerOperation.adjustTrove\\n );\\n emit ZUSDBorrowingFeePaid(msg.sender, vars.ZUSDFee);\\n\\n // Use the unmodified _ZUSDChange here, as we don't send the fee to the user\\n _moveTokensAndETHfromAdjustment(\\n contractsCache.activePool,\\n contractsCache.zusdToken,\\n msg.sender,\\n vars.collChange,\\n vars.isCollIncrease,\\n _ZUSDChange,\\n _isDebtIncrease,\\n vars.netDebtChange,\\n _tokensRecipient\\n );\\n }\\n\\n function closeTrove() external override {\\n _closeTrove();\\n }\\n\\n function closeNueTrove(IMassetManager.PermitParams calldata _permitParams) external override {\\n require(address(massetManager) != address(0), \\\"Masset address not set\\\");\\n\\n uint256 debt = troveManager.getTroveDebt(msg.sender);\\n\\n MyntLib.redeemZusdFromDllrWithPermit(\\n massetManager,\\n debt.sub(ZUSD_GAS_COMPENSATION),\\n address(zusdToken),\\n _permitParams\\n );\\n _closeTrove();\\n }\\n\\n function closeNueTroveWithPermit2(\\n ISignatureTransfer.PermitTransferFrom memory _permit,\\n bytes calldata _signature\\n ) external override {\\n require(address(massetManager) != address(0), \\\"Masset address not set\\\");\\n\\n uint256 debt = troveManager.getTroveDebt(msg.sender);\\n\\n MyntLib.redeemZusdFromDllrWithPermit2(\\n massetManager,\\n address(zusdToken),\\n _permit,\\n permit2,\\n _signature\\n );\\n\\n _closeTrove();\\n }\\n\\n function _closeTrove() internal {\\n ITroveManager troveManagerCached = troveManager;\\n IActivePool activePoolCached = activePool;\\n IZUSDToken zusdTokenCached = zusdToken;\\n\\n _requireTroveisActive(troveManagerCached, msg.sender);\\n uint256 price = priceFeed.fetchPrice();\\n _requireNotInRecoveryMode(price);\\n\\n troveManagerCached.applyPendingRewards(msg.sender);\\n\\n uint256 coll = troveManagerCached.getTroveColl(msg.sender);\\n uint256 debt = troveManagerCached.getTroveDebt(msg.sender);\\n\\n _requireSufficientZUSDBalance(\\n zusdTokenCached,\\n msg.sender,\\n debt.sub(ZUSD_GAS_COMPENSATION)\\n );\\n\\n uint256 newTCR = _getNewTCRFromTroveChange(coll, false, debt, false, price);\\n _requireNewTCRisAboveCCR(newTCR);\\n\\n troveManagerCached.removeStake(msg.sender);\\n troveManagerCached.closeTrove(msg.sender);\\n\\n emit TroveUpdated(msg.sender, 0, 0, 0, BorrowerOperation.closeTrove);\\n\\n // Burn the repaid ZUSD from the user's balance and the gas compensation from the Gas Pool\\n _burnZusdAndDecreaseActivePoolDebt(\\n activePoolCached,\\n zusdTokenCached,\\n msg.sender,\\n debt.sub(ZUSD_GAS_COMPENSATION)\\n );\\n _burnZusdAndDecreaseActivePoolDebt(\\n activePoolCached,\\n zusdTokenCached,\\n gasPoolAddress,\\n ZUSD_GAS_COMPENSATION\\n );\\n\\n // Send the collateral back to the user (charging the ColFee exit fee)\\n _sendCollWithExitFee(activePoolCached, msg.sender, coll);\\n }\\n\\n /**\\n * Claim remaining collateral from a redemption or from a liquidation with ICR > MCR in Recovery Mode,\\n * charging the ColFee exit fee when the SURFACE_ZERO_CLAIM_SURPLUS policy is active.\\n * Fail-open like every ColFee hook: on any ColFee failure (controller missing/\\n * reverting, invalid quote, fee-leg transfer failure inside the pool) the claimant\\n * receives the full surplus \\u2014 a ColFee failure can never brick a claim. The\\n * non-charging path is the untouched claimColl flow (plus the ExitFeeSkipped\\n * event, same convention as _sendCollWithExitFee).\\n */\\n function claimCollateral() external override {\\n uint256 gross = collSurplusPool.getCollateral(msg.sender);\\n // Single Zero deployment: subProduct = address(0). Asset is native RBTC.\\n IExitFeeController.ExitFeeQuote memory q = _safeQuote(\\n SURFACE_ZERO_CLAIM_SURPLUS,\\n address(0),\\n msg.sender,\\n gross\\n );\\n\\n // Defensive: a quote that charges into address(0) would burn the fee (a\\n // value call to a no-code address succeeds). Demote to the non-charging\\n // path \\u2014 DISABLED is the enum's \\\"feeReceiver == address(0)\\\" reason.\\n if (q.active && q.feeAmount > 0 && q.feeReceiver == address(0)) {\\n q.active = false;\\n q.netAmount = gross;\\n q.reason = uint8(IExitFeeController.SkipReason.DISABLED);\\n }\\n\\n if (q.active && q.feeAmount > 0) {\\n // Two-leg split inside the pool (fee \\u2192 feeReceiver, net \\u2192 claimant);\\n // the pool's fee leg is fail-open and reports which event is truthful.\\n bool feePaid = collSurplusPool.claimCollWithFee(\\n msg.sender,\\n q.feeReceiver,\\n q.feeAmount\\n );\\n if (feePaid) {\\n emit ExitFeeApplied(\\n SURFACE_ZERO_CLAIM_SURPLUS,\\n msg.sender,\\n address(0),\\n address(0),\\n msg.sender,\\n gross,\\n q.feeAmount,\\n q.netAmount,\\n q.feeReceiver\\n );\\n } else {\\n emit ExitFeeSkipped(\\n SURFACE_ZERO_CLAIM_SURPLUS,\\n msg.sender,\\n address(0),\\n gross,\\n q.rateBps,\\n uint8(IExitFeeController.SkipReason.VAULT_REVERT)\\n );\\n }\\n } else {\\n // !active (INACTIVE / DISABLED / INVALID_QUOTE / CONTROLLER_REVERT)\\n // OR active-but-zero-fee (dust / zero-rate / gross == 0 \\u2192 reason NONE).\\n emit ExitFeeSkipped(\\n SURFACE_ZERO_CLAIM_SURPLUS,\\n msg.sender,\\n address(0),\\n gross,\\n q.rateBps,\\n q.reason\\n );\\n // send ETH from CollSurplus Pool to owner \\u2014 untouched original path\\n // (gross == 0 falls through to claimColl's own revert, identical to today)\\n collSurplusPool.claimColl(msg.sender);\\n }\\n }\\n\\n // --- Helper functions ---\\n\\n function _triggerBorrowingFee(\\n ITroveManager _troveManager,\\n IZUSDToken _zusdToken,\\n uint256 _ZUSDAmount,\\n uint256 _maxFeePercentage\\n ) internal returns (uint256) {\\n _troveManager.decayBaseRateFromBorrowing(); // decay the baseRate state variable\\n uint256 ZUSDFee = _troveManager.getBorrowingFee(_ZUSDAmount);\\n\\n _requireUserAcceptsFee(ZUSDFee, _ZUSDAmount, _maxFeePercentage);\\n _zusdToken.mint(address(feeDistributor), ZUSDFee);\\n feeDistributor.distributeFees();\\n\\n return ZUSDFee;\\n }\\n\\n function _getUSDValue(uint256 _coll, uint256 _price) internal pure returns (uint256) {\\n uint256 usdValue = _price.mul(_coll).div(DECIMAL_PRECISION);\\n\\n return usdValue;\\n }\\n\\n function _getCollChange(\\n uint256 _collReceived,\\n uint256 _requestedCollWithdrawal\\n ) internal pure returns (uint256 collChange, bool isCollIncrease) {\\n if (_collReceived != 0) {\\n collChange = _collReceived;\\n isCollIncrease = true;\\n } else {\\n collChange = _requestedCollWithdrawal;\\n }\\n }\\n\\n /// Update trove's coll and debt based on whether they increase or decrease\\n function _updateTroveFromAdjustment(\\n ITroveManager _troveManager,\\n address _borrower,\\n uint256 _collChange,\\n bool _isCollIncrease,\\n uint256 _debtChange,\\n bool _isDebtIncrease\\n ) internal returns (uint256, uint256) {\\n uint256 newColl = (_isCollIncrease)\\n ? _troveManager.increaseTroveColl(_borrower, _collChange)\\n : _troveManager.decreaseTroveColl(_borrower, _collChange);\\n uint256 newDebt = (_isDebtIncrease)\\n ? _troveManager.increaseTroveDebt(_borrower, _debtChange)\\n : _troveManager.decreaseTroveDebt(_borrower, _debtChange);\\n\\n return (newColl, newDebt);\\n }\\n\\n function _moveTokensAndETHfromAdjustment(\\n IActivePool _activePool,\\n IZUSDToken _zusdToken,\\n address _borrower,\\n uint256 _collChange,\\n bool _isCollIncrease,\\n uint256 _ZUSDChange,\\n bool _isDebtIncrease,\\n uint256 _netDebtChange,\\n address _tokensRecipient\\n ) internal {\\n if (_isDebtIncrease) {\\n _mintZusdAndIncreaseActivePoolDebt(\\n _activePool,\\n _zusdToken,\\n _tokensRecipient,\\n _ZUSDChange,\\n _netDebtChange\\n );\\n } else {\\n _burnZusdAndDecreaseActivePoolDebt(_activePool, _zusdToken, _borrower, _ZUSDChange);\\n }\\n\\n if (_isCollIncrease) {\\n _activePoolAddColl(_activePool, _collChange);\\n } else {\\n _sendCollWithExitFee(_activePool, _borrower, _collChange);\\n }\\n }\\n\\n // --- ColFee (exit-fee) helpers ---\\n\\n /// @notice Address of the ColFee controller this instance consults. Held in\\n /// an EIP-1967-style unstructured slot (no regular-storage footprint).\\n function exitFeeController() public view returns (address ctrl) {\\n bytes32 slot = EXIT_FEE_CONTROLLER_SLOT;\\n assembly {\\n ctrl := sload(slot)\\n }\\n }\\n\\n /// @notice Set (or rotate) the ColFee controller this instance consults.\\n /// Owner-only, one call, effective for every subsequent exit.\\n function setExitFeeController(address ctrl) external onlyOwner {\\n require(ctrl != address(0), \\\"EFC:zero\\\");\\n // A no-code controller would make the high-level quoteExitFee call\\n // revert with \\\"function call to a non-contract account\\\", which 0.6.11\\n // try/catch does NOT catch \\u2014 bricking borrower exits. Reject it here\\n // (and fail open in _safeQuote if it later becomes code-less).\\n checkContract(ctrl);\\n address prev = exitFeeController();\\n bytes32 slot = EXIT_FEE_CONTROLLER_SLOT;\\n assembly {\\n sstore(slot, ctrl)\\n }\\n emit ExitFeeControllerSet(prev, ctrl);\\n }\\n\\n /// @dev Fail-open quote wrapper. On a missing/reverting controller or a\\n /// semantically invalid quote, returns a non-charging quote with\\n /// `netAmount == gross`. The validity gate uses subtraction only\\n /// (`feeAmount > gross`), never an unchecked addition, and recomputes\\n /// `netAmount = gross - feeAmount` so the fee + user legs always sum to\\n /// exactly `gross` \\u2014 protecting ActivePool liquidity from a bad or\\n /// upgraded controller.\\n function _safeQuote(\\n bytes32 surfaceId,\\n address subProduct,\\n address actor,\\n uint256 gross\\n ) private view returns (IExitFeeController.ExitFeeQuote memory q) {\\n address ctrl = exitFeeController();\\n // Fail open on a missing OR code-less controller. The address(0) check\\n // alone is not enough: a high-level call to any no-code address (EOA,\\n // or a controller that self-destructed after being set) reverts with\\n // \\\"function call to a non-contract account\\\", which 0.6.11 try/catch\\n // does NOT catch \\u2014 so guard on extcodesize before the call.\\n uint256 ctrlSize;\\n assembly {\\n ctrlSize := extcodesize(ctrl)\\n }\\n if (ctrl == address(0) || ctrlSize == 0) {\\n q.netAmount = gross;\\n q.reason = uint8(IExitFeeController.SkipReason.CONTROLLER_REVERT);\\n return q;\\n }\\n try IExitFeeController(ctrl).quoteExitFee(surfaceId, subProduct, actor, gross) returns (\\n IExitFeeController.ExitFeeQuote memory got\\n ) {\\n // Pool conservation is the consumer's own concern: it holds exactly `gross`\\n // wei to distribute, so it must never be asked to pay out more. A\\n // feeAmount > gross would underflow the net recompute below (bricking the\\n // exit) and a fee leg > gross could draw OTHER troves' collateral out of\\n // ActivePool. Rate, receiver, and fee policy are the configured\\n // controller's responsibility \\u2014 not re-validated here.\\n if (got.feeAmount > gross) {\\n // Override only the verdict; leave the controller's raw feeAmount /\\n // rateBps / feeReceiver intact (active=false gates charging downstream).\\n got.active = false;\\n got.netAmount = gross; // non-charging shape: net == gross\\n got.reason = uint8(IExitFeeController.SkipReason.INVALID_QUOTE);\\n return got;\\n }\\n got.netAmount = gross - got.feeAmount; // fee + net == gross (no residue)\\n return got;\\n } catch {\\n q.netAmount = gross;\\n q.reason = uint8(IExitFeeController.SkipReason.CONTROLLER_REVERT);\\n }\\n }\\n\\n /// @dev Settle a borrower collateral payout, charging the ColFee exit fee\\n /// when the resolved policy is active. The fee leg uses `try/catch`\\n /// (0.6.11 native) so a fee-receiver failure never bricks the exit; on\\n /// any non-charging path the full `gross` is sent to the borrower via\\n /// the existing fail-closed `sendETH`. ActivePool's recorded ETH\\n /// decrements by exactly `gross` either way (the reverted fee-leg\\n /// subcall rolls back its `ETH.sub`).\\n function _sendCollWithExitFee(\\n IActivePool _activePool,\\n address borrower,\\n uint256 gross\\n ) private {\\n // Debt-only adjustments (repay / debt-decrease) reach here with gross == 0:\\n // no collateral leaves the pool, so there is nothing to settle. Skip the\\n // controller round-trip and the ColFee event. (Baseline called\\n // sendETH(borrower, 0) here \\u2014 a value-less no-op that only emitted\\n // EtherSent(_, 0) / ActivePoolETHBalanceUpdated; we drop that redundant\\n // transfer, so debt-only ops emit fewer events than pre-ColFee.)\\n if (gross == 0) {\\n return;\\n }\\n\\n // Single Zero deployment: subProduct = address(0). Asset is native RBTC.\\n IExitFeeController.ExitFeeQuote memory q = _safeQuote(\\n SURFACE_ZERO_WITHDRAW_COLL,\\n address(0),\\n borrower,\\n gross\\n );\\n\\n if (q.active && q.feeAmount > 0) {\\n try _activePool.sendETH(q.feeReceiver, q.feeAmount) {\\n _activePool.sendETH(borrower, q.netAmount); // user leg: existing fail-closed behavior\\n // Emit only after BOTH legs settle, so an ExitFeeApplied event always\\n // implies a completed borrower payout (truthful by construction).\\n emit ExitFeeApplied(\\n SURFACE_ZERO_WITHDRAW_COLL,\\n borrower,\\n address(0),\\n address(0),\\n borrower,\\n gross,\\n q.feeAmount,\\n q.netAmount,\\n q.feeReceiver\\n );\\n return;\\n } catch {\\n emit ExitFeeSkipped(\\n SURFACE_ZERO_WITHDRAW_COLL,\\n borrower,\\n address(0),\\n gross,\\n q.rateBps,\\n uint8(IExitFeeController.SkipReason.VAULT_REVERT)\\n );\\n }\\n } else {\\n // !active (INACTIVE / DISABLED / INVALID_QUOTE / CONTROLLER_REVERT)\\n // OR active-but-zero-fee (dust / zero-rate policy \\u2192 q.reason == NONE).\\n emit ExitFeeSkipped(\\n SURFACE_ZERO_WITHDRAW_COLL,\\n borrower,\\n address(0),\\n gross,\\n q.rateBps,\\n q.reason\\n );\\n }\\n _activePool.sendETH(borrower, gross); // full-gross fallback (any non-charging path)\\n }\\n\\n /// @notice Read-only preview of the ColFee exit fee on a Zero borrower collateral\\n /// payout of `grossColl` for `borrower`. Hard-wired to\\n /// SURFACE_ZERO_WITHDRAW_COLL / subProduct=address(0) / actor=borrower, and\\n /// routes through the same `_safeQuote` the live hook uses \\u2014 so the synthesized\\n /// fail-open quote on controller failure matches execution wei-for-wise. The\\n /// caller passes `grossColl` (computed from trove state); this is a thin policy\\n /// lookup, not a re-derivation of the per-function gross.\\n /// @return rateBps resolved rate (0 when not charging / fail-open)\\n /// @return feeAmount fee that would be taken (0 unless active && rateBps>0 && not dust)\\n /// @return netAmount amount the borrower would receive (== grossColl when not charging)\\n /// @return feeReceiver fee destination from the quote\\n /// @return active resolved policy active flag (the \\\"will charge\\\" test is active && feeAmount>0)\\n /// @return reason SkipReason (NONE on an honest/charging quote)\\n function previewZeroCollWithdrawExitFee(\\n address borrower,\\n uint256 grossColl\\n )\\n external\\n view\\n returns (\\n uint16 rateBps,\\n uint256 feeAmount,\\n uint256 netAmount,\\n address feeReceiver,\\n bool active,\\n uint8 reason\\n )\\n {\\n IExitFeeController.ExitFeeQuote memory q = _safeQuote(\\n SURFACE_ZERO_WITHDRAW_COLL,\\n address(0),\\n borrower,\\n grossColl\\n );\\n return (q.rateBps, q.feeAmount, q.netAmount, q.feeReceiver, q.active, q.reason);\\n }\\n\\n /// Send ETH to Active Pool and increase its recorded ETH balance\\n function _activePoolAddColl(IActivePool _activePool, uint256 _amount) internal {\\n (bool success, ) = address(_activePool).call{ value: _amount }(\\\"\\\");\\n require(success, \\\"BorrowerOps: Sending ETH to ActivePool failed\\\");\\n }\\n\\n /// Issue the specified amount of ZUSD to _account and increases the total active debt (_netDebtIncrease potentially includes a ZUSDFee)\\n function _mintZusdAndIncreaseActivePoolDebt(\\n IActivePool _activePool,\\n IZUSDToken _zusdToken,\\n address _account,\\n uint256 _ZUSDAmount,\\n uint256 _netDebtIncrease\\n ) internal {\\n _activePool.increaseZUSDDebt(_netDebtIncrease);\\n _zusdToken.mint(_account, _ZUSDAmount);\\n }\\n\\n /// Burn the specified amount of ZUSD from _account and decreases the total active debt\\n function _burnZusdAndDecreaseActivePoolDebt(\\n IActivePool _activePool,\\n IZUSDToken _zusdToken,\\n address _account,\\n uint256 _ZUSD\\n ) internal {\\n _activePool.decreaseZUSDDebt(_ZUSD);\\n _zusdToken.burn(_account, _ZUSD);\\n }\\n\\n // --- 'Require' wrapper functions ---\\n\\n function _requireSingularCollChange(uint256 _collWithdrawal) internal view {\\n require(\\n msg.value == 0 || _collWithdrawal == 0,\\n \\\"BorrowerOperations: Cannot withdraw and add coll\\\"\\n );\\n }\\n\\n function _requireCallerIsBorrower(address _borrower) internal view {\\n require(\\n msg.sender == _borrower,\\n \\\"BorrowerOps: Caller must be the borrower for a withdrawal\\\"\\n );\\n }\\n\\n function _requireNonZeroAdjustment(\\n uint256 _collWithdrawal,\\n uint256 _ZUSDChange\\n ) internal view {\\n require(\\n msg.value != 0 || _collWithdrawal != 0 || _ZUSDChange != 0,\\n \\\"BorrowerOps: There must be either a collateral change or a debt change\\\"\\n );\\n }\\n\\n function _requireTroveisActive(ITroveManager _troveManager, address _borrower) internal view {\\n uint256 status = _troveManager.getTroveStatus(_borrower);\\n require(status == 1, \\\"BorrowerOps: Trove does not exist or is closed\\\");\\n }\\n\\n function _requireTroveisNotActive(\\n ITroveManager _troveManager,\\n address _borrower\\n ) internal view {\\n uint256 status = _troveManager.getTroveStatus(_borrower);\\n require(status != 1, \\\"BorrowerOps: Trove is active\\\");\\n }\\n\\n function _requireNonZeroDebtChange(uint256 _ZUSDChange) internal pure {\\n require(_ZUSDChange > 0, \\\"BorrowerOps: Debt increase requires non-zero debtChange\\\");\\n }\\n\\n function _requireNotInRecoveryMode(uint256 _price) internal view {\\n require(\\n !_checkRecoveryMode(_price),\\n \\\"BorrowerOps: Operation not permitted during Recovery Mode\\\"\\n );\\n }\\n\\n function _requireNoCollWithdrawal(uint256 _collWithdrawal) internal pure {\\n require(\\n _collWithdrawal == 0,\\n \\\"BorrowerOps: Collateral withdrawal not permitted Recovery Mode\\\"\\n );\\n }\\n\\n function _requireValidAdjustmentInCurrentMode(\\n bool _isRecoveryMode,\\n uint256 _collWithdrawal,\\n bool _isDebtIncrease,\\n LocalVariables_adjustTrove memory _vars\\n ) internal view {\\n /*\\n *In Recovery Mode, only allow:\\n *\\n * - Pure collateral top-up\\n * - Pure debt repayment\\n * - Collateral top-up with debt repayment\\n * - A debt increase combined with a collateral top-up which makes the ICR >= 150% and improves the ICR (and by extension improves the TCR).\\n *\\n * In Normal Mode, ensure:\\n *\\n * - The new ICR is above MCR\\n * - The adjustment won't pull the TCR below CCR\\n */\\n if (_isRecoveryMode) {\\n _requireNoCollWithdrawal(_collWithdrawal);\\n if (_isDebtIncrease) {\\n _requireICRisAboveCCR(_vars.newICR);\\n _requireNewICRisAboveOldICR(_vars.newICR, _vars.oldICR);\\n }\\n } else {\\n // if Normal Mode\\n _requireICRisAboveMCR(_vars.newICR);\\n _vars.newTCR = _getNewTCRFromTroveChange(\\n _vars.collChange,\\n _vars.isCollIncrease,\\n _vars.netDebtChange,\\n _isDebtIncrease,\\n _vars.price\\n );\\n _requireNewTCRisAboveCCR(_vars.newTCR);\\n }\\n }\\n\\n function _requireICRisAboveMCR(uint256 _newICR) internal view {\\n require(\\n _newICR >= liquityBaseParams.MCR(),\\n \\\"BorrowerOps: An operation that would result in ICR < MCR is not permitted\\\"\\n );\\n }\\n\\n function _requireICRisAboveCCR(uint256 _newICR) internal view {\\n require(\\n _newICR >= liquityBaseParams.CCR(),\\n \\\"BorrowerOps: Operation must leave trove with ICR >= CCR\\\"\\n );\\n }\\n\\n function _requireNewICRisAboveOldICR(uint256 _newICR, uint256 _oldICR) internal pure {\\n require(\\n _newICR >= _oldICR,\\n \\\"BorrowerOps: Cannot decrease your Trove's ICR in Recovery Mode\\\"\\n );\\n }\\n\\n function _requireNewTCRisAboveCCR(uint256 _newTCR) internal view {\\n require(\\n _newTCR >= liquityBaseParams.CCR(),\\n \\\"BorrowerOps: An operation that would result in TCR < CCR is not permitted\\\"\\n );\\n }\\n\\n function _requireAtLeastMinNetDebt(uint256 _netDebt) internal pure {\\n require(\\n _netDebt >= MIN_NET_DEBT,\\n \\\"BorrowerOps: Trove's net debt must be greater than minimum\\\"\\n );\\n }\\n\\n function _requireValidZUSDRepayment(\\n uint256 _currentDebt,\\n uint256 _debtRepayment\\n ) internal pure {\\n require(\\n _debtRepayment <= _currentDebt.sub(ZUSD_GAS_COMPENSATION),\\n \\\"BorrowerOps: Amount repaid must not be larger than the Trove's debt\\\"\\n );\\n }\\n\\n function _requireCallerIsStabilityPool() internal view {\\n require(msg.sender == stabilityPoolAddress, \\\"BorrowerOps: Caller is not Stability Pool\\\");\\n }\\n\\n function _requireSufficientZUSDBalance(\\n IZUSDToken _zusdToken,\\n address _borrower,\\n uint256 _debtRepayment\\n ) internal view {\\n require(\\n _zusdToken.balanceOf(_borrower) >= _debtRepayment,\\n \\\"BorrowerOps: Caller doesnt have enough ZUSD to make repayment\\\"\\n );\\n }\\n\\n function _requireValidMaxFeePercentage(\\n uint256 _maxFeePercentage,\\n bool _isRecoveryMode\\n ) internal view {\\n if (_isRecoveryMode) {\\n require(\\n _maxFeePercentage <= DECIMAL_PRECISION,\\n \\\"Max fee percentage must less than or equal to 100%\\\"\\n );\\n } else {\\n require(\\n _maxFeePercentage >= liquityBaseParams.BORROWING_FEE_FLOOR() &&\\n _maxFeePercentage <= DECIMAL_PRECISION,\\n \\\"Max fee percentage must be between 0.5% and 100%\\\"\\n );\\n }\\n }\\n\\n // --- ICR and TCR getters ---\\n\\n /// Compute the new collateral ratio, considering the change in coll and debt. Assumes 0 pending rewards.\\n function _getNewNominalICRFromTroveChange(\\n uint256 _coll,\\n uint256 _debt,\\n uint256 _collChange,\\n bool _isCollIncrease,\\n uint256 _debtChange,\\n bool _isDebtIncrease\\n ) internal pure returns (uint256) {\\n (uint256 newColl, uint256 newDebt) = _getNewTroveAmounts(\\n _coll,\\n _debt,\\n _collChange,\\n _isCollIncrease,\\n _debtChange,\\n _isDebtIncrease\\n );\\n\\n uint256 newNICR = LiquityMath._computeNominalCR(newColl, newDebt);\\n return newNICR;\\n }\\n\\n /// Compute the new collateral ratio, considering the change in coll and debt. Assumes 0 pending rewards.\\n function _getNewICRFromTroveChange(\\n uint256 _coll,\\n uint256 _debt,\\n uint256 _collChange,\\n bool _isCollIncrease,\\n uint256 _debtChange,\\n bool _isDebtIncrease,\\n uint256 _price\\n ) internal pure returns (uint256) {\\n (uint256 newColl, uint256 newDebt) = _getNewTroveAmounts(\\n _coll,\\n _debt,\\n _collChange,\\n _isCollIncrease,\\n _debtChange,\\n _isDebtIncrease\\n );\\n\\n uint256 newICR = LiquityMath._computeCR(newColl, newDebt, _price);\\n return newICR;\\n }\\n\\n function _getNewTroveAmounts(\\n uint256 _coll,\\n uint256 _debt,\\n uint256 _collChange,\\n bool _isCollIncrease,\\n uint256 _debtChange,\\n bool _isDebtIncrease\\n ) internal pure returns (uint256, uint256) {\\n uint256 newColl = _coll;\\n uint256 newDebt = _debt;\\n\\n newColl = _isCollIncrease ? _coll.add(_collChange) : _coll.sub(_collChange);\\n newDebt = _isDebtIncrease ? _debt.add(_debtChange) : _debt.sub(_debtChange);\\n\\n return (newColl, newDebt);\\n }\\n\\n function _getNewTCRFromTroveChange(\\n uint256 _collChange,\\n bool _isCollIncrease,\\n uint256 _debtChange,\\n bool _isDebtIncrease,\\n uint256 _price\\n ) internal view returns (uint256) {\\n uint256 totalColl = getEntireSystemColl();\\n uint256 totalDebt = getEntireSystemDebt();\\n\\n totalColl = _isCollIncrease ? totalColl.add(_collChange) : totalColl.sub(_collChange);\\n totalDebt = _isDebtIncrease ? totalDebt.add(_debtChange) : totalDebt.sub(_debtChange);\\n\\n uint256 newTCR = LiquityMath._computeCR(totalColl, totalDebt, _price);\\n return newTCR;\\n }\\n\\n function getCompositeDebt(uint256 _debt) external view override returns (uint256) {\\n return _getCompositeDebt(_debt);\\n }\\n\\n function BORROWING_FEE_FLOOR() external view override returns (uint256) {\\n return liquityBaseParams.BORROWING_FEE_FLOOR();\\n }\\n\\n function getMassetManager() external view override returns (IMassetManager) {\\n return massetManager;\\n }\\n}\\n\",\"keccak256\":\"0xadd63357af194d1b1d3dc13154ab51330dce5e47aa946da10c924ecc8651af23\",\"license\":\"MIT\"},\"contracts/BorrowerOperationsStorage.sol\":{\"content\":\"// SPDX-License-Identifier: MIT\\n\\npragma solidity 0.6.11;\\n\\nimport \\\"./Interfaces/IActivePool.sol\\\";\\nimport \\\"./Interfaces/IBorrowerOperations.sol\\\";\\nimport \\\"./Interfaces/ITroveManager.sol\\\";\\nimport \\\"./Interfaces/IZUSDToken.sol\\\";\\nimport \\\"./Interfaces/ICollSurplusPool.sol\\\";\\nimport \\\"./Interfaces/ISortedTroves.sol\\\";\\nimport \\\"./Interfaces/IZEROStaking.sol\\\";\\nimport \\\"./Interfaces/IFeeDistributor.sol\\\";\\nimport \\\"./Dependencies/Ownable.sol\\\";\\nimport \\\"./Dependencies/Mynt/IMassetManager.sol\\\";\\n\\ncontract BorrowerOperationsStorage is Ownable {\\n string public constant NAME = \\\"BorrowerOperations\\\";\\n\\n // --- Connected contract declarations ---\\n\\n ITroveManager public troveManager;\\n\\n address stabilityPoolAddress;\\n\\n address gasPoolAddress;\\n\\n ICollSurplusPool collSurplusPool;\\n\\n IZEROStaking public zeroStaking;\\n address public zeroStakingAddress;\\n\\n IZUSDToken public zusdToken;\\n\\n // A doubly linked list of Troves, sorted by their collateral ratios\\n ISortedTroves public sortedTroves;\\n\\n IMassetManager public massetManager;\\n IFeeDistributor public feeDistributor;\\n}\\n\",\"keccak256\":\"0x5708a00804a19b3fb47bc20dc2457775228a3d7b09c4f5b33d11c4995fe77c94\",\"license\":\"MIT\"},\"contracts/Dependencies/BaseMath.sol\":{\"content\":\"// SPDX-License-Identifier: MIT\\npragma solidity 0.6.11;\\n\\n\\ncontract BaseMath {\\n uint constant public DECIMAL_PRECISION = 1e18;\\n}\\n\",\"keccak256\":\"0x7e1369ca5cb09e818e345a2def19a261401f79c985a6030b55b7311dd6f53be4\",\"license\":\"MIT\"},\"contracts/Dependencies/CheckContract.sol\":{\"content\":\"// SPDX-License-Identifier: MIT\\n\\npragma solidity 0.6.11;\\n\\n\\ncontract CheckContract {\\n /**\\n * @dev Check that the account is an already deployed non-destroyed contract.\\n * See: https://github.com/OpenZeppelin/openzeppelin-contracts/blob/master/contracts/utils/Address.sol#L12\\n */\\n function checkContract(address _account) internal view {\\n require(_account != address(0), \\\"Account cannot be zero address\\\");\\n\\n uint256 size;\\n // solhint-disable-next-line no-inline-assembly\\n assembly { size := extcodesize(_account) }\\n require(size > 0, \\\"Account code size cannot be zero\\\");\\n }\\n}\\n\",\"keccak256\":\"0x4c7dc4d0197c27ebc7de671b00458a9ff45f57223aeb520e6ddd2eb6d2d89e5c\",\"license\":\"MIT\"},\"contracts/Dependencies/IERC20.sol\":{\"content\":\"// SPDX-License-Identifier: MIT\\n\\npragma solidity 0.6.11;\\n\\n/**\\n * Based on the OpenZeppelin IER20 interface:\\n * https://github.com/OpenZeppelin/openzeppelin-contracts/blob/master/contracts/token/ERC20/IERC20.sol\\n *\\n * @dev Interface of the ERC20 standard as defined in the EIP.\\n */\\ninterface IERC20 {\\n /**\\n * @dev Returns the amount of tokens in existence.\\n */\\n function totalSupply() external view returns (uint256);\\n\\n /**\\n * @dev Returns the amount of tokens owned by `account`.\\n */\\n function balanceOf(address account) external view returns (uint256);\\n\\n /**\\n * @dev Moves `amount` tokens from the caller's account to `recipient`.\\n *\\n * Returns a boolean value indicating whether the operation succeeded.\\n *\\n * Emits a {Transfer} event.\\n */\\n function transfer(address recipient, uint256 amount) external returns (bool);\\n\\n /**\\n * @dev Returns the remaining number of tokens that `spender` will be\\n * allowed to spend on behalf of `owner` through {transferFrom}. This is\\n * zero by default.\\n *\\n * This value changes when {approve} or {transferFrom} are called.\\n */\\n function allowance(address owner, address spender) external view returns (uint256);\\n function increaseAllowance(address spender, uint256 addedValue) external returns (bool);\\n function decreaseAllowance(address spender, uint256 subtractedValue) external returns (bool);\\n\\n /**\\n * @dev Sets `amount` as the allowance of `spender` over the caller's tokens.\\n *\\n * Returns a boolean value indicating whether the operation succeeded.\\n *\\n * IMPORTANT: Beware that changing an allowance with this method brings the risk\\n * that someone may use both the old and the new allowance by unfortunate\\n * transaction ordering. One possible solution to mitigate this race\\n * condition is to first reduce the spender's allowance to 0 and set the\\n * desired value afterwards:\\n * https://github.com/ethereum/EIPs/issues/20#issuecomment-263524729\\n *\\n * Emits an {Approval} event.\\n */\\n function approve(address spender, uint256 amount) external returns (bool);\\n\\n /**\\n * @dev Moves `amount` tokens from `sender` to `recipient` using the\\n * allowance mechanism. `amount` is then deducted from the caller's\\n * allowance.\\n *\\n * Returns a boolean value indicating whether the operation succeeded.\\n *\\n * Emits a {Transfer} event.\\n */\\n function transferFrom(address sender, address recipient, uint256 amount) external returns (bool);\\n\\n function name() external view returns (string memory);\\n function symbol() external view returns (string memory);\\n function decimals() external view returns (uint8);\\n \\n /**\\n * @dev Emitted when `value` tokens are moved from one account (`from`) to\\n * another (`to`).\\n *\\n * Note that `value` may be zero.\\n */\\n event Transfer(address indexed from, address indexed to, uint256 value);\\n\\n /**\\n * @dev Emitted when the allowance of a `spender` for an `owner` is set by\\n * a call to {approve}. `value` is the new allowance.\\n */\\n event Approval(address indexed owner, address indexed spender, uint256 value);\\n}\",\"keccak256\":\"0xe0b2473eba89df8d27d7cea2a99fce788c212f3fd393c9508e449e51a3f220fa\",\"license\":\"MIT\"},\"contracts/Dependencies/IERC2612.sol\":{\"content\":\"// SPDX-License-Identifier: MIT\\n\\npragma solidity 0.6.11;\\n\\n/**\\n * @dev Interface of the ERC2612 standard as defined in the EIP.\\n *\\n * Adds the {permit} method, which can be used to change one's\\n * {IERC20-allowance} without having to send a transaction, by signing a\\n * message. This allows users to spend tokens without having to hold Ether.\\n *\\n * See https://eips.ethereum.org/EIPS/eip-2612.\\n * \\n * Code adapted from https://github.com/OpenZeppelin/openzeppelin-contracts/pull/2237/\\n */\\ninterface IERC2612 {\\n /**\\n * @dev Sets `amount` as the allowance of `spender` over `owner`'s tokens,\\n * given `owner`'s signed approval.\\n *\\n * IMPORTANT: The same issues {IERC20-approve} has related to transaction\\n * ordering also apply here.\\n *\\n * Emits an {Approval} event.\\n *\\n * Requirements:\\n *\\n * - `owner` cannot be the zero address.\\n * - `spender` cannot be the zero address.\\n * - `deadline` must be a timestamp in the future.\\n * - `v`, `r` and `s` must be a valid `secp256k1` signature from `owner`\\n * over the EIP712-formatted function arguments.\\n * - the signature must use ``owner``'s current nonce (see {nonces}).\\n *\\n * For more information on the signature format, see the\\n * https://eips.ethereum.org/EIPS/eip-2612#specification[relevant EIP\\n * section].\\n */\\n function permit(address owner, address spender, uint256 amount, \\n uint256 deadline, uint8 v, bytes32 r, bytes32 s) external;\\n \\n /**\\n * @dev Returns the current ERC2612 nonce for `owner`. This value must be\\n * included whenever a signature is generated for {permit}.\\n *\\n * Every successful call to {permit} increases `owner`'s nonce by one. This\\n * prevents a signature from being used multiple times.\\n *\\n * `owner` can limit the time a Permit is valid for by setting `deadline` to \\n * a value in the near future. The deadline argument can be set to uint(-1) to \\n * create Permits that effectively never expire.\\n */\\n function nonces(address owner) external view returns (uint256);\\n \\n function version() external view returns (string memory);\\n function permitTypeHash() external view returns (bytes32);\\n function domainSeparator() external view returns (bytes32);\\n}\\n\",\"keccak256\":\"0xd376458452f8b480bfea549637bd71d3f9eb1f12e9d59d1beff373417462d67f\",\"license\":\"MIT\"},\"contracts/Dependencies/LiquityBase.sol\":{\"content\":\"// SPDX-License-Identifier: MIT\\n\\npragma solidity 0.6.11;\\n\\nimport \\\"./BaseMath.sol\\\";\\nimport \\\"./LiquityMath.sol\\\";\\nimport \\\"../Interfaces/IActivePool.sol\\\";\\nimport \\\"../Interfaces/IDefaultPool.sol\\\";\\nimport \\\"../Interfaces/IPriceFeed.sol\\\";\\nimport \\\"../Interfaces/ILiquityBase.sol\\\";\\nimport \\\"../Interfaces/ILiquityBaseParams.sol\\\";\\n\\n/**\\n * Base contract for TroveManager, BorrowerOperations and StabilityPool. Contains global system constants and\\n * common functions.\\n */\\ncontract LiquityBase is BaseMath, ILiquityBase {\\n using SafeMath for uint256;\\n\\n uint256 public constant _100pct = 1000000000000000000; // 1e18 == 100%\\n\\n /// Amount of ZUSD to be locked in gas pool on opening troves\\n uint256 public constant ZUSD_GAS_COMPENSATION = 20e18;\\n\\n /// Minimum amount of net ZUSD debt a trove must have\\n uint256 public constant MIN_NET_DEBT = 180e18;\\n\\n IActivePool public activePool;\\n\\n IDefaultPool public defaultPool;\\n\\n IPriceFeed public override priceFeed;\\n\\n ILiquityBaseParams public override liquityBaseParams;\\n\\n // --- Gas compensation functions ---\\n\\n // Returns the composite debt (drawn debt + gas compensation) of a trove, for the purpose of ICR calculation\\n function _getCompositeDebt(uint256 _debt) internal pure returns (uint256) {\\n return _debt.add(ZUSD_GAS_COMPENSATION);\\n }\\n\\n function _getNetDebt(uint256 _debt) internal pure returns (uint256) {\\n return _debt.sub(ZUSD_GAS_COMPENSATION);\\n }\\n\\n /// Return the amount of ETH to be drawn from a trove's collateral and sent as gas compensation.\\n function _getCollGasCompensation(uint256 _entireColl) internal view returns (uint256) {\\n return _entireColl / liquityBaseParams.PERCENT_DIVISOR();\\n }\\n\\n function getEntireSystemColl() public view returns (uint256 entireSystemColl) {\\n uint256 activeColl = activePool.getETH();\\n uint256 liquidatedColl = defaultPool.getETH();\\n\\n return activeColl.add(liquidatedColl);\\n }\\n\\n function getEntireSystemDebt() public view returns (uint256 entireSystemDebt) {\\n uint256 activeDebt = activePool.getZUSDDebt();\\n uint256 closedDebt = defaultPool.getZUSDDebt();\\n\\n return activeDebt.add(closedDebt);\\n }\\n\\n function _getTCR(uint256 _price) internal view returns (uint256 TCR) {\\n uint256 entireSystemColl = getEntireSystemColl();\\n uint256 entireSystemDebt = getEntireSystemDebt();\\n\\n TCR = LiquityMath._computeCR(entireSystemColl, entireSystemDebt, _price);\\n\\n return TCR;\\n }\\n\\n function _checkRecoveryMode(uint256 _price) internal view returns (bool) {\\n uint256 TCR = _getTCR(_price);\\n\\n return TCR < liquityBaseParams.CCR();\\n }\\n\\n function _requireUserAcceptsFee(\\n uint256 _fee,\\n uint256 _amount,\\n uint256 _maxFeePercentage\\n ) internal pure {\\n uint256 feePercentage = _fee.mul(DECIMAL_PRECISION).div(_amount);\\n require(feePercentage <= _maxFeePercentage, \\\"Fee exceeded provided maximum\\\");\\n }\\n}\\n\",\"keccak256\":\"0x100b8a1c17caa95f5c9977e88f9263847a1977a365ca0a795753dd74aa1d6d7c\",\"license\":\"MIT\"},\"contracts/Dependencies/LiquityMath.sol\":{\"content\":\"// SPDX-License-Identifier: MIT\\n\\npragma solidity 0.6.11;\\n\\nimport \\\"./SafeMath.sol\\\";\\nimport \\\"./console.sol\\\";\\n\\nlibrary LiquityMath {\\n using SafeMath for uint;\\n\\n uint internal constant DECIMAL_PRECISION = 1e18;\\n\\n /* Precision for Nominal ICR (independent of price). Rationale for the value:\\n *\\n * - Making it \\u201ctoo high\\u201d could lead to overflows.\\n * - Making it \\u201ctoo low\\u201d could lead to an ICR equal to zero, due to truncation from Solidity floor division. \\n *\\n * This value of 1e20 is chosen for safety: the NICR will only overflow for numerator > ~1e39 ETH,\\n * and will only truncate to 0 if the denominator is at least 1e20 times greater than the numerator.\\n *\\n */\\n uint internal constant NICR_PRECISION = 1e20;\\n\\n function _min(uint _a, uint _b) internal pure returns (uint) {\\n return (_a < _b) ? _a : _b;\\n }\\n\\n function _max(uint _a, uint _b) internal pure returns (uint) {\\n return (_a >= _b) ? _a : _b;\\n }\\n\\n /* \\n * Multiply two decimal numbers and use normal rounding rules:\\n * -round product up if 19'th mantissa digit >= 5\\n * -round product down if 19'th mantissa digit < 5\\n *\\n * Used only inside the exponentiation, _decPow().\\n */\\n function decMul(uint x, uint y) internal pure returns (uint decProd) {\\n uint prod_xy = x.mul(y);\\n\\n decProd = prod_xy.add(DECIMAL_PRECISION / 2).div(DECIMAL_PRECISION);\\n }\\n\\n /* \\n * _decPow: Exponentiation function for 18-digit decimal base, and integer exponent n.\\n * \\n * Uses the efficient \\\"exponentiation by squaring\\\" algorithm. O(log(n)) complexity. \\n * \\n * Called by two functions that represent time in units of minutes:\\n * 1) TroveManager._calcDecayedBaseRate\\n * 2) CommunityIssuance._getCumulativeIssuanceFraction \\n * \\n * The exponent is capped to avoid reverting due to overflow. The cap 525600000 equals\\n * \\\"minutes in 1000 years\\\": 60 * 24 * 365 * 1000\\n * \\n * If a period of > 1000 years is ever used as an exponent in either of the above functions, the result will be\\n * negligibly different from just passing the cap, since: \\n *\\n * In function 1), the decayed base rate will be 0 for 1000 years or > 1000 years\\n * In function 2), the difference in tokens issued at 1000 years and any time > 1000 years, will be negligible\\n */\\n function _decPow(uint _base, uint _minutes) internal pure returns (uint) {\\n \\n if (_minutes > 525600000) {_minutes = 525600000;} // cap to avoid overflow\\n \\n if (_minutes == 0) {return DECIMAL_PRECISION;}\\n\\n uint y = DECIMAL_PRECISION;\\n uint x = _base;\\n uint n = _minutes;\\n\\n // Exponentiation-by-squaring\\n while (n > 1) {\\n if (n % 2 == 0) {\\n x = decMul(x, x);\\n n = n.div(2);\\n } else { // if (n % 2 != 0)\\n y = decMul(x, y);\\n x = decMul(x, x);\\n n = (n.sub(1)).div(2);\\n }\\n }\\n\\n return decMul(x, y);\\n }\\n\\n function _getAbsoluteDifference(uint _a, uint _b) internal pure returns (uint) {\\n return (_a >= _b) ? _a.sub(_b) : _b.sub(_a);\\n }\\n\\n function _computeNominalCR(uint _coll, uint _debt) internal pure returns (uint) {\\n if (_debt > 0) {\\n return _coll.mul(NICR_PRECISION).div(_debt);\\n }\\n // Return the maximal value for uint256 if the Trove has a debt of 0. Represents \\\"infinite\\\" CR.\\n else { // if (_debt == 0)\\n return 2**256 - 1;\\n }\\n }\\n\\n function _computeCR(uint _coll, uint _debt, uint _price) internal pure returns (uint) {\\n if (_debt > 0) {\\n uint newCollRatio = _coll.mul(_price).div(_debt);\\n\\n return newCollRatio;\\n }\\n // Return the maximal value for uint256 if the Trove has a debt of 0. Represents \\\"infinite\\\" CR.\\n else { // if (_debt == 0)\\n return 2**256 - 1; \\n }\\n }\\n}\\n\",\"keccak256\":\"0x7a95ed70d8937e0896c054b433ad0dfc87a9cfd028cae1694098e9d5d68127cd\",\"license\":\"MIT\"},\"contracts/Dependencies/Mynt/IDLLR.sol\":{\"content\":\"// SPDX-License-Identifier: MIT\\n\\npragma solidity 0.6.11;\\nimport \\\"../IERC20.sol\\\";\\n\\n/// Public interface for Sovryn Dollar DLLR (Meta Asset Token of Sovryn Mynt) exposing specific functions\\ninterface IDLLR is IERC20 {\\n /**\\n * @notice Only owner can transfer the token.\\n * @notice destination cannot be:\\n * - zero (0x0) address.\\n *\\n * @param _recipient Recipient of the token.\\n * @param _amount The amount of token that will be transferred.\\n *\\n * @return true / false.\\n */\\n function transfer(address _recipient, uint256 _amount) external override returns (bool);\\n\\n /**\\n * @notice Only owner who can transfer the token.\\n * @notice destination cannot be:\\n * - zero (0x0) address.\\n *\\n * @param _from Sender of the token.\\n * @param _to Recipient of the token.\\n * @param _amount The amount of token that will be transferred.\\n *\\n * @return true / false.\\n */\\n function transferFrom(\\n address _from,\\n address _to,\\n uint256 _amount\\n ) external override returns (bool);\\n\\n /**\\n * @notice transfer utilizing EIP-2612, to reduce the additional sending transaction for doing the approval to the spender.\\n *\\n * @notice destination cannot be:\\n * - zero (0x0) address.\\n *\\n * @dev By calling this function, the allowance will be overwritten by the total amount.\\n *\\n * @param _from Sender of the token.\\n * @param _to Recipient of the token.\\n * @param _amount The amount of the token that will be transferred.\\n * @param _deadline Expiration time of the signature.\\n * @param _v Last 1 byte of ECDSA signature.\\n * @param _r First 32 bytes of ECDSA signature.\\n * @param _s 32 bytes after _r in ECDSA signature.\\n */\\n function transferWithPermit(\\n address _from,\\n address _to,\\n uint256 _amount,\\n uint256 _deadline,\\n uint8 _v,\\n bytes32 _r,\\n bytes32 _s\\n ) external;\\n\\n /**\\n * @notice Approves and then calls the receiving contract.\\n * Useful to encapsulate sending tokens to a contract in one call.\\n * Solidity has no native way to send tokens to contracts.\\n * ERC-20 tokens require approval to be spent by third parties, such as a contract in this case.\\n * @param _spender The contract address to spend the tokens.\\n * @param _amount The amount of tokens to be sent.\\n * @param _data Parameters for the contract call, such as endpoint signature.\\n */\\n function approveAndCall(address _spender, uint256 _amount, bytes calldata _data) external;\\n}\\n\",\"keccak256\":\"0x1fcc09759323769fcaa430bef598cf08a9f5e98ce6a9bdd6faa79d8b7b6ecce2\",\"license\":\"MIT\"},\"contracts/Dependencies/Mynt/IMassetManager.sol\":{\"content\":\"// SPDX-License-Identifier: MIT\\n\\npragma solidity 0.6.11;\\n\\ninterface IMassetManager {\\n struct PermitParams {\\n uint256 deadline;\\n uint8 v;\\n bytes32 r;\\n bytes32 s;\\n }\\n\\n function mintTo(\\n address _bAsset,\\n uint256 _bAssetQuantity,\\n address _recipient\\n ) external returns (uint256);\\n\\n function getToken() external view returns (address);\\n\\n /**\\n * @dev Credits a recipient with a certain quantity of selected bAsset, in exchange for burning the\\n * relative mAsset quantity from the sender. Sender also incurs a small fee, if any.\\n * @param _bAsset Address of the bAsset to redeem.\\n * @param _massetQuantity Units of the masset to redeem.\\n * @param _recipient Address to credit with withdrawn bAssets.\\n * @return massetRedeemed Relative number of mAsset units burned to pay for the bAssets.\\n */\\n function redeemTo(\\n address _bAsset,\\n uint256 _massetQuantity,\\n address _recipient\\n ) external returns (uint256 massetRedeemed);\\n}\\n\",\"keccak256\":\"0x3e8de462d45e8f07ef83b6b6e7eb90a5d09f21d3bcbb1225e8f781488ab4a771\",\"license\":\"MIT\"},\"contracts/Dependencies/Mynt/MyntLib.sol\":{\"content\":\"// SPDX-License-Identifier: MIT\\n\\npragma solidity 0.6.11;\\n\\nimport \\\"./IMassetManager.sol\\\";\\nimport \\\"./IDLLR.sol\\\";\\nimport \\\"../SafeMath.sol\\\";\\nimport { IPermit2, ISignatureTransfer } from \\\"../../Interfaces/IPermit2.sol\\\";\\n\\nlibrary MyntLib {\\n using SafeMath for uint256;\\n\\n /**\\n * @notice Convert DLLR _dllrAmount to _toToken utilizing EIP-2612 permit\\n * to reduce the additional sending transaction for doing the approval to the spender.\\n *\\n * @dev WARNING!! Do not us this lib function on RSK network because there is a griefing attack issue in the DLLR contract.\\n *\\n * @param _myntMassetManager Mynt protocol MassetManager contract address - needed for integration\\n * @param _dllrAmount The amount of the DLLR (mAsset) token that will be burned in exchange for _toToken\\n * @param _toToken bAsset token address to withdraw from DLLR\\n * @param _permitParams EIP-2612 permit params:\\n * _deadline Expiration time of the signature.\\n * _v Last 1 byte of ECDSA signature.\\n * _r First 32 bytes of ECDSA signature.\\n * _s 32 bytes after _r in ECDSA signature.\\n * @return redeemed ZUSD amount\\n */\\n function redeemZusdFromDllrWithPermit(\\n IMassetManager _myntMassetManager,\\n uint256 _dllrAmount,\\n address _toToken,\\n IMassetManager.PermitParams calldata _permitParams\\n ) internal returns (uint256) {\\n IDLLR dllr = IDLLR(_myntMassetManager.getToken());\\n uint256 thisBalanceBefore = dllr.balanceOf(address(this));\\n address thisAddress = address(this);\\n dllr.transferWithPermit(\\n msg.sender,\\n thisAddress,\\n _dllrAmount,\\n _permitParams.deadline,\\n _permitParams.v,\\n _permitParams.r,\\n _permitParams.s\\n );\\n require(\\n dllr.balanceOf(thisAddress).sub(thisBalanceBefore) == _dllrAmount,\\n \\\"DLLR transferred amount validation failed\\\"\\n );\\n return _myntMassetManager.redeemTo(_toToken, _dllrAmount, msg.sender);\\n }\\n\\n /**\\n * @notice Convert DLLR _dllrAmount to _toToken utilizing EIP-2612 permit via a canonical Permit2 contract\\n * to reduce the additional sending transaction for doing the approval to the spender.\\n *\\n * @param _myntMassetManager Mynt protocol MassetManager contract address - needed for integration\\n * @param _toToken bAsset token address to withdraw from DLLR\\n * @param _permit permit data, in form of PermitTransferFrom struct.\\n * @param _permit2 permit2 contract address\\n * @param _signature signatue of the permit data.\\n * @return redeemed ZUSD amount\\n */\\n function redeemZusdFromDllrWithPermit2(\\n IMassetManager _myntMassetManager,\\n address _toToken,\\n ISignatureTransfer.PermitTransferFrom memory _permit,\\n IPermit2 _permit2,\\n bytes calldata _signature\\n ) internal returns (uint256) {\\n IDLLR dllr = IDLLR(_myntMassetManager.getToken());\\n uint256 thisBalanceBefore = dllr.balanceOf(address(this));\\n address thisAddress = address(this);\\n uint256 _dllrAmount = _permit.permitted.amount;\\n\\n _permit2.permitTransferFrom(\\n _permit,\\n _generateTransferDetails(thisAddress, _dllrAmount),\\n msg.sender,\\n _signature\\n );\\n\\n require(\\n dllr.balanceOf(thisAddress).sub(thisBalanceBefore) == _dllrAmount,\\n \\\"DLLR transferred amount validation failed\\\"\\n );\\n return _myntMassetManager.redeemTo(_toToken, _dllrAmount, msg.sender);\\n }\\n\\n /**\\n * @dev view function to construct SignatureTransferDetails struct to be used by Permit2\\n *\\n * @param _to ultimate recipient\\n * @param _amount amount of transfer\\n *\\n * @return SignatureTransferDetails struct object \\n */\\n function _generateTransferDetails(address _to, uint256 _amount) private view returns (ISignatureTransfer.SignatureTransferDetails memory) {\\n ISignatureTransfer.SignatureTransferDetails memory transferDetails = ISignatureTransfer.SignatureTransferDetails({\\n to: _to,\\n requestedAmount: _amount\\n });\\n\\n return transferDetails;\\n }\\n}\\n\",\"keccak256\":\"0x6f0c78d8c4ea0b5b5e6bbe8d78374b9d2d367ffc07054dde36b9cbe2061944b6\",\"license\":\"MIT\"},\"contracts/Dependencies/Ownable.sol\":{\"content\":\"// SPDX-License-Identifier: MIT\\n\\npragma solidity 0.6.11;\\n\\n/**\\n * Based on OpenZeppelin's Ownable contract:\\n * https://github.com/OpenZeppelin/openzeppelin-contracts/blob/master/contracts/access/Ownable.sol\\n *\\n * @dev Contract module which provides a basic access control mechanism, where\\n * there is an account (an owner) that can be granted exclusive access to\\n * specific functions.\\n *\\n * This module is used through inheritance. It will make available the modifier\\n * `onlyOwner`, which can be applied to your functions to restrict their use to\\n * the owner.\\n */\\ncontract Ownable {\\n bytes32 private constant KEY_OWNER = keccak256(\\\"key.ownable.owner\\\");\\n\\n event OwnershipTransferred(address indexed previousOwner, address indexed newOwner);\\n\\n /**\\n * @dev Initializes the contract setting the deployer as the initial owner.\\n */\\n constructor () internal {\\n _setOwner(msg.sender);\\n }\\n\\n /**\\n * @dev Throws if called by any account other than the owner.\\n */\\n modifier onlyOwner() {\\n require(msg.sender == getOwner(), \\\"Ownable:: access denied\\\");\\n _;\\n }\\n\\n /**\\n * @notice Set address of the owner.\\n * @param _owner Address of the owner.\\n * */\\n function _setOwner(address _owner) internal {\\n require(_owner != address(0), \\\"Ownable::setOwner: invalid address\\\");\\n emit OwnershipTransferred(getOwner(), _owner);\\n\\n bytes32 key = KEY_OWNER;\\n assembly {\\n sstore(key, _owner)\\n }\\n }\\n\\n /**\\n * @notice Set address of the owner (only owner can call this function)\\n * @param _owner Address of the owner.\\n * */\\n function setOwner(address _owner) public onlyOwner {\\n _setOwner(_owner);\\n }\\n\\n /**\\n * @notice Return address of the owner.\\n * @return _owner Address of the owner.\\n * */\\n function getOwner() public view returns (address _owner) {\\n bytes32 key = KEY_OWNER;\\n assembly {\\n _owner := sload(key)\\n }\\n }\\n}\\n\",\"keccak256\":\"0xb5fc626e0b227fc0feb1d84440585015a0a5f586547d298534a604dd113efec6\",\"license\":\"MIT\"},\"contracts/Dependencies/SafeMath.sol\":{\"content\":\"// SPDX-License-Identifier: MIT\\n\\npragma solidity 0.6.11;\\n\\n/**\\n * Based on OpenZeppelin's SafeMath:\\n * https://github.com/OpenZeppelin/openzeppelin-contracts/blob/master/contracts/math/SafeMath.sol\\n *\\n * @dev Wrappers over Solidity's arithmetic operations with added overflow\\n * checks.\\n *\\n * Arithmetic operations in Solidity wrap on overflow. This can easily result\\n * in bugs, because programmers usually assume that an overflow raises an\\n * error, which is the standard behavior in high level programming languages.\\n * `SafeMath` restores this intuition by reverting the transaction when an\\n * operation overflows.\\n *\\n * Using this library instead of the unchecked operations eliminates an entire\\n * class of bugs, so it's recommended to use it always.\\n */\\nlibrary SafeMath {\\n /**\\n * @dev Returns the addition of two unsigned integers, reverting on\\n * overflow.\\n *\\n * Counterpart to Solidity's `+` operator.\\n *\\n * Requirements:\\n * - Addition cannot overflow.\\n */\\n function add(uint256 a, uint256 b) internal pure returns (uint256) {\\n uint256 c = a + b;\\n require(c >= a, \\\"SafeMath: addition overflow\\\");\\n\\n return c;\\n }\\n\\n /**\\n * @dev Returns the subtraction of two unsigned integers, reverting on\\n * overflow (when the result is negative).\\n *\\n * Counterpart to Solidity's `-` operator.\\n *\\n * Requirements:\\n * - Subtraction cannot overflow.\\n */\\n function sub(uint256 a, uint256 b) internal pure returns (uint256) {\\n return sub(a, b, \\\"SafeMath: subtraction overflow\\\");\\n }\\n\\n /**\\n * @dev Returns the subtraction of two unsigned integers, reverting with custom message on\\n * overflow (when the result is negative).\\n *\\n * Counterpart to Solidity's `-` operator.\\n *\\n * Requirements:\\n * - Subtraction cannot overflow.\\n *\\n * _Available since v2.4.0._\\n */\\n function sub(uint256 a, uint256 b, string memory errorMessage) internal pure returns (uint256) {\\n require(b <= a, errorMessage);\\n uint256 c = a - b;\\n\\n return c;\\n }\\n\\n /**\\n * @dev Returns the multiplication of two unsigned integers, reverting on\\n * overflow.\\n *\\n * Counterpart to Solidity's `*` operator.\\n *\\n * Requirements:\\n * - Multiplication cannot overflow.\\n */\\n function mul(uint256 a, uint256 b) internal pure returns (uint256) {\\n // Gas optimization: this is cheaper than requiring 'a' not being zero, but the\\n // benefit is lost if 'b' is also tested.\\n // See: https://github.com/OpenZeppelin/openzeppelin-contracts/pull/522\\n if (a == 0) {\\n return 0;\\n }\\n\\n uint256 c = a * b;\\n require(c / a == b, \\\"SafeMath: multiplication overflow\\\");\\n\\n return c;\\n }\\n\\n /**\\n * @dev Returns the integer division of two unsigned integers. Reverts on\\n * division by zero. The result is rounded towards zero.\\n *\\n * Counterpart to Solidity's `/` operator. Note: this function uses a\\n * `revert` opcode (which leaves remaining gas untouched) while Solidity\\n * uses an invalid opcode to revert (consuming all remaining gas).\\n *\\n * Requirements:\\n * - The divisor cannot be zero.\\n */\\n function div(uint256 a, uint256 b) internal pure returns (uint256) {\\n return div(a, b, \\\"SafeMath: division by zero\\\");\\n }\\n\\n /**\\n * @dev Returns the integer division of two unsigned integers. Reverts with custom message on\\n * division by zero. The result is rounded towards zero.\\n *\\n * Counterpart to Solidity's `/` operator. Note: this function uses a\\n * `revert` opcode (which leaves remaining gas untouched) while Solidity\\n * uses an invalid opcode to revert (consuming all remaining gas).\\n *\\n * Requirements:\\n * - The divisor cannot be zero.\\n *\\n * _Available since v2.4.0._\\n */\\n function div(uint256 a, uint256 b, string memory errorMessage) internal pure returns (uint256) {\\n // Solidity only automatically asserts when dividing by 0\\n require(b > 0, errorMessage);\\n uint256 c = a / b;\\n // assert(a == b * c + a % b); // There is no case in which this doesn't hold\\n\\n return c;\\n }\\n\\n /**\\n * @dev Returns the remainder of dividing two unsigned integers. (unsigned integer modulo),\\n * Reverts when dividing by zero.\\n *\\n * Counterpart to Solidity's `%` operator. This function uses a `revert`\\n * opcode (which leaves remaining gas untouched) while Solidity uses an\\n * invalid opcode to revert (consuming all remaining gas).\\n *\\n * Requirements:\\n * - The divisor cannot be zero.\\n */\\n function mod(uint256 a, uint256 b) internal pure returns (uint256) {\\n return mod(a, b, \\\"SafeMath: modulo by zero\\\");\\n }\\n\\n /**\\n * @dev Returns the remainder of dividing two unsigned integers. (unsigned integer modulo),\\n * Reverts with custom message when dividing by zero.\\n *\\n * Counterpart to Solidity's `%` operator. This function uses a `revert`\\n * opcode (which leaves remaining gas untouched) while Solidity uses an\\n * invalid opcode to revert (consuming all remaining gas).\\n *\\n * Requirements:\\n * - The divisor cannot be zero.\\n *\\n * _Available since v2.4.0._\\n */\\n function mod(uint256 a, uint256 b, string memory errorMessage) internal pure returns (uint256) {\\n require(b != 0, errorMessage);\\n return a % b;\\n }\\n}\\n\",\"keccak256\":\"0x666b890992a066cc791f36c2975cd595d9761a014c654c385ed36ffaf658f3fd\",\"license\":\"MIT\"},\"contracts/Dependencies/console.sol\":{\"content\":\"// SPDX-License-Identifier: MIT\\n\\npragma solidity 0.6.11;\\n\\n// Buidler's helper contract for console logging\\nlibrary console {\\n\\taddress constant CONSOLE_ADDRESS = address(0x000000000000000000636F6e736F6c652e6c6f67);\\n\\n\\tfunction log() internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log()\\\"));\\n\\t\\tignored;\\n\\t}\\tfunction logInt(int p0) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(int)\\\", p0));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction logUint(uint p0) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(uint)\\\", p0));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction logString(string memory p0) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(string)\\\", p0));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction logBool(bool p0) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(bool)\\\", p0));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction logAddress(address p0) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(address)\\\", p0));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction logBytes(bytes memory p0) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(bytes)\\\", p0));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction logByte(byte p0) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(byte)\\\", p0));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction logBytes1(bytes1 p0) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(bytes1)\\\", p0));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction logBytes2(bytes2 p0) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(bytes2)\\\", p0));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction logBytes3(bytes3 p0) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(bytes3)\\\", p0));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction logBytes4(bytes4 p0) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(bytes4)\\\", p0));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction logBytes5(bytes5 p0) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(bytes5)\\\", p0));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction logBytes6(bytes6 p0) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(bytes6)\\\", p0));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction logBytes7(bytes7 p0) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(bytes7)\\\", p0));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction logBytes8(bytes8 p0) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(bytes8)\\\", p0));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction logBytes9(bytes9 p0) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(bytes9)\\\", p0));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction logBytes10(bytes10 p0) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(bytes10)\\\", p0));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction logBytes11(bytes11 p0) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(bytes11)\\\", p0));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction logBytes12(bytes12 p0) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(bytes12)\\\", p0));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction logBytes13(bytes13 p0) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(bytes13)\\\", p0));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction logBytes14(bytes14 p0) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(bytes14)\\\", p0));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction logBytes15(bytes15 p0) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(bytes15)\\\", p0));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction logBytes16(bytes16 p0) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(bytes16)\\\", p0));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction logBytes17(bytes17 p0) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(bytes17)\\\", p0));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction logBytes18(bytes18 p0) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(bytes18)\\\", p0));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction logBytes19(bytes19 p0) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(bytes19)\\\", p0));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction logBytes20(bytes20 p0) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(bytes20)\\\", p0));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction logBytes21(bytes21 p0) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(bytes21)\\\", p0));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction logBytes22(bytes22 p0) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(bytes22)\\\", p0));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction logBytes23(bytes23 p0) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(bytes23)\\\", p0));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction logBytes24(bytes24 p0) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(bytes24)\\\", p0));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction logBytes25(bytes25 p0) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(bytes25)\\\", p0));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction logBytes26(bytes26 p0) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(bytes26)\\\", p0));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction logBytes27(bytes27 p0) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(bytes27)\\\", p0));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction logBytes28(bytes28 p0) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(bytes28)\\\", p0));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction logBytes29(bytes29 p0) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(bytes29)\\\", p0));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction logBytes30(bytes30 p0) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(bytes30)\\\", p0));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction logBytes31(bytes31 p0) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(bytes31)\\\", p0));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction logBytes32(bytes32 p0) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(bytes32)\\\", p0));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(uint p0) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(uint)\\\", p0));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(string memory p0) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(string)\\\", p0));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(bool p0) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(bool)\\\", p0));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(address p0) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(address)\\\", p0));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(uint p0, uint p1) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(uint,uint)\\\", p0, p1));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(uint p0, string memory p1) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(uint,string)\\\", p0, p1));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(uint p0, bool p1) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(uint,bool)\\\", p0, p1));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(uint p0, address p1) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(uint,address)\\\", p0, p1));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(string memory p0, uint p1) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(string,uint)\\\", p0, p1));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(string memory p0, string memory p1) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(string,string)\\\", p0, p1));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(string memory p0, bool p1) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(string,bool)\\\", p0, p1));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(string memory p0, address p1) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(string,address)\\\", p0, p1));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(bool p0, uint p1) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(bool,uint)\\\", p0, p1));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(bool p0, string memory p1) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(bool,string)\\\", p0, p1));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(bool p0, bool p1) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(bool,bool)\\\", p0, p1));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(bool p0, address p1) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(bool,address)\\\", p0, p1));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(address p0, uint p1) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(address,uint)\\\", p0, p1));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(address p0, string memory p1) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(address,string)\\\", p0, p1));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(address p0, bool p1) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(address,bool)\\\", p0, p1));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(address p0, address p1) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(address,address)\\\", p0, p1));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(uint p0, uint p1, uint p2) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(uint,uint,uint)\\\", p0, p1, p2));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(uint p0, uint p1, string memory p2) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(uint,uint,string)\\\", p0, p1, p2));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(uint p0, uint p1, bool p2) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(uint,uint,bool)\\\", p0, p1, p2));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(uint p0, uint p1, address p2) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(uint,uint,address)\\\", p0, p1, p2));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(uint p0, string memory p1, uint p2) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(uint,string,uint)\\\", p0, p1, p2));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(uint p0, string memory p1, string memory p2) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(uint,string,string)\\\", p0, p1, p2));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(uint p0, string memory p1, bool p2) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(uint,string,bool)\\\", p0, p1, p2));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(uint p0, string memory p1, address p2) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(uint,string,address)\\\", p0, p1, p2));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(uint p0, bool p1, uint p2) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(uint,bool,uint)\\\", p0, p1, p2));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(uint p0, bool p1, string memory p2) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(uint,bool,string)\\\", p0, p1, p2));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(uint p0, bool p1, bool p2) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(uint,bool,bool)\\\", p0, p1, p2));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(uint p0, bool p1, address p2) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(uint,bool,address)\\\", p0, p1, p2));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(uint p0, address p1, uint p2) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(uint,address,uint)\\\", p0, p1, p2));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(uint p0, address p1, string memory p2) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(uint,address,string)\\\", p0, p1, p2));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(uint p0, address p1, bool p2) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(uint,address,bool)\\\", p0, p1, p2));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(uint p0, address p1, address p2) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(uint,address,address)\\\", p0, p1, p2));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(string memory p0, uint p1, uint p2) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(string,uint,uint)\\\", p0, p1, p2));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(string memory p0, uint p1, string memory p2) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(string,uint,string)\\\", p0, p1, p2));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(string memory p0, uint p1, bool p2) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(string,uint,bool)\\\", p0, p1, p2));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(string memory p0, uint p1, address p2) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(string,uint,address)\\\", p0, p1, p2));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(string memory p0, string memory p1, uint p2) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(string,string,uint)\\\", p0, p1, p2));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(string memory p0, string memory p1, string memory p2) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(string,string,string)\\\", p0, p1, p2));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(string memory p0, string memory p1, bool p2) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(string,string,bool)\\\", p0, p1, p2));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(string memory p0, string memory p1, address p2) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(string,string,address)\\\", p0, p1, p2));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(string memory p0, bool p1, uint p2) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(string,bool,uint)\\\", p0, p1, p2));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(string memory p0, bool p1, string memory p2) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(string,bool,string)\\\", p0, p1, p2));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(string memory p0, bool p1, bool p2) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(string,bool,bool)\\\", p0, p1, p2));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(string memory p0, bool p1, address p2) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(string,bool,address)\\\", p0, p1, p2));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(string memory p0, address p1, uint p2) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(string,address,uint)\\\", p0, p1, p2));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(string memory p0, address p1, string memory p2) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(string,address,string)\\\", p0, p1, p2));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(string memory p0, address p1, bool p2) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(string,address,bool)\\\", p0, p1, p2));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(string memory p0, address p1, address p2) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(string,address,address)\\\", p0, p1, p2));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(bool p0, uint p1, uint p2) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(bool,uint,uint)\\\", p0, p1, p2));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(bool p0, uint p1, string memory p2) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(bool,uint,string)\\\", p0, p1, p2));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(bool p0, uint p1, bool p2) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(bool,uint,bool)\\\", p0, p1, p2));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(bool p0, uint p1, address p2) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(bool,uint,address)\\\", p0, p1, p2));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(bool p0, string memory p1, uint p2) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(bool,string,uint)\\\", p0, p1, p2));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(bool p0, string memory p1, string memory p2) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(bool,string,string)\\\", p0, p1, p2));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(bool p0, string memory p1, bool p2) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(bool,string,bool)\\\", p0, p1, p2));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(bool p0, string memory p1, address p2) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(bool,string,address)\\\", p0, p1, p2));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(bool p0, bool p1, uint p2) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(bool,bool,uint)\\\", p0, p1, p2));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(bool p0, bool p1, string memory p2) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(bool,bool,string)\\\", p0, p1, p2));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(bool p0, bool p1, bool p2) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(bool,bool,bool)\\\", p0, p1, p2));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(bool p0, bool p1, address p2) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(bool,bool,address)\\\", p0, p1, p2));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(bool p0, address p1, uint p2) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(bool,address,uint)\\\", p0, p1, p2));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(bool p0, address p1, string memory p2) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(bool,address,string)\\\", p0, p1, p2));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(bool p0, address p1, bool p2) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(bool,address,bool)\\\", p0, p1, p2));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(bool p0, address p1, address p2) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(bool,address,address)\\\", p0, p1, p2));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(address p0, uint p1, uint p2) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(address,uint,uint)\\\", p0, p1, p2));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(address p0, uint p1, string memory p2) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(address,uint,string)\\\", p0, p1, p2));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(address p0, uint p1, bool p2) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(address,uint,bool)\\\", p0, p1, p2));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(address p0, uint p1, address p2) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(address,uint,address)\\\", p0, p1, p2));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(address p0, string memory p1, uint p2) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(address,string,uint)\\\", p0, p1, p2));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(address p0, string memory p1, string memory p2) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(address,string,string)\\\", p0, p1, p2));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(address p0, string memory p1, bool p2) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(address,string,bool)\\\", p0, p1, p2));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(address p0, string memory p1, address p2) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(address,string,address)\\\", p0, p1, p2));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(address p0, bool p1, uint p2) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(address,bool,uint)\\\", p0, p1, p2));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(address p0, bool p1, string memory p2) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(address,bool,string)\\\", p0, p1, p2));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(address p0, bool p1, bool p2) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(address,bool,bool)\\\", p0, p1, p2));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(address p0, bool p1, address p2) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(address,bool,address)\\\", p0, p1, p2));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(address p0, address p1, uint p2) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(address,address,uint)\\\", p0, p1, p2));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(address p0, address p1, string memory p2) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(address,address,string)\\\", p0, p1, p2));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(address p0, address p1, bool p2) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(address,address,bool)\\\", p0, p1, p2));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(address p0, address p1, address p2) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(address,address,address)\\\", p0, p1, p2));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(uint p0, uint p1, uint p2, uint p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(uint,uint,uint,uint)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(uint p0, uint p1, uint p2, string memory p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(uint,uint,uint,string)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(uint p0, uint p1, uint p2, bool p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(uint,uint,uint,bool)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(uint p0, uint p1, uint p2, address p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(uint,uint,uint,address)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(uint p0, uint p1, string memory p2, uint p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(uint,uint,string,uint)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(uint p0, uint p1, string memory p2, string memory p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(uint,uint,string,string)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(uint p0, uint p1, string memory p2, bool p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(uint,uint,string,bool)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(uint p0, uint p1, string memory p2, address p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(uint,uint,string,address)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(uint p0, uint p1, bool p2, uint p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(uint,uint,bool,uint)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(uint p0, uint p1, bool p2, string memory p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(uint,uint,bool,string)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(uint p0, uint p1, bool p2, bool p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(uint,uint,bool,bool)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(uint p0, uint p1, bool p2, address p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(uint,uint,bool,address)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(uint p0, uint p1, address p2, uint p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(uint,uint,address,uint)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(uint p0, uint p1, address p2, string memory p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(uint,uint,address,string)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(uint p0, uint p1, address p2, bool p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(uint,uint,address,bool)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(uint p0, uint p1, address p2, address p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(uint,uint,address,address)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(uint p0, string memory p1, uint p2, uint p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(uint,string,uint,uint)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(uint p0, string memory p1, uint p2, string memory p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(uint,string,uint,string)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(uint p0, string memory p1, uint p2, bool p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(uint,string,uint,bool)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(uint p0, string memory p1, uint p2, address p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(uint,string,uint,address)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(uint p0, string memory p1, string memory p2, uint p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(uint,string,string,uint)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(uint p0, string memory p1, string memory p2, string memory p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(uint,string,string,string)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(uint p0, string memory p1, string memory p2, bool p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(uint,string,string,bool)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(uint p0, string memory p1, string memory p2, address p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(uint,string,string,address)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(uint p0, string memory p1, bool p2, uint p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(uint,string,bool,uint)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(uint p0, string memory p1, bool p2, string memory p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(uint,string,bool,string)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(uint p0, string memory p1, bool p2, bool p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(uint,string,bool,bool)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(uint p0, string memory p1, bool p2, address p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(uint,string,bool,address)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(uint p0, string memory p1, address p2, uint p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(uint,string,address,uint)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(uint p0, string memory p1, address p2, string memory p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(uint,string,address,string)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(uint p0, string memory p1, address p2, bool p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(uint,string,address,bool)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(uint p0, string memory p1, address p2, address p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(uint,string,address,address)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(uint p0, bool p1, uint p2, uint p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(uint,bool,uint,uint)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(uint p0, bool p1, uint p2, string memory p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(uint,bool,uint,string)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(uint p0, bool p1, uint p2, bool p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(uint,bool,uint,bool)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(uint p0, bool p1, uint p2, address p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(uint,bool,uint,address)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(uint p0, bool p1, string memory p2, uint p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(uint,bool,string,uint)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(uint p0, bool p1, string memory p2, string memory p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(uint,bool,string,string)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(uint p0, bool p1, string memory p2, bool p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(uint,bool,string,bool)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(uint p0, bool p1, string memory p2, address p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(uint,bool,string,address)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(uint p0, bool p1, bool p2, uint p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(uint,bool,bool,uint)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(uint p0, bool p1, bool p2, string memory p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(uint,bool,bool,string)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(uint p0, bool p1, bool p2, bool p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(uint,bool,bool,bool)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(uint p0, bool p1, bool p2, address p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(uint,bool,bool,address)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(uint p0, bool p1, address p2, uint p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(uint,bool,address,uint)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(uint p0, bool p1, address p2, string memory p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(uint,bool,address,string)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(uint p0, bool p1, address p2, bool p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(uint,bool,address,bool)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(uint p0, bool p1, address p2, address p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(uint,bool,address,address)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(uint p0, address p1, uint p2, uint p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(uint,address,uint,uint)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(uint p0, address p1, uint p2, string memory p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(uint,address,uint,string)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(uint p0, address p1, uint p2, bool p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(uint,address,uint,bool)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(uint p0, address p1, uint p2, address p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(uint,address,uint,address)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(uint p0, address p1, string memory p2, uint p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(uint,address,string,uint)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(uint p0, address p1, string memory p2, string memory p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(uint,address,string,string)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(uint p0, address p1, string memory p2, bool p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(uint,address,string,bool)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(uint p0, address p1, string memory p2, address p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(uint,address,string,address)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(uint p0, address p1, bool p2, uint p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(uint,address,bool,uint)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(uint p0, address p1, bool p2, string memory p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(uint,address,bool,string)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(uint p0, address p1, bool p2, bool p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(uint,address,bool,bool)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(uint p0, address p1, bool p2, address p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(uint,address,bool,address)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(uint p0, address p1, address p2, uint p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(uint,address,address,uint)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(uint p0, address p1, address p2, string memory p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(uint,address,address,string)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(uint p0, address p1, address p2, bool p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(uint,address,address,bool)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(uint p0, address p1, address p2, address p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(uint,address,address,address)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(string memory p0, uint p1, uint p2, uint p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(string,uint,uint,uint)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(string memory p0, uint p1, uint p2, string memory p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(string,uint,uint,string)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(string memory p0, uint p1, uint p2, bool p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(string,uint,uint,bool)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(string memory p0, uint p1, uint p2, address p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(string,uint,uint,address)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(string memory p0, uint p1, string memory p2, uint p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(string,uint,string,uint)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(string memory p0, uint p1, string memory p2, string memory p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(string,uint,string,string)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(string memory p0, uint p1, string memory p2, bool p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(string,uint,string,bool)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(string memory p0, uint p1, string memory p2, address p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(string,uint,string,address)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(string memory p0, uint p1, bool p2, uint p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(string,uint,bool,uint)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(string memory p0, uint p1, bool p2, string memory p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(string,uint,bool,string)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(string memory p0, uint p1, bool p2, bool p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(string,uint,bool,bool)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(string memory p0, uint p1, bool p2, address p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(string,uint,bool,address)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(string memory p0, uint p1, address p2, uint p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(string,uint,address,uint)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(string memory p0, uint p1, address p2, string memory p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(string,uint,address,string)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(string memory p0, uint p1, address p2, bool p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(string,uint,address,bool)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(string memory p0, uint p1, address p2, address p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(string,uint,address,address)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(string memory p0, string memory p1, uint p2, uint p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(string,string,uint,uint)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(string memory p0, string memory p1, uint p2, string memory p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(string,string,uint,string)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(string memory p0, string memory p1, uint p2, bool p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(string,string,uint,bool)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(string memory p0, string memory p1, uint p2, address p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(string,string,uint,address)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(string memory p0, string memory p1, string memory p2, uint p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(string,string,string,uint)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(string memory p0, string memory p1, string memory p2, string memory p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(string,string,string,string)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(string memory p0, string memory p1, string memory p2, bool p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(string,string,string,bool)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(string memory p0, string memory p1, string memory p2, address p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(string,string,string,address)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(string memory p0, string memory p1, bool p2, uint p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(string,string,bool,uint)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(string memory p0, string memory p1, bool p2, string memory p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(string,string,bool,string)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(string memory p0, string memory p1, bool p2, bool p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(string,string,bool,bool)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(string memory p0, string memory p1, bool p2, address p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(string,string,bool,address)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(string memory p0, string memory p1, address p2, uint p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(string,string,address,uint)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(string memory p0, string memory p1, address p2, string memory p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(string,string,address,string)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(string memory p0, string memory p1, address p2, bool p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(string,string,address,bool)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(string memory p0, string memory p1, address p2, address p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(string,string,address,address)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(string memory p0, bool p1, uint p2, uint p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(string,bool,uint,uint)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(string memory p0, bool p1, uint p2, string memory p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(string,bool,uint,string)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(string memory p0, bool p1, uint p2, bool p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(string,bool,uint,bool)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(string memory p0, bool p1, uint p2, address p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(string,bool,uint,address)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(string memory p0, bool p1, string memory p2, uint p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(string,bool,string,uint)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(string memory p0, bool p1, string memory p2, string memory p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(string,bool,string,string)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(string memory p0, bool p1, string memory p2, bool p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(string,bool,string,bool)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(string memory p0, bool p1, string memory p2, address p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(string,bool,string,address)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(string memory p0, bool p1, bool p2, uint p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(string,bool,bool,uint)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(string memory p0, bool p1, bool p2, string memory p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(string,bool,bool,string)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(string memory p0, bool p1, bool p2, bool p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(string,bool,bool,bool)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(string memory p0, bool p1, bool p2, address p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(string,bool,bool,address)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(string memory p0, bool p1, address p2, uint p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(string,bool,address,uint)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(string memory p0, bool p1, address p2, string memory p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(string,bool,address,string)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(string memory p0, bool p1, address p2, bool p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(string,bool,address,bool)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(string memory p0, bool p1, address p2, address p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(string,bool,address,address)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(string memory p0, address p1, uint p2, uint p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(string,address,uint,uint)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(string memory p0, address p1, uint p2, string memory p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(string,address,uint,string)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(string memory p0, address p1, uint p2, bool p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(string,address,uint,bool)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(string memory p0, address p1, uint p2, address p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(string,address,uint,address)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(string memory p0, address p1, string memory p2, uint p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(string,address,string,uint)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(string memory p0, address p1, string memory p2, string memory p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(string,address,string,string)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(string memory p0, address p1, string memory p2, bool p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(string,address,string,bool)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(string memory p0, address p1, string memory p2, address p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(string,address,string,address)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(string memory p0, address p1, bool p2, uint p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(string,address,bool,uint)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(string memory p0, address p1, bool p2, string memory p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(string,address,bool,string)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(string memory p0, address p1, bool p2, bool p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(string,address,bool,bool)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(string memory p0, address p1, bool p2, address p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(string,address,bool,address)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(string memory p0, address p1, address p2, uint p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(string,address,address,uint)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(string memory p0, address p1, address p2, string memory p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(string,address,address,string)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(string memory p0, address p1, address p2, bool p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(string,address,address,bool)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(string memory p0, address p1, address p2, address p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(string,address,address,address)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(bool p0, uint p1, uint p2, uint p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(bool,uint,uint,uint)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(bool p0, uint p1, uint p2, string memory p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(bool,uint,uint,string)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(bool p0, uint p1, uint p2, bool p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(bool,uint,uint,bool)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(bool p0, uint p1, uint p2, address p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(bool,uint,uint,address)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(bool p0, uint p1, string memory p2, uint p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(bool,uint,string,uint)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(bool p0, uint p1, string memory p2, string memory p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(bool,uint,string,string)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(bool p0, uint p1, string memory p2, bool p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(bool,uint,string,bool)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(bool p0, uint p1, string memory p2, address p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(bool,uint,string,address)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(bool p0, uint p1, bool p2, uint p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(bool,uint,bool,uint)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(bool p0, uint p1, bool p2, string memory p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(bool,uint,bool,string)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(bool p0, uint p1, bool p2, bool p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(bool,uint,bool,bool)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(bool p0, uint p1, bool p2, address p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(bool,uint,bool,address)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(bool p0, uint p1, address p2, uint p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(bool,uint,address,uint)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(bool p0, uint p1, address p2, string memory p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(bool,uint,address,string)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(bool p0, uint p1, address p2, bool p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(bool,uint,address,bool)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(bool p0, uint p1, address p2, address p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(bool,uint,address,address)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(bool p0, string memory p1, uint p2, uint p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(bool,string,uint,uint)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(bool p0, string memory p1, uint p2, string memory p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(bool,string,uint,string)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(bool p0, string memory p1, uint p2, bool p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(bool,string,uint,bool)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(bool p0, string memory p1, uint p2, address p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(bool,string,uint,address)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(bool p0, string memory p1, string memory p2, uint p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(bool,string,string,uint)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(bool p0, string memory p1, string memory p2, string memory p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(bool,string,string,string)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(bool p0, string memory p1, string memory p2, bool p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(bool,string,string,bool)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(bool p0, string memory p1, string memory p2, address p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(bool,string,string,address)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(bool p0, string memory p1, bool p2, uint p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(bool,string,bool,uint)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(bool p0, string memory p1, bool p2, string memory p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(bool,string,bool,string)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(bool p0, string memory p1, bool p2, bool p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(bool,string,bool,bool)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(bool p0, string memory p1, bool p2, address p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(bool,string,bool,address)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(bool p0, string memory p1, address p2, uint p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(bool,string,address,uint)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(bool p0, string memory p1, address p2, string memory p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(bool,string,address,string)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(bool p0, string memory p1, address p2, bool p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(bool,string,address,bool)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(bool p0, string memory p1, address p2, address p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(bool,string,address,address)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(bool p0, bool p1, uint p2, uint p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(bool,bool,uint,uint)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(bool p0, bool p1, uint p2, string memory p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(bool,bool,uint,string)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(bool p0, bool p1, uint p2, bool p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(bool,bool,uint,bool)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(bool p0, bool p1, uint p2, address p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(bool,bool,uint,address)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(bool p0, bool p1, string memory p2, uint p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(bool,bool,string,uint)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(bool p0, bool p1, string memory p2, string memory p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(bool,bool,string,string)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(bool p0, bool p1, string memory p2, bool p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(bool,bool,string,bool)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(bool p0, bool p1, string memory p2, address p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(bool,bool,string,address)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(bool p0, bool p1, bool p2, uint p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(bool,bool,bool,uint)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(bool p0, bool p1, bool p2, string memory p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(bool,bool,bool,string)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(bool p0, bool p1, bool p2, bool p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(bool,bool,bool,bool)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(bool p0, bool p1, bool p2, address p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(bool,bool,bool,address)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(bool p0, bool p1, address p2, uint p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(bool,bool,address,uint)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(bool p0, bool p1, address p2, string memory p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(bool,bool,address,string)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(bool p0, bool p1, address p2, bool p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(bool,bool,address,bool)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(bool p0, bool p1, address p2, address p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(bool,bool,address,address)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(bool p0, address p1, uint p2, uint p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(bool,address,uint,uint)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(bool p0, address p1, uint p2, string memory p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(bool,address,uint,string)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(bool p0, address p1, uint p2, bool p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(bool,address,uint,bool)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(bool p0, address p1, uint p2, address p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(bool,address,uint,address)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(bool p0, address p1, string memory p2, uint p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(bool,address,string,uint)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(bool p0, address p1, string memory p2, string memory p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(bool,address,string,string)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(bool p0, address p1, string memory p2, bool p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(bool,address,string,bool)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(bool p0, address p1, string memory p2, address p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(bool,address,string,address)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(bool p0, address p1, bool p2, uint p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(bool,address,bool,uint)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(bool p0, address p1, bool p2, string memory p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(bool,address,bool,string)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(bool p0, address p1, bool p2, bool p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(bool,address,bool,bool)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(bool p0, address p1, bool p2, address p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(bool,address,bool,address)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(bool p0, address p1, address p2, uint p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(bool,address,address,uint)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(bool p0, address p1, address p2, string memory p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(bool,address,address,string)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(bool p0, address p1, address p2, bool p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(bool,address,address,bool)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(bool p0, address p1, address p2, address p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(bool,address,address,address)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(address p0, uint p1, uint p2, uint p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(address,uint,uint,uint)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(address p0, uint p1, uint p2, string memory p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(address,uint,uint,string)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(address p0, uint p1, uint p2, bool p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(address,uint,uint,bool)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(address p0, uint p1, uint p2, address p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(address,uint,uint,address)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(address p0, uint p1, string memory p2, uint p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(address,uint,string,uint)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(address p0, uint p1, string memory p2, string memory p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(address,uint,string,string)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(address p0, uint p1, string memory p2, bool p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(address,uint,string,bool)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(address p0, uint p1, string memory p2, address p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(address,uint,string,address)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(address p0, uint p1, bool p2, uint p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(address,uint,bool,uint)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(address p0, uint p1, bool p2, string memory p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(address,uint,bool,string)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(address p0, uint p1, bool p2, bool p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(address,uint,bool,bool)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(address p0, uint p1, bool p2, address p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(address,uint,bool,address)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(address p0, uint p1, address p2, uint p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(address,uint,address,uint)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(address p0, uint p1, address p2, string memory p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(address,uint,address,string)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(address p0, uint p1, address p2, bool p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(address,uint,address,bool)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(address p0, uint p1, address p2, address p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(address,uint,address,address)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(address p0, string memory p1, uint p2, uint p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(address,string,uint,uint)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(address p0, string memory p1, uint p2, string memory p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(address,string,uint,string)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(address p0, string memory p1, uint p2, bool p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(address,string,uint,bool)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(address p0, string memory p1, uint p2, address p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(address,string,uint,address)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(address p0, string memory p1, string memory p2, uint p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(address,string,string,uint)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(address p0, string memory p1, string memory p2, string memory p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(address,string,string,string)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(address p0, string memory p1, string memory p2, bool p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(address,string,string,bool)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(address p0, string memory p1, string memory p2, address p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(address,string,string,address)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(address p0, string memory p1, bool p2, uint p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(address,string,bool,uint)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(address p0, string memory p1, bool p2, string memory p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(address,string,bool,string)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(address p0, string memory p1, bool p2, bool p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(address,string,bool,bool)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(address p0, string memory p1, bool p2, address p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(address,string,bool,address)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(address p0, string memory p1, address p2, uint p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(address,string,address,uint)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(address p0, string memory p1, address p2, string memory p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(address,string,address,string)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(address p0, string memory p1, address p2, bool p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(address,string,address,bool)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(address p0, string memory p1, address p2, address p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(address,string,address,address)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(address p0, bool p1, uint p2, uint p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(address,bool,uint,uint)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(address p0, bool p1, uint p2, string memory p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(address,bool,uint,string)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(address p0, bool p1, uint p2, bool p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(address,bool,uint,bool)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(address p0, bool p1, uint p2, address p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(address,bool,uint,address)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(address p0, bool p1, string memory p2, uint p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(address,bool,string,uint)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(address p0, bool p1, string memory p2, string memory p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(address,bool,string,string)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(address p0, bool p1, string memory p2, bool p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(address,bool,string,bool)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(address p0, bool p1, string memory p2, address p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(address,bool,string,address)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(address p0, bool p1, bool p2, uint p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(address,bool,bool,uint)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(address p0, bool p1, bool p2, string memory p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(address,bool,bool,string)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(address p0, bool p1, bool p2, bool p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(address,bool,bool,bool)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(address p0, bool p1, bool p2, address p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(address,bool,bool,address)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(address p0, bool p1, address p2, uint p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(address,bool,address,uint)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(address p0, bool p1, address p2, string memory p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(address,bool,address,string)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(address p0, bool p1, address p2, bool p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(address,bool,address,bool)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(address p0, bool p1, address p2, address p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(address,bool,address,address)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(address p0, address p1, uint p2, uint p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(address,address,uint,uint)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(address p0, address p1, uint p2, string memory p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(address,address,uint,string)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(address p0, address p1, uint p2, bool p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(address,address,uint,bool)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(address p0, address p1, uint p2, address p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(address,address,uint,address)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(address p0, address p1, string memory p2, uint p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(address,address,string,uint)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(address p0, address p1, string memory p2, string memory p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(address,address,string,string)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(address p0, address p1, string memory p2, bool p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(address,address,string,bool)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(address p0, address p1, string memory p2, address p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(address,address,string,address)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(address p0, address p1, bool p2, uint p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(address,address,bool,uint)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(address p0, address p1, bool p2, string memory p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(address,address,bool,string)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(address p0, address p1, bool p2, bool p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(address,address,bool,bool)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(address p0, address p1, bool p2, address p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(address,address,bool,address)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(address p0, address p1, address p2, uint p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(address,address,address,uint)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(address p0, address p1, address p2, string memory p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(address,address,address,string)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(address p0, address p1, address p2, bool p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(address,address,address,bool)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(address p0, address p1, address p2, address p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(address,address,address,address)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n}\\n\",\"keccak256\":\"0x6fa1de4ffe22b8f58b0b64d65db11dd5037be9b9db47b365a72adb489e217000\",\"license\":\"MIT\"},\"contracts/Interfaces/IActivePool.sol\":{\"content\":\"// SPDX-License-Identifier: MIT\\n\\npragma solidity 0.6.11;\\n\\nimport \\\"./IPool.sol\\\";\\n\\n/**\\n * The Active Pool holds the ETH collateral and ZUSD debt (but not ZUSD tokens) for all active troves.\\n *\\n * When a trove is liquidated, it's ETH and ZUSD debt are transferred from the Active Pool, to either the\\n * Stability Pool, the Default Pool, or both, depending on the liquidation conditions.\\n *\\n */\\ninterface IActivePool is IPool {\\n // --- Events ---\\n event BorrowerOperationsAddressChanged(address _newBorrowerOperationsAddress);\\n event TroveManagerAddressChanged(address _newTroveManagerAddress);\\n event ActivePoolZUSDDebtUpdated(uint _ZUSDDebt);\\n event ActivePoolETHBalanceUpdated(uint _ETH);\\n\\n // --- Functions ---\\n\\n /// @notice Send ETH amount to given account. Updates ActivePool balance. Only callable by BorrowerOperations, TroveManager or StabilityPool.\\n /// @param _account account to receive the ETH amount\\n /// @param _amount ETH amount to send\\n function sendETH(address _account, uint _amount) external;\\n}\\n\",\"keccak256\":\"0xdd5f1b6fae4050b4c885a85a10c2d0e73b82187a51736d009065aaeea33bf0d0\",\"license\":\"MIT\"},\"contracts/Interfaces/IAllowanceTransfer.sol\":{\"content\":\"// SPDX-License-Identifier: MIT\\npragma solidity 0.6.11;\\npragma experimental ABIEncoderV2;\\n\\nimport {IEIP712} from \\\"./IEIP712.sol\\\";\\n\\n/// @title AllowanceTransfer\\n/// @notice Handles ERC20 token permissions through signature based allowance setting and ERC20 token transfers by checking allowed amounts\\n/// @dev Requires user's token approval on the Permit2 contract\\ninterface IAllowanceTransfer is IEIP712 {\\n /// @notice Emits an event when the owner successfully invalidates an ordered nonce.\\n event NonceInvalidation(\\n address indexed owner, address indexed token, address indexed spender, uint48 newNonce, uint48 oldNonce\\n );\\n\\n /// @notice Emits an event when the owner successfully sets permissions on a token for the spender.\\n event Approval(\\n address indexed owner, address indexed token, address indexed spender, uint160 amount, uint48 expiration\\n );\\n\\n /// @notice Emits an event when the owner successfully sets permissions using a permit signature on a token for the spender.\\n event Permit(\\n address indexed owner,\\n address indexed token,\\n address indexed spender,\\n uint160 amount,\\n uint48 expiration,\\n uint48 nonce\\n );\\n\\n /// @notice Emits an event when the owner sets the allowance back to 0 with the lockdown function.\\n event Lockdown(address indexed owner, address token, address spender);\\n\\n /// @notice The permit data for a token\\n struct PermitDetails {\\n // ERC20 token address\\n address token;\\n // the maximum amount allowed to spend\\n uint160 amount;\\n // timestamp at which a spender's token allowances become invalid\\n uint48 expiration;\\n // an incrementing value indexed per owner,token,and spender for each signature\\n uint48 nonce;\\n }\\n\\n /// @notice The permit message signed for a single token allowance\\n struct PermitSingle {\\n // the permit data for a single token alownce\\n PermitDetails details;\\n // address permissioned on the allowed tokens\\n address spender;\\n // deadline on the permit signature\\n uint256 sigDeadline;\\n }\\n\\n /// @notice The permit message signed for multiple token allowances\\n struct PermitBatch {\\n // the permit data for multiple token allowances\\n PermitDetails[] details;\\n // address permissioned on the allowed tokens\\n address spender;\\n // deadline on the permit signature\\n uint256 sigDeadline;\\n }\\n\\n /// @notice The saved permissions\\n /// @dev This info is saved per owner, per token, per spender and all signed over in the permit message\\n /// @dev Setting amount to type(uint160).max sets an unlimited approval\\n struct PackedAllowance {\\n // amount allowed\\n uint160 amount;\\n // permission expiry\\n uint48 expiration;\\n // an incrementing value indexed per owner,token,and spender for each signature\\n uint48 nonce;\\n }\\n\\n /// @notice A token spender pair.\\n struct TokenSpenderPair {\\n // the token the spender is approved\\n address token;\\n // the spender address\\n address spender;\\n }\\n\\n /// @notice Details for a token transfer.\\n struct AllowanceTransferDetails {\\n // the owner of the token\\n address from;\\n // the recipient of the token\\n address to;\\n // the amount of the token\\n uint160 amount;\\n // the token to be transferred\\n address token;\\n }\\n\\n /// @notice A mapping from owner address to token address to spender address to PackedAllowance struct, which contains details and conditions of the approval.\\n /// @notice The mapping is indexed in the above order see: allowance[ownerAddress][tokenAddress][spenderAddress]\\n /// @dev The packed slot holds the allowed amount, expiration at which the allowed amount is no longer valid, and current nonce thats updated on any signature based approvals.\\n function allowance(address user, address token, address spender)\\n external\\n view\\n returns (uint160 amount, uint48 expiration, uint48 nonce);\\n\\n /// @notice Approves the spender to use up to amount of the specified token up until the expiration\\n /// @param token The token to approve\\n /// @param spender The spender address to approve\\n /// @param amount The approved amount of the token\\n /// @param expiration The timestamp at which the approval is no longer valid\\n /// @dev The packed allowance also holds a nonce, which will stay unchanged in approve\\n /// @dev Setting amount to type(uint160).max sets an unlimited approval\\n function approve(address token, address spender, uint160 amount, uint48 expiration) external;\\n\\n /// @notice Permit a spender to a given amount of the owners token via the owner's EIP-712 signature\\n /// @dev May fail if the owner's nonce was invalidated in-flight by invalidateNonce\\n /// @param owner The owner of the tokens being approved\\n /// @param permitSingle Data signed over by the owner specifying the terms of approval\\n /// @param signature The owner's signature over the permit data\\n function permit(address owner, PermitSingle memory permitSingle, bytes calldata signature) external;\\n\\n /// @notice Permit a spender to the signed amounts of the owners tokens via the owner's EIP-712 signature\\n /// @dev May fail if the owner's nonce was invalidated in-flight by invalidateNonce\\n /// @param owner The owner of the tokens being approved\\n /// @param permitBatch Data signed over by the owner specifying the terms of approval\\n /// @param signature The owner's signature over the permit data\\n function permit(address owner, PermitBatch memory permitBatch, bytes calldata signature) external;\\n\\n /// @notice Transfer approved tokens from one address to another\\n /// @param from The address to transfer from\\n /// @param to The address of the recipient\\n /// @param amount The amount of the token to transfer\\n /// @param token The token address to transfer\\n /// @dev Requires the from address to have approved at least the desired amount\\n /// of tokens to msg.sender.\\n function transferFrom(address from, address to, uint160 amount, address token) external;\\n\\n /// @notice Transfer approved tokens in a batch\\n /// @param transferDetails Array of owners, recipients, amounts, and tokens for the transfers\\n /// @dev Requires the from addresses to have approved at least the desired amount\\n /// of tokens to msg.sender.\\n function transferFrom(AllowanceTransferDetails[] calldata transferDetails) external;\\n\\n /// @notice Enables performing a \\\"lockdown\\\" of the sender's Permit2 identity\\n /// by batch revoking approvals\\n /// @param approvals Array of approvals to revoke.\\n function lockdown(TokenSpenderPair[] calldata approvals) external;\\n\\n /// @notice Invalidate nonces for a given (token, spender) pair\\n /// @param token The token to invalidate nonces for\\n /// @param spender The spender to invalidate nonces for\\n /// @param newNonce The new nonce to set. Invalidates all nonces less than it.\\n /// @dev Can't invalidate more than 2**16 nonces per transaction.\\n function invalidateNonces(address token, address spender, uint48 newNonce) external;\\n}\\n\",\"keccak256\":\"0xf15059fb68f89542908f963f22e18c0b0ae9997a6f9aaf6a9fb46aa2424acac9\",\"license\":\"MIT\"},\"contracts/Interfaces/IBorrowerOperations.sol\":{\"content\":\"// SPDX-License-Identifier: MIT\\n\\npragma solidity 0.6.11;\\npragma experimental ABIEncoderV2;\\n\\nimport \\\"../Dependencies/Mynt/IMassetManager.sol\\\";\\nimport { IPermit2, ISignatureTransfer } from \\\"./IPermit2.sol\\\";\\n\\n/// Common interface for the Trove Manager.\\ninterface IBorrowerOperations {\\n // --- Events ---\\n\\n event FeeDistributorAddressChanged(address _feeDistributorAddress);\\n event TroveManagerAddressChanged(address _newTroveManagerAddress);\\n event ActivePoolAddressChanged(address _activePoolAddress);\\n event DefaultPoolAddressChanged(address _defaultPoolAddress);\\n event StabilityPoolAddressChanged(address _stabilityPoolAddress);\\n event GasPoolAddressChanged(address _gasPoolAddress);\\n event CollSurplusPoolAddressChanged(address _collSurplusPoolAddress);\\n event PriceFeedAddressChanged(address _newPriceFeedAddress);\\n event SortedTrovesAddressChanged(address _sortedTrovesAddress);\\n event ZUSDTokenAddressChanged(address _zusdTokenAddress);\\n event ZEROStakingAddressChanged(address _zeroStakingAddress);\\n\\n event TroveCreated(address indexed _borrower, uint256 arrayIndex);\\n event TroveUpdated(\\n address indexed _borrower,\\n uint256 _debt,\\n uint256 _coll,\\n uint256 stake,\\n uint8 operation\\n );\\n event ZUSDBorrowingFeePaid(address indexed _borrower, uint256 _ZUSDFee);\\n\\n // --- Functions ---\\n\\n /**\\n * @notice Called only once on init, to set addresses of other Zero contracts. Callable only by owner\\n * @dev initializer function, checks addresses are contracts\\n * @param _feeDistributorAddress feeDistributor contract address\\n * @param _liquityBaseParamsAddress LiquidityBaseParams contract address\\n * @param _troveManagerAddress TroveManager contract address\\n * @param _activePoolAddress ActivePool contract address\\n * @param _defaultPoolAddress DefaultPool contract address\\n * @param _stabilityPoolAddress StabilityPool contract address\\n * @param _gasPoolAddress GasPool contract address\\n * @param _collSurplusPoolAddress CollSurplusPool contract address\\n * @param _priceFeedAddress PrideFeed contract address\\n * @param _sortedTrovesAddress SortedTroves contract address\\n * @param _zusdTokenAddress ZUSDToken contract address\\n * @param _zeroStakingAddress ZEROStaking contract address\\n */\\n function setAddresses(\\n address _feeDistributorAddress,\\n address _liquityBaseParamsAddress,\\n address _troveManagerAddress,\\n address _activePoolAddress,\\n address _defaultPoolAddress,\\n address _stabilityPoolAddress,\\n address _gasPoolAddress,\\n address _collSurplusPoolAddress,\\n address _priceFeedAddress,\\n address _sortedTrovesAddress,\\n address _zusdTokenAddress,\\n address _zeroStakingAddress\\n ) external;\\n\\n /**\\n * @notice payable function that creates a Trove for the caller with the requested debt, and the Ether received as collateral.\\n * Successful execution is conditional mainly on the resulting collateralization ratio which must exceed the minimum (110% in Normal Mode, 150% in Recovery Mode).\\n * In addition to the requested debt, extra debt is issued to pay the issuance fee, and cover the gas compensation.\\n * The borrower has to provide a `_maxFeePercentage` that he/she is willing to accept in case of a fee slippage, i.e. when a redemption transaction is processed first, driving up the issuance fee.\\n * @param _maxFee max fee percentage to acept in case of a fee slippage\\n * @param _ZUSDAmount ZUSD requested debt\\n * @param _upperHint upper trove id hint\\n * @param _lowerHint lower trove id hint\\n */\\n function openTrove(\\n uint256 _maxFee,\\n uint256 _ZUSDAmount,\\n address _upperHint,\\n address _lowerHint\\n ) external payable;\\n\\n /**\\n * @notice payable function that creates a Trove for the caller with the requested debt, and the Ether received as collateral.\\n * Successful execution is conditional mainly on the resulting collateralization ratio which must exceed the minimum (110% in Normal Mode, 150% in Recovery Mode).\\n * In addition to the requested debt, extra debt is issued to pay the issuance fee, and cover the gas compensation.\\n * The borrower has to provide a `_maxFeePercentage` that he/she is willing to accept in case of a fee slippage, i.e. when a redemption transaction is processed first, driving up the issuance fee.\\n * This method is identical to `openTrove()`, but operates on NUE tokens instead of ZUSD.\\n * @param _maxFee max fee percentage to acept in case of a fee slippage\\n * @param _ZUSDAmount ZUSD requested debt\\n * @param _upperHint upper trove id hint\\n * @param _lowerHint lower trove id hint\\n */\\n function openNueTrove(\\n uint256 _maxFee,\\n uint256 _ZUSDAmount,\\n address _upperHint,\\n address _lowerHint\\n ) external payable;\\n\\n /// @notice payable function that adds the received Ether to the caller's active Trove.\\n /// @param _upperHint upper trove id hint\\n /// @param _lowerHint lower trove id hint\\n function addColl(address _upperHint, address _lowerHint) external payable;\\n\\n /// @notice send ETH as collateral to a trove. Called by only the Stability Pool.\\n /// @param _user user trove address\\n /// @param _upperHint upper trove id hint\\n /// @param _lowerHint lower trove id hint\\n function moveETHGainToTrove(\\n address _user,\\n address _upperHint,\\n address _lowerHint\\n ) external payable;\\n\\n /**\\n * @notice withdraws `_amount` of collateral from the caller\\u2019s Trove.\\n * Executes only if the user has an active Trove, the withdrawal would not pull the user\\u2019s Trove below the minimum collateralization ratio,\\n * and the resulting total collateralization ratio of the system is above 150%.\\n * @param _amount collateral amount to withdraw\\n * @param _upperHint upper trove id hint\\n * @param _lowerHint lower trove id hint\\n */\\n function withdrawColl(uint256 _amount, address _upperHint, address _lowerHint) external;\\n\\n /**\\n * @notice issues `_amount` of ZUSD from the caller\\u2019s Trove to the caller.\\n * Executes only if the Trove's collateralization ratio would remain above the minimum, and the resulting total collateralization ratio is above 150%.\\n * The borrower has to provide a `_maxFeePercentage` that he/she is willing to accept in case of a fee slippage, i.e. when a redemption transaction is processed first, driving up the issuance fee.\\n * @param _maxFee max fee percentage to acept in case of a fee slippage\\n * @param _amount ZUSD amount to withdraw\\n * @param _upperHint upper trove id hint\\n * @param _lowerHint lower trove id hint\\n */\\n function withdrawZUSD(\\n uint256 _maxFee,\\n uint256 _amount,\\n address _upperHint,\\n address _lowerHint\\n ) external;\\n\\n /// Borrow (withdraw) ZUSD tokens from a trove: mint new ZUSD tokens to the owner and convert it to DLLR in one transaction\\n function withdrawZusdAndConvertToDLLR(\\n uint256 _maxFeePercentage,\\n uint256 _ZUSDAmount,\\n address _upperHint,\\n address _lowerHint\\n ) external returns (uint256);\\n\\n /// @notice repay `_amount` of ZUSD to the caller\\u2019s Trove, subject to leaving 50 debt in the Trove (which corresponds to the 50 ZUSD gas compensation).\\n /// @param _amount ZUSD amount to repay\\n /// @param _upperHint upper trove id hint\\n /// @param _lowerHint lower trove id hint\\n function repayZUSD(uint256 _amount, address _upperHint, address _lowerHint) external;\\n\\n /// Repay ZUSD tokens to a Trove: Burn the repaid ZUSD tokens, and reduce the trove's debt accordingly\\n function repayZusdFromDLLR(\\n uint256 _dllrAmount,\\n address _upperHint,\\n address _lowerHint,\\n IMassetManager.PermitParams calldata _permitParams\\n ) external;\\n\\n /// Repay ZUSD tokens to a Trove: Burn the repaid ZUSD tokens, and reduce the trove's debt accordingly\\n function repayZusdFromDLLRWithPermit2(\\n uint256 _dllrAmount,\\n address _upperHint,\\n address _lowerHint,\\n ISignatureTransfer.PermitTransferFrom memory _permit,\\n bytes calldata _signature\\n ) external;\\n\\n /**\\n * @notice allows a borrower to repay all debt, withdraw all their collateral, and close their Trove.\\n * Requires the borrower have a ZUSD balance sufficient to repay their trove's debt, excluding gas compensation - i.e. `(debt - 50)` ZUSD.\\n */\\n function closeTrove() external;\\n\\n /**\\n * @notice allows a borrower to repay all debt, withdraw all their collateral, and close their Trove.\\n * Requires the borrower have a NUE balance sufficient to repay their trove's debt, excluding gas compensation - i.e. `(debt - 50)` NUE.\\n * This method is identical to `closeTrove()`, but operates on NUE tokens instead of ZUSD.\\n */\\n function closeNueTrove(IMassetManager.PermitParams calldata _permitParams) external;\\n\\n /**\\n * @notice allows a borrower to repay all debt, withdraw all their collateral, and close their Trove.\\n * Requires the borrower have a NUE balance sufficient to repay their trove's debt, excluding gas compensation - i.e. `(debt - 50)` NUE.\\n * This method is identical to `closeTrove()`, but operates on NUE tokens instead of ZUSD.\\n */\\n function closeNueTroveWithPermit2(ISignatureTransfer.PermitTransferFrom memory _permit, bytes calldata _signature) external;\\n\\n /**\\n * @notice enables a borrower to simultaneously change both their collateral and debt, subject to all the restrictions that apply to individual increases/decreases of each quantity with the following particularity:\\n * if the adjustment reduces the collateralization ratio of the Trove, the function only executes if the resulting total collateralization ratio is above 150%.\\n * The borrower has to provide a `_maxFeePercentage` that he/she is willing to accept in case of a fee slippage, i.e. when a redemption transaction is processed first, driving up the issuance fee.\\n * The parameter is ignored if the debt is not increased with the transaction.\\n * @param _maxFee max fee percentage to acept in case of a fee slippage\\n * @param _collWithdrawal collateral amount to withdraw\\n * @param _debtChange ZUSD amount to change\\n * @param isDebtIncrease indicates if increases debt\\n * @param _upperHint upper trove id hint\\n * @param _lowerHint lower trove id hint\\n */\\n function adjustTrove(\\n uint256 _maxFee,\\n uint256 _collWithdrawal,\\n uint256 _debtChange,\\n bool isDebtIncrease,\\n address _upperHint,\\n address _lowerHint\\n ) external payable;\\n\\n /**\\n * @notice enables a borrower to simultaneously change both their collateral and debt, subject to all the restrictions that apply to individual increases/decreases of each quantity with the following particularity:\\n * if the adjustment reduces the collateralization ratio of the Trove, the function only executes if the resulting total collateralization ratio is above 150%.\\n * The borrower has to provide a `_maxFeePercentage` that he/she is willing to accept in case of a fee slippage, i.e. when a redemption transaction is processed first, driving up the issuance fee.\\n * The parameter is ignored if the debt is not increased with the transaction.\\n * This method is identical to `adjustTrove()`, but operates on NUE tokens instead of ZUSD.\\n * @param _maxFee max fee percentage to acept in case of a fee slippage\\n * @param _collWithdrawal collateral amount to withdraw\\n * @param _debtChange ZUSD amount to change\\n * @param isDebtIncrease indicates if increases debt\\n * @param _upperHint upper trove id hint\\n * @param _lowerHint lower trove id hint\\n */\\n function adjustNueTrove(\\n uint256 _maxFee,\\n uint256 _collWithdrawal,\\n uint256 _debtChange,\\n bool isDebtIncrease,\\n address _upperHint,\\n address _lowerHint,\\n IMassetManager.PermitParams calldata _permitParams\\n ) external payable;\\n\\n /**\\n * @notice enables a borrower to simultaneously change both their collateral and debt, subject to all the restrictions that apply to individual increases/decreases of each quantity with the following particularity:\\n * if the adjustment reduces the collateralization ratio of the Trove, the function only executes if the resulting total collateralization ratio is above 150%.\\n * The borrower has to provide a `_maxFeePercentage` that he/she is willing to accept in case of a fee slippage, i.e. when a redemption transaction is processed first, driving up the issuance fee.\\n * The parameter is ignored if the debt is not increased with the transaction.\\n * This method is identical to `adjustTrove()`, but operates on NUE tokens instead of ZUSD.\\n * @param _maxFee max fee percentage to acept in case of a fee slippage\\n * @param _collWithdrawal collateral amount to withdraw\\n * @param _debtChange ZUSD amount to change\\n * @param isDebtIncrease indicates if increases debt\\n * @param _upperHint upper trove id hint\\n * @param _lowerHint lower trove id hint\\n */\\n function adjustNueTroveWithPermit2(\\n uint256 _maxFee,\\n uint256 _collWithdrawal,\\n uint256 _debtChange,\\n bool isDebtIncrease,\\n address _upperHint,\\n address _lowerHint,\\n ISignatureTransfer.PermitTransferFrom memory _permit,\\n bytes calldata _signature\\n ) external payable;\\n\\n /**\\n * @notice when a borrower\\u2019s Trove has been fully redeemed from and closed, or liquidated in Recovery Mode with a collateralization ratio above 110%,\\n * this function allows the borrower to claim their ETH collateral surplus that remains in the system (collateral - debt upon redemption; collateral - 110% of the debt upon liquidation).\\n */\\n function claimCollateral() external;\\n\\n function getCompositeDebt(uint256 _debt) external view returns (uint256);\\n\\n function BORROWING_FEE_FLOOR() external view returns (uint256);\\n\\n function getMassetManager() external view returns (IMassetManager);\\n}\\n\",\"keccak256\":\"0x75da117f4bc4cca15fc16ca0466c68894f1befed0471ea7a670fa9b466ef2bc5\",\"license\":\"MIT\"},\"contracts/Interfaces/ICollSurplusPool.sol\":{\"content\":\"// SPDX-License-Identifier: MIT\\n\\npragma solidity 0.6.11;\\n\\ninterface ICollSurplusPool {\\n // --- Events ---\\n\\n event BorrowerOperationsAddressChanged(address _newBorrowerOperationsAddress);\\n event TroveManagerAddressChanged(address _newTroveManagerAddress);\\n event ActivePoolAddressChanged(address _newActivePoolAddress);\\n\\n event CollBalanceUpdated(address indexed _account, uint256 _newBalance);\\n event EtherSent(address _to, uint256 _amount);\\n\\n // --- Contract setters ---\\n\\n /**\\n * @notice Called only once on init, to set addresses of other Zero contracts. Callable only by owner\\n * @dev initializer function, checks addresses are contracts\\n * @param _borrowerOperationsAddress BorrowerOperations contract address\\n * @param _troveManagerAddress TroveManager contract address\\n * @param _activePoolAddress ActivePool contract address\\n */\\n function setAddresses(\\n address _borrowerOperationsAddress,\\n address _troveManagerAddress,\\n address _activePoolAddress\\n ) external;\\n\\n /// @notice Not necessarily equal to the raw ether balance - ether can be forcibly sent to contracts.\\n /// @return ETH state variable\\n function getETH() external view returns (uint256);\\n\\n /// @param _account account to retrieve collateral\\n /// @return collateral\\n function getCollateral(address _account) external view returns (uint256);\\n\\n /// @notice adds amount to current account balance. Only callable by TroveManager.\\n /// @param _account account to add amount\\n /// @param _amount amount to add\\n function accountSurplus(address _account, uint256 _amount) external;\\n\\n /// @notice claims collateral for given account. Only callable by BorrowerOperations.\\n /// @param _account account to send claimable collateral\\n function claimColl(address _account) external;\\n\\n /// @notice Two-leg claim: `_feeAmount` to `_feeReceiver`, remainder to `_account`.\\n /// Only callable by BorrowerOperations (the ColFee surplus-claim hook).\\n /// The fee leg is fail-open: if the fee transfer fails, `_account`\\n /// receives the full claimable balance.\\n /// @param _account account whose claimable collateral is paid out\\n /// @param _feeReceiver ColFee fee destination for the fee leg\\n /// @param _feeAmount fee in wei; must not exceed the account's claimable balance\\n /// @return feePaid true iff the fee transfer succeeded (caller emits the matching event)\\n function claimCollWithFee(\\n address _account,\\n address _feeReceiver,\\n uint256 _feeAmount\\n ) external returns (bool feePaid);\\n}\\n\",\"keccak256\":\"0x586351a918f0a702089c357b0e0784f5af5f5873c12923cf74782983963f6846\",\"license\":\"MIT\"},\"contracts/Interfaces/IDefaultPool.sol\":{\"content\":\"// SPDX-License-Identifier: MIT\\n\\npragma solidity 0.6.11;\\n\\nimport \\\"./IPool.sol\\\";\\n\\ninterface IDefaultPool is IPool {\\n // --- Events ---\\n event TroveManagerAddressChanged(address _newTroveManagerAddress);\\n event DefaultPoolZUSDDebtUpdated(uint256 _ZUSDDebt);\\n event DefaultPoolETHBalanceUpdated(uint256 _ETH);\\n\\n // --- Functions ---\\n\\n /// @notice Send ETH to Active Pool\\n /// @param _amount ETH to send\\n function sendETHToActivePool(uint256 _amount) external;\\n}\\n\",\"keccak256\":\"0xfb2607676b2eb0f2defd248b4dd32895820048317f29aa6bdb572403a3e3d44e\",\"license\":\"MIT\"},\"contracts/Interfaces/IEIP712.sol\":{\"content\":\"// SPDX-License-Identifier: MIT\\npragma solidity 0.6.11;\\n\\ninterface IEIP712 {\\n function DOMAIN_SEPARATOR() external view returns (bytes32);\\n}\\n\",\"keccak256\":\"0xff52e9168eaa532ebacdad2ab6197f60171e3aa2fa2c1d6397d9da4d7782a543\",\"license\":\"MIT\"},\"contracts/Interfaces/IFeeDistributor.sol\":{\"content\":\"// SPDX-License-Identifier: MIT\\n\\npragma solidity 0.6.11;\\n\\n/// Common interface for Fee Distributor.\\ninterface IFeeDistributor {\\n // --- Events ---\\n\\n event FeeSharingCollectorAddressChanged(address _feeSharingCollectorAddress);\\n event ZeroStakingAddressChanged(address _zeroStakingAddress);\\n event BorrowerOperationsAddressChanged(address _borrowerOperationsAddress);\\n event TroveManagerAddressChanged(address _troveManagerAddress);\\n event WrbtcAddressChanged(address _wrbtcAddress);\\n event ZUSDTokenAddressChanged(address _zusdTokenAddress);\\n event ActivePoolAddressSet(address _activePoolAddress);\\n\\n event ZUSDDistributed(uint256 _zusdDistributedAmount);\\n event RBTCistributed(uint256 _rbtcDistributedAmount);\\n\\n // --- Functions ---\\n\\n /**\\n * @notice Called only once on init, to set addresses of other Zero contracts. Callable only by owner\\n * @dev initializer function, checks addresses are contracts\\n * @param _feeSharingCollectorAddress FeeSharingCollector address\\n * @param _zeroStakingAddress ZEROStaking contract address\\n * @param _borrowerOperationsAddress borrowerOperations contract address\\n * @param _troveManagerAddress TroveManager contract address\\n * @param _wrbtcAddress wrbtc ERC20 contract address\\n * @param _zusdTokenAddress ZUSDToken contract address\\n * @param _activePoolAddress ActivePool contract address\\n */\\n function setAddresses(\\n address _feeSharingCollectorAddress,\\n address _zeroStakingAddress,\\n address _borrowerOperationsAddress,\\n address _troveManagerAddress,\\n address _wrbtcAddress,\\n address _zusdTokenAddress,\\n address _activePoolAddress\\n ) external;\\n\\n function distributeFees() external;\\n}\\n\",\"keccak256\":\"0x4b9bc6eaa8a9ea5e0570ffd84c0af2a92e74b001ae1ee1c8518d76382691a07f\",\"license\":\"MIT\"},\"contracts/Interfaces/ILiquityBase.sol\":{\"content\":\"// SPDX-License-Identifier: MIT\\n\\npragma solidity 0.6.11;\\n\\nimport \\\"./IPriceFeed.sol\\\";\\nimport \\\"./ILiquityBaseParams.sol\\\";\\n\\ninterface ILiquityBase {\\n /// @return PriceFeed contract\\n function priceFeed() external view returns (IPriceFeed);\\n\\n /// @return LiquityBaseParams contract\\n function liquityBaseParams() external view returns (ILiquityBaseParams);\\n}\\n\",\"keccak256\":\"0xa4a57bd79e64d56a687c28d2a35c55b733fde8dda2a7ba861606eed3211724e1\",\"license\":\"MIT\"},\"contracts/Interfaces/ILiquityBaseParams.sol\":{\"content\":\"// SPDX-License-Identifier: MIT\\n\\npragma solidity 0.6.11;\\n\\ninterface ILiquityBaseParams {\\n\\n /// Minimum collateral ratio for individual troves\\n function MCR() external view returns (uint);\\n\\n /// Critical system collateral ratio. If the system's total collateral ratio (TCR) falls below the CCR, Recovery Mode is triggered.\\n function CCR() external view returns (uint);\\n\\n function PERCENT_DIVISOR() external view returns (uint);\\n\\n function BORROWING_FEE_FLOOR() external view returns (uint);\\n\\n /**\\n * Half-life of 12h. 12h = 720 min\\n * (1/2) = d^720 => d = (1/2)^(1/720)\\n */\\n function REDEMPTION_FEE_FLOOR() external view returns (uint);\\n\\n function MAX_BORROWING_FEE() external view returns (uint);\\n\\n}\",\"keccak256\":\"0xef8c0e8ad5d13d604c11b04983ff5bdd41768b646f2b33f45ddd988adec204e0\",\"license\":\"MIT\"},\"contracts/Interfaces/IPermit2.sol\":{\"content\":\"// SPDX-License-Identifier: MIT\\npragma solidity 0.6.11;\\npragma experimental ABIEncoderV2;\\n\\nimport {ISignatureTransfer} from \\\"./ISignatureTransfer.sol\\\";\\nimport {IAllowanceTransfer} from \\\"./IAllowanceTransfer.sol\\\";\\n\\n/// @notice Permit2 handles signature-based transfers in SignatureTransfer and allowance-based transfers in AllowanceTransfer.\\n/// @dev Users must approve Permit2 before calling any of the transfer functions.\\ninterface IPermit2 is ISignatureTransfer, IAllowanceTransfer {\\n// IPermit2 unifies the two interfaces so users have maximal flexibility with their approval.\\n}\\n\",\"keccak256\":\"0x3df819f5ca8de7324a676839d72e9f44c0f789c41c13bf0a892f3bb98d72ee86\",\"license\":\"MIT\"},\"contracts/Interfaces/IPool.sol\":{\"content\":\"// SPDX-License-Identifier: MIT\\n\\npragma solidity 0.6.11;\\n\\n// Common interface for the Pools.\\ninterface IPool {\\n // --- Events ---\\n\\n event ETHBalanceUpdated(uint _newBalance);\\n event ZUSDBalanceUpdated(uint _newBalance);\\n event ActivePoolAddressChanged(address _newActivePoolAddress);\\n event DefaultPoolAddressChanged(address _newDefaultPoolAddress);\\n event StabilityPoolAddressChanged(address _newStabilityPoolAddress);\\n event EtherSent(address _to, uint _amount);\\n\\n // --- Functions ---\\n\\n /// @notice Not necessarily equal to the raw ether balance - ether can be forcibly sent to contracts.\\n /// @return ETH pool balance\\n function getETH() external view returns (uint);\\n\\n /// @return ZUSD debt pool balance\\n function getZUSDDebt() external view returns (uint);\\n\\n /// @notice Increases ZUSD debt of the pool.\\n /// @param _amount ZUSD amount to add to the pool debt\\n function increaseZUSDDebt(uint _amount) external;\\n\\n /// @notice Decreases ZUSD debt of the pool.\\n /// @param _amount ZUSD amount to subtract to the pool debt\\n function decreaseZUSDDebt(uint _amount) external;\\n}\\n\",\"keccak256\":\"0x148e87ab38c6176d74f36c9e8989b99e768a7b18d8a045f1f01d6583b986806d\",\"license\":\"MIT\"},\"contracts/Interfaces/IPriceFeed.sol\":{\"content\":\"// SPDX-License-Identifier: MIT\\n\\npragma solidity 0.6.11;\\n\\ninterface IPriceFeed {\\n // --- Events ---\\n event LastGoodPriceUpdated(uint256 _lastGoodPrice);\\n\\n // --- Function ---\\n\\n /// @notice Returns the latest price obtained from the Oracle. Called by Zero functions that require a current price.\\n /// It uses the main price feed and fallback to the backup one in case of an error. If both fail return the last\\n /// good price seen.\\n /// @dev It's also callable by anyone externally\\n /// @return The price\\n function fetchPrice() external returns (uint256);\\n}\\n\",\"keccak256\":\"0x85fd97219a8156209d2cb5c6ae7c5ead01d893db000bf575023fcef0e62f9591\",\"license\":\"MIT\"},\"contracts/Interfaces/ISignatureTransfer.sol\":{\"content\":\"// SPDX-License-Identifier: MIT\\npragma solidity 0.6.11;\\npragma experimental ABIEncoderV2;\\n\\nimport {IEIP712} from \\\"./IEIP712.sol\\\";\\n\\n/// @title SignatureTransfer\\n/// @notice Handles ERC20 token transfers through signature based actions\\n/// @dev Requires user's token approval on the Permit2 contract\\ninterface ISignatureTransfer is IEIP712 {\\n /// @notice Emits an event when the owner successfully invalidates an unordered nonce.\\n event UnorderedNonceInvalidation(address indexed owner, uint256 word, uint256 mask);\\n\\n /// @notice The token and amount details for a transfer signed in the permit transfer signature\\n struct TokenPermissions {\\n // ERC20 token address\\n address token;\\n // the maximum amount that can be spent\\n uint256 amount;\\n }\\n\\n /// @notice The signed permit message for a single token transfer\\n struct PermitTransferFrom {\\n TokenPermissions permitted;\\n // a unique value for every token owner's signature to prevent signature replays\\n uint256 nonce;\\n // deadline on the permit signature\\n uint256 deadline;\\n }\\n\\n /// @notice Specifies the recipient address and amount for batched transfers.\\n /// @dev Recipients and amounts correspond to the index of the signed token permissions array.\\n /// @dev Reverts if the requested amount is greater than the permitted signed amount.\\n struct SignatureTransferDetails {\\n // recipient address\\n address to;\\n // spender requested amount\\n uint256 requestedAmount;\\n }\\n\\n /// @notice Used to reconstruct the signed permit message for multiple token transfers\\n /// @dev Do not need to pass in spender address as it is required that it is msg.sender\\n /// @dev Note that a user still signs over a spender address\\n struct PermitBatchTransferFrom {\\n // the tokens and corresponding amounts permitted for a transfer\\n TokenPermissions[] permitted;\\n // a unique value for every token owner's signature to prevent signature replays\\n uint256 nonce;\\n // deadline on the permit signature\\n uint256 deadline;\\n }\\n\\n /// @notice A map from token owner address and a caller specified word index to a bitmap. Used to set bits in the bitmap to prevent against signature replay protection\\n /// @dev Uses unordered nonces so that permit messages do not need to be spent in a certain order\\n /// @dev The mapping is indexed first by the token owner, then by an index specified in the nonce\\n /// @dev It returns a uint256 bitmap\\n /// @dev The index, or wordPosition is capped at type(uint248).max\\n function nonceBitmap(address, uint256) external view returns (uint256);\\n\\n /// @notice Transfers a token using a signed permit message\\n /// @dev Reverts if the requested amount is greater than the permitted signed amount\\n /// @param permit The permit data signed over by the owner\\n /// @param owner The owner of the tokens to transfer\\n /// @param transferDetails The spender's requested transfer details for the permitted token\\n /// @param signature The signature to verify\\n function permitTransferFrom(\\n PermitTransferFrom memory permit,\\n SignatureTransferDetails calldata transferDetails,\\n address owner,\\n bytes calldata signature\\n ) external;\\n\\n /// @notice Transfers multiple tokens using a signed permit message\\n /// @param permit The permit data signed over by the owner\\n /// @param owner The owner of the tokens to transfer\\n /// @param transferDetails Specifies the recipient and requested amount for the token transfer\\n /// @param signature The signature to verify\\n function permitTransferFrom(\\n PermitBatchTransferFrom memory permit,\\n SignatureTransferDetails[] calldata transferDetails,\\n address owner,\\n bytes calldata signature\\n ) external;\\n\\n /// @notice Invalidates the bits specified in mask for the bitmap at the word position\\n /// @dev The wordPos is maxed at type(uint248).max\\n /// @param wordPos A number to index the nonceBitmap at\\n /// @param mask A bitmap masked against msg.sender's current bitmap at the word position\\n function invalidateUnorderedNonces(uint256 wordPos, uint256 mask) external;\\n}\\n\",\"keccak256\":\"0x7efc63c119694e23dd76e44a5b125999829026bbc23409de7646a6a45e1ac341\",\"license\":\"MIT\"},\"contracts/Interfaces/ISortedTroves.sol\":{\"content\":\"// SPDX-License-Identifier: MIT\\n\\npragma solidity 0.6.11;\\n\\n// Common interface for the SortedTroves Doubly Linked List.\\ninterface ISortedTroves {\\n // --- Events ---\\n\\n event SortedTrovesAddressChanged(address _sortedDoublyLLAddress);\\n event BorrowerOperationsAddressChanged(address _borrowerOperationsAddress);\\n event NodeAdded(address _id, uint256 _NICR);\\n event NodeRemoved(address _id);\\n\\n // --- Functions ---\\n\\n /**\\n * @notice Called only once on init, to set addresses of other Zero contracts and size. Callable only by owner\\n * @dev initializer function, checks addresses are contracts\\n * @param _size max size of troves list\\n * @param _TroveManagerAddress TroveManager contract address\\n * @param _borrowerOperationsAddress BorrowerOperations contract address\\n */\\n function setParams(\\n uint256 _size,\\n address _TroveManagerAddress,\\n address _borrowerOperationsAddress\\n ) external;\\n\\n /**\\n * @dev Add a node to the list\\n * @param _id Node's id\\n * @param _ICR Node's NICR\\n * @param _prevId Id of previous node for the insert position\\n * @param _nextId Id of next node for the insert position\\n */\\n function insert(\\n address _id,\\n uint256 _ICR,\\n address _prevId,\\n address _nextId\\n ) external;\\n\\n /**\\n * @dev Remove a node from the list\\n * @param _id Node's id\\n */\\n function remove(address _id) external;\\n\\n /**\\n * @dev Re-insert the node at a new position, based on its new NICR\\n * @param _id Node's id\\n * @param _newICR Node's new NICR\\n * @param _prevId Id of previous node for the new insert position\\n * @param _nextId Id of next node for the new insert position\\n */\\n function reInsert(\\n address _id,\\n uint256 _newICR,\\n address _prevId,\\n address _nextId\\n ) external;\\n\\n /**\\n * @dev Checks if the list contains a node\\n * @param _id Node's id\\n * @return true if list contains a node with given id\\n */\\n function contains(address _id) external view returns (bool);\\n\\n /**\\n * @dev Checks if the list is full\\n * @return true if list is full\\n */\\n function isFull() external view returns (bool);\\n\\n /**\\n * @dev Checks if the list is empty\\n * @return true if list is empty\\n */\\n function isEmpty() external view returns (bool);\\n\\n /**\\n * @return list current size\\n */\\n function getSize() external view returns (uint256);\\n\\n /**\\n * @return list max size\\n */\\n function getMaxSize() external view returns (uint256);\\n\\n /**\\n * @return the first node in the list (node with the largest NICR)\\n */\\n function getFirst() external view returns (address);\\n\\n /**\\n * @return the last node in the list (node with the smallest NICR)\\n */\\n function getLast() external view returns (address);\\n\\n /**\\n * @param _id Node's id\\n * @return the next node (with a smaller NICR) in the list for a given node\\n */\\n function getNext(address _id) external view returns (address);\\n\\n /**\\n * @param _id Node's id\\n * @return the previous node (with a larger NICR) in the list for a given node\\n */\\n function getPrev(address _id) external view returns (address);\\n\\n /**\\n * @notice Check if a pair of nodes is a valid insertion point for a new node with the given NICR\\n * @param _ICR Node's NICR\\n * @param _prevId Id of previous node for the insert position\\n * @param _nextId Id of next node for the insert position\\n */\\n function validInsertPosition(\\n uint256 _ICR,\\n address _prevId,\\n address _nextId\\n ) external view returns (bool);\\n\\n /**\\n * @notice Find the insert position for a new node with the given NICR\\n * @param _ICR Node's NICR\\n * @param _prevId Id of previous node for the insert position\\n * @param _nextId Id of next node for the insert position\\n */\\n function findInsertPosition(\\n uint256 _ICR,\\n address _prevId,\\n address _nextId\\n ) external view returns (address, address);\\n}\\n\",\"keccak256\":\"0x7328ad009da6230ddea1559564428464a5c3ace2258fb534dfbba5b5a8c7c60d\",\"license\":\"MIT\"},\"contracts/Interfaces/IStabilityPool.sol\":{\"content\":\"// SPDX-License-Identifier: MIT\\n\\npragma solidity 0.6.11;\\npragma experimental ABIEncoderV2;\\n\\nimport \\\"../Dependencies/Mynt/IMassetManager.sol\\\";\\nimport { IPermit2, ISignatureTransfer } from \\\"./IPermit2.sol\\\";\\n\\n/*\\n * The Stability Pool holds ZUSD tokens deposited by Stability Pool depositors.\\n *\\n * When a trove is liquidated, then depending on system conditions, some of its ZUSD debt gets offset with\\n * ZUSD in the Stability Pool: that is, the offset debt evaporates, and an equal amount of ZUSD tokens in the Stability Pool is burned.\\n *\\n * Thus, a liquidation causes each depositor to receive a ZUSD loss, in proportion to their deposit as a share of total deposits.\\n * They also receive an ETH gain, as the ETH collateral of the liquidated trove is distributed among Stability depositors,\\n * in the same proportion.\\n *\\n * When a liquidation occurs, it depletes every deposit by the same fraction: for example, a liquidation that depletes 40%\\n * of the total ZUSD in the Stability Pool, depletes 40% of each deposit.\\n *\\n * A deposit that has experienced a series of liquidations is termed a \\\"compounded deposit\\\": each liquidation depletes the deposit,\\n * multiplying it by some factor in range ]0,1[\\n *\\n * Please see the implementation spec in the proof document, which closely follows on from the compounded deposit / ETH gain derivations:\\n * https://github.com/liquity/liquity/blob/master/papers/Scalable_Reward_Distribution_with_Compounding_Stakes.pdf\\n *\\n * --- SOV ISSUANCE TO STABILITY POOL DEPOSITORS ---\\n *\\n * An SOV issuance event occurs at every deposit operation, and every liquidation.\\n *\\n * Each deposit is tagged with the address of the front end through which it was made.\\n *\\n * All deposits earn a share of the issued SOV in proportion to the deposit as a share of total deposits. The SOV earned\\n * by a given deposit, is split between the depositor and the front end through which the deposit was made, based on the front end's kickbackRate.\\n *\\n * Please see the system Readme for an overview:\\n * https://github.com/liquity/dev/blob/main/README.md#zero-issuance-to-stability-providers\\n */\\ninterface IStabilityPool {\\n // --- Events ---\\n\\n event StabilityPoolETHBalanceUpdated(uint _newBalance);\\n event StabilityPoolZUSDBalanceUpdated(uint _newBalance);\\n\\n event BorrowerOperationsAddressChanged(address _newBorrowerOperationsAddress);\\n event TroveManagerAddressChanged(address _newTroveManagerAddress);\\n event ActivePoolAddressChanged(address _newActivePoolAddress);\\n event DefaultPoolAddressChanged(address _newDefaultPoolAddress);\\n event ZUSDTokenAddressChanged(address _newZUSDTokenAddress);\\n event SortedTrovesAddressChanged(address _newSortedTrovesAddress);\\n event PriceFeedAddressChanged(address _newPriceFeedAddress);\\n event CommunityIssuanceAddressChanged(address _newCommunityIssuanceAddress);\\n\\n event P_Updated(uint _P);\\n event S_Updated(uint _S, uint128 _epoch, uint128 _scale);\\n event G_Updated(uint _G, uint128 _epoch, uint128 _scale);\\n event EpochUpdated(uint128 _currentEpoch);\\n event ScaleUpdated(uint128 _currentScale);\\n\\n event FrontEndRegistered(address indexed _frontEnd, uint _kickbackRate);\\n event FrontEndTagSet(address indexed _depositor, address indexed _frontEnd);\\n\\n event DepositSnapshotUpdated(address indexed _depositor, uint _P, uint _S, uint _G);\\n event FrontEndSnapshotUpdated(address indexed _frontEnd, uint _P, uint _G);\\n event UserDepositChanged(address indexed _depositor, uint _newDeposit);\\n event FrontEndStakeChanged(\\n address indexed _frontEnd,\\n uint _newFrontEndStake,\\n address _depositor\\n );\\n\\n event ETHGainWithdrawn(address indexed _depositor, uint _ETH, uint _ZUSDLoss);\\n event SOVPaidToDepositor(address indexed _depositor, uint _SOV);\\n event SOVPaidToFrontEnd(address indexed _frontEnd, uint _SOV);\\n event EtherSent(address _to, uint _amount);\\n\\n event WithdrawFromSpAndConvertToDLLR(\\n address _depositor,\\n uint256 _zusdAmountRequested,\\n uint256 _dllrAmountReceived\\n );\\n\\n // --- Functions ---\\n\\n /**\\n * @notice Called only once on init, to set addresses of other Liquity contracts. Callable only by owner\\n * @dev initializer function, checks addresses are contracts\\n * @param _liquityBaseParamsAddress LiquidityBaseParams contract address\\n * @param _borrowerOperationsAddress BorrowerOperations contract address\\n * @param _troveManagerAddress TroveManager contract address\\n * @param _activePoolAddress ActivePool contract address\\n * @param _zusdTokenAddress ZUSDToken contract address\\n * @param _sortedTrovesAddress SortedTroves contract address\\n * @param _priceFeedAddress PriceFeed contract address\\n * @param _communityIssuanceAddress CommunityIssuanceAddress\\n */\\n function setAddresses(\\n address _liquityBaseParamsAddress,\\n address _borrowerOperationsAddress,\\n address _troveManagerAddress,\\n address _activePoolAddress,\\n address _zusdTokenAddress,\\n address _sortedTrovesAddress,\\n address _priceFeedAddress,\\n address _communityIssuanceAddress\\n ) external;\\n\\n /**\\n * @notice Initial checks:\\n * - Frontend is registered or zero address\\n * - Sender is not a registered frontend\\n * - _amount is not zero\\n * ---\\n * - Triggers a SOV issuance, based on time passed since the last issuance. The SOV issuance is shared between *all* depositors and front ends\\n * - Tags the deposit with the provided front end tag param, if it's a new deposit\\n * - Sends depositor's accumulated gains (SOV, ETH) to depositor\\n * - Sends the tagged front end's accumulated SOV gains to the tagged front end\\n * - Increases deposit and tagged front end's stake, and takes new snapshots for each.\\n * @param _amount amount to provide\\n * @param _frontEndTag frontend address to receive accumulated SOV gains\\n */\\n function provideToSP(uint _amount, address _frontEndTag) external;\\n\\n /**\\n * @notice Initial checks:\\n * - _amount is zero or there are no under collateralized troves left in the system\\n * - User has a non zero deposit\\n * ---\\n * - Triggers a SOV issuance, based on time passed since the last issuance. The SOV issuance is shared between *all* depositors and front ends\\n * - Removes the deposit's front end tag if it is a full withdrawal\\n * - Sends all depositor's accumulated gains (SOV, ETH) to depositor\\n * - Sends the tagged front end's accumulated SOV gains to the tagged front end\\n * - Decreases deposit and tagged front end's stake, and takes new snapshots for each.\\n *\\n * If _amount > userDeposit, the user withdraws all of their compounded deposit.\\n * @param _amount amount to withdraw\\n */\\n function withdrawFromSP(uint _amount) external;\\n\\n /**\\n * @notice Initial checks:\\n * - User has a non zero deposit\\n * - User has an open trove\\n * - User has some ETH gain\\n * ---\\n * - Triggers a SOV issuance, based on time passed since the last issuance. The SOV issuance is shared between *all* depositors and front ends\\n * - Sends all depositor's SOV gain to depositor\\n * - Sends all tagged front end's SOV gain to the tagged front end\\n * - Transfers the depositor's entire ETH gain from the Stability Pool to the caller's trove\\n * - Leaves their compounded deposit in the Stability Pool\\n * - Updates snapshots for deposit and tagged front end stake\\n * @param _upperHint upper trove id hint\\n * @param _lowerHint lower trove id hint\\n */\\n function withdrawETHGainToTrove(address _upperHint, address _lowerHint) external;\\n\\n /**\\n * @notice Initial checks:\\n * - Frontend (sender) not already registered\\n * - User (sender) has no deposit\\n * - _kickbackRate is in the range [0, 100%]\\n * ---\\n * Front end makes a one-time selection of kickback rate upon registering\\n * @param _kickbackRate kickback rate selected by frontend\\n */\\n function registerFrontEnd(uint _kickbackRate) external;\\n\\n /**\\n * @notice Initial checks:\\n * - Caller is TroveManager\\n * ---\\n * Cancels out the specified debt against the ZUSD contained in the Stability Pool (as far as possible)\\n * and transfers the Trove's ETH collateral from ActivePool to StabilityPool.\\n * Only called by liquidation functions in the TroveManager.\\n * @param _debt debt to cancel\\n * @param _coll collateral to transfer\\n */\\n function offset(uint _debt, uint _coll) external;\\n\\n /**\\n * @return the total amount of ETH held by the pool, accounted in an internal variable instead of `balance`,\\n * to exclude edge cases like ETH received from a self-destruct.\\n */\\n function getETH() external view returns (uint);\\n\\n /**\\n * @return ZUSD held in the pool. Changes when users deposit/withdraw, and when Trove debt is offset.\\n */\\n function getTotalZUSDDeposits() external view returns (uint);\\n\\n /**\\n * @notice Calculates the ETH gain earned by the deposit since its last snapshots were taken.\\n * @param _depositor address to calculate ETH gain\\n * @return ETH gain from given depositor\\n */\\n function getDepositorETHGain(address _depositor) external view returns (uint);\\n\\n /**\\n * @notice Calculate the SOV gain earned by a deposit since its last snapshots were taken.\\n * If not tagged with a front end, the depositor gets a 100% cut of what their deposit earned.\\n * Otherwise, their cut of the deposit's earnings is equal to the kickbackRate, set by the front end through\\n * which they made their deposit.\\n * @param _depositor address to calculate ETH gain\\n * @return SOV gain from given depositor\\n */\\n function getDepositorSOVGain(address _depositor) external view returns (uint);\\n\\n /**\\n * @param _frontEnd front end address\\n * @return the SOV gain earned by the front end.\\n */\\n function getFrontEndSOVGain(address _frontEnd) external view returns (uint);\\n\\n /**\\n * @param _depositor depositor address\\n * @return the user's compounded deposit.\\n */\\n function getCompoundedZUSDDeposit(address _depositor) external view returns (uint);\\n\\n /**\\n * @notice The front end's compounded stake is equal to the sum of its depositors' compounded deposits.\\n * @param _frontEnd front end address\\n * @return the front end's compounded stake.\\n */\\n function getCompoundedFrontEndStake(address _frontEnd) external view returns (uint);\\n\\n //DLLR _owner or _spender can convert a specified amount of DLLR into ZUSD via Sovryn Mynt and deposit the ZUSD into the Zero Stability Pool, all in a single transaction\\n function provideToSpFromDLLR(\\n uint _dllrAmount,\\n IMassetManager.PermitParams calldata _permitParams\\n ) external;\\n\\n function provideToSpFromDllrWithPermit2(\\n uint256 _dllrAmount,\\n ISignatureTransfer.PermitTransferFrom memory _permit,\\n bytes calldata _signature\\n ) external;\\n\\n /// Stability Pool depositor can withdraw a specified amount of ZUSD from the Zero Stability Pool and optionally convert the ZUSD to DLLR via Sovryn Mynt, all in a single transaction\\n function withdrawFromSpAndConvertToDLLR(uint256 _zusdAmount) external;\\n\\n /**\\n * Fallback function\\n * Only callable by Active Pool, it just accounts for ETH received\\n * receive() external payable;\\n */\\n}\\n\",\"keccak256\":\"0xb35c5ec991dd2b4f8ecb6b28ae29e97313fca6054aa0df14ebdb7336fcea84a6\",\"license\":\"MIT\"},\"contracts/Interfaces/ITroveManager.sol\":{\"content\":\"// SPDX-License-Identifier: MIT\\n\\npragma solidity 0.6.11;\\npragma experimental ABIEncoderV2;\\n\\nimport \\\"./ILiquityBase.sol\\\";\\nimport \\\"./IStabilityPool.sol\\\";\\nimport \\\"./IZUSDToken.sol\\\";\\nimport \\\"./IZEROToken.sol\\\";\\nimport \\\"./IZEROStaking.sol\\\";\\nimport \\\"../Dependencies/Mynt/IMassetManager.sol\\\";\\nimport { IPermit2, ISignatureTransfer } from \\\"./IPermit2.sol\\\";\\n\\n/// Common interface for the Trove Manager.\\ninterface ITroveManager is ILiquityBase {\\n // --- Events ---\\n\\n event FeeDistributorAddressChanged(address _feeDistributorAddress);\\n event TroveManagerRedeemOpsAddressChanged(address _troveManagerRedeemOps);\\n event LiquityBaseParamsAddressChanges(address _borrowerOperationsAddress);\\n event BorrowerOperationsAddressChanged(address _newBorrowerOperationsAddress);\\n event PriceFeedAddressChanged(address _newPriceFeedAddress);\\n event ZUSDTokenAddressChanged(address _newZUSDTokenAddress);\\n event ActivePoolAddressChanged(address _activePoolAddress);\\n event DefaultPoolAddressChanged(address _defaultPoolAddress);\\n event StabilityPoolAddressChanged(address _stabilityPoolAddress);\\n event GasPoolAddressChanged(address _gasPoolAddress);\\n event CollSurplusPoolAddressChanged(address _collSurplusPoolAddress);\\n event SortedTrovesAddressChanged(address _sortedTrovesAddress);\\n event ZEROTokenAddressChanged(address _zeroTokenAddress);\\n event ZEROStakingAddressChanged(address _zeroStakingAddress);\\n\\n event Liquidation(\\n uint256 _liquidatedDebt,\\n uint256 _liquidatedColl,\\n uint256 _collGasCompensation,\\n uint256 _ZUSDGasCompensation\\n );\\n event Redemption(\\n uint256 _attemptedZUSDAmount,\\n uint256 _actualZUSDAmount,\\n uint256 _ETHSent,\\n uint256 _ETHFee\\n );\\n event TroveUpdated(\\n address indexed _borrower,\\n uint256 _debt,\\n uint256 _coll,\\n uint256 stake,\\n uint8 operation\\n );\\n event TroveLiquidated(\\n address indexed _borrower,\\n uint256 _debt,\\n uint256 _coll,\\n uint8 operation\\n );\\n event BaseRateUpdated(uint256 _baseRate);\\n event LastFeeOpTimeUpdated(uint256 _lastFeeOpTime);\\n event TotalStakesUpdated(uint256 _newTotalStakes);\\n event SystemSnapshotsUpdated(uint256 _totalStakesSnapshot, uint256 _totalCollateralSnapshot);\\n event LTermsUpdated(uint256 _L_ETH, uint256 _L_ZUSDDebt);\\n event TroveSnapshotsUpdated(uint256 _L_ETH, uint256 _L_ZUSDDebt);\\n event TroveIndexUpdated(address _borrower, uint256 _newIndex);\\n\\n struct TroveManagerInitAddressesParams {\\n address _feeDistributorAddress;\\n address _troveManagerRedeemOps;\\n address _liquityBaseParamsAddress;\\n address _borrowerOperationsAddress;\\n address _activePoolAddress;\\n address _defaultPoolAddress;\\n address _stabilityPoolAddress;\\n address _gasPoolAddress;\\n address _collSurplusPoolAddress;\\n address _priceFeedAddress;\\n address _zusdTokenAddress;\\n address _sortedTrovesAddress;\\n address _zeroTokenAddress;\\n address _zeroStakingAddress;\\n }\\n\\n // --- Functions ---\\n /**\\n * @notice Called only once on init, to set addresses of other Zero contracts. Callable only by owner\\n * @dev initializer function, checks addresses are contracts\\n * @param _troveManagerInitAddresses addresses list to intialize TroveManager with _\\n * _feeDistributorAddress feeDistributor contract address\\n * _troveManagerRedeemOps TroveManagerRedeemOps contract address\\n * _liquityBaseParamsAddress LiquityBaseParams contract address\\n * _borrowerOperationsAddress BorrowerOperations contract address\\n * _activePoolAddress ActivePool contract address\\n * _defaultPoolAddress DefaultPool contract address\\n * _stabilityPoolAddress StabilityPool contract address\\n * _gasPoolAddress GasPool contract address\\n * _collSurplusPoolAddress CollSurplusPool contract address\\n * _priceFeedAddress PriceFeed contract address\\n * _zusdTokenAddress ZUSDToken contract address\\n * _sortedTrovesAddress SortedTroves contract address\\n * _zeroTokenAddress ZEROToken contract address\\n * _zeroStakingAddress ZEROStaking contract address\\n */\\n function setAddresses(\\n TroveManagerInitAddressesParams memory _troveManagerInitAddresses\\n ) external;\\n\\n function setTroveManagerRedeemOps(address _troveManagerRedeemOps) external;\\n\\n /// @return Trove owners count\\n function getTroveOwnersCount() external view returns (uint256);\\n\\n /// @param _index Trove owner index\\n /// @return Trove from TroveOwners array in given index\\n function getTroveFromTroveOwnersArray(uint256 _index) external view returns (address);\\n\\n /// @param _borrower borrower address\\n /// @return the nominal collateral ratio (ICR) of a given Trove, without the price. Takes a trove's pending coll and debt rewards from redistributions into account.\\n function getNominalICR(address _borrower) external view returns (uint256);\\n\\n /// @notice computes the user\\u2019s individual collateralization ratio (ICR) based on their total collateral and total ZUSD debt. Returns 2^256 -1 if they have 0 debt.\\n /// @param _borrower borrower address\\n /// @param _price ETH price\\n /// @return the current collateral ratio (ICR) of a given Trove. Takes a trove's pending coll and debt rewards from redistributions into account.\\n function getCurrentICR(address _borrower, uint256 _price) external view returns (uint256);\\n\\n /// @notice Closes the trove if its ICR is lower than the minimum collateral ratio.\\n /// @param _borrower borrower address\\n function liquidate(address _borrower) external;\\n\\n /**\\n * @notice Liquidate a sequence of troves. Closes a maximum number of n under-collateralized Troves,\\n * starting from the one with the lowest collateral ratio in the system, and moving upwards\\n * @param _n max number of under-collateralized Troves to liquidate\\n */\\n function liquidateTroves(uint256 _n) external;\\n\\n /**\\n * @notice Attempt to liquidate a custom list of troves provided by the caller.\\n * @param _troveArray list of trove addresses\\n */\\n function batchLiquidateTroves(address[] calldata _troveArray) external;\\n\\n /**\\n * @notice Send _ZUSDamount ZUSD to the system and redeem the corresponding amount of collateral from as many Troves as are needed to fill the redemption\\n * request. Applies pending rewards to a Trove before reducing its debt and coll.\\n *\\n * Note that if _amount is very large, this function can run out of gas, specially if traversed troves are small. This can be easily avoided by\\n * splitting the total _amount in appropriate chunks and calling the function multiple times.\\n *\\n * Param `_maxIterations` can also be provided, so the loop through Troves is capped (if it\\u2019s zero, it will be ignored).This makes it easier to\\n * avoid OOG for the frontend, as only knowing approximately the average cost of an iteration is enough, without needing to know the \\u201ctopology\\u201d\\n * of the trove list. It also avoids the need to set the cap in stone in the contract, nor doing gas calculations, as both gas price and opcode\\n * costs can vary.\\n *\\n * All Troves that are redeemed from -- with the likely exception of the last one -- will end up with no debt left, therefore they will be closed.\\n * If the last Trove does have some remaining debt, it has a finite ICR, and the reinsertion could be anywhere in the list, therefore it requires a hint.\\n * A frontend should use getRedemptionHints() to calculate what the ICR of this Trove will be after redemption, and pass a hint for its position\\n * in the sortedTroves list along with the ICR value that the hint was found for.\\n *\\n * If another transaction modifies the list between calling getRedemptionHints() and passing the hints to redeemCollateral(), it\\n * is very likely that the last (partially) redeemed Trove would end up with a different ICR than what the hint is for. In this case the\\n * redemption will stop after the last completely redeemed Trove and the sender will keep the remaining ZUSD amount, which they can attempt\\n * to redeem later.\\n *\\n * @param _ZUSDAmount ZUSD amount to send to the system\\n * @param _firstRedemptionHint calculated ICR hint of first trove after redemption\\n * @param _maxIterations max Troves iterations (can be 0)\\n * @param _maxFee max fee percentage to accept\\n */\\n function redeemCollateral(\\n uint256 _ZUSDAmount,\\n address _firstRedemptionHint,\\n address _upperPartialRedemptionHint,\\n address _lowerPartialRedemptionHint,\\n uint256 _partialRedemptionHintNICR,\\n uint256 _maxIterations,\\n uint256 _maxFee\\n ) external;\\n\\n function redeemCollateralViaDLLR(\\n uint256 _dllrAmount,\\n address _firstRedemptionHint,\\n address _upperPartialRedemptionHint,\\n address _lowerPartialRedemptionHint,\\n uint256 _partialRedemptionHintNICR,\\n uint256 _maxIterations,\\n uint256 _maxFeePercentage,\\n IMassetManager.PermitParams calldata _permitParams\\n ) external;\\n\\n function redeemCollateralViaDllrWithPermit2(\\n uint256 _dllrAmount,\\n address _firstRedemptionHint,\\n address _upperPartialRedemptionHint,\\n address _lowerPartialRedemptionHint,\\n uint256 _partialRedemptionHintNICR,\\n uint256 _maxIterations,\\n uint256 _maxFeePercentage,\\n ISignatureTransfer.PermitTransferFrom memory _permit,\\n bytes calldata _signature\\n ) external;\\n \\n\\n /// @notice Update borrower's stake based on their latest collateral value\\n /// @param _borrower borrower address\\n function updateStakeAndTotalStakes(address _borrower) external returns (uint256);\\n\\n /// @notice Update borrower's snapshots of L_ETH and L_ZUSDDebt to reflect the current values\\n /// @param _borrower borrower address\\n function updateTroveRewardSnapshots(address _borrower) external;\\n\\n /// @notice Push the owner's address to the Trove owners list, and record the corresponding array index on the Trove struct\\n /// @param _borrower borrower address\\n /// @return index where Trove was inserted\\n function addTroveOwnerToArray(address _borrower) external returns (uint256 index);\\n\\n /// @notice Add the borrowers's coll and debt rewards earned from redistributions, to their Trove\\n /// @param _borrower borrower address\\n function applyPendingRewards(address _borrower) external;\\n\\n /// @param _borrower borrower address\\n /// @return the borrower's pending accumulated ETH reward, earned by their stake\\n function getPendingETHReward(address _borrower) external view returns (uint256);\\n\\n /// @param _borrower borrower address\\n /// @return the borrower's pending accumulated ZUSD reward, earned by their stake\\n function getPendingZUSDDebtReward(address _borrower) external view returns (uint256);\\n\\n /*\\n * @notice A Trove has pending rewards if its snapshot is less than the current rewards per-unit-staked sum:\\n * this indicates that rewards have occured since the snapshot was made, and the user therefore has\\n * pending rewards\\n *\\n * @param _borrower borrower address\\n * @return true if has pending rewards\\n */\\n function hasPendingRewards(address _borrower) external view returns (bool);\\n\\n /// @notice returns the Troves entire debt and coll, including pending rewards from redistributions.\\n /// @param _borrower borrower address\\n function getEntireDebtAndColl(\\n address _borrower\\n )\\n external\\n view\\n returns (\\n uint256 debt,\\n uint256 coll,\\n uint256 pendingZUSDDebtReward,\\n uint256 pendingETHReward\\n );\\n\\n /// @notice Close given trove. Called by BorrowerOperations.\\n /// @param _borrower borrower address\\n function closeTrove(address _borrower) external;\\n\\n /// @notice Remove borrower's stake from the totalStakes sum, and set their stake to 0\\n /// @param _borrower borrower address\\n function removeStake(address _borrower) external;\\n\\n /// @return calculated redemption rate using baseRate\\n function getRedemptionRate() external view returns (uint256);\\n\\n /// @return calculated redemption rate using calculated decayed as base rate\\n function getRedemptionRateWithDecay() external view returns (uint256);\\n\\n /// @notice The redemption fee is taken as a cut of the total ETH drawn from the system in a redemption. It is based on the current redemption rate.\\n /// @param _ETHDrawn ETH drawn\\n function getRedemptionFeeWithDecay(uint256 _ETHDrawn) external view returns (uint256);\\n\\n /// @return borrowing rate\\n function getBorrowingRate() external view returns (uint256);\\n\\n /// @return borrowing rate calculated using decayed as base rate\\n function getBorrowingRateWithDecay() external view returns (uint256);\\n\\n /// @param ZUSDDebt ZUSD debt amount to calculate fee\\n /// @return borrowing fee using borrowing rate\\n function getBorrowingFee(uint256 ZUSDDebt) external view returns (uint256);\\n\\n /// @param _ZUSDDebt ZUSD debt amount to calculate fee\\n /// @return borrowing fee using borrowing rate with decay\\n function getBorrowingFeeWithDecay(uint256 _ZUSDDebt) external view returns (uint256);\\n\\n /// @notice Updates the baseRate state variable based on time elapsed since the last redemption or ZUSD borrowing operation.\\n function decayBaseRateFromBorrowing() external;\\n\\n /// @param _borrower borrower address\\n /// @return Trove status from given trove\\n function getTroveStatus(address _borrower) external view returns (uint256);\\n\\n /// @param _borrower borrower address\\n /// @return Trove stake from given trove\\n function getTroveStake(address _borrower) external view returns (uint256);\\n\\n /// @param _borrower borrower address\\n /// @return Trove debt from given trove\\n function getTroveDebt(address _borrower) external view returns (uint256);\\n\\n /// @param _borrower borrower address\\n /// @return Trove collateral from given trove\\n function getTroveColl(address _borrower) external view returns (uint256);\\n\\n /// @param _borrower borrower address\\n /// @param num status to set\\n function setTroveStatus(address _borrower, uint256 num) external;\\n\\n /// @param _borrower borrower address\\n /// @param _collIncrease amount of collateral to increase\\n /// @return new trove collateral\\n function increaseTroveColl(\\n address _borrower,\\n uint256 _collIncrease\\n ) external returns (uint256);\\n\\n /// @param _borrower borrower address\\n /// @param _collDecrease amount of collateral to decrease\\n /// @return new trove collateral\\n function decreaseTroveColl(\\n address _borrower,\\n uint256 _collDecrease\\n ) external returns (uint256);\\n\\n /// @param _borrower borrower address\\n /// @param _debtIncrease amount of debt to increase\\n /// @return new trove debt\\n function increaseTroveDebt(\\n address _borrower,\\n uint256 _debtIncrease\\n ) external returns (uint256);\\n\\n /// @param _borrower borrower address\\n /// @param _debtDecrease amount of debt to decrease\\n /// @return new trove debt\\n function decreaseTroveDebt(\\n address _borrower,\\n uint256 _debtDecrease\\n ) external returns (uint256);\\n\\n /**\\n * @param _price ETH price\\n * @return the total collateralization ratio (TCR) of the system.\\n * The TCR is based on the the entire system debt and collateral (including pending rewards).\\n */\\n function getTCR(uint256 _price) external view returns (uint256);\\n\\n function MCR() external view returns (uint256);\\n\\n function CCR() external view returns (uint256);\\n\\n /// @notice reveals whether or not the system is in Recovery Mode (i.e. whether the Total Collateralization Ratio (TCR) is below the Critical Collateralization Ratio (CCR)).\\n function checkRecoveryMode(uint256 _price) external view returns (bool);\\n}\\n\",\"keccak256\":\"0x396367eb7763c289e419a025532150e2a1d9d99eead359ceb6a081787501a00b\",\"license\":\"MIT\"},\"contracts/Interfaces/IZEROStaking.sol\":{\"content\":\"// SPDX-License-Identifier: MIT\\n\\npragma solidity 0.6.11;\\n\\ninterface IZEROStaking {\\n // --- Events --\\n\\n event ZEROTokenAddressSet(address _zeroTokenAddress);\\n event ZUSDTokenAddressSet(address _zusdTokenAddress);\\n event FeeDistributorAddressAddressSet(address _feeDistributorAddress);\\n event ActivePoolAddressSet(address _activePoolAddress);\\n\\n event StakeChanged(address indexed staker, uint256 newStake);\\n event StakingGainsWithdrawn(address indexed staker, uint256 ZUSDGain, uint256 ETHGain);\\n event F_ETHUpdated(uint256 _F_ETH);\\n event F_ZUSDUpdated(uint256 _F_ZUSD);\\n event TotalZEROStakedUpdated(uint256 _totalZEROStaked);\\n event EtherSent(address _account, uint256 _amount);\\n event StakerSnapshotsUpdated(address _staker, uint256 _F_ETH, uint256 _F_ZUSD);\\n\\n // --- Functions ---\\n\\n /**\\n * @notice Called only once on init, to set addresses of other Zero contracts. Callable only by owner\\n * @dev initializer function, checks addresses are contracts\\n * @param _zeroTokenAddress ZEROToken contract address\\n * @param _zusdTokenAddress ZUSDToken contract address\\n * @param _feeDistributorAddress FeeDistributorAddress contract address\\n * @param _activePoolAddress ActivePool contract address\\n */\\n function setAddresses(\\n address _zeroTokenAddress,\\n address _zusdTokenAddress,\\n address _feeDistributorAddress,\\n address _activePoolAddress\\n ) external;\\n\\n /// @notice If caller has a pre-existing stake, send any accumulated ETH and ZUSD gains to them.\\n /// @param _ZEROamount ZERO tokens to stake\\n function stake(uint256 _ZEROamount) external;\\n\\n /**\\n * @notice Unstake the ZERO and send the it back to the caller, along with their accumulated ZUSD & ETH gains.\\n * If requested amount > stake, send their entire stake.\\n * @param _ZEROamount ZERO tokens to unstake\\n */\\n function unstake(uint256 _ZEROamount) external;\\n\\n /// @param _ETHFee ETH fee\\n /// @notice increase ETH fee\\n function increaseF_ETH(uint256 _ETHFee) external;\\n\\n /// @param _ZEROFee ZUSD fee\\n /// @notice increase ZUSD fee\\n function increaseF_ZUSD(uint256 _ZEROFee) external;\\n\\n /// @param _user user address\\n /// @return pending ETH gain of given user\\n function getPendingETHGain(address _user) external view returns (uint256);\\n\\n /// @param _user user address\\n /// @return pending ZUSD gain of given user\\n function getPendingZUSDGain(address _user) external view returns (uint256);\\n}\\n\",\"keccak256\":\"0x4c7948ce7dff9ea9b8495054e511eabcf44a91c7db8520ec58ff2a002327e0c5\",\"license\":\"MIT\"},\"contracts/Interfaces/IZEROToken.sol\":{\"content\":\"// SPDX-License-Identifier: MIT\\n\\npragma solidity 0.6.11;\\n\\nimport \\\"../Dependencies/IERC20.sol\\\";\\nimport \\\"../Dependencies/IERC2612.sol\\\";\\n\\ninterface IZEROToken is IERC20, IERC2612 { \\n\\n // --- Functions ---\\n\\n /// @notice send zero tokens to ZEROStaking contract\\n /// @param _sender sender address\\n /// @param _amount amount to send\\n function sendToZEROStaking(address _sender, uint256 _amount) external;\\n\\n /// @return deployment start time\\n function getDeploymentStartTime() external view returns (uint256);\\n\\n}\\n\",\"keccak256\":\"0xbcc0baabe4c4686563a09cf1486f2d152b70404996676a89d525691f69637f66\",\"license\":\"MIT\"},\"contracts/Interfaces/IZUSDToken.sol\":{\"content\":\"// SPDX-License-Identifier: MIT\\n\\npragma solidity 0.6.11;\\n\\nimport \\\"../Dependencies/IERC20.sol\\\";\\nimport \\\"../Dependencies/IERC2612.sol\\\";\\n\\ninterface IZUSDToken is IERC20, IERC2612 { \\n \\n // --- Events ---\\n\\n event TroveManagerAddressChanged(address _troveManagerAddress);\\n event StabilityPoolAddressChanged(address _newStabilityPoolAddress);\\n event BorrowerOperationsAddressChanged(address _newBorrowerOperationsAddress);\\n\\n event ZUSDTokenBalanceUpdated(address _user, uint _amount);\\n\\n // --- Functions ---\\n\\n function mint(address _account, uint256 _amount) external;\\n\\n function burn(address _account, uint256 _amount) external;\\n\\n function sendToPool(address _sender, address poolAddress, uint256 _amount) external;\\n\\n function returnFromPool(address poolAddress, address user, uint256 _amount ) external;\\n}\\n\",\"keccak256\":\"0xe52df063aa08f709640c28888edd27310c820f6d08564855538ae245eb2f5a8c\",\"license\":\"MIT\"},\"contracts/Interfaces/colfee/IExitFeeController.sol\":{\"content\":\"// SPDX-License-Identifier: MIT\\n// \\u2500\\u2500\\u2500\\u2500\\u2500\\u2500\\u2500\\u2500\\u2500\\u2500\\u2500\\u2500\\u2500\\u2500\\u2500\\u2500\\u2500\\u2500\\u2500\\u2500\\u2500\\u2500\\u2500\\u2500\\u2500\\u2500\\u2500\\u2500\\u2500\\u2500\\u2500\\u2500\\u2500\\u2500\\u2500\\u2500\\u2500\\u2500\\u2500\\u2500\\u2500\\u2500\\u2500\\u2500\\u2500\\u2500\\u2500\\u2500\\u2500\\u2500\\u2500\\u2500\\u2500\\u2500\\u2500\\u2500\\u2500\\u2500\\u2500\\u2500\\u2500\\u2500\\u2500\\u2500\\u2500\\u2500\\u2500\\u2500\\u2500\\u2500\\u2500\\u2500\\u2500\\u2500\\u2500\\u2500\\u2500\\n// Vendored copy of the ColFee exit-fee controller interface, taken from\\n// DistributedCollective/colfee @ c85f60aef91bc644517cf1b3ea7c5e8c565f4ca5\\n// src/interfaces/IExitFeeController.sol\\n// Do not change the declarations here: the binding property is ABI equality with\\n// the deployed controller. To pick up an interface change, change it upstream,\\n// re-copy, and bump the SHA above. Local formatting follows this repo's\\n// formatter, so the file is not byte-identical to the upstream source.\\n// \\u2500\\u2500\\u2500\\u2500\\u2500\\u2500\\u2500\\u2500\\u2500\\u2500\\u2500\\u2500\\u2500\\u2500\\u2500\\u2500\\u2500\\u2500\\u2500\\u2500\\u2500\\u2500\\u2500\\u2500\\u2500\\u2500\\u2500\\u2500\\u2500\\u2500\\u2500\\u2500\\u2500\\u2500\\u2500\\u2500\\u2500\\u2500\\u2500\\u2500\\u2500\\u2500\\u2500\\u2500\\u2500\\u2500\\u2500\\u2500\\u2500\\u2500\\u2500\\u2500\\u2500\\u2500\\u2500\\u2500\\u2500\\u2500\\u2500\\u2500\\u2500\\u2500\\u2500\\u2500\\u2500\\u2500\\u2500\\u2500\\u2500\\u2500\\u2500\\u2500\\u2500\\u2500\\u2500\\u2500\\u2500\\n// Range pragma is intentional: the same declarations are compiled under Solidity\\n// 0.5.17, 0.6.11 (this repo), and 0.8.20.\\n// aderyn-ignore-next-line(unspecific-solidity-pragma)\\npragma solidity >=0.5.17 <0.9.0;\\n// `pragma experimental ABIEncoderV2;` is required for the 0.5.17 leg \\u2014 that\\n// compiler needs the directive to emit/decode struct returns (ExitFeeQuote)\\n// across the ABI boundary. The modern `pragma abicoder v2;` was only added\\n// in 0.7.4 and is incompatible with 0.5.x, so the experimental pragma is the\\n// only spelling that works across all three target compilers. On 0.6+/0.8+\\n// the experimental pragma is accepted (silently on 0.6.x; with a deprecation\\n// notice on 0.8.x that does NOT enable the historical encoder bugs \\u2014 those\\n// bugs were fixed long before 0.6.0). This is a pure interface (no\\n// implementation, no storage), so there is no exposure to encoder-bug\\n// surface area beyond the ABI itself. Removing it would require a separate\\n// file per pragma, reintroducing declaration drift between the consumers.\\n// aderyn-ignore-next-line(experimental-encoder)\\npragma experimental ABIEncoderV2;\\n\\n/// @title IExitFeeController\\n/// @notice Cross-pragma interface for the Sovryn ExitFee (ColFee) controller.\\n/// One declaration shared by every consumer so they all resolve the\\n/// same ABI. Products compiled under a pragma this file cannot span\\n/// declare their own ABI-equivalent variant instead.\\n/// Zero calls only `quoteExitFee`; the rest is declared for completeness.\\ninterface IExitFeeController {\\n // \\u2500\\u2500\\u2500 Types \\u2500\\u2500\\u2500\\u2500\\u2500\\u2500\\u2500\\u2500\\u2500\\u2500\\u2500\\u2500\\u2500\\u2500\\u2500\\u2500\\u2500\\u2500\\u2500\\u2500\\u2500\\u2500\\u2500\\u2500\\u2500\\u2500\\u2500\\u2500\\u2500\\u2500\\u2500\\u2500\\u2500\\u2500\\u2500\\u2500\\u2500\\u2500\\u2500\\u2500\\u2500\\u2500\\u2500\\u2500\\u2500\\u2500\\u2500\\u2500\\u2500\\u2500\\u2500\\u2500\\u2500\\u2500\\u2500\\u2500\\u2500\\u2500\\u2500\\u2500\\n\\n /// @notice Reason a `ColFeeSkipped` event was emitted instead of an\\n /// `ColFeeApplied`. NONE covers honest paths (positive charge,\\n /// dust, or actor-exemption); the rest cover off-state outcomes.\\n enum SkipReason {\\n NONE, // Controller computed an honest quote (charge / dust / zero-rate).\\n INACTIVE, // exitFeeEnabled == false.\\n DISABLED, // feeReceiver == address(0), OR surface gate off.\\n INVALID_QUOTE, // Defensive: overflow or fee > gross.\\n CONTROLLER_REVERT, // Set by the product's local _safeQuote on staticcall failure.\\n VAULT_REVERT // Set by the product hook when the fee transfer itself failed.\\n }\\n\\n /// @notice A single rate-policy entry. Lives at each of the three tiers\\n /// (actor \\u2192 sub-product \\u2192 surface).\\n struct RatePolicy {\\n bool active;\\n uint16 rateBps;\\n }\\n\\n /// @notice Quote returned by `quoteExitFee`. `reason` carries the precise\\n /// off-state code; `active` is the resolved policy state (true iff\\n /// a RatePolicy.active entry was used and reason \\u2208 {NONE}).\\n struct ExitFeeQuote {\\n bool active;\\n uint16 rateBps;\\n uint256 feeAmount;\\n uint256 netAmount;\\n address feeReceiver;\\n uint8 reason;\\n }\\n\\n // \\u2500\\u2500\\u2500 Events \\u2500\\u2500\\u2500\\u2500\\u2500\\u2500\\u2500\\u2500\\u2500\\u2500\\u2500\\u2500\\u2500\\u2500\\u2500\\u2500\\u2500\\u2500\\u2500\\u2500\\u2500\\u2500\\u2500\\u2500\\u2500\\u2500\\u2500\\u2500\\u2500\\u2500\\u2500\\u2500\\u2500\\u2500\\u2500\\u2500\\u2500\\u2500\\u2500\\u2500\\u2500\\u2500\\u2500\\u2500\\u2500\\u2500\\u2500\\u2500\\u2500\\u2500\\u2500\\u2500\\u2500\\u2500\\u2500\\u2500\\u2500\\u2500\\u2500\\n\\n event ExitFeeEnabledSet(bool enabled);\\n event FeeReceiverSet(address indexed feeReceiver);\\n event SurfacePolicySet(bytes32 indexed surfaceId, bool active, uint16 rateBps);\\n event SubProductPolicySet(\\n bytes32 indexed surfaceId,\\n address indexed subProduct,\\n bool active,\\n uint16 rateBps\\n );\\n event ActorPolicySet(\\n bytes32 indexed surfaceId,\\n address indexed actor,\\n bool active,\\n uint16 rateBps\\n );\\n event SubProductPolicyRemoved(bytes32 indexed surfaceId, address indexed subProduct);\\n event ActorPolicyRemoved(bytes32 indexed surfaceId, address indexed actor);\\n\\n // \\u2500\\u2500\\u2500 Quote \\u2500\\u2500\\u2500\\u2500\\u2500\\u2500\\u2500\\u2500\\u2500\\u2500\\u2500\\u2500\\u2500\\u2500\\u2500\\u2500\\u2500\\u2500\\u2500\\u2500\\u2500\\u2500\\u2500\\u2500\\u2500\\u2500\\u2500\\u2500\\u2500\\u2500\\u2500\\u2500\\u2500\\u2500\\u2500\\u2500\\u2500\\u2500\\u2500\\u2500\\u2500\\u2500\\u2500\\u2500\\u2500\\u2500\\u2500\\u2500\\u2500\\u2500\\u2500\\u2500\\u2500\\u2500\\u2500\\u2500\\u2500\\u2500\\u2500\\u2500\\n\\n /// @notice Resolve the fee policy for `(surfaceId, subProduct, actor)` and\\n /// compute the fee on `grossAmount`. Reads only; never reverts on\\n /// policy lookups (returns active=false with a SkipReason instead).\\n /// May revert only on internal arithmetic invariants (caught by\\n /// the product's local _safeQuote helper as CONTROLLER_REVERT).\\n function quoteExitFee(\\n bytes32 surfaceId,\\n address subProduct,\\n address actor,\\n uint256 grossAmount\\n ) external view returns (ExitFeeQuote memory);\\n\\n // \\u2500\\u2500\\u2500 State views \\u2500\\u2500\\u2500\\u2500\\u2500\\u2500\\u2500\\u2500\\u2500\\u2500\\u2500\\u2500\\u2500\\u2500\\u2500\\u2500\\u2500\\u2500\\u2500\\u2500\\u2500\\u2500\\u2500\\u2500\\u2500\\u2500\\u2500\\u2500\\u2500\\u2500\\u2500\\u2500\\u2500\\u2500\\u2500\\u2500\\u2500\\u2500\\u2500\\u2500\\u2500\\u2500\\u2500\\u2500\\u2500\\u2500\\u2500\\u2500\\u2500\\u2500\\u2500\\u2500\\u2500\\u2500\\n\\n function exitFeeEnabled() external view returns (bool);\\n\\n function feeReceiver() external view returns (address);\\n\\n function surfacePolicy(bytes32 surfaceId) external view returns (RatePolicy memory);\\n\\n function subProductPolicy(\\n bytes32 surfaceId,\\n address subProduct\\n ) external view returns (RatePolicy memory);\\n\\n function actorPolicy(\\n bytes32 surfaceId,\\n address actor\\n ) external view returns (RatePolicy memory);\\n\\n function subProductKeys(bytes32 surfaceId) external view returns (address[] memory);\\n\\n function actorKeys(bytes32 surfaceId) external view returns (address[] memory);\\n\\n // \\u2500\\u2500\\u2500 Admin \\u2500\\u2500\\u2500\\u2500\\u2500\\u2500\\u2500\\u2500\\u2500\\u2500\\u2500\\u2500\\u2500\\u2500\\u2500\\u2500\\u2500\\u2500\\u2500\\u2500\\u2500\\u2500\\u2500\\u2500\\u2500\\u2500\\u2500\\u2500\\u2500\\u2500\\u2500\\u2500\\u2500\\u2500\\u2500\\u2500\\u2500\\u2500\\u2500\\u2500\\u2500\\u2500\\u2500\\u2500\\u2500\\u2500\\u2500\\u2500\\u2500\\u2500\\u2500\\u2500\\u2500\\u2500\\u2500\\u2500\\u2500\\u2500\\u2500\\u2500\\n\\n function setExitFeeEnabled(bool enabled) external;\\n\\n function setFeeReceiver(address newReceiver) external;\\n\\n function setSurfacePolicy(bytes32 surfaceId, RatePolicy calldata policy) external;\\n\\n function setSubProductPolicy(\\n bytes32 surfaceId,\\n address subProduct,\\n RatePolicy calldata policy\\n ) external;\\n\\n function setSubProductPolicies(\\n bytes32 surfaceId,\\n address[] calldata subProducts,\\n RatePolicy[] calldata policies\\n ) external;\\n\\n function setActorPolicy(bytes32 surfaceId, address actor, RatePolicy calldata policy) external;\\n\\n function setActorPolicies(\\n bytes32 surfaceId,\\n address[] calldata actors,\\n RatePolicy[] calldata policies\\n ) external;\\n\\n function removeSubProductPolicy(bytes32 surfaceId, address subProduct) external;\\n\\n function removeSubProductPolicies(bytes32 surfaceId, address[] calldata subProducts) external;\\n\\n function removeActorPolicy(bytes32 surfaceId, address actor) external;\\n\\n function removeActorPolicies(bytes32 surfaceId, address[] calldata actors) external;\\n}\\n\",\"keccak256\":\"0x8155252fd9fb2b7f853c0397237d359801b5192e6ec4515c28b80e64bbd63206\",\"license\":\"MIT\"}},\"version\":1}", + "bytecode": 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"devdoc": { "kind": "dev", "methods": { @@ -1302,6 +1500,16 @@ "_owner": "Address of the owner. " } }, + "previewZeroCollWithdrawExitFee(address,uint256)": { + "returns": { + "active": " resolved policy active flag (the \"will charge\" test is active && feeAmount>0)", + "feeAmount": " fee that would be taken (0 unless active && rateBps>0 && not dust)", + "feeReceiver": "fee destination from the quote", + "netAmount": " amount the borrower would receive (== grossColl when not charging)", + "rateBps": " resolved rate (0 when not charging / fail-open)", + "reason": " SkipReason (NONE on an honest/charging quote)" + } + }, "setAddresses(address,address,address,address,address,address,address,address,address,address,address,address)": { "details": "initializer function, checks addresses are contracts", "params": { @@ -1345,7 +1553,7 @@ "notice": "Send ETH as collateral to a trove" }, "claimCollateral()": { - "notice": "Claim remaining collateral from a redemption or from a liquidation with ICR > MCR in Recovery Mode" + "notice": "Claim remaining collateral from a redemption or from a liquidation with ICR > MCR in Recovery Mode, charging the ColFee exit fee when the SURFACE_ZERO_CLAIM_SURPLUS policy is active. Fail-open like every ColFee hook: on any ColFee failure (controller missing/ reverting, invalid quote, fee-leg transfer failure inside the pool) the claimant receives the full surplus — a ColFee failure can never brick a claim. The non-charging path is the untouched claimColl flow (plus the ExitFeeSkipped event, same convention as _sendCollWithExitFee)." }, "closeNueTrove((uint256,uint8,bytes32,bytes32))": { "notice": "allows a borrower to repay all debt, withdraw all their collateral, and close their Trove. Requires the borrower have a NUE balance sufficient to repay their trove's debt, excluding gas compensation - i.e. `(debt - 50)` NUE. This method is identical to `closeTrove()`, but operates on NUE tokens instead of ZUSD." @@ -1357,6 +1565,9 @@ "notice": "allows a borrower to repay all debt, withdraw all their collateral, and close their Trove. Requires the borrower have a ZUSD balance sufficient to repay their trove's debt, excluding gas compensation - i.e. `(debt - 50)` ZUSD." }, "constructor": "Constructor ", + "exitFeeController()": { + "notice": "Address of the ColFee controller this instance consults. Held in an EIP-1967-style unstructured slot (no regular-storage footprint)." + }, "getOwner()": { "notice": "Return address of the owner." }, @@ -1366,6 +1577,9 @@ "permit2()": { "notice": "CONSTANT / IMMUTABLE VARIABLE ONLY " }, + "previewZeroCollWithdrawExitFee(address,uint256)": { + "notice": "Read-only preview of the ColFee exit fee on a Zero borrower collateral payout of `grossColl` for `borrower`. Hard-wired to SURFACE_ZERO_WITHDRAW_COLL / subProduct=address(0) / actor=borrower, and routes through the same `_safeQuote` the live hook uses — so the synthesized fail-open quote on controller failure matches execution wei-for-wise. The caller passes `grossColl` (computed from trove state); this is a thin policy lookup, not a re-derivation of the per-function gross." + }, "repayZUSD(uint256,address,address)": { "notice": "Repay ZUSD tokens to a Trove: Burn the repaid ZUSD tokens, and reduce the trove's debt accordingly" }, @@ -1378,6 +1592,9 @@ "setAddresses(address,address,address,address,address,address,address,address,address,address,address,address)": { "notice": "Called only once on init, to set addresses of other Zero contracts. Callable only by owner" }, + "setExitFeeController(address)": { + "notice": "Set (or rotate) the ColFee controller this instance consults. Owner-only, one call, effective for every subsequent exit." + }, "setOwner(address)": { "notice": "Set address of the owner (only owner can call this function)" }, @@ -1396,47 +1613,47 @@ "storageLayout": { "storage": [ { - "astId": 5495, + "astId": 6162, "contract": "contracts/BorrowerOperations.sol:BorrowerOperations", "label": "activePool", "offset": 0, "slot": "0", - "type": "t_contract(IActivePool)19557" + "type": "t_contract(IActivePool)20224" }, { - "astId": 5497, + "astId": 6164, "contract": "contracts/BorrowerOperations.sol:BorrowerOperations", "label": "defaultPool", "offset": 0, "slot": "1", - "type": "t_contract(IDefaultPool)20229" + "type": "t_contract(IDefaultPool)20908" }, { - "astId": 5500, + "astId": 6167, "contract": "contracts/BorrowerOperations.sol:BorrowerOperations", "label": "priceFeed", "offset": 0, "slot": "2", - "type": "t_contract(IPriceFeed)20458" + "type": "t_contract(IPriceFeed)21137" }, { - "astId": 5503, + "astId": 6170, "contract": "contracts/BorrowerOperations.sol:BorrowerOperations", "label": "liquityBaseParams", "offset": 0, "slot": "3", - "type": "t_contract(ILiquityBaseParams)20379" + "type": "t_contract(ILiquityBaseParams)21058" }, { - "astId": 4622, + "astId": 5182, "contract": "contracts/BorrowerOperations.sol:BorrowerOperations", "label": "troveManager", "offset": 0, "slot": "4", - "type": "t_contract(ITroveManager)21635" + "type": "t_contract(ITroveManager)22314" }, { - "astId": 4624, + "astId": 5184, "contract": "contracts/BorrowerOperations.sol:BorrowerOperations", "label": "stabilityPoolAddress", "offset": 0, @@ -1444,7 +1661,7 @@ "type": "t_address" }, { - "astId": 4626, + "astId": 5186, "contract": "contracts/BorrowerOperations.sol:BorrowerOperations", "label": "gasPoolAddress", "offset": 0, @@ -1452,23 +1669,23 @@ "type": "t_address" }, { - "astId": 4628, + "astId": 5188, "contract": "contracts/BorrowerOperations.sol:BorrowerOperations", "label": "collSurplusPool", "offset": 0, "slot": "7", - "type": "t_contract(ICollSurplusPool)20130" + "type": "t_contract(ICollSurplusPool)20809" }, { - "astId": 4630, + "astId": 5190, "contract": "contracts/BorrowerOperations.sol:BorrowerOperations", "label": "zeroStaking", "offset": 0, "slot": "8", - "type": "t_contract(IZEROStaking)21760" + "type": "t_contract(IZEROStaking)22439" }, { - "astId": 4632, + "astId": 5192, "contract": "contracts/BorrowerOperations.sol:BorrowerOperations", "label": "zeroStakingAddress", "offset": 0, @@ -1476,36 +1693,36 @@ "type": "t_address" }, { - "astId": 4634, + "astId": 5194, "contract": "contracts/BorrowerOperations.sol:BorrowerOperations", "label": "zusdToken", "offset": 0, "slot": "10", - "type": "t_contract(IZUSDToken)21842" + "type": "t_contract(IZUSDToken)22521" }, { - "astId": 4636, + "astId": 5196, "contract": "contracts/BorrowerOperations.sol:BorrowerOperations", "label": "sortedTroves", "offset": 0, "slot": "11", - "type": "t_contract(ISortedTroves)20817" + "type": "t_contract(ISortedTroves)21496" }, { - "astId": 4638, + "astId": 5198, "contract": "contracts/BorrowerOperations.sol:BorrowerOperations", "label": "massetManager", "offset": 0, "slot": "12", - "type": "t_contract(IMassetManager)6083" + "type": "t_contract(IMassetManager)6750" }, { - "astId": 4640, + "astId": 5200, "contract": "contracts/BorrowerOperations.sol:BorrowerOperations", "label": "feeDistributor", "offset": 0, "slot": "13", - "type": "t_contract(IFeeDistributor)20298" + "type": "t_contract(IFeeDistributor)20977" } ], "types": { @@ -1514,57 +1731,57 @@ "label": "address", "numberOfBytes": "20" }, - "t_contract(IActivePool)19557": { + "t_contract(IActivePool)20224": { "encoding": "inplace", "label": "contract IActivePool", "numberOfBytes": "20" }, - "t_contract(ICollSurplusPool)20130": { + "t_contract(ICollSurplusPool)20809": { "encoding": "inplace", "label": "contract ICollSurplusPool", "numberOfBytes": "20" }, - "t_contract(IDefaultPool)20229": { + "t_contract(IDefaultPool)20908": { "encoding": "inplace", "label": "contract IDefaultPool", "numberOfBytes": "20" }, - "t_contract(IFeeDistributor)20298": { + "t_contract(IFeeDistributor)20977": { "encoding": "inplace", "label": "contract IFeeDistributor", "numberOfBytes": "20" }, - "t_contract(ILiquityBaseParams)20379": { + "t_contract(ILiquityBaseParams)21058": { "encoding": "inplace", "label": "contract ILiquityBaseParams", "numberOfBytes": "20" }, - "t_contract(IMassetManager)6083": { + "t_contract(IMassetManager)6750": { "encoding": "inplace", "label": "contract IMassetManager", "numberOfBytes": "20" }, - "t_contract(IPriceFeed)20458": { + "t_contract(IPriceFeed)21137": { "encoding": "inplace", "label": "contract IPriceFeed", "numberOfBytes": "20" }, - "t_contract(ISortedTroves)20817": { + "t_contract(ISortedTroves)21496": { "encoding": "inplace", "label": "contract ISortedTroves", "numberOfBytes": "20" }, - "t_contract(ITroveManager)21635": { + "t_contract(ITroveManager)22314": { "encoding": "inplace", "label": "contract ITroveManager", "numberOfBytes": "20" }, - "t_contract(IZEROStaking)21760": { + "t_contract(IZEROStaking)22439": { "encoding": "inplace", "label": "contract IZEROStaking", "numberOfBytes": "20" }, - "t_contract(IZUSDToken)21842": { + "t_contract(IZUSDToken)22521": { "encoding": "inplace", "label": "contract IZUSDToken", "numberOfBytes": "20" diff --git a/deployment/deployments/rskSovrynMainnet/CollSurplusPool.json b/deployment/deployments/rskSovrynMainnet/CollSurplusPool.json index 8d5746e..1b7598b 100644 --- a/deployment/deployments/rskSovrynMainnet/CollSurplusPool.json +++ b/deployment/deployments/rskSovrynMainnet/CollSurplusPool.json @@ -1,277 +1,333 @@ { - "_format": "hh-sol-artifact-1", - "contractName": "CollSurplusPool", - "sourceName": "contracts/CollSurplusPool.sol", - "address": "0x310ec7Fe6e4943DA773De8948255E37CC45e34bb", - "implementation": "0xE9005C36452576eFA74f297906e77381E6878398", - "abi": [ + "address": "0x310ec7Fe6e4943DA773De8948255E37CC45e34bb", + "abi": [ + { + "anonymous": false, + "inputs": [ { - "anonymous": false, - "inputs": [ - { - "indexed": false, - "internalType": "address", - "name": "_newActivePoolAddress", - "type": "address" - } - ], - "name": "ActivePoolAddressChanged", - "type": "event" - }, + "indexed": false, + "internalType": "address", + "name": "_newActivePoolAddress", + "type": "address" + } + ], + "name": "ActivePoolAddressChanged", + "type": "event" + }, + { + "anonymous": false, + "inputs": [ { - "anonymous": false, - "inputs": [ - { - "indexed": false, - "internalType": "address", - "name": "_newBorrowerOperationsAddress", - "type": "address" - } - ], - "name": "BorrowerOperationsAddressChanged", - "type": "event" - }, + "indexed": false, + "internalType": "address", + "name": "_newBorrowerOperationsAddress", + "type": "address" + } + ], + "name": "BorrowerOperationsAddressChanged", + "type": "event" + }, + { + "anonymous": false, + "inputs": [ { - "anonymous": false, - "inputs": [ - { - "indexed": true, - "internalType": "address", - "name": "_account", - "type": "address" - }, - { - "indexed": false, - "internalType": "uint256", - "name": "_newBalance", - "type": "uint256" - } - ], - "name": "CollBalanceUpdated", - "type": "event" + "indexed": true, + "internalType": "address", + "name": "_account", + "type": "address" }, { - "anonymous": false, - "inputs": [ - { - "indexed": false, - "internalType": "address", - "name": "_to", - "type": "address" - }, - { - "indexed": false, - "internalType": "uint256", - "name": "_amount", - "type": "uint256" - } - ], - "name": "EtherSent", - "type": "event" - }, + "indexed": false, + "internalType": "uint256", + "name": "_newBalance", + "type": "uint256" + } + ], + "name": "CollBalanceUpdated", + "type": "event" + }, + { + "anonymous": false, + "inputs": [ { - "anonymous": false, - "inputs": [ - { - "indexed": true, - "internalType": "address", - "name": "previousOwner", - "type": "address" - }, - { - "indexed": true, - "internalType": "address", - "name": "newOwner", - "type": "address" - } - ], - "name": "OwnershipTransferred", - "type": "event" + "indexed": false, + "internalType": "address", + "name": "_to", + "type": "address" }, { - "anonymous": false, - "inputs": [ - { - "indexed": false, - "internalType": "address", - "name": "_newTroveManagerAddress", - "type": "address" - } - ], - "name": "TroveManagerAddressChanged", - "type": "event" - }, + "indexed": false, + "internalType": "uint256", + "name": "_amount", + "type": "uint256" + } + ], + "name": "EtherSent", + "type": "event" + }, + { + "anonymous": false, + "inputs": [ { - "inputs": [], - "name": "NAME", - "outputs": [ - { - "internalType": "string", - "name": "", - "type": "string" - } - ], - "stateMutability": "view", - "type": "function" + "indexed": true, + "internalType": "address", + "name": "previousOwner", + "type": "address" }, { - "inputs": [ - { - "internalType": "address", - "name": "_account", - "type": "address" - }, - { - "internalType": "uint256", - "name": "_amount", - "type": "uint256" - } - ], - "name": "accountSurplus", - "outputs": [], - "stateMutability": "nonpayable", - "type": "function" - }, + "indexed": true, + "internalType": "address", + "name": "newOwner", + "type": "address" + } + ], + "name": "OwnershipTransferred", + "type": "event" + }, + { + "anonymous": false, + "inputs": [ { - "inputs": [], - "name": "activePoolAddress", - "outputs": [ - { - "internalType": "address", - "name": "", - "type": "address" - } - ], - "stateMutability": "view", - "type": "function" - }, + "indexed": false, + "internalType": "address", + "name": "_newTroveManagerAddress", + "type": "address" + } + ], + "name": "TroveManagerAddressChanged", + "type": "event" + }, + { + "inputs": [], + "name": "NAME", + "outputs": [ { - "inputs": [], - "name": "borrowerOperationsAddress", - "outputs": [ - { - "internalType": "address", - "name": "", - "type": "address" - } - ], - "stateMutability": "view", - "type": "function" - }, + "internalType": "string", + "name": "", + "type": "string" + } + ], + "stateMutability": "view", + "type": "function" + }, + { + "inputs": [ { - "inputs": [ - { - "internalType": "address", - "name": "_account", - "type": "address" - } - ], - "name": "claimColl", - "outputs": [], - "stateMutability": "nonpayable", - "type": "function" + "internalType": "address", + "name": "_account", + "type": "address" }, { - "inputs": [ - { - "internalType": "address", - "name": "_account", - "type": "address" - } - ], - "name": "getCollateral", - "outputs": [ - { - "internalType": "uint256", - "name": "", - "type": "uint256" - } - ], - "stateMutability": "view", - "type": "function" - }, + "internalType": "uint256", + "name": "_amount", + "type": "uint256" + } + ], + "name": "accountSurplus", + "outputs": [], + "stateMutability": "nonpayable", + "type": "function" + }, + { + "inputs": [], + "name": "activePoolAddress", + "outputs": [ { - "inputs": [], - "name": "getETH", - "outputs": [ - { - "internalType": "uint256", - "name": "", - "type": "uint256" - } - ], - "stateMutability": "view", - "type": "function" - }, + "internalType": "address", + "name": "", + "type": "address" + } + ], + "stateMutability": "view", + "type": "function" + }, + { + "inputs": [], + "name": "borrowerOperationsAddress", + "outputs": [ + { + "internalType": "address", + "name": "", + "type": "address" + } + ], + "stateMutability": "view", + "type": "function" + }, + { + "inputs": [ + { + "internalType": "address", + "name": "_account", + "type": "address" + } + ], + "name": "claimColl", + "outputs": [], + "stateMutability": "nonpayable", + "type": "function" + }, + { + "inputs": [ { - "inputs": [], - "name": "getOwner", - "outputs": [ - { - "internalType": "address", - "name": "_owner", - "type": "address" - } - ], - "stateMutability": "view", - "type": "function" + "internalType": "address", + "name": "_account", + "type": "address" }, { - "inputs": [ - { - "internalType": "address", - "name": "_borrowerOperationsAddress", - "type": "address" - }, - { - "internalType": "address", - "name": "_troveManagerAddress", - "type": "address" - }, - { - "internalType": "address", - "name": "_activePoolAddress", - "type": "address" - } - ], - "name": "setAddresses", - "outputs": [], - "stateMutability": "nonpayable", - "type": "function" + "internalType": "address", + "name": "_feeReceiver", + "type": "address" }, { - "inputs": [ - { - "internalType": "address", - "name": "_owner", - "type": "address" - } - ], - "name": "setOwner", - "outputs": [], - "stateMutability": "nonpayable", - "type": "function" + "internalType": "uint256", + "name": "_feeAmount", + "type": "uint256" + } + ], + "name": "claimCollWithFee", + "outputs": [ + { + "internalType": "bool", + "name": "feePaid", + "type": "bool" + } + ], + "stateMutability": "nonpayable", + "type": "function" + }, + { + "inputs": [ + { + "internalType": "address", + "name": "_account", + "type": "address" + } + ], + "name": "getCollateral", + "outputs": [ + { + "internalType": "uint256", + "name": "", + "type": "uint256" + } + ], + "stateMutability": "view", + "type": "function" + }, + { + "inputs": [], + "name": "getETH", + "outputs": [ + { + "internalType": "uint256", + "name": "", + "type": "uint256" + } + ], + "stateMutability": "view", + "type": "function" + }, + { + "inputs": [], + "name": "getOwner", + "outputs": [ + { + "internalType": "address", + "name": "_owner", + "type": "address" + } + ], + "stateMutability": "view", + "type": "function" + }, + { + "inputs": [ + { + "internalType": "address", + "name": "_borrowerOperationsAddress", + "type": "address" }, { - "inputs": [], - "name": "troveManagerAddress", - "outputs": [ - { - "internalType": "address", - "name": "", - "type": "address" - } - ], - "stateMutability": "view", - "type": "function" + "internalType": "address", + "name": "_troveManagerAddress", + "type": "address" }, { - "stateMutability": "payable", - "type": "receive" + "internalType": "address", + "name": "_activePoolAddress", + "type": "address" + } + ], + "name": "setAddresses", + "outputs": [], + "stateMutability": "nonpayable", + "type": "function" + }, + { + "inputs": [ + { + "internalType": "address", + "name": "_owner", + "type": "address" + } + ], + "name": "setOwner", + "outputs": [], + "stateMutability": "nonpayable", + "type": "function" + }, + { + "inputs": [], + "name": "troveManagerAddress", + "outputs": [ + { + "internalType": "address", + "name": "", + "type": "address" } + ], + "stateMutability": "view", + "type": "function" + }, + { + "stateMutability": "payable", + "type": "receive" + } + ], + "transactionHash": "0xa567f04ecc90dd28735b61fc4d4bb42ff18ab54e98780ead541d26cb201dcd55", + "receipt": { + "to": null, + "from": "0x163463B7DdBCE853832037A059f5c5E6606bF9c4", + "contractAddress": "0x71A605F81a66eB93Ce9b8091014da858bFD4b6dA", + "transactionIndex": 0, + "gasUsed": "928916", + 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+ "implementation": "0x71A605F81a66eB93Ce9b8091014da858bFD4b6dA" +} \ No newline at end of file diff --git a/deployment/deployments/rskSovrynMainnet/CollSurplusPool_Implementation.json b/deployment/deployments/rskSovrynMainnet/CollSurplusPool_Implementation.json new file mode 100644 index 0000000..03c5199 --- /dev/null +++ b/deployment/deployments/rskSovrynMainnet/CollSurplusPool_Implementation.json @@ -0,0 +1,478 @@ +{ + "address": "0x71A605F81a66eB93Ce9b8091014da858bFD4b6dA", + "abi": [ + { + "anonymous": false, + "inputs": [ + { + "indexed": false, + "internalType": "address", + "name": "_newActivePoolAddress", + "type": "address" + } + ], + "name": "ActivePoolAddressChanged", + "type": "event" + }, + { + "anonymous": false, + "inputs": [ + { + "indexed": false, + "internalType": "address", + "name": "_newBorrowerOperationsAddress", + "type": "address" + } + ], + "name": "BorrowerOperationsAddressChanged", + "type": "event" + }, + { + "anonymous": false, + "inputs": [ + { + "indexed": true, + "internalType": "address", + "name": "_account", + "type": "address" + }, + { + "indexed": false, + "internalType": "uint256", + "name": "_newBalance", + "type": "uint256" + } + ], + "name": "CollBalanceUpdated", + "type": "event" + }, + { + "anonymous": false, + "inputs": [ + { + "indexed": false, + "internalType": "address", + "name": "_to", + "type": "address" + }, + { + "indexed": false, + "internalType": "uint256", + "name": "_amount", + "type": "uint256" + } + ], + "name": "EtherSent", + "type": "event" + }, + { + "anonymous": false, + "inputs": [ + { + "indexed": true, + "internalType": "address", + "name": "previousOwner", + "type": "address" + }, + { + "indexed": true, + "internalType": "address", + "name": "newOwner", + "type": "address" + } + ], + "name": "OwnershipTransferred", + "type": "event" + }, + { + "anonymous": false, + "inputs": [ + { + "indexed": false, + "internalType": "address", + "name": "_newTroveManagerAddress", + "type": "address" + } + ], + "name": "TroveManagerAddressChanged", + "type": "event" + }, + { + "inputs": [], + "name": "NAME", + "outputs": [ + { + "internalType": "string", + "name": "", + "type": "string" + } + ], + "stateMutability": "view", + "type": "function" + }, + { + "inputs": [ + { + "internalType": "address", + "name": "_account", + "type": "address" + }, + { + "internalType": "uint256", + "name": "_amount", + "type": "uint256" + } + ], + "name": "accountSurplus", + "outputs": [], + "stateMutability": "nonpayable", + "type": "function" + }, + { + "inputs": [], + "name": "activePoolAddress", + "outputs": [ + { + "internalType": "address", + "name": "", + "type": "address" + } + ], + "stateMutability": "view", + "type": "function" + }, + { + "inputs": [], + "name": "borrowerOperationsAddress", + "outputs": [ + { + "internalType": "address", + "name": "", + "type": "address" + } + ], + "stateMutability": "view", + "type": "function" + }, + { + "inputs": [ + { + "internalType": "address", + "name": "_account", + "type": "address" + } + ], + "name": "claimColl", + "outputs": [], + "stateMutability": "nonpayable", + "type": "function" + }, + { + "inputs": [ + { + "internalType": "address", + "name": "_account", + "type": "address" + }, + { + "internalType": "address", + "name": "_feeReceiver", + "type": "address" + }, + { + "internalType": "uint256", + "name": "_feeAmount", + "type": "uint256" + } + ], + "name": "claimCollWithFee", + "outputs": [ + { + "internalType": "bool", + "name": "feePaid", + "type": "bool" + } + ], + "stateMutability": "nonpayable", + "type": "function" + }, + { + "inputs": [ + { + "internalType": "address", + "name": "_account", + "type": "address" + } + ], + "name": "getCollateral", + "outputs": [ + { + "internalType": "uint256", + "name": "", + "type": "uint256" + } + ], + "stateMutability": "view", + "type": "function" + }, + { + "inputs": [], + "name": "getETH", + "outputs": [ + { + "internalType": "uint256", + "name": "", + "type": "uint256" + } + ], + "stateMutability": "view", + "type": "function" + }, + { + "inputs": [], + "name": "getOwner", + "outputs": [ + { + "internalType": "address", + "name": "_owner", + "type": "address" + } + ], + "stateMutability": "view", + "type": "function" + }, + { + "inputs": [ + { + "internalType": "address", + "name": "_borrowerOperationsAddress", + "type": "address" + }, + { + "internalType": "address", + "name": "_troveManagerAddress", + "type": "address" + }, + { + "internalType": "address", + "name": "_activePoolAddress", + "type": "address" + } + ], + "name": "setAddresses", + "outputs": [], + "stateMutability": "nonpayable", + "type": "function" + }, + { + "inputs": [ + { + "internalType": "address", + "name": "_owner", + "type": "address" + } + ], + "name": "setOwner", + "outputs": [], + "stateMutability": "nonpayable", + "type": "function" + }, + { + "inputs": [], + "name": "troveManagerAddress", + "outputs": [ + { + "internalType": "address", + "name": "", + "type": "address" + } + ], + "stateMutability": "view", + "type": "function" + }, + { + "stateMutability": "payable", + "type": "receive" + } + ], + "transactionHash": "0xa567f04ecc90dd28735b61fc4d4bb42ff18ab54e98780ead541d26cb201dcd55", + "receipt": { + "to": null, + "from": "0x163463B7DdBCE853832037A059f5c5E6606bF9c4", + "contractAddress": "0x71A605F81a66eB93Ce9b8091014da858bFD4b6dA", + "transactionIndex": 0, + "gasUsed": "928916", + "logsBloom": "0x00000000000000000000000000000000000000000000000000800000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000001000000000000000000000000000000000000020000000000000000000800000000000000000000000000000000400000000000000000000000000000000000000002000000000000000000000000000000000000000000000000000000000000000000000000000000000020000000000000000000000000000000020000000000000000000000000010000020000000040000000001000000000000000000000000000000000000000000000000", + "blockHash": "0x8c1d02ffce87480bffcf2d2331104ecf32f532090d47053209863c518137192a", + "transactionHash": "0xa567f04ecc90dd28735b61fc4d4bb42ff18ab54e98780ead541d26cb201dcd55", + "logs": [ + { + "transactionIndex": 0, + "blockNumber": 9147311, + "transactionHash": "0xa567f04ecc90dd28735b61fc4d4bb42ff18ab54e98780ead541d26cb201dcd55", + "address": "0x71A605F81a66eB93Ce9b8091014da858bFD4b6dA", + "topics": [ + "0x8be0079c531659141344cd1fd0a4f28419497f9722a3daafe3b4186f6b6457e0", + "0x0000000000000000000000000000000000000000000000000000000000000000", + "0x000000000000000000000000163463b7ddbce853832037a059f5c5e6606bf9c4" + ], + "data": "0x", + "logIndex": 0, + "blockHash": "0x8c1d02ffce87480bffcf2d2331104ecf32f532090d47053209863c518137192a" + } + ], + "blockNumber": 9147311, + "cumulativeGasUsed": "928916", + "status": 1, + "byzantium": true + }, + "args": [], + "numDeployments": 1, + "solcInputHash": "633d114159d25b8ab771fb0b9b4a0f8c", + "metadata": "{\"compiler\":{\"version\":\"0.6.11+commit.5ef660b1\"},\"language\":\"Solidity\",\"output\":{\"abi\":[{\"anonymous\":false,\"inputs\":[{\"indexed\":false,\"internalType\":\"address\",\"name\":\"_newActivePoolAddress\",\"type\":\"address\"}],\"name\":\"ActivePoolAddressChanged\",\"type\":\"event\"},{\"anonymous\":false,\"inputs\":[{\"indexed\":false,\"internalType\":\"address\",\"name\":\"_newBorrowerOperationsAddress\",\"type\":\"address\"}],\"name\":\"BorrowerOperationsAddressChanged\",\"type\":\"event\"},{\"anonymous\":false,\"inputs\":[{\"indexed\":true,\"internalType\":\"address\",\"name\":\"_account\",\"type\":\"address\"},{\"indexed\":false,\"internalType\":\"uint256\",\"name\":\"_newBalance\",\"type\":\"uint256\"}],\"name\":\"CollBalanceUpdated\",\"type\":\"event\"},{\"anonymous\":false,\"inputs\":[{\"indexed\":false,\"internalType\":\"address\",\"name\":\"_to\",\"type\":\"address\"},{\"indexed\":false,\"internalType\":\"uint256\",\"name\":\"_amount\",\"type\":\"uint256\"}],\"name\":\"EtherSent\",\"type\":\"event\"},{\"anonymous\":false,\"inputs\":[{\"indexed\":true,\"internalType\":\"address\",\"name\":\"previousOwner\",\"type\":\"address\"},{\"indexed\":true,\"internalType\":\"address\",\"name\":\"newOwner\",\"type\":\"address\"}],\"name\":\"OwnershipTransferred\",\"type\":\"event\"},{\"anonymous\":false,\"inputs\":[{\"indexed\":false,\"internalType\":\"address\",\"name\":\"_newTroveManagerAddress\",\"type\":\"address\"}],\"name\":\"TroveManagerAddressChanged\",\"type\":\"event\"},{\"inputs\":[],\"name\":\"NAME\",\"outputs\":[{\"internalType\":\"string\",\"name\":\"\",\"type\":\"string\"}],\"stateMutability\":\"view\",\"type\":\"function\"},{\"inputs\":[{\"internalType\":\"address\",\"name\":\"_account\",\"type\":\"address\"},{\"internalType\":\"uint256\",\"name\":\"_amount\",\"type\":\"uint256\"}],\"name\":\"accountSurplus\",\"outputs\":[],\"stateMutability\":\"nonpayable\",\"type\":\"function\"},{\"inputs\":[],\"name\":\"activePoolAddress\",\"outputs\":[{\"internalType\":\"address\",\"name\":\"\",\"type\":\"address\"}],\"stateMutability\":\"view\",\"type\":\"function\"},{\"inputs\":[],\"name\":\"borrowerOperationsAddress\",\"outputs\":[{\"internalType\":\"address\",\"name\":\"\",\"type\":\"address\"}],\"stateMutability\":\"view\",\"type\":\"function\"},{\"inputs\":[{\"internalType\":\"address\",\"name\":\"_account\",\"type\":\"address\"}],\"name\":\"claimColl\",\"outputs\":[],\"stateMutability\":\"nonpayable\",\"type\":\"function\"},{\"inputs\":[{\"internalType\":\"address\",\"name\":\"_account\",\"type\":\"address\"},{\"internalType\":\"address\",\"name\":\"_feeReceiver\",\"type\":\"address\"},{\"internalType\":\"uint256\",\"name\":\"_feeAmount\",\"type\":\"uint256\"}],\"name\":\"claimCollWithFee\",\"outputs\":[{\"internalType\":\"bool\",\"name\":\"feePaid\",\"type\":\"bool\"}],\"stateMutability\":\"nonpayable\",\"type\":\"function\"},{\"inputs\":[{\"internalType\":\"address\",\"name\":\"_account\",\"type\":\"address\"}],\"name\":\"getCollateral\",\"outputs\":[{\"internalType\":\"uint256\",\"name\":\"\",\"type\":\"uint256\"}],\"stateMutability\":\"view\",\"type\":\"function\"},{\"inputs\":[],\"name\":\"getETH\",\"outputs\":[{\"internalType\":\"uint256\",\"name\":\"\",\"type\":\"uint256\"}],\"stateMutability\":\"view\",\"type\":\"function\"},{\"inputs\":[],\"name\":\"getOwner\",\"outputs\":[{\"internalType\":\"address\",\"name\":\"_owner\",\"type\":\"address\"}],\"stateMutability\":\"view\",\"type\":\"function\"},{\"inputs\":[{\"internalType\":\"address\",\"name\":\"_borrowerOperationsAddress\",\"type\":\"address\"},{\"internalType\":\"address\",\"name\":\"_troveManagerAddress\",\"type\":\"address\"},{\"internalType\":\"address\",\"name\":\"_activePoolAddress\",\"type\":\"address\"}],\"name\":\"setAddresses\",\"outputs\":[],\"stateMutability\":\"nonpayable\",\"type\":\"function\"},{\"inputs\":[{\"internalType\":\"address\",\"name\":\"_owner\",\"type\":\"address\"}],\"name\":\"setOwner\",\"outputs\":[],\"stateMutability\":\"nonpayable\",\"type\":\"function\"},{\"inputs\":[],\"name\":\"troveManagerAddress\",\"outputs\":[{\"internalType\":\"address\",\"name\":\"\",\"type\":\"address\"}],\"stateMutability\":\"view\",\"type\":\"function\"},{\"stateMutability\":\"payable\",\"type\":\"receive\"}],\"devdoc\":{\"kind\":\"dev\",\"methods\":{\"accountSurplus(address,uint256)\":{\"params\":{\"_account\":\"account to add amount\",\"_amount\":\"amount to add\"}},\"claimColl(address)\":{\"params\":{\"_account\":\"account to send claimable collateral\"}},\"claimCollWithFee(address,address,uint256)\":{\"returns\":{\"feePaid\":\"true iff the fee transfer succeeded (caller emits the matching event)\"}},\"getCollateral(address)\":{\"params\":{\"_account\":\"account to retrieve collateral\"},\"returns\":{\"_0\":\"collateral\"}},\"getOwner()\":{\"returns\":{\"_owner\":\"Address of the owner. \"}},\"setAddresses(address,address,address)\":{\"details\":\"initializer function, checks addresses are contracts\",\"params\":{\"_activePoolAddress\":\"ActivePool contract address\",\"_borrowerOperationsAddress\":\"BorrowerOperations contract address\",\"_troveManagerAddress\":\"TroveManager contract address\"}},\"setOwner(address)\":{\"params\":{\"_owner\":\"Address of the owner. \"}}},\"stateVariables\":{\"FEE_LEG_GAS_CAP\":{\"details\":\"Gas forwarded to the fee receiver's receive hook. Ample for a receiver that only accepts the transfer and logs, while guaranteeing a gas-sinking receiver can never starve the claimant leg: a receiver needing more gas makes the fee leg fail, which is fail-open \\u2014 the claimant then receives the full balance.\"}},\"version\":1},\"userdoc\":{\"kind\":\"user\",\"methods\":{\"accountSurplus(address,uint256)\":{\"notice\":\"adds amount to current account balance. Only callable by TroveManager.\"},\"claimColl(address)\":{\"notice\":\"claims collateral for given account. Only callable by BorrowerOperations.\"},\"claimCollWithFee(address,address,uint256)\":{\"notice\":\"Two-leg claim: `_feeAmount` to `_feeReceiver`, remainder to `_account`. Only callable by BorrowerOperations (the ColFee surplus-claim hook); `claimColl` remains the untouched non-charging path. CEI: all effects (balance zeroing, ETH accounting) precede both external calls, so a reentrant claim sees balances == 0 and reverts. The single `ETH` decrement equals fee + net exactly. The fee leg is fail-open \\u2014 if it fails, the claimant receives the full balance; the user leg stays fail-closed like `claimColl`.\"},\"getETH()\":{\"notice\":\"Returns the ETH state variable at ActivePool address. Not necessarily equal to the raw ether balance - ether can be forcibly sent to contracts. \"},\"getOwner()\":{\"notice\":\"Return address of the owner.\"},\"setAddresses(address,address,address)\":{\"notice\":\"Called only once on init, to set addresses of other Zero contracts. Callable only by owner\"},\"setOwner(address)\":{\"notice\":\"Set address of the owner (only owner can call this function)\"}},\"version\":1}},\"settings\":{\"compilationTarget\":{\"contracts/CollSurplusPool.sol\":\"CollSurplusPool\"},\"evmVersion\":\"istanbul\",\"libraries\":{},\"metadata\":{\"bytecodeHash\":\"ipfs\",\"useLiteralContent\":true},\"optimizer\":{\"enabled\":true,\"runs\":100},\"remappings\":[]},\"sources\":{\"contracts/CollSurplusPool.sol\":{\"content\":\"// SPDX-License-Identifier: MIT\\n\\npragma solidity 0.6.11;\\n\\nimport \\\"./Interfaces/ICollSurplusPool.sol\\\";\\nimport \\\"./Dependencies/SafeMath.sol\\\";\\nimport \\\"./Dependencies/CheckContract.sol\\\";\\nimport \\\"./Dependencies/console.sol\\\";\\nimport \\\"./CollSurplusPoolStorage.sol\\\";\\n\\ncontract CollSurplusPool is CollSurplusPoolStorage, CheckContract, ICollSurplusPool {\\n using SafeMath for uint256;\\n // --- Events ---\\n\\n event BorrowerOperationsAddressChanged(address _newBorrowerOperationsAddress);\\n event TroveManagerAddressChanged(address _newTroveManagerAddress);\\n event ActivePoolAddressChanged(address _newActivePoolAddress);\\n\\n event CollBalanceUpdated(address indexed _account, uint256 _newBalance);\\n event EtherSent(address _to, uint256 _amount);\\n\\n // --- Contract setters ---\\n\\n function setAddresses(\\n address _borrowerOperationsAddress,\\n address _troveManagerAddress,\\n address _activePoolAddress\\n ) external override onlyOwner {\\n checkContract(_borrowerOperationsAddress);\\n checkContract(_troveManagerAddress);\\n checkContract(_activePoolAddress);\\n\\n borrowerOperationsAddress = _borrowerOperationsAddress;\\n troveManagerAddress = _troveManagerAddress;\\n activePoolAddress = _activePoolAddress;\\n\\n emit BorrowerOperationsAddressChanged(_borrowerOperationsAddress);\\n emit TroveManagerAddressChanged(_troveManagerAddress);\\n emit ActivePoolAddressChanged(_activePoolAddress);\\n }\\n\\n /** Returns the ETH state variable at ActivePool address.\\n Not necessarily equal to the raw ether balance - ether can be forcibly sent to contracts. */\\n function getETH() external view override returns (uint256) {\\n return ETH;\\n }\\n\\n function getCollateral(address _account) external view override returns (uint256) {\\n return balances[_account];\\n }\\n\\n // --- Pool functionality ---\\n\\n function accountSurplus(address _account, uint256 _amount) external override {\\n _requireCallerIsTroveManager();\\n\\n uint256 newAmount = balances[_account].add(_amount);\\n balances[_account] = newAmount;\\n\\n emit CollBalanceUpdated(_account, newAmount);\\n }\\n\\n function claimColl(address _account) external override {\\n _requireCallerIsBorrowerOperations();\\n uint256 claimableColl = balances[_account];\\n require(claimableColl > 0, \\\"CollSurplusPool: No collateral available to claim\\\");\\n\\n balances[_account] = 0;\\n emit CollBalanceUpdated(_account, 0);\\n\\n ETH = ETH.sub(claimableColl);\\n emit EtherSent(_account, claimableColl);\\n\\n (bool success, ) = _account.call{ value: claimableColl }(\\\"\\\");\\n require(success, \\\"CollSurplusPool: sending ETH failed\\\");\\n }\\n\\n /// @dev Gas forwarded to the fee receiver's receive hook. Ample for a receiver\\n /// that only accepts the transfer and logs, while guaranteeing a\\n /// gas-sinking receiver can never starve the claimant leg: a receiver\\n /// needing more gas makes the fee leg fail, which is fail-open \\u2014 the\\n /// claimant then receives the full balance.\\n uint256 private constant FEE_LEG_GAS_CAP = 100_000;\\n\\n /// @notice Two-leg claim: `_feeAmount` to `_feeReceiver`, remainder to `_account`.\\n /// Only callable by BorrowerOperations (the ColFee surplus-claim hook);\\n /// `claimColl` remains the untouched non-charging path.\\n /// CEI: all effects (balance zeroing, ETH accounting) precede both external\\n /// calls, so a reentrant claim sees balances == 0 and reverts. The single\\n /// `ETH` decrement equals fee + net exactly. The fee leg is fail-open \\u2014\\n /// if it fails, the claimant receives the full balance; the user leg stays\\n /// fail-closed like `claimColl`.\\n /// @return feePaid true iff the fee transfer succeeded (caller emits the matching event)\\n function claimCollWithFee(\\n address _account,\\n address _feeReceiver,\\n uint256 _feeAmount\\n ) external override returns (bool feePaid) {\\n _requireCallerIsBorrowerOperations();\\n uint256 claimableColl = balances[_account];\\n require(claimableColl > 0, \\\"CollSurplusPool: No collateral available to claim\\\");\\n require(_feeAmount <= claimableColl, \\\"CollSurplusPool: fee exceeds claimable\\\");\\n\\n balances[_account] = 0;\\n emit CollBalanceUpdated(_account, 0);\\n\\n ETH = ETH.sub(claimableColl);\\n\\n (feePaid, ) = _feeReceiver.call{ value: _feeAmount, gas: FEE_LEG_GAS_CAP }(\\\"\\\");\\n uint256 userAmount = feePaid ? claimableColl.sub(_feeAmount) : claimableColl;\\n if (feePaid) {\\n emit EtherSent(_feeReceiver, _feeAmount);\\n }\\n\\n emit EtherSent(_account, userAmount);\\n (bool success, ) = _account.call{ value: userAmount }(\\\"\\\");\\n require(success, \\\"CollSurplusPool: sending ETH failed\\\");\\n }\\n\\n // --- 'require' functions ---\\n\\n function _requireCallerIsBorrowerOperations() internal view {\\n require(\\n msg.sender == borrowerOperationsAddress,\\n \\\"CollSurplusPool: Caller is not Borrower Operations\\\"\\n );\\n }\\n\\n function _requireCallerIsTroveManager() internal view {\\n require(msg.sender == troveManagerAddress, \\\"CollSurplusPool: Caller is not TroveManager\\\");\\n }\\n\\n function _requireCallerIsActivePool() internal view {\\n require(msg.sender == activePoolAddress, \\\"CollSurplusPool: Caller is not Active Pool\\\");\\n }\\n\\n // --- Fallback function ---\\n\\n receive() external payable {\\n _requireCallerIsActivePool();\\n ETH = ETH.add(msg.value);\\n }\\n}\\n\",\"keccak256\":\"0x69166a2816213071d81992a56463274fe1fce95fa7120839f1e60aeef858e79c\",\"license\":\"MIT\"},\"contracts/CollSurplusPoolStorage.sol\":{\"content\":\"// SPDX-License-Identifier: MIT\\n\\npragma solidity 0.6.11;\\n\\nimport \\\"./Dependencies/Ownable.sol\\\";\\n\\ncontract CollSurplusPoolStorage is Ownable {\\n string public constant NAME = \\\"CollSurplusPool\\\";\\n\\n address public borrowerOperationsAddress;\\n address public troveManagerAddress;\\n address public activePoolAddress;\\n\\n // deposited ether tracker\\n uint256 internal ETH;\\n // Collateral surplus claimable by trove owners\\n mapping(address => uint256) internal balances;\\n}\\n\",\"keccak256\":\"0x531d2d05eab2f4a295906f7f027be2f7be80bbecf42d822b740b8708876cd93e\",\"license\":\"MIT\"},\"contracts/Dependencies/CheckContract.sol\":{\"content\":\"// SPDX-License-Identifier: MIT\\n\\npragma solidity 0.6.11;\\n\\n\\ncontract CheckContract {\\n /**\\n * @dev Check that the account is an already deployed non-destroyed contract.\\n * See: https://github.com/OpenZeppelin/openzeppelin-contracts/blob/master/contracts/utils/Address.sol#L12\\n */\\n function checkContract(address _account) internal view {\\n require(_account != address(0), \\\"Account cannot be zero address\\\");\\n\\n uint256 size;\\n // solhint-disable-next-line no-inline-assembly\\n assembly { size := extcodesize(_account) }\\n require(size > 0, \\\"Account code size cannot be zero\\\");\\n }\\n}\\n\",\"keccak256\":\"0x4c7dc4d0197c27ebc7de671b00458a9ff45f57223aeb520e6ddd2eb6d2d89e5c\",\"license\":\"MIT\"},\"contracts/Dependencies/Ownable.sol\":{\"content\":\"// SPDX-License-Identifier: MIT\\n\\npragma solidity 0.6.11;\\n\\n/**\\n * Based on OpenZeppelin's Ownable contract:\\n * https://github.com/OpenZeppelin/openzeppelin-contracts/blob/master/contracts/access/Ownable.sol\\n *\\n * @dev Contract module which provides a basic access control mechanism, where\\n * there is an account (an owner) that can be granted exclusive access to\\n * specific functions.\\n *\\n * This module is used through inheritance. It will make available the modifier\\n * `onlyOwner`, which can be applied to your functions to restrict their use to\\n * the owner.\\n */\\ncontract Ownable {\\n bytes32 private constant KEY_OWNER = keccak256(\\\"key.ownable.owner\\\");\\n\\n event OwnershipTransferred(address indexed previousOwner, address indexed newOwner);\\n\\n /**\\n * @dev Initializes the contract setting the deployer as the initial owner.\\n */\\n constructor () internal {\\n _setOwner(msg.sender);\\n }\\n\\n /**\\n * @dev Throws if called by any account other than the owner.\\n */\\n modifier onlyOwner() {\\n require(msg.sender == getOwner(), \\\"Ownable:: access denied\\\");\\n _;\\n }\\n\\n /**\\n * @notice Set address of the owner.\\n * @param _owner Address of the owner.\\n * */\\n function _setOwner(address _owner) internal {\\n require(_owner != address(0), \\\"Ownable::setOwner: invalid address\\\");\\n emit OwnershipTransferred(getOwner(), _owner);\\n\\n bytes32 key = KEY_OWNER;\\n assembly {\\n sstore(key, _owner)\\n }\\n }\\n\\n /**\\n * @notice Set address of the owner (only owner can call this function)\\n * @param _owner Address of the owner.\\n * */\\n function setOwner(address _owner) public onlyOwner {\\n _setOwner(_owner);\\n }\\n\\n /**\\n * @notice Return address of the owner.\\n * @return _owner Address of the owner.\\n * */\\n function getOwner() public view returns (address _owner) {\\n bytes32 key = KEY_OWNER;\\n assembly {\\n _owner := sload(key)\\n }\\n }\\n}\\n\",\"keccak256\":\"0xb5fc626e0b227fc0feb1d84440585015a0a5f586547d298534a604dd113efec6\",\"license\":\"MIT\"},\"contracts/Dependencies/SafeMath.sol\":{\"content\":\"// SPDX-License-Identifier: MIT\\n\\npragma solidity 0.6.11;\\n\\n/**\\n * Based on OpenZeppelin's SafeMath:\\n * https://github.com/OpenZeppelin/openzeppelin-contracts/blob/master/contracts/math/SafeMath.sol\\n *\\n * @dev Wrappers over Solidity's arithmetic operations with added overflow\\n * checks.\\n *\\n * Arithmetic operations in Solidity wrap on overflow. This can easily result\\n * in bugs, because programmers usually assume that an overflow raises an\\n * error, which is the standard behavior in high level programming languages.\\n * `SafeMath` restores this intuition by reverting the transaction when an\\n * operation overflows.\\n *\\n * Using this library instead of the unchecked operations eliminates an entire\\n * class of bugs, so it's recommended to use it always.\\n */\\nlibrary SafeMath {\\n /**\\n * @dev Returns the addition of two unsigned integers, reverting on\\n * overflow.\\n *\\n * Counterpart to Solidity's `+` operator.\\n *\\n * Requirements:\\n * - Addition cannot overflow.\\n */\\n function add(uint256 a, uint256 b) internal pure returns (uint256) {\\n uint256 c = a + b;\\n require(c >= a, \\\"SafeMath: addition overflow\\\");\\n\\n return c;\\n }\\n\\n /**\\n * @dev Returns the subtraction of two unsigned integers, reverting on\\n * overflow (when the result is negative).\\n *\\n * Counterpart to Solidity's `-` operator.\\n *\\n * Requirements:\\n * - Subtraction cannot overflow.\\n */\\n function sub(uint256 a, uint256 b) internal pure returns (uint256) {\\n return sub(a, b, \\\"SafeMath: subtraction overflow\\\");\\n }\\n\\n /**\\n * @dev Returns the subtraction of two unsigned integers, reverting with custom message on\\n * overflow (when the result is negative).\\n *\\n * Counterpart to Solidity's `-` operator.\\n *\\n * Requirements:\\n * - Subtraction cannot overflow.\\n *\\n * _Available since v2.4.0._\\n */\\n function sub(uint256 a, uint256 b, string memory errorMessage) internal pure returns (uint256) {\\n require(b <= a, errorMessage);\\n uint256 c = a - b;\\n\\n return c;\\n }\\n\\n /**\\n * @dev Returns the multiplication of two unsigned integers, reverting on\\n * overflow.\\n *\\n * Counterpart to Solidity's `*` operator.\\n *\\n * Requirements:\\n * - Multiplication cannot overflow.\\n */\\n function mul(uint256 a, uint256 b) internal pure returns (uint256) {\\n // Gas optimization: this is cheaper than requiring 'a' not being zero, but the\\n // benefit is lost if 'b' is also tested.\\n // See: https://github.com/OpenZeppelin/openzeppelin-contracts/pull/522\\n if (a == 0) {\\n return 0;\\n }\\n\\n uint256 c = a * b;\\n require(c / a == b, \\\"SafeMath: multiplication overflow\\\");\\n\\n return c;\\n }\\n\\n /**\\n * @dev Returns the integer division of two unsigned integers. Reverts on\\n * division by zero. The result is rounded towards zero.\\n *\\n * Counterpart to Solidity's `/` operator. Note: this function uses a\\n * `revert` opcode (which leaves remaining gas untouched) while Solidity\\n * uses an invalid opcode to revert (consuming all remaining gas).\\n *\\n * Requirements:\\n * - The divisor cannot be zero.\\n */\\n function div(uint256 a, uint256 b) internal pure returns (uint256) {\\n return div(a, b, \\\"SafeMath: division by zero\\\");\\n }\\n\\n /**\\n * @dev Returns the integer division of two unsigned integers. Reverts with custom message on\\n * division by zero. The result is rounded towards zero.\\n *\\n * Counterpart to Solidity's `/` operator. Note: this function uses a\\n * `revert` opcode (which leaves remaining gas untouched) while Solidity\\n * uses an invalid opcode to revert (consuming all remaining gas).\\n *\\n * Requirements:\\n * - The divisor cannot be zero.\\n *\\n * _Available since v2.4.0._\\n */\\n function div(uint256 a, uint256 b, string memory errorMessage) internal pure returns (uint256) {\\n // Solidity only automatically asserts when dividing by 0\\n require(b > 0, errorMessage);\\n uint256 c = a / b;\\n // assert(a == b * c + a % b); // There is no case in which this doesn't hold\\n\\n return c;\\n }\\n\\n /**\\n * @dev Returns the remainder of dividing two unsigned integers. (unsigned integer modulo),\\n * Reverts when dividing by zero.\\n *\\n * Counterpart to Solidity's `%` operator. This function uses a `revert`\\n * opcode (which leaves remaining gas untouched) while Solidity uses an\\n * invalid opcode to revert (consuming all remaining gas).\\n *\\n * Requirements:\\n * - The divisor cannot be zero.\\n */\\n function mod(uint256 a, uint256 b) internal pure returns (uint256) {\\n return mod(a, b, \\\"SafeMath: modulo by zero\\\");\\n }\\n\\n /**\\n * @dev Returns the remainder of dividing two unsigned integers. (unsigned integer modulo),\\n * Reverts with custom message when dividing by zero.\\n *\\n * Counterpart to Solidity's `%` operator. This function uses a `revert`\\n * opcode (which leaves remaining gas untouched) while Solidity uses an\\n * invalid opcode to revert (consuming all remaining gas).\\n *\\n * Requirements:\\n * - The divisor cannot be zero.\\n *\\n * _Available since v2.4.0._\\n */\\n function mod(uint256 a, uint256 b, string memory errorMessage) internal pure returns (uint256) {\\n require(b != 0, errorMessage);\\n return a % b;\\n }\\n}\\n\",\"keccak256\":\"0x666b890992a066cc791f36c2975cd595d9761a014c654c385ed36ffaf658f3fd\",\"license\":\"MIT\"},\"contracts/Dependencies/console.sol\":{\"content\":\"// SPDX-License-Identifier: MIT\\n\\npragma solidity 0.6.11;\\n\\n// Buidler's helper contract for console logging\\nlibrary console {\\n\\taddress constant CONSOLE_ADDRESS = address(0x000000000000000000636F6e736F6c652e6c6f67);\\n\\n\\tfunction log() internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log()\\\"));\\n\\t\\tignored;\\n\\t}\\tfunction logInt(int p0) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(int)\\\", p0));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction logUint(uint p0) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(uint)\\\", p0));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction logString(string memory p0) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(string)\\\", p0));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction logBool(bool p0) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(bool)\\\", p0));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction logAddress(address p0) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(address)\\\", p0));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction logBytes(bytes memory p0) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(bytes)\\\", p0));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction logByte(byte p0) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(byte)\\\", p0));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction logBytes1(bytes1 p0) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(bytes1)\\\", p0));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction logBytes2(bytes2 p0) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(bytes2)\\\", p0));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction logBytes3(bytes3 p0) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(bytes3)\\\", p0));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction logBytes4(bytes4 p0) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(bytes4)\\\", p0));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction logBytes5(bytes5 p0) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(bytes5)\\\", p0));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction logBytes6(bytes6 p0) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(bytes6)\\\", p0));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction logBytes7(bytes7 p0) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(bytes7)\\\", p0));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction logBytes8(bytes8 p0) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(bytes8)\\\", p0));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction logBytes9(bytes9 p0) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(bytes9)\\\", p0));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction logBytes10(bytes10 p0) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(bytes10)\\\", p0));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction logBytes11(bytes11 p0) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(bytes11)\\\", p0));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction logBytes12(bytes12 p0) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(bytes12)\\\", p0));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction logBytes13(bytes13 p0) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(bytes13)\\\", p0));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction logBytes14(bytes14 p0) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(bytes14)\\\", p0));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction logBytes15(bytes15 p0) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(bytes15)\\\", p0));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction logBytes16(bytes16 p0) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(bytes16)\\\", p0));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction logBytes17(bytes17 p0) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(bytes17)\\\", p0));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction logBytes18(bytes18 p0) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(bytes18)\\\", p0));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction logBytes19(bytes19 p0) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(bytes19)\\\", p0));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction logBytes20(bytes20 p0) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(bytes20)\\\", p0));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction logBytes21(bytes21 p0) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(bytes21)\\\", p0));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction logBytes22(bytes22 p0) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(bytes22)\\\", p0));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction logBytes23(bytes23 p0) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(bytes23)\\\", p0));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction logBytes24(bytes24 p0) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(bytes24)\\\", p0));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction logBytes25(bytes25 p0) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(bytes25)\\\", p0));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction logBytes26(bytes26 p0) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(bytes26)\\\", p0));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction logBytes27(bytes27 p0) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(bytes27)\\\", p0));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction logBytes28(bytes28 p0) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(bytes28)\\\", p0));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction logBytes29(bytes29 p0) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(bytes29)\\\", p0));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction logBytes30(bytes30 p0) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(bytes30)\\\", p0));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction logBytes31(bytes31 p0) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(bytes31)\\\", p0));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction logBytes32(bytes32 p0) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(bytes32)\\\", p0));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(uint p0) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(uint)\\\", p0));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(string memory p0) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(string)\\\", p0));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(bool p0) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(bool)\\\", p0));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(address p0) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(address)\\\", p0));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(uint p0, uint p1) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(uint,uint)\\\", p0, p1));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(uint p0, string memory p1) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(uint,string)\\\", p0, p1));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(uint p0, bool p1) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(uint,bool)\\\", p0, p1));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(uint p0, address p1) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(uint,address)\\\", p0, p1));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(string memory p0, uint p1) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(string,uint)\\\", p0, p1));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(string memory p0, string memory p1) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(string,string)\\\", p0, p1));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(string memory p0, bool p1) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(string,bool)\\\", p0, p1));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(string memory p0, address p1) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(string,address)\\\", p0, p1));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(bool p0, uint p1) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(bool,uint)\\\", p0, p1));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(bool p0, string memory p1) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(bool,string)\\\", p0, p1));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(bool p0, bool p1) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(bool,bool)\\\", p0, p1));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(bool p0, address p1) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(bool,address)\\\", p0, p1));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(address p0, uint p1) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(address,uint)\\\", p0, p1));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(address p0, string memory p1) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(address,string)\\\", p0, p1));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(address p0, bool p1) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(address,bool)\\\", p0, p1));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(address p0, address p1) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(address,address)\\\", p0, p1));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(uint p0, uint p1, uint p2) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(uint,uint,uint)\\\", p0, p1, p2));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(uint p0, uint p1, string memory p2) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(uint,uint,string)\\\", p0, p1, p2));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(uint p0, uint p1, bool p2) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(uint,uint,bool)\\\", p0, p1, p2));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(uint p0, uint p1, address p2) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(uint,uint,address)\\\", p0, p1, p2));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(uint p0, string memory p1, uint p2) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(uint,string,uint)\\\", p0, p1, p2));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(uint p0, string memory p1, string memory p2) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(uint,string,string)\\\", p0, p1, p2));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(uint p0, string memory p1, bool p2) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(uint,string,bool)\\\", p0, p1, p2));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(uint p0, string memory p1, address p2) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(uint,string,address)\\\", p0, p1, p2));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(uint p0, bool p1, uint p2) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(uint,bool,uint)\\\", p0, p1, p2));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(uint p0, bool p1, string memory p2) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(uint,bool,string)\\\", p0, p1, p2));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(uint p0, bool p1, bool p2) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(uint,bool,bool)\\\", p0, p1, p2));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(uint p0, bool p1, address p2) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(uint,bool,address)\\\", p0, p1, p2));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(uint p0, address p1, uint p2) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(uint,address,uint)\\\", p0, p1, p2));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(uint p0, address p1, string memory p2) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(uint,address,string)\\\", p0, p1, p2));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(uint p0, address p1, bool p2) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(uint,address,bool)\\\", p0, p1, p2));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(uint p0, address p1, address p2) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(uint,address,address)\\\", p0, p1, p2));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(string memory p0, uint p1, uint p2) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(string,uint,uint)\\\", p0, p1, p2));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(string memory p0, uint p1, string memory p2) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(string,uint,string)\\\", p0, p1, p2));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(string memory p0, uint p1, bool p2) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(string,uint,bool)\\\", p0, p1, p2));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(string memory p0, uint p1, address p2) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(string,uint,address)\\\", p0, p1, p2));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(string memory p0, string memory p1, uint p2) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(string,string,uint)\\\", p0, p1, p2));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(string memory p0, string memory p1, string memory p2) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(string,string,string)\\\", p0, p1, p2));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(string memory p0, string memory p1, bool p2) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(string,string,bool)\\\", p0, p1, p2));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(string memory p0, string memory p1, address p2) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(string,string,address)\\\", p0, p1, p2));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(string memory p0, bool p1, uint p2) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(string,bool,uint)\\\", p0, p1, p2));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(string memory p0, bool p1, string memory p2) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(string,bool,string)\\\", p0, p1, p2));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(string memory p0, bool p1, bool p2) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(string,bool,bool)\\\", p0, p1, p2));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(string memory p0, bool p1, address p2) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(string,bool,address)\\\", p0, p1, p2));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(string memory p0, address p1, uint p2) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(string,address,uint)\\\", p0, p1, p2));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(string memory p0, address p1, string memory p2) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(string,address,string)\\\", p0, p1, p2));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(string memory p0, address p1, bool p2) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(string,address,bool)\\\", p0, p1, p2));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(string memory p0, address p1, address p2) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(string,address,address)\\\", p0, p1, p2));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(bool p0, uint p1, uint p2) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(bool,uint,uint)\\\", p0, p1, p2));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(bool p0, uint p1, string memory p2) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(bool,uint,string)\\\", p0, p1, p2));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(bool p0, uint p1, bool p2) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(bool,uint,bool)\\\", p0, p1, p2));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(bool p0, uint p1, address p2) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(bool,uint,address)\\\", p0, p1, p2));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(bool p0, string memory p1, uint p2) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(bool,string,uint)\\\", p0, p1, p2));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(bool p0, string memory p1, string memory p2) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(bool,string,string)\\\", p0, p1, p2));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(bool p0, string memory p1, bool p2) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(bool,string,bool)\\\", p0, p1, p2));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(bool p0, string memory p1, address p2) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(bool,string,address)\\\", p0, p1, p2));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(bool p0, bool p1, uint p2) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(bool,bool,uint)\\\", p0, p1, p2));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(bool p0, bool p1, string memory p2) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(bool,bool,string)\\\", p0, p1, p2));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(bool p0, bool p1, bool p2) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(bool,bool,bool)\\\", p0, p1, p2));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(bool p0, bool p1, address p2) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(bool,bool,address)\\\", p0, p1, p2));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(bool p0, address p1, uint p2) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(bool,address,uint)\\\", p0, p1, p2));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(bool p0, address p1, string memory p2) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(bool,address,string)\\\", p0, p1, p2));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(bool p0, address p1, bool p2) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(bool,address,bool)\\\", p0, p1, p2));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(bool p0, address p1, address p2) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(bool,address,address)\\\", p0, p1, p2));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(address p0, uint p1, uint p2) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(address,uint,uint)\\\", p0, p1, p2));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(address p0, uint p1, string memory p2) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(address,uint,string)\\\", p0, p1, p2));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(address p0, uint p1, bool p2) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(address,uint,bool)\\\", p0, p1, p2));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(address p0, uint p1, address p2) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(address,uint,address)\\\", p0, p1, p2));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(address p0, string memory p1, uint p2) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(address,string,uint)\\\", p0, p1, p2));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(address p0, string memory p1, string memory p2) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(address,string,string)\\\", p0, p1, p2));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(address p0, string memory p1, bool p2) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(address,string,bool)\\\", p0, p1, p2));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(address p0, string memory p1, address p2) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(address,string,address)\\\", p0, p1, p2));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(address p0, bool p1, uint p2) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(address,bool,uint)\\\", p0, p1, p2));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(address p0, bool p1, string memory p2) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(address,bool,string)\\\", p0, p1, p2));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(address p0, bool p1, bool p2) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(address,bool,bool)\\\", p0, p1, p2));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(address p0, bool p1, address p2) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(address,bool,address)\\\", p0, p1, p2));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(address p0, address p1, uint p2) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(address,address,uint)\\\", p0, p1, p2));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(address p0, address p1, string memory p2) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(address,address,string)\\\", p0, p1, p2));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(address p0, address p1, bool p2) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(address,address,bool)\\\", p0, p1, p2));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(address p0, address p1, address p2) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(address,address,address)\\\", p0, p1, p2));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(uint p0, uint p1, uint p2, uint p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(uint,uint,uint,uint)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(uint p0, uint p1, uint p2, string memory p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(uint,uint,uint,string)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(uint p0, uint p1, uint p2, bool p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(uint,uint,uint,bool)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(uint p0, uint p1, uint p2, address p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(uint,uint,uint,address)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(uint p0, uint p1, string memory p2, uint p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(uint,uint,string,uint)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(uint p0, uint p1, string memory p2, string memory p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(uint,uint,string,string)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(uint p0, uint p1, string memory p2, bool p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(uint,uint,string,bool)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(uint p0, uint p1, string memory p2, address p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(uint,uint,string,address)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(uint p0, uint p1, bool p2, uint p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(uint,uint,bool,uint)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(uint p0, uint p1, bool p2, string memory p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(uint,uint,bool,string)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(uint p0, uint p1, bool p2, bool p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(uint,uint,bool,bool)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(uint p0, uint p1, bool p2, address p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(uint,uint,bool,address)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(uint p0, uint p1, address p2, uint p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(uint,uint,address,uint)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(uint p0, uint p1, address p2, string memory p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(uint,uint,address,string)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(uint p0, uint p1, address p2, bool p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(uint,uint,address,bool)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(uint p0, uint p1, address p2, address p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(uint,uint,address,address)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(uint p0, string memory p1, uint p2, uint p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(uint,string,uint,uint)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(uint p0, string memory p1, uint p2, string memory p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(uint,string,uint,string)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(uint p0, string memory p1, uint p2, bool p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(uint,string,uint,bool)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(uint p0, string memory p1, uint p2, address p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(uint,string,uint,address)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(uint p0, string memory p1, string memory p2, uint p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(uint,string,string,uint)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(uint p0, string memory p1, string memory p2, string memory p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(uint,string,string,string)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(uint p0, string memory p1, string memory p2, bool p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(uint,string,string,bool)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(uint p0, string memory p1, string memory p2, address p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(uint,string,string,address)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(uint p0, string memory p1, bool p2, uint p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(uint,string,bool,uint)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(uint p0, string memory p1, bool p2, string memory p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(uint,string,bool,string)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(uint p0, string memory p1, bool p2, bool p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(uint,string,bool,bool)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(uint p0, string memory p1, bool p2, address p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(uint,string,bool,address)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(uint p0, string memory p1, address p2, uint p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(uint,string,address,uint)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(uint p0, string memory p1, address p2, string memory p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(uint,string,address,string)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(uint p0, string memory p1, address p2, bool p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(uint,string,address,bool)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(uint p0, string memory p1, address p2, address p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(uint,string,address,address)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(uint p0, bool p1, uint p2, uint p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(uint,bool,uint,uint)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(uint p0, bool p1, uint p2, string memory p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(uint,bool,uint,string)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(uint p0, bool p1, uint p2, bool p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(uint,bool,uint,bool)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(uint p0, bool p1, uint p2, address p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(uint,bool,uint,address)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(uint p0, bool p1, string memory p2, uint p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(uint,bool,string,uint)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(uint p0, bool p1, string memory p2, string memory p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(uint,bool,string,string)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(uint p0, bool p1, string memory p2, bool p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(uint,bool,string,bool)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(uint p0, bool p1, string memory p2, address p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(uint,bool,string,address)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(uint p0, bool p1, bool p2, uint p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(uint,bool,bool,uint)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(uint p0, bool p1, bool p2, string memory p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(uint,bool,bool,string)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(uint p0, bool p1, bool p2, bool p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(uint,bool,bool,bool)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(uint p0, bool p1, bool p2, address p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(uint,bool,bool,address)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(uint p0, bool p1, address p2, uint p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(uint,bool,address,uint)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(uint p0, bool p1, address p2, string memory p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(uint,bool,address,string)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(uint p0, bool p1, address p2, bool p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(uint,bool,address,bool)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(uint p0, bool p1, address p2, address p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(uint,bool,address,address)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(uint p0, address p1, uint p2, uint p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(uint,address,uint,uint)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(uint p0, address p1, uint p2, string memory p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(uint,address,uint,string)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(uint p0, address p1, uint p2, bool p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(uint,address,uint,bool)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(uint p0, address p1, uint p2, address p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(uint,address,uint,address)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(uint p0, address p1, string memory p2, uint p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(uint,address,string,uint)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(uint p0, address p1, string memory p2, string memory p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(uint,address,string,string)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(uint p0, address p1, string memory p2, bool p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(uint,address,string,bool)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(uint p0, address p1, string memory p2, address p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(uint,address,string,address)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(uint p0, address p1, bool p2, uint p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(uint,address,bool,uint)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(uint p0, address p1, bool p2, string memory p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(uint,address,bool,string)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(uint p0, address p1, bool p2, bool p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(uint,address,bool,bool)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(uint p0, address p1, bool p2, address p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(uint,address,bool,address)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(uint p0, address p1, address p2, uint p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(uint,address,address,uint)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(uint p0, address p1, address p2, string memory p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(uint,address,address,string)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(uint p0, address p1, address p2, bool p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(uint,address,address,bool)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(uint p0, address p1, address p2, address p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(uint,address,address,address)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(string memory p0, uint p1, uint p2, uint p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(string,uint,uint,uint)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(string memory p0, uint p1, uint p2, string memory p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(string,uint,uint,string)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(string memory p0, uint p1, uint p2, bool p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(string,uint,uint,bool)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(string memory p0, uint p1, uint p2, address p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(string,uint,uint,address)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(string memory p0, uint p1, string memory p2, uint p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(string,uint,string,uint)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(string memory p0, uint p1, string memory p2, string memory p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(string,uint,string,string)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(string memory p0, uint p1, string memory p2, bool p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(string,uint,string,bool)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(string memory p0, uint p1, string memory p2, address p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(string,uint,string,address)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(string memory p0, uint p1, bool p2, uint p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(string,uint,bool,uint)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(string memory p0, uint p1, bool p2, string memory p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(string,uint,bool,string)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(string memory p0, uint p1, bool p2, bool p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(string,uint,bool,bool)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(string memory p0, uint p1, bool p2, address p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(string,uint,bool,address)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(string memory p0, uint p1, address p2, uint p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(string,uint,address,uint)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(string memory p0, uint p1, address p2, string memory p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(string,uint,address,string)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(string memory p0, uint p1, address p2, bool p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(string,uint,address,bool)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(string memory p0, uint p1, address p2, address p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(string,uint,address,address)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(string memory p0, string memory p1, uint p2, uint p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(string,string,uint,uint)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(string memory p0, string memory p1, uint p2, string memory p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(string,string,uint,string)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(string memory p0, string memory p1, uint p2, bool p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(string,string,uint,bool)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(string memory p0, string memory p1, uint p2, address p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(string,string,uint,address)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(string memory p0, string memory p1, string memory p2, uint p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(string,string,string,uint)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(string memory p0, string memory p1, string memory p2, string memory p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(string,string,string,string)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(string memory p0, string memory p1, string memory p2, bool p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(string,string,string,bool)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(string memory p0, string memory p1, string memory p2, address p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(string,string,string,address)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(string memory p0, string memory p1, bool p2, uint p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(string,string,bool,uint)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(string memory p0, string memory p1, bool p2, string memory p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(string,string,bool,string)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(string memory p0, string memory p1, bool p2, bool p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(string,string,bool,bool)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(string memory p0, string memory p1, bool p2, address p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(string,string,bool,address)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(string memory p0, string memory p1, address p2, uint p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(string,string,address,uint)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(string memory p0, string memory p1, address p2, string memory p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(string,string,address,string)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(string memory p0, string memory p1, address p2, bool p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(string,string,address,bool)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(string memory p0, string memory p1, address p2, address p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(string,string,address,address)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(string memory p0, bool p1, uint p2, uint p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(string,bool,uint,uint)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(string memory p0, bool p1, uint p2, string memory p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(string,bool,uint,string)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(string memory p0, bool p1, uint p2, bool p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(string,bool,uint,bool)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(string memory p0, bool p1, uint p2, address p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(string,bool,uint,address)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(string memory p0, bool p1, string memory p2, uint p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(string,bool,string,uint)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(string memory p0, bool p1, string memory p2, string memory p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(string,bool,string,string)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(string memory p0, bool p1, string memory p2, bool p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(string,bool,string,bool)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(string memory p0, bool p1, string memory p2, address p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(string,bool,string,address)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(string memory p0, bool p1, bool p2, uint p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(string,bool,bool,uint)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(string memory p0, bool p1, bool p2, string memory p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(string,bool,bool,string)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(string memory p0, bool p1, bool p2, bool p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(string,bool,bool,bool)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(string memory p0, bool p1, bool p2, address p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(string,bool,bool,address)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(string memory p0, bool p1, address p2, uint p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(string,bool,address,uint)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(string memory p0, bool p1, address p2, string memory p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(string,bool,address,string)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(string memory p0, bool p1, address p2, bool p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(string,bool,address,bool)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(string memory p0, bool p1, address p2, address p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(string,bool,address,address)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(string memory p0, address p1, uint p2, uint p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(string,address,uint,uint)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(string memory p0, address p1, uint p2, string memory p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(string,address,uint,string)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(string memory p0, address p1, uint p2, bool p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(string,address,uint,bool)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(string memory p0, address p1, uint p2, address p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(string,address,uint,address)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(string memory p0, address p1, string memory p2, uint p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(string,address,string,uint)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(string memory p0, address p1, string memory p2, string memory p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(string,address,string,string)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(string memory p0, address p1, string memory p2, bool p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(string,address,string,bool)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(string memory p0, address p1, string memory p2, address p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(string,address,string,address)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(string memory p0, address p1, bool p2, uint p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(string,address,bool,uint)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(string memory p0, address p1, bool p2, string memory p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(string,address,bool,string)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(string memory p0, address p1, bool p2, bool p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(string,address,bool,bool)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(string memory p0, address p1, bool p2, address p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(string,address,bool,address)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(string memory p0, address p1, address p2, uint p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(string,address,address,uint)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(string memory p0, address p1, address p2, string memory p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(string,address,address,string)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(string memory p0, address p1, address p2, bool p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(string,address,address,bool)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(string memory p0, address p1, address p2, address p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(string,address,address,address)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(bool p0, uint p1, uint p2, uint p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(bool,uint,uint,uint)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(bool p0, uint p1, uint p2, string memory p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(bool,uint,uint,string)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(bool p0, uint p1, uint p2, bool p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(bool,uint,uint,bool)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(bool p0, uint p1, uint p2, address p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(bool,uint,uint,address)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(bool p0, uint p1, string memory p2, uint p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(bool,uint,string,uint)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(bool p0, uint p1, string memory p2, string memory p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(bool,uint,string,string)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(bool p0, uint p1, string memory p2, bool p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(bool,uint,string,bool)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(bool p0, uint p1, string memory p2, address p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(bool,uint,string,address)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(bool p0, uint p1, bool p2, uint p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(bool,uint,bool,uint)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(bool p0, uint p1, bool p2, string memory p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(bool,uint,bool,string)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(bool p0, uint p1, bool p2, bool p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(bool,uint,bool,bool)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(bool p0, uint p1, bool p2, address p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(bool,uint,bool,address)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(bool p0, uint p1, address p2, uint p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(bool,uint,address,uint)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(bool p0, uint p1, address p2, string memory p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(bool,uint,address,string)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(bool p0, uint p1, address p2, bool p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(bool,uint,address,bool)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(bool p0, uint p1, address p2, address p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(bool,uint,address,address)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(bool p0, string memory p1, uint p2, uint p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(bool,string,uint,uint)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(bool p0, string memory p1, uint p2, string memory p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(bool,string,uint,string)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(bool p0, string memory p1, uint p2, bool p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(bool,string,uint,bool)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(bool p0, string memory p1, uint p2, address p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(bool,string,uint,address)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(bool p0, string memory p1, string memory p2, uint p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(bool,string,string,uint)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(bool p0, string memory p1, string memory p2, string memory p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(bool,string,string,string)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(bool p0, string memory p1, string memory p2, bool p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(bool,string,string,bool)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(bool p0, string memory p1, string memory p2, address p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(bool,string,string,address)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(bool p0, string memory p1, bool p2, uint p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(bool,string,bool,uint)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(bool p0, string memory p1, bool p2, string memory p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(bool,string,bool,string)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(bool p0, string memory p1, bool p2, bool p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(bool,string,bool,bool)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(bool p0, string memory p1, bool p2, address p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(bool,string,bool,address)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(bool p0, string memory p1, address p2, uint p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(bool,string,address,uint)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(bool p0, string memory p1, address p2, string memory p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(bool,string,address,string)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(bool p0, string memory p1, address p2, bool p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(bool,string,address,bool)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(bool p0, string memory p1, address p2, address p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(bool,string,address,address)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(bool p0, bool p1, uint p2, uint p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(bool,bool,uint,uint)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(bool p0, bool p1, uint p2, string memory p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(bool,bool,uint,string)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(bool p0, bool p1, uint p2, bool p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(bool,bool,uint,bool)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(bool p0, bool p1, uint p2, address p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(bool,bool,uint,address)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(bool p0, bool p1, string memory p2, uint p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(bool,bool,string,uint)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(bool p0, bool p1, string memory p2, string memory p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(bool,bool,string,string)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(bool p0, bool p1, string memory p2, bool p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(bool,bool,string,bool)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(bool p0, bool p1, string memory p2, address p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(bool,bool,string,address)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(bool p0, bool p1, bool p2, uint p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(bool,bool,bool,uint)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(bool p0, bool p1, bool p2, string memory p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(bool,bool,bool,string)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(bool p0, bool p1, bool p2, bool p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(bool,bool,bool,bool)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(bool p0, bool p1, bool p2, address p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(bool,bool,bool,address)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(bool p0, bool p1, address p2, uint p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(bool,bool,address,uint)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(bool p0, bool p1, address p2, string memory p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(bool,bool,address,string)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(bool p0, bool p1, address p2, bool p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(bool,bool,address,bool)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(bool p0, bool p1, address p2, address p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(bool,bool,address,address)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(bool p0, address p1, uint p2, uint p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(bool,address,uint,uint)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(bool p0, address p1, uint p2, string memory p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(bool,address,uint,string)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(bool p0, address p1, uint p2, bool p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(bool,address,uint,bool)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(bool p0, address p1, uint p2, address p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(bool,address,uint,address)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(bool p0, address p1, string memory p2, uint p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(bool,address,string,uint)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(bool p0, address p1, string memory p2, string memory p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(bool,address,string,string)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(bool p0, address p1, string memory p2, bool p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(bool,address,string,bool)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(bool p0, address p1, string memory p2, address p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(bool,address,string,address)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(bool p0, address p1, bool p2, uint p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(bool,address,bool,uint)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(bool p0, address p1, bool p2, string memory p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(bool,address,bool,string)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(bool p0, address p1, bool p2, bool p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(bool,address,bool,bool)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(bool p0, address p1, bool p2, address p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(bool,address,bool,address)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(bool p0, address p1, address p2, uint p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(bool,address,address,uint)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(bool p0, address p1, address p2, string memory p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(bool,address,address,string)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(bool p0, address p1, address p2, bool p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(bool,address,address,bool)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(bool p0, address p1, address p2, address p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(bool,address,address,address)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(address p0, uint p1, uint p2, uint p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(address,uint,uint,uint)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(address p0, uint p1, uint p2, string memory p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(address,uint,uint,string)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(address p0, uint p1, uint p2, bool p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(address,uint,uint,bool)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(address p0, uint p1, uint p2, address p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(address,uint,uint,address)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(address p0, uint p1, string memory p2, uint p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(address,uint,string,uint)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(address p0, uint p1, string memory p2, string memory p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(address,uint,string,string)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(address p0, uint p1, string memory p2, bool p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(address,uint,string,bool)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(address p0, uint p1, string memory p2, address p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(address,uint,string,address)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(address p0, uint p1, bool p2, uint p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(address,uint,bool,uint)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(address p0, uint p1, bool p2, string memory p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(address,uint,bool,string)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(address p0, uint p1, bool p2, bool p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(address,uint,bool,bool)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(address p0, uint p1, bool p2, address p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(address,uint,bool,address)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(address p0, uint p1, address p2, uint p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(address,uint,address,uint)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(address p0, uint p1, address p2, string memory p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(address,uint,address,string)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(address p0, uint p1, address p2, bool p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(address,uint,address,bool)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(address p0, uint p1, address p2, address p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(address,uint,address,address)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(address p0, string memory p1, uint p2, uint p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(address,string,uint,uint)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(address p0, string memory p1, uint p2, string memory p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(address,string,uint,string)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(address p0, string memory p1, uint p2, bool p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(address,string,uint,bool)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(address p0, string memory p1, uint p2, address p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(address,string,uint,address)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(address p0, string memory p1, string memory p2, uint p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(address,string,string,uint)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(address p0, string memory p1, string memory p2, string memory p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(address,string,string,string)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(address p0, string memory p1, string memory p2, bool p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(address,string,string,bool)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(address p0, string memory p1, string memory p2, address p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(address,string,string,address)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(address p0, string memory p1, bool p2, uint p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(address,string,bool,uint)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(address p0, string memory p1, bool p2, string memory p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(address,string,bool,string)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(address p0, string memory p1, bool p2, bool p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(address,string,bool,bool)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(address p0, string memory p1, bool p2, address p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(address,string,bool,address)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(address p0, string memory p1, address p2, uint p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(address,string,address,uint)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(address p0, string memory p1, address p2, string memory p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(address,string,address,string)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(address p0, string memory p1, address p2, bool p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(address,string,address,bool)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(address p0, string memory p1, address p2, address p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(address,string,address,address)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(address p0, bool p1, uint p2, uint p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(address,bool,uint,uint)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(address p0, bool p1, uint p2, string memory p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(address,bool,uint,string)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(address p0, bool p1, uint p2, bool p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(address,bool,uint,bool)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(address p0, bool p1, uint p2, address p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(address,bool,uint,address)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(address p0, bool p1, string memory p2, uint p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(address,bool,string,uint)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(address p0, bool p1, string memory p2, string memory p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(address,bool,string,string)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(address p0, bool p1, string memory p2, bool p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(address,bool,string,bool)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(address p0, bool p1, string memory p2, address p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(address,bool,string,address)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(address p0, bool p1, bool p2, uint p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(address,bool,bool,uint)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(address p0, bool p1, bool p2, string memory p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(address,bool,bool,string)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(address p0, bool p1, bool p2, bool p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(address,bool,bool,bool)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(address p0, bool p1, bool p2, address p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(address,bool,bool,address)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(address p0, bool p1, address p2, uint p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(address,bool,address,uint)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(address p0, bool p1, address p2, string memory p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(address,bool,address,string)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(address p0, bool p1, address p2, bool p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(address,bool,address,bool)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(address p0, bool p1, address p2, address p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(address,bool,address,address)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(address p0, address p1, uint p2, uint p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(address,address,uint,uint)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(address p0, address p1, uint p2, string memory p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(address,address,uint,string)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(address p0, address p1, uint p2, bool p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(address,address,uint,bool)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(address p0, address p1, uint p2, address p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(address,address,uint,address)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(address p0, address p1, string memory p2, uint p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(address,address,string,uint)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(address p0, address p1, string memory p2, string memory p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(address,address,string,string)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(address p0, address p1, string memory p2, bool p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(address,address,string,bool)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(address p0, address p1, string memory p2, address p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(address,address,string,address)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(address p0, address p1, bool p2, uint p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(address,address,bool,uint)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(address p0, address p1, bool p2, string memory p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(address,address,bool,string)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(address p0, address p1, bool p2, bool p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(address,address,bool,bool)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(address p0, address p1, bool p2, address p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(address,address,bool,address)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(address p0, address p1, address p2, uint p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(address,address,address,uint)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(address p0, address p1, address p2, string memory p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(address,address,address,string)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(address p0, address p1, address p2, bool p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(address,address,address,bool)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n\\tfunction log(address p0, address p1, address p2, address p3) internal view {\\n\\t\\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\\\"log(address,address,address,address)\\\", p0, p1, p2, p3));\\n\\t\\tignored;\\n\\t}\\n\\n}\\n\",\"keccak256\":\"0x6fa1de4ffe22b8f58b0b64d65db11dd5037be9b9db47b365a72adb489e217000\",\"license\":\"MIT\"},\"contracts/Interfaces/ICollSurplusPool.sol\":{\"content\":\"// SPDX-License-Identifier: MIT\\n\\npragma solidity 0.6.11;\\n\\ninterface ICollSurplusPool {\\n // --- Events ---\\n\\n event BorrowerOperationsAddressChanged(address _newBorrowerOperationsAddress);\\n event TroveManagerAddressChanged(address _newTroveManagerAddress);\\n event ActivePoolAddressChanged(address _newActivePoolAddress);\\n\\n event CollBalanceUpdated(address indexed _account, uint256 _newBalance);\\n event EtherSent(address _to, uint256 _amount);\\n\\n // --- Contract setters ---\\n\\n /**\\n * @notice Called only once on init, to set addresses of other Zero contracts. Callable only by owner\\n * @dev initializer function, checks addresses are contracts\\n * @param _borrowerOperationsAddress BorrowerOperations contract address\\n * @param _troveManagerAddress TroveManager contract address\\n * @param _activePoolAddress ActivePool contract address\\n */\\n function setAddresses(\\n address _borrowerOperationsAddress,\\n address _troveManagerAddress,\\n address _activePoolAddress\\n ) external;\\n\\n /// @notice Not necessarily equal to the raw ether balance - ether can be forcibly sent to contracts.\\n /// @return ETH state variable\\n function getETH() external view returns (uint256);\\n\\n /// @param _account account to retrieve collateral\\n /// @return collateral\\n function getCollateral(address _account) external view returns (uint256);\\n\\n /// @notice adds amount to current account balance. Only callable by TroveManager.\\n /// @param _account account to add amount\\n /// @param _amount amount to add\\n function accountSurplus(address _account, uint256 _amount) external;\\n\\n /// @notice claims collateral for given account. Only callable by BorrowerOperations.\\n /// @param _account account to send claimable collateral\\n function claimColl(address _account) external;\\n\\n /// @notice Two-leg claim: `_feeAmount` to `_feeReceiver`, remainder to `_account`.\\n /// Only callable by BorrowerOperations (the ColFee surplus-claim hook).\\n /// The fee leg is fail-open: if the fee transfer fails, `_account`\\n /// receives the full claimable balance.\\n /// @param _account account whose claimable collateral is paid out\\n /// @param _feeReceiver ColFee fee destination for the fee leg\\n /// @param _feeAmount fee in wei; must not exceed the account's claimable balance\\n /// @return feePaid true iff the fee transfer succeeded (caller emits the matching event)\\n function claimCollWithFee(\\n address _account,\\n address _feeReceiver,\\n uint256 _feeAmount\\n ) external returns (bool feePaid);\\n}\\n\",\"keccak256\":\"0x586351a918f0a702089c357b0e0784f5af5f5873c12923cf74782983963f6846\",\"license\":\"MIT\"}},\"version\":1}", + "bytecode": 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+ "devdoc": { + "kind": "dev", + "methods": { + "accountSurplus(address,uint256)": { + "params": { + "_account": "account to add amount", + "_amount": "amount to add" + } + }, + "claimColl(address)": { + "params": { + "_account": "account to send claimable collateral" + } + }, + "claimCollWithFee(address,address,uint256)": { + "returns": { + "feePaid": "true iff the fee transfer succeeded (caller emits the matching event)" + } + }, + "getCollateral(address)": { + "params": { + "_account": "account to retrieve collateral" + }, + "returns": { + "_0": "collateral" + } + }, + "getOwner()": { + "returns": { + "_owner": "Address of the owner. " + } + }, + "setAddresses(address,address,address)": { + "details": "initializer function, checks addresses are contracts", + "params": { + "_activePoolAddress": "ActivePool contract address", + "_borrowerOperationsAddress": "BorrowerOperations contract address", + "_troveManagerAddress": "TroveManager contract address" + } + }, + "setOwner(address)": { + "params": { + "_owner": "Address of the owner. " + } + } + }, + "stateVariables": { + "FEE_LEG_GAS_CAP": { + "details": "Gas forwarded to the fee receiver's receive hook. Ample for a receiver that only accepts the transfer and logs, while guaranteeing a gas-sinking receiver can never starve the claimant leg: a receiver needing more gas makes the fee leg fail, which is fail-open — the claimant then receives the full balance." + } + }, + "version": 1 + }, + "userdoc": { + "kind": "user", + "methods": { + "accountSurplus(address,uint256)": { + "notice": "adds amount to current account balance. Only callable by TroveManager." + }, + "claimColl(address)": { + "notice": "claims collateral for given account. Only callable by BorrowerOperations." + }, + "claimCollWithFee(address,address,uint256)": { + "notice": "Two-leg claim: `_feeAmount` to `_feeReceiver`, remainder to `_account`. Only callable by BorrowerOperations (the ColFee surplus-claim hook); `claimColl` remains the untouched non-charging path. CEI: all effects (balance zeroing, ETH accounting) precede both external calls, so a reentrant claim sees balances == 0 and reverts. The single `ETH` decrement equals fee + net exactly. The fee leg is fail-open — if it fails, the claimant receives the full balance; the user leg stays fail-closed like `claimColl`." + }, + "getETH()": { + "notice": "Returns the ETH state variable at ActivePool address. Not necessarily equal to the raw ether balance - ether can be forcibly sent to contracts. " + }, + "getOwner()": { + "notice": "Return address of the owner." + }, + "setAddresses(address,address,address)": { + "notice": "Called only once on init, to set addresses of other Zero contracts. Callable only by owner" + }, + "setOwner(address)": { + "notice": "Set address of the owner (only owner can call this function)" + } + }, + "version": 1 + }, + "storageLayout": { + "storage": [ + { + "astId": 5574, + "contract": "contracts/CollSurplusPool.sol:CollSurplusPool", + "label": "borrowerOperationsAddress", + "offset": 0, + "slot": "0", + "type": "t_address" + }, + { + "astId": 5576, + "contract": "contracts/CollSurplusPool.sol:CollSurplusPool", + "label": "troveManagerAddress", + "offset": 0, + "slot": "1", + "type": "t_address" + }, + { + "astId": 5578, + "contract": "contracts/CollSurplusPool.sol:CollSurplusPool", + "label": "activePoolAddress", + "offset": 0, + "slot": "2", + "type": "t_address" + }, + { + "astId": 5580, + "contract": "contracts/CollSurplusPool.sol:CollSurplusPool", + "label": "ETH", + "offset": 0, + "slot": "3", + "type": "t_uint256" + }, + { + "astId": 5584, + "contract": "contracts/CollSurplusPool.sol:CollSurplusPool", + "label": "balances", + "offset": 0, + "slot": "4", + "type": "t_mapping(t_address,t_uint256)" + } + ], + "types": { + "t_address": { + "encoding": "inplace", + "label": "address", + "numberOfBytes": "20" + }, + "t_mapping(t_address,t_uint256)": { + "encoding": "mapping", + "key": "t_address", + "label": "mapping(address => uint256)", + "numberOfBytes": "32", + "value": "t_uint256" + }, + "t_uint256": { + "encoding": "inplace", + "label": "uint256", + "numberOfBytes": "32" + } + } + } +} \ No newline at end of file diff --git a/deployment/deployments/rskSovrynMainnet/solcInputs/633d114159d25b8ab771fb0b9b4a0f8c.json b/deployment/deployments/rskSovrynMainnet/solcInputs/633d114159d25b8ab771fb0b9b4a0f8c.json new file mode 100644 index 0000000..69c3b12 --- /dev/null +++ b/deployment/deployments/rskSovrynMainnet/solcInputs/633d114159d25b8ab771fb0b9b4a0f8c.json @@ -0,0 +1,421 @@ +{ + "language": "Solidity", + "sources": { + "@openzeppelin/contracts/cryptography/ECDSA.sol": { + "content": "// SPDX-License-Identifier: MIT\n\npragma solidity >=0.6.0 <0.8.0;\n\n/**\n * @dev Elliptic Curve Digital Signature Algorithm (ECDSA) operations.\n *\n * These functions can be used to verify that a message was signed by the holder\n * of the private keys of a given address.\n */\nlibrary ECDSA {\n /**\n * @dev Returns the address that signed a hashed message (`hash`) with\n * `signature`. This address can then be used for verification purposes.\n *\n * The `ecrecover` EVM opcode allows for malleable (non-unique) signatures:\n * this function rejects them by requiring the `s` value to be in the lower\n * half order, and the `v` value to be either 27 or 28.\n *\n * IMPORTANT: `hash` _must_ be the result of a hash operation for the\n * verification to be secure: it is possible to craft signatures that\n * recover to arbitrary addresses for non-hashed data. A safe way to ensure\n * this is by receiving a hash of the original message (which may otherwise\n * be too long), and then calling {toEthSignedMessageHash} on it.\n */\n function recover(bytes32 hash, bytes memory signature) internal pure returns (address) {\n // Check the signature length\n if (signature.length != 65) {\n revert(\"ECDSA: invalid signature length\");\n }\n\n // Divide the signature in r, s and v variables\n bytes32 r;\n bytes32 s;\n uint8 v;\n\n // ecrecover takes the signature parameters, and the only way to get them\n // currently is to use assembly.\n // solhint-disable-next-line no-inline-assembly\n assembly {\n r := mload(add(signature, 0x20))\n s := mload(add(signature, 0x40))\n v := byte(0, mload(add(signature, 0x60)))\n }\n\n return recover(hash, v, r, s);\n }\n\n /**\n * @dev Overload of {ECDSA-recover-bytes32-bytes-} that receives the `v`,\n * `r` and `s` signature fields separately.\n */\n function recover(bytes32 hash, uint8 v, bytes32 r, bytes32 s) internal pure returns (address) {\n // EIP-2 still allows signature malleability for ecrecover(). Remove this possibility and make the signature\n // unique. Appendix F in the Ethereum Yellow paper (https://ethereum.github.io/yellowpaper/paper.pdf), defines\n // the valid range for s in (281): 0 < s < secp256k1n ÷ 2 + 1, and for v in (282): v ∈ {27, 28}. Most\n // signatures from current libraries generate a unique signature with an s-value in the lower half order.\n //\n // If your library generates malleable signatures, such as s-values in the upper range, calculate a new s-value\n // with 0xFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFEBAAEDCE6AF48A03BBFD25E8CD0364141 - s1 and flip v from 27 to 28 or\n // vice versa. If your library also generates signatures with 0/1 for v instead 27/28, add 27 to v to accept\n // these malleable signatures as well.\n require(uint256(s) <= 0x7FFFFFFFFFFFFFFFFFFFFFFFFFFFFFFF5D576E7357A4501DDFE92F46681B20A0, \"ECDSA: invalid signature 's' value\");\n require(v == 27 || v == 28, \"ECDSA: invalid signature 'v' value\");\n\n // If the signature is valid (and not malleable), return the signer address\n address signer = ecrecover(hash, v, r, s);\n require(signer != address(0), \"ECDSA: invalid signature\");\n\n return signer;\n }\n\n /**\n * @dev Returns an Ethereum Signed Message, created from a `hash`. This\n * replicates the behavior of the\n * https://github.com/ethereum/wiki/wiki/JSON-RPC#eth_sign[`eth_sign`]\n * JSON-RPC method.\n *\n * See {recover}.\n */\n function toEthSignedMessageHash(bytes32 hash) internal pure returns (bytes32) {\n // 32 is the length in bytes of hash,\n // enforced by the type signature above\n return keccak256(abi.encodePacked(\"\\x19Ethereum Signed Message:\\n32\", hash));\n }\n}\n" + }, + "@openzeppelin/contracts/drafts/EIP712.sol": { + "content": "// SPDX-License-Identifier: MIT\n\npragma solidity >=0.6.0 <0.8.0;\n\n/**\n * @dev https://eips.ethereum.org/EIPS/eip-712[EIP 712] is a standard for hashing and signing of typed structured data.\n *\n * The encoding specified in the EIP is very generic, and such a generic implementation in Solidity is not feasible,\n * thus this contract does not implement the encoding itself. Protocols need to implement the type-specific encoding\n * they need in their contracts using a combination of `abi.encode` and `keccak256`.\n *\n * This contract implements the EIP 712 domain separator ({_domainSeparatorV4}) that is used as part of the encoding\n * scheme, and the final step of the encoding to obtain the message digest that is then signed via ECDSA\n * ({_hashTypedDataV4}).\n *\n * The implementation of the domain separator was designed to be as efficient as possible while still properly updating\n * the chain id to protect against replay attacks on an eventual fork of the chain.\n *\n * NOTE: This contract implements the version of the encoding known as \"v4\", as implemented by the JSON RPC method\n * https://docs.metamask.io/guide/signing-data.html[`eth_signTypedDataV4` in MetaMask].\n *\n * _Available since v3.4._\n */\nabstract contract EIP712 {\n /* solhint-disable var-name-mixedcase */\n // Cache the domain separator as an immutable value, but also store the chain id that it corresponds to, in order to\n // invalidate the cached domain separator if the chain id changes.\n bytes32 private immutable _CACHED_DOMAIN_SEPARATOR;\n uint256 private immutable _CACHED_CHAIN_ID;\n\n bytes32 private immutable _HASHED_NAME;\n bytes32 private immutable _HASHED_VERSION;\n bytes32 private immutable _TYPE_HASH;\n /* solhint-enable var-name-mixedcase */\n\n /**\n * @dev Initializes the domain separator and parameter caches.\n *\n * The meaning of `name` and `version` is specified in\n * https://eips.ethereum.org/EIPS/eip-712#definition-of-domainseparator[EIP 712]:\n *\n * - `name`: the user readable name of the signing domain, i.e. the name of the DApp or the protocol.\n * - `version`: the current major version of the signing domain.\n *\n * NOTE: These parameters cannot be changed except through a xref:learn::upgrading-smart-contracts.adoc[smart\n * contract upgrade].\n */\n constructor(string memory name, string memory version) internal {\n bytes32 hashedName = keccak256(bytes(name));\n bytes32 hashedVersion = keccak256(bytes(version));\n bytes32 typeHash = keccak256(\"EIP712Domain(string name,string version,uint256 chainId,address verifyingContract)\");\n _HASHED_NAME = hashedName;\n _HASHED_VERSION = hashedVersion;\n _CACHED_CHAIN_ID = _getChainId();\n _CACHED_DOMAIN_SEPARATOR = _buildDomainSeparator(typeHash, hashedName, hashedVersion);\n _TYPE_HASH = typeHash;\n }\n\n /**\n * @dev Returns the domain separator for the current chain.\n */\n function _domainSeparatorV4() internal view virtual returns (bytes32) {\n if (_getChainId() == _CACHED_CHAIN_ID) {\n return _CACHED_DOMAIN_SEPARATOR;\n } else {\n return _buildDomainSeparator(_TYPE_HASH, _HASHED_NAME, _HASHED_VERSION);\n }\n }\n\n function _buildDomainSeparator(bytes32 typeHash, bytes32 name, bytes32 version) private view returns (bytes32) {\n return keccak256(\n abi.encode(\n typeHash,\n name,\n version,\n _getChainId(),\n address(this)\n )\n );\n }\n\n /**\n * @dev Given an already https://eips.ethereum.org/EIPS/eip-712#definition-of-hashstruct[hashed struct], this\n * function returns the hash of the fully encoded EIP712 message for this domain.\n *\n * This hash can be used together with {ECDSA-recover} to obtain the signer of a message. For example:\n *\n * ```solidity\n * bytes32 digest = _hashTypedDataV4(keccak256(abi.encode(\n * keccak256(\"Mail(address to,string contents)\"),\n * mailTo,\n * keccak256(bytes(mailContents))\n * )));\n * address signer = ECDSA.recover(digest, signature);\n * ```\n */\n function _hashTypedDataV4(bytes32 structHash) internal view virtual returns (bytes32) {\n return keccak256(abi.encodePacked(\"\\x19\\x01\", _domainSeparatorV4(), structHash));\n }\n\n function _getChainId() private view returns (uint256 chainId) {\n this; // silence state mutability warning without generating bytecode - see https://github.com/ethereum/solidity/issues/2691\n // solhint-disable-next-line no-inline-assembly\n assembly {\n chainId := chainid()\n }\n }\n}\n" + }, + "@openzeppelin/contracts/drafts/ERC20Permit.sol": { + "content": "// SPDX-License-Identifier: MIT\n\npragma solidity >=0.6.5 <0.8.0;\n\nimport \"../token/ERC20/ERC20.sol\";\nimport \"./IERC20Permit.sol\";\nimport \"../cryptography/ECDSA.sol\";\nimport \"../utils/Counters.sol\";\nimport \"./EIP712.sol\";\n\n/**\n * @dev Implementation of the ERC20 Permit extension allowing approvals to be made via signatures, as defined in\n * https://eips.ethereum.org/EIPS/eip-2612[EIP-2612].\n *\n * Adds the {permit} method, which can be used to change an account's ERC20 allowance (see {IERC20-allowance}) by\n * presenting a message signed by the account. By not relying on `{IERC20-approve}`, the token holder account doesn't\n * need to send a transaction, and thus is not required to hold Ether at all.\n *\n * _Available since v3.4._\n */\nabstract contract ERC20Permit is ERC20, IERC20Permit, EIP712 {\n using Counters for Counters.Counter;\n\n mapping (address => Counters.Counter) private _nonces;\n\n // solhint-disable-next-line var-name-mixedcase\n bytes32 private immutable _PERMIT_TYPEHASH = keccak256(\"Permit(address owner,address spender,uint256 value,uint256 nonce,uint256 deadline)\");\n\n /**\n * @dev Initializes the {EIP712} domain separator using the `name` parameter, and setting `version` to `\"1\"`.\n *\n * It's a good idea to use the same `name` that is defined as the ERC20 token name.\n */\n constructor(string memory name) internal EIP712(name, \"1\") {\n }\n\n /**\n * @dev See {IERC20Permit-permit}.\n */\n function permit(address owner, address spender, uint256 value, uint256 deadline, uint8 v, bytes32 r, bytes32 s) public virtual override {\n // solhint-disable-next-line not-rely-on-time\n require(block.timestamp <= deadline, \"ERC20Permit: expired deadline\");\n\n bytes32 structHash = keccak256(\n abi.encode(\n _PERMIT_TYPEHASH,\n owner,\n spender,\n value,\n _nonces[owner].current(),\n deadline\n )\n );\n\n bytes32 hash = _hashTypedDataV4(structHash);\n\n address signer = ECDSA.recover(hash, v, r, s);\n require(signer == owner, \"ERC20Permit: invalid signature\");\n\n _nonces[owner].increment();\n _approve(owner, spender, value);\n }\n\n /**\n * @dev See {IERC20Permit-nonces}.\n */\n function nonces(address owner) public view override returns (uint256) {\n return _nonces[owner].current();\n }\n\n /**\n * @dev See {IERC20Permit-DOMAIN_SEPARATOR}.\n */\n // solhint-disable-next-line func-name-mixedcase\n function DOMAIN_SEPARATOR() external view override returns (bytes32) {\n return _domainSeparatorV4();\n }\n}\n" + }, + "@openzeppelin/contracts/drafts/IERC20Permit.sol": { + "content": "// SPDX-License-Identifier: MIT\n\npragma solidity >=0.6.0 <0.8.0;\n\n/**\n * @dev Interface of the ERC20 Permit extension allowing approvals to be made via signatures, as defined in\n * https://eips.ethereum.org/EIPS/eip-2612[EIP-2612].\n *\n * Adds the {permit} method, which can be used to change an account's ERC20 allowance (see {IERC20-allowance}) by\n * presenting a message signed by the account. By not relying on `{IERC20-approve}`, the token holder account doesn't\n * need to send a transaction, and thus is not required to hold Ether at all.\n */\ninterface IERC20Permit {\n /**\n * @dev Sets `value` as the allowance of `spender` over `owner`'s tokens,\n * given `owner`'s signed approval.\n *\n * IMPORTANT: The same issues {IERC20-approve} has related to transaction\n * ordering also apply here.\n *\n * Emits an {Approval} event.\n *\n * Requirements:\n *\n * - `spender` cannot be the zero address.\n * - `deadline` must be a timestamp in the future.\n * - `v`, `r` and `s` must be a valid `secp256k1` signature from `owner`\n * over the EIP712-formatted function arguments.\n * - the signature must use ``owner``'s current nonce (see {nonces}).\n *\n * For more information on the signature format, see the\n * https://eips.ethereum.org/EIPS/eip-2612#specification[relevant EIP\n * section].\n */\n function permit(address owner, address spender, uint256 value, uint256 deadline, uint8 v, bytes32 r, bytes32 s) external;\n\n /**\n * @dev Returns the current nonce for `owner`. This value must be\n * included whenever a signature is generated for {permit}.\n *\n * Every successful call to {permit} increases ``owner``'s nonce by one. This\n * prevents a signature from being used multiple times.\n */\n function nonces(address owner) external view returns (uint256);\n\n /**\n * @dev Returns the domain separator used in the encoding of the signature for `permit`, as defined by {EIP712}.\n */\n // solhint-disable-next-line func-name-mixedcase\n function DOMAIN_SEPARATOR() external view returns (bytes32);\n}\n" + }, + "@openzeppelin/contracts/math/SafeMath.sol": { + "content": "// SPDX-License-Identifier: MIT\n\npragma solidity >=0.6.0 <0.8.0;\n\n/**\n * @dev Wrappers over Solidity's arithmetic operations with added overflow\n * checks.\n *\n * Arithmetic operations in Solidity wrap on overflow. This can easily result\n * in bugs, because programmers usually assume that an overflow raises an\n * error, which is the standard behavior in high level programming languages.\n * `SafeMath` restores this intuition by reverting the transaction when an\n * operation overflows.\n *\n * Using this library instead of the unchecked operations eliminates an entire\n * class of bugs, so it's recommended to use it always.\n */\nlibrary SafeMath {\n /**\n * @dev Returns the addition of two unsigned integers, with an overflow flag.\n *\n * _Available since v3.4._\n */\n function tryAdd(uint256 a, uint256 b) internal pure returns (bool, uint256) {\n uint256 c = a + b;\n if (c < a) return (false, 0);\n return (true, c);\n }\n\n /**\n * @dev Returns the substraction of two unsigned integers, with an overflow flag.\n *\n * _Available since v3.4._\n */\n function trySub(uint256 a, uint256 b) internal pure returns (bool, uint256) {\n if (b > a) return (false, 0);\n return (true, a - b);\n }\n\n /**\n * @dev Returns the multiplication of two unsigned integers, with an overflow flag.\n *\n * _Available since v3.4._\n */\n function tryMul(uint256 a, uint256 b) internal pure returns (bool, uint256) {\n // Gas optimization: this is cheaper than requiring 'a' not being zero, but the\n // benefit is lost if 'b' is also tested.\n // See: https://github.com/OpenZeppelin/openzeppelin-contracts/pull/522\n if (a == 0) return (true, 0);\n uint256 c = a * b;\n if (c / a != b) return (false, 0);\n return (true, c);\n }\n\n /**\n * @dev Returns the division of two unsigned integers, with a division by zero flag.\n *\n * _Available since v3.4._\n */\n function tryDiv(uint256 a, uint256 b) internal pure returns (bool, uint256) {\n if (b == 0) return (false, 0);\n return (true, a / b);\n }\n\n /**\n * @dev Returns the remainder of dividing two unsigned integers, with a division by zero flag.\n *\n * _Available since v3.4._\n */\n function tryMod(uint256 a, uint256 b) internal pure returns (bool, uint256) {\n if (b == 0) return (false, 0);\n return (true, a % b);\n }\n\n /**\n * @dev Returns the addition of two unsigned integers, reverting on\n * overflow.\n *\n * Counterpart to Solidity's `+` operator.\n *\n * Requirements:\n *\n * - Addition cannot overflow.\n */\n function add(uint256 a, uint256 b) internal pure returns (uint256) {\n uint256 c = a + b;\n require(c >= a, \"SafeMath: addition overflow\");\n return c;\n }\n\n /**\n * @dev Returns the subtraction of two unsigned integers, reverting on\n * overflow (when the result is negative).\n *\n * Counterpart to Solidity's `-` operator.\n *\n * Requirements:\n *\n * - Subtraction cannot overflow.\n */\n function sub(uint256 a, uint256 b) internal pure returns (uint256) {\n require(b <= a, \"SafeMath: subtraction overflow\");\n return a - b;\n }\n\n /**\n * @dev Returns the multiplication of two unsigned integers, reverting on\n * overflow.\n *\n * Counterpart to Solidity's `*` operator.\n *\n * Requirements:\n *\n * - Multiplication cannot overflow.\n */\n function mul(uint256 a, uint256 b) internal pure returns (uint256) {\n if (a == 0) return 0;\n uint256 c = a * b;\n require(c / a == b, \"SafeMath: multiplication overflow\");\n return c;\n }\n\n /**\n * @dev Returns the integer division of two unsigned integers, reverting on\n * division by zero. The result is rounded towards zero.\n *\n * Counterpart to Solidity's `/` operator. Note: this function uses a\n * `revert` opcode (which leaves remaining gas untouched) while Solidity\n * uses an invalid opcode to revert (consuming all remaining gas).\n *\n * Requirements:\n *\n * - The divisor cannot be zero.\n */\n function div(uint256 a, uint256 b) internal pure returns (uint256) {\n require(b > 0, \"SafeMath: division by zero\");\n return a / b;\n }\n\n /**\n * @dev Returns the remainder of dividing two unsigned integers. (unsigned integer modulo),\n * reverting when dividing by zero.\n *\n * Counterpart to Solidity's `%` operator. This function uses a `revert`\n * opcode (which leaves remaining gas untouched) while Solidity uses an\n * invalid opcode to revert (consuming all remaining gas).\n *\n * Requirements:\n *\n * - The divisor cannot be zero.\n */\n function mod(uint256 a, uint256 b) internal pure returns (uint256) {\n require(b > 0, \"SafeMath: modulo by zero\");\n return a % b;\n }\n\n /**\n * @dev Returns the subtraction of two unsigned integers, reverting with custom message on\n * overflow (when the result is negative).\n *\n * CAUTION: This function is deprecated because it requires allocating memory for the error\n * message unnecessarily. For custom revert reasons use {trySub}.\n *\n * Counterpart to Solidity's `-` operator.\n *\n * Requirements:\n *\n * - Subtraction cannot overflow.\n */\n function sub(uint256 a, uint256 b, string memory errorMessage) internal pure returns (uint256) {\n require(b <= a, errorMessage);\n return a - b;\n }\n\n /**\n * @dev Returns the integer division of two unsigned integers, reverting with custom message on\n * division by zero. The result is rounded towards zero.\n *\n * CAUTION: This function is deprecated because it requires allocating memory for the error\n * message unnecessarily. For custom revert reasons use {tryDiv}.\n *\n * Counterpart to Solidity's `/` operator. Note: this function uses a\n * `revert` opcode (which leaves remaining gas untouched) while Solidity\n * uses an invalid opcode to revert (consuming all remaining gas).\n *\n * Requirements:\n *\n * - The divisor cannot be zero.\n */\n function div(uint256 a, uint256 b, string memory errorMessage) internal pure returns (uint256) {\n require(b > 0, errorMessage);\n return a / b;\n }\n\n /**\n * @dev Returns the remainder of dividing two unsigned integers. (unsigned integer modulo),\n * reverting with custom message when dividing by zero.\n *\n * CAUTION: This function is deprecated because it requires allocating memory for the error\n * message unnecessarily. For custom revert reasons use {tryMod}.\n *\n * Counterpart to Solidity's `%` operator. This function uses a `revert`\n * opcode (which leaves remaining gas untouched) while Solidity uses an\n * invalid opcode to revert (consuming all remaining gas).\n *\n * Requirements:\n *\n * - The divisor cannot be zero.\n */\n function mod(uint256 a, uint256 b, string memory errorMessage) internal pure returns (uint256) {\n require(b > 0, errorMessage);\n return a % b;\n }\n}\n" + }, + "@openzeppelin/contracts/token/ERC20/ERC20.sol": { + "content": "// SPDX-License-Identifier: MIT\n\npragma solidity >=0.6.0 <0.8.0;\n\nimport \"../../utils/Context.sol\";\nimport \"./IERC20.sol\";\nimport \"../../math/SafeMath.sol\";\n\n/**\n * @dev Implementation of the {IERC20} interface.\n *\n * This implementation is agnostic to the way tokens are created. This means\n * that a supply mechanism has to be added in a derived contract using {_mint}.\n * For a generic mechanism see {ERC20PresetMinterPauser}.\n *\n * TIP: For a detailed writeup see our guide\n * https://forum.zeppelin.solutions/t/how-to-implement-erc20-supply-mechanisms/226[How\n * to implement supply mechanisms].\n *\n * We have followed general OpenZeppelin guidelines: functions revert instead\n * of returning `false` on failure. This behavior is nonetheless conventional\n * and does not conflict with the expectations of ERC20 applications.\n *\n * Additionally, an {Approval} event is emitted on calls to {transferFrom}.\n * This allows applications to reconstruct the allowance for all accounts just\n * by listening to said events. Other implementations of the EIP may not emit\n * these events, as it isn't required by the specification.\n *\n * Finally, the non-standard {decreaseAllowance} and {increaseAllowance}\n * functions have been added to mitigate the well-known issues around setting\n * allowances. See {IERC20-approve}.\n */\ncontract ERC20 is Context, IERC20 {\n using SafeMath for uint256;\n\n mapping (address => uint256) private _balances;\n\n mapping (address => mapping (address => uint256)) private _allowances;\n\n uint256 private _totalSupply;\n\n string private _name;\n string private _symbol;\n uint8 private _decimals;\n\n /**\n * @dev Sets the values for {name} and {symbol}, initializes {decimals} with\n * a default value of 18.\n *\n * To select a different value for {decimals}, use {_setupDecimals}.\n *\n * All three of these values are immutable: they can only be set once during\n * construction.\n */\n constructor (string memory name_, string memory symbol_) public {\n _name = name_;\n _symbol = symbol_;\n _decimals = 18;\n }\n\n /**\n * @dev Returns the name of the token.\n */\n function name() public view virtual returns (string memory) {\n return _name;\n }\n\n /**\n * @dev Returns the symbol of the token, usually a shorter version of the\n * name.\n */\n function symbol() public view virtual returns (string memory) {\n return _symbol;\n }\n\n /**\n * @dev Returns the number of decimals used to get its user representation.\n * For example, if `decimals` equals `2`, a balance of `505` tokens should\n * be displayed to a user as `5,05` (`505 / 10 ** 2`).\n *\n * Tokens usually opt for a value of 18, imitating the relationship between\n * Ether and Wei. This is the value {ERC20} uses, unless {_setupDecimals} is\n * called.\n *\n * NOTE: This information is only used for _display_ purposes: it in\n * no way affects any of the arithmetic of the contract, including\n * {IERC20-balanceOf} and {IERC20-transfer}.\n */\n function decimals() public view virtual returns (uint8) {\n return _decimals;\n }\n\n /**\n * @dev See {IERC20-totalSupply}.\n */\n function totalSupply() public view virtual override returns (uint256) {\n return _totalSupply;\n }\n\n /**\n * @dev See {IERC20-balanceOf}.\n */\n function balanceOf(address account) public view virtual override returns (uint256) {\n return _balances[account];\n }\n\n /**\n * @dev See {IERC20-transfer}.\n *\n * Requirements:\n *\n * - `recipient` cannot be the zero address.\n * - the caller must have a balance of at least `amount`.\n */\n function transfer(address recipient, uint256 amount) public virtual override returns (bool) {\n _transfer(_msgSender(), recipient, amount);\n return true;\n }\n\n /**\n * @dev See {IERC20-allowance}.\n */\n function allowance(address owner, address spender) public view virtual override returns (uint256) {\n return _allowances[owner][spender];\n }\n\n /**\n * @dev See {IERC20-approve}.\n *\n * Requirements:\n *\n * - `spender` cannot be the zero address.\n */\n function approve(address spender, uint256 amount) public virtual override returns (bool) {\n _approve(_msgSender(), spender, amount);\n return true;\n }\n\n /**\n * @dev See {IERC20-transferFrom}.\n *\n * Emits an {Approval} event indicating the updated allowance. This is not\n * required by the EIP. See the note at the beginning of {ERC20}.\n *\n * Requirements:\n *\n * - `sender` and `recipient` cannot be the zero address.\n * - `sender` must have a balance of at least `amount`.\n * - the caller must have allowance for ``sender``'s tokens of at least\n * `amount`.\n */\n function transferFrom(address sender, address recipient, uint256 amount) public virtual override returns (bool) {\n _transfer(sender, recipient, amount);\n _approve(sender, _msgSender(), _allowances[sender][_msgSender()].sub(amount, \"ERC20: transfer amount exceeds allowance\"));\n return true;\n }\n\n /**\n * @dev Atomically increases the allowance granted to `spender` by the caller.\n *\n * This is an alternative to {approve} that can be used as a mitigation for\n * problems described in {IERC20-approve}.\n *\n * Emits an {Approval} event indicating the updated allowance.\n *\n * Requirements:\n *\n * - `spender` cannot be the zero address.\n */\n function increaseAllowance(address spender, uint256 addedValue) public virtual returns (bool) {\n _approve(_msgSender(), spender, _allowances[_msgSender()][spender].add(addedValue));\n return true;\n }\n\n /**\n * @dev Atomically decreases the allowance granted to `spender` by the caller.\n *\n * This is an alternative to {approve} that can be used as a mitigation for\n * problems described in {IERC20-approve}.\n *\n * Emits an {Approval} event indicating the updated allowance.\n *\n * Requirements:\n *\n * - `spender` cannot be the zero address.\n * - `spender` must have allowance for the caller of at least\n * `subtractedValue`.\n */\n function decreaseAllowance(address spender, uint256 subtractedValue) public virtual returns (bool) {\n _approve(_msgSender(), spender, _allowances[_msgSender()][spender].sub(subtractedValue, \"ERC20: decreased allowance below zero\"));\n return true;\n }\n\n /**\n * @dev Moves tokens `amount` from `sender` to `recipient`.\n *\n * This is internal function is equivalent to {transfer}, and can be used to\n * e.g. implement automatic token fees, slashing mechanisms, etc.\n *\n * Emits a {Transfer} event.\n *\n * Requirements:\n *\n * - `sender` cannot be the zero address.\n * - `recipient` cannot be the zero address.\n * - `sender` must have a balance of at least `amount`.\n */\n function _transfer(address sender, address recipient, uint256 amount) internal virtual {\n require(sender != address(0), \"ERC20: transfer from the zero address\");\n require(recipient != address(0), \"ERC20: transfer to the zero address\");\n\n _beforeTokenTransfer(sender, recipient, amount);\n\n _balances[sender] = _balances[sender].sub(amount, \"ERC20: transfer amount exceeds balance\");\n _balances[recipient] = _balances[recipient].add(amount);\n emit Transfer(sender, recipient, amount);\n }\n\n /** @dev Creates `amount` tokens and assigns them to `account`, increasing\n * the total supply.\n *\n * Emits a {Transfer} event with `from` set to the zero address.\n *\n * Requirements:\n *\n * - `to` cannot be the zero address.\n */\n function _mint(address account, uint256 amount) internal virtual {\n require(account != address(0), \"ERC20: mint to the zero address\");\n\n _beforeTokenTransfer(address(0), account, amount);\n\n _totalSupply = _totalSupply.add(amount);\n _balances[account] = _balances[account].add(amount);\n emit Transfer(address(0), account, amount);\n }\n\n /**\n * @dev Destroys `amount` tokens from `account`, reducing the\n * total supply.\n *\n * Emits a {Transfer} event with `to` set to the zero address.\n *\n * Requirements:\n *\n * - `account` cannot be the zero address.\n * - `account` must have at least `amount` tokens.\n */\n function _burn(address account, uint256 amount) internal virtual {\n require(account != address(0), \"ERC20: burn from the zero address\");\n\n _beforeTokenTransfer(account, address(0), amount);\n\n _balances[account] = _balances[account].sub(amount, \"ERC20: burn amount exceeds balance\");\n _totalSupply = _totalSupply.sub(amount);\n emit Transfer(account, address(0), amount);\n }\n\n /**\n * @dev Sets `amount` as the allowance of `spender` over the `owner` s tokens.\n *\n * This internal function is equivalent to `approve`, and can be used to\n * e.g. set automatic allowances for certain subsystems, etc.\n *\n * Emits an {Approval} event.\n *\n * Requirements:\n *\n * - `owner` cannot be the zero address.\n * - `spender` cannot be the zero address.\n */\n function _approve(address owner, address spender, uint256 amount) internal virtual {\n require(owner != address(0), \"ERC20: approve from the zero address\");\n require(spender != address(0), \"ERC20: approve to the zero address\");\n\n _allowances[owner][spender] = amount;\n emit Approval(owner, spender, amount);\n }\n\n /**\n * @dev Sets {decimals} to a value other than the default one of 18.\n *\n * WARNING: This function should only be called from the constructor. Most\n * applications that interact with token contracts will not expect\n * {decimals} to ever change, and may work incorrectly if it does.\n */\n function _setupDecimals(uint8 decimals_) internal virtual {\n _decimals = decimals_;\n }\n\n /**\n * @dev Hook that is called before any transfer of tokens. This includes\n * minting and burning.\n *\n * Calling conditions:\n *\n * - when `from` and `to` are both non-zero, `amount` of ``from``'s tokens\n * will be to transferred to `to`.\n * - when `from` is zero, `amount` tokens will be minted for `to`.\n * - when `to` is zero, `amount` of ``from``'s tokens will be burned.\n * - `from` and `to` are never both zero.\n *\n * To learn more about hooks, head to xref:ROOT:extending-contracts.adoc#using-hooks[Using Hooks].\n */\n function _beforeTokenTransfer(address from, address to, uint256 amount) internal virtual { }\n}\n" + }, + "@openzeppelin/contracts/token/ERC20/IERC20.sol": { + "content": "// SPDX-License-Identifier: MIT\n\npragma solidity >=0.6.0 <0.8.0;\n\n/**\n * @dev Interface of the ERC20 standard as defined in the EIP.\n */\ninterface IERC20 {\n /**\n * @dev Returns the amount of tokens in existence.\n */\n function totalSupply() external view returns (uint256);\n\n /**\n * @dev Returns the amount of tokens owned by `account`.\n */\n function balanceOf(address account) external view returns (uint256);\n\n /**\n * @dev Moves `amount` tokens from the caller's account to `recipient`.\n *\n * Returns a boolean value indicating whether the operation succeeded.\n *\n * Emits a {Transfer} event.\n */\n function transfer(address recipient, uint256 amount) external returns (bool);\n\n /**\n * @dev Returns the remaining number of tokens that `spender` will be\n * allowed to spend on behalf of `owner` through {transferFrom}. This is\n * zero by default.\n *\n * This value changes when {approve} or {transferFrom} are called.\n */\n function allowance(address owner, address spender) external view returns (uint256);\n\n /**\n * @dev Sets `amount` as the allowance of `spender` over the caller's tokens.\n *\n * Returns a boolean value indicating whether the operation succeeded.\n *\n * IMPORTANT: Beware that changing an allowance with this method brings the risk\n * that someone may use both the old and the new allowance by unfortunate\n * transaction ordering. One possible solution to mitigate this race\n * condition is to first reduce the spender's allowance to 0 and set the\n * desired value afterwards:\n * https://github.com/ethereum/EIPs/issues/20#issuecomment-263524729\n *\n * Emits an {Approval} event.\n */\n function approve(address spender, uint256 amount) external returns (bool);\n\n /**\n * @dev Moves `amount` tokens from `sender` to `recipient` using the\n * allowance mechanism. `amount` is then deducted from the caller's\n * allowance.\n *\n * Returns a boolean value indicating whether the operation succeeded.\n *\n * Emits a {Transfer} event.\n */\n function transferFrom(address sender, address recipient, uint256 amount) external returns (bool);\n\n /**\n * @dev Emitted when `value` tokens are moved from one account (`from`) to\n * another (`to`).\n *\n * Note that `value` may be zero.\n */\n event Transfer(address indexed from, address indexed to, uint256 value);\n\n /**\n * @dev Emitted when the allowance of a `spender` for an `owner` is set by\n * a call to {approve}. `value` is the new allowance.\n */\n event Approval(address indexed owner, address indexed spender, uint256 value);\n}\n" + }, + "@openzeppelin/contracts/utils/Context.sol": { + "content": "// SPDX-License-Identifier: MIT\n\npragma solidity >=0.6.0 <0.8.0;\n\n/*\n * @dev Provides information about the current execution context, including the\n * sender of the transaction and its data. While these are generally available\n * via msg.sender and msg.data, they should not be accessed in such a direct\n * manner, since when dealing with GSN meta-transactions the account sending and\n * paying for execution may not be the actual sender (as far as an application\n * is concerned).\n *\n * This contract is only required for intermediate, library-like contracts.\n */\nabstract contract Context {\n function _msgSender() internal view virtual returns (address payable) {\n return msg.sender;\n }\n\n function _msgData() internal view virtual returns (bytes memory) {\n this; // silence state mutability warning without generating bytecode - see https://github.com/ethereum/solidity/issues/2691\n return msg.data;\n }\n}\n" + }, + "@openzeppelin/contracts/utils/Counters.sol": { + "content": "// SPDX-License-Identifier: MIT\n\npragma solidity >=0.6.0 <0.8.0;\n\nimport \"../math/SafeMath.sol\";\n\n/**\n * @title Counters\n * @author Matt Condon (@shrugs)\n * @dev Provides counters that can only be incremented or decremented by one. This can be used e.g. to track the number\n * of elements in a mapping, issuing ERC721 ids, or counting request ids.\n *\n * Include with `using Counters for Counters.Counter;`\n * Since it is not possible to overflow a 256 bit integer with increments of one, `increment` can skip the {SafeMath}\n * overflow check, thereby saving gas. This does assume however correct usage, in that the underlying `_value` is never\n * directly accessed.\n */\nlibrary Counters {\n using SafeMath for uint256;\n\n struct Counter {\n // This variable should never be directly accessed by users of the library: interactions must be restricted to\n // the library's function. As of Solidity v0.5.2, this cannot be enforced, though there is a proposal to add\n // this feature: see https://github.com/ethereum/solidity/issues/4637\n uint256 _value; // default: 0\n }\n\n function current(Counter storage counter) internal view returns (uint256) {\n return counter._value;\n }\n\n function increment(Counter storage counter) internal {\n // The {SafeMath} overflow check can be skipped here, see the comment at the top\n counter._value += 1;\n }\n\n function decrement(Counter storage counter) internal {\n counter._value = counter._value.sub(1);\n }\n}\n" + }, + "contracts/ActivePool.sol": { + "content": "// SPDX-License-Identifier: MIT\npragma solidity 0.6.11;\n\nimport \"./Interfaces/IActivePool.sol\";\nimport \"./Dependencies/SafeMath.sol\";\nimport \"./Dependencies/CheckContract.sol\";\nimport \"./Dependencies/console.sol\";\n\nimport \"./ActivePoolStorage.sol\";\n\n/**\n * @title Active Pool\n * @notice The Active Pool holds the ETH collateral and ZUSD debt (but not ZUSD tokens) for all active troves.\n *\n * When a trove is liquidated, it's ETH and ZUSD debt are transferred from the Active Pool, to either the\n * Stability Pool, the Default Pool, or both, depending on the liquidation conditions.\n */\ncontract ActivePool is CheckContract, IActivePool, ActivePoolStorage {\n using SafeMath for uint256;\n // --- Events ---\n event BorrowerOperationsAddressChanged(address _newBorrowerOperationsAddress);\n event TroveManagerAddressChanged(address _newTroveManagerAddress);\n event ActivePoolZUSDDebtUpdated(uint256 _ZUSDDebt);\n event ActivePoolETHBalanceUpdated(uint256 _ETH);\n\n // --- Contract setters ---\n /// @notice initializer function that sets required addresses\n /// @dev Checks addresses are contracts. Only callable by contract owner.\n /// @param _borrowerOperationsAddress BorrowerOperations contract address\n /// @param _troveManagerAddress TroveManager contract address\n /// @param _stabilityPoolAddress StabilityPool contract address\n /// @param _defaultPoolAddress DefaultPool contract address\n function setAddresses(\n address _borrowerOperationsAddress,\n address _troveManagerAddress,\n address _stabilityPoolAddress,\n address _defaultPoolAddress\n ) external onlyOwner {\n checkContract(_borrowerOperationsAddress);\n checkContract(_troveManagerAddress);\n checkContract(_stabilityPoolAddress);\n checkContract(_defaultPoolAddress);\n\n borrowerOperationsAddress = _borrowerOperationsAddress;\n troveManagerAddress = _troveManagerAddress;\n stabilityPoolAddress = _stabilityPoolAddress;\n defaultPoolAddress = _defaultPoolAddress;\n\n emit BorrowerOperationsAddressChanged(_borrowerOperationsAddress);\n emit TroveManagerAddressChanged(_troveManagerAddress);\n emit StabilityPoolAddressChanged(_stabilityPoolAddress);\n emit DefaultPoolAddressChanged(_defaultPoolAddress);\n }\n\n // --- Getters for public variables. Required by IPool interface ---\n\n /// @notice Not necessarily equal to the the contract's raw ETH balance - ether can be forcibly sent to contracts.\n /// @return the ETH state variable.\n function getETH() external view override returns (uint256) {\n return ETH;\n }\n\n /// @return the ZUSD debt state variable\n function getZUSDDebt() external view override returns (uint256) {\n return ZUSDDebt;\n }\n\n // --- Pool functionality ---\n\n /// @notice Send ETH amount to given account. Updates ActivePool balance. Only callable by BorrowerOperations, TroveManager or StabilityPool.\n /// @param _account account to receive the ETH amount\n /// @param _amount ETH amount to send\n function sendETH(address _account, uint256 _amount) external override {\n _requireCallerIsBOorTroveMorSP();\n ETH = ETH.sub(_amount);\n emit ActivePoolETHBalanceUpdated(ETH);\n emit EtherSent(_account, _amount);\n\n (bool success, ) = _account.call{ value: _amount }(\"\");\n require(success, \"ActivePool: sending ETH failed\");\n }\n\n /// @notice Increases ZUSD debt of the active pool. Only callable by BorrowerOperations, TroveManager or StabilityPool.\n /// @param _amount ZUSD amount to add to the pool debt\n function increaseZUSDDebt(uint256 _amount) external override {\n _requireCallerIsBOorTroveM();\n ZUSDDebt = ZUSDDebt.add(_amount);\n ActivePoolZUSDDebtUpdated(ZUSDDebt);\n }\n\n /// @notice Decreases ZUSD debt of the active pool. Only callable by BorrowerOperations, TroveManager or StabilityPool.\n /// @param _amount ZUSD amount to sub to the pool debt\n function decreaseZUSDDebt(uint256 _amount) external override {\n _requireCallerIsBOorTroveMorSP();\n ZUSDDebt = ZUSDDebt.sub(_amount);\n ActivePoolZUSDDebtUpdated(ZUSDDebt);\n }\n\n // --- 'require' functions ---\n\n function _requireCallerIsBorrowerOperationsOrDefaultPool() internal view {\n require(\n msg.sender == borrowerOperationsAddress || msg.sender == defaultPoolAddress,\n \"ActivePool: Caller is neither BO nor Default Pool\"\n );\n }\n\n function _requireCallerIsBOorTroveMorSP() internal view {\n require(\n msg.sender == borrowerOperationsAddress ||\n msg.sender == troveManagerAddress ||\n msg.sender == stabilityPoolAddress,\n \"ActivePool: Caller is neither BorrowerOperations nor TroveManager nor StabilityPool\"\n );\n }\n\n function _requireCallerIsBOorTroveM() internal view {\n require(\n msg.sender == borrowerOperationsAddress || msg.sender == troveManagerAddress,\n \"ActivePool: Caller is neither BorrowerOperations nor TroveManager\"\n );\n }\n\n // --- Fallback function ---\n\n receive() external payable {\n _requireCallerIsBorrowerOperationsOrDefaultPool();\n ETH = ETH.add(msg.value);\n emit ActivePoolETHBalanceUpdated(ETH);\n }\n}\n" + }, + "contracts/ActivePoolStorage.sol": { + "content": "// SPDX-License-Identifier: MIT\npragma solidity 0.6.11;\n\nimport \"./Dependencies/Ownable.sol\";\n\n/**\n * @title Active Pool Storage\n * @dev Stores Active Pool required addresses and internal ETH and ZUSD debt states\n * Extends Ownable\n */\ncontract ActivePoolStorage is Ownable {\n string public constant NAME = \"ActivePool\";\n\n address public borrowerOperationsAddress;\n address public troveManagerAddress;\n address public stabilityPoolAddress;\n address public defaultPoolAddress;\n uint256 internal ETH; // deposited ether tracker\n uint256 internal ZUSDDebt;\n}\n" + }, + "contracts/BorrowerOperations.sol": { + "content": "// SPDX-License-Identifier: MIT\n\npragma solidity 0.6.11;\npragma experimental ABIEncoderV2;\n\nimport \"./Interfaces/IBorrowerOperations.sol\";\nimport \"./Interfaces/ITroveManager.sol\";\nimport \"./Interfaces/IZUSDToken.sol\";\nimport \"./Interfaces/ICollSurplusPool.sol\";\nimport \"./Interfaces/ISortedTroves.sol\";\nimport \"./Interfaces/IZEROStaking.sol\";\nimport \"./Interfaces/IFeeDistributor.sol\";\nimport \"./Dependencies/LiquityBase.sol\";\nimport \"./Dependencies/CheckContract.sol\";\nimport \"./Dependencies/console.sol\";\nimport \"./BorrowerOperationsStorage.sol\";\nimport \"./Dependencies/Mynt/MyntLib.sol\";\nimport \"./Interfaces/IPermit2.sol\";\nimport \"./Interfaces/colfee/IExitFeeController.sol\";\n\ncontract BorrowerOperations is\n LiquityBase,\n BorrowerOperationsStorage,\n CheckContract,\n IBorrowerOperations\n{\n /** CONSTANT / IMMUTABLE VARIABLE ONLY */\n IPermit2 public immutable permit2;\n\n // --- ColFee (exit-fee) hook ---\n // No new regular storage: the controller pointer lives in an EIP-1967-style\n // unstructured slot so `BorrowerOperations` storage-layout is unchanged.\n bytes32 private constant EXIT_FEE_CONTROLLER_SLOT =\n bytes32(uint256(keccak256(\"sovryn.exitFeeController\")) - 1);\n bytes32 private constant SURFACE_ZERO_WITHDRAW_COLL =\n keccak256(\"COLFEE:SURFACE_ZERO_WITHDRAW_COLL\");\n bytes32 private constant SURFACE_ZERO_CLAIM_SURPLUS =\n keccak256(\"COLFEE:SURFACE_ZERO_CLAIM_SURPLUS\");\n\n event ExitFeeControllerSet(address indexed previous, address indexed current);\n event ExitFeeApplied(\n bytes32 indexed surfaceId,\n address indexed actor,\n address indexed asset,\n address subProduct,\n address recipient,\n uint256 grossAmount,\n uint256 feeAmount,\n uint256 netAmount,\n address feeReceiver\n );\n event ExitFeeSkipped(\n bytes32 indexed surfaceId,\n address indexed actor,\n address indexed asset,\n uint256 grossAmount,\n uint16 rateBps,\n uint8 reason\n );\n\n /* --- Variable container structs ---\n\n Used to hold, return and assign variables inside a function, in order to avoid the error:\n \"CompilerError: Stack too deep\". */\n\n struct LocalVariables_adjustTrove {\n uint256 price;\n uint256 collChange;\n uint256 netDebtChange;\n bool isCollIncrease;\n uint256 debt;\n uint256 coll;\n uint256 oldICR;\n uint256 newICR;\n uint256 newTCR;\n uint256 ZUSDFee;\n uint256 newDebt;\n uint256 newColl;\n uint256 stake;\n uint256 newNICR;\n bool isRecoveryMode;\n }\n\n struct LocalVariables_openTrove {\n uint256 price;\n uint256 ZUSDFee;\n uint256 netDebt;\n uint256 compositeDebt;\n uint256 ICR;\n uint256 NICR;\n uint256 stake;\n uint256 arrayIndex;\n }\n\n struct ContractsCache {\n ITroveManager troveManager;\n IActivePool activePool;\n IZUSDToken zusdToken;\n }\n\n enum BorrowerOperation {\n openTrove,\n closeTrove,\n adjustTrove\n }\n\n event FeeDistributorAddressChanged(address _feeDistributorAddress);\n event TroveManagerAddressChanged(address _newTroveManagerAddress);\n event ActivePoolAddressChanged(address _activePoolAddress);\n event DefaultPoolAddressChanged(address _defaultPoolAddress);\n event StabilityPoolAddressChanged(address _stabilityPoolAddress);\n event GasPoolAddressChanged(address _gasPoolAddress);\n event CollSurplusPoolAddressChanged(address _collSurplusPoolAddress);\n event PriceFeedAddressChanged(address _newPriceFeedAddress);\n event SortedTrovesAddressChanged(address _sortedTrovesAddress);\n event ZUSDTokenAddressChanged(address _zusdTokenAddress);\n event ZEROStakingAddressChanged(address _zeroStakingAddress);\n event MassetManagerAddressChanged(address _massetManagerAddress);\n\n event TroveCreated(address indexed _borrower, uint256 arrayIndex);\n event TroveUpdated(\n address indexed _borrower,\n uint256 _debt,\n uint256 _coll,\n uint256 stake,\n BorrowerOperation operation\n );\n event ZUSDBorrowingFeePaid(address indexed _borrower, uint256 _ZUSDFee);\n\n /** Constructor */\n constructor(address _permit2) public {\n permit2 = IPermit2(_permit2);\n }\n\n // --- Dependency setters ---\n\n function setAddresses(\n address _feeDistributorAddress,\n address _liquityBaseParamsAddress,\n address _troveManagerAddress,\n address _activePoolAddress,\n address _defaultPoolAddress,\n address _stabilityPoolAddress,\n address _gasPoolAddress,\n address _collSurplusPoolAddress,\n address _priceFeedAddress,\n address _sortedTrovesAddress,\n address _zusdTokenAddress,\n address _zeroStakingAddress\n ) external override onlyOwner {\n // This makes impossible to open a trove with zero withdrawn ZUSD\n assert(MIN_NET_DEBT > 0);\n\n checkContract(_feeDistributorAddress);\n checkContract(_liquityBaseParamsAddress);\n checkContract(_troveManagerAddress);\n checkContract(_activePoolAddress);\n checkContract(_defaultPoolAddress);\n checkContract(_stabilityPoolAddress);\n checkContract(_gasPoolAddress);\n checkContract(_collSurplusPoolAddress);\n checkContract(_priceFeedAddress);\n checkContract(_sortedTrovesAddress);\n checkContract(_zusdTokenAddress);\n checkContract(_zeroStakingAddress);\n\n feeDistributor = IFeeDistributor(_feeDistributorAddress);\n liquityBaseParams = ILiquityBaseParams(_liquityBaseParamsAddress);\n troveManager = ITroveManager(_troveManagerAddress);\n activePool = IActivePool(_activePoolAddress);\n defaultPool = IDefaultPool(_defaultPoolAddress);\n stabilityPoolAddress = _stabilityPoolAddress;\n gasPoolAddress = _gasPoolAddress;\n collSurplusPool = ICollSurplusPool(_collSurplusPoolAddress);\n priceFeed = IPriceFeed(_priceFeedAddress);\n sortedTroves = ISortedTroves(_sortedTrovesAddress);\n zusdToken = IZUSDToken(_zusdTokenAddress);\n zeroStakingAddress = _zeroStakingAddress;\n zeroStaking = IZEROStaking(_zeroStakingAddress);\n\n emit FeeDistributorAddressChanged(_feeDistributorAddress);\n emit TroveManagerAddressChanged(_troveManagerAddress);\n emit ActivePoolAddressChanged(_activePoolAddress);\n emit DefaultPoolAddressChanged(_defaultPoolAddress);\n emit StabilityPoolAddressChanged(_stabilityPoolAddress);\n emit GasPoolAddressChanged(_gasPoolAddress);\n emit CollSurplusPoolAddressChanged(_collSurplusPoolAddress);\n emit PriceFeedAddressChanged(_priceFeedAddress);\n emit SortedTrovesAddressChanged(_sortedTrovesAddress);\n emit ZUSDTokenAddressChanged(_zusdTokenAddress);\n emit ZEROStakingAddressChanged(_zeroStakingAddress);\n }\n\n function setMassetManagerAddress(address _massetManagerAddress) external onlyOwner {\n massetManager = IMassetManager(_massetManagerAddress);\n emit MassetManagerAddressChanged(_massetManagerAddress);\n }\n\n function openTrove(\n uint256 _maxFeePercentage,\n uint256 _ZUSDAmount,\n address _upperHint,\n address _lowerHint\n ) external payable override {\n _openTrove(_maxFeePercentage, _ZUSDAmount, _upperHint, _lowerHint, msg.sender);\n }\n\n function openNueTrove(\n uint256 _maxFeePercentage,\n uint256 _ZUSDAmount,\n address _upperHint,\n address _lowerHint\n ) external payable override {\n require(address(massetManager) != address(0), \"Masset address not set\");\n\n _openTrove(_maxFeePercentage, _ZUSDAmount, _upperHint, _lowerHint, address(this));\n require(\n zusdToken.approve(address(massetManager), _ZUSDAmount),\n \"Failed to approve ZUSD amount for Mynt mAsset to redeem\"\n );\n massetManager.mintTo(address(zusdToken), _ZUSDAmount, msg.sender);\n }\n\n // --- Borrower Trove Operations ---\n function _openTrove(\n uint256 _maxFeePercentage,\n uint256 _ZUSDAmount,\n address _upperHint,\n address _lowerHint,\n address _tokensRecipient\n ) internal {\n ContractsCache memory contractsCache = ContractsCache(troveManager, activePool, zusdToken);\n LocalVariables_openTrove memory vars;\n\n vars.price = priceFeed.fetchPrice();\n bool isRecoveryMode = _checkRecoveryMode(vars.price);\n\n _requireValidMaxFeePercentage(_maxFeePercentage, isRecoveryMode);\n _requireTroveisNotActive(contractsCache.troveManager, msg.sender);\n\n vars.ZUSDFee;\n vars.netDebt = _ZUSDAmount;\n\n if (!isRecoveryMode) {\n vars.ZUSDFee = _triggerBorrowingFee(\n contractsCache.troveManager,\n contractsCache.zusdToken,\n _ZUSDAmount,\n _maxFeePercentage\n );\n vars.netDebt = vars.netDebt.add(vars.ZUSDFee);\n }\n _requireAtLeastMinNetDebt(vars.netDebt);\n\n // ICR is based on the composite debt, i.e. the requested ZUSD amount + ZUSD borrowing fee + ZUSD gas comp.\n vars.compositeDebt = _getCompositeDebt(vars.netDebt);\n assert(vars.compositeDebt > 0);\n\n vars.ICR = LiquityMath._computeCR(msg.value, vars.compositeDebt, vars.price);\n vars.NICR = LiquityMath._computeNominalCR(msg.value, vars.compositeDebt);\n\n if (isRecoveryMode) {\n _requireICRisAboveCCR(vars.ICR);\n } else {\n _requireICRisAboveMCR(vars.ICR);\n uint256 newTCR = _getNewTCRFromTroveChange(\n msg.value,\n true,\n vars.compositeDebt,\n true,\n vars.price\n ); // bools: coll increase, debt increase\n _requireNewTCRisAboveCCR(newTCR);\n }\n\n // Set the trove struct's properties\n contractsCache.troveManager.setTroveStatus(msg.sender, 1);\n contractsCache.troveManager.increaseTroveColl(msg.sender, msg.value);\n contractsCache.troveManager.increaseTroveDebt(msg.sender, vars.compositeDebt);\n\n contractsCache.troveManager.updateTroveRewardSnapshots(msg.sender);\n vars.stake = contractsCache.troveManager.updateStakeAndTotalStakes(msg.sender);\n\n sortedTroves.insert(msg.sender, vars.NICR, _upperHint, _lowerHint);\n vars.arrayIndex = contractsCache.troveManager.addTroveOwnerToArray(msg.sender);\n emit TroveCreated(msg.sender, vars.arrayIndex);\n\n // Move the ether to the Active Pool, and mint the ZUSDAmount to the borrower\n _activePoolAddColl(contractsCache.activePool, msg.value);\n _mintZusdAndIncreaseActivePoolDebt(\n contractsCache.activePool,\n contractsCache.zusdToken,\n _tokensRecipient,\n _ZUSDAmount,\n vars.netDebt\n );\n // Move the ZUSD gas compensation to the Gas Pool\n _mintZusdAndIncreaseActivePoolDebt(\n contractsCache.activePool,\n contractsCache.zusdToken,\n gasPoolAddress,\n ZUSD_GAS_COMPENSATION,\n ZUSD_GAS_COMPENSATION\n );\n\n emit TroveUpdated(\n msg.sender,\n vars.compositeDebt,\n msg.value,\n vars.stake,\n BorrowerOperation.openTrove\n );\n emit ZUSDBorrowingFeePaid(msg.sender, vars.ZUSDFee);\n }\n\n /// Send ETH as collateral to a trove\n function addColl(address _upperHint, address _lowerHint) external payable override {\n _adjustTrove(msg.sender, 0, 0, false, _upperHint, _lowerHint, 0);\n }\n\n /// Send ETH as collateral to a trove. Called by only the Stability Pool.\n function moveETHGainToTrove(\n address _borrower,\n address _upperHint,\n address _lowerHint\n ) external payable override {\n _requireCallerIsStabilityPool();\n _adjustTrove(_borrower, 0, 0, false, _upperHint, _lowerHint, 0);\n }\n\n /// Withdraw ETH collateral from a trove\n function withdrawColl(\n uint256 _collWithdrawal,\n address _upperHint,\n address _lowerHint\n ) external override {\n _adjustTrove(msg.sender, _collWithdrawal, 0, false, _upperHint, _lowerHint, 0);\n }\n\n /// Withdraw ZUSD tokens from a trove: mint new ZUSD tokens to the owner, and increase the trove's debt accordingly\n function withdrawZUSD(\n uint256 _maxFeePercentage,\n uint256 _ZUSDAmount,\n address _upperHint,\n address _lowerHint\n ) external override {\n _adjustTrove(msg.sender, 0, _ZUSDAmount, true, _upperHint, _lowerHint, _maxFeePercentage);\n }\n\n /// Borrow (withdraw) ZUSD tokens from a trove: mint new ZUSD tokens to the owner and convert it to DLLR in one transaction\n /// Zero Line of Credit owner can borrow a specified amount of ZUSD and convert it to DLLR via Sovryn Mynt\n ///@return DLLR amount minted\n function withdrawZusdAndConvertToDLLR(\n uint256 _maxFeePercentage,\n uint256 _ZUSDAmount,\n address _upperHint,\n address _lowerHint\n ) external override returns (uint256) {\n address thisAddress = address(this);\n uint256 balanceBefore = zusdToken.balanceOf(thisAddress);\n\n _withdrawZusdTo(\n msg.sender,\n thisAddress,\n _ZUSDAmount,\n _upperHint,\n _lowerHint,\n _maxFeePercentage\n );\n\n require(\n zusdToken.balanceOf(thisAddress) == balanceBefore.add(_ZUSDAmount),\n \"ZUSD is not borrowed correctly\"\n );\n require(\n zusdToken.approve(address(massetManager), _ZUSDAmount),\n \"Failed to approve ZUSD amount for Mynt mAsset to redeem\"\n );\n return massetManager.mintTo(address(zusdToken), _ZUSDAmount, msg.sender);\n }\n\n /// Repay ZUSD tokens to a Trove: Burn the repaid ZUSD tokens, and reduce the trove's debt accordingly\n function repayZUSD(\n uint256 _ZUSDAmount,\n address _upperHint,\n address _lowerHint\n ) external override {\n _adjustTrove(msg.sender, 0, _ZUSDAmount, false, _upperHint, _lowerHint, 0);\n }\n\n /// Repay ZUSD tokens to a Trove by DLLR: convert DLLR to ZUSD tokens, and then reduce the trove's debt accordingly\n function repayZusdFromDLLR(\n uint256 _dllrAmount,\n address _upperHint,\n address _lowerHint,\n IMassetManager.PermitParams calldata _permitParams\n ) external override {\n _adjustNueTrove(0, 0, _dllrAmount, false, _upperHint, _lowerHint, _permitParams);\n }\n\n /// Repay ZUSD tokens to a Trove by DLLR: convert DLLR to ZUSD tokens, and then reduce the trove's debt accordingly\n function repayZusdFromDLLRWithPermit2(\n uint256 _dllrAmount,\n address _upperHint,\n address _lowerHint,\n ISignatureTransfer.PermitTransferFrom memory _permit,\n bytes calldata _signature\n ) external override {\n _adjustNueTroveWithPermit2(\n 0,\n 0,\n _dllrAmount,\n false,\n _upperHint,\n _lowerHint,\n _permit,\n _signature\n );\n }\n\n function adjustTrove(\n uint256 _maxFeePercentage,\n uint256 _collWithdrawal,\n uint256 _ZUSDChange,\n bool _isDebtIncrease,\n address _upperHint,\n address _lowerHint\n ) external payable override {\n _adjustTrove(\n msg.sender,\n _collWithdrawal,\n _ZUSDChange,\n _isDebtIncrease,\n _upperHint,\n _lowerHint,\n _maxFeePercentage\n );\n }\n\n // in case of _isDebtIncrease = false MassetManager contract must have an approval of NUE tokens\n function adjustNueTrove(\n uint256 _maxFeePercentage,\n uint256 _collWithdrawal,\n uint256 _ZUSDChange,\n bool _isDebtIncrease,\n address _upperHint,\n address _lowerHint,\n IMassetManager.PermitParams calldata _permitParams\n ) external payable override {\n _adjustNueTrove(\n _maxFeePercentage,\n _collWithdrawal,\n _ZUSDChange,\n _isDebtIncrease,\n _upperHint,\n _lowerHint,\n _permitParams\n );\n }\n\n // in case of _isDebtIncrease = false MassetManager contract must have an approval of NUE tokens\n function adjustNueTroveWithPermit2(\n uint256 _maxFeePercentage,\n uint256 _collWithdrawal,\n uint256 _ZUSDChange,\n bool _isDebtIncrease,\n address _upperHint,\n address _lowerHint,\n ISignatureTransfer.PermitTransferFrom memory _permit,\n bytes calldata _signature\n ) external payable override {\n _adjustNueTroveWithPermit2(\n _maxFeePercentage,\n _collWithdrawal,\n _ZUSDChange,\n _isDebtIncrease,\n _upperHint,\n _lowerHint,\n _permit,\n _signature\n );\n }\n\n // in case of _isDebtIncrease = false Masset Manager contract must have an approval of NUE tokens\n function _adjustNueTrove(\n uint256 _maxFeePercentage,\n uint256 _collWithdrawal,\n uint256 _ZUSDChange,\n bool _isDebtIncrease,\n address _upperHint,\n address _lowerHint,\n IMassetManager.PermitParams calldata _permitParams\n ) internal {\n require(address(massetManager) != address(0), \"Masset address not set\");\n\n if (!_isDebtIncrease && _ZUSDChange > 0) {\n MyntLib.redeemZusdFromDllrWithPermit(\n massetManager,\n _ZUSDChange,\n address(zusdToken),\n _permitParams\n );\n }\n _adjustSenderTrove(\n msg.sender,\n _collWithdrawal,\n _ZUSDChange,\n _isDebtIncrease,\n _upperHint,\n _lowerHint,\n _maxFeePercentage,\n address(this)\n );\n if (_isDebtIncrease && _ZUSDChange > 0) {\n require(\n zusdToken.approve(address(massetManager), _ZUSDChange),\n \"Failed to approve ZUSD amount for Mynt mAsset to redeem\"\n );\n massetManager.mintTo(address(zusdToken), _ZUSDChange, msg.sender);\n }\n }\n\n // in case of _isDebtIncrease = false Masset Manager contract must have an approval of NUE tokens\n function _adjustNueTroveWithPermit2(\n uint256 _maxFeePercentage,\n uint256 _collWithdrawal,\n uint256 _ZUSDChange,\n bool _isDebtIncrease,\n address _upperHint,\n address _lowerHint,\n ISignatureTransfer.PermitTransferFrom memory _permit,\n bytes calldata _signature\n ) internal {\n require(address(massetManager) != address(0), \"Masset address not set\");\n\n if (!_isDebtIncrease && _ZUSDChange > 0) {\n MyntLib.redeemZusdFromDllrWithPermit2(\n massetManager,\n address(zusdToken),\n _permit,\n permit2,\n _signature\n );\n }\n _adjustSenderTrove(\n msg.sender,\n _collWithdrawal,\n _ZUSDChange,\n _isDebtIncrease,\n _upperHint,\n _lowerHint,\n _maxFeePercentage,\n address(this)\n );\n if (_isDebtIncrease && _ZUSDChange > 0) {\n require(\n zusdToken.approve(address(massetManager), _ZUSDChange),\n \"Failed to approve ZUSD amount for Mynt mAsset to redeem\"\n );\n massetManager.mintTo(address(zusdToken), _ZUSDChange, msg.sender);\n }\n }\n\n function _adjustTrove(\n address _borrower,\n uint256 _collWithdrawal,\n uint256 _ZUSDChange,\n bool _isDebtIncrease,\n address _upperHint,\n address _lowerHint,\n uint256 _maxFeePercentage\n ) internal {\n _adjustSenderTrove(\n _borrower,\n _collWithdrawal,\n _ZUSDChange,\n _isDebtIncrease,\n _upperHint,\n _lowerHint,\n _maxFeePercentage,\n msg.sender\n );\n }\n\n // _withdrawZusd: _adjustTrove(msg.sender, 0, _ZUSDAmount, true, _upperHint, _lowerHint, _maxFeePercentage);\n function _withdrawZusdTo(\n address _borrower,\n address _receiver,\n uint256 _ZUSDChange,\n address _upperHint,\n address _lowerHint,\n uint256 _maxFeePercentage\n ) internal {\n _adjustSenderTrove(\n _borrower,\n 0,\n _ZUSDChange,\n true,\n _upperHint,\n _lowerHint,\n _maxFeePercentage,\n _receiver\n );\n }\n\n /**\n * _adjustSenderTrove(): Alongside a debt change, this function can perform either a collateral top-up or a collateral withdrawal.\n *\n * It therefore expects either a positive msg.value, or a positive _collWithdrawal argument.\n *\n * If both are positive, it will revert.\n */\n function _adjustSenderTrove(\n address _borrower,\n uint256 _collWithdrawal,\n uint256 _ZUSDChange,\n bool _isDebtIncrease,\n address _upperHint,\n address _lowerHint,\n uint256 _maxFeePercentage,\n address _tokensRecipient\n ) internal {\n ContractsCache memory contractsCache = ContractsCache(troveManager, activePool, zusdToken);\n LocalVariables_adjustTrove memory vars;\n\n vars.price = priceFeed.fetchPrice();\n vars.isRecoveryMode = _checkRecoveryMode(vars.price);\n\n if (_isDebtIncrease) {\n _requireValidMaxFeePercentage(_maxFeePercentage, vars.isRecoveryMode);\n _requireNonZeroDebtChange(_ZUSDChange);\n }\n _requireSingularCollChange(_collWithdrawal);\n _requireNonZeroAdjustment(_collWithdrawal, _ZUSDChange);\n _requireTroveisActive(contractsCache.troveManager, _borrower);\n\n // Confirm the operation is either a borrower adjusting their own trove, or a pure ETH transfer from the Stability Pool to a trove\n assert(\n msg.sender == _borrower ||\n (msg.sender == stabilityPoolAddress && msg.value > 0 && _ZUSDChange == 0)\n );\n\n contractsCache.troveManager.applyPendingRewards(_borrower);\n\n // Get the collChange based on whether or not ETH was sent in the transaction\n (vars.collChange, vars.isCollIncrease) = _getCollChange(msg.value, _collWithdrawal);\n\n vars.netDebtChange = _ZUSDChange;\n\n // If the adjustment incorporates a debt increase and system is in Normal Mode, then trigger a borrowing fee\n if (_isDebtIncrease && !vars.isRecoveryMode) {\n vars.ZUSDFee = _triggerBorrowingFee(\n contractsCache.troveManager,\n contractsCache.zusdToken,\n _ZUSDChange,\n _maxFeePercentage\n );\n vars.netDebtChange = vars.netDebtChange.add(vars.ZUSDFee); // The raw debt change includes the fee\n }\n\n vars.debt = contractsCache.troveManager.getTroveDebt(_borrower);\n vars.coll = contractsCache.troveManager.getTroveColl(_borrower);\n\n // Get the trove's old ICR before the adjustment, and what its new ICR will be after the adjustment\n vars.oldICR = LiquityMath._computeCR(vars.coll, vars.debt, vars.price);\n vars.newICR = _getNewICRFromTroveChange(\n vars.coll,\n vars.debt,\n vars.collChange,\n vars.isCollIncrease,\n vars.netDebtChange,\n _isDebtIncrease,\n vars.price\n );\n assert(_collWithdrawal <= vars.coll);\n\n // Check the adjustment satisfies all conditions for the current system mode\n _requireValidAdjustmentInCurrentMode(\n vars.isRecoveryMode,\n _collWithdrawal,\n _isDebtIncrease,\n vars\n );\n\n // When the adjustment is a debt repayment, check it's a valid amount and that the caller has enough ZUSD\n if (!_isDebtIncrease && _ZUSDChange > 0) {\n _requireAtLeastMinNetDebt(_getNetDebt(vars.debt).sub(vars.netDebtChange));\n _requireValidZUSDRepayment(vars.debt, vars.netDebtChange);\n _requireSufficientZUSDBalance(contractsCache.zusdToken, _borrower, vars.netDebtChange);\n }\n\n (vars.newColl, vars.newDebt) = _updateTroveFromAdjustment(\n contractsCache.troveManager,\n _borrower,\n vars.collChange,\n vars.isCollIncrease,\n vars.netDebtChange,\n _isDebtIncrease\n );\n vars.stake = contractsCache.troveManager.updateStakeAndTotalStakes(_borrower);\n\n // Re-insert trove in to the sorted list\n vars.newNICR = _getNewNominalICRFromTroveChange(\n vars.coll,\n vars.debt,\n vars.collChange,\n vars.isCollIncrease,\n vars.netDebtChange,\n _isDebtIncrease\n );\n sortedTroves.reInsert(_borrower, vars.newNICR, _upperHint, _lowerHint);\n\n emit TroveUpdated(\n _borrower,\n vars.newDebt,\n vars.newColl,\n vars.stake,\n BorrowerOperation.adjustTrove\n );\n emit ZUSDBorrowingFeePaid(msg.sender, vars.ZUSDFee);\n\n // Use the unmodified _ZUSDChange here, as we don't send the fee to the user\n _moveTokensAndETHfromAdjustment(\n contractsCache.activePool,\n contractsCache.zusdToken,\n msg.sender,\n vars.collChange,\n vars.isCollIncrease,\n _ZUSDChange,\n _isDebtIncrease,\n vars.netDebtChange,\n _tokensRecipient\n );\n }\n\n function closeTrove() external override {\n _closeTrove();\n }\n\n function closeNueTrove(IMassetManager.PermitParams calldata _permitParams) external override {\n require(address(massetManager) != address(0), \"Masset address not set\");\n\n uint256 debt = troveManager.getTroveDebt(msg.sender);\n\n MyntLib.redeemZusdFromDllrWithPermit(\n massetManager,\n debt.sub(ZUSD_GAS_COMPENSATION),\n address(zusdToken),\n _permitParams\n );\n _closeTrove();\n }\n\n function closeNueTroveWithPermit2(\n ISignatureTransfer.PermitTransferFrom memory _permit,\n bytes calldata _signature\n ) external override {\n require(address(massetManager) != address(0), \"Masset address not set\");\n\n uint256 debt = troveManager.getTroveDebt(msg.sender);\n\n MyntLib.redeemZusdFromDllrWithPermit2(\n massetManager,\n address(zusdToken),\n _permit,\n permit2,\n _signature\n );\n\n _closeTrove();\n }\n\n function _closeTrove() internal {\n ITroveManager troveManagerCached = troveManager;\n IActivePool activePoolCached = activePool;\n IZUSDToken zusdTokenCached = zusdToken;\n\n _requireTroveisActive(troveManagerCached, msg.sender);\n uint256 price = priceFeed.fetchPrice();\n _requireNotInRecoveryMode(price);\n\n troveManagerCached.applyPendingRewards(msg.sender);\n\n uint256 coll = troveManagerCached.getTroveColl(msg.sender);\n uint256 debt = troveManagerCached.getTroveDebt(msg.sender);\n\n _requireSufficientZUSDBalance(\n zusdTokenCached,\n msg.sender,\n debt.sub(ZUSD_GAS_COMPENSATION)\n );\n\n uint256 newTCR = _getNewTCRFromTroveChange(coll, false, debt, false, price);\n _requireNewTCRisAboveCCR(newTCR);\n\n troveManagerCached.removeStake(msg.sender);\n troveManagerCached.closeTrove(msg.sender);\n\n emit TroveUpdated(msg.sender, 0, 0, 0, BorrowerOperation.closeTrove);\n\n // Burn the repaid ZUSD from the user's balance and the gas compensation from the Gas Pool\n _burnZusdAndDecreaseActivePoolDebt(\n activePoolCached,\n zusdTokenCached,\n msg.sender,\n debt.sub(ZUSD_GAS_COMPENSATION)\n );\n _burnZusdAndDecreaseActivePoolDebt(\n activePoolCached,\n zusdTokenCached,\n gasPoolAddress,\n ZUSD_GAS_COMPENSATION\n );\n\n // Send the collateral back to the user (charging the ColFee exit fee)\n _sendCollWithExitFee(activePoolCached, msg.sender, coll);\n }\n\n /**\n * Claim remaining collateral from a redemption or from a liquidation with ICR > MCR in Recovery Mode,\n * charging the ColFee exit fee when the SURFACE_ZERO_CLAIM_SURPLUS policy is active.\n * Fail-open like every ColFee hook: on any ColFee failure (controller missing/\n * reverting, invalid quote, fee-leg transfer failure inside the pool) the claimant\n * receives the full surplus — a ColFee failure can never brick a claim. The\n * non-charging path is the untouched claimColl flow (plus the ExitFeeSkipped\n * event, same convention as _sendCollWithExitFee).\n */\n function claimCollateral() external override {\n uint256 gross = collSurplusPool.getCollateral(msg.sender);\n // Single Zero deployment: subProduct = address(0). Asset is native RBTC.\n IExitFeeController.ExitFeeQuote memory q = _safeQuote(\n SURFACE_ZERO_CLAIM_SURPLUS,\n address(0),\n msg.sender,\n gross\n );\n\n // Defensive: a quote that charges into address(0) would burn the fee (a\n // value call to a no-code address succeeds). Demote to the non-charging\n // path — DISABLED is the enum's \"feeReceiver == address(0)\" reason.\n if (q.active && q.feeAmount > 0 && q.feeReceiver == address(0)) {\n q.active = false;\n q.netAmount = gross;\n q.reason = uint8(IExitFeeController.SkipReason.DISABLED);\n }\n\n if (q.active && q.feeAmount > 0) {\n // Two-leg split inside the pool (fee → feeReceiver, net → claimant);\n // the pool's fee leg is fail-open and reports which event is truthful.\n bool feePaid = collSurplusPool.claimCollWithFee(\n msg.sender,\n q.feeReceiver,\n q.feeAmount\n );\n if (feePaid) {\n emit ExitFeeApplied(\n SURFACE_ZERO_CLAIM_SURPLUS,\n msg.sender,\n address(0),\n address(0),\n msg.sender,\n gross,\n q.feeAmount,\n q.netAmount,\n q.feeReceiver\n );\n } else {\n emit ExitFeeSkipped(\n SURFACE_ZERO_CLAIM_SURPLUS,\n msg.sender,\n address(0),\n gross,\n q.rateBps,\n uint8(IExitFeeController.SkipReason.VAULT_REVERT)\n );\n }\n } else {\n // !active (INACTIVE / DISABLED / INVALID_QUOTE / CONTROLLER_REVERT)\n // OR active-but-zero-fee (dust / zero-rate / gross == 0 → reason NONE).\n emit ExitFeeSkipped(\n SURFACE_ZERO_CLAIM_SURPLUS,\n msg.sender,\n address(0),\n gross,\n q.rateBps,\n q.reason\n );\n // send ETH from CollSurplus Pool to owner — untouched original path\n // (gross == 0 falls through to claimColl's own revert, identical to today)\n collSurplusPool.claimColl(msg.sender);\n }\n }\n\n // --- Helper functions ---\n\n function _triggerBorrowingFee(\n ITroveManager _troveManager,\n IZUSDToken _zusdToken,\n uint256 _ZUSDAmount,\n uint256 _maxFeePercentage\n ) internal returns (uint256) {\n _troveManager.decayBaseRateFromBorrowing(); // decay the baseRate state variable\n uint256 ZUSDFee = _troveManager.getBorrowingFee(_ZUSDAmount);\n\n _requireUserAcceptsFee(ZUSDFee, _ZUSDAmount, _maxFeePercentage);\n _zusdToken.mint(address(feeDistributor), ZUSDFee);\n feeDistributor.distributeFees();\n\n return ZUSDFee;\n }\n\n function _getUSDValue(uint256 _coll, uint256 _price) internal pure returns (uint256) {\n uint256 usdValue = _price.mul(_coll).div(DECIMAL_PRECISION);\n\n return usdValue;\n }\n\n function _getCollChange(\n uint256 _collReceived,\n uint256 _requestedCollWithdrawal\n ) internal pure returns (uint256 collChange, bool isCollIncrease) {\n if (_collReceived != 0) {\n collChange = _collReceived;\n isCollIncrease = true;\n } else {\n collChange = _requestedCollWithdrawal;\n }\n }\n\n /// Update trove's coll and debt based on whether they increase or decrease\n function _updateTroveFromAdjustment(\n ITroveManager _troveManager,\n address _borrower,\n uint256 _collChange,\n bool _isCollIncrease,\n uint256 _debtChange,\n bool _isDebtIncrease\n ) internal returns (uint256, uint256) {\n uint256 newColl = (_isCollIncrease)\n ? _troveManager.increaseTroveColl(_borrower, _collChange)\n : _troveManager.decreaseTroveColl(_borrower, _collChange);\n uint256 newDebt = (_isDebtIncrease)\n ? _troveManager.increaseTroveDebt(_borrower, _debtChange)\n : _troveManager.decreaseTroveDebt(_borrower, _debtChange);\n\n return (newColl, newDebt);\n }\n\n function _moveTokensAndETHfromAdjustment(\n IActivePool _activePool,\n IZUSDToken _zusdToken,\n address _borrower,\n uint256 _collChange,\n bool _isCollIncrease,\n uint256 _ZUSDChange,\n bool _isDebtIncrease,\n uint256 _netDebtChange,\n address _tokensRecipient\n ) internal {\n if (_isDebtIncrease) {\n _mintZusdAndIncreaseActivePoolDebt(\n _activePool,\n _zusdToken,\n _tokensRecipient,\n _ZUSDChange,\n _netDebtChange\n );\n } else {\n _burnZusdAndDecreaseActivePoolDebt(_activePool, _zusdToken, _borrower, _ZUSDChange);\n }\n\n if (_isCollIncrease) {\n _activePoolAddColl(_activePool, _collChange);\n } else {\n _sendCollWithExitFee(_activePool, _borrower, _collChange);\n }\n }\n\n // --- ColFee (exit-fee) helpers ---\n\n /// @notice Address of the ColFee controller this instance consults. Held in\n /// an EIP-1967-style unstructured slot (no regular-storage footprint).\n function exitFeeController() public view returns (address ctrl) {\n bytes32 slot = EXIT_FEE_CONTROLLER_SLOT;\n assembly {\n ctrl := sload(slot)\n }\n }\n\n /// @notice Set (or rotate) the ColFee controller this instance consults.\n /// Owner-only, one call, effective for every subsequent exit.\n function setExitFeeController(address ctrl) external onlyOwner {\n require(ctrl != address(0), \"EFC:zero\");\n // A no-code controller would make the high-level quoteExitFee call\n // revert with \"function call to a non-contract account\", which 0.6.11\n // try/catch does NOT catch — bricking borrower exits. Reject it here\n // (and fail open in _safeQuote if it later becomes code-less).\n checkContract(ctrl);\n address prev = exitFeeController();\n bytes32 slot = EXIT_FEE_CONTROLLER_SLOT;\n assembly {\n sstore(slot, ctrl)\n }\n emit ExitFeeControllerSet(prev, ctrl);\n }\n\n /// @dev Fail-open quote wrapper. On a missing/reverting controller or a\n /// semantically invalid quote, returns a non-charging quote with\n /// `netAmount == gross`. The validity gate uses subtraction only\n /// (`feeAmount > gross`), never an unchecked addition, and recomputes\n /// `netAmount = gross - feeAmount` so the fee + user legs always sum to\n /// exactly `gross` — protecting ActivePool liquidity from a bad or\n /// upgraded controller.\n function _safeQuote(\n bytes32 surfaceId,\n address subProduct,\n address actor,\n uint256 gross\n ) private view returns (IExitFeeController.ExitFeeQuote memory q) {\n address ctrl = exitFeeController();\n // Fail open on a missing OR code-less controller. The address(0) check\n // alone is not enough: a high-level call to any no-code address (EOA,\n // or a controller that self-destructed after being set) reverts with\n // \"function call to a non-contract account\", which 0.6.11 try/catch\n // does NOT catch — so guard on extcodesize before the call.\n uint256 ctrlSize;\n assembly {\n ctrlSize := extcodesize(ctrl)\n }\n if (ctrl == address(0) || ctrlSize == 0) {\n q.netAmount = gross;\n q.reason = uint8(IExitFeeController.SkipReason.CONTROLLER_REVERT);\n return q;\n }\n try IExitFeeController(ctrl).quoteExitFee(surfaceId, subProduct, actor, gross) returns (\n IExitFeeController.ExitFeeQuote memory got\n ) {\n // Pool conservation is the consumer's own concern: it holds exactly `gross`\n // wei to distribute, so it must never be asked to pay out more. A\n // feeAmount > gross would underflow the net recompute below (bricking the\n // exit) and a fee leg > gross could draw OTHER troves' collateral out of\n // ActivePool. Rate, receiver, and fee policy are the configured\n // controller's responsibility — not re-validated here.\n if (got.feeAmount > gross) {\n // Override only the verdict; leave the controller's raw feeAmount /\n // rateBps / feeReceiver intact (active=false gates charging downstream).\n got.active = false;\n got.netAmount = gross; // non-charging shape: net == gross\n got.reason = uint8(IExitFeeController.SkipReason.INVALID_QUOTE);\n return got;\n }\n got.netAmount = gross - got.feeAmount; // fee + net == gross (no residue)\n return got;\n } catch {\n q.netAmount = gross;\n q.reason = uint8(IExitFeeController.SkipReason.CONTROLLER_REVERT);\n }\n }\n\n /// @dev Settle a borrower collateral payout, charging the ColFee exit fee\n /// when the resolved policy is active. The fee leg uses `try/catch`\n /// (0.6.11 native) so a fee-receiver failure never bricks the exit; on\n /// any non-charging path the full `gross` is sent to the borrower via\n /// the existing fail-closed `sendETH`. ActivePool's recorded ETH\n /// decrements by exactly `gross` either way (the reverted fee-leg\n /// subcall rolls back its `ETH.sub`).\n function _sendCollWithExitFee(\n IActivePool _activePool,\n address borrower,\n uint256 gross\n ) private {\n // Debt-only adjustments (repay / debt-decrease) reach here with gross == 0:\n // no collateral leaves the pool, so there is nothing to settle. Skip the\n // controller round-trip and the ColFee event. (Baseline called\n // sendETH(borrower, 0) here — a value-less no-op that only emitted\n // EtherSent(_, 0) / ActivePoolETHBalanceUpdated; we drop that redundant\n // transfer, so debt-only ops emit fewer events than pre-ColFee.)\n if (gross == 0) {\n return;\n }\n\n // Single Zero deployment: subProduct = address(0). Asset is native RBTC.\n IExitFeeController.ExitFeeQuote memory q = _safeQuote(\n SURFACE_ZERO_WITHDRAW_COLL,\n address(0),\n borrower,\n gross\n );\n\n if (q.active && q.feeAmount > 0) {\n try _activePool.sendETH(q.feeReceiver, q.feeAmount) {\n _activePool.sendETH(borrower, q.netAmount); // user leg: existing fail-closed behavior\n // Emit only after BOTH legs settle, so an ExitFeeApplied event always\n // implies a completed borrower payout (truthful by construction).\n emit ExitFeeApplied(\n SURFACE_ZERO_WITHDRAW_COLL,\n borrower,\n address(0),\n address(0),\n borrower,\n gross,\n q.feeAmount,\n q.netAmount,\n q.feeReceiver\n );\n return;\n } catch {\n emit ExitFeeSkipped(\n SURFACE_ZERO_WITHDRAW_COLL,\n borrower,\n address(0),\n gross,\n q.rateBps,\n uint8(IExitFeeController.SkipReason.VAULT_REVERT)\n );\n }\n } else {\n // !active (INACTIVE / DISABLED / INVALID_QUOTE / CONTROLLER_REVERT)\n // OR active-but-zero-fee (dust / zero-rate policy → q.reason == NONE).\n emit ExitFeeSkipped(\n SURFACE_ZERO_WITHDRAW_COLL,\n borrower,\n address(0),\n gross,\n q.rateBps,\n q.reason\n );\n }\n _activePool.sendETH(borrower, gross); // full-gross fallback (any non-charging path)\n }\n\n /// @notice Read-only preview of the ColFee exit fee on a Zero borrower collateral\n /// payout of `grossColl` for `borrower`. Hard-wired to\n /// SURFACE_ZERO_WITHDRAW_COLL / subProduct=address(0) / actor=borrower, and\n /// routes through the same `_safeQuote` the live hook uses — so the synthesized\n /// fail-open quote on controller failure matches execution wei-for-wise. The\n /// caller passes `grossColl` (computed from trove state); this is a thin policy\n /// lookup, not a re-derivation of the per-function gross.\n /// @return rateBps resolved rate (0 when not charging / fail-open)\n /// @return feeAmount fee that would be taken (0 unless active && rateBps>0 && not dust)\n /// @return netAmount amount the borrower would receive (== grossColl when not charging)\n /// @return feeReceiver fee destination from the quote\n /// @return active resolved policy active flag (the \"will charge\" test is active && feeAmount>0)\n /// @return reason SkipReason (NONE on an honest/charging quote)\n function previewZeroCollWithdrawExitFee(\n address borrower,\n uint256 grossColl\n )\n external\n view\n returns (\n uint16 rateBps,\n uint256 feeAmount,\n uint256 netAmount,\n address feeReceiver,\n bool active,\n uint8 reason\n )\n {\n IExitFeeController.ExitFeeQuote memory q = _safeQuote(\n SURFACE_ZERO_WITHDRAW_COLL,\n address(0),\n borrower,\n grossColl\n );\n return (q.rateBps, q.feeAmount, q.netAmount, q.feeReceiver, q.active, q.reason);\n }\n\n /// Send ETH to Active Pool and increase its recorded ETH balance\n function _activePoolAddColl(IActivePool _activePool, uint256 _amount) internal {\n (bool success, ) = address(_activePool).call{ value: _amount }(\"\");\n require(success, \"BorrowerOps: Sending ETH to ActivePool failed\");\n }\n\n /// Issue the specified amount of ZUSD to _account and increases the total active debt (_netDebtIncrease potentially includes a ZUSDFee)\n function _mintZusdAndIncreaseActivePoolDebt(\n IActivePool _activePool,\n IZUSDToken _zusdToken,\n address _account,\n uint256 _ZUSDAmount,\n uint256 _netDebtIncrease\n ) internal {\n _activePool.increaseZUSDDebt(_netDebtIncrease);\n _zusdToken.mint(_account, _ZUSDAmount);\n }\n\n /// Burn the specified amount of ZUSD from _account and decreases the total active debt\n function _burnZusdAndDecreaseActivePoolDebt(\n IActivePool _activePool,\n IZUSDToken _zusdToken,\n address _account,\n uint256 _ZUSD\n ) internal {\n _activePool.decreaseZUSDDebt(_ZUSD);\n _zusdToken.burn(_account, _ZUSD);\n }\n\n // --- 'Require' wrapper functions ---\n\n function _requireSingularCollChange(uint256 _collWithdrawal) internal view {\n require(\n msg.value == 0 || _collWithdrawal == 0,\n \"BorrowerOperations: Cannot withdraw and add coll\"\n );\n }\n\n function _requireCallerIsBorrower(address _borrower) internal view {\n require(\n msg.sender == _borrower,\n \"BorrowerOps: Caller must be the borrower for a withdrawal\"\n );\n }\n\n function _requireNonZeroAdjustment(\n uint256 _collWithdrawal,\n uint256 _ZUSDChange\n ) internal view {\n require(\n msg.value != 0 || _collWithdrawal != 0 || _ZUSDChange != 0,\n \"BorrowerOps: There must be either a collateral change or a debt change\"\n );\n }\n\n function _requireTroveisActive(ITroveManager _troveManager, address _borrower) internal view {\n uint256 status = _troveManager.getTroveStatus(_borrower);\n require(status == 1, \"BorrowerOps: Trove does not exist or is closed\");\n }\n\n function _requireTroveisNotActive(\n ITroveManager _troveManager,\n address _borrower\n ) internal view {\n uint256 status = _troveManager.getTroveStatus(_borrower);\n require(status != 1, \"BorrowerOps: Trove is active\");\n }\n\n function _requireNonZeroDebtChange(uint256 _ZUSDChange) internal pure {\n require(_ZUSDChange > 0, \"BorrowerOps: Debt increase requires non-zero debtChange\");\n }\n\n function _requireNotInRecoveryMode(uint256 _price) internal view {\n require(\n !_checkRecoveryMode(_price),\n \"BorrowerOps: Operation not permitted during Recovery Mode\"\n );\n }\n\n function _requireNoCollWithdrawal(uint256 _collWithdrawal) internal pure {\n require(\n _collWithdrawal == 0,\n \"BorrowerOps: Collateral withdrawal not permitted Recovery Mode\"\n );\n }\n\n function _requireValidAdjustmentInCurrentMode(\n bool _isRecoveryMode,\n uint256 _collWithdrawal,\n bool _isDebtIncrease,\n LocalVariables_adjustTrove memory _vars\n ) internal view {\n /*\n *In Recovery Mode, only allow:\n *\n * - Pure collateral top-up\n * - Pure debt repayment\n * - Collateral top-up with debt repayment\n * - A debt increase combined with a collateral top-up which makes the ICR >= 150% and improves the ICR (and by extension improves the TCR).\n *\n * In Normal Mode, ensure:\n *\n * - The new ICR is above MCR\n * - The adjustment won't pull the TCR below CCR\n */\n if (_isRecoveryMode) {\n _requireNoCollWithdrawal(_collWithdrawal);\n if (_isDebtIncrease) {\n _requireICRisAboveCCR(_vars.newICR);\n _requireNewICRisAboveOldICR(_vars.newICR, _vars.oldICR);\n }\n } else {\n // if Normal Mode\n _requireICRisAboveMCR(_vars.newICR);\n _vars.newTCR = _getNewTCRFromTroveChange(\n _vars.collChange,\n _vars.isCollIncrease,\n _vars.netDebtChange,\n _isDebtIncrease,\n _vars.price\n );\n _requireNewTCRisAboveCCR(_vars.newTCR);\n }\n }\n\n function _requireICRisAboveMCR(uint256 _newICR) internal view {\n require(\n _newICR >= liquityBaseParams.MCR(),\n \"BorrowerOps: An operation that would result in ICR < MCR is not permitted\"\n );\n }\n\n function _requireICRisAboveCCR(uint256 _newICR) internal view {\n require(\n _newICR >= liquityBaseParams.CCR(),\n \"BorrowerOps: Operation must leave trove with ICR >= CCR\"\n );\n }\n\n function _requireNewICRisAboveOldICR(uint256 _newICR, uint256 _oldICR) internal pure {\n require(\n _newICR >= _oldICR,\n \"BorrowerOps: Cannot decrease your Trove's ICR in Recovery Mode\"\n );\n }\n\n function _requireNewTCRisAboveCCR(uint256 _newTCR) internal view {\n require(\n _newTCR >= liquityBaseParams.CCR(),\n \"BorrowerOps: An operation that would result in TCR < CCR is not permitted\"\n );\n }\n\n function _requireAtLeastMinNetDebt(uint256 _netDebt) internal pure {\n require(\n _netDebt >= MIN_NET_DEBT,\n \"BorrowerOps: Trove's net debt must be greater than minimum\"\n );\n }\n\n function _requireValidZUSDRepayment(\n uint256 _currentDebt,\n uint256 _debtRepayment\n ) internal pure {\n require(\n _debtRepayment <= _currentDebt.sub(ZUSD_GAS_COMPENSATION),\n \"BorrowerOps: Amount repaid must not be larger than the Trove's debt\"\n );\n }\n\n function _requireCallerIsStabilityPool() internal view {\n require(msg.sender == stabilityPoolAddress, \"BorrowerOps: Caller is not Stability Pool\");\n }\n\n function _requireSufficientZUSDBalance(\n IZUSDToken _zusdToken,\n address _borrower,\n uint256 _debtRepayment\n ) internal view {\n require(\n _zusdToken.balanceOf(_borrower) >= _debtRepayment,\n \"BorrowerOps: Caller doesnt have enough ZUSD to make repayment\"\n );\n }\n\n function _requireValidMaxFeePercentage(\n uint256 _maxFeePercentage,\n bool _isRecoveryMode\n ) internal view {\n if (_isRecoveryMode) {\n require(\n _maxFeePercentage <= DECIMAL_PRECISION,\n \"Max fee percentage must less than or equal to 100%\"\n );\n } else {\n require(\n _maxFeePercentage >= liquityBaseParams.BORROWING_FEE_FLOOR() &&\n _maxFeePercentage <= DECIMAL_PRECISION,\n \"Max fee percentage must be between 0.5% and 100%\"\n );\n }\n }\n\n // --- ICR and TCR getters ---\n\n /// Compute the new collateral ratio, considering the change in coll and debt. Assumes 0 pending rewards.\n function _getNewNominalICRFromTroveChange(\n uint256 _coll,\n uint256 _debt,\n uint256 _collChange,\n bool _isCollIncrease,\n uint256 _debtChange,\n bool _isDebtIncrease\n ) internal pure returns (uint256) {\n (uint256 newColl, uint256 newDebt) = _getNewTroveAmounts(\n _coll,\n _debt,\n _collChange,\n _isCollIncrease,\n _debtChange,\n _isDebtIncrease\n );\n\n uint256 newNICR = LiquityMath._computeNominalCR(newColl, newDebt);\n return newNICR;\n }\n\n /// Compute the new collateral ratio, considering the change in coll and debt. Assumes 0 pending rewards.\n function _getNewICRFromTroveChange(\n uint256 _coll,\n uint256 _debt,\n uint256 _collChange,\n bool _isCollIncrease,\n uint256 _debtChange,\n bool _isDebtIncrease,\n uint256 _price\n ) internal pure returns (uint256) {\n (uint256 newColl, uint256 newDebt) = _getNewTroveAmounts(\n _coll,\n _debt,\n _collChange,\n _isCollIncrease,\n _debtChange,\n _isDebtIncrease\n );\n\n uint256 newICR = LiquityMath._computeCR(newColl, newDebt, _price);\n return newICR;\n }\n\n function _getNewTroveAmounts(\n uint256 _coll,\n uint256 _debt,\n uint256 _collChange,\n bool _isCollIncrease,\n uint256 _debtChange,\n bool _isDebtIncrease\n ) internal pure returns (uint256, uint256) {\n uint256 newColl = _coll;\n uint256 newDebt = _debt;\n\n newColl = _isCollIncrease ? _coll.add(_collChange) : _coll.sub(_collChange);\n newDebt = _isDebtIncrease ? _debt.add(_debtChange) : _debt.sub(_debtChange);\n\n return (newColl, newDebt);\n }\n\n function _getNewTCRFromTroveChange(\n uint256 _collChange,\n bool _isCollIncrease,\n uint256 _debtChange,\n bool _isDebtIncrease,\n uint256 _price\n ) internal view returns (uint256) {\n uint256 totalColl = getEntireSystemColl();\n uint256 totalDebt = getEntireSystemDebt();\n\n totalColl = _isCollIncrease ? totalColl.add(_collChange) : totalColl.sub(_collChange);\n totalDebt = _isDebtIncrease ? totalDebt.add(_debtChange) : totalDebt.sub(_debtChange);\n\n uint256 newTCR = LiquityMath._computeCR(totalColl, totalDebt, _price);\n return newTCR;\n }\n\n function getCompositeDebt(uint256 _debt) external view override returns (uint256) {\n return _getCompositeDebt(_debt);\n }\n\n function BORROWING_FEE_FLOOR() external view override returns (uint256) {\n return liquityBaseParams.BORROWING_FEE_FLOOR();\n }\n\n function getMassetManager() external view override returns (IMassetManager) {\n return massetManager;\n }\n}\n" + }, + "contracts/BorrowerOperationsStorage.sol": { + "content": "// SPDX-License-Identifier: MIT\n\npragma solidity 0.6.11;\n\nimport \"./Interfaces/IActivePool.sol\";\nimport \"./Interfaces/IBorrowerOperations.sol\";\nimport \"./Interfaces/ITroveManager.sol\";\nimport \"./Interfaces/IZUSDToken.sol\";\nimport \"./Interfaces/ICollSurplusPool.sol\";\nimport \"./Interfaces/ISortedTroves.sol\";\nimport \"./Interfaces/IZEROStaking.sol\";\nimport \"./Interfaces/IFeeDistributor.sol\";\nimport \"./Dependencies/Ownable.sol\";\nimport \"./Dependencies/Mynt/IMassetManager.sol\";\n\ncontract BorrowerOperationsStorage is Ownable {\n string public constant NAME = \"BorrowerOperations\";\n\n // --- Connected contract declarations ---\n\n ITroveManager public troveManager;\n\n address stabilityPoolAddress;\n\n address gasPoolAddress;\n\n ICollSurplusPool collSurplusPool;\n\n IZEROStaking public zeroStaking;\n address public zeroStakingAddress;\n\n IZUSDToken public zusdToken;\n\n // A doubly linked list of Troves, sorted by their collateral ratios\n ISortedTroves public sortedTroves;\n\n IMassetManager public massetManager;\n IFeeDistributor public feeDistributor;\n}\n" + }, + "contracts/CollSurplusPool.sol": { + "content": "// SPDX-License-Identifier: MIT\n\npragma solidity 0.6.11;\n\nimport \"./Interfaces/ICollSurplusPool.sol\";\nimport \"./Dependencies/SafeMath.sol\";\nimport \"./Dependencies/CheckContract.sol\";\nimport \"./Dependencies/console.sol\";\nimport \"./CollSurplusPoolStorage.sol\";\n\ncontract CollSurplusPool is CollSurplusPoolStorage, CheckContract, ICollSurplusPool {\n using SafeMath for uint256;\n // --- Events ---\n\n event BorrowerOperationsAddressChanged(address _newBorrowerOperationsAddress);\n event TroveManagerAddressChanged(address _newTroveManagerAddress);\n event ActivePoolAddressChanged(address _newActivePoolAddress);\n\n event CollBalanceUpdated(address indexed _account, uint256 _newBalance);\n event EtherSent(address _to, uint256 _amount);\n\n // --- Contract setters ---\n\n function setAddresses(\n address _borrowerOperationsAddress,\n address _troveManagerAddress,\n address _activePoolAddress\n ) external override onlyOwner {\n checkContract(_borrowerOperationsAddress);\n checkContract(_troveManagerAddress);\n checkContract(_activePoolAddress);\n\n borrowerOperationsAddress = _borrowerOperationsAddress;\n troveManagerAddress = _troveManagerAddress;\n activePoolAddress = _activePoolAddress;\n\n emit BorrowerOperationsAddressChanged(_borrowerOperationsAddress);\n emit TroveManagerAddressChanged(_troveManagerAddress);\n emit ActivePoolAddressChanged(_activePoolAddress);\n }\n\n /** Returns the ETH state variable at ActivePool address.\n Not necessarily equal to the raw ether balance - ether can be forcibly sent to contracts. */\n function getETH() external view override returns (uint256) {\n return ETH;\n }\n\n function getCollateral(address _account) external view override returns (uint256) {\n return balances[_account];\n }\n\n // --- Pool functionality ---\n\n function accountSurplus(address _account, uint256 _amount) external override {\n _requireCallerIsTroveManager();\n\n uint256 newAmount = balances[_account].add(_amount);\n balances[_account] = newAmount;\n\n emit CollBalanceUpdated(_account, newAmount);\n }\n\n function claimColl(address _account) external override {\n _requireCallerIsBorrowerOperations();\n uint256 claimableColl = balances[_account];\n require(claimableColl > 0, \"CollSurplusPool: No collateral available to claim\");\n\n balances[_account] = 0;\n emit CollBalanceUpdated(_account, 0);\n\n ETH = ETH.sub(claimableColl);\n emit EtherSent(_account, claimableColl);\n\n (bool success, ) = _account.call{ value: claimableColl }(\"\");\n require(success, \"CollSurplusPool: sending ETH failed\");\n }\n\n /// @dev Gas forwarded to the fee receiver's receive hook. Ample for a receiver\n /// that only accepts the transfer and logs, while guaranteeing a\n /// gas-sinking receiver can never starve the claimant leg: a receiver\n /// needing more gas makes the fee leg fail, which is fail-open — the\n /// claimant then receives the full balance.\n uint256 private constant FEE_LEG_GAS_CAP = 100_000;\n\n /// @notice Two-leg claim: `_feeAmount` to `_feeReceiver`, remainder to `_account`.\n /// Only callable by BorrowerOperations (the ColFee surplus-claim hook);\n /// `claimColl` remains the untouched non-charging path.\n /// CEI: all effects (balance zeroing, ETH accounting) precede both external\n /// calls, so a reentrant claim sees balances == 0 and reverts. The single\n /// `ETH` decrement equals fee + net exactly. The fee leg is fail-open —\n /// if it fails, the claimant receives the full balance; the user leg stays\n /// fail-closed like `claimColl`.\n /// @return feePaid true iff the fee transfer succeeded (caller emits the matching event)\n function claimCollWithFee(\n address _account,\n address _feeReceiver,\n uint256 _feeAmount\n ) external override returns (bool feePaid) {\n _requireCallerIsBorrowerOperations();\n uint256 claimableColl = balances[_account];\n require(claimableColl > 0, \"CollSurplusPool: No collateral available to claim\");\n require(_feeAmount <= claimableColl, \"CollSurplusPool: fee exceeds claimable\");\n\n balances[_account] = 0;\n emit CollBalanceUpdated(_account, 0);\n\n ETH = ETH.sub(claimableColl);\n\n (feePaid, ) = _feeReceiver.call{ value: _feeAmount, gas: FEE_LEG_GAS_CAP }(\"\");\n uint256 userAmount = feePaid ? claimableColl.sub(_feeAmount) : claimableColl;\n if (feePaid) {\n emit EtherSent(_feeReceiver, _feeAmount);\n }\n\n emit EtherSent(_account, userAmount);\n (bool success, ) = _account.call{ value: userAmount }(\"\");\n require(success, \"CollSurplusPool: sending ETH failed\");\n }\n\n // --- 'require' functions ---\n\n function _requireCallerIsBorrowerOperations() internal view {\n require(\n msg.sender == borrowerOperationsAddress,\n \"CollSurplusPool: Caller is not Borrower Operations\"\n );\n }\n\n function _requireCallerIsTroveManager() internal view {\n require(msg.sender == troveManagerAddress, \"CollSurplusPool: Caller is not TroveManager\");\n }\n\n function _requireCallerIsActivePool() internal view {\n require(msg.sender == activePoolAddress, \"CollSurplusPool: Caller is not Active Pool\");\n }\n\n // --- Fallback function ---\n\n receive() external payable {\n _requireCallerIsActivePool();\n ETH = ETH.add(msg.value);\n }\n}\n" + }, + "contracts/CollSurplusPoolStorage.sol": { + "content": "// SPDX-License-Identifier: MIT\n\npragma solidity 0.6.11;\n\nimport \"./Dependencies/Ownable.sol\";\n\ncontract CollSurplusPoolStorage is Ownable {\n string public constant NAME = \"CollSurplusPool\";\n\n address public borrowerOperationsAddress;\n address public troveManagerAddress;\n address public activePoolAddress;\n\n // deposited ether tracker\n uint256 internal ETH;\n // Collateral surplus claimable by trove owners\n mapping(address => uint256) internal balances;\n}\n" + }, + "contracts/DefaultPool.sol": { + "content": "// SPDX-License-Identifier: MIT\n\npragma solidity 0.6.11;\n\nimport \"./Interfaces/IDefaultPool.sol\";\nimport \"./Dependencies/SafeMath.sol\";\nimport \"./Dependencies/CheckContract.sol\";\nimport \"./Dependencies/console.sol\";\nimport \"./DefaultPoolStorage.sol\";\n\n/**\n * The Default Pool holds the ETH and ZUSD debt (but not ZUSD tokens) from liquidations that have been redistributed\n * to active troves but not yet \"applied\", i.e. not yet recorded on a recipient active trove's struct.\n *\n * When a trove makes an operation that applies its pending ETH and ZUSD debt, its pending ETH and ZUSD debt is moved\n * from the Default Pool to the Active Pool.\n */\ncontract DefaultPool is DefaultPoolStorage, CheckContract, IDefaultPool {\n using SafeMath for uint256;\n\n event TroveManagerAddressChanged(address _newTroveManagerAddress);\n event DefaultPoolZUSDDebtUpdated(uint256 _ZUSDDebt);\n event DefaultPoolETHBalanceUpdated(uint256 _ETH);\n\n // --- Dependency setters ---\n\n function setAddresses(address _troveManagerAddress, address _activePoolAddress)\n external\n onlyOwner\n {\n checkContract(_troveManagerAddress);\n checkContract(_activePoolAddress);\n\n troveManagerAddress = _troveManagerAddress;\n activePoolAddress = _activePoolAddress;\n\n emit TroveManagerAddressChanged(_troveManagerAddress);\n emit ActivePoolAddressChanged(_activePoolAddress);\n }\n\n // --- Getters for public variables. Required by IPool interface ---\n\n /**\n * @return the ETH state variable.\n *\n * Not necessarily equal to the the contract's raw ETH balance - ether can be forcibly sent to contracts.\n */\n function getETH() external view override returns (uint256) {\n return ETH;\n }\n\n function getZUSDDebt() external view override returns (uint256) {\n return ZUSDDebt;\n }\n\n // --- Pool functionality ---\n\n function sendETHToActivePool(uint256 _amount) external override {\n _requireCallerIsTroveManager();\n address activePool = activePoolAddress; // cache to save an SLOAD\n ETH = ETH.sub(_amount);\n emit DefaultPoolETHBalanceUpdated(ETH);\n emit EtherSent(activePool, _amount);\n\n (bool success, ) = activePool.call{ value: _amount }(\"\");\n require(success, \"DefaultPool: sending ETH failed\");\n }\n\n function increaseZUSDDebt(uint256 _amount) external override {\n _requireCallerIsTroveManager();\n ZUSDDebt = ZUSDDebt.add(_amount);\n emit DefaultPoolZUSDDebtUpdated(ZUSDDebt);\n }\n\n function decreaseZUSDDebt(uint256 _amount) external override {\n _requireCallerIsTroveManager();\n ZUSDDebt = ZUSDDebt.sub(_amount);\n emit DefaultPoolZUSDDebtUpdated(ZUSDDebt);\n }\n\n // --- 'require' functions ---\n\n function _requireCallerIsActivePool() internal view {\n require(msg.sender == activePoolAddress, \"DefaultPool: Caller is not the ActivePool\");\n }\n\n function _requireCallerIsTroveManager() internal view {\n require(msg.sender == troveManagerAddress, \"DefaultPool: Caller is not the TroveManager\");\n }\n\n // --- Fallback function ---\n\n receive() external payable {\n _requireCallerIsActivePool();\n ETH = ETH.add(msg.value);\n emit DefaultPoolETHBalanceUpdated(ETH);\n }\n}\n" + }, + "contracts/DefaultPoolStorage.sol": { + "content": "// SPDX-License-Identifier: MIT\n\npragma solidity 0.6.11;\n\nimport \"./Dependencies/SafeMath.sol\";\nimport \"./Dependencies/Ownable.sol\";\n\ncontract DefaultPoolStorage is Ownable {\n string public constant NAME = \"DefaultPool\";\n\n address public troveManagerAddress;\n address public activePoolAddress;\n uint256 internal ETH; // deposited ETH tracker\n uint256 internal ZUSDDebt; // debt\n}\n" + }, + "contracts/Dependencies/BaseMath.sol": { + "content": "// SPDX-License-Identifier: MIT\npragma solidity 0.6.11;\n\n\ncontract BaseMath {\n uint constant public DECIMAL_PRECISION = 1e18;\n}\n" + }, + "contracts/Dependencies/CheckContract.sol": { + "content": "// SPDX-License-Identifier: MIT\n\npragma solidity 0.6.11;\n\n\ncontract CheckContract {\n /**\n * @dev Check that the account is an already deployed non-destroyed contract.\n * See: https://github.com/OpenZeppelin/openzeppelin-contracts/blob/master/contracts/utils/Address.sol#L12\n */\n function checkContract(address _account) internal view {\n require(_account != address(0), \"Account cannot be zero address\");\n\n uint256 size;\n // solhint-disable-next-line no-inline-assembly\n assembly { size := extcodesize(_account) }\n require(size > 0, \"Account code size cannot be zero\");\n }\n}\n" + }, + "contracts/Dependencies/console.sol": { + "content": "// SPDX-License-Identifier: MIT\n\npragma solidity 0.6.11;\n\n// Buidler's helper contract for console logging\nlibrary console {\n\taddress constant CONSOLE_ADDRESS = address(0x000000000000000000636F6e736F6c652e6c6f67);\n\n\tfunction log() internal view {\n\t\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\"log()\"));\n\t\tignored;\n\t}\tfunction logInt(int p0) internal view {\n\t\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\"log(int)\", p0));\n\t\tignored;\n\t}\n\n\tfunction logUint(uint p0) internal view {\n\t\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\"log(uint)\", p0));\n\t\tignored;\n\t}\n\n\tfunction logString(string memory p0) internal view {\n\t\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\"log(string)\", p0));\n\t\tignored;\n\t}\n\n\tfunction logBool(bool p0) internal view {\n\t\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\"log(bool)\", p0));\n\t\tignored;\n\t}\n\n\tfunction logAddress(address p0) internal view {\n\t\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\"log(address)\", p0));\n\t\tignored;\n\t}\n\n\tfunction logBytes(bytes memory p0) internal view {\n\t\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\"log(bytes)\", p0));\n\t\tignored;\n\t}\n\n\tfunction logByte(byte p0) internal view {\n\t\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\"log(byte)\", p0));\n\t\tignored;\n\t}\n\n\tfunction logBytes1(bytes1 p0) internal view {\n\t\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\"log(bytes1)\", p0));\n\t\tignored;\n\t}\n\n\tfunction logBytes2(bytes2 p0) internal view {\n\t\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\"log(bytes2)\", p0));\n\t\tignored;\n\t}\n\n\tfunction logBytes3(bytes3 p0) internal view {\n\t\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\"log(bytes3)\", p0));\n\t\tignored;\n\t}\n\n\tfunction logBytes4(bytes4 p0) internal view {\n\t\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\"log(bytes4)\", p0));\n\t\tignored;\n\t}\n\n\tfunction logBytes5(bytes5 p0) internal view {\n\t\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\"log(bytes5)\", p0));\n\t\tignored;\n\t}\n\n\tfunction logBytes6(bytes6 p0) internal view {\n\t\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\"log(bytes6)\", p0));\n\t\tignored;\n\t}\n\n\tfunction logBytes7(bytes7 p0) internal view {\n\t\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\"log(bytes7)\", p0));\n\t\tignored;\n\t}\n\n\tfunction logBytes8(bytes8 p0) internal view {\n\t\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\"log(bytes8)\", p0));\n\t\tignored;\n\t}\n\n\tfunction logBytes9(bytes9 p0) internal view {\n\t\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\"log(bytes9)\", p0));\n\t\tignored;\n\t}\n\n\tfunction logBytes10(bytes10 p0) internal view {\n\t\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\"log(bytes10)\", p0));\n\t\tignored;\n\t}\n\n\tfunction logBytes11(bytes11 p0) internal view {\n\t\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\"log(bytes11)\", p0));\n\t\tignored;\n\t}\n\n\tfunction logBytes12(bytes12 p0) internal view {\n\t\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\"log(bytes12)\", p0));\n\t\tignored;\n\t}\n\n\tfunction logBytes13(bytes13 p0) internal view {\n\t\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\"log(bytes13)\", p0));\n\t\tignored;\n\t}\n\n\tfunction logBytes14(bytes14 p0) internal view {\n\t\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\"log(bytes14)\", p0));\n\t\tignored;\n\t}\n\n\tfunction logBytes15(bytes15 p0) internal view {\n\t\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\"log(bytes15)\", p0));\n\t\tignored;\n\t}\n\n\tfunction logBytes16(bytes16 p0) internal view {\n\t\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\"log(bytes16)\", p0));\n\t\tignored;\n\t}\n\n\tfunction logBytes17(bytes17 p0) internal view {\n\t\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\"log(bytes17)\", p0));\n\t\tignored;\n\t}\n\n\tfunction logBytes18(bytes18 p0) internal view {\n\t\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\"log(bytes18)\", p0));\n\t\tignored;\n\t}\n\n\tfunction logBytes19(bytes19 p0) internal view {\n\t\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\"log(bytes19)\", p0));\n\t\tignored;\n\t}\n\n\tfunction logBytes20(bytes20 p0) internal view {\n\t\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\"log(bytes20)\", p0));\n\t\tignored;\n\t}\n\n\tfunction logBytes21(bytes21 p0) internal view {\n\t\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\"log(bytes21)\", p0));\n\t\tignored;\n\t}\n\n\tfunction logBytes22(bytes22 p0) internal view {\n\t\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\"log(bytes22)\", p0));\n\t\tignored;\n\t}\n\n\tfunction logBytes23(bytes23 p0) internal view {\n\t\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\"log(bytes23)\", p0));\n\t\tignored;\n\t}\n\n\tfunction logBytes24(bytes24 p0) internal view {\n\t\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\"log(bytes24)\", p0));\n\t\tignored;\n\t}\n\n\tfunction logBytes25(bytes25 p0) internal view {\n\t\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\"log(bytes25)\", p0));\n\t\tignored;\n\t}\n\n\tfunction logBytes26(bytes26 p0) internal view {\n\t\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\"log(bytes26)\", p0));\n\t\tignored;\n\t}\n\n\tfunction logBytes27(bytes27 p0) internal view {\n\t\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\"log(bytes27)\", p0));\n\t\tignored;\n\t}\n\n\tfunction logBytes28(bytes28 p0) internal view {\n\t\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\"log(bytes28)\", p0));\n\t\tignored;\n\t}\n\n\tfunction logBytes29(bytes29 p0) internal view {\n\t\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\"log(bytes29)\", p0));\n\t\tignored;\n\t}\n\n\tfunction logBytes30(bytes30 p0) internal view {\n\t\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\"log(bytes30)\", p0));\n\t\tignored;\n\t}\n\n\tfunction logBytes31(bytes31 p0) internal view {\n\t\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\"log(bytes31)\", p0));\n\t\tignored;\n\t}\n\n\tfunction logBytes32(bytes32 p0) internal view {\n\t\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\"log(bytes32)\", p0));\n\t\tignored;\n\t}\n\n\tfunction log(uint p0) internal view {\n\t\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\"log(uint)\", p0));\n\t\tignored;\n\t}\n\n\tfunction log(string memory p0) internal view {\n\t\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\"log(string)\", p0));\n\t\tignored;\n\t}\n\n\tfunction log(bool p0) internal view {\n\t\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\"log(bool)\", p0));\n\t\tignored;\n\t}\n\n\tfunction log(address p0) internal view {\n\t\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\"log(address)\", p0));\n\t\tignored;\n\t}\n\n\tfunction log(uint p0, uint p1) internal view {\n\t\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\"log(uint,uint)\", p0, p1));\n\t\tignored;\n\t}\n\n\tfunction log(uint p0, string memory p1) internal view {\n\t\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\"log(uint,string)\", p0, p1));\n\t\tignored;\n\t}\n\n\tfunction log(uint p0, bool p1) internal view {\n\t\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\"log(uint,bool)\", p0, p1));\n\t\tignored;\n\t}\n\n\tfunction log(uint p0, address p1) internal view {\n\t\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\"log(uint,address)\", p0, p1));\n\t\tignored;\n\t}\n\n\tfunction log(string memory p0, uint p1) internal view {\n\t\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\"log(string,uint)\", p0, p1));\n\t\tignored;\n\t}\n\n\tfunction log(string memory p0, string memory p1) internal view {\n\t\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\"log(string,string)\", p0, p1));\n\t\tignored;\n\t}\n\n\tfunction log(string memory p0, bool p1) internal view {\n\t\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\"log(string,bool)\", p0, p1));\n\t\tignored;\n\t}\n\n\tfunction log(string memory p0, address p1) internal view {\n\t\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\"log(string,address)\", p0, p1));\n\t\tignored;\n\t}\n\n\tfunction log(bool p0, uint p1) internal view {\n\t\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\"log(bool,uint)\", p0, p1));\n\t\tignored;\n\t}\n\n\tfunction log(bool p0, string memory p1) internal view {\n\t\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\"log(bool,string)\", p0, p1));\n\t\tignored;\n\t}\n\n\tfunction log(bool p0, bool p1) internal view {\n\t\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\"log(bool,bool)\", p0, p1));\n\t\tignored;\n\t}\n\n\tfunction log(bool p0, address p1) internal view {\n\t\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\"log(bool,address)\", p0, p1));\n\t\tignored;\n\t}\n\n\tfunction log(address p0, uint p1) internal view {\n\t\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\"log(address,uint)\", p0, p1));\n\t\tignored;\n\t}\n\n\tfunction log(address p0, string memory p1) internal view {\n\t\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\"log(address,string)\", p0, p1));\n\t\tignored;\n\t}\n\n\tfunction log(address p0, bool p1) internal view {\n\t\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\"log(address,bool)\", p0, p1));\n\t\tignored;\n\t}\n\n\tfunction log(address p0, address p1) internal view {\n\t\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\"log(address,address)\", p0, p1));\n\t\tignored;\n\t}\n\n\tfunction log(uint p0, uint p1, uint p2) internal view {\n\t\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\"log(uint,uint,uint)\", p0, p1, p2));\n\t\tignored;\n\t}\n\n\tfunction log(uint p0, uint p1, string memory p2) internal view {\n\t\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\"log(uint,uint,string)\", p0, p1, p2));\n\t\tignored;\n\t}\n\n\tfunction log(uint p0, uint p1, bool p2) internal view {\n\t\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\"log(uint,uint,bool)\", p0, p1, p2));\n\t\tignored;\n\t}\n\n\tfunction log(uint p0, uint p1, address p2) internal view {\n\t\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\"log(uint,uint,address)\", p0, p1, p2));\n\t\tignored;\n\t}\n\n\tfunction log(uint p0, string memory p1, uint p2) internal view {\n\t\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\"log(uint,string,uint)\", p0, p1, p2));\n\t\tignored;\n\t}\n\n\tfunction log(uint p0, string memory p1, string memory p2) internal view {\n\t\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\"log(uint,string,string)\", p0, p1, p2));\n\t\tignored;\n\t}\n\n\tfunction log(uint p0, string memory p1, bool p2) internal view {\n\t\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\"log(uint,string,bool)\", p0, p1, p2));\n\t\tignored;\n\t}\n\n\tfunction log(uint p0, string memory p1, address p2) internal view {\n\t\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\"log(uint,string,address)\", p0, p1, p2));\n\t\tignored;\n\t}\n\n\tfunction log(uint p0, bool p1, uint p2) internal view {\n\t\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\"log(uint,bool,uint)\", p0, p1, p2));\n\t\tignored;\n\t}\n\n\tfunction log(uint p0, bool p1, string memory p2) internal view {\n\t\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\"log(uint,bool,string)\", p0, p1, p2));\n\t\tignored;\n\t}\n\n\tfunction log(uint p0, bool p1, bool p2) internal view {\n\t\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\"log(uint,bool,bool)\", p0, p1, p2));\n\t\tignored;\n\t}\n\n\tfunction log(uint p0, bool p1, address p2) internal view {\n\t\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\"log(uint,bool,address)\", p0, p1, p2));\n\t\tignored;\n\t}\n\n\tfunction log(uint p0, address p1, uint p2) internal view {\n\t\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\"log(uint,address,uint)\", p0, p1, p2));\n\t\tignored;\n\t}\n\n\tfunction log(uint p0, address p1, string memory p2) internal view {\n\t\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\"log(uint,address,string)\", p0, p1, p2));\n\t\tignored;\n\t}\n\n\tfunction log(uint p0, address p1, bool p2) internal view {\n\t\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\"log(uint,address,bool)\", p0, p1, p2));\n\t\tignored;\n\t}\n\n\tfunction log(uint p0, address p1, address p2) internal view {\n\t\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\"log(uint,address,address)\", p0, p1, p2));\n\t\tignored;\n\t}\n\n\tfunction log(string memory p0, uint p1, uint p2) internal view {\n\t\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\"log(string,uint,uint)\", p0, p1, p2));\n\t\tignored;\n\t}\n\n\tfunction log(string memory p0, uint p1, string memory p2) internal view {\n\t\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\"log(string,uint,string)\", p0, p1, p2));\n\t\tignored;\n\t}\n\n\tfunction log(string memory p0, uint p1, bool p2) internal view {\n\t\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\"log(string,uint,bool)\", p0, p1, p2));\n\t\tignored;\n\t}\n\n\tfunction log(string memory p0, uint p1, address p2) internal view {\n\t\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\"log(string,uint,address)\", p0, p1, p2));\n\t\tignored;\n\t}\n\n\tfunction log(string memory p0, string memory p1, uint p2) internal view {\n\t\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\"log(string,string,uint)\", p0, p1, p2));\n\t\tignored;\n\t}\n\n\tfunction log(string memory p0, string memory p1, string memory p2) internal view {\n\t\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\"log(string,string,string)\", p0, p1, p2));\n\t\tignored;\n\t}\n\n\tfunction log(string memory p0, string memory p1, bool p2) internal view {\n\t\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\"log(string,string,bool)\", p0, p1, p2));\n\t\tignored;\n\t}\n\n\tfunction log(string memory p0, string memory p1, address p2) internal view {\n\t\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\"log(string,string,address)\", p0, p1, p2));\n\t\tignored;\n\t}\n\n\tfunction log(string memory p0, bool p1, uint p2) internal view {\n\t\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\"log(string,bool,uint)\", p0, p1, p2));\n\t\tignored;\n\t}\n\n\tfunction log(string memory p0, bool p1, string memory p2) internal view {\n\t\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\"log(string,bool,string)\", p0, p1, p2));\n\t\tignored;\n\t}\n\n\tfunction log(string memory p0, bool p1, bool p2) internal view {\n\t\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\"log(string,bool,bool)\", p0, p1, p2));\n\t\tignored;\n\t}\n\n\tfunction log(string memory p0, bool p1, address p2) internal view {\n\t\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\"log(string,bool,address)\", p0, p1, p2));\n\t\tignored;\n\t}\n\n\tfunction log(string memory p0, address p1, uint p2) internal view {\n\t\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\"log(string,address,uint)\", p0, p1, p2));\n\t\tignored;\n\t}\n\n\tfunction log(string memory p0, address p1, string memory p2) internal view {\n\t\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\"log(string,address,string)\", p0, p1, p2));\n\t\tignored;\n\t}\n\n\tfunction log(string memory p0, address p1, bool p2) internal view {\n\t\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\"log(string,address,bool)\", p0, p1, p2));\n\t\tignored;\n\t}\n\n\tfunction log(string memory p0, address p1, address p2) internal view {\n\t\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\"log(string,address,address)\", p0, p1, p2));\n\t\tignored;\n\t}\n\n\tfunction log(bool p0, uint p1, uint p2) internal view {\n\t\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\"log(bool,uint,uint)\", p0, p1, p2));\n\t\tignored;\n\t}\n\n\tfunction log(bool p0, uint p1, string memory p2) internal view {\n\t\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\"log(bool,uint,string)\", p0, p1, p2));\n\t\tignored;\n\t}\n\n\tfunction log(bool p0, uint p1, bool p2) internal view {\n\t\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\"log(bool,uint,bool)\", p0, p1, p2));\n\t\tignored;\n\t}\n\n\tfunction log(bool p0, uint p1, address p2) internal view {\n\t\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\"log(bool,uint,address)\", p0, p1, p2));\n\t\tignored;\n\t}\n\n\tfunction log(bool p0, string memory p1, uint p2) internal view {\n\t\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\"log(bool,string,uint)\", p0, p1, p2));\n\t\tignored;\n\t}\n\n\tfunction log(bool p0, string memory p1, string memory p2) internal view {\n\t\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\"log(bool,string,string)\", p0, p1, p2));\n\t\tignored;\n\t}\n\n\tfunction log(bool p0, string memory p1, bool p2) internal view {\n\t\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\"log(bool,string,bool)\", p0, p1, p2));\n\t\tignored;\n\t}\n\n\tfunction log(bool p0, string memory p1, address p2) internal view {\n\t\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\"log(bool,string,address)\", p0, p1, p2));\n\t\tignored;\n\t}\n\n\tfunction log(bool p0, bool p1, uint p2) internal view {\n\t\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\"log(bool,bool,uint)\", p0, p1, p2));\n\t\tignored;\n\t}\n\n\tfunction log(bool p0, bool p1, string memory p2) internal view {\n\t\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\"log(bool,bool,string)\", p0, p1, p2));\n\t\tignored;\n\t}\n\n\tfunction log(bool p0, bool p1, bool p2) internal view {\n\t\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\"log(bool,bool,bool)\", p0, p1, p2));\n\t\tignored;\n\t}\n\n\tfunction log(bool p0, bool p1, address p2) internal view {\n\t\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\"log(bool,bool,address)\", p0, p1, p2));\n\t\tignored;\n\t}\n\n\tfunction log(bool p0, address p1, uint p2) internal view {\n\t\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\"log(bool,address,uint)\", p0, p1, p2));\n\t\tignored;\n\t}\n\n\tfunction log(bool p0, address p1, string memory p2) internal view {\n\t\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\"log(bool,address,string)\", p0, p1, p2));\n\t\tignored;\n\t}\n\n\tfunction log(bool p0, address p1, bool p2) internal view {\n\t\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\"log(bool,address,bool)\", p0, p1, p2));\n\t\tignored;\n\t}\n\n\tfunction log(bool p0, address p1, address p2) internal view {\n\t\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\"log(bool,address,address)\", p0, p1, p2));\n\t\tignored;\n\t}\n\n\tfunction log(address p0, uint p1, uint p2) internal view {\n\t\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\"log(address,uint,uint)\", p0, p1, p2));\n\t\tignored;\n\t}\n\n\tfunction log(address p0, uint p1, string memory p2) internal view {\n\t\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\"log(address,uint,string)\", p0, p1, p2));\n\t\tignored;\n\t}\n\n\tfunction log(address p0, uint p1, bool p2) internal view {\n\t\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\"log(address,uint,bool)\", p0, p1, p2));\n\t\tignored;\n\t}\n\n\tfunction log(address p0, uint p1, address p2) internal view {\n\t\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\"log(address,uint,address)\", p0, p1, p2));\n\t\tignored;\n\t}\n\n\tfunction log(address p0, string memory p1, uint p2) internal view {\n\t\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\"log(address,string,uint)\", p0, p1, p2));\n\t\tignored;\n\t}\n\n\tfunction log(address p0, string memory p1, string memory p2) internal view {\n\t\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\"log(address,string,string)\", p0, p1, p2));\n\t\tignored;\n\t}\n\n\tfunction log(address p0, string memory p1, bool p2) internal view {\n\t\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\"log(address,string,bool)\", p0, p1, p2));\n\t\tignored;\n\t}\n\n\tfunction log(address p0, string memory p1, address p2) internal view {\n\t\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\"log(address,string,address)\", p0, p1, p2));\n\t\tignored;\n\t}\n\n\tfunction log(address p0, bool p1, uint p2) internal view {\n\t\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\"log(address,bool,uint)\", p0, p1, p2));\n\t\tignored;\n\t}\n\n\tfunction log(address p0, bool p1, string memory p2) internal view {\n\t\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\"log(address,bool,string)\", p0, p1, p2));\n\t\tignored;\n\t}\n\n\tfunction log(address p0, bool p1, bool p2) internal view {\n\t\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\"log(address,bool,bool)\", p0, p1, p2));\n\t\tignored;\n\t}\n\n\tfunction log(address p0, bool p1, address p2) internal view {\n\t\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\"log(address,bool,address)\", p0, p1, p2));\n\t\tignored;\n\t}\n\n\tfunction log(address p0, address p1, uint p2) internal view {\n\t\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\"log(address,address,uint)\", p0, p1, p2));\n\t\tignored;\n\t}\n\n\tfunction log(address p0, address p1, string memory p2) internal view {\n\t\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\"log(address,address,string)\", p0, p1, p2));\n\t\tignored;\n\t}\n\n\tfunction log(address p0, address p1, bool p2) internal view {\n\t\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\"log(address,address,bool)\", p0, p1, p2));\n\t\tignored;\n\t}\n\n\tfunction log(address p0, address p1, address p2) internal view {\n\t\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\"log(address,address,address)\", p0, p1, p2));\n\t\tignored;\n\t}\n\n\tfunction log(uint p0, uint p1, uint p2, uint p3) internal view {\n\t\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\"log(uint,uint,uint,uint)\", p0, p1, p2, p3));\n\t\tignored;\n\t}\n\n\tfunction log(uint p0, uint p1, uint p2, string memory p3) internal view {\n\t\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\"log(uint,uint,uint,string)\", p0, p1, p2, p3));\n\t\tignored;\n\t}\n\n\tfunction log(uint p0, uint p1, uint p2, bool p3) internal view {\n\t\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\"log(uint,uint,uint,bool)\", p0, p1, p2, p3));\n\t\tignored;\n\t}\n\n\tfunction log(uint p0, uint p1, uint p2, address p3) internal view {\n\t\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\"log(uint,uint,uint,address)\", p0, p1, p2, p3));\n\t\tignored;\n\t}\n\n\tfunction log(uint p0, uint p1, string memory p2, uint p3) internal view {\n\t\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\"log(uint,uint,string,uint)\", p0, p1, p2, p3));\n\t\tignored;\n\t}\n\n\tfunction log(uint p0, uint p1, string memory p2, string memory p3) internal view {\n\t\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\"log(uint,uint,string,string)\", p0, p1, p2, p3));\n\t\tignored;\n\t}\n\n\tfunction log(uint p0, uint p1, string memory p2, bool p3) internal view {\n\t\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\"log(uint,uint,string,bool)\", p0, p1, p2, p3));\n\t\tignored;\n\t}\n\n\tfunction log(uint p0, uint p1, string memory p2, address p3) internal view {\n\t\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\"log(uint,uint,string,address)\", p0, p1, p2, p3));\n\t\tignored;\n\t}\n\n\tfunction log(uint p0, uint p1, bool p2, uint p3) internal view {\n\t\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\"log(uint,uint,bool,uint)\", p0, p1, p2, p3));\n\t\tignored;\n\t}\n\n\tfunction log(uint p0, uint p1, bool p2, string memory p3) internal view {\n\t\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\"log(uint,uint,bool,string)\", p0, p1, p2, p3));\n\t\tignored;\n\t}\n\n\tfunction log(uint p0, uint p1, bool p2, bool p3) internal view {\n\t\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\"log(uint,uint,bool,bool)\", p0, p1, p2, p3));\n\t\tignored;\n\t}\n\n\tfunction log(uint p0, uint p1, bool p2, address p3) internal view {\n\t\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\"log(uint,uint,bool,address)\", p0, p1, p2, p3));\n\t\tignored;\n\t}\n\n\tfunction log(uint p0, uint p1, address p2, uint p3) internal view {\n\t\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\"log(uint,uint,address,uint)\", p0, p1, p2, p3));\n\t\tignored;\n\t}\n\n\tfunction log(uint p0, uint p1, address p2, string memory p3) internal view {\n\t\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\"log(uint,uint,address,string)\", p0, p1, p2, p3));\n\t\tignored;\n\t}\n\n\tfunction log(uint p0, uint p1, address p2, bool p3) internal view {\n\t\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\"log(uint,uint,address,bool)\", p0, p1, p2, p3));\n\t\tignored;\n\t}\n\n\tfunction log(uint p0, uint p1, address p2, address p3) internal view {\n\t\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\"log(uint,uint,address,address)\", p0, p1, p2, p3));\n\t\tignored;\n\t}\n\n\tfunction log(uint p0, string memory p1, uint p2, uint p3) internal view {\n\t\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\"log(uint,string,uint,uint)\", p0, p1, p2, p3));\n\t\tignored;\n\t}\n\n\tfunction log(uint p0, string memory p1, uint p2, string memory p3) internal view {\n\t\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\"log(uint,string,uint,string)\", p0, p1, p2, p3));\n\t\tignored;\n\t}\n\n\tfunction log(uint p0, string memory p1, uint p2, bool p3) internal view {\n\t\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\"log(uint,string,uint,bool)\", p0, p1, p2, p3));\n\t\tignored;\n\t}\n\n\tfunction log(uint p0, string memory p1, uint p2, address p3) internal view {\n\t\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\"log(uint,string,uint,address)\", p0, p1, p2, p3));\n\t\tignored;\n\t}\n\n\tfunction log(uint p0, string memory p1, string memory p2, uint p3) internal view {\n\t\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\"log(uint,string,string,uint)\", p0, p1, p2, p3));\n\t\tignored;\n\t}\n\n\tfunction log(uint p0, string memory p1, string memory p2, string memory p3) internal view {\n\t\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\"log(uint,string,string,string)\", p0, p1, p2, p3));\n\t\tignored;\n\t}\n\n\tfunction log(uint p0, string memory p1, string memory p2, bool p3) internal view {\n\t\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\"log(uint,string,string,bool)\", p0, p1, p2, p3));\n\t\tignored;\n\t}\n\n\tfunction log(uint p0, string memory p1, string memory p2, address p3) internal view {\n\t\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\"log(uint,string,string,address)\", p0, p1, p2, p3));\n\t\tignored;\n\t}\n\n\tfunction log(uint p0, string memory p1, bool p2, uint p3) internal view {\n\t\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\"log(uint,string,bool,uint)\", p0, p1, p2, p3));\n\t\tignored;\n\t}\n\n\tfunction log(uint p0, string memory p1, bool p2, string memory p3) internal view {\n\t\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\"log(uint,string,bool,string)\", p0, p1, p2, p3));\n\t\tignored;\n\t}\n\n\tfunction log(uint p0, string memory p1, bool p2, bool p3) internal view {\n\t\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\"log(uint,string,bool,bool)\", p0, p1, p2, p3));\n\t\tignored;\n\t}\n\n\tfunction log(uint p0, string memory p1, bool p2, address p3) internal view {\n\t\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\"log(uint,string,bool,address)\", p0, p1, p2, p3));\n\t\tignored;\n\t}\n\n\tfunction log(uint p0, string memory p1, address p2, uint p3) internal view {\n\t\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\"log(uint,string,address,uint)\", p0, p1, p2, p3));\n\t\tignored;\n\t}\n\n\tfunction log(uint p0, string memory p1, address p2, string memory p3) internal view {\n\t\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\"log(uint,string,address,string)\", p0, p1, p2, p3));\n\t\tignored;\n\t}\n\n\tfunction log(uint p0, string memory p1, address p2, bool p3) internal view {\n\t\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\"log(uint,string,address,bool)\", p0, p1, p2, p3));\n\t\tignored;\n\t}\n\n\tfunction log(uint p0, string memory p1, address p2, address p3) internal view {\n\t\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\"log(uint,string,address,address)\", p0, p1, p2, p3));\n\t\tignored;\n\t}\n\n\tfunction log(uint p0, bool p1, uint p2, uint p3) internal view {\n\t\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\"log(uint,bool,uint,uint)\", p0, p1, p2, p3));\n\t\tignored;\n\t}\n\n\tfunction log(uint p0, bool p1, uint p2, string memory p3) internal view {\n\t\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\"log(uint,bool,uint,string)\", p0, p1, p2, p3));\n\t\tignored;\n\t}\n\n\tfunction log(uint p0, bool p1, uint p2, bool p3) internal view {\n\t\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\"log(uint,bool,uint,bool)\", p0, p1, p2, p3));\n\t\tignored;\n\t}\n\n\tfunction log(uint p0, bool p1, uint p2, address p3) internal view {\n\t\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\"log(uint,bool,uint,address)\", p0, p1, p2, p3));\n\t\tignored;\n\t}\n\n\tfunction log(uint p0, bool p1, string memory p2, uint p3) internal view {\n\t\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\"log(uint,bool,string,uint)\", p0, p1, p2, p3));\n\t\tignored;\n\t}\n\n\tfunction log(uint p0, bool p1, string memory p2, string memory p3) internal view {\n\t\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\"log(uint,bool,string,string)\", p0, p1, p2, p3));\n\t\tignored;\n\t}\n\n\tfunction log(uint p0, bool p1, string memory p2, bool p3) internal view {\n\t\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\"log(uint,bool,string,bool)\", p0, p1, p2, p3));\n\t\tignored;\n\t}\n\n\tfunction log(uint p0, bool p1, string memory p2, address p3) internal view {\n\t\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\"log(uint,bool,string,address)\", p0, p1, p2, p3));\n\t\tignored;\n\t}\n\n\tfunction log(uint p0, bool p1, bool p2, uint p3) internal view {\n\t\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\"log(uint,bool,bool,uint)\", p0, p1, p2, p3));\n\t\tignored;\n\t}\n\n\tfunction log(uint p0, bool p1, bool p2, string memory p3) internal view {\n\t\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\"log(uint,bool,bool,string)\", p0, p1, p2, p3));\n\t\tignored;\n\t}\n\n\tfunction log(uint p0, bool p1, bool p2, bool p3) internal view {\n\t\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\"log(uint,bool,bool,bool)\", p0, p1, p2, p3));\n\t\tignored;\n\t}\n\n\tfunction log(uint p0, bool p1, bool p2, address p3) internal view {\n\t\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\"log(uint,bool,bool,address)\", p0, p1, p2, p3));\n\t\tignored;\n\t}\n\n\tfunction log(uint p0, bool p1, address p2, uint p3) internal view {\n\t\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\"log(uint,bool,address,uint)\", p0, p1, p2, p3));\n\t\tignored;\n\t}\n\n\tfunction log(uint p0, bool p1, address p2, string memory p3) internal view {\n\t\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\"log(uint,bool,address,string)\", p0, p1, p2, p3));\n\t\tignored;\n\t}\n\n\tfunction log(uint p0, bool p1, address p2, bool p3) internal view {\n\t\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\"log(uint,bool,address,bool)\", p0, p1, p2, p3));\n\t\tignored;\n\t}\n\n\tfunction log(uint p0, bool p1, address p2, address p3) internal view {\n\t\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\"log(uint,bool,address,address)\", p0, p1, p2, p3));\n\t\tignored;\n\t}\n\n\tfunction log(uint p0, address p1, uint p2, uint p3) internal view {\n\t\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\"log(uint,address,uint,uint)\", p0, p1, p2, p3));\n\t\tignored;\n\t}\n\n\tfunction log(uint p0, address p1, uint p2, string memory p3) internal view {\n\t\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\"log(uint,address,uint,string)\", p0, p1, p2, p3));\n\t\tignored;\n\t}\n\n\tfunction log(uint p0, address p1, uint p2, bool p3) internal view {\n\t\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\"log(uint,address,uint,bool)\", p0, p1, p2, p3));\n\t\tignored;\n\t}\n\n\tfunction log(uint p0, address p1, uint p2, address p3) internal view {\n\t\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\"log(uint,address,uint,address)\", p0, p1, p2, p3));\n\t\tignored;\n\t}\n\n\tfunction log(uint p0, address p1, string memory p2, uint p3) internal view {\n\t\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\"log(uint,address,string,uint)\", p0, p1, p2, p3));\n\t\tignored;\n\t}\n\n\tfunction log(uint p0, address p1, string memory p2, string memory p3) internal view {\n\t\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\"log(uint,address,string,string)\", p0, p1, p2, p3));\n\t\tignored;\n\t}\n\n\tfunction log(uint p0, address p1, string memory p2, bool p3) internal view {\n\t\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\"log(uint,address,string,bool)\", p0, p1, p2, p3));\n\t\tignored;\n\t}\n\n\tfunction log(uint p0, address p1, string memory p2, address p3) internal view {\n\t\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\"log(uint,address,string,address)\", p0, p1, p2, p3));\n\t\tignored;\n\t}\n\n\tfunction log(uint p0, address p1, bool p2, uint p3) internal view {\n\t\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\"log(uint,address,bool,uint)\", p0, p1, p2, p3));\n\t\tignored;\n\t}\n\n\tfunction log(uint p0, address p1, bool p2, string memory p3) internal view {\n\t\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\"log(uint,address,bool,string)\", p0, p1, p2, p3));\n\t\tignored;\n\t}\n\n\tfunction log(uint p0, address p1, bool p2, bool p3) internal view {\n\t\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\"log(uint,address,bool,bool)\", p0, p1, p2, p3));\n\t\tignored;\n\t}\n\n\tfunction log(uint p0, address p1, bool p2, address p3) internal view {\n\t\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\"log(uint,address,bool,address)\", p0, p1, p2, p3));\n\t\tignored;\n\t}\n\n\tfunction log(uint p0, address p1, address p2, uint p3) internal view {\n\t\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\"log(uint,address,address,uint)\", p0, p1, p2, p3));\n\t\tignored;\n\t}\n\n\tfunction log(uint p0, address p1, address p2, string memory p3) internal view {\n\t\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\"log(uint,address,address,string)\", p0, p1, p2, p3));\n\t\tignored;\n\t}\n\n\tfunction log(uint p0, address p1, address p2, bool p3) internal view {\n\t\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\"log(uint,address,address,bool)\", p0, p1, p2, p3));\n\t\tignored;\n\t}\n\n\tfunction log(uint p0, address p1, address p2, address p3) internal view {\n\t\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\"log(uint,address,address,address)\", p0, p1, p2, p3));\n\t\tignored;\n\t}\n\n\tfunction log(string memory p0, uint p1, uint p2, uint p3) internal view {\n\t\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\"log(string,uint,uint,uint)\", p0, p1, p2, p3));\n\t\tignored;\n\t}\n\n\tfunction log(string memory p0, uint p1, uint p2, string memory p3) internal view {\n\t\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\"log(string,uint,uint,string)\", p0, p1, p2, p3));\n\t\tignored;\n\t}\n\n\tfunction log(string memory p0, uint p1, uint p2, bool p3) internal view {\n\t\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\"log(string,uint,uint,bool)\", p0, p1, p2, p3));\n\t\tignored;\n\t}\n\n\tfunction log(string memory p0, uint p1, uint p2, address p3) internal view {\n\t\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\"log(string,uint,uint,address)\", p0, p1, p2, p3));\n\t\tignored;\n\t}\n\n\tfunction log(string memory p0, uint p1, string memory p2, uint p3) internal view {\n\t\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\"log(string,uint,string,uint)\", p0, p1, p2, p3));\n\t\tignored;\n\t}\n\n\tfunction log(string memory p0, uint p1, string memory p2, string memory p3) internal view {\n\t\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\"log(string,uint,string,string)\", p0, p1, p2, p3));\n\t\tignored;\n\t}\n\n\tfunction log(string memory p0, uint p1, string memory p2, bool p3) internal view {\n\t\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\"log(string,uint,string,bool)\", p0, p1, p2, p3));\n\t\tignored;\n\t}\n\n\tfunction log(string memory p0, uint p1, string memory p2, address p3) internal view {\n\t\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\"log(string,uint,string,address)\", p0, p1, p2, p3));\n\t\tignored;\n\t}\n\n\tfunction log(string memory p0, uint p1, bool p2, uint p3) internal view {\n\t\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\"log(string,uint,bool,uint)\", p0, p1, p2, p3));\n\t\tignored;\n\t}\n\n\tfunction log(string memory p0, uint p1, bool p2, string memory p3) internal view {\n\t\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\"log(string,uint,bool,string)\", p0, p1, p2, p3));\n\t\tignored;\n\t}\n\n\tfunction log(string memory p0, uint p1, bool p2, bool p3) internal view {\n\t\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\"log(string,uint,bool,bool)\", p0, p1, p2, p3));\n\t\tignored;\n\t}\n\n\tfunction log(string memory p0, uint p1, bool p2, address p3) internal view {\n\t\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\"log(string,uint,bool,address)\", p0, p1, p2, p3));\n\t\tignored;\n\t}\n\n\tfunction log(string memory p0, uint p1, address p2, uint p3) internal view {\n\t\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\"log(string,uint,address,uint)\", p0, p1, p2, p3));\n\t\tignored;\n\t}\n\n\tfunction log(string memory p0, uint p1, address p2, string memory p3) internal view {\n\t\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\"log(string,uint,address,string)\", p0, p1, p2, p3));\n\t\tignored;\n\t}\n\n\tfunction log(string memory p0, uint p1, address p2, bool p3) internal view {\n\t\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\"log(string,uint,address,bool)\", p0, p1, p2, p3));\n\t\tignored;\n\t}\n\n\tfunction log(string memory p0, uint p1, address p2, address p3) internal view {\n\t\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\"log(string,uint,address,address)\", p0, p1, p2, p3));\n\t\tignored;\n\t}\n\n\tfunction log(string memory p0, string memory p1, uint p2, uint p3) internal view {\n\t\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\"log(string,string,uint,uint)\", p0, p1, p2, p3));\n\t\tignored;\n\t}\n\n\tfunction log(string memory p0, string memory p1, uint p2, string memory p3) internal view {\n\t\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\"log(string,string,uint,string)\", p0, p1, p2, p3));\n\t\tignored;\n\t}\n\n\tfunction log(string memory p0, string memory p1, uint p2, bool p3) internal view {\n\t\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\"log(string,string,uint,bool)\", p0, p1, p2, p3));\n\t\tignored;\n\t}\n\n\tfunction log(string memory p0, string memory p1, uint p2, address p3) internal view {\n\t\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\"log(string,string,uint,address)\", p0, p1, p2, p3));\n\t\tignored;\n\t}\n\n\tfunction log(string memory p0, string memory p1, string memory p2, uint p3) internal view {\n\t\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\"log(string,string,string,uint)\", p0, p1, p2, p3));\n\t\tignored;\n\t}\n\n\tfunction log(string memory p0, string memory p1, string memory p2, string memory p3) internal view {\n\t\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\"log(string,string,string,string)\", p0, p1, p2, p3));\n\t\tignored;\n\t}\n\n\tfunction log(string memory p0, string memory p1, string memory p2, bool p3) internal view {\n\t\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\"log(string,string,string,bool)\", p0, p1, p2, p3));\n\t\tignored;\n\t}\n\n\tfunction log(string memory p0, string memory p1, string memory p2, address p3) internal view {\n\t\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\"log(string,string,string,address)\", p0, p1, p2, p3));\n\t\tignored;\n\t}\n\n\tfunction log(string memory p0, string memory p1, bool p2, uint p3) internal view {\n\t\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\"log(string,string,bool,uint)\", p0, p1, p2, p3));\n\t\tignored;\n\t}\n\n\tfunction log(string memory p0, string memory p1, bool p2, string memory p3) internal view {\n\t\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\"log(string,string,bool,string)\", p0, p1, p2, p3));\n\t\tignored;\n\t}\n\n\tfunction log(string memory p0, string memory p1, bool p2, bool p3) internal view {\n\t\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\"log(string,string,bool,bool)\", p0, p1, p2, p3));\n\t\tignored;\n\t}\n\n\tfunction log(string memory p0, string memory p1, bool p2, address p3) internal view {\n\t\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\"log(string,string,bool,address)\", p0, p1, p2, p3));\n\t\tignored;\n\t}\n\n\tfunction log(string memory p0, string memory p1, address p2, uint p3) internal view {\n\t\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\"log(string,string,address,uint)\", p0, p1, p2, p3));\n\t\tignored;\n\t}\n\n\tfunction log(string memory p0, string memory p1, address p2, string memory p3) internal view {\n\t\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\"log(string,string,address,string)\", p0, p1, p2, p3));\n\t\tignored;\n\t}\n\n\tfunction log(string memory p0, string memory p1, address p2, bool p3) internal view {\n\t\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\"log(string,string,address,bool)\", p0, p1, p2, p3));\n\t\tignored;\n\t}\n\n\tfunction log(string memory p0, string memory p1, address p2, address p3) internal view {\n\t\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\"log(string,string,address,address)\", p0, p1, p2, p3));\n\t\tignored;\n\t}\n\n\tfunction log(string memory p0, bool p1, uint p2, uint p3) internal view {\n\t\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\"log(string,bool,uint,uint)\", p0, p1, p2, p3));\n\t\tignored;\n\t}\n\n\tfunction log(string memory p0, bool p1, uint p2, string memory p3) internal view {\n\t\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\"log(string,bool,uint,string)\", p0, p1, p2, p3));\n\t\tignored;\n\t}\n\n\tfunction log(string memory p0, bool p1, uint p2, bool p3) internal view {\n\t\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\"log(string,bool,uint,bool)\", p0, p1, p2, p3));\n\t\tignored;\n\t}\n\n\tfunction log(string memory p0, bool p1, uint p2, address p3) internal view {\n\t\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\"log(string,bool,uint,address)\", p0, p1, p2, p3));\n\t\tignored;\n\t}\n\n\tfunction log(string memory p0, bool p1, string memory p2, uint p3) internal view {\n\t\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\"log(string,bool,string,uint)\", p0, p1, p2, p3));\n\t\tignored;\n\t}\n\n\tfunction log(string memory p0, bool p1, string memory p2, string memory p3) internal view {\n\t\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\"log(string,bool,string,string)\", p0, p1, p2, p3));\n\t\tignored;\n\t}\n\n\tfunction log(string memory p0, bool p1, string memory p2, bool p3) internal view {\n\t\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\"log(string,bool,string,bool)\", p0, p1, p2, p3));\n\t\tignored;\n\t}\n\n\tfunction log(string memory p0, bool p1, string memory p2, address p3) internal view {\n\t\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\"log(string,bool,string,address)\", p0, p1, p2, p3));\n\t\tignored;\n\t}\n\n\tfunction log(string memory p0, bool p1, bool p2, uint p3) internal view {\n\t\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\"log(string,bool,bool,uint)\", p0, p1, p2, p3));\n\t\tignored;\n\t}\n\n\tfunction log(string memory p0, bool p1, bool p2, string memory p3) internal view {\n\t\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\"log(string,bool,bool,string)\", p0, p1, p2, p3));\n\t\tignored;\n\t}\n\n\tfunction log(string memory p0, bool p1, bool p2, bool p3) internal view {\n\t\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\"log(string,bool,bool,bool)\", p0, p1, p2, p3));\n\t\tignored;\n\t}\n\n\tfunction log(string memory p0, bool p1, bool p2, address p3) internal view {\n\t\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\"log(string,bool,bool,address)\", p0, p1, p2, p3));\n\t\tignored;\n\t}\n\n\tfunction log(string memory p0, bool p1, address p2, uint p3) internal view {\n\t\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\"log(string,bool,address,uint)\", p0, p1, p2, p3));\n\t\tignored;\n\t}\n\n\tfunction log(string memory p0, bool p1, address p2, string memory p3) internal view {\n\t\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\"log(string,bool,address,string)\", p0, p1, p2, p3));\n\t\tignored;\n\t}\n\n\tfunction log(string memory p0, bool p1, address p2, bool p3) internal view {\n\t\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\"log(string,bool,address,bool)\", p0, p1, p2, p3));\n\t\tignored;\n\t}\n\n\tfunction log(string memory p0, bool p1, address p2, address p3) internal view {\n\t\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\"log(string,bool,address,address)\", p0, p1, p2, p3));\n\t\tignored;\n\t}\n\n\tfunction log(string memory p0, address p1, uint p2, uint p3) internal view {\n\t\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\"log(string,address,uint,uint)\", p0, p1, p2, p3));\n\t\tignored;\n\t}\n\n\tfunction log(string memory p0, address p1, uint p2, string memory p3) internal view {\n\t\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\"log(string,address,uint,string)\", p0, p1, p2, p3));\n\t\tignored;\n\t}\n\n\tfunction log(string memory p0, address p1, uint p2, bool p3) internal view {\n\t\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\"log(string,address,uint,bool)\", p0, p1, p2, p3));\n\t\tignored;\n\t}\n\n\tfunction log(string memory p0, address p1, uint p2, address p3) internal view {\n\t\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\"log(string,address,uint,address)\", p0, p1, p2, p3));\n\t\tignored;\n\t}\n\n\tfunction log(string memory p0, address p1, string memory p2, uint p3) internal view {\n\t\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\"log(string,address,string,uint)\", p0, p1, p2, p3));\n\t\tignored;\n\t}\n\n\tfunction log(string memory p0, address p1, string memory p2, string memory p3) internal view {\n\t\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\"log(string,address,string,string)\", p0, p1, p2, p3));\n\t\tignored;\n\t}\n\n\tfunction log(string memory p0, address p1, string memory p2, bool p3) internal view {\n\t\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\"log(string,address,string,bool)\", p0, p1, p2, p3));\n\t\tignored;\n\t}\n\n\tfunction log(string memory p0, address p1, string memory p2, address p3) internal view {\n\t\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\"log(string,address,string,address)\", p0, p1, p2, p3));\n\t\tignored;\n\t}\n\n\tfunction log(string memory p0, address p1, bool p2, uint p3) internal view {\n\t\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\"log(string,address,bool,uint)\", p0, p1, p2, p3));\n\t\tignored;\n\t}\n\n\tfunction log(string memory p0, address p1, bool p2, string memory p3) internal view {\n\t\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\"log(string,address,bool,string)\", p0, p1, p2, p3));\n\t\tignored;\n\t}\n\n\tfunction log(string memory p0, address p1, bool p2, bool p3) internal view {\n\t\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\"log(string,address,bool,bool)\", p0, p1, p2, p3));\n\t\tignored;\n\t}\n\n\tfunction log(string memory p0, address p1, bool p2, address p3) internal view {\n\t\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\"log(string,address,bool,address)\", p0, p1, p2, p3));\n\t\tignored;\n\t}\n\n\tfunction log(string memory p0, address p1, address p2, uint p3) internal view {\n\t\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\"log(string,address,address,uint)\", p0, p1, p2, p3));\n\t\tignored;\n\t}\n\n\tfunction log(string memory p0, address p1, address p2, string memory p3) internal view {\n\t\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\"log(string,address,address,string)\", p0, p1, p2, p3));\n\t\tignored;\n\t}\n\n\tfunction log(string memory p0, address p1, address p2, bool p3) internal view {\n\t\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\"log(string,address,address,bool)\", p0, p1, p2, p3));\n\t\tignored;\n\t}\n\n\tfunction log(string memory p0, address p1, address p2, address p3) internal view {\n\t\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\"log(string,address,address,address)\", p0, p1, p2, p3));\n\t\tignored;\n\t}\n\n\tfunction log(bool p0, uint p1, uint p2, uint p3) internal view {\n\t\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\"log(bool,uint,uint,uint)\", p0, p1, p2, p3));\n\t\tignored;\n\t}\n\n\tfunction log(bool p0, uint p1, uint p2, string memory p3) internal view {\n\t\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\"log(bool,uint,uint,string)\", p0, p1, p2, p3));\n\t\tignored;\n\t}\n\n\tfunction log(bool p0, uint p1, uint p2, bool p3) internal view {\n\t\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\"log(bool,uint,uint,bool)\", p0, p1, p2, p3));\n\t\tignored;\n\t}\n\n\tfunction log(bool p0, uint p1, uint p2, address p3) internal view {\n\t\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\"log(bool,uint,uint,address)\", p0, p1, p2, p3));\n\t\tignored;\n\t}\n\n\tfunction log(bool p0, uint p1, string memory p2, uint p3) internal view {\n\t\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\"log(bool,uint,string,uint)\", p0, p1, p2, p3));\n\t\tignored;\n\t}\n\n\tfunction log(bool p0, uint p1, string memory p2, string memory p3) internal view {\n\t\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\"log(bool,uint,string,string)\", p0, p1, p2, p3));\n\t\tignored;\n\t}\n\n\tfunction log(bool p0, uint p1, string memory p2, bool p3) internal view {\n\t\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\"log(bool,uint,string,bool)\", p0, p1, p2, p3));\n\t\tignored;\n\t}\n\n\tfunction log(bool p0, uint p1, string memory p2, address p3) internal view {\n\t\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\"log(bool,uint,string,address)\", p0, p1, p2, p3));\n\t\tignored;\n\t}\n\n\tfunction log(bool p0, uint p1, bool p2, uint p3) internal view {\n\t\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\"log(bool,uint,bool,uint)\", p0, p1, p2, p3));\n\t\tignored;\n\t}\n\n\tfunction log(bool p0, uint p1, bool p2, string memory p3) internal view {\n\t\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\"log(bool,uint,bool,string)\", p0, p1, p2, p3));\n\t\tignored;\n\t}\n\n\tfunction log(bool p0, uint p1, bool p2, bool p3) internal view {\n\t\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\"log(bool,uint,bool,bool)\", p0, p1, p2, p3));\n\t\tignored;\n\t}\n\n\tfunction log(bool p0, uint p1, bool p2, address p3) internal view {\n\t\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\"log(bool,uint,bool,address)\", p0, p1, p2, p3));\n\t\tignored;\n\t}\n\n\tfunction log(bool p0, uint p1, address p2, uint p3) internal view {\n\t\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\"log(bool,uint,address,uint)\", p0, p1, p2, p3));\n\t\tignored;\n\t}\n\n\tfunction log(bool p0, uint p1, address p2, string memory p3) internal view {\n\t\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\"log(bool,uint,address,string)\", p0, p1, p2, p3));\n\t\tignored;\n\t}\n\n\tfunction log(bool p0, uint p1, address p2, bool p3) internal view {\n\t\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\"log(bool,uint,address,bool)\", p0, p1, p2, p3));\n\t\tignored;\n\t}\n\n\tfunction log(bool p0, uint p1, address p2, address p3) internal view {\n\t\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\"log(bool,uint,address,address)\", p0, p1, p2, p3));\n\t\tignored;\n\t}\n\n\tfunction log(bool p0, string memory p1, uint p2, uint p3) internal view {\n\t\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\"log(bool,string,uint,uint)\", p0, p1, p2, p3));\n\t\tignored;\n\t}\n\n\tfunction log(bool p0, string memory p1, uint p2, string memory p3) internal view {\n\t\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\"log(bool,string,uint,string)\", p0, p1, p2, p3));\n\t\tignored;\n\t}\n\n\tfunction log(bool p0, string memory p1, uint p2, bool p3) internal view {\n\t\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\"log(bool,string,uint,bool)\", p0, p1, p2, p3));\n\t\tignored;\n\t}\n\n\tfunction log(bool p0, string memory p1, uint p2, address p3) internal view {\n\t\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\"log(bool,string,uint,address)\", p0, p1, p2, p3));\n\t\tignored;\n\t}\n\n\tfunction log(bool p0, string memory p1, string memory p2, uint p3) internal view {\n\t\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\"log(bool,string,string,uint)\", p0, p1, p2, p3));\n\t\tignored;\n\t}\n\n\tfunction log(bool p0, string memory p1, string memory p2, string memory p3) internal view {\n\t\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\"log(bool,string,string,string)\", p0, p1, p2, p3));\n\t\tignored;\n\t}\n\n\tfunction log(bool p0, string memory p1, string memory p2, bool p3) internal view {\n\t\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\"log(bool,string,string,bool)\", p0, p1, p2, p3));\n\t\tignored;\n\t}\n\n\tfunction log(bool p0, string memory p1, string memory p2, address p3) internal view {\n\t\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\"log(bool,string,string,address)\", p0, p1, p2, p3));\n\t\tignored;\n\t}\n\n\tfunction log(bool p0, string memory p1, bool p2, uint p3) internal view {\n\t\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\"log(bool,string,bool,uint)\", p0, p1, p2, p3));\n\t\tignored;\n\t}\n\n\tfunction log(bool p0, string memory p1, bool p2, string memory p3) internal view {\n\t\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\"log(bool,string,bool,string)\", p0, p1, p2, p3));\n\t\tignored;\n\t}\n\n\tfunction log(bool p0, string memory p1, bool p2, bool p3) internal view {\n\t\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\"log(bool,string,bool,bool)\", p0, p1, p2, p3));\n\t\tignored;\n\t}\n\n\tfunction log(bool p0, string memory p1, bool p2, address p3) internal view {\n\t\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\"log(bool,string,bool,address)\", p0, p1, p2, p3));\n\t\tignored;\n\t}\n\n\tfunction log(bool p0, string memory p1, address p2, uint p3) internal view {\n\t\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\"log(bool,string,address,uint)\", p0, p1, p2, p3));\n\t\tignored;\n\t}\n\n\tfunction log(bool p0, string memory p1, address p2, string memory p3) internal view {\n\t\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\"log(bool,string,address,string)\", p0, p1, p2, p3));\n\t\tignored;\n\t}\n\n\tfunction log(bool p0, string memory p1, address p2, bool p3) internal view {\n\t\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\"log(bool,string,address,bool)\", p0, p1, p2, p3));\n\t\tignored;\n\t}\n\n\tfunction log(bool p0, string memory p1, address p2, address p3) internal view {\n\t\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\"log(bool,string,address,address)\", p0, p1, p2, p3));\n\t\tignored;\n\t}\n\n\tfunction log(bool p0, bool p1, uint p2, uint p3) internal view {\n\t\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\"log(bool,bool,uint,uint)\", p0, p1, p2, p3));\n\t\tignored;\n\t}\n\n\tfunction log(bool p0, bool p1, uint p2, string memory p3) internal view {\n\t\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\"log(bool,bool,uint,string)\", p0, p1, p2, p3));\n\t\tignored;\n\t}\n\n\tfunction log(bool p0, bool p1, uint p2, bool p3) internal view {\n\t\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\"log(bool,bool,uint,bool)\", p0, p1, p2, p3));\n\t\tignored;\n\t}\n\n\tfunction log(bool p0, bool p1, uint p2, address p3) internal view {\n\t\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\"log(bool,bool,uint,address)\", p0, p1, p2, p3));\n\t\tignored;\n\t}\n\n\tfunction log(bool p0, bool p1, string memory p2, uint p3) internal view {\n\t\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\"log(bool,bool,string,uint)\", p0, p1, p2, p3));\n\t\tignored;\n\t}\n\n\tfunction log(bool p0, bool p1, string memory p2, string memory p3) internal view {\n\t\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\"log(bool,bool,string,string)\", p0, p1, p2, p3));\n\t\tignored;\n\t}\n\n\tfunction log(bool p0, bool p1, string memory p2, bool p3) internal view {\n\t\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\"log(bool,bool,string,bool)\", p0, p1, p2, p3));\n\t\tignored;\n\t}\n\n\tfunction log(bool p0, bool p1, string memory p2, address p3) internal view {\n\t\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\"log(bool,bool,string,address)\", p0, p1, p2, p3));\n\t\tignored;\n\t}\n\n\tfunction log(bool p0, bool p1, bool p2, uint p3) internal view {\n\t\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\"log(bool,bool,bool,uint)\", p0, p1, p2, p3));\n\t\tignored;\n\t}\n\n\tfunction log(bool p0, bool p1, bool p2, string memory p3) internal view {\n\t\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\"log(bool,bool,bool,string)\", p0, p1, p2, p3));\n\t\tignored;\n\t}\n\n\tfunction log(bool p0, bool p1, bool p2, bool p3) internal view {\n\t\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\"log(bool,bool,bool,bool)\", p0, p1, p2, p3));\n\t\tignored;\n\t}\n\n\tfunction log(bool p0, bool p1, bool p2, address p3) internal view {\n\t\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\"log(bool,bool,bool,address)\", p0, p1, p2, p3));\n\t\tignored;\n\t}\n\n\tfunction log(bool p0, bool p1, address p2, uint p3) internal view {\n\t\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\"log(bool,bool,address,uint)\", p0, p1, p2, p3));\n\t\tignored;\n\t}\n\n\tfunction log(bool p0, bool p1, address p2, string memory p3) internal view {\n\t\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\"log(bool,bool,address,string)\", p0, p1, p2, p3));\n\t\tignored;\n\t}\n\n\tfunction log(bool p0, bool p1, address p2, bool p3) internal view {\n\t\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\"log(bool,bool,address,bool)\", p0, p1, p2, p3));\n\t\tignored;\n\t}\n\n\tfunction log(bool p0, bool p1, address p2, address p3) internal view {\n\t\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\"log(bool,bool,address,address)\", p0, p1, p2, p3));\n\t\tignored;\n\t}\n\n\tfunction log(bool p0, address p1, uint p2, uint p3) internal view {\n\t\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\"log(bool,address,uint,uint)\", p0, p1, p2, p3));\n\t\tignored;\n\t}\n\n\tfunction log(bool p0, address p1, uint p2, string memory p3) internal view {\n\t\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\"log(bool,address,uint,string)\", p0, p1, p2, p3));\n\t\tignored;\n\t}\n\n\tfunction log(bool p0, address p1, uint p2, bool p3) internal view {\n\t\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\"log(bool,address,uint,bool)\", p0, p1, p2, p3));\n\t\tignored;\n\t}\n\n\tfunction log(bool p0, address p1, uint p2, address p3) internal view {\n\t\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\"log(bool,address,uint,address)\", p0, p1, p2, p3));\n\t\tignored;\n\t}\n\n\tfunction log(bool p0, address p1, string memory p2, uint p3) internal view {\n\t\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\"log(bool,address,string,uint)\", p0, p1, p2, p3));\n\t\tignored;\n\t}\n\n\tfunction log(bool p0, address p1, string memory p2, string memory p3) internal view {\n\t\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\"log(bool,address,string,string)\", p0, p1, p2, p3));\n\t\tignored;\n\t}\n\n\tfunction log(bool p0, address p1, string memory p2, bool p3) internal view {\n\t\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\"log(bool,address,string,bool)\", p0, p1, p2, p3));\n\t\tignored;\n\t}\n\n\tfunction log(bool p0, address p1, string memory p2, address p3) internal view {\n\t\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\"log(bool,address,string,address)\", p0, p1, p2, p3));\n\t\tignored;\n\t}\n\n\tfunction log(bool p0, address p1, bool p2, uint p3) internal view {\n\t\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\"log(bool,address,bool,uint)\", p0, p1, p2, p3));\n\t\tignored;\n\t}\n\n\tfunction log(bool p0, address p1, bool p2, string memory p3) internal view {\n\t\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\"log(bool,address,bool,string)\", p0, p1, p2, p3));\n\t\tignored;\n\t}\n\n\tfunction log(bool p0, address p1, bool p2, bool p3) internal view {\n\t\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\"log(bool,address,bool,bool)\", p0, p1, p2, p3));\n\t\tignored;\n\t}\n\n\tfunction log(bool p0, address p1, bool p2, address p3) internal view {\n\t\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\"log(bool,address,bool,address)\", p0, p1, p2, p3));\n\t\tignored;\n\t}\n\n\tfunction log(bool p0, address p1, address p2, uint p3) internal view {\n\t\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\"log(bool,address,address,uint)\", p0, p1, p2, p3));\n\t\tignored;\n\t}\n\n\tfunction log(bool p0, address p1, address p2, string memory p3) internal view {\n\t\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\"log(bool,address,address,string)\", p0, p1, p2, p3));\n\t\tignored;\n\t}\n\n\tfunction log(bool p0, address p1, address p2, bool p3) internal view {\n\t\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\"log(bool,address,address,bool)\", p0, p1, p2, p3));\n\t\tignored;\n\t}\n\n\tfunction log(bool p0, address p1, address p2, address p3) internal view {\n\t\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\"log(bool,address,address,address)\", p0, p1, p2, p3));\n\t\tignored;\n\t}\n\n\tfunction log(address p0, uint p1, uint p2, uint p3) internal view {\n\t\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\"log(address,uint,uint,uint)\", p0, p1, p2, p3));\n\t\tignored;\n\t}\n\n\tfunction log(address p0, uint p1, uint p2, string memory p3) internal view {\n\t\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\"log(address,uint,uint,string)\", p0, p1, p2, p3));\n\t\tignored;\n\t}\n\n\tfunction log(address p0, uint p1, uint p2, bool p3) internal view {\n\t\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\"log(address,uint,uint,bool)\", p0, p1, p2, p3));\n\t\tignored;\n\t}\n\n\tfunction log(address p0, uint p1, uint p2, address p3) internal view {\n\t\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\"log(address,uint,uint,address)\", p0, p1, p2, p3));\n\t\tignored;\n\t}\n\n\tfunction log(address p0, uint p1, string memory p2, uint p3) internal view {\n\t\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\"log(address,uint,string,uint)\", p0, p1, p2, p3));\n\t\tignored;\n\t}\n\n\tfunction log(address p0, uint p1, string memory p2, string memory p3) internal view {\n\t\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\"log(address,uint,string,string)\", p0, p1, p2, p3));\n\t\tignored;\n\t}\n\n\tfunction log(address p0, uint p1, string memory p2, bool p3) internal view {\n\t\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\"log(address,uint,string,bool)\", p0, p1, p2, p3));\n\t\tignored;\n\t}\n\n\tfunction log(address p0, uint p1, string memory p2, address p3) internal view {\n\t\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\"log(address,uint,string,address)\", p0, p1, p2, p3));\n\t\tignored;\n\t}\n\n\tfunction log(address p0, uint p1, bool p2, uint p3) internal view {\n\t\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\"log(address,uint,bool,uint)\", p0, p1, p2, p3));\n\t\tignored;\n\t}\n\n\tfunction log(address p0, uint p1, bool p2, string memory p3) internal view {\n\t\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\"log(address,uint,bool,string)\", p0, p1, p2, p3));\n\t\tignored;\n\t}\n\n\tfunction log(address p0, uint p1, bool p2, bool p3) internal view {\n\t\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\"log(address,uint,bool,bool)\", p0, p1, p2, p3));\n\t\tignored;\n\t}\n\n\tfunction log(address p0, uint p1, bool p2, address p3) internal view {\n\t\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\"log(address,uint,bool,address)\", p0, p1, p2, p3));\n\t\tignored;\n\t}\n\n\tfunction log(address p0, uint p1, address p2, uint p3) internal view {\n\t\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\"log(address,uint,address,uint)\", p0, p1, p2, p3));\n\t\tignored;\n\t}\n\n\tfunction log(address p0, uint p1, address p2, string memory p3) internal view {\n\t\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\"log(address,uint,address,string)\", p0, p1, p2, p3));\n\t\tignored;\n\t}\n\n\tfunction log(address p0, uint p1, address p2, bool p3) internal view {\n\t\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\"log(address,uint,address,bool)\", p0, p1, p2, p3));\n\t\tignored;\n\t}\n\n\tfunction log(address p0, uint p1, address p2, address p3) internal view {\n\t\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\"log(address,uint,address,address)\", p0, p1, p2, p3));\n\t\tignored;\n\t}\n\n\tfunction log(address p0, string memory p1, uint p2, uint p3) internal view {\n\t\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\"log(address,string,uint,uint)\", p0, p1, p2, p3));\n\t\tignored;\n\t}\n\n\tfunction log(address p0, string memory p1, uint p2, string memory p3) internal view {\n\t\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\"log(address,string,uint,string)\", p0, p1, p2, p3));\n\t\tignored;\n\t}\n\n\tfunction log(address p0, string memory p1, uint p2, bool p3) internal view {\n\t\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\"log(address,string,uint,bool)\", p0, p1, p2, p3));\n\t\tignored;\n\t}\n\n\tfunction log(address p0, string memory p1, uint p2, address p3) internal view {\n\t\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\"log(address,string,uint,address)\", p0, p1, p2, p3));\n\t\tignored;\n\t}\n\n\tfunction log(address p0, string memory p1, string memory p2, uint p3) internal view {\n\t\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\"log(address,string,string,uint)\", p0, p1, p2, p3));\n\t\tignored;\n\t}\n\n\tfunction log(address p0, string memory p1, string memory p2, string memory p3) internal view {\n\t\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\"log(address,string,string,string)\", p0, p1, p2, p3));\n\t\tignored;\n\t}\n\n\tfunction log(address p0, string memory p1, string memory p2, bool p3) internal view {\n\t\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\"log(address,string,string,bool)\", p0, p1, p2, p3));\n\t\tignored;\n\t}\n\n\tfunction log(address p0, string memory p1, string memory p2, address p3) internal view {\n\t\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\"log(address,string,string,address)\", p0, p1, p2, p3));\n\t\tignored;\n\t}\n\n\tfunction log(address p0, string memory p1, bool p2, uint p3) internal view {\n\t\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\"log(address,string,bool,uint)\", p0, p1, p2, p3));\n\t\tignored;\n\t}\n\n\tfunction log(address p0, string memory p1, bool p2, string memory p3) internal view {\n\t\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\"log(address,string,bool,string)\", p0, p1, p2, p3));\n\t\tignored;\n\t}\n\n\tfunction log(address p0, string memory p1, bool p2, bool p3) internal view {\n\t\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\"log(address,string,bool,bool)\", p0, p1, p2, p3));\n\t\tignored;\n\t}\n\n\tfunction log(address p0, string memory p1, bool p2, address p3) internal view {\n\t\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\"log(address,string,bool,address)\", p0, p1, p2, p3));\n\t\tignored;\n\t}\n\n\tfunction log(address p0, string memory p1, address p2, uint p3) internal view {\n\t\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\"log(address,string,address,uint)\", p0, p1, p2, p3));\n\t\tignored;\n\t}\n\n\tfunction log(address p0, string memory p1, address p2, string memory p3) internal view {\n\t\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\"log(address,string,address,string)\", p0, p1, p2, p3));\n\t\tignored;\n\t}\n\n\tfunction log(address p0, string memory p1, address p2, bool p3) internal view {\n\t\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\"log(address,string,address,bool)\", p0, p1, p2, p3));\n\t\tignored;\n\t}\n\n\tfunction log(address p0, string memory p1, address p2, address p3) internal view {\n\t\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\"log(address,string,address,address)\", p0, p1, p2, p3));\n\t\tignored;\n\t}\n\n\tfunction log(address p0, bool p1, uint p2, uint p3) internal view {\n\t\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\"log(address,bool,uint,uint)\", p0, p1, p2, p3));\n\t\tignored;\n\t}\n\n\tfunction log(address p0, bool p1, uint p2, string memory p3) internal view {\n\t\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\"log(address,bool,uint,string)\", p0, p1, p2, p3));\n\t\tignored;\n\t}\n\n\tfunction log(address p0, bool p1, uint p2, bool p3) internal view {\n\t\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\"log(address,bool,uint,bool)\", p0, p1, p2, p3));\n\t\tignored;\n\t}\n\n\tfunction log(address p0, bool p1, uint p2, address p3) internal view {\n\t\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\"log(address,bool,uint,address)\", p0, p1, p2, p3));\n\t\tignored;\n\t}\n\n\tfunction log(address p0, bool p1, string memory p2, uint p3) internal view {\n\t\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\"log(address,bool,string,uint)\", p0, p1, p2, p3));\n\t\tignored;\n\t}\n\n\tfunction log(address p0, bool p1, string memory p2, string memory p3) internal view {\n\t\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\"log(address,bool,string,string)\", p0, p1, p2, p3));\n\t\tignored;\n\t}\n\n\tfunction log(address p0, bool p1, string memory p2, bool p3) internal view {\n\t\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\"log(address,bool,string,bool)\", p0, p1, p2, p3));\n\t\tignored;\n\t}\n\n\tfunction log(address p0, bool p1, string memory p2, address p3) internal view {\n\t\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\"log(address,bool,string,address)\", p0, p1, p2, p3));\n\t\tignored;\n\t}\n\n\tfunction log(address p0, bool p1, bool p2, uint p3) internal view {\n\t\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\"log(address,bool,bool,uint)\", p0, p1, p2, p3));\n\t\tignored;\n\t}\n\n\tfunction log(address p0, bool p1, bool p2, string memory p3) internal view {\n\t\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\"log(address,bool,bool,string)\", p0, p1, p2, p3));\n\t\tignored;\n\t}\n\n\tfunction log(address p0, bool p1, bool p2, bool p3) internal view {\n\t\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\"log(address,bool,bool,bool)\", p0, p1, p2, p3));\n\t\tignored;\n\t}\n\n\tfunction log(address p0, bool p1, bool p2, address p3) internal view {\n\t\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\"log(address,bool,bool,address)\", p0, p1, p2, p3));\n\t\tignored;\n\t}\n\n\tfunction log(address p0, bool p1, address p2, uint p3) internal view {\n\t\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\"log(address,bool,address,uint)\", p0, p1, p2, p3));\n\t\tignored;\n\t}\n\n\tfunction log(address p0, bool p1, address p2, string memory p3) internal view {\n\t\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\"log(address,bool,address,string)\", p0, p1, p2, p3));\n\t\tignored;\n\t}\n\n\tfunction log(address p0, bool p1, address p2, bool p3) internal view {\n\t\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\"log(address,bool,address,bool)\", p0, p1, p2, p3));\n\t\tignored;\n\t}\n\n\tfunction log(address p0, bool p1, address p2, address p3) internal view {\n\t\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\"log(address,bool,address,address)\", p0, p1, p2, p3));\n\t\tignored;\n\t}\n\n\tfunction log(address p0, address p1, uint p2, uint p3) internal view {\n\t\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\"log(address,address,uint,uint)\", p0, p1, p2, p3));\n\t\tignored;\n\t}\n\n\tfunction log(address p0, address p1, uint p2, string memory p3) internal view {\n\t\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\"log(address,address,uint,string)\", p0, p1, p2, p3));\n\t\tignored;\n\t}\n\n\tfunction log(address p0, address p1, uint p2, bool p3) internal view {\n\t\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\"log(address,address,uint,bool)\", p0, p1, p2, p3));\n\t\tignored;\n\t}\n\n\tfunction log(address p0, address p1, uint p2, address p3) internal view {\n\t\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\"log(address,address,uint,address)\", p0, p1, p2, p3));\n\t\tignored;\n\t}\n\n\tfunction log(address p0, address p1, string memory p2, uint p3) internal view {\n\t\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\"log(address,address,string,uint)\", p0, p1, p2, p3));\n\t\tignored;\n\t}\n\n\tfunction log(address p0, address p1, string memory p2, string memory p3) internal view {\n\t\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\"log(address,address,string,string)\", p0, p1, p2, p3));\n\t\tignored;\n\t}\n\n\tfunction log(address p0, address p1, string memory p2, bool p3) internal view {\n\t\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\"log(address,address,string,bool)\", p0, p1, p2, p3));\n\t\tignored;\n\t}\n\n\tfunction log(address p0, address p1, string memory p2, address p3) internal view {\n\t\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\"log(address,address,string,address)\", p0, p1, p2, p3));\n\t\tignored;\n\t}\n\n\tfunction log(address p0, address p1, bool p2, uint p3) internal view {\n\t\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\"log(address,address,bool,uint)\", p0, p1, p2, p3));\n\t\tignored;\n\t}\n\n\tfunction log(address p0, address p1, bool p2, string memory p3) internal view {\n\t\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\"log(address,address,bool,string)\", p0, p1, p2, p3));\n\t\tignored;\n\t}\n\n\tfunction log(address p0, address p1, bool p2, bool p3) internal view {\n\t\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\"log(address,address,bool,bool)\", p0, p1, p2, p3));\n\t\tignored;\n\t}\n\n\tfunction log(address p0, address p1, bool p2, address p3) internal view {\n\t\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\"log(address,address,bool,address)\", p0, p1, p2, p3));\n\t\tignored;\n\t}\n\n\tfunction log(address p0, address p1, address p2, uint p3) internal view {\n\t\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\"log(address,address,address,uint)\", p0, p1, p2, p3));\n\t\tignored;\n\t}\n\n\tfunction log(address p0, address p1, address p2, string memory p3) internal view {\n\t\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\"log(address,address,address,string)\", p0, p1, p2, p3));\n\t\tignored;\n\t}\n\n\tfunction log(address p0, address p1, address p2, bool p3) internal view {\n\t\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\"log(address,address,address,bool)\", p0, p1, p2, p3));\n\t\tignored;\n\t}\n\n\tfunction log(address p0, address p1, address p2, address p3) internal view {\n\t\t(bool ignored, ) = CONSOLE_ADDRESS.staticcall(abi.encodeWithSignature(\"log(address,address,address,address)\", p0, p1, p2, p3));\n\t\tignored;\n\t}\n\n}\n" + }, + "contracts/Dependencies/Counters.sol": { + "content": "// SPDX-License-Identifier: MIT\npragma solidity 0.6.11;\n\nimport \"./SafeMath.sol\";\n\nlibrary Counters {\n using SafeMath for uint256;\n\n struct Counter {\n // This variable should never be directly accessed by users of the library: interactions must be restricted to\n // the library's function. As of Solidity v0.5.2, this cannot be enforced, though there is a proposal to add\n // this feature: see https://github.com/ethereum/solidity/issues/4637\n uint256 _value; // default: 0\n }\n\n function current(Counter storage counter) internal view returns (uint256) {\n return counter._value;\n }\n\n function increment(Counter storage counter) internal {\n // The {SafeMath} overflow check can be skipped here, see the comment at the top\n counter._value += 1;\n }\n\n function decrement(Counter storage counter) internal {\n counter._value = counter._value.sub(1);\n }\n}" + }, + "contracts/Dependencies/IERC20.sol": { + "content": "// SPDX-License-Identifier: MIT\n\npragma solidity 0.6.11;\n\n/**\n * Based on the OpenZeppelin IER20 interface:\n * https://github.com/OpenZeppelin/openzeppelin-contracts/blob/master/contracts/token/ERC20/IERC20.sol\n *\n * @dev Interface of the ERC20 standard as defined in the EIP.\n */\ninterface IERC20 {\n /**\n * @dev Returns the amount of tokens in existence.\n */\n function totalSupply() external view returns (uint256);\n\n /**\n * @dev Returns the amount of tokens owned by `account`.\n */\n function balanceOf(address account) external view returns (uint256);\n\n /**\n * @dev Moves `amount` tokens from the caller's account to `recipient`.\n *\n * Returns a boolean value indicating whether the operation succeeded.\n *\n * Emits a {Transfer} event.\n */\n function transfer(address recipient, uint256 amount) external returns (bool);\n\n /**\n * @dev Returns the remaining number of tokens that `spender` will be\n * allowed to spend on behalf of `owner` through {transferFrom}. This is\n * zero by default.\n *\n * This value changes when {approve} or {transferFrom} are called.\n */\n function allowance(address owner, address spender) external view returns (uint256);\n function increaseAllowance(address spender, uint256 addedValue) external returns (bool);\n function decreaseAllowance(address spender, uint256 subtractedValue) external returns (bool);\n\n /**\n * @dev Sets `amount` as the allowance of `spender` over the caller's tokens.\n *\n * Returns a boolean value indicating whether the operation succeeded.\n *\n * IMPORTANT: Beware that changing an allowance with this method brings the risk\n * that someone may use both the old and the new allowance by unfortunate\n * transaction ordering. One possible solution to mitigate this race\n * condition is to first reduce the spender's allowance to 0 and set the\n * desired value afterwards:\n * https://github.com/ethereum/EIPs/issues/20#issuecomment-263524729\n *\n * Emits an {Approval} event.\n */\n function approve(address spender, uint256 amount) external returns (bool);\n\n /**\n * @dev Moves `amount` tokens from `sender` to `recipient` using the\n * allowance mechanism. `amount` is then deducted from the caller's\n * allowance.\n *\n * Returns a boolean value indicating whether the operation succeeded.\n *\n * Emits a {Transfer} event.\n */\n function transferFrom(address sender, address recipient, uint256 amount) external returns (bool);\n\n function name() external view returns (string memory);\n function symbol() external view returns (string memory);\n function decimals() external view returns (uint8);\n \n /**\n * @dev Emitted when `value` tokens are moved from one account (`from`) to\n * another (`to`).\n *\n * Note that `value` may be zero.\n */\n event Transfer(address indexed from, address indexed to, uint256 value);\n\n /**\n * @dev Emitted when the allowance of a `spender` for an `owner` is set by\n * a call to {approve}. `value` is the new allowance.\n */\n event Approval(address indexed owner, address indexed spender, uint256 value);\n}" + }, + "contracts/Dependencies/IERC2612.sol": { + "content": "// SPDX-License-Identifier: MIT\n\npragma solidity 0.6.11;\n\n/**\n * @dev Interface of the ERC2612 standard as defined in the EIP.\n *\n * Adds the {permit} method, which can be used to change one's\n * {IERC20-allowance} without having to send a transaction, by signing a\n * message. This allows users to spend tokens without having to hold Ether.\n *\n * See https://eips.ethereum.org/EIPS/eip-2612.\n * \n * Code adapted from https://github.com/OpenZeppelin/openzeppelin-contracts/pull/2237/\n */\ninterface IERC2612 {\n /**\n * @dev Sets `amount` as the allowance of `spender` over `owner`'s tokens,\n * given `owner`'s signed approval.\n *\n * IMPORTANT: The same issues {IERC20-approve} has related to transaction\n * ordering also apply here.\n *\n * Emits an {Approval} event.\n *\n * Requirements:\n *\n * - `owner` cannot be the zero address.\n * - `spender` cannot be the zero address.\n * - `deadline` must be a timestamp in the future.\n * - `v`, `r` and `s` must be a valid `secp256k1` signature from `owner`\n * over the EIP712-formatted function arguments.\n * - the signature must use ``owner``'s current nonce (see {nonces}).\n *\n * For more information on the signature format, see the\n * https://eips.ethereum.org/EIPS/eip-2612#specification[relevant EIP\n * section].\n */\n function permit(address owner, address spender, uint256 amount, \n uint256 deadline, uint8 v, bytes32 r, bytes32 s) external;\n \n /**\n * @dev Returns the current ERC2612 nonce for `owner`. This value must be\n * included whenever a signature is generated for {permit}.\n *\n * Every successful call to {permit} increases `owner`'s nonce by one. This\n * prevents a signature from being used multiple times.\n *\n * `owner` can limit the time a Permit is valid for by setting `deadline` to \n * a value in the near future. The deadline argument can be set to uint(-1) to \n * create Permits that effectively never expire.\n */\n function nonces(address owner) external view returns (uint256);\n \n function version() external view returns (string memory);\n function permitTypeHash() external view returns (bytes32);\n function domainSeparator() external view returns (bytes32);\n}\n" + }, + "contracts/Dependencies/Initializable.sol": { + "content": "// SPDX-License-Identifier: MIT\n\npragma solidity 0.6.11;\n\n/**\n * @title Initializable\n *\n * Based on OpenZeppelin's Initializable contract:\n * https://github.com/OpenZeppelin/openzeppelin-upgrades/blob/master/packages/core/contracts/Initializable.sol\n * \n * @dev Helper contract to support initializer functions. To use it, replace\n * the constructor with a function that has the `initializer` modifier.\n * WARNING: Unlike constructors, initializer functions must be manually\n * invoked. This applies both to deploying an Initializable contract, as well\n * as extending an Initializable contract via inheritance.\n * WARNING: When used with inheritance, manual care must be taken to not invoke\n * a parent initializer twice, or ensure that all initializers are idempotent,\n * because this is not dealt with automatically as with constructors.\n */\ncontract Initializable {\n /**\n * @dev Indicates that the contract has been initialized.\n */\n bool private initialized;\n\n /**\n * @dev Indicates that the contract is in the process of being initialized.\n */\n bool private initializing;\n\n /**\n * @dev Modifier to use in the initializer function of a contract.\n */\n modifier initializer() {\n require(\n initializing || isConstructor() || !initialized,\n \"Contract instance has already been initialized\"\n );\n\n bool isTopLevelCall = !initializing;\n if (isTopLevelCall) {\n initializing = true;\n initialized = true;\n }\n\n _;\n\n if (isTopLevelCall) {\n initializing = false;\n }\n }\n\n /// @dev Returns true if and only if the function is running in the constructor\n function isConstructor() private view returns (bool) {\n // extcodesize checks the size of the code stored in an address, and\n // address returns the current address. Since the code is still not\n // deployed when running a constructor, any checks on its code size will\n // yield zero, making it an effective way to detect if a contract is\n // under construction or not.\n address self = address(this);\n uint256 cs;\n assembly {\n cs := extcodesize(self)\n }\n return cs == 0;\n }\n\n // Reserved storage space to allow for layout changes in the future.\n uint256[50] private ______gap;\n}\n" + }, + "contracts/Dependencies/LiquityBase.sol": { + "content": "// SPDX-License-Identifier: MIT\n\npragma solidity 0.6.11;\n\nimport \"./BaseMath.sol\";\nimport \"./LiquityMath.sol\";\nimport \"../Interfaces/IActivePool.sol\";\nimport \"../Interfaces/IDefaultPool.sol\";\nimport \"../Interfaces/IPriceFeed.sol\";\nimport \"../Interfaces/ILiquityBase.sol\";\nimport \"../Interfaces/ILiquityBaseParams.sol\";\n\n/**\n * Base contract for TroveManager, BorrowerOperations and StabilityPool. Contains global system constants and\n * common functions.\n */\ncontract LiquityBase is BaseMath, ILiquityBase {\n using SafeMath for uint256;\n\n uint256 public constant _100pct = 1000000000000000000; // 1e18 == 100%\n\n /// Amount of ZUSD to be locked in gas pool on opening troves\n uint256 public constant ZUSD_GAS_COMPENSATION = 20e18;\n\n /// Minimum amount of net ZUSD debt a trove must have\n uint256 public constant MIN_NET_DEBT = 180e18;\n\n IActivePool public activePool;\n\n IDefaultPool public defaultPool;\n\n IPriceFeed public override priceFeed;\n\n ILiquityBaseParams public override liquityBaseParams;\n\n // --- Gas compensation functions ---\n\n // Returns the composite debt (drawn debt + gas compensation) of a trove, for the purpose of ICR calculation\n function _getCompositeDebt(uint256 _debt) internal pure returns (uint256) {\n return _debt.add(ZUSD_GAS_COMPENSATION);\n }\n\n function _getNetDebt(uint256 _debt) internal pure returns (uint256) {\n return _debt.sub(ZUSD_GAS_COMPENSATION);\n }\n\n /// Return the amount of ETH to be drawn from a trove's collateral and sent as gas compensation.\n function _getCollGasCompensation(uint256 _entireColl) internal view returns (uint256) {\n return _entireColl / liquityBaseParams.PERCENT_DIVISOR();\n }\n\n function getEntireSystemColl() public view returns (uint256 entireSystemColl) {\n uint256 activeColl = activePool.getETH();\n uint256 liquidatedColl = defaultPool.getETH();\n\n return activeColl.add(liquidatedColl);\n }\n\n function getEntireSystemDebt() public view returns (uint256 entireSystemDebt) {\n uint256 activeDebt = activePool.getZUSDDebt();\n uint256 closedDebt = defaultPool.getZUSDDebt();\n\n return activeDebt.add(closedDebt);\n }\n\n function _getTCR(uint256 _price) internal view returns (uint256 TCR) {\n uint256 entireSystemColl = getEntireSystemColl();\n uint256 entireSystemDebt = getEntireSystemDebt();\n\n TCR = LiquityMath._computeCR(entireSystemColl, entireSystemDebt, _price);\n\n return TCR;\n }\n\n function _checkRecoveryMode(uint256 _price) internal view returns (bool) {\n uint256 TCR = _getTCR(_price);\n\n return TCR < liquityBaseParams.CCR();\n }\n\n function _requireUserAcceptsFee(\n uint256 _fee,\n uint256 _amount,\n uint256 _maxFeePercentage\n ) internal pure {\n uint256 feePercentage = _fee.mul(DECIMAL_PRECISION).div(_amount);\n require(feePercentage <= _maxFeePercentage, \"Fee exceeded provided maximum\");\n }\n}\n" + }, + "contracts/Dependencies/LiquityMath.sol": { + "content": "// SPDX-License-Identifier: MIT\n\npragma solidity 0.6.11;\n\nimport \"./SafeMath.sol\";\nimport \"./console.sol\";\n\nlibrary LiquityMath {\n using SafeMath for uint;\n\n uint internal constant DECIMAL_PRECISION = 1e18;\n\n /* Precision for Nominal ICR (independent of price). Rationale for the value:\n *\n * - Making it “too high” could lead to overflows.\n * - Making it “too low” could lead to an ICR equal to zero, due to truncation from Solidity floor division. \n *\n * This value of 1e20 is chosen for safety: the NICR will only overflow for numerator > ~1e39 ETH,\n * and will only truncate to 0 if the denominator is at least 1e20 times greater than the numerator.\n *\n */\n uint internal constant NICR_PRECISION = 1e20;\n\n function _min(uint _a, uint _b) internal pure returns (uint) {\n return (_a < _b) ? _a : _b;\n }\n\n function _max(uint _a, uint _b) internal pure returns (uint) {\n return (_a >= _b) ? _a : _b;\n }\n\n /* \n * Multiply two decimal numbers and use normal rounding rules:\n * -round product up if 19'th mantissa digit >= 5\n * -round product down if 19'th mantissa digit < 5\n *\n * Used only inside the exponentiation, _decPow().\n */\n function decMul(uint x, uint y) internal pure returns (uint decProd) {\n uint prod_xy = x.mul(y);\n\n decProd = prod_xy.add(DECIMAL_PRECISION / 2).div(DECIMAL_PRECISION);\n }\n\n /* \n * _decPow: Exponentiation function for 18-digit decimal base, and integer exponent n.\n * \n * Uses the efficient \"exponentiation by squaring\" algorithm. O(log(n)) complexity. \n * \n * Called by two functions that represent time in units of minutes:\n * 1) TroveManager._calcDecayedBaseRate\n * 2) CommunityIssuance._getCumulativeIssuanceFraction \n * \n * The exponent is capped to avoid reverting due to overflow. The cap 525600000 equals\n * \"minutes in 1000 years\": 60 * 24 * 365 * 1000\n * \n * If a period of > 1000 years is ever used as an exponent in either of the above functions, the result will be\n * negligibly different from just passing the cap, since: \n *\n * In function 1), the decayed base rate will be 0 for 1000 years or > 1000 years\n * In function 2), the difference in tokens issued at 1000 years and any time > 1000 years, will be negligible\n */\n function _decPow(uint _base, uint _minutes) internal pure returns (uint) {\n \n if (_minutes > 525600000) {_minutes = 525600000;} // cap to avoid overflow\n \n if (_minutes == 0) {return DECIMAL_PRECISION;}\n\n uint y = DECIMAL_PRECISION;\n uint x = _base;\n uint n = _minutes;\n\n // Exponentiation-by-squaring\n while (n > 1) {\n if (n % 2 == 0) {\n x = decMul(x, x);\n n = n.div(2);\n } else { // if (n % 2 != 0)\n y = decMul(x, y);\n x = decMul(x, x);\n n = (n.sub(1)).div(2);\n }\n }\n\n return decMul(x, y);\n }\n\n function _getAbsoluteDifference(uint _a, uint _b) internal pure returns (uint) {\n return (_a >= _b) ? _a.sub(_b) : _b.sub(_a);\n }\n\n function _computeNominalCR(uint _coll, uint _debt) internal pure returns (uint) {\n if (_debt > 0) {\n return _coll.mul(NICR_PRECISION).div(_debt);\n }\n // Return the maximal value for uint256 if the Trove has a debt of 0. Represents \"infinite\" CR.\n else { // if (_debt == 0)\n return 2**256 - 1;\n }\n }\n\n function _computeCR(uint _coll, uint _debt, uint _price) internal pure returns (uint) {\n if (_debt > 0) {\n uint newCollRatio = _coll.mul(_price).div(_debt);\n\n return newCollRatio;\n }\n // Return the maximal value for uint256 if the Trove has a debt of 0. Represents \"infinite\" CR.\n else { // if (_debt == 0)\n return 2**256 - 1; \n }\n }\n}\n" + }, + "contracts/Dependencies/LiquitySafeMath128.sol": { + "content": "// SPDX-License-Identifier: MIT\n\npragma solidity 0.6.11;\n\n// uint128 addition and subtraction, with overflow protection.\n\nlibrary LiquitySafeMath128 {\n function add(uint128 a, uint128 b) internal pure returns (uint128) {\n uint128 c = a + b;\n require(c >= a, \"LiquitySafeMath128: addition overflow\");\n\n return c;\n }\n \n function sub(uint128 a, uint128 b) internal pure returns (uint128) {\n require(b <= a, \"LiquitySafeMath128: subtraction overflow\");\n uint128 c = a - b;\n\n return c;\n }\n}" + }, + "contracts/Dependencies/Mynt/IDLLR.sol": { + "content": "// SPDX-License-Identifier: MIT\n\npragma solidity 0.6.11;\nimport \"../IERC20.sol\";\n\n/// Public interface for Sovryn Dollar DLLR (Meta Asset Token of Sovryn Mynt) exposing specific functions\ninterface IDLLR is IERC20 {\n /**\n * @notice Only owner can transfer the token.\n * @notice destination cannot be:\n * - zero (0x0) address.\n *\n * @param _recipient Recipient of the token.\n * @param _amount The amount of token that will be transferred.\n *\n * @return true / false.\n */\n function transfer(address _recipient, uint256 _amount) external override returns (bool);\n\n /**\n * @notice Only owner who can transfer the token.\n * @notice destination cannot be:\n * - zero (0x0) address.\n *\n * @param _from Sender of the token.\n * @param _to Recipient of the token.\n * @param _amount The amount of token that will be transferred.\n *\n * @return true / false.\n */\n function transferFrom(\n address _from,\n address _to,\n uint256 _amount\n ) external override returns (bool);\n\n /**\n * @notice transfer utilizing EIP-2612, to reduce the additional sending transaction for doing the approval to the spender.\n *\n * @notice destination cannot be:\n * - zero (0x0) address.\n *\n * @dev By calling this function, the allowance will be overwritten by the total amount.\n *\n * @param _from Sender of the token.\n * @param _to Recipient of the token.\n * @param _amount The amount of the token that will be transferred.\n * @param _deadline Expiration time of the signature.\n * @param _v Last 1 byte of ECDSA signature.\n * @param _r First 32 bytes of ECDSA signature.\n * @param _s 32 bytes after _r in ECDSA signature.\n */\n function transferWithPermit(\n address _from,\n address _to,\n uint256 _amount,\n uint256 _deadline,\n uint8 _v,\n bytes32 _r,\n bytes32 _s\n ) external;\n\n /**\n * @notice Approves and then calls the receiving contract.\n * Useful to encapsulate sending tokens to a contract in one call.\n * Solidity has no native way to send tokens to contracts.\n * ERC-20 tokens require approval to be spent by third parties, such as a contract in this case.\n * @param _spender The contract address to spend the tokens.\n * @param _amount The amount of tokens to be sent.\n * @param _data Parameters for the contract call, such as endpoint signature.\n */\n function approveAndCall(address _spender, uint256 _amount, bytes calldata _data) external;\n}\n" + }, + "contracts/Dependencies/Mynt/IMassetManager.sol": { + "content": "// SPDX-License-Identifier: MIT\n\npragma solidity 0.6.11;\n\ninterface IMassetManager {\n struct PermitParams {\n uint256 deadline;\n uint8 v;\n bytes32 r;\n bytes32 s;\n }\n\n function mintTo(\n address _bAsset,\n uint256 _bAssetQuantity,\n address _recipient\n ) external returns (uint256);\n\n function getToken() external view returns (address);\n\n /**\n * @dev Credits a recipient with a certain quantity of selected bAsset, in exchange for burning the\n * relative mAsset quantity from the sender. Sender also incurs a small fee, if any.\n * @param _bAsset Address of the bAsset to redeem.\n * @param _massetQuantity Units of the masset to redeem.\n * @param _recipient Address to credit with withdrawn bAssets.\n * @return massetRedeemed Relative number of mAsset units burned to pay for the bAssets.\n */\n function redeemTo(\n address _bAsset,\n uint256 _massetQuantity,\n address _recipient\n ) external returns (uint256 massetRedeemed);\n}\n" + }, + "contracts/Dependencies/Mynt/MyntLib.sol": { + "content": "// SPDX-License-Identifier: MIT\n\npragma solidity 0.6.11;\n\nimport \"./IMassetManager.sol\";\nimport \"./IDLLR.sol\";\nimport \"../SafeMath.sol\";\nimport { IPermit2, ISignatureTransfer } from \"../../Interfaces/IPermit2.sol\";\n\nlibrary MyntLib {\n using SafeMath for uint256;\n\n /**\n * @notice Convert DLLR _dllrAmount to _toToken utilizing EIP-2612 permit\n * to reduce the additional sending transaction for doing the approval to the spender.\n *\n * @dev WARNING!! Do not us this lib function on RSK network because there is a griefing attack issue in the DLLR contract.\n *\n * @param _myntMassetManager Mynt protocol MassetManager contract address - needed for integration\n * @param _dllrAmount The amount of the DLLR (mAsset) token that will be burned in exchange for _toToken\n * @param _toToken bAsset token address to withdraw from DLLR\n * @param _permitParams EIP-2612 permit params:\n * _deadline Expiration time of the signature.\n * _v Last 1 byte of ECDSA signature.\n * _r First 32 bytes of ECDSA signature.\n * _s 32 bytes after _r in ECDSA signature.\n * @return redeemed ZUSD amount\n */\n function redeemZusdFromDllrWithPermit(\n IMassetManager _myntMassetManager,\n uint256 _dllrAmount,\n address _toToken,\n IMassetManager.PermitParams calldata _permitParams\n ) internal returns (uint256) {\n IDLLR dllr = IDLLR(_myntMassetManager.getToken());\n uint256 thisBalanceBefore = dllr.balanceOf(address(this));\n address thisAddress = address(this);\n dllr.transferWithPermit(\n msg.sender,\n thisAddress,\n _dllrAmount,\n _permitParams.deadline,\n _permitParams.v,\n _permitParams.r,\n _permitParams.s\n );\n require(\n dllr.balanceOf(thisAddress).sub(thisBalanceBefore) == _dllrAmount,\n \"DLLR transferred amount validation failed\"\n );\n return _myntMassetManager.redeemTo(_toToken, _dllrAmount, msg.sender);\n }\n\n /**\n * @notice Convert DLLR _dllrAmount to _toToken utilizing EIP-2612 permit via a canonical Permit2 contract\n * to reduce the additional sending transaction for doing the approval to the spender.\n *\n * @param _myntMassetManager Mynt protocol MassetManager contract address - needed for integration\n * @param _toToken bAsset token address to withdraw from DLLR\n * @param _permit permit data, in form of PermitTransferFrom struct.\n * @param _permit2 permit2 contract address\n * @param _signature signatue of the permit data.\n * @return redeemed ZUSD amount\n */\n function redeemZusdFromDllrWithPermit2(\n IMassetManager _myntMassetManager,\n address _toToken,\n ISignatureTransfer.PermitTransferFrom memory _permit,\n IPermit2 _permit2,\n bytes calldata _signature\n ) internal returns (uint256) {\n IDLLR dllr = IDLLR(_myntMassetManager.getToken());\n uint256 thisBalanceBefore = dllr.balanceOf(address(this));\n address thisAddress = address(this);\n uint256 _dllrAmount = _permit.permitted.amount;\n\n _permit2.permitTransferFrom(\n _permit,\n _generateTransferDetails(thisAddress, _dllrAmount),\n msg.sender,\n _signature\n );\n\n require(\n dllr.balanceOf(thisAddress).sub(thisBalanceBefore) == _dllrAmount,\n \"DLLR transferred amount validation failed\"\n );\n return _myntMassetManager.redeemTo(_toToken, _dllrAmount, msg.sender);\n }\n\n /**\n * @dev view function to construct SignatureTransferDetails struct to be used by Permit2\n *\n * @param _to ultimate recipient\n * @param _amount amount of transfer\n *\n * @return SignatureTransferDetails struct object \n */\n function _generateTransferDetails(address _to, uint256 _amount) private view returns (ISignatureTransfer.SignatureTransferDetails memory) {\n ISignatureTransfer.SignatureTransferDetails memory transferDetails = ISignatureTransfer.SignatureTransferDetails({\n to: _to,\n requestedAmount: _amount\n });\n\n return transferDetails;\n }\n}\n" + }, + "contracts/Dependencies/Ownable.sol": { + "content": "// SPDX-License-Identifier: MIT\n\npragma solidity 0.6.11;\n\n/**\n * Based on OpenZeppelin's Ownable contract:\n * https://github.com/OpenZeppelin/openzeppelin-contracts/blob/master/contracts/access/Ownable.sol\n *\n * @dev Contract module which provides a basic access control mechanism, where\n * there is an account (an owner) that can be granted exclusive access to\n * specific functions.\n *\n * This module is used through inheritance. It will make available the modifier\n * `onlyOwner`, which can be applied to your functions to restrict their use to\n * the owner.\n */\ncontract Ownable {\n bytes32 private constant KEY_OWNER = keccak256(\"key.ownable.owner\");\n\n event OwnershipTransferred(address indexed previousOwner, address indexed newOwner);\n\n /**\n * @dev Initializes the contract setting the deployer as the initial owner.\n */\n constructor () internal {\n _setOwner(msg.sender);\n }\n\n /**\n * @dev Throws if called by any account other than the owner.\n */\n modifier onlyOwner() {\n require(msg.sender == getOwner(), \"Ownable:: access denied\");\n _;\n }\n\n /**\n * @notice Set address of the owner.\n * @param _owner Address of the owner.\n * */\n function _setOwner(address _owner) internal {\n require(_owner != address(0), \"Ownable::setOwner: invalid address\");\n emit OwnershipTransferred(getOwner(), _owner);\n\n bytes32 key = KEY_OWNER;\n assembly {\n sstore(key, _owner)\n }\n }\n\n /**\n * @notice Set address of the owner (only owner can call this function)\n * @param _owner Address of the owner.\n * */\n function setOwner(address _owner) public onlyOwner {\n _setOwner(_owner);\n }\n\n /**\n * @notice Return address of the owner.\n * @return _owner Address of the owner.\n * */\n function getOwner() public view returns (address _owner) {\n bytes32 key = KEY_OWNER;\n assembly {\n _owner := sload(key)\n }\n }\n}\n" + }, + "contracts/Dependencies/PriceFeed/IExternalPriceFeed.sol": { + "content": "// SPDX-License-Identifier: MIT\n\npragma solidity 0.6.11;\n\n/// @title A generic interface for external price providers \ninterface IExternalPriceFeed {\n /// @dev The returned price should be 18-decimal value\n /// @return the prive value and a boolean stating if the query was successful\n function latestAnswer() external view returns (uint256, bool);\n}\n" + }, + "contracts/Dependencies/PriceFeed/MocMedianizer.sol": { + "content": "// SPDX-License-Identifier: MIT\npragma solidity 0.6.11;\n\nimport \"./IExternalPriceFeed.sol\";\n\ninterface IMoCBaseOracle {\n function peek() external view returns (bytes32, bool);\n}\n\ncontract MoCMedianizer is IExternalPriceFeed {\n IMoCBaseOracle medianizer;\n\n constructor(address _medianizer) public {\n medianizer = IMoCBaseOracle(_medianizer);\n }\n\n function latestAnswer() external view override returns (uint256, bool) {\n (bytes32 price, bool success) = medianizer.peek();\n return (uint256(price), success);\n }\n}\n" + }, + "contracts/Dependencies/PriceFeed/RskOracle.sol": { + "content": "// SPDX-License-Identifier: MIT\npragma solidity 0.6.11;\n\nimport \"./IExternalPriceFeed.sol\";\n\ninterface IRSKOracle {\n function getPricing() external view returns (uint256, uint256);\n}\n\ncontract RskOracle is IExternalPriceFeed {\n \n IRSKOracle rskOracle;\n\n constructor(address _address) public {\n rskOracle = IRSKOracle(_address);\n }\n\n function latestAnswer() external view override returns (uint256, bool) {\n (uint256 price, ) = rskOracle.getPricing();\n return (price, true);\n }\n}\n" + }, + "contracts/Dependencies/SafeMath.sol": { + "content": "// SPDX-License-Identifier: MIT\n\npragma solidity 0.6.11;\n\n/**\n * Based on OpenZeppelin's SafeMath:\n * https://github.com/OpenZeppelin/openzeppelin-contracts/blob/master/contracts/math/SafeMath.sol\n *\n * @dev Wrappers over Solidity's arithmetic operations with added overflow\n * checks.\n *\n * Arithmetic operations in Solidity wrap on overflow. This can easily result\n * in bugs, because programmers usually assume that an overflow raises an\n * error, which is the standard behavior in high level programming languages.\n * `SafeMath` restores this intuition by reverting the transaction when an\n * operation overflows.\n *\n * Using this library instead of the unchecked operations eliminates an entire\n * class of bugs, so it's recommended to use it always.\n */\nlibrary SafeMath {\n /**\n * @dev Returns the addition of two unsigned integers, reverting on\n * overflow.\n *\n * Counterpart to Solidity's `+` operator.\n *\n * Requirements:\n * - Addition cannot overflow.\n */\n function add(uint256 a, uint256 b) internal pure returns (uint256) {\n uint256 c = a + b;\n require(c >= a, \"SafeMath: addition overflow\");\n\n return c;\n }\n\n /**\n * @dev Returns the subtraction of two unsigned integers, reverting on\n * overflow (when the result is negative).\n *\n * Counterpart to Solidity's `-` operator.\n *\n * Requirements:\n * - Subtraction cannot overflow.\n */\n function sub(uint256 a, uint256 b) internal pure returns (uint256) {\n return sub(a, b, \"SafeMath: subtraction overflow\");\n }\n\n /**\n * @dev Returns the subtraction of two unsigned integers, reverting with custom message on\n * overflow (when the result is negative).\n *\n * Counterpart to Solidity's `-` operator.\n *\n * Requirements:\n * - Subtraction cannot overflow.\n *\n * _Available since v2.4.0._\n */\n function sub(uint256 a, uint256 b, string memory errorMessage) internal pure returns (uint256) {\n require(b <= a, errorMessage);\n uint256 c = a - b;\n\n return c;\n }\n\n /**\n * @dev Returns the multiplication of two unsigned integers, reverting on\n * overflow.\n *\n * Counterpart to Solidity's `*` operator.\n *\n * Requirements:\n * - Multiplication cannot overflow.\n */\n function mul(uint256 a, uint256 b) internal pure returns (uint256) {\n // Gas optimization: this is cheaper than requiring 'a' not being zero, but the\n // benefit is lost if 'b' is also tested.\n // See: https://github.com/OpenZeppelin/openzeppelin-contracts/pull/522\n if (a == 0) {\n return 0;\n }\n\n uint256 c = a * b;\n require(c / a == b, \"SafeMath: multiplication overflow\");\n\n return c;\n }\n\n /**\n * @dev Returns the integer division of two unsigned integers. Reverts on\n * division by zero. The result is rounded towards zero.\n *\n * Counterpart to Solidity's `/` operator. Note: this function uses a\n * `revert` opcode (which leaves remaining gas untouched) while Solidity\n * uses an invalid opcode to revert (consuming all remaining gas).\n *\n * Requirements:\n * - The divisor cannot be zero.\n */\n function div(uint256 a, uint256 b) internal pure returns (uint256) {\n return div(a, b, \"SafeMath: division by zero\");\n }\n\n /**\n * @dev Returns the integer division of two unsigned integers. Reverts with custom message on\n * division by zero. The result is rounded towards zero.\n *\n * Counterpart to Solidity's `/` operator. Note: this function uses a\n * `revert` opcode (which leaves remaining gas untouched) while Solidity\n * uses an invalid opcode to revert (consuming all remaining gas).\n *\n * Requirements:\n * - The divisor cannot be zero.\n *\n * _Available since v2.4.0._\n */\n function div(uint256 a, uint256 b, string memory errorMessage) internal pure returns (uint256) {\n // Solidity only automatically asserts when dividing by 0\n require(b > 0, errorMessage);\n uint256 c = a / b;\n // assert(a == b * c + a % b); // There is no case in which this doesn't hold\n\n return c;\n }\n\n /**\n * @dev Returns the remainder of dividing two unsigned integers. (unsigned integer modulo),\n * Reverts when dividing by zero.\n *\n * Counterpart to Solidity's `%` operator. This function uses a `revert`\n * opcode (which leaves remaining gas untouched) while Solidity uses an\n * invalid opcode to revert (consuming all remaining gas).\n *\n * Requirements:\n * - The divisor cannot be zero.\n */\n function mod(uint256 a, uint256 b) internal pure returns (uint256) {\n return mod(a, b, \"SafeMath: modulo by zero\");\n }\n\n /**\n * @dev Returns the remainder of dividing two unsigned integers. (unsigned integer modulo),\n * Reverts with custom message when dividing by zero.\n *\n * Counterpart to Solidity's `%` operator. This function uses a `revert`\n * opcode (which leaves remaining gas untouched) while Solidity uses an\n * invalid opcode to revert (consuming all remaining gas).\n *\n * Requirements:\n * - The divisor cannot be zero.\n *\n * _Available since v2.4.0._\n */\n function mod(uint256 a, uint256 b, string memory errorMessage) internal pure returns (uint256) {\n require(b != 0, errorMessage);\n return a % b;\n }\n}\n" + }, + "contracts/Dependencies/TroveManagerBase.sol": { + "content": "// SPDX-License-Identifier: MIT\n\npragma solidity 0.6.11;\n\nimport \"../Interfaces/IActivePool.sol\";\nimport \"../Interfaces/IDefaultPool.sol\";\nimport \"../Interfaces/IZUSDToken.sol\";\nimport \"../Interfaces/IZEROStaking.sol\";\nimport \"../Interfaces/ISortedTroves.sol\";\nimport \"../Interfaces/ICollSurplusPool.sol\";\nimport \"../TroveManagerStorage.sol\";\nimport \"./LiquityBase.sol\";\n\ncontract TroveManagerBase is LiquityBase, TroveManagerStorage {\n uint256 public constant SECONDS_IN_ONE_MINUTE = 60;\n\n uint256 public constant MINUTE_DECAY_FACTOR = 999037758833783000;\n\n /// During bootsrap period redemptions are not allowed\n uint256 public immutable BOOTSTRAP_PERIOD;\n\n /**\n BETA: 18 digit decimal. Parameter by which to divide the redeemed fraction, in order to calc the new base rate from a redemption.\n Corresponds to (1 / ALPHA) in the white paper.\n */\n uint256 public constant BETA = 2;\n\n /**\n --- Variable container structs for liquidations ---\n \n These structs are used to hold, return and assign variables inside the liquidation functions,\n in order to avoid the error: \"CompilerError: Stack too deep\".\n */\n\n struct LocalVariables_OuterLiquidationFunction {\n uint256 price;\n uint256 ZUSDInStabPool;\n bool recoveryModeAtStart;\n uint256 liquidatedDebt;\n uint256 liquidatedColl;\n }\n\n struct LocalVariables_InnerSingleLiquidateFunction {\n uint256 collToLiquidate;\n uint256 pendingDebtReward;\n uint256 pendingCollReward;\n }\n\n struct LocalVariables_LiquidationSequence {\n uint256 remainingZUSDInStabPool;\n uint256 i;\n uint256 ICR;\n address user;\n bool backToNormalMode;\n uint256 entireSystemDebt;\n uint256 entireSystemColl;\n }\n\n struct LiquidationValues {\n uint256 entireTroveDebt;\n uint256 entireTroveColl;\n uint256 collGasCompensation;\n uint256 ZUSDGasCompensation;\n uint256 debtToOffset;\n uint256 collToSendToSP;\n uint256 debtToRedistribute;\n uint256 collToRedistribute;\n uint256 collSurplus;\n }\n\n struct LiquidationTotals {\n uint256 totalCollInSequence;\n uint256 totalDebtInSequence;\n uint256 totalCollGasCompensation;\n uint256 totalZUSDGasCompensation;\n uint256 totalDebtToOffset;\n uint256 totalCollToSendToSP;\n uint256 totalDebtToRedistribute;\n uint256 totalCollToRedistribute;\n uint256 totalCollSurplus;\n }\n\n struct ContractsCache {\n IActivePool activePool;\n IDefaultPool defaultPool;\n IZUSDToken zusdToken;\n IZEROStaking zeroStaking;\n ISortedTroves sortedTroves;\n ICollSurplusPool collSurplusPool;\n address gasPoolAddress;\n }\n // --- Variable container structs for redemptions ---\n\n struct RedemptionTotals {\n uint256 remainingZUSD;\n uint256 totalZUSDToRedeem;\n uint256 totalETHDrawn;\n uint256 ETHFee;\n uint256 ETHToSendToRedeemer;\n uint256 decayedBaseRate;\n uint256 price;\n uint256 totalZUSDSupplyAtStart;\n }\n\n struct SingleRedemptionValues {\n uint256 ZUSDLot;\n uint256 ETHLot;\n bool cancelledPartial;\n }\n\n // --- Events ---\n\n event Liquidation(\n uint256 _liquidatedDebt,\n uint256 _liquidatedColl,\n uint256 _collGasCompensation,\n uint256 _ZUSDGasCompensation\n );\n event Redemption(\n uint256 _attemptedZUSDAmount,\n uint256 _actualZUSDAmount,\n uint256 _ETHSent,\n uint256 _ETHFee\n );\n event TroveUpdated(\n address indexed _borrower,\n uint256 _debt,\n uint256 _coll,\n uint256 _stake,\n TroveManagerOperation _operation\n );\n event TroveLiquidated(\n address indexed _borrower,\n uint256 _debt,\n uint256 _coll,\n TroveManagerOperation _operation\n );\n event BaseRateUpdated(uint256 _baseRate);\n event LastFeeOpTimeUpdated(uint256 _lastFeeOpTime);\n event TotalStakesUpdated(uint256 _newTotalStakes);\n event SystemSnapshotsUpdated(uint256 _totalStakesSnapshot, uint256 _totalCollateralSnapshot);\n event LTermsUpdated(uint256 _L_ETH, uint256 _L_ZUSDDebt);\n event TroveSnapshotsUpdated(uint256 _L_ETH, uint256 _L_ZUSDDebt);\n event TroveIndexUpdated(address _borrower, uint256 _newIndex);\n\n enum TroveManagerOperation {\n applyPendingRewards,\n liquidateInNormalMode,\n liquidateInRecoveryMode,\n redeemCollateral\n }\n\n constructor(uint256 _bootstrapPeriod) public {\n BOOTSTRAP_PERIOD = _bootstrapPeriod;\n }\n\n /// Return the current collateral ratio (ICR) of a given Trove. Takes a trove's pending coll and debt rewards from redistributions into account.\n function _getCurrentICR(address _borrower, uint256 _price) public view returns (uint256) {\n (uint256 currentETH, uint256 currentZUSDDebt) = _getCurrentTroveAmounts(_borrower);\n\n uint256 ICR = LiquityMath._computeCR(currentETH, currentZUSDDebt, _price);\n return ICR;\n }\n\n function _getCurrentTroveAmounts(address _borrower) internal view returns (uint256, uint256) {\n uint256 pendingETHReward = _getPendingETHReward(_borrower);\n uint256 pendingZUSDDebtReward = _getPendingZUSDDebtReward(_borrower);\n\n uint256 currentETH = Troves[_borrower].coll.add(pendingETHReward);\n uint256 currentZUSDDebt = Troves[_borrower].debt.add(pendingZUSDDebtReward);\n\n return (currentETH, currentZUSDDebt);\n }\n\n /// Get the borrower's pending accumulated ETH reward, earned by their stake\n function _getPendingETHReward(address _borrower) public view returns (uint256) {\n uint256 snapshotETH = rewardSnapshots[_borrower].ETH;\n uint256 rewardPerUnitStaked = L_ETH.sub(snapshotETH);\n\n if (rewardPerUnitStaked == 0 || Troves[_borrower].status != Status.active) {\n return 0;\n }\n\n uint256 stake = Troves[_borrower].stake;\n\n uint256 pendingETHReward = stake.mul(rewardPerUnitStaked).div(DECIMAL_PRECISION);\n\n return pendingETHReward;\n }\n\n /// Get the borrower's pending accumulated ZUSD reward, earned by their stake\n function _getPendingZUSDDebtReward(address _borrower) public view returns (uint256) {\n uint256 snapshotZUSDDebt = rewardSnapshots[_borrower].ZUSDDebt;\n uint256 rewardPerUnitStaked = L_ZUSDDebt.sub(snapshotZUSDDebt);\n\n if (rewardPerUnitStaked == 0 || Troves[_borrower].status != Status.active) {\n return 0;\n }\n\n uint256 stake = Troves[_borrower].stake;\n\n uint256 pendingZUSDDebtReward = stake.mul(rewardPerUnitStaked).div(DECIMAL_PRECISION);\n\n return pendingZUSDDebtReward;\n }\n\n /// Add the borrowers's coll and debt rewards earned from redistributions, to their Trove\n function _applyPendingRewards(\n IActivePool _activePool,\n IDefaultPool _defaultPool,\n address _borrower\n ) internal {\n if (_hasPendingRewards(_borrower)) {\n _requireTroveIsActive(_borrower);\n\n // Compute pending rewards\n uint256 pendingETHReward = _getPendingETHReward(_borrower);\n uint256 pendingZUSDDebtReward = _getPendingZUSDDebtReward(_borrower);\n\n // Apply pending rewards to trove's state\n Troves[_borrower].coll = Troves[_borrower].coll.add(pendingETHReward);\n Troves[_borrower].debt = Troves[_borrower].debt.add(pendingZUSDDebtReward);\n\n _updateTroveRewardSnapshots(_borrower);\n\n // Transfer from DefaultPool to ActivePool\n _movePendingTroveRewardsToActivePool(\n _activePool,\n _defaultPool,\n pendingZUSDDebtReward,\n pendingETHReward\n );\n\n emit TroveUpdated(\n _borrower,\n Troves[_borrower].debt,\n Troves[_borrower].coll,\n Troves[_borrower].stake,\n TroveManagerOperation.applyPendingRewards\n );\n }\n }\n\n function _hasPendingRewards(address _borrower) public view returns (bool) {\n /*\n * A Trove has pending rewards if its snapshot is less than the current rewards per-unit-staked sum:\n * this indicates that rewards have occured since the snapshot was made, and the user therefore has\n * pending rewards\n */\n if (Troves[_borrower].status != Status.active) {\n return false;\n }\n\n return (rewardSnapshots[_borrower].ETH < L_ETH);\n }\n\n function _updateTroveRewardSnapshots(address _borrower) internal {\n rewardSnapshots[_borrower].ETH = L_ETH;\n rewardSnapshots[_borrower].ZUSDDebt = L_ZUSDDebt;\n emit TroveSnapshotsUpdated(L_ETH, L_ZUSDDebt);\n }\n\n /// Move a Trove's pending debt and collateral rewards from distributions, from the Default Pool to the Active Pool\n function _movePendingTroveRewardsToActivePool(\n IActivePool _activePool,\n IDefaultPool _defaultPool,\n uint256 _ZUSD,\n uint256 _ETH\n ) internal {\n _defaultPool.decreaseZUSDDebt(_ZUSD);\n _activePool.increaseZUSDDebt(_ZUSD);\n _defaultPool.sendETHToActivePool(_ETH);\n }\n\n /// Remove borrower's stake from the totalStakes sum, and set their stake to 0\n function _removeStake(address _borrower) internal {\n uint256 stake = Troves[_borrower].stake;\n totalStakes = totalStakes.sub(stake);\n Troves[_borrower].stake = 0;\n }\n\n function _closeTrove(address _borrower, Status closedStatus) internal {\n assert(closedStatus != Status.nonExistent && closedStatus != Status.active);\n\n uint256 TroveOwnersArrayLength = TroveOwners.length;\n _requireMoreThanOneTroveInSystem(TroveOwnersArrayLength);\n\n Troves[_borrower].status = closedStatus;\n Troves[_borrower].coll = 0;\n Troves[_borrower].debt = 0;\n\n rewardSnapshots[_borrower].ETH = 0;\n rewardSnapshots[_borrower].ZUSDDebt = 0;\n\n _removeTroveOwner(_borrower, TroveOwnersArrayLength);\n sortedTroves.remove(_borrower);\n }\n\n /// Update borrower's stake based on their latest collateral value\n function _updateStakeAndTotalStakes(address _borrower) internal returns (uint256) {\n uint256 newStake = _computeNewStake(Troves[_borrower].coll);\n uint256 oldStake = Troves[_borrower].stake;\n Troves[_borrower].stake = newStake;\n\n totalStakes = totalStakes.sub(oldStake).add(newStake);\n emit TotalStakesUpdated(totalStakes);\n\n return newStake;\n }\n\n // Calculate a new stake based on the snapshots of the totalStakes and totalCollateral taken at the last liquidation\n function _computeNewStake(uint256 _coll) internal view returns (uint256) {\n uint256 stake;\n if (totalCollateralSnapshot == 0) {\n stake = _coll;\n } else {\n /*\n * The following assert() holds true because:\n * - The system always contains >= 1 trove\n * - When we close or liquidate a trove, we redistribute the pending rewards, so if all troves were closed/liquidated,\n * rewards would’ve been emptied and totalCollateralSnapshot would be zero too.\n */\n assert(totalStakesSnapshot > 0);\n stake = _coll.mul(totalStakesSnapshot).div(totalCollateralSnapshot);\n }\n return stake;\n }\n\n function _calcDecayedBaseRate() internal view returns (uint256) {\n uint256 minutesPassed = _minutesPassedSinceLastFeeOp();\n uint256 decayFactor = LiquityMath._decPow(MINUTE_DECAY_FACTOR, minutesPassed);\n\n return baseRate.mul(decayFactor).div(DECIMAL_PRECISION);\n }\n\n function _minutesPassedSinceLastFeeOp() internal view returns (uint256) {\n return (block.timestamp.sub(lastFeeOperationTime)).div(SECONDS_IN_ONE_MINUTE);\n }\n\n // Update the last fee operation time only if time passed >= decay interval. This prevents base rate griefing.\n function _updateLastFeeOpTime() internal {\n uint256 timePassed = block.timestamp.sub(lastFeeOperationTime);\n\n if (timePassed >= SECONDS_IN_ONE_MINUTE) {\n lastFeeOperationTime = block.timestamp;\n emit LastFeeOpTimeUpdated(block.timestamp);\n }\n }\n\n function _calcRedemptionFee(\n uint256 _redemptionRate,\n uint256 _ETHDrawn\n ) internal pure returns (uint256) {\n uint256 redemptionFee = _redemptionRate.mul(_ETHDrawn).div(DECIMAL_PRECISION);\n require(\n redemptionFee < _ETHDrawn,\n \"TroveManager: Fee would eat up all returned collateral\"\n );\n return redemptionFee;\n }\n\n function _getRedemptionRate() public view returns (uint256) {\n return _calcRedemptionRate(baseRate);\n }\n\n function _getRedemptionFee(uint256 _ETHDrawn) internal view returns (uint256) {\n return _calcRedemptionFee(_getRedemptionRate(), _ETHDrawn);\n }\n\n function _calcRedemptionRate(uint256 _baseRate) internal view returns (uint256) {\n return\n LiquityMath._min(\n liquityBaseParams.REDEMPTION_FEE_FLOOR().add(_baseRate),\n DECIMAL_PRECISION // cap at a maximum of 100%\n );\n }\n\n /**\n Remove a Trove owner from the TroveOwners array, not preserving array order. Removing owner 'B' does the following:\n [A B C D E] => [A E C D], and updates E's Trove struct to point to its new array index.\n */\n function _removeTroveOwner(address _borrower, uint256 TroveOwnersArrayLength) internal {\n Status troveStatus = Troves[_borrower].status;\n // It’s set in caller function `_closeTrove`\n assert(troveStatus != Status.nonExistent && troveStatus != Status.active);\n\n uint128 index = Troves[_borrower].arrayIndex;\n uint256 length = TroveOwnersArrayLength;\n uint256 idxLast = length.sub(1);\n\n assert(index <= idxLast);\n\n address addressToMove = TroveOwners[idxLast];\n\n TroveOwners[index] = addressToMove;\n Troves[addressToMove].arrayIndex = index;\n emit TroveIndexUpdated(addressToMove, index);\n\n TroveOwners.pop();\n }\n\n // --- 'require' wrapper functions ---\n\n function _requireCallerIsBorrowerOperations() internal view {\n require(\n msg.sender == borrowerOperationsAddress,\n \"TroveManager: Caller is not the BorrowerOperations contract\"\n );\n }\n\n function _requireTroveIsActive(address _borrower) internal view {\n require(\n Troves[_borrower].status == Status.active,\n \"TroveManager: Trove does not exist or is closed\"\n );\n }\n\n function _requireZUSDBalanceCoversRedemption(\n IZUSDToken _zusdToken,\n address _redeemer,\n uint256 _amount\n ) internal view {\n require(\n _zusdToken.balanceOf(_redeemer) >= _amount,\n \"TroveManager: Requested redemption amount must be <= user's ZUSD token balance\"\n );\n }\n\n function _requireMoreThanOneTroveInSystem(uint256 TroveOwnersArrayLength) internal view {\n require(\n TroveOwnersArrayLength > 1 && sortedTroves.getSize() > 1,\n \"TroveManager: Only one trove in the system\"\n );\n }\n\n function _requireAmountGreaterThanZero(uint256 _amount) internal pure {\n require(_amount > 0, \"TroveManager: Amount must be greater than zero\");\n }\n\n function _requireTCRoverMCR(uint256 _price) internal view {\n require(\n _getTCR(_price) >= liquityBaseParams.MCR(),\n \"TroveManager: Cannot redeem when TCR < MCR\"\n );\n }\n\n function _requireAfterBootstrapPeriod() internal view {\n uint256 systemDeploymentTime = _zeroToken.getDeploymentStartTime();\n require(\n block.timestamp >= systemDeploymentTime.add(BOOTSTRAP_PERIOD),\n \"TroveManager: Redemptions are not allowed during bootstrap phase\"\n );\n }\n\n function _requireValidMaxFeePercentage(uint256 _maxFeePercentage) internal view {\n require(\n _maxFeePercentage >= liquityBaseParams.REDEMPTION_FEE_FLOOR() &&\n _maxFeePercentage <= DECIMAL_PRECISION,\n \"Max fee percentage must be between 0.5% and 100%\"\n );\n }\n}\n" + }, + "contracts/Dependencies/TroveManagerRedeemOps.sol": { + "content": "// SPDX-License-Identifier: MIT\n\npragma solidity 0.6.11;\npragma experimental ABIEncoderV2;\n\nimport \"../Dependencies/Mynt/MyntLib.sol\";\nimport \"../Interfaces/IBorrowerOperations.sol\";\nimport \"./TroveManagerBase.sol\";\nimport \"../Interfaces/IPermit2.sol\";\n\n/// This contract is designed to be used via delegatecall from the TroveManager contract\n/// TroveManagerBase constructor param is bootsrap period when redemptions are not allowed\ncontract TroveManagerRedeemOps is TroveManagerBase {\n /** CONSTANT / IMMUTABLE VARIABLE ONLY */\n IPermit2 public immutable permit2;\n\n /** Send _ZUSDamount ZUSD to the system and redeem the corresponding amount of collateral from as many Troves as are needed to fill the redemption\n request. Applies pending rewards to a Trove before reducing its debt and coll.\n \n Note that if _amount is very large, this function can run out of gas, specially if traversed troves are small. This can be easily avoided by\n splitting the total _amount in appropriate chunks and calling the function multiple times.\n \n Param `_maxIterations` can also be provided, so the loop through Troves is capped (if it’s zero, it will be ignored).This makes it easier to\n avoid OOG for the frontend, as only knowing approximately the average cost of an iteration is enough, without needing to know the “topology”\n of the trove list. It also avoids the need to set the cap in stone in the contract, nor doing gas calculations, as both gas price and opcode\n costs can vary.\n \n All Troves that are redeemed from -- with the likely exception of the last one -- will end up with no debt left, therefore they will be closed.\n If the last Trove does have some remaining debt, it has a finite ICR, and the reinsertion could be anywhere in the list, therefore it requires a hint.\n A frontend should use getRedemptionHints() to calculate what the ICR of this Trove will be after redemption, and pass a hint for its position\n in the sortedTroves list along with the ICR value that the hint was found for.\n \n If another transaction modifies the list between calling getRedemptionHints() and passing the hints to redeemCollateral(), it\n is very likely that the last (partially) redeemed Trove would end up with a different ICR than what the hint is for. In this case the\n redemption will stop after the last completely redeemed Trove and the sender will keep the remaining ZUSD amount, which they can attempt\n to redeem later.\n */\n\n /** Constructor */\n constructor(uint256 _bootstrapPeriod, address _permit2) public TroveManagerBase(_bootstrapPeriod) {\n permit2 = IPermit2(_permit2);\n }\n\n function redeemCollateral(\n uint256 _ZUSDamount,\n address _firstRedemptionHint,\n address _upperPartialRedemptionHint,\n address _lowerPartialRedemptionHint,\n uint256 _partialRedemptionHintNICR,\n uint256 _maxIterations,\n uint256 _maxFeePercentage\n ) external {\n _redeemCollateral(\n _ZUSDamount,\n _firstRedemptionHint,\n _upperPartialRedemptionHint,\n _lowerPartialRedemptionHint,\n _partialRedemptionHintNICR,\n _maxIterations,\n _maxFeePercentage\n );\n }\n\n function _redeemCollateral(\n uint256 _ZUSDamount,\n address _firstRedemptionHint,\n address _upperPartialRedemptionHint,\n address _lowerPartialRedemptionHint,\n uint256 _partialRedemptionHintNICR,\n uint256 _maxIterations,\n uint256 _maxFeePercentage\n ) internal {\n ContractsCache memory contractsCache = ContractsCache(\n activePool,\n defaultPool,\n _zusdToken,\n _zeroStaking,\n sortedTroves,\n collSurplusPool,\n gasPoolAddress\n );\n RedemptionTotals memory totals;\n\n _requireValidMaxFeePercentage(_maxFeePercentage);\n _requireAfterBootstrapPeriod();\n totals.price = priceFeed.fetchPrice();\n _requireTCRoverMCR(totals.price);\n _requireAmountGreaterThanZero(_ZUSDamount);\n _requireZUSDBalanceCoversRedemption(contractsCache.zusdToken, msg.sender, _ZUSDamount);\n\n totals.totalZUSDSupplyAtStart = getEntireSystemDebt();\n // Confirm redeemer's balance is less than total ZUSD supply\n assert(contractsCache.zusdToken.balanceOf(msg.sender) <= totals.totalZUSDSupplyAtStart);\n\n totals.remainingZUSD = _ZUSDamount;\n address currentBorrower;\n\n if (\n _isValidFirstRedemptionHint(\n contractsCache.sortedTroves,\n _firstRedemptionHint,\n totals.price\n )\n ) {\n currentBorrower = _firstRedemptionHint;\n } else {\n currentBorrower = contractsCache.sortedTroves.getLast();\n // Find the first trove with ICR >= MCR\n while (\n currentBorrower != address(0) &&\n _getCurrentICR(currentBorrower, totals.price) < liquityBaseParams.MCR()\n ) {\n currentBorrower = contractsCache.sortedTroves.getPrev(currentBorrower);\n }\n }\n\n // Loop through the Troves starting from the one with lowest collateral ratio until _amount of ZUSD is exchanged for collateral\n if (_maxIterations == 0) {\n _maxIterations = uint256(-1);\n }\n while (currentBorrower != address(0) && totals.remainingZUSD > 0 && _maxIterations > 0) {\n _maxIterations--;\n // Save the address of the Trove preceding the current one, before potentially modifying the list\n address nextUserToCheck = contractsCache.sortedTroves.getPrev(currentBorrower);\n\n _applyPendingRewards(\n contractsCache.activePool,\n contractsCache.defaultPool,\n currentBorrower\n );\n\n SingleRedemptionValues memory singleRedemption = _redeemCollateralFromTrove(\n contractsCache,\n currentBorrower,\n totals.remainingZUSD,\n totals.price,\n _upperPartialRedemptionHint,\n _lowerPartialRedemptionHint,\n _partialRedemptionHintNICR\n );\n\n if (singleRedemption.cancelledPartial) break; // Partial redemption was cancelled (out-of-date hint, or new net debt < minimum), therefore we could not redeem from the last Trove\n\n totals.totalZUSDToRedeem = totals.totalZUSDToRedeem.add(singleRedemption.ZUSDLot);\n totals.totalETHDrawn = totals.totalETHDrawn.add(singleRedemption.ETHLot);\n\n totals.remainingZUSD = totals.remainingZUSD.sub(singleRedemption.ZUSDLot);\n currentBorrower = nextUserToCheck;\n }\n require(totals.totalETHDrawn > 0, \"TroveManager: Unable to redeem any amount\");\n\n // Decay the baseRate due to time passed, and then increase it according to the size of this redemption.\n // Use the saved total ZUSD supply value, from before it was reduced by the redemption.\n _updateBaseRateFromRedemption(\n totals.totalETHDrawn,\n totals.price,\n totals.totalZUSDSupplyAtStart\n );\n\n // Calculate the ETH fee\n totals.ETHFee = _getRedemptionFee(totals.totalETHDrawn);\n\n _requireUserAcceptsFee(totals.ETHFee, totals.totalETHDrawn, _maxFeePercentage);\n\n // Send the ETH fee to the feeDistributorContract address\n contractsCache.activePool.sendETH(address(feeDistributor), totals.ETHFee);\n feeDistributor.distributeFees();\n\n totals.ETHToSendToRedeemer = totals.totalETHDrawn.sub(totals.ETHFee);\n\n emit Redemption(\n _ZUSDamount,\n totals.totalZUSDToRedeem,\n totals.totalETHDrawn,\n totals.ETHFee\n );\n\n // Burn the total ZUSD that is cancelled with debt, and send the redeemed ETH to msg.sender\n contractsCache.zusdToken.burn(msg.sender, totals.totalZUSDToRedeem);\n // Update Active Pool ZUSD, and send ETH to account\n contractsCache.activePool.decreaseZUSDDebt(totals.totalZUSDToRedeem);\n contractsCache.activePool.sendETH(msg.sender, totals.ETHToSendToRedeemer);\n }\n\n ///DLLR _owner can use Sovryn Mynt to convert DLLR to ZUSD, then use the Zero redemption mechanism to redeem ZUSD for RBTC, all in a single transaction\n function redeemCollateralViaDLLR(\n uint256 _dllrAmount,\n address _firstRedemptionHint,\n address _upperPartialRedemptionHint,\n address _lowerPartialRedemptionHint,\n uint256 _partialRedemptionHintNICR,\n uint256 _maxIterations,\n uint256 _maxFeePercentage,\n IMassetManager.PermitParams calldata _permitParams\n ) external {\n uint256 _zusdAmount = MyntLib.redeemZusdFromDllrWithPermit(\n IBorrowerOperations(borrowerOperationsAddress).getMassetManager(),\n _dllrAmount,\n address(_zusdToken),\n _permitParams\n );\n _redeemCollateral(\n _zusdAmount,\n _firstRedemptionHint,\n _upperPartialRedemptionHint,\n _lowerPartialRedemptionHint,\n _partialRedemptionHintNICR,\n _maxIterations,\n _maxFeePercentage\n );\n }\n\n ///DLLR _owner can use Sovryn Mynt to convert DLLR to ZUSD, then use the Zero redemption mechanism to redeem ZUSD for RBTC, all in a single transaction\n function redeemCollateralViaDllrWithPermit2(\n uint256 _dllrAmount,\n address _firstRedemptionHint,\n address _upperPartialRedemptionHint,\n address _lowerPartialRedemptionHint,\n uint256 _partialRedemptionHintNICR,\n uint256 _maxIterations,\n uint256 _maxFeePercentage,\n ISignatureTransfer.PermitTransferFrom memory _permit,\n bytes calldata _signature\n ) external {\n uint256 _zusdAmount = MyntLib.redeemZusdFromDllrWithPermit2(\n IBorrowerOperations(borrowerOperationsAddress).getMassetManager(),\n address(_zusdToken),\n _permit,\n permit2,\n _signature\n );\n\n _redeemCollateral(\n _zusdAmount,\n _firstRedemptionHint,\n _upperPartialRedemptionHint,\n _lowerPartialRedemptionHint,\n _partialRedemptionHintNICR,\n _maxIterations,\n _maxFeePercentage\n );\n }\n\n function _isValidFirstRedemptionHint(\n ISortedTroves _sortedTroves,\n address _firstRedemptionHint,\n uint256 _price\n ) internal view returns (bool) {\n if (\n _firstRedemptionHint == address(0) ||\n !_sortedTroves.contains(_firstRedemptionHint) ||\n _getCurrentICR(_firstRedemptionHint, _price) < liquityBaseParams.MCR()\n ) {\n return false;\n }\n\n address nextTrove = _sortedTroves.getNext(_firstRedemptionHint);\n return\n nextTrove == address(0) || _getCurrentICR(nextTrove, _price) < liquityBaseParams.MCR();\n }\n\n /// Redeem as much collateral as possible from _borrower's Trove in exchange for ZUSD up to _maxZUSDamount\n function _redeemCollateralFromTrove(\n ContractsCache memory _contractsCache,\n address _borrower,\n uint256 _maxZUSDamount,\n uint256 _price,\n address _upperPartialRedemptionHint,\n address _lowerPartialRedemptionHint,\n uint256 _partialRedemptionHintNICR\n ) internal returns (SingleRedemptionValues memory singleRedemption) {\n // Determine the remaining amount (lot) to be redeemed, capped by the entire debt of the Trove minus the liquidation reserve\n singleRedemption.ZUSDLot = LiquityMath._min(\n _maxZUSDamount,\n Troves[_borrower].debt.sub(ZUSD_GAS_COMPENSATION)\n );\n\n // Get the ETHLot of equivalent value in USD\n singleRedemption.ETHLot = singleRedemption.ZUSDLot.mul(DECIMAL_PRECISION).div(_price);\n\n // Decrease the debt and collateral of the current Trove according to the ZUSD lot and corresponding ETH to send\n uint256 newDebt = (Troves[_borrower].debt).sub(singleRedemption.ZUSDLot);\n uint256 newColl = (Troves[_borrower].coll).sub(singleRedemption.ETHLot);\n\n if (newDebt == ZUSD_GAS_COMPENSATION) {\n // No debt left in the Trove (except for the liquidation reserve), therefore the trove gets closed\n _removeStake(_borrower);\n _closeTrove(_borrower, Status.closedByRedemption);\n _redeemCloseTrove(_contractsCache, _borrower, ZUSD_GAS_COMPENSATION, newColl);\n emit TroveUpdated(_borrower, 0, 0, 0, TroveManagerOperation.redeemCollateral);\n } else {\n uint256 newNICR = LiquityMath._computeNominalCR(newColl, newDebt);\n\n /*\n * If the provided hint is out of date, we bail since trying to reinsert without a good hint will almost\n * certainly result in running out of gas.\n *\n * If the resultant net debt of the partial is less than the minimum, net debt we bail.\n */\n if (newNICR != _partialRedemptionHintNICR || _getNetDebt(newDebt) < MIN_NET_DEBT) {\n singleRedemption.cancelledPartial = true;\n return singleRedemption;\n }\n\n _contractsCache.sortedTroves.reInsert(\n _borrower,\n newNICR,\n _upperPartialRedemptionHint,\n _lowerPartialRedemptionHint\n );\n\n Troves[_borrower].debt = newDebt;\n Troves[_borrower].coll = newColl;\n _updateStakeAndTotalStakes(_borrower);\n\n emit TroveUpdated(\n _borrower,\n newDebt,\n newColl,\n Troves[_borrower].stake,\n TroveManagerOperation.redeemCollateral\n );\n }\n\n return singleRedemption;\n }\n\n /**\n This function has two impacts on the baseRate state variable:\n 1) decays the baseRate based on time passed since last redemption or ZUSD borrowing operation.\n then,\n 2) increases the baseRate based on the amount redeemed, as a proportion of total supply\n */\n function _updateBaseRateFromRedemption(\n uint256 _ETHDrawn,\n uint256 _price,\n uint256 _totalZUSDSupply\n ) internal returns (uint256) {\n uint256 decayedBaseRate = _calcDecayedBaseRate();\n\n /* Convert the drawn ETH back to ZUSD at face value rate (1 ZUSD:1 USD), in order to get\n * the fraction of total supply that was redeemed at face value. */\n uint256 redeemedZUSDFraction = _ETHDrawn.mul(_price).div(_totalZUSDSupply);\n\n uint256 newBaseRate = decayedBaseRate.add(redeemedZUSDFraction.div(BETA));\n newBaseRate = LiquityMath._min(newBaseRate, DECIMAL_PRECISION); // cap baseRate at a maximum of 100%\n //assert(newBaseRate <= DECIMAL_PRECISION); // This is already enforced in the line above\n assert(newBaseRate > 0); // Base rate is always non-zero after redemption\n\n // Update the baseRate state variable\n baseRate = newBaseRate;\n emit BaseRateUpdated(newBaseRate);\n\n _updateLastFeeOpTime();\n\n return newBaseRate;\n }\n\n /**\n Called when a full redemption occurs, and closes the trove.\n The redeemer swaps (debt - liquidation reserve) ZUSD for (debt - liquidation reserve) worth of ETH, so the ZUSD liquidation reserve left corresponds to the remaining debt.\n In order to close the trove, the ZUSD liquidation reserve is burned, and the corresponding debt is removed from the active pool.\n The debt recorded on the trove's struct is zero'd elswhere, in _closeTrove.\n Any surplus ETH left in the trove, is sent to the Coll surplus pool, and can be later claimed by the borrower.\n */\n function _redeemCloseTrove(\n ContractsCache memory _contractsCache,\n address _borrower,\n uint256 _ZUSD,\n uint256 _ETH\n ) internal {\n _contractsCache.zusdToken.burn(gasPoolAddress, _ZUSD);\n // Update Active Pool ZUSD, and send ETH to account\n _contractsCache.activePool.decreaseZUSDDebt(_ZUSD);\n\n // send ETH from Active Pool to CollSurplus Pool\n _contractsCache.collSurplusPool.accountSurplus(_borrower, _ETH);\n _contractsCache.activePool.sendETH(address(_contractsCache.collSurplusPool), _ETH);\n }\n}\n" + }, + "contracts/FeeDistributor.sol": { + "content": "// SPDX-License-Identifier: MIT\n\npragma solidity 0.6.11;\n\nimport \"./Interfaces/IFeeDistributor.sol\";\nimport \"./Dependencies/CheckContract.sol\";\nimport \"./Dependencies/LiquityMath.sol\";\nimport \"./FeeDistributorStorage.sol\";\nimport \"./Dependencies/SafeMath.sol\";\n\ncontract FeeDistributor is CheckContract, FeeDistributorStorage, IFeeDistributor {\n using SafeMath for uint256;\n // --- Events ---\n\n event FeeSharingCollectorAddressChanged(address _feeSharingCollectorAddress);\n event ZeroStakingAddressChanged(address _zeroStakingAddress);\n event BorrowerOperationsAddressChanged(address _borrowerOperationsAddress);\n event TroveManagerAddressChanged(address _troveManagerAddress);\n event WrbtcAddressChanged(address _wrbtcAddress);\n event ZUSDTokenAddressChanged(address _zusdTokenAddress);\n event ActivePoolAddressSet(address _activePoolAddress);\n\n event ZUSDDistributed(uint256 _zusdDistributedAmount);\n event RBTCistributed(uint256 _rbtcDistributedAmount);\n\n // --- Dependency setters ---\n\n function setAddresses(\n address _feeSharingCollectorAddress,\n address _zeroStakingAddress,\n address _borrowerOperationsAddress,\n address _troveManagerAddress,\n address _wrbtcAddress,\n address _zusdTokenAddress,\n address _activePoolAddress\n ) external override onlyOwner {\n checkContract(_feeSharingCollectorAddress);\n checkContract(_zeroStakingAddress);\n checkContract(_borrowerOperationsAddress);\n checkContract(_troveManagerAddress);\n checkContract(_wrbtcAddress);\n checkContract(_zusdTokenAddress);\n checkContract(_activePoolAddress);\n\n feeSharingCollector = IFeeSharingCollector(_feeSharingCollectorAddress);\n zeroStaking = IZEROStaking(_zeroStakingAddress);\n borrowerOperations = IBorrowerOperations(_borrowerOperationsAddress);\n troveManager = ITroveManager(_troveManagerAddress);\n wrbtc = IWrbtc(_wrbtcAddress);\n zusdToken = IZUSDToken(_zusdTokenAddress);\n activePoolAddress = _activePoolAddress;\n\n // Not entirely removing this as per request from @light\n FEE_TO_FEE_SHARING_COLLECTOR = LiquityMath.DECIMAL_PRECISION; // 100%\n\n emit FeeSharingCollectorAddressChanged(_feeSharingCollectorAddress);\n emit ZeroStakingAddressChanged(_zeroStakingAddress);\n emit BorrowerOperationsAddressChanged(_borrowerOperationsAddress);\n emit TroveManagerAddressChanged(_troveManagerAddress);\n emit WrbtcAddressChanged(_wrbtcAddress);\n emit ZUSDTokenAddressChanged(_zusdTokenAddress);\n emit ActivePoolAddressSet(_activePoolAddress);\n }\n\n function setFeeToFeeSharingCollector(uint256 FEE_TO_FEE_SHARING_COLLECTOR_) public onlyOwner {\n FEE_TO_FEE_SHARING_COLLECTOR = FEE_TO_FEE_SHARING_COLLECTOR_;\n }\n\n function distributeFees() public override {\n require(\n msg.sender == address(borrowerOperations) || msg.sender == address(troveManager),\n \"FeeDistributor: invalid caller\"\n );\n uint256 zusdtoDistribute = zusdToken.balanceOf(address(this));\n uint256 rbtcToDistribute = address(this).balance;\n if (zusdtoDistribute != 0) {\n _distributeZUSD(zusdtoDistribute);\n }\n if (rbtcToDistribute != 0) {\n _distributeRBTC(rbtcToDistribute);\n }\n }\n\n function _distributeZUSD(uint256 toDistribute) internal {\n // Send fee to the FeeSharingCollector address\n uint256 feeToFeeSharingCollector = toDistribute.mul(FEE_TO_FEE_SHARING_COLLECTOR).div(\n LiquityMath.DECIMAL_PRECISION\n );\n zusdToken.approve(address(feeSharingCollector), feeToFeeSharingCollector);\n\n feeSharingCollector.transferTokens(address(zusdToken), uint96(feeToFeeSharingCollector));\n // Send fee to ZERO staking contract\n uint256 feeToZeroStaking = toDistribute.sub(feeToFeeSharingCollector);\n if (feeToZeroStaking != 0) {\n require(\n zusdToken.transfer(address(zeroStaking), feeToZeroStaking),\n \"Coudn't execute ZUSD transfer\"\n );\n zeroStaking.increaseF_ZUSD(feeToZeroStaking);\n }\n emit ZUSDDistributed(toDistribute);\n }\n\n function _distributeRBTC(uint256 toDistribute) internal {\n // Send fee to the feeSharingCollector address\n uint256 feeToFeeSharingCollector = toDistribute.mul(FEE_TO_FEE_SHARING_COLLECTOR).div(\n LiquityMath.DECIMAL_PRECISION\n );\n\n feeSharingCollector.transferRBTC{ value: feeToFeeSharingCollector }();\n\n // Send the ETH fee to the ZERO staking contract\n uint256 feeToZeroStaking = toDistribute.sub(feeToFeeSharingCollector);\n if (feeToZeroStaking != 0) {\n (bool success, ) = address(zeroStaking).call{ value: feeToZeroStaking }(\"\");\n require(success, \"FeeDistributor: sending ETH failed\");\n zeroStaking.increaseF_ETH(feeToZeroStaking);\n }\n emit RBTCistributed(toDistribute);\n }\n\n function _requireCallerIsActivePool() internal view {\n require(msg.sender == activePoolAddress, \"FeeDistributor: caller is not ActivePool\");\n }\n\n receive() external payable {\n _requireCallerIsActivePool();\n }\n}\n" + }, + "contracts/FeeDistributorStorage.sol": { + "content": "// SPDX-License-Identifier: MIT\n\npragma solidity 0.6.11;\n\nimport \"./Interfaces/IFeeSharingCollector.sol\";\nimport \"./Interfaces/IZEROStaking.sol\";\nimport \"./Interfaces/IBorrowerOperations.sol\";\nimport \"./Interfaces/ITroveManager.sol\";\nimport \"./Interfaces/IWrbtc.sol\";\nimport \"./Interfaces/IZUSDToken.sol\";\nimport \"./Dependencies/Ownable.sol\";\n\ncontract FeeDistributorStorage is Ownable {\n string public constant NAME = \"FeeDistributor\";\n\n // --- Connected contract declarations ---\n\n IFeeSharingCollector public feeSharingCollector;\n\n IZEROStaking public zeroStaking;\n\n IBorrowerOperations public borrowerOperations;\n\n ITroveManager public troveManager;\n\n IWrbtc public wrbtc;\n\n IZUSDToken public zusdToken;\n\n address public activePoolAddress;\n\n //pct of fees sent to feeSharingCollector address\n uint256 public FEE_TO_FEE_SHARING_COLLECTOR;\n}\n" + }, + "contracts/GasPool.sol": { + "content": "// SPDX-License-Identifier: MIT\n\npragma solidity 0.6.11;\n\n/**\n * The purpose of this contract is to hold ZUSD tokens for gas compensation:\n * https://github.com/DistributedCollective/zero#gas-compensation\n * When a borrower opens a trove, an additional 50 ZUSD debt is issued,\n * and 50 ZUSD is minted and sent to this contract.\n * When a borrower closes their active trove, this gas compensation is refunded:\n * 50 ZUSD is burned from the this contract's balance, and the corresponding\n * 50 ZUSD debt on the trove is cancelled.\n * See this issue for more context: https://github.com/liquity/dev/issues/186\n */\ncontract GasPool {\n // do nothing, as the core contracts have permission to send to and burn from this address\n}\n" + }, + "contracts/HintHelpers.sol": { + "content": "// SPDX-License-Identifier: MIT\n\npragma solidity 0.6.11;\n\nimport \"./Interfaces/ITroveManager.sol\";\nimport \"./Interfaces/ISortedTroves.sol\";\nimport \"./Dependencies/LiquityBase.sol\";\nimport \"./Dependencies/CheckContract.sol\";\nimport \"./HintHelpersStorage.sol\";\n\ncontract HintHelpers is LiquityBase, HintHelpersStorage, CheckContract {\n // --- Events ---\n\n event SortedTrovesAddressChanged(address _sortedTrovesAddress);\n event TroveManagerAddressChanged(address _troveManagerAddress);\n\n // --- Dependency setters ---\n\n function setAddresses(\n address _liquityBaseParamsAddress,\n address _sortedTrovesAddress,\n address _troveManagerAddress\n ) external onlyOwner {\n checkContract(_liquityBaseParamsAddress);\n checkContract(_sortedTrovesAddress);\n checkContract(_troveManagerAddress);\n\n liquityBaseParams = ILiquityBaseParams(_liquityBaseParamsAddress);\n sortedTroves = ISortedTroves(_sortedTrovesAddress);\n troveManager = ITroveManager(_troveManagerAddress);\n\n emit SortedTrovesAddressChanged(_sortedTrovesAddress);\n emit TroveManagerAddressChanged(_troveManagerAddress);\n }\n\n // --- Functions ---\n\n /** getRedemptionHints() - Helper function for finding the right hints to pass to redeemCollateral().\n *\n * It simulates a redemption of `_ZUSDamount` to figure out where the redemption sequence will start and what state the final Trove\n * of the sequence will end up in.\n *\n * Returns three hints:\n * - `firstRedemptionHint` is the address of the first Trove with ICR >= MCR (i.e. the first Trove that will be redeemed).\n * - `partialRedemptionHintNICR` is the final nominal ICR of the last Trove of the sequence after being hit by partial redemption,\n * or zero in case of no partial redemption.\n * - `truncatedZUSDamount` is the maximum amount that can be redeemed out of the the provided `_ZUSDamount`. This can be lower than\n * `_ZUSDamount` when redeeming the full amount would leave the last Trove of the redemption sequence with less net debt than the\n * minimum allowed value (i.e. MIN_NET_DEBT).\n *\n * The number of Troves to consider for redemption can be capped by passing a non-zero value as `_maxIterations`, while passing zero\n * will leave it uncapped.\n */\n\n function getRedemptionHints(\n uint256 _ZUSDamount,\n uint256 _price,\n uint256 _maxIterations\n )\n external\n view\n returns (\n address firstRedemptionHint,\n uint256 partialRedemptionHintNICR,\n uint256 truncatedZUSDamount\n )\n {\n ISortedTroves sortedTrovesCached = sortedTroves;\n\n uint256 remainingZUSD = _ZUSDamount;\n address currentTroveuser = sortedTrovesCached.getLast();\n\n while (\n currentTroveuser != address(0) &&\n troveManager.getCurrentICR(currentTroveuser, _price) < liquityBaseParams.MCR()\n ) {\n currentTroveuser = sortedTrovesCached.getPrev(currentTroveuser);\n }\n\n firstRedemptionHint = currentTroveuser;\n\n if (_maxIterations == 0) {\n _maxIterations = uint256(-1);\n }\n\n while (currentTroveuser != address(0) && remainingZUSD > 0 && _maxIterations-- > 0) {\n uint256 netZUSDDebt = _getNetDebt(troveManager.getTroveDebt(currentTroveuser)).add(\n troveManager.getPendingZUSDDebtReward(currentTroveuser)\n );\n\n if (netZUSDDebt > remainingZUSD) {\n if (netZUSDDebt > MIN_NET_DEBT) {\n uint256 maxRedeemableZUSD = LiquityMath._min(\n remainingZUSD,\n netZUSDDebt.sub(MIN_NET_DEBT)\n );\n\n uint256 ETH = troveManager.getTroveColl(currentTroveuser).add(\n troveManager.getPendingETHReward(currentTroveuser)\n );\n\n uint256 newColl = ETH.sub(\n maxRedeemableZUSD.mul(DECIMAL_PRECISION).div(_price)\n );\n uint256 newDebt = netZUSDDebt.sub(maxRedeemableZUSD);\n\n uint256 compositeDebt = _getCompositeDebt(newDebt);\n partialRedemptionHintNICR = LiquityMath._computeNominalCR(\n newColl,\n compositeDebt\n );\n\n remainingZUSD = remainingZUSD.sub(maxRedeemableZUSD);\n }\n break;\n } else {\n remainingZUSD = remainingZUSD.sub(netZUSDDebt);\n }\n\n currentTroveuser = sortedTrovesCached.getPrev(currentTroveuser);\n }\n\n truncatedZUSDamount = _ZUSDamount.sub(remainingZUSD);\n }\n\n /** getApproxHint() - return address of a Trove that is, on average, (length / numTrials) positions away in the \n sortedTroves list from the correct insert position of the Trove to be inserted. \n \n Note: The output address is worst-case O(n) positions away from the correct insert position, however, the function \n is probabilistic. Input can be tuned to guarantee results to a high degree of confidence, e.g:\n\n Submitting numTrials = k * sqrt(length), with k = 15 makes it very, very likely that the ouput address will \n be <= sqrt(length) positions away from the correct insert position.\n */\n function getApproxHint(\n uint256 _CR,\n uint256 _numTrials,\n uint256 _inputRandomSeed\n )\n external\n view\n returns (\n address hintAddress,\n uint256 diff,\n uint256 latestRandomSeed\n )\n {\n uint256 arrayLength = troveManager.getTroveOwnersCount();\n\n if (arrayLength == 0) {\n return (address(0), 0, _inputRandomSeed);\n }\n\n hintAddress = sortedTroves.getLast();\n diff = LiquityMath._getAbsoluteDifference(_CR, troveManager.getNominalICR(hintAddress));\n latestRandomSeed = _inputRandomSeed;\n\n uint256 i = 1;\n\n while (i < _numTrials) {\n latestRandomSeed = uint256(keccak256(abi.encodePacked(latestRandomSeed)));\n\n uint256 arrayIndex = latestRandomSeed % arrayLength;\n address currentAddress = troveManager.getTroveFromTroveOwnersArray(arrayIndex);\n uint256 currentNICR = troveManager.getNominalICR(currentAddress);\n\n // check if abs(current - CR) > abs(closest - CR), and update closest if current is closer\n uint256 currentDiff = LiquityMath._getAbsoluteDifference(currentNICR, _CR);\n\n if (currentDiff < diff) {\n diff = currentDiff;\n hintAddress = currentAddress;\n }\n i++;\n }\n }\n\n function computeNominalCR(uint256 _coll, uint256 _debt) external pure returns (uint256) {\n return LiquityMath._computeNominalCR(_coll, _debt);\n }\n\n function computeCR(\n uint256 _coll,\n uint256 _debt,\n uint256 _price\n ) external pure returns (uint256) {\n return LiquityMath._computeCR(_coll, _debt, _price);\n }\n}\n" + }, + "contracts/HintHelpersStorage.sol": { + "content": "// SPDX-License-Identifier: MIT\n\npragma solidity 0.6.11;\n\nimport \"./Interfaces/ITroveManager.sol\";\nimport \"./Interfaces/ISortedTroves.sol\";\nimport \"./Dependencies/Ownable.sol\";\n\ncontract HintHelpersStorage is Ownable {\n string public constant NAME = \"HintHelpers\";\n\n ISortedTroves public sortedTroves;\n ITroveManager public troveManager;\n}\n" + }, + "contracts/Interfaces/colfee/IExitFeeController.sol": { + "content": "// SPDX-License-Identifier: MIT\n// ─────────────────────────────────────────────────────────────────────────────\n// Vendored copy of the ColFee exit-fee controller interface, taken from\n// DistributedCollective/colfee @ c85f60aef91bc644517cf1b3ea7c5e8c565f4ca5\n// src/interfaces/IExitFeeController.sol\n// Do not change the declarations here: the binding property is ABI equality with\n// the deployed controller. To pick up an interface change, change it upstream,\n// re-copy, and bump the SHA above. Local formatting follows this repo's\n// formatter, so the file is not byte-identical to the upstream source.\n// ─────────────────────────────────────────────────────────────────────────────\n// Range pragma is intentional: the same declarations are compiled under Solidity\n// 0.5.17, 0.6.11 (this repo), and 0.8.20.\n// aderyn-ignore-next-line(unspecific-solidity-pragma)\npragma solidity >=0.5.17 <0.9.0;\n// `pragma experimental ABIEncoderV2;` is required for the 0.5.17 leg — that\n// compiler needs the directive to emit/decode struct returns (ExitFeeQuote)\n// across the ABI boundary. The modern `pragma abicoder v2;` was only added\n// in 0.7.4 and is incompatible with 0.5.x, so the experimental pragma is the\n// only spelling that works across all three target compilers. On 0.6+/0.8+\n// the experimental pragma is accepted (silently on 0.6.x; with a deprecation\n// notice on 0.8.x that does NOT enable the historical encoder bugs — those\n// bugs were fixed long before 0.6.0). This is a pure interface (no\n// implementation, no storage), so there is no exposure to encoder-bug\n// surface area beyond the ABI itself. Removing it would require a separate\n// file per pragma, reintroducing declaration drift between the consumers.\n// aderyn-ignore-next-line(experimental-encoder)\npragma experimental ABIEncoderV2;\n\n/// @title IExitFeeController\n/// @notice Cross-pragma interface for the Sovryn ExitFee (ColFee) controller.\n/// One declaration shared by every consumer so they all resolve the\n/// same ABI. Products compiled under a pragma this file cannot span\n/// declare their own ABI-equivalent variant instead.\n/// Zero calls only `quoteExitFee`; the rest is declared for completeness.\ninterface IExitFeeController {\n // ─── Types ────────────────────────────────────────────────────────────\n\n /// @notice Reason a `ColFeeSkipped` event was emitted instead of an\n /// `ColFeeApplied`. NONE covers honest paths (positive charge,\n /// dust, or actor-exemption); the rest cover off-state outcomes.\n enum SkipReason {\n NONE, // Controller computed an honest quote (charge / dust / zero-rate).\n INACTIVE, // exitFeeEnabled == false.\n DISABLED, // feeReceiver == address(0), OR surface gate off.\n INVALID_QUOTE, // Defensive: overflow or fee > gross.\n CONTROLLER_REVERT, // Set by the product's local _safeQuote on staticcall failure.\n VAULT_REVERT // Set by the product hook when the fee transfer itself failed.\n }\n\n /// @notice A single rate-policy entry. Lives at each of the three tiers\n /// (actor → sub-product → surface).\n struct RatePolicy {\n bool active;\n uint16 rateBps;\n }\n\n /// @notice Quote returned by `quoteExitFee`. `reason` carries the precise\n /// off-state code; `active` is the resolved policy state (true iff\n /// a RatePolicy.active entry was used and reason ∈ {NONE}).\n struct ExitFeeQuote {\n bool active;\n uint16 rateBps;\n uint256 feeAmount;\n uint256 netAmount;\n address feeReceiver;\n uint8 reason;\n }\n\n // ─── Events ───────────────────────────────────────────────────────────\n\n event ExitFeeEnabledSet(bool enabled);\n event FeeReceiverSet(address indexed feeReceiver);\n event SurfacePolicySet(bytes32 indexed surfaceId, bool active, uint16 rateBps);\n event SubProductPolicySet(\n bytes32 indexed surfaceId,\n address indexed subProduct,\n bool active,\n uint16 rateBps\n );\n event ActorPolicySet(\n bytes32 indexed surfaceId,\n address indexed actor,\n bool active,\n uint16 rateBps\n );\n event SubProductPolicyRemoved(bytes32 indexed surfaceId, address indexed subProduct);\n event ActorPolicyRemoved(bytes32 indexed surfaceId, address indexed actor);\n\n // ─── Quote ────────────────────────────────────────────────────────────\n\n /// @notice Resolve the fee policy for `(surfaceId, subProduct, actor)` and\n /// compute the fee on `grossAmount`. Reads only; never reverts on\n /// policy lookups (returns active=false with a SkipReason instead).\n /// May revert only on internal arithmetic invariants (caught by\n /// the product's local _safeQuote helper as CONTROLLER_REVERT).\n function quoteExitFee(\n bytes32 surfaceId,\n address subProduct,\n address actor,\n uint256 grossAmount\n ) external view returns (ExitFeeQuote memory);\n\n // ─── State views ──────────────────────────────────────────────────────\n\n function exitFeeEnabled() external view returns (bool);\n\n function feeReceiver() external view returns (address);\n\n function surfacePolicy(bytes32 surfaceId) external view returns (RatePolicy memory);\n\n function subProductPolicy(\n bytes32 surfaceId,\n address subProduct\n ) external view returns (RatePolicy memory);\n\n function actorPolicy(\n bytes32 surfaceId,\n address actor\n ) external view returns (RatePolicy memory);\n\n function subProductKeys(bytes32 surfaceId) external view returns (address[] memory);\n\n function actorKeys(bytes32 surfaceId) external view returns (address[] memory);\n\n // ─── Admin ────────────────────────────────────────────────────────────\n\n function setExitFeeEnabled(bool enabled) external;\n\n function setFeeReceiver(address newReceiver) external;\n\n function setSurfacePolicy(bytes32 surfaceId, RatePolicy calldata policy) external;\n\n function setSubProductPolicy(\n bytes32 surfaceId,\n address subProduct,\n RatePolicy calldata policy\n ) external;\n\n function setSubProductPolicies(\n bytes32 surfaceId,\n address[] calldata subProducts,\n RatePolicy[] calldata policies\n ) external;\n\n function setActorPolicy(bytes32 surfaceId, address actor, RatePolicy calldata policy) external;\n\n function setActorPolicies(\n bytes32 surfaceId,\n address[] calldata actors,\n RatePolicy[] calldata policies\n ) external;\n\n function removeSubProductPolicy(bytes32 surfaceId, address subProduct) external;\n\n function removeSubProductPolicies(bytes32 surfaceId, address[] calldata subProducts) external;\n\n function removeActorPolicy(bytes32 surfaceId, address actor) external;\n\n function removeActorPolicies(bytes32 surfaceId, address[] calldata actors) external;\n}\n" + }, + "contracts/Interfaces/IActivePool.sol": { + "content": "// SPDX-License-Identifier: MIT\n\npragma solidity 0.6.11;\n\nimport \"./IPool.sol\";\n\n/**\n * The Active Pool holds the ETH collateral and ZUSD debt (but not ZUSD tokens) for all active troves.\n *\n * When a trove is liquidated, it's ETH and ZUSD debt are transferred from the Active Pool, to either the\n * Stability Pool, the Default Pool, or both, depending on the liquidation conditions.\n *\n */\ninterface IActivePool is IPool {\n // --- Events ---\n event BorrowerOperationsAddressChanged(address _newBorrowerOperationsAddress);\n event TroveManagerAddressChanged(address _newTroveManagerAddress);\n event ActivePoolZUSDDebtUpdated(uint _ZUSDDebt);\n event ActivePoolETHBalanceUpdated(uint _ETH);\n\n // --- Functions ---\n\n /// @notice Send ETH amount to given account. Updates ActivePool balance. Only callable by BorrowerOperations, TroveManager or StabilityPool.\n /// @param _account account to receive the ETH amount\n /// @param _amount ETH amount to send\n function sendETH(address _account, uint _amount) external;\n}\n" + }, + "contracts/Interfaces/IAllowanceTransfer.sol": { + "content": "// SPDX-License-Identifier: MIT\npragma solidity 0.6.11;\npragma experimental ABIEncoderV2;\n\nimport {IEIP712} from \"./IEIP712.sol\";\n\n/// @title AllowanceTransfer\n/// @notice Handles ERC20 token permissions through signature based allowance setting and ERC20 token transfers by checking allowed amounts\n/// @dev Requires user's token approval on the Permit2 contract\ninterface IAllowanceTransfer is IEIP712 {\n /// @notice Emits an event when the owner successfully invalidates an ordered nonce.\n event NonceInvalidation(\n address indexed owner, address indexed token, address indexed spender, uint48 newNonce, uint48 oldNonce\n );\n\n /// @notice Emits an event when the owner successfully sets permissions on a token for the spender.\n event Approval(\n address indexed owner, address indexed token, address indexed spender, uint160 amount, uint48 expiration\n );\n\n /// @notice Emits an event when the owner successfully sets permissions using a permit signature on a token for the spender.\n event Permit(\n address indexed owner,\n address indexed token,\n address indexed spender,\n uint160 amount,\n uint48 expiration,\n uint48 nonce\n );\n\n /// @notice Emits an event when the owner sets the allowance back to 0 with the lockdown function.\n event Lockdown(address indexed owner, address token, address spender);\n\n /// @notice The permit data for a token\n struct PermitDetails {\n // ERC20 token address\n address token;\n // the maximum amount allowed to spend\n uint160 amount;\n // timestamp at which a spender's token allowances become invalid\n uint48 expiration;\n // an incrementing value indexed per owner,token,and spender for each signature\n uint48 nonce;\n }\n\n /// @notice The permit message signed for a single token allowance\n struct PermitSingle {\n // the permit data for a single token alownce\n PermitDetails details;\n // address permissioned on the allowed tokens\n address spender;\n // deadline on the permit signature\n uint256 sigDeadline;\n }\n\n /// @notice The permit message signed for multiple token allowances\n struct PermitBatch {\n // the permit data for multiple token allowances\n PermitDetails[] details;\n // address permissioned on the allowed tokens\n address spender;\n // deadline on the permit signature\n uint256 sigDeadline;\n }\n\n /// @notice The saved permissions\n /// @dev This info is saved per owner, per token, per spender and all signed over in the permit message\n /// @dev Setting amount to type(uint160).max sets an unlimited approval\n struct PackedAllowance {\n // amount allowed\n uint160 amount;\n // permission expiry\n uint48 expiration;\n // an incrementing value indexed per owner,token,and spender for each signature\n uint48 nonce;\n }\n\n /// @notice A token spender pair.\n struct TokenSpenderPair {\n // the token the spender is approved\n address token;\n // the spender address\n address spender;\n }\n\n /// @notice Details for a token transfer.\n struct AllowanceTransferDetails {\n // the owner of the token\n address from;\n // the recipient of the token\n address to;\n // the amount of the token\n uint160 amount;\n // the token to be transferred\n address token;\n }\n\n /// @notice A mapping from owner address to token address to spender address to PackedAllowance struct, which contains details and conditions of the approval.\n /// @notice The mapping is indexed in the above order see: allowance[ownerAddress][tokenAddress][spenderAddress]\n /// @dev The packed slot holds the allowed amount, expiration at which the allowed amount is no longer valid, and current nonce thats updated on any signature based approvals.\n function allowance(address user, address token, address spender)\n external\n view\n returns (uint160 amount, uint48 expiration, uint48 nonce);\n\n /// @notice Approves the spender to use up to amount of the specified token up until the expiration\n /// @param token The token to approve\n /// @param spender The spender address to approve\n /// @param amount The approved amount of the token\n /// @param expiration The timestamp at which the approval is no longer valid\n /// @dev The packed allowance also holds a nonce, which will stay unchanged in approve\n /// @dev Setting amount to type(uint160).max sets an unlimited approval\n function approve(address token, address spender, uint160 amount, uint48 expiration) external;\n\n /// @notice Permit a spender to a given amount of the owners token via the owner's EIP-712 signature\n /// @dev May fail if the owner's nonce was invalidated in-flight by invalidateNonce\n /// @param owner The owner of the tokens being approved\n /// @param permitSingle Data signed over by the owner specifying the terms of approval\n /// @param signature The owner's signature over the permit data\n function permit(address owner, PermitSingle memory permitSingle, bytes calldata signature) external;\n\n /// @notice Permit a spender to the signed amounts of the owners tokens via the owner's EIP-712 signature\n /// @dev May fail if the owner's nonce was invalidated in-flight by invalidateNonce\n /// @param owner The owner of the tokens being approved\n /// @param permitBatch Data signed over by the owner specifying the terms of approval\n /// @param signature The owner's signature over the permit data\n function permit(address owner, PermitBatch memory permitBatch, bytes calldata signature) external;\n\n /// @notice Transfer approved tokens from one address to another\n /// @param from The address to transfer from\n /// @param to The address of the recipient\n /// @param amount The amount of the token to transfer\n /// @param token The token address to transfer\n /// @dev Requires the from address to have approved at least the desired amount\n /// of tokens to msg.sender.\n function transferFrom(address from, address to, uint160 amount, address token) external;\n\n /// @notice Transfer approved tokens in a batch\n /// @param transferDetails Array of owners, recipients, amounts, and tokens for the transfers\n /// @dev Requires the from addresses to have approved at least the desired amount\n /// of tokens to msg.sender.\n function transferFrom(AllowanceTransferDetails[] calldata transferDetails) external;\n\n /// @notice Enables performing a \"lockdown\" of the sender's Permit2 identity\n /// by batch revoking approvals\n /// @param approvals Array of approvals to revoke.\n function lockdown(TokenSpenderPair[] calldata approvals) external;\n\n /// @notice Invalidate nonces for a given (token, spender) pair\n /// @param token The token to invalidate nonces for\n /// @param spender The spender to invalidate nonces for\n /// @param newNonce The new nonce to set. Invalidates all nonces less than it.\n /// @dev Can't invalidate more than 2**16 nonces per transaction.\n function invalidateNonces(address token, address spender, uint48 newNonce) external;\n}\n" + }, + "contracts/Interfaces/IBalanceRedirectPresale.sol": { + "content": "// SPDX-License-Identifier: MIT\n\npragma solidity 0.6.11;\n\ninterface IBalanceRedirectPresale {\n\n function isClosed() external view returns (bool);\n}" + }, + "contracts/Interfaces/IBorrowerOperations.sol": { + "content": "// SPDX-License-Identifier: MIT\n\npragma solidity 0.6.11;\npragma experimental ABIEncoderV2;\n\nimport \"../Dependencies/Mynt/IMassetManager.sol\";\nimport { IPermit2, ISignatureTransfer } from \"./IPermit2.sol\";\n\n/// Common interface for the Trove Manager.\ninterface IBorrowerOperations {\n // --- Events ---\n\n event FeeDistributorAddressChanged(address _feeDistributorAddress);\n event TroveManagerAddressChanged(address _newTroveManagerAddress);\n event ActivePoolAddressChanged(address _activePoolAddress);\n event DefaultPoolAddressChanged(address _defaultPoolAddress);\n event StabilityPoolAddressChanged(address _stabilityPoolAddress);\n event GasPoolAddressChanged(address _gasPoolAddress);\n event CollSurplusPoolAddressChanged(address _collSurplusPoolAddress);\n event PriceFeedAddressChanged(address _newPriceFeedAddress);\n event SortedTrovesAddressChanged(address _sortedTrovesAddress);\n event ZUSDTokenAddressChanged(address _zusdTokenAddress);\n event ZEROStakingAddressChanged(address _zeroStakingAddress);\n\n event TroveCreated(address indexed _borrower, uint256 arrayIndex);\n event TroveUpdated(\n address indexed _borrower,\n uint256 _debt,\n uint256 _coll,\n uint256 stake,\n uint8 operation\n );\n event ZUSDBorrowingFeePaid(address indexed _borrower, uint256 _ZUSDFee);\n\n // --- Functions ---\n\n /**\n * @notice Called only once on init, to set addresses of other Zero contracts. Callable only by owner\n * @dev initializer function, checks addresses are contracts\n * @param _feeDistributorAddress feeDistributor contract address\n * @param _liquityBaseParamsAddress LiquidityBaseParams contract address\n * @param _troveManagerAddress TroveManager contract address\n * @param _activePoolAddress ActivePool contract address\n * @param _defaultPoolAddress DefaultPool contract address\n * @param _stabilityPoolAddress StabilityPool contract address\n * @param _gasPoolAddress GasPool contract address\n * @param _collSurplusPoolAddress CollSurplusPool contract address\n * @param _priceFeedAddress PrideFeed contract address\n * @param _sortedTrovesAddress SortedTroves contract address\n * @param _zusdTokenAddress ZUSDToken contract address\n * @param _zeroStakingAddress ZEROStaking contract address\n */\n function setAddresses(\n address _feeDistributorAddress,\n address _liquityBaseParamsAddress,\n address _troveManagerAddress,\n address _activePoolAddress,\n address _defaultPoolAddress,\n address _stabilityPoolAddress,\n address _gasPoolAddress,\n address _collSurplusPoolAddress,\n address _priceFeedAddress,\n address _sortedTrovesAddress,\n address _zusdTokenAddress,\n address _zeroStakingAddress\n ) external;\n\n /**\n * @notice payable function that creates a Trove for the caller with the requested debt, and the Ether received as collateral.\n * Successful execution is conditional mainly on the resulting collateralization ratio which must exceed the minimum (110% in Normal Mode, 150% in Recovery Mode).\n * In addition to the requested debt, extra debt is issued to pay the issuance fee, and cover the gas compensation.\n * The borrower has to provide a `_maxFeePercentage` that he/she is willing to accept in case of a fee slippage, i.e. when a redemption transaction is processed first, driving up the issuance fee.\n * @param _maxFee max fee percentage to acept in case of a fee slippage\n * @param _ZUSDAmount ZUSD requested debt\n * @param _upperHint upper trove id hint\n * @param _lowerHint lower trove id hint\n */\n function openTrove(\n uint256 _maxFee,\n uint256 _ZUSDAmount,\n address _upperHint,\n address _lowerHint\n ) external payable;\n\n /**\n * @notice payable function that creates a Trove for the caller with the requested debt, and the Ether received as collateral.\n * Successful execution is conditional mainly on the resulting collateralization ratio which must exceed the minimum (110% in Normal Mode, 150% in Recovery Mode).\n * In addition to the requested debt, extra debt is issued to pay the issuance fee, and cover the gas compensation.\n * The borrower has to provide a `_maxFeePercentage` that he/she is willing to accept in case of a fee slippage, i.e. when a redemption transaction is processed first, driving up the issuance fee.\n * This method is identical to `openTrove()`, but operates on NUE tokens instead of ZUSD.\n * @param _maxFee max fee percentage to acept in case of a fee slippage\n * @param _ZUSDAmount ZUSD requested debt\n * @param _upperHint upper trove id hint\n * @param _lowerHint lower trove id hint\n */\n function openNueTrove(\n uint256 _maxFee,\n uint256 _ZUSDAmount,\n address _upperHint,\n address _lowerHint\n ) external payable;\n\n /// @notice payable function that adds the received Ether to the caller's active Trove.\n /// @param _upperHint upper trove id hint\n /// @param _lowerHint lower trove id hint\n function addColl(address _upperHint, address _lowerHint) external payable;\n\n /// @notice send ETH as collateral to a trove. Called by only the Stability Pool.\n /// @param _user user trove address\n /// @param _upperHint upper trove id hint\n /// @param _lowerHint lower trove id hint\n function moveETHGainToTrove(\n address _user,\n address _upperHint,\n address _lowerHint\n ) external payable;\n\n /**\n * @notice withdraws `_amount` of collateral from the caller’s Trove.\n * Executes only if the user has an active Trove, the withdrawal would not pull the user’s Trove below the minimum collateralization ratio,\n * and the resulting total collateralization ratio of the system is above 150%.\n * @param _amount collateral amount to withdraw\n * @param _upperHint upper trove id hint\n * @param _lowerHint lower trove id hint\n */\n function withdrawColl(uint256 _amount, address _upperHint, address _lowerHint) external;\n\n /**\n * @notice issues `_amount` of ZUSD from the caller’s Trove to the caller.\n * Executes only if the Trove's collateralization ratio would remain above the minimum, and the resulting total collateralization ratio is above 150%.\n * The borrower has to provide a `_maxFeePercentage` that he/she is willing to accept in case of a fee slippage, i.e. when a redemption transaction is processed first, driving up the issuance fee.\n * @param _maxFee max fee percentage to acept in case of a fee slippage\n * @param _amount ZUSD amount to withdraw\n * @param _upperHint upper trove id hint\n * @param _lowerHint lower trove id hint\n */\n function withdrawZUSD(\n uint256 _maxFee,\n uint256 _amount,\n address _upperHint,\n address _lowerHint\n ) external;\n\n /// Borrow (withdraw) ZUSD tokens from a trove: mint new ZUSD tokens to the owner and convert it to DLLR in one transaction\n function withdrawZusdAndConvertToDLLR(\n uint256 _maxFeePercentage,\n uint256 _ZUSDAmount,\n address _upperHint,\n address _lowerHint\n ) external returns (uint256);\n\n /// @notice repay `_amount` of ZUSD to the caller’s Trove, subject to leaving 50 debt in the Trove (which corresponds to the 50 ZUSD gas compensation).\n /// @param _amount ZUSD amount to repay\n /// @param _upperHint upper trove id hint\n /// @param _lowerHint lower trove id hint\n function repayZUSD(uint256 _amount, address _upperHint, address _lowerHint) external;\n\n /// Repay ZUSD tokens to a Trove: Burn the repaid ZUSD tokens, and reduce the trove's debt accordingly\n function repayZusdFromDLLR(\n uint256 _dllrAmount,\n address _upperHint,\n address _lowerHint,\n IMassetManager.PermitParams calldata _permitParams\n ) external;\n\n /// Repay ZUSD tokens to a Trove: Burn the repaid ZUSD tokens, and reduce the trove's debt accordingly\n function repayZusdFromDLLRWithPermit2(\n uint256 _dllrAmount,\n address _upperHint,\n address _lowerHint,\n ISignatureTransfer.PermitTransferFrom memory _permit,\n bytes calldata _signature\n ) external;\n\n /**\n * @notice allows a borrower to repay all debt, withdraw all their collateral, and close their Trove.\n * Requires the borrower have a ZUSD balance sufficient to repay their trove's debt, excluding gas compensation - i.e. `(debt - 50)` ZUSD.\n */\n function closeTrove() external;\n\n /**\n * @notice allows a borrower to repay all debt, withdraw all their collateral, and close their Trove.\n * Requires the borrower have a NUE balance sufficient to repay their trove's debt, excluding gas compensation - i.e. `(debt - 50)` NUE.\n * This method is identical to `closeTrove()`, but operates on NUE tokens instead of ZUSD.\n */\n function closeNueTrove(IMassetManager.PermitParams calldata _permitParams) external;\n\n /**\n * @notice allows a borrower to repay all debt, withdraw all their collateral, and close their Trove.\n * Requires the borrower have a NUE balance sufficient to repay their trove's debt, excluding gas compensation - i.e. `(debt - 50)` NUE.\n * This method is identical to `closeTrove()`, but operates on NUE tokens instead of ZUSD.\n */\n function closeNueTroveWithPermit2(ISignatureTransfer.PermitTransferFrom memory _permit, bytes calldata _signature) external;\n\n /**\n * @notice enables a borrower to simultaneously change both their collateral and debt, subject to all the restrictions that apply to individual increases/decreases of each quantity with the following particularity:\n * if the adjustment reduces the collateralization ratio of the Trove, the function only executes if the resulting total collateralization ratio is above 150%.\n * The borrower has to provide a `_maxFeePercentage` that he/she is willing to accept in case of a fee slippage, i.e. when a redemption transaction is processed first, driving up the issuance fee.\n * The parameter is ignored if the debt is not increased with the transaction.\n * @param _maxFee max fee percentage to acept in case of a fee slippage\n * @param _collWithdrawal collateral amount to withdraw\n * @param _debtChange ZUSD amount to change\n * @param isDebtIncrease indicates if increases debt\n * @param _upperHint upper trove id hint\n * @param _lowerHint lower trove id hint\n */\n function adjustTrove(\n uint256 _maxFee,\n uint256 _collWithdrawal,\n uint256 _debtChange,\n bool isDebtIncrease,\n address _upperHint,\n address _lowerHint\n ) external payable;\n\n /**\n * @notice enables a borrower to simultaneously change both their collateral and debt, subject to all the restrictions that apply to individual increases/decreases of each quantity with the following particularity:\n * if the adjustment reduces the collateralization ratio of the Trove, the function only executes if the resulting total collateralization ratio is above 150%.\n * The borrower has to provide a `_maxFeePercentage` that he/she is willing to accept in case of a fee slippage, i.e. when a redemption transaction is processed first, driving up the issuance fee.\n * The parameter is ignored if the debt is not increased with the transaction.\n * This method is identical to `adjustTrove()`, but operates on NUE tokens instead of ZUSD.\n * @param _maxFee max fee percentage to acept in case of a fee slippage\n * @param _collWithdrawal collateral amount to withdraw\n * @param _debtChange ZUSD amount to change\n * @param isDebtIncrease indicates if increases debt\n * @param _upperHint upper trove id hint\n * @param _lowerHint lower trove id hint\n */\n function adjustNueTrove(\n uint256 _maxFee,\n uint256 _collWithdrawal,\n uint256 _debtChange,\n bool isDebtIncrease,\n address _upperHint,\n address _lowerHint,\n IMassetManager.PermitParams calldata _permitParams\n ) external payable;\n\n /**\n * @notice enables a borrower to simultaneously change both their collateral and debt, subject to all the restrictions that apply to individual increases/decreases of each quantity with the following particularity:\n * if the adjustment reduces the collateralization ratio of the Trove, the function only executes if the resulting total collateralization ratio is above 150%.\n * The borrower has to provide a `_maxFeePercentage` that he/she is willing to accept in case of a fee slippage, i.e. when a redemption transaction is processed first, driving up the issuance fee.\n * The parameter is ignored if the debt is not increased with the transaction.\n * This method is identical to `adjustTrove()`, but operates on NUE tokens instead of ZUSD.\n * @param _maxFee max fee percentage to acept in case of a fee slippage\n * @param _collWithdrawal collateral amount to withdraw\n * @param _debtChange ZUSD amount to change\n * @param isDebtIncrease indicates if increases debt\n * @param _upperHint upper trove id hint\n * @param _lowerHint lower trove id hint\n */\n function adjustNueTroveWithPermit2(\n uint256 _maxFee,\n uint256 _collWithdrawal,\n uint256 _debtChange,\n bool isDebtIncrease,\n address _upperHint,\n address _lowerHint,\n ISignatureTransfer.PermitTransferFrom memory _permit,\n bytes calldata _signature\n ) external payable;\n\n /**\n * @notice when a borrower’s Trove has been fully redeemed from and closed, or liquidated in Recovery Mode with a collateralization ratio above 110%,\n * this function allows the borrower to claim their ETH collateral surplus that remains in the system (collateral - debt upon redemption; collateral - 110% of the debt upon liquidation).\n */\n function claimCollateral() external;\n\n function getCompositeDebt(uint256 _debt) external view returns (uint256);\n\n function BORROWING_FEE_FLOOR() external view returns (uint256);\n\n function getMassetManager() external view returns (IMassetManager);\n}\n" + }, + "contracts/Interfaces/ICollSurplusPool.sol": { + "content": "// SPDX-License-Identifier: MIT\n\npragma solidity 0.6.11;\n\ninterface ICollSurplusPool {\n // --- Events ---\n\n event BorrowerOperationsAddressChanged(address _newBorrowerOperationsAddress);\n event TroveManagerAddressChanged(address _newTroveManagerAddress);\n event ActivePoolAddressChanged(address _newActivePoolAddress);\n\n event CollBalanceUpdated(address indexed _account, uint256 _newBalance);\n event EtherSent(address _to, uint256 _amount);\n\n // --- Contract setters ---\n\n /**\n * @notice Called only once on init, to set addresses of other Zero contracts. Callable only by owner\n * @dev initializer function, checks addresses are contracts\n * @param _borrowerOperationsAddress BorrowerOperations contract address\n * @param _troveManagerAddress TroveManager contract address\n * @param _activePoolAddress ActivePool contract address\n */\n function setAddresses(\n address _borrowerOperationsAddress,\n address _troveManagerAddress,\n address _activePoolAddress\n ) external;\n\n /// @notice Not necessarily equal to the raw ether balance - ether can be forcibly sent to contracts.\n /// @return ETH state variable\n function getETH() external view returns (uint256);\n\n /// @param _account account to retrieve collateral\n /// @return collateral\n function getCollateral(address _account) external view returns (uint256);\n\n /// @notice adds amount to current account balance. Only callable by TroveManager.\n /// @param _account account to add amount\n /// @param _amount amount to add\n function accountSurplus(address _account, uint256 _amount) external;\n\n /// @notice claims collateral for given account. Only callable by BorrowerOperations.\n /// @param _account account to send claimable collateral\n function claimColl(address _account) external;\n\n /// @notice Two-leg claim: `_feeAmount` to `_feeReceiver`, remainder to `_account`.\n /// Only callable by BorrowerOperations (the ColFee surplus-claim hook).\n /// The fee leg is fail-open: if the fee transfer fails, `_account`\n /// receives the full claimable balance.\n /// @param _account account whose claimable collateral is paid out\n /// @param _feeReceiver ColFee fee destination for the fee leg\n /// @param _feeAmount fee in wei; must not exceed the account's claimable balance\n /// @return feePaid true iff the fee transfer succeeded (caller emits the matching event)\n function claimCollWithFee(\n address _account,\n address _feeReceiver,\n uint256 _feeAmount\n ) external returns (bool feePaid);\n}\n" + }, + "contracts/Interfaces/ICommunityIssuance.sol": { + "content": "// SPDX-License-Identifier: MIT\n\npragma solidity 0.6.11;\n\ninterface ICommunityIssuance { \n \n // --- Events ---\n \n event SOVTokenAddressSet(address _zeroTokenAddress);\n event ZUSDTokenAddressSet(address _zusdTokenAddress);\n event StabilityPoolAddressSet(address _stabilityPoolAddress);\n event PriceFeedAddressSet(address _priceFeed);\n event RewardManagerAddressSet(address _rewardManagerAddress);\n event APRSet(uint256 _APR);\n\n // --- Functions ---\n\n /**\n * @notice Called only once on init, to set addresses of other contracts. Callable only by owner.\n * @dev initializer function, checks addresses are contracts\n * @param _sovTokenAddress sov token address.\n * @param _zusdTokenAddress zero token address.\n * @param _stabilityPoolAddress stability pool address.\n * @param _priceFeed price feed address.\n * @param _APR apr in basis points.\n */\n function initialize(\n address _sovTokenAddress,\n address _zusdTokenAddress,\n address _stabilityPoolAddress,\n address _priceFeed,\n uint256 _APR\n ) external;\n\n /**\n * @dev setter function to set the APR value in basis points.\n * can only be called by reward manager.\n * @param _APR apr value in basis points.\n */\n function setAPR(uint256 _APR) external;\n\n /**\n * @dev setter function to set the price feed.\n * can only be called by the owner.\n * @param _priceFeedAddress price feed address.\n */\n function setPriceFeed(address _priceFeedAddress) external;\n\n /**\n * @dev setter function to set reward manager.\n * can only be called by the owner.\n * @param _rewardManagerAddress reward manager address.\n */\n function setRewardManager(address _rewardManagerAddress) external;\n\n /// @notice issues SOV tokens based on total zusd is deposited.\n /// @return SOV tokens issuance \n function issueSOV(uint256 _totalZUSDDeposits) external returns (uint256);\n\n /// @notice sends ZERO tokens to given account\n /// @param _account account to receive the tokens\n /// @param _ZEROamount amount of tokens to transfer\n function sendSOV(address _account, uint _ZEROamount) external;\n}\n" + }, + "contracts/Interfaces/IDefaultPool.sol": { + "content": "// SPDX-License-Identifier: MIT\n\npragma solidity 0.6.11;\n\nimport \"./IPool.sol\";\n\ninterface IDefaultPool is IPool {\n // --- Events ---\n event TroveManagerAddressChanged(address _newTroveManagerAddress);\n event DefaultPoolZUSDDebtUpdated(uint256 _ZUSDDebt);\n event DefaultPoolETHBalanceUpdated(uint256 _ETH);\n\n // --- Functions ---\n\n /// @notice Send ETH to Active Pool\n /// @param _amount ETH to send\n function sendETHToActivePool(uint256 _amount) external;\n}\n" + }, + "contracts/Interfaces/IEIP712.sol": { + "content": "// SPDX-License-Identifier: MIT\npragma solidity 0.6.11;\n\ninterface IEIP712 {\n function DOMAIN_SEPARATOR() external view returns (bytes32);\n}\n" + }, + "contracts/Interfaces/IFeeDistributor.sol": { + "content": "// SPDX-License-Identifier: MIT\n\npragma solidity 0.6.11;\n\n/// Common interface for Fee Distributor.\ninterface IFeeDistributor {\n // --- Events ---\n\n event FeeSharingCollectorAddressChanged(address _feeSharingCollectorAddress);\n event ZeroStakingAddressChanged(address _zeroStakingAddress);\n event BorrowerOperationsAddressChanged(address _borrowerOperationsAddress);\n event TroveManagerAddressChanged(address _troveManagerAddress);\n event WrbtcAddressChanged(address _wrbtcAddress);\n event ZUSDTokenAddressChanged(address _zusdTokenAddress);\n event ActivePoolAddressSet(address _activePoolAddress);\n\n event ZUSDDistributed(uint256 _zusdDistributedAmount);\n event RBTCistributed(uint256 _rbtcDistributedAmount);\n\n // --- Functions ---\n\n /**\n * @notice Called only once on init, to set addresses of other Zero contracts. Callable only by owner\n * @dev initializer function, checks addresses are contracts\n * @param _feeSharingCollectorAddress FeeSharingCollector address\n * @param _zeroStakingAddress ZEROStaking contract address\n * @param _borrowerOperationsAddress borrowerOperations contract address\n * @param _troveManagerAddress TroveManager contract address\n * @param _wrbtcAddress wrbtc ERC20 contract address\n * @param _zusdTokenAddress ZUSDToken contract address\n * @param _activePoolAddress ActivePool contract address\n */\n function setAddresses(\n address _feeSharingCollectorAddress,\n address _zeroStakingAddress,\n address _borrowerOperationsAddress,\n address _troveManagerAddress,\n address _wrbtcAddress,\n address _zusdTokenAddress,\n address _activePoolAddress\n ) external;\n\n function distributeFees() external;\n}\n" + }, + "contracts/Interfaces/IFeeSharingCollector.sol": { + "content": "// SPDX-License-Identifier: MIT\npragma solidity 0.6.11;\n\n/**\n * @title Interface for Sovryn protocol fee sharing collector.\n * @dev Interfaces are used to cast a contract address into a callable instance.\n * */\ninterface IFeeSharingCollector {\n\tfunction withdrawFees(address _token) external;\n\n\tfunction transferTokens(address _token, uint96 _amount) external;\n\n\tfunction withdraw(\n\t\taddress _loanPoolToken,\n\t\tuint32 _maxCheckpoints,\n\t\taddress _receiver\n\t) external;\n\n\tfunction transferRBTC() external payable;\n}\n" + }, + "contracts/Interfaces/ILiquityBase.sol": { + "content": "// SPDX-License-Identifier: MIT\n\npragma solidity 0.6.11;\n\nimport \"./IPriceFeed.sol\";\nimport \"./ILiquityBaseParams.sol\";\n\ninterface ILiquityBase {\n /// @return PriceFeed contract\n function priceFeed() external view returns (IPriceFeed);\n\n /// @return LiquityBaseParams contract\n function liquityBaseParams() external view returns (ILiquityBaseParams);\n}\n" + }, + "contracts/Interfaces/ILiquityBaseParams.sol": { + "content": "// SPDX-License-Identifier: MIT\n\npragma solidity 0.6.11;\n\ninterface ILiquityBaseParams {\n\n /// Minimum collateral ratio for individual troves\n function MCR() external view returns (uint);\n\n /// Critical system collateral ratio. If the system's total collateral ratio (TCR) falls below the CCR, Recovery Mode is triggered.\n function CCR() external view returns (uint);\n\n function PERCENT_DIVISOR() external view returns (uint);\n\n function BORROWING_FEE_FLOOR() external view returns (uint);\n\n /**\n * Half-life of 12h. 12h = 720 min\n * (1/2) = d^720 => d = (1/2)^(1/720)\n */\n function REDEMPTION_FEE_FLOOR() external view returns (uint);\n\n function MAX_BORROWING_FEE() external view returns (uint);\n\n}" + }, + "contracts/Interfaces/IPermit2.sol": { + "content": "// SPDX-License-Identifier: MIT\npragma solidity 0.6.11;\npragma experimental ABIEncoderV2;\n\nimport {ISignatureTransfer} from \"./ISignatureTransfer.sol\";\nimport {IAllowanceTransfer} from \"./IAllowanceTransfer.sol\";\n\n/// @notice Permit2 handles signature-based transfers in SignatureTransfer and allowance-based transfers in AllowanceTransfer.\n/// @dev Users must approve Permit2 before calling any of the transfer functions.\ninterface IPermit2 is ISignatureTransfer, IAllowanceTransfer {\n// IPermit2 unifies the two interfaces so users have maximal flexibility with their approval.\n}\n" + }, + "contracts/Interfaces/IPool.sol": { + "content": "// SPDX-License-Identifier: MIT\n\npragma solidity 0.6.11;\n\n// Common interface for the Pools.\ninterface IPool {\n // --- Events ---\n\n event ETHBalanceUpdated(uint _newBalance);\n event ZUSDBalanceUpdated(uint _newBalance);\n event ActivePoolAddressChanged(address _newActivePoolAddress);\n event DefaultPoolAddressChanged(address _newDefaultPoolAddress);\n event StabilityPoolAddressChanged(address _newStabilityPoolAddress);\n event EtherSent(address _to, uint _amount);\n\n // --- Functions ---\n\n /// @notice Not necessarily equal to the raw ether balance - ether can be forcibly sent to contracts.\n /// @return ETH pool balance\n function getETH() external view returns (uint);\n\n /// @return ZUSD debt pool balance\n function getZUSDDebt() external view returns (uint);\n\n /// @notice Increases ZUSD debt of the pool.\n /// @param _amount ZUSD amount to add to the pool debt\n function increaseZUSDDebt(uint _amount) external;\n\n /// @notice Decreases ZUSD debt of the pool.\n /// @param _amount ZUSD amount to subtract to the pool debt\n function decreaseZUSDDebt(uint _amount) external;\n}\n" + }, + "contracts/Interfaces/IPriceFeed.sol": { + "content": "// SPDX-License-Identifier: MIT\n\npragma solidity 0.6.11;\n\ninterface IPriceFeed {\n // --- Events ---\n event LastGoodPriceUpdated(uint256 _lastGoodPrice);\n\n // --- Function ---\n\n /// @notice Returns the latest price obtained from the Oracle. Called by Zero functions that require a current price.\n /// It uses the main price feed and fallback to the backup one in case of an error. If both fail return the last\n /// good price seen.\n /// @dev It's also callable by anyone externally\n /// @return The price\n function fetchPrice() external returns (uint256);\n}\n" + }, + "contracts/Interfaces/IPriceFeedSovryn.sol": { + "content": "// SPDX-License-Identifier: MIT\n\npragma solidity 0.6.11;\n\n/**\n * @title Interface of The Price Feeds Sovryn contract.\n *\n * @notice This contract is the interface of priceFeed that is being used as PriceFeed registry in sovryn protocol.\n *\n * This contract queries the price feeds contracts where\n * oracles updates token prices computing relative token prices.\n * And besides it includes some calculations about loans such as\n * drawdown, margin and collateral.\n * */\ninterface IPriceFeedSovryn {\n function queryRate(address sourceToken, address destToken)\n external\n view\n returns (uint256 rate, uint256 precision);\n\n function queryPrecision(address sourceToken, address destToken)\n external\n view\n returns (uint256 precision);\n\n function queryReturn(\n address sourceToken,\n address destToken,\n uint256 sourceAmount\n ) external view returns (uint256 destAmount);\n\n function checkPriceDisagreement(\n address sourceToken,\n address destToken,\n uint256 sourceAmount,\n uint256 destAmount,\n uint256 maxSlippage\n ) external view returns (uint256 sourceToDestSwapRate);\n\n function amountInEth(address Token, uint256 amount) external view returns (uint256 ethAmount);\n\n function getMaxDrawdown(\n address loanToken,\n address collateralToken,\n uint256 loanAmount,\n uint256 collateralAmount,\n uint256 maintenanceMargin\n ) external view returns (uint256);\n\n function getCurrentMarginAndCollateralSize(\n address loanToken,\n address collateralToken,\n uint256 loanAmount,\n uint256 collateralAmount\n ) external view returns (uint256 currentMargin, uint256 collateralInEthAmount);\n\n function getCurrentMargin(\n address loanToken,\n address collateralToken,\n uint256 loanAmount,\n uint256 collateralAmount\n ) external view returns (uint256 currentMargin, uint256 collateralToLoanRate);\n\n function shouldLiquidate(\n address loanToken,\n address collateralToken,\n uint256 loanAmount,\n uint256 collateralAmount,\n uint256 maintenanceMargin\n ) external view returns (bool);\n\n function getFastGasPrice(address payToken) external view returns (uint256);\n}\n" + }, + "contracts/Interfaces/ISignatureTransfer.sol": { + "content": "// SPDX-License-Identifier: MIT\npragma solidity 0.6.11;\npragma experimental ABIEncoderV2;\n\nimport {IEIP712} from \"./IEIP712.sol\";\n\n/// @title SignatureTransfer\n/// @notice Handles ERC20 token transfers through signature based actions\n/// @dev Requires user's token approval on the Permit2 contract\ninterface ISignatureTransfer is IEIP712 {\n /// @notice Emits an event when the owner successfully invalidates an unordered nonce.\n event UnorderedNonceInvalidation(address indexed owner, uint256 word, uint256 mask);\n\n /// @notice The token and amount details for a transfer signed in the permit transfer signature\n struct TokenPermissions {\n // ERC20 token address\n address token;\n // the maximum amount that can be spent\n uint256 amount;\n }\n\n /// @notice The signed permit message for a single token transfer\n struct PermitTransferFrom {\n TokenPermissions permitted;\n // a unique value for every token owner's signature to prevent signature replays\n uint256 nonce;\n // deadline on the permit signature\n uint256 deadline;\n }\n\n /// @notice Specifies the recipient address and amount for batched transfers.\n /// @dev Recipients and amounts correspond to the index of the signed token permissions array.\n /// @dev Reverts if the requested amount is greater than the permitted signed amount.\n struct SignatureTransferDetails {\n // recipient address\n address to;\n // spender requested amount\n uint256 requestedAmount;\n }\n\n /// @notice Used to reconstruct the signed permit message for multiple token transfers\n /// @dev Do not need to pass in spender address as it is required that it is msg.sender\n /// @dev Note that a user still signs over a spender address\n struct PermitBatchTransferFrom {\n // the tokens and corresponding amounts permitted for a transfer\n TokenPermissions[] permitted;\n // a unique value for every token owner's signature to prevent signature replays\n uint256 nonce;\n // deadline on the permit signature\n uint256 deadline;\n }\n\n /// @notice A map from token owner address and a caller specified word index to a bitmap. Used to set bits in the bitmap to prevent against signature replay protection\n /// @dev Uses unordered nonces so that permit messages do not need to be spent in a certain order\n /// @dev The mapping is indexed first by the token owner, then by an index specified in the nonce\n /// @dev It returns a uint256 bitmap\n /// @dev The index, or wordPosition is capped at type(uint248).max\n function nonceBitmap(address, uint256) external view returns (uint256);\n\n /// @notice Transfers a token using a signed permit message\n /// @dev Reverts if the requested amount is greater than the permitted signed amount\n /// @param permit The permit data signed over by the owner\n /// @param owner The owner of the tokens to transfer\n /// @param transferDetails The spender's requested transfer details for the permitted token\n /// @param signature The signature to verify\n function permitTransferFrom(\n PermitTransferFrom memory permit,\n SignatureTransferDetails calldata transferDetails,\n address owner,\n bytes calldata signature\n ) external;\n\n /// @notice Transfers multiple tokens using a signed permit message\n /// @param permit The permit data signed over by the owner\n /// @param owner The owner of the tokens to transfer\n /// @param transferDetails Specifies the recipient and requested amount for the token transfer\n /// @param signature The signature to verify\n function permitTransferFrom(\n PermitBatchTransferFrom memory permit,\n SignatureTransferDetails[] calldata transferDetails,\n address owner,\n bytes calldata signature\n ) external;\n\n /// @notice Invalidates the bits specified in mask for the bitmap at the word position\n /// @dev The wordPos is maxed at type(uint248).max\n /// @param wordPos A number to index the nonceBitmap at\n /// @param mask A bitmap masked against msg.sender's current bitmap at the word position\n function invalidateUnorderedNonces(uint256 wordPos, uint256 mask) external;\n}\n" + }, + "contracts/Interfaces/ISortedTroves.sol": { + "content": "// SPDX-License-Identifier: MIT\n\npragma solidity 0.6.11;\n\n// Common interface for the SortedTroves Doubly Linked List.\ninterface ISortedTroves {\n // --- Events ---\n\n event SortedTrovesAddressChanged(address _sortedDoublyLLAddress);\n event BorrowerOperationsAddressChanged(address _borrowerOperationsAddress);\n event NodeAdded(address _id, uint256 _NICR);\n event NodeRemoved(address _id);\n\n // --- Functions ---\n\n /**\n * @notice Called only once on init, to set addresses of other Zero contracts and size. Callable only by owner\n * @dev initializer function, checks addresses are contracts\n * @param _size max size of troves list\n * @param _TroveManagerAddress TroveManager contract address\n * @param _borrowerOperationsAddress BorrowerOperations contract address\n */\n function setParams(\n uint256 _size,\n address _TroveManagerAddress,\n address _borrowerOperationsAddress\n ) external;\n\n /**\n * @dev Add a node to the list\n * @param _id Node's id\n * @param _ICR Node's NICR\n * @param _prevId Id of previous node for the insert position\n * @param _nextId Id of next node for the insert position\n */\n function insert(\n address _id,\n uint256 _ICR,\n address _prevId,\n address _nextId\n ) external;\n\n /**\n * @dev Remove a node from the list\n * @param _id Node's id\n */\n function remove(address _id) external;\n\n /**\n * @dev Re-insert the node at a new position, based on its new NICR\n * @param _id Node's id\n * @param _newICR Node's new NICR\n * @param _prevId Id of previous node for the new insert position\n * @param _nextId Id of next node for the new insert position\n */\n function reInsert(\n address _id,\n uint256 _newICR,\n address _prevId,\n address _nextId\n ) external;\n\n /**\n * @dev Checks if the list contains a node\n * @param _id Node's id\n * @return true if list contains a node with given id\n */\n function contains(address _id) external view returns (bool);\n\n /**\n * @dev Checks if the list is full\n * @return true if list is full\n */\n function isFull() external view returns (bool);\n\n /**\n * @dev Checks if the list is empty\n * @return true if list is empty\n */\n function isEmpty() external view returns (bool);\n\n /**\n * @return list current size\n */\n function getSize() external view returns (uint256);\n\n /**\n * @return list max size\n */\n function getMaxSize() external view returns (uint256);\n\n /**\n * @return the first node in the list (node with the largest NICR)\n */\n function getFirst() external view returns (address);\n\n /**\n * @return the last node in the list (node with the smallest NICR)\n */\n function getLast() external view returns (address);\n\n /**\n * @param _id Node's id\n * @return the next node (with a smaller NICR) in the list for a given node\n */\n function getNext(address _id) external view returns (address);\n\n /**\n * @param _id Node's id\n * @return the previous node (with a larger NICR) in the list for a given node\n */\n function getPrev(address _id) external view returns (address);\n\n /**\n * @notice Check if a pair of nodes is a valid insertion point for a new node with the given NICR\n * @param _ICR Node's NICR\n * @param _prevId Id of previous node for the insert position\n * @param _nextId Id of next node for the insert position\n */\n function validInsertPosition(\n uint256 _ICR,\n address _prevId,\n address _nextId\n ) external view returns (bool);\n\n /**\n * @notice Find the insert position for a new node with the given NICR\n * @param _ICR Node's NICR\n * @param _prevId Id of previous node for the insert position\n * @param _nextId Id of next node for the insert position\n */\n function findInsertPosition(\n uint256 _ICR,\n address _prevId,\n address _nextId\n ) external view returns (address, address);\n}\n" + }, + "contracts/Interfaces/IStabilityPool.sol": { + "content": "// SPDX-License-Identifier: MIT\n\npragma solidity 0.6.11;\npragma experimental ABIEncoderV2;\n\nimport \"../Dependencies/Mynt/IMassetManager.sol\";\nimport { IPermit2, ISignatureTransfer } from \"./IPermit2.sol\";\n\n/*\n * The Stability Pool holds ZUSD tokens deposited by Stability Pool depositors.\n *\n * When a trove is liquidated, then depending on system conditions, some of its ZUSD debt gets offset with\n * ZUSD in the Stability Pool: that is, the offset debt evaporates, and an equal amount of ZUSD tokens in the Stability Pool is burned.\n *\n * Thus, a liquidation causes each depositor to receive a ZUSD loss, in proportion to their deposit as a share of total deposits.\n * They also receive an ETH gain, as the ETH collateral of the liquidated trove is distributed among Stability depositors,\n * in the same proportion.\n *\n * When a liquidation occurs, it depletes every deposit by the same fraction: for example, a liquidation that depletes 40%\n * of the total ZUSD in the Stability Pool, depletes 40% of each deposit.\n *\n * A deposit that has experienced a series of liquidations is termed a \"compounded deposit\": each liquidation depletes the deposit,\n * multiplying it by some factor in range ]0,1[\n *\n * Please see the implementation spec in the proof document, which closely follows on from the compounded deposit / ETH gain derivations:\n * https://github.com/liquity/liquity/blob/master/papers/Scalable_Reward_Distribution_with_Compounding_Stakes.pdf\n *\n * --- SOV ISSUANCE TO STABILITY POOL DEPOSITORS ---\n *\n * An SOV issuance event occurs at every deposit operation, and every liquidation.\n *\n * Each deposit is tagged with the address of the front end through which it was made.\n *\n * All deposits earn a share of the issued SOV in proportion to the deposit as a share of total deposits. The SOV earned\n * by a given deposit, is split between the depositor and the front end through which the deposit was made, based on the front end's kickbackRate.\n *\n * Please see the system Readme for an overview:\n * https://github.com/liquity/dev/blob/main/README.md#zero-issuance-to-stability-providers\n */\ninterface IStabilityPool {\n // --- Events ---\n\n event StabilityPoolETHBalanceUpdated(uint _newBalance);\n event StabilityPoolZUSDBalanceUpdated(uint _newBalance);\n\n event BorrowerOperationsAddressChanged(address _newBorrowerOperationsAddress);\n event TroveManagerAddressChanged(address _newTroveManagerAddress);\n event ActivePoolAddressChanged(address _newActivePoolAddress);\n event DefaultPoolAddressChanged(address _newDefaultPoolAddress);\n event ZUSDTokenAddressChanged(address _newZUSDTokenAddress);\n event SortedTrovesAddressChanged(address _newSortedTrovesAddress);\n event PriceFeedAddressChanged(address _newPriceFeedAddress);\n event CommunityIssuanceAddressChanged(address _newCommunityIssuanceAddress);\n\n event P_Updated(uint _P);\n event S_Updated(uint _S, uint128 _epoch, uint128 _scale);\n event G_Updated(uint _G, uint128 _epoch, uint128 _scale);\n event EpochUpdated(uint128 _currentEpoch);\n event ScaleUpdated(uint128 _currentScale);\n\n event FrontEndRegistered(address indexed _frontEnd, uint _kickbackRate);\n event FrontEndTagSet(address indexed _depositor, address indexed _frontEnd);\n\n event DepositSnapshotUpdated(address indexed _depositor, uint _P, uint _S, uint _G);\n event FrontEndSnapshotUpdated(address indexed _frontEnd, uint _P, uint _G);\n event UserDepositChanged(address indexed _depositor, uint _newDeposit);\n event FrontEndStakeChanged(\n address indexed _frontEnd,\n uint _newFrontEndStake,\n address _depositor\n );\n\n event ETHGainWithdrawn(address indexed _depositor, uint _ETH, uint _ZUSDLoss);\n event SOVPaidToDepositor(address indexed _depositor, uint _SOV);\n event SOVPaidToFrontEnd(address indexed _frontEnd, uint _SOV);\n event EtherSent(address _to, uint _amount);\n\n event WithdrawFromSpAndConvertToDLLR(\n address _depositor,\n uint256 _zusdAmountRequested,\n uint256 _dllrAmountReceived\n );\n\n // --- Functions ---\n\n /**\n * @notice Called only once on init, to set addresses of other Liquity contracts. Callable only by owner\n * @dev initializer function, checks addresses are contracts\n * @param _liquityBaseParamsAddress LiquidityBaseParams contract address\n * @param _borrowerOperationsAddress BorrowerOperations contract address\n * @param _troveManagerAddress TroveManager contract address\n * @param _activePoolAddress ActivePool contract address\n * @param _zusdTokenAddress ZUSDToken contract address\n * @param _sortedTrovesAddress SortedTroves contract address\n * @param _priceFeedAddress PriceFeed contract address\n * @param _communityIssuanceAddress CommunityIssuanceAddress\n */\n function setAddresses(\n address _liquityBaseParamsAddress,\n address _borrowerOperationsAddress,\n address _troveManagerAddress,\n address _activePoolAddress,\n address _zusdTokenAddress,\n address _sortedTrovesAddress,\n address _priceFeedAddress,\n address _communityIssuanceAddress\n ) external;\n\n /**\n * @notice Initial checks:\n * - Frontend is registered or zero address\n * - Sender is not a registered frontend\n * - _amount is not zero\n * ---\n * - Triggers a SOV issuance, based on time passed since the last issuance. The SOV issuance is shared between *all* depositors and front ends\n * - Tags the deposit with the provided front end tag param, if it's a new deposit\n * - Sends depositor's accumulated gains (SOV, ETH) to depositor\n * - Sends the tagged front end's accumulated SOV gains to the tagged front end\n * - Increases deposit and tagged front end's stake, and takes new snapshots for each.\n * @param _amount amount to provide\n * @param _frontEndTag frontend address to receive accumulated SOV gains\n */\n function provideToSP(uint _amount, address _frontEndTag) external;\n\n /**\n * @notice Initial checks:\n * - _amount is zero or there are no under collateralized troves left in the system\n * - User has a non zero deposit\n * ---\n * - Triggers a SOV issuance, based on time passed since the last issuance. The SOV issuance is shared between *all* depositors and front ends\n * - Removes the deposit's front end tag if it is a full withdrawal\n * - Sends all depositor's accumulated gains (SOV, ETH) to depositor\n * - Sends the tagged front end's accumulated SOV gains to the tagged front end\n * - Decreases deposit and tagged front end's stake, and takes new snapshots for each.\n *\n * If _amount > userDeposit, the user withdraws all of their compounded deposit.\n * @param _amount amount to withdraw\n */\n function withdrawFromSP(uint _amount) external;\n\n /**\n * @notice Initial checks:\n * - User has a non zero deposit\n * - User has an open trove\n * - User has some ETH gain\n * ---\n * - Triggers a SOV issuance, based on time passed since the last issuance. The SOV issuance is shared between *all* depositors and front ends\n * - Sends all depositor's SOV gain to depositor\n * - Sends all tagged front end's SOV gain to the tagged front end\n * - Transfers the depositor's entire ETH gain from the Stability Pool to the caller's trove\n * - Leaves their compounded deposit in the Stability Pool\n * - Updates snapshots for deposit and tagged front end stake\n * @param _upperHint upper trove id hint\n * @param _lowerHint lower trove id hint\n */\n function withdrawETHGainToTrove(address _upperHint, address _lowerHint) external;\n\n /**\n * @notice Initial checks:\n * - Frontend (sender) not already registered\n * - User (sender) has no deposit\n * - _kickbackRate is in the range [0, 100%]\n * ---\n * Front end makes a one-time selection of kickback rate upon registering\n * @param _kickbackRate kickback rate selected by frontend\n */\n function registerFrontEnd(uint _kickbackRate) external;\n\n /**\n * @notice Initial checks:\n * - Caller is TroveManager\n * ---\n * Cancels out the specified debt against the ZUSD contained in the Stability Pool (as far as possible)\n * and transfers the Trove's ETH collateral from ActivePool to StabilityPool.\n * Only called by liquidation functions in the TroveManager.\n * @param _debt debt to cancel\n * @param _coll collateral to transfer\n */\n function offset(uint _debt, uint _coll) external;\n\n /**\n * @return the total amount of ETH held by the pool, accounted in an internal variable instead of `balance`,\n * to exclude edge cases like ETH received from a self-destruct.\n */\n function getETH() external view returns (uint);\n\n /**\n * @return ZUSD held in the pool. Changes when users deposit/withdraw, and when Trove debt is offset.\n */\n function getTotalZUSDDeposits() external view returns (uint);\n\n /**\n * @notice Calculates the ETH gain earned by the deposit since its last snapshots were taken.\n * @param _depositor address to calculate ETH gain\n * @return ETH gain from given depositor\n */\n function getDepositorETHGain(address _depositor) external view returns (uint);\n\n /**\n * @notice Calculate the SOV gain earned by a deposit since its last snapshots were taken.\n * If not tagged with a front end, the depositor gets a 100% cut of what their deposit earned.\n * Otherwise, their cut of the deposit's earnings is equal to the kickbackRate, set by the front end through\n * which they made their deposit.\n * @param _depositor address to calculate ETH gain\n * @return SOV gain from given depositor\n */\n function getDepositorSOVGain(address _depositor) external view returns (uint);\n\n /**\n * @param _frontEnd front end address\n * @return the SOV gain earned by the front end.\n */\n function getFrontEndSOVGain(address _frontEnd) external view returns (uint);\n\n /**\n * @param _depositor depositor address\n * @return the user's compounded deposit.\n */\n function getCompoundedZUSDDeposit(address _depositor) external view returns (uint);\n\n /**\n * @notice The front end's compounded stake is equal to the sum of its depositors' compounded deposits.\n * @param _frontEnd front end address\n * @return the front end's compounded stake.\n */\n function getCompoundedFrontEndStake(address _frontEnd) external view returns (uint);\n\n //DLLR _owner or _spender can convert a specified amount of DLLR into ZUSD via Sovryn Mynt and deposit the ZUSD into the Zero Stability Pool, all in a single transaction\n function provideToSpFromDLLR(\n uint _dllrAmount,\n IMassetManager.PermitParams calldata _permitParams\n ) external;\n\n function provideToSpFromDllrWithPermit2(\n uint256 _dllrAmount,\n ISignatureTransfer.PermitTransferFrom memory _permit,\n bytes calldata _signature\n ) external;\n\n /// Stability Pool depositor can withdraw a specified amount of ZUSD from the Zero Stability Pool and optionally convert the ZUSD to DLLR via Sovryn Mynt, all in a single transaction\n function withdrawFromSpAndConvertToDLLR(uint256 _zusdAmount) external;\n\n /**\n * Fallback function\n * Only callable by Active Pool, it just accounts for ETH received\n * receive() external payable;\n */\n}\n" + }, + "contracts/Interfaces/ITroveManager.sol": { + "content": "// SPDX-License-Identifier: MIT\n\npragma solidity 0.6.11;\npragma experimental ABIEncoderV2;\n\nimport \"./ILiquityBase.sol\";\nimport \"./IStabilityPool.sol\";\nimport \"./IZUSDToken.sol\";\nimport \"./IZEROToken.sol\";\nimport \"./IZEROStaking.sol\";\nimport \"../Dependencies/Mynt/IMassetManager.sol\";\nimport { IPermit2, ISignatureTransfer } from \"./IPermit2.sol\";\n\n/// Common interface for the Trove Manager.\ninterface ITroveManager is ILiquityBase {\n // --- Events ---\n\n event FeeDistributorAddressChanged(address _feeDistributorAddress);\n event TroveManagerRedeemOpsAddressChanged(address _troveManagerRedeemOps);\n event LiquityBaseParamsAddressChanges(address _borrowerOperationsAddress);\n event BorrowerOperationsAddressChanged(address _newBorrowerOperationsAddress);\n event PriceFeedAddressChanged(address _newPriceFeedAddress);\n event ZUSDTokenAddressChanged(address _newZUSDTokenAddress);\n event ActivePoolAddressChanged(address _activePoolAddress);\n event DefaultPoolAddressChanged(address _defaultPoolAddress);\n event StabilityPoolAddressChanged(address _stabilityPoolAddress);\n event GasPoolAddressChanged(address _gasPoolAddress);\n event CollSurplusPoolAddressChanged(address _collSurplusPoolAddress);\n event SortedTrovesAddressChanged(address _sortedTrovesAddress);\n event ZEROTokenAddressChanged(address _zeroTokenAddress);\n event ZEROStakingAddressChanged(address _zeroStakingAddress);\n\n event Liquidation(\n uint256 _liquidatedDebt,\n uint256 _liquidatedColl,\n uint256 _collGasCompensation,\n uint256 _ZUSDGasCompensation\n );\n event Redemption(\n uint256 _attemptedZUSDAmount,\n uint256 _actualZUSDAmount,\n uint256 _ETHSent,\n uint256 _ETHFee\n );\n event TroveUpdated(\n address indexed _borrower,\n uint256 _debt,\n uint256 _coll,\n uint256 stake,\n uint8 operation\n );\n event TroveLiquidated(\n address indexed _borrower,\n uint256 _debt,\n uint256 _coll,\n uint8 operation\n );\n event BaseRateUpdated(uint256 _baseRate);\n event LastFeeOpTimeUpdated(uint256 _lastFeeOpTime);\n event TotalStakesUpdated(uint256 _newTotalStakes);\n event SystemSnapshotsUpdated(uint256 _totalStakesSnapshot, uint256 _totalCollateralSnapshot);\n event LTermsUpdated(uint256 _L_ETH, uint256 _L_ZUSDDebt);\n event TroveSnapshotsUpdated(uint256 _L_ETH, uint256 _L_ZUSDDebt);\n event TroveIndexUpdated(address _borrower, uint256 _newIndex);\n\n struct TroveManagerInitAddressesParams {\n address _feeDistributorAddress;\n address _troveManagerRedeemOps;\n address _liquityBaseParamsAddress;\n address _borrowerOperationsAddress;\n address _activePoolAddress;\n address _defaultPoolAddress;\n address _stabilityPoolAddress;\n address _gasPoolAddress;\n address _collSurplusPoolAddress;\n address _priceFeedAddress;\n address _zusdTokenAddress;\n address _sortedTrovesAddress;\n address _zeroTokenAddress;\n address _zeroStakingAddress;\n }\n\n // --- Functions ---\n /**\n * @notice Called only once on init, to set addresses of other Zero contracts. Callable only by owner\n * @dev initializer function, checks addresses are contracts\n * @param _troveManagerInitAddresses addresses list to intialize TroveManager with _\n * _feeDistributorAddress feeDistributor contract address\n * _troveManagerRedeemOps TroveManagerRedeemOps contract address\n * _liquityBaseParamsAddress LiquityBaseParams contract address\n * _borrowerOperationsAddress BorrowerOperations contract address\n * _activePoolAddress ActivePool contract address\n * _defaultPoolAddress DefaultPool contract address\n * _stabilityPoolAddress StabilityPool contract address\n * _gasPoolAddress GasPool contract address\n * _collSurplusPoolAddress CollSurplusPool contract address\n * _priceFeedAddress PriceFeed contract address\n * _zusdTokenAddress ZUSDToken contract address\n * _sortedTrovesAddress SortedTroves contract address\n * _zeroTokenAddress ZEROToken contract address\n * _zeroStakingAddress ZEROStaking contract address\n */\n function setAddresses(\n TroveManagerInitAddressesParams memory _troveManagerInitAddresses\n ) external;\n\n function setTroveManagerRedeemOps(address _troveManagerRedeemOps) external;\n\n /// @return Trove owners count\n function getTroveOwnersCount() external view returns (uint256);\n\n /// @param _index Trove owner index\n /// @return Trove from TroveOwners array in given index\n function getTroveFromTroveOwnersArray(uint256 _index) external view returns (address);\n\n /// @param _borrower borrower address\n /// @return the nominal collateral ratio (ICR) of a given Trove, without the price. Takes a trove's pending coll and debt rewards from redistributions into account.\n function getNominalICR(address _borrower) external view returns (uint256);\n\n /// @notice computes the user’s individual collateralization ratio (ICR) based on their total collateral and total ZUSD debt. Returns 2^256 -1 if they have 0 debt.\n /// @param _borrower borrower address\n /// @param _price ETH price\n /// @return the current collateral ratio (ICR) of a given Trove. Takes a trove's pending coll and debt rewards from redistributions into account.\n function getCurrentICR(address _borrower, uint256 _price) external view returns (uint256);\n\n /// @notice Closes the trove if its ICR is lower than the minimum collateral ratio.\n /// @param _borrower borrower address\n function liquidate(address _borrower) external;\n\n /**\n * @notice Liquidate a sequence of troves. Closes a maximum number of n under-collateralized Troves,\n * starting from the one with the lowest collateral ratio in the system, and moving upwards\n * @param _n max number of under-collateralized Troves to liquidate\n */\n function liquidateTroves(uint256 _n) external;\n\n /**\n * @notice Attempt to liquidate a custom list of troves provided by the caller.\n * @param _troveArray list of trove addresses\n */\n function batchLiquidateTroves(address[] calldata _troveArray) external;\n\n /**\n * @notice Send _ZUSDamount ZUSD to the system and redeem the corresponding amount of collateral from as many Troves as are needed to fill the redemption\n * request. Applies pending rewards to a Trove before reducing its debt and coll.\n *\n * Note that if _amount is very large, this function can run out of gas, specially if traversed troves are small. This can be easily avoided by\n * splitting the total _amount in appropriate chunks and calling the function multiple times.\n *\n * Param `_maxIterations` can also be provided, so the loop through Troves is capped (if it’s zero, it will be ignored).This makes it easier to\n * avoid OOG for the frontend, as only knowing approximately the average cost of an iteration is enough, without needing to know the “topology”\n * of the trove list. It also avoids the need to set the cap in stone in the contract, nor doing gas calculations, as both gas price and opcode\n * costs can vary.\n *\n * All Troves that are redeemed from -- with the likely exception of the last one -- will end up with no debt left, therefore they will be closed.\n * If the last Trove does have some remaining debt, it has a finite ICR, and the reinsertion could be anywhere in the list, therefore it requires a hint.\n * A frontend should use getRedemptionHints() to calculate what the ICR of this Trove will be after redemption, and pass a hint for its position\n * in the sortedTroves list along with the ICR value that the hint was found for.\n *\n * If another transaction modifies the list between calling getRedemptionHints() and passing the hints to redeemCollateral(), it\n * is very likely that the last (partially) redeemed Trove would end up with a different ICR than what the hint is for. In this case the\n * redemption will stop after the last completely redeemed Trove and the sender will keep the remaining ZUSD amount, which they can attempt\n * to redeem later.\n *\n * @param _ZUSDAmount ZUSD amount to send to the system\n * @param _firstRedemptionHint calculated ICR hint of first trove after redemption\n * @param _maxIterations max Troves iterations (can be 0)\n * @param _maxFee max fee percentage to accept\n */\n function redeemCollateral(\n uint256 _ZUSDAmount,\n address _firstRedemptionHint,\n address _upperPartialRedemptionHint,\n address _lowerPartialRedemptionHint,\n uint256 _partialRedemptionHintNICR,\n uint256 _maxIterations,\n uint256 _maxFee\n ) external;\n\n function redeemCollateralViaDLLR(\n uint256 _dllrAmount,\n address _firstRedemptionHint,\n address _upperPartialRedemptionHint,\n address _lowerPartialRedemptionHint,\n uint256 _partialRedemptionHintNICR,\n uint256 _maxIterations,\n uint256 _maxFeePercentage,\n IMassetManager.PermitParams calldata _permitParams\n ) external;\n\n function redeemCollateralViaDllrWithPermit2(\n uint256 _dllrAmount,\n address _firstRedemptionHint,\n address _upperPartialRedemptionHint,\n address _lowerPartialRedemptionHint,\n uint256 _partialRedemptionHintNICR,\n uint256 _maxIterations,\n uint256 _maxFeePercentage,\n ISignatureTransfer.PermitTransferFrom memory _permit,\n bytes calldata _signature\n ) external;\n \n\n /// @notice Update borrower's stake based on their latest collateral value\n /// @param _borrower borrower address\n function updateStakeAndTotalStakes(address _borrower) external returns (uint256);\n\n /// @notice Update borrower's snapshots of L_ETH and L_ZUSDDebt to reflect the current values\n /// @param _borrower borrower address\n function updateTroveRewardSnapshots(address _borrower) external;\n\n /// @notice Push the owner's address to the Trove owners list, and record the corresponding array index on the Trove struct\n /// @param _borrower borrower address\n /// @return index where Trove was inserted\n function addTroveOwnerToArray(address _borrower) external returns (uint256 index);\n\n /// @notice Add the borrowers's coll and debt rewards earned from redistributions, to their Trove\n /// @param _borrower borrower address\n function applyPendingRewards(address _borrower) external;\n\n /// @param _borrower borrower address\n /// @return the borrower's pending accumulated ETH reward, earned by their stake\n function getPendingETHReward(address _borrower) external view returns (uint256);\n\n /// @param _borrower borrower address\n /// @return the borrower's pending accumulated ZUSD reward, earned by their stake\n function getPendingZUSDDebtReward(address _borrower) external view returns (uint256);\n\n /*\n * @notice A Trove has pending rewards if its snapshot is less than the current rewards per-unit-staked sum:\n * this indicates that rewards have occured since the snapshot was made, and the user therefore has\n * pending rewards\n *\n * @param _borrower borrower address\n * @return true if has pending rewards\n */\n function hasPendingRewards(address _borrower) external view returns (bool);\n\n /// @notice returns the Troves entire debt and coll, including pending rewards from redistributions.\n /// @param _borrower borrower address\n function getEntireDebtAndColl(\n address _borrower\n )\n external\n view\n returns (\n uint256 debt,\n uint256 coll,\n uint256 pendingZUSDDebtReward,\n uint256 pendingETHReward\n );\n\n /// @notice Close given trove. Called by BorrowerOperations.\n /// @param _borrower borrower address\n function closeTrove(address _borrower) external;\n\n /// @notice Remove borrower's stake from the totalStakes sum, and set their stake to 0\n /// @param _borrower borrower address\n function removeStake(address _borrower) external;\n\n /// @return calculated redemption rate using baseRate\n function getRedemptionRate() external view returns (uint256);\n\n /// @return calculated redemption rate using calculated decayed as base rate\n function getRedemptionRateWithDecay() external view returns (uint256);\n\n /// @notice The redemption fee is taken as a cut of the total ETH drawn from the system in a redemption. It is based on the current redemption rate.\n /// @param _ETHDrawn ETH drawn\n function getRedemptionFeeWithDecay(uint256 _ETHDrawn) external view returns (uint256);\n\n /// @return borrowing rate\n function getBorrowingRate() external view returns (uint256);\n\n /// @return borrowing rate calculated using decayed as base rate\n function getBorrowingRateWithDecay() external view returns (uint256);\n\n /// @param ZUSDDebt ZUSD debt amount to calculate fee\n /// @return borrowing fee using borrowing rate\n function getBorrowingFee(uint256 ZUSDDebt) external view returns (uint256);\n\n /// @param _ZUSDDebt ZUSD debt amount to calculate fee\n /// @return borrowing fee using borrowing rate with decay\n function getBorrowingFeeWithDecay(uint256 _ZUSDDebt) external view returns (uint256);\n\n /// @notice Updates the baseRate state variable based on time elapsed since the last redemption or ZUSD borrowing operation.\n function decayBaseRateFromBorrowing() external;\n\n /// @param _borrower borrower address\n /// @return Trove status from given trove\n function getTroveStatus(address _borrower) external view returns (uint256);\n\n /// @param _borrower borrower address\n /// @return Trove stake from given trove\n function getTroveStake(address _borrower) external view returns (uint256);\n\n /// @param _borrower borrower address\n /// @return Trove debt from given trove\n function getTroveDebt(address _borrower) external view returns (uint256);\n\n /// @param _borrower borrower address\n /// @return Trove collateral from given trove\n function getTroveColl(address _borrower) external view returns (uint256);\n\n /// @param _borrower borrower address\n /// @param num status to set\n function setTroveStatus(address _borrower, uint256 num) external;\n\n /// @param _borrower borrower address\n /// @param _collIncrease amount of collateral to increase\n /// @return new trove collateral\n function increaseTroveColl(\n address _borrower,\n uint256 _collIncrease\n ) external returns (uint256);\n\n /// @param _borrower borrower address\n /// @param _collDecrease amount of collateral to decrease\n /// @return new trove collateral\n function decreaseTroveColl(\n address _borrower,\n uint256 _collDecrease\n ) external returns (uint256);\n\n /// @param _borrower borrower address\n /// @param _debtIncrease amount of debt to increase\n /// @return new trove debt\n function increaseTroveDebt(\n address _borrower,\n uint256 _debtIncrease\n ) external returns (uint256);\n\n /// @param _borrower borrower address\n /// @param _debtDecrease amount of debt to decrease\n /// @return new trove debt\n function decreaseTroveDebt(\n address _borrower,\n uint256 _debtDecrease\n ) external returns (uint256);\n\n /**\n * @param _price ETH price\n * @return the total collateralization ratio (TCR) of the system.\n * The TCR is based on the the entire system debt and collateral (including pending rewards).\n */\n function getTCR(uint256 _price) external view returns (uint256);\n\n function MCR() external view returns (uint256);\n\n function CCR() external view returns (uint256);\n\n /// @notice reveals whether or not the system is in Recovery Mode (i.e. whether the Total Collateralization Ratio (TCR) is below the Critical Collateralization Ratio (CCR)).\n function checkRecoveryMode(uint256 _price) external view returns (bool);\n}\n" + }, + "contracts/Interfaces/IWrbtc.sol": { + "content": "// SPDX-License-Identifier: MIT\npragma solidity 0.6.11;\n\nimport \"../Dependencies/IERC20.sol\";\n\ninterface IWrbtc is IERC20 {\n\t\n\tfunction deposit() external payable;\n\n\tfunction withdraw(uint256 wad) external;\n\n}\n" + }, + "contracts/Interfaces/IZEROStaking.sol": { + "content": "// SPDX-License-Identifier: MIT\n\npragma solidity 0.6.11;\n\ninterface IZEROStaking {\n // --- Events --\n\n event ZEROTokenAddressSet(address _zeroTokenAddress);\n event ZUSDTokenAddressSet(address _zusdTokenAddress);\n event FeeDistributorAddressAddressSet(address _feeDistributorAddress);\n event ActivePoolAddressSet(address _activePoolAddress);\n\n event StakeChanged(address indexed staker, uint256 newStake);\n event StakingGainsWithdrawn(address indexed staker, uint256 ZUSDGain, uint256 ETHGain);\n event F_ETHUpdated(uint256 _F_ETH);\n event F_ZUSDUpdated(uint256 _F_ZUSD);\n event TotalZEROStakedUpdated(uint256 _totalZEROStaked);\n event EtherSent(address _account, uint256 _amount);\n event StakerSnapshotsUpdated(address _staker, uint256 _F_ETH, uint256 _F_ZUSD);\n\n // --- Functions ---\n\n /**\n * @notice Called only once on init, to set addresses of other Zero contracts. Callable only by owner\n * @dev initializer function, checks addresses are contracts\n * @param _zeroTokenAddress ZEROToken contract address\n * @param _zusdTokenAddress ZUSDToken contract address\n * @param _feeDistributorAddress FeeDistributorAddress contract address\n * @param _activePoolAddress ActivePool contract address\n */\n function setAddresses(\n address _zeroTokenAddress,\n address _zusdTokenAddress,\n address _feeDistributorAddress,\n address _activePoolAddress\n ) external;\n\n /// @notice If caller has a pre-existing stake, send any accumulated ETH and ZUSD gains to them.\n /// @param _ZEROamount ZERO tokens to stake\n function stake(uint256 _ZEROamount) external;\n\n /**\n * @notice Unstake the ZERO and send the it back to the caller, along with their accumulated ZUSD & ETH gains.\n * If requested amount > stake, send their entire stake.\n * @param _ZEROamount ZERO tokens to unstake\n */\n function unstake(uint256 _ZEROamount) external;\n\n /// @param _ETHFee ETH fee\n /// @notice increase ETH fee\n function increaseF_ETH(uint256 _ETHFee) external;\n\n /// @param _ZEROFee ZUSD fee\n /// @notice increase ZUSD fee\n function increaseF_ZUSD(uint256 _ZEROFee) external;\n\n /// @param _user user address\n /// @return pending ETH gain of given user\n function getPendingETHGain(address _user) external view returns (uint256);\n\n /// @param _user user address\n /// @return pending ZUSD gain of given user\n function getPendingZUSDGain(address _user) external view returns (uint256);\n}\n" + }, + "contracts/Interfaces/IZEROToken.sol": { + "content": "// SPDX-License-Identifier: MIT\n\npragma solidity 0.6.11;\n\nimport \"../Dependencies/IERC20.sol\";\nimport \"../Dependencies/IERC2612.sol\";\n\ninterface IZEROToken is IERC20, IERC2612 { \n\n // --- Functions ---\n\n /// @notice send zero tokens to ZEROStaking contract\n /// @param _sender sender address\n /// @param _amount amount to send\n function sendToZEROStaking(address _sender, uint256 _amount) external;\n\n /// @return deployment start time\n function getDeploymentStartTime() external view returns (uint256);\n\n}\n" + }, + "contracts/Interfaces/IZUSDToken.sol": { + "content": "// SPDX-License-Identifier: MIT\n\npragma solidity 0.6.11;\n\nimport \"../Dependencies/IERC20.sol\";\nimport \"../Dependencies/IERC2612.sol\";\n\ninterface IZUSDToken is IERC20, IERC2612 { \n \n // --- Events ---\n\n event TroveManagerAddressChanged(address _troveManagerAddress);\n event StabilityPoolAddressChanged(address _newStabilityPoolAddress);\n event BorrowerOperationsAddressChanged(address _newBorrowerOperationsAddress);\n\n event ZUSDTokenBalanceUpdated(address _user, uint _amount);\n\n // --- Functions ---\n\n function mint(address _account, uint256 _amount) external;\n\n function burn(address _account, uint256 _amount) external;\n\n function sendToPool(address _sender, address poolAddress, uint256 _amount) external;\n\n function returnFromPool(address poolAddress, address user, uint256 _amount ) external;\n}\n" + }, + "contracts/Libraries/BorrowerLib.sol": { + "content": "// SPDX-License-Identifier: MIT\n\npragma solidity 0.6.11;\nimport \"../Interfaces/IBorrowerOperations.sol\";\n\n/// @title ZERO-SDK Borrower Lib\n/// @notice Library containing basic Borrowing Operations from ZERO protocol\nlibrary BorrowerLib {\n modifier isContractAddress(address contractAddress) {\n uint256 size;\n assembly {\n size := extcodesize(contractAddress)\n }\n require(size > 0);\n _;\n }\n\n modifier isValueSent() {\n require(msg.value > 0);\n _;\n }\n\n /// @notice Open a credit line by depositing amount of rBTC as a collateral\n /// @param _maxFeePercentage maximum fee percentage that user is wishing to pay for opening the credit line\n /// @param _ZUSDAmount amount of ZUSD to be borrowed\n /// @param borrowerContract address of BorrowerOperations contract\n function openCreditLineInZusd(\n uint256 _maxFeePercentage,\n uint256 _ZUSDAmount,\n address borrowerContract\n ) internal isValueSent isContractAddress(borrowerContract) {\n IBorrowerOperations borrowerOperations = IBorrowerOperations(borrowerContract);\n borrowerOperations.openTrove(_maxFeePercentage, _ZUSDAmount, msg.sender, msg.sender);\n }\n\n /// @notice Issues the specified amount of ZUSD to the caller\n /// Executes only if the Trove's collateralization ratio would remain above the minimum, and the resulting total collateralization ratio is above 150%.\n /// The borrower has to provide a `_maxFeePercentage` that he/she is willing to accept in case of a fee slippage, i.e. when a redemption transaction is processed first, driving up the issuance fee.\n /// @param _maxFeePercentage maximum fee percentage that user is wishing to pay for opening the credit line\n /// @param _amount amount of ZUSD to be withdrawn\n /// @param borrowerContract address of BorrowerOperations contract\n function withdrawZUSD(\n uint256 _maxFeePercentage,\n uint256 _amount,\n address borrowerContract\n ) internal isContractAddress(borrowerContract) {\n IBorrowerOperations borrowerOperations = IBorrowerOperations(borrowerContract);\n borrowerOperations.withdrawZUSD(_maxFeePercentage, _amount, msg.sender, msg.sender);\n }\n\n /// @notice withdraws `_amount` of collateral from the caller’s Trove.\n /// Executes only if the user has an active Trove, the withdrawal would not pull the user’s Trove below the minimum collateralization ratio,\n /// and the resulting total collateralization ratio of the system is above 150%.\n /// @param _amount collateral amount to withdraw\n /// @param borrowerContract address of BorrowerOperations contract\n function withdrawCollateral(\n uint256 _amount,\n address borrowerContract\n ) internal isContractAddress(borrowerContract) {\n IBorrowerOperations borrowerOperations = IBorrowerOperations(borrowerContract);\n borrowerOperations.withdrawColl(_amount, msg.sender, msg.sender);\n }\n\n /// @notice Repays ZUSD towards the open credit line of the borrower\n /// @param _amount amount of ZUSD to be repayed\n /// @param borrowerContract address of BorrowerOperations contract\n function repayZUSD(\n uint256 _amount,\n address borrowerContract\n ) internal isContractAddress(borrowerContract) {\n IBorrowerOperations borrowerOperations = IBorrowerOperations(borrowerContract);\n borrowerOperations.repayZUSD(_amount, msg.sender, msg.sender);\n }\n\n /// @notice adds the received rBTC to the caller's active Trove.\n /// @param borrowerContract address of BorrowerOperations contract\n function addCollateral(\n address borrowerContract\n ) internal isValueSent isContractAddress(borrowerContract) {\n IBorrowerOperations borrowerOperations = IBorrowerOperations(borrowerContract);\n borrowerOperations.addColl(msg.sender, msg.sender);\n }\n\n /// @notice Closes the credit line and withdraws the collateral\n /// @param borrowerContract address of BorrowerOperations contract\n function closeCreditLineAndWithdrawCollateral(\n address borrowerContract\n ) internal isContractAddress(borrowerContract) {\n IBorrowerOperations borrowerOperations = IBorrowerOperations(borrowerContract);\n borrowerOperations.closeTrove();\n }\n}\n" + }, + "contracts/Libraries/LiquidationLib.sol": { + "content": "// SPDX-License-Identifier: MIT\n\npragma solidity 0.6.11;\nimport \"../Interfaces/ITroveManager.sol\";\nimport \"../HintHelpers.sol\";\nimport \"../PriceFeed.sol\";\n\n/// @title ZERO-SDK Liquidation Lib\n/// @notice Library containing basic Liquidation and redemption operations\nlibrary LiquidationLib {\n /// @dev Three hints returned from a helper contract function, aim to ease\n /// the traversal of the troves, resulting in more eficient operaitons and less gas cost\n /// - `firstRedemptionHint` is the address of the first Trove with ICR >= MCR (i.e. the first Trove that will be redeemed).\n /// - `partialRedemptionHintNICR` is the final nominal ICR of the last Trove of the sequence after being hit\n /// by partial redemption or zero in case of no partial redemption.\n /// - `truncatedZUSDamount` is the maximum amount that can be redeemed out of the the provided `_ZUSDamount`.\n /// This can be lower than `_ZUSDamount` when redeeming the full amount would leave the last Trove of the redemption\n /// sequence with less net debt than the minimum allowed value (i.e. MIN_NET_DEBT).\n struct RedemptionHints {\n address firstRedemptionHint;\n uint256 partialRedemptionHintNICR;\n uint256 truncatedZUSDamount;\n }\n\n modifier isContractAddress(address contractAddress) {\n uint256 size;\n assembly {\n size := extcodesize(contractAddress)\n }\n require(size > 0);\n _;\n }\n\n /// @notice Liquidates credit line of the borrower\n /// @dev Closes the trove if its ICR is lower than the minimum collateral ratio.\n /// @param borrowerAddress address of the borrower to be liquidated\n /// @param troveManagerContractAddress address of TroveManager contract\n function liquidateBorrower(\n address borrowerAddress,\n address troveManagerContractAddress\n ) internal isContractAddress(troveManagerContractAddress) {\n ITroveManager troveManager = ITroveManager(troveManagerContractAddress);\n troveManager.liquidate(borrowerAddress);\n }\n\n /// @notice Liquidates bad credit lines in the protocol\n /// @dev Closes a maximum number of n under-collateralized Troves,\n /// starting from the one with the lowest collateral ratio in the system, and moving upwards\n /// @param maxLiquidations address of the borrower to be liquidated\n /// @param troveManagerContractAddress address of TroveManager contract\n function liquidateBadPositions(\n address troveManagerContractAddress,\n uint256 maxLiquidations\n ) internal isContractAddress(troveManagerContractAddress) {\n ITroveManager troveManager = ITroveManager(troveManagerContractAddress);\n troveManager.liquidateTroves(maxLiquidations);\n }\n\n /// @notice Redeems the corresponding ZUSD amount into rBTC\n /// @param _troveManagerContractAddress address of TroveManager contract\n /// @param _hintHelpersAddress address of the HintHelpers contract\n /// @param _priceFeedAddress address of PriceFeed contract\n /// @param _ZUSDAmount amount of ZUSD to be redeemed\n /// @param _maxFeePercentage max fee percentage of the ZUSD amount. If above this percentage, transaction will revert\n function redeemCollateral(\n address _troveManagerContractAddress,\n address _hintHelpersAddress,\n address _priceFeedAddress,\n uint256 _ZUSDAmount,\n uint256 _maxFeePercentage\n ) internal isContractAddress(_troveManagerContractAddress) {\n RedemptionHints memory redemptionHints;\n ITroveManager troveManager = ITroveManager(_troveManagerContractAddress);\n HintHelpers hintHelpers = HintHelpers(_hintHelpersAddress);\n PriceFeed priceFeed = PriceFeed(_priceFeedAddress);\n uint256 latestPrice = priceFeed.fetchPrice();\n (\n redemptionHints.firstRedemptionHint,\n redemptionHints.partialRedemptionHintNICR,\n redemptionHints.truncatedZUSDamount\n ) = hintHelpers.getRedemptionHints(_ZUSDAmount, latestPrice, 0);\n\n troveManager.redeemCollateral(\n redemptionHints.truncatedZUSDamount,\n redemptionHints.firstRedemptionHint,\n msg.sender,\n msg.sender,\n redemptionHints.partialRedemptionHintNICR,\n 0,\n _maxFeePercentage\n );\n }\n}\n" + }, + "contracts/Libraries/StabilityPoolLib.sol": { + "content": "// SPDX-License-Identifier: MIT\n\npragma solidity 0.6.11;\nimport \"../Interfaces/IStabilityPool.sol\";\n\n/// @title ZERO-SDK Liquidation Lib\n/// @notice Library containing basic operations regarding ZERO Stability Pool\nlibrary StabilityPoolLib {\n modifier isContractAddress(address contractAddress) {\n uint256 size;\n assembly {\n size := extcodesize(contractAddress)\n }\n require(size > 0);\n _;\n }\n\n /// @notice Adds the corresponding amount of ZERO to stability pool\n /// @param _amount amount of ZUSD to be deposited\n /// @param _stabilityPoolAddress address of Stability Pool Contract\n function provideToSP(\n uint256 _amount,\n address _stabilityPoolAddress\n ) internal isContractAddress(_stabilityPoolAddress) {\n IStabilityPool stabilityPool = IStabilityPool(_stabilityPoolAddress);\n stabilityPool.provideToSP(_amount, address(0));\n }\n\n /// @notice Withdraws the corresponding amount of ZERO from stability pool\n /// @param _amount amount of ZUSD to be withdrawn\n /// @param _stabilityPoolAddress address of Stability Pool Contract\n function withdrawFromSP(\n uint256 _amount,\n address _stabilityPoolAddress\n ) internal isContractAddress(_stabilityPoolAddress) {\n IStabilityPool stabilityPool = IStabilityPool(_stabilityPoolAddress);\n stabilityPool.withdrawFromSP(_amount);\n }\n\n /// @notice Withdraws all gains from the stability pool and adds them as a collateral to the credit line\n /// @param _stabilityPoolAddress address of Stability Pool Contract\n function withdrawRBTCGainToTrove(\n address _stabilityPoolAddress\n ) internal isContractAddress(_stabilityPoolAddress) {\n IStabilityPool stabilityPool = IStabilityPool(_stabilityPoolAddress);\n stabilityPool.withdrawETHGainToTrove(msg.sender, msg.sender);\n }\n}\n" + }, + "contracts/Libraries/TroveStatisticsLib.sol": { + "content": "// SPDX-License-Identifier: MIT\n\npragma solidity 0.6.11;\nimport \"../Interfaces/ITroveManager.sol\";\n\n/// @title ZERO-SDK Liquidation Lib\n/// @notice Library containing view functions regarding troves\nlibrary TroveStatisticsLib {\n modifier isContractAddress(address contractAddress) {\n uint256 size;\n assembly {\n size := extcodesize(contractAddress)\n }\n require(size > 0);\n _;\n }\n\n /// @return collateralRatio the nominal collateral ratio (ICR) of a given Trove, without the price. Takes a trove's pending coll and debt rewards from redistributions into account.\n /// @param troveManagerContractAddress address of TroveManager contract\n function getNominalICR(\n address troveManagerContractAddress,\n address _borrower\n )\n internal\n view\n isContractAddress(troveManagerContractAddress)\n returns (uint256 collateralRatio)\n {\n ITroveManager troveManager = ITroveManager(troveManagerContractAddress);\n return troveManager.getNominalICR(_borrower);\n }\n\n /// @param troveManagerContractAddress address of TroveManager contract\n /// @param _borrower address of the borrower\n /// @return debt of the troves of borrower\n /// @return coll collateral of the troves of the borrower\n /// @return pendingZUSDDebtReward sum of all ZUSD pending rewards from redistributions\n /// @return pendingRBTCReward sum of all RBTC pending rewards from redistributions\n function getEntireDebtAndColl(\n address troveManagerContractAddress,\n address _borrower\n )\n internal\n view\n isContractAddress(troveManagerContractAddress)\n returns (\n uint256 debt,\n uint256 coll,\n uint256 pendingZUSDDebtReward,\n uint256 pendingRBTCReward\n )\n {\n ITroveManager troveManager = ITroveManager(troveManagerContractAddress);\n return troveManager.getEntireDebtAndColl(_borrower);\n }\n\n /// @param troveManagerContractAddress address of TroveManager contract\n /// @param _ZUSDDebt debt parameter for which a fee will be calculated against\n /// @return borrowingFee calculated borrowing fee for the corresponding debt\n function calculateBorrowingFee(\n address troveManagerContractAddress,\n uint256 _ZUSDDebt\n ) internal view isContractAddress(troveManagerContractAddress) returns (uint256 borrowingFee) {\n ITroveManager troveManager = ITroveManager(troveManagerContractAddress);\n return troveManager.getBorrowingFee(_ZUSDDebt);\n }\n}\n" + }, + "contracts/LiquityBaseParams.sol": { + "content": "// SPDX-License-Identifier: MIT\n\npragma solidity 0.6.11;\n\nimport \"./Interfaces/ILiquityBaseParams.sol\";\nimport \"./Dependencies/BaseMath.sol\";\nimport \"./Dependencies/LiquityMath.sol\";\n\nimport \"./Dependencies/Ownable.sol\";\nimport \"./Dependencies/Initializable.sol\";\n\ncontract LiquityBaseParams is ILiquityBaseParams, Ownable, Initializable, BaseMath {\n using SafeMath for uint256;\n\n /// Minimum collateral ratio for individual troves\n uint256 public override MCR;\n\n /// Critical system collateral ratio. If the system's total collateral ratio (TCR) falls below the CCR, Recovery Mode is triggered.\n uint256 public override CCR;\n\n uint256 public override PERCENT_DIVISOR;\n\n uint256 public override BORROWING_FEE_FLOOR;\n\n /**\n * Half-life of 12h. 12h = 720 min\n * (1/2) = d^720 => d = (1/2)^(1/720)\n */\n uint256 public override REDEMPTION_FEE_FLOOR;\n\n uint256 public override MAX_BORROWING_FEE;\n\n function initialize() public initializer onlyOwner {\n MCR = 1100000000000000000; // 110%\n CCR = 1500000000000000000; // 150%\n PERCENT_DIVISOR = 200; // dividing by 200 yields 0.5%\n BORROWING_FEE_FLOOR = (DECIMAL_PRECISION / 1000) * 5; // 0.5%\n REDEMPTION_FEE_FLOOR = (DECIMAL_PRECISION / 1000) * 5; // 0.5%\n MAX_BORROWING_FEE = (DECIMAL_PRECISION / 100) * 5; // 5%\n }\n\n function setMCR(uint256 MCR_) public onlyOwner {\n MCR = MCR_;\n }\n\n function setCCR(uint256 CCR_) public onlyOwner {\n CCR = CCR_;\n }\n\n function setPercentDivisor(uint256 PERCENT_DIVISOR_) public onlyOwner {\n PERCENT_DIVISOR = PERCENT_DIVISOR_;\n }\n\n function setBorrowingFeeFloor(uint256 BORROWING_FEE_FLOOR_) public onlyOwner {\n BORROWING_FEE_FLOOR = BORROWING_FEE_FLOOR_;\n }\n\n function setRedemptionFeeFloor(uint256 REDEMPTION_FEE_FLOOR_) public onlyOwner {\n REDEMPTION_FEE_FLOOR = REDEMPTION_FEE_FLOOR_;\n }\n\n function setMaxBorrowingFee(uint256 MAX_BORROWING_FEE_) public onlyOwner {\n MAX_BORROWING_FEE = MAX_BORROWING_FEE_;\n }\n}\n" + }, + "contracts/MultiTroveGetter.sol": { + "content": "// SPDX-License-Identifier: MIT\n\npragma solidity 0.6.11;\npragma experimental ABIEncoderV2;\n\nimport \"./TroveManager.sol\";\nimport \"./SortedTroves.sol\";\nimport \"./MultiTroveGetterStorage.sol\";\n\n/** Helper contract for grabbing Trove data for the front end. Not part of the core Zero system. */\ncontract MultiTroveGetter is MultiTroveGetterStorage {\n struct CombinedTroveData {\n address owner;\n uint256 debt;\n uint256 coll;\n uint256 stake;\n uint256 snapshotETH;\n uint256 snapshotZUSDDebt;\n }\n\n function setAddresses(TroveManager _troveManager, ISortedTroves _sortedTroves)\n public\n onlyOwner\n {\n troveManager = _troveManager;\n sortedTroves = _sortedTroves;\n }\n\n function getMultipleSortedTroves(int256 _startIdx, uint256 _count)\n external\n view\n returns (CombinedTroveData[] memory _troves)\n {\n uint256 startIdx;\n bool descend;\n\n if (_startIdx >= 0) {\n startIdx = uint256(_startIdx);\n descend = true;\n } else {\n startIdx = uint256(-(_startIdx + 1));\n descend = false;\n }\n\n uint256 sortedTrovesSize = sortedTroves.getSize();\n\n if (startIdx >= sortedTrovesSize) {\n _troves = new CombinedTroveData[](0);\n } else {\n uint256 maxCount = sortedTrovesSize - startIdx;\n\n if (_count > maxCount) {\n _count = maxCount;\n }\n\n if (descend) {\n _troves = _getMultipleSortedTrovesFromHead(startIdx, _count);\n } else {\n _troves = _getMultipleSortedTrovesFromTail(startIdx, _count);\n }\n }\n }\n\n function _getMultipleSortedTrovesFromHead(uint256 _startIdx, uint256 _count)\n internal\n view\n returns (CombinedTroveData[] memory _troves)\n {\n address currentTroveowner = sortedTroves.getFirst();\n\n for (uint256 idx = 0; idx < _startIdx; ++idx) {\n currentTroveowner = sortedTroves.getNext(currentTroveowner);\n }\n\n _troves = new CombinedTroveData[](_count);\n\n for (uint256 idx = 0; idx < _count; ++idx) {\n _troves[idx].owner = currentTroveowner;\n (\n _troves[idx].debt,\n _troves[idx].coll,\n _troves[idx].stake,\n /* status */\n /* arrayIndex */\n ,\n\n ) = troveManager.Troves(currentTroveowner);\n (_troves[idx].snapshotETH, _troves[idx].snapshotZUSDDebt) = troveManager\n .rewardSnapshots(currentTroveowner);\n\n currentTroveowner = sortedTroves.getNext(currentTroveowner);\n }\n }\n\n function _getMultipleSortedTrovesFromTail(uint256 _startIdx, uint256 _count)\n internal\n view\n returns (CombinedTroveData[] memory _troves)\n {\n address currentTroveowner = sortedTroves.getLast();\n\n for (uint256 idx = 0; idx < _startIdx; ++idx) {\n currentTroveowner = sortedTroves.getPrev(currentTroveowner);\n }\n\n _troves = new CombinedTroveData[](_count);\n\n for (uint256 idx = 0; idx < _count; ++idx) {\n _troves[idx].owner = currentTroveowner;\n (\n _troves[idx].debt,\n _troves[idx].coll,\n _troves[idx].stake,\n /* status */\n /* arrayIndex */\n ,\n\n ) = troveManager.Troves(currentTroveowner);\n (_troves[idx].snapshotETH, _troves[idx].snapshotZUSDDebt) = troveManager\n .rewardSnapshots(currentTroveowner);\n\n currentTroveowner = sortedTroves.getPrev(currentTroveowner);\n }\n }\n}\n" + }, + "contracts/MultiTroveGetterStorage.sol": { + "content": "// SPDX-License-Identifier: MIT\n\npragma solidity 0.6.11;\nimport \"./TroveManager.sol\";\nimport \"./SortedTroves.sol\";\nimport \"./Dependencies/Ownable.sol\";\n\ncontract MultiTroveGetterStorage is Ownable {\n TroveManager public troveManager; // XXX Troves missing from ITroveManager?\n ISortedTroves public sortedTroves;\n}\n" + }, + "contracts/PriceFeed.sol": { + "content": "// SPDX-License-Identifier: MIT\n\npragma solidity 0.6.11;\n\nimport \"./Interfaces/IPriceFeed.sol\";\nimport \"./Dependencies/CheckContract.sol\";\nimport \"./PriceFeedStorage.sol\";\n\n/// @title The system price feed adapter\n/// @notice The PriceFeed relies upon a main oracle and a secondary as a fallback in case of error\ncontract PriceFeed is PriceFeedStorage, IPriceFeed {\n event LastGoodPriceUpdated(uint256 _lastGoodPrice);\n event PriceFeedBroken(uint8 index, address priceFeedAddress);\n event PriceFeedUpdated(uint8 index, address newPriceFeedAddress);\n\n // --- Dependency setters ---\n\n function setAddresses(address _mainPriceFeed, address _backupPriceFeed) external onlyOwner {\n uint256 latestPrice = setAddress(0, _mainPriceFeed);\n setAddress(1, _backupPriceFeed);\n\n _storePrice(latestPrice);\n }\n\n // --- Functions ---\n\n /// @notice Returns the latest price obtained from the Oracle. Called by Zero functions that require a current price.\n /// It uses the main price feed and fallback to the backup one in case of an error. If both fail return the last\n /// good price seen. Function will rever if got false success flag from the medianizer contract.\n /// @dev It's also callable by anyone externally\n /// @return The price\n function fetchPrice() external override returns (uint256) {\n for (uint8 index = 0; index < 2; index++) {\n (uint256 price, bool success) = priceFeeds[index].latestAnswer();\n if (success) {\n _storePrice(price);\n return price;\n } else {\n emit PriceFeedBroken(index, address(priceFeeds[index]));\n }\n }\n \n revert(\"PriceFeed: Price feed price is stale\");\n }\n\n /// @notice Allows users to setup the main and the backup price feeds\n /// @param _index the oracle to be configured\n /// @param _newPriceFeed address where an IExternalPriceFeed implementation is located\n /// @return price the latest price of the inserted price feed\n function setAddress(uint8 _index, address _newPriceFeed) public onlyOwner returns (uint256) {\n require(_index < priceFeeds.length, \"Out of bounds when setting the price feed\");\n checkContract(_newPriceFeed);\n priceFeeds[_index] = IExternalPriceFeed(_newPriceFeed);\n (uint256 price, bool _) = priceFeeds[_index].latestAnswer();\n emit PriceFeedUpdated(_index, _newPriceFeed);\n return price;\n }\n\n // --- Helper functions ---\n function _storePrice(uint256 _currentPrice) internal {\n lastGoodPrice = _currentPrice;\n emit LastGoodPriceUpdated(_currentPrice);\n }\n\n function getPriceFeedAtIndex(uint8 _index) external view returns(address) {\n return address(priceFeeds[_index]);\n }\n}\n" + }, + "contracts/PriceFeedStorage.sol": { + "content": "// SPDX-License-Identifier: MIT\n\npragma solidity 0.6.11;\n\nimport \"./Interfaces/IPriceFeed.sol\";\nimport \"./Dependencies/Ownable.sol\";\nimport \"./Dependencies/PriceFeed/IExternalPriceFeed.sol\";\nimport \"./Dependencies/CheckContract.sol\";\n\ncontract PriceFeedStorage is Ownable, CheckContract {\n string public constant NAME = \"PriceFeed\";\n\n IExternalPriceFeed[2] priceFeeds;\n\n // The last good price seen from an oracle by Zero\n uint256 public lastGoodPrice;\n}\n" + }, + "contracts/Proxy/BorrowerOperationsScript.sol": { + "content": "// SPDX-License-Identifier: MIT\n\npragma solidity 0.6.11;\n\nimport \"../Dependencies/CheckContract.sol\";\nimport \"../Interfaces/IBorrowerOperations.sol\";\n\n\ncontract BorrowerOperationsScript is CheckContract {\n IBorrowerOperations immutable borrowerOperations;\n\n constructor(IBorrowerOperations _borrowerOperations) public {\n checkContract(address(_borrowerOperations));\n borrowerOperations = _borrowerOperations;\n }\n\n function openTrove(uint _maxFee, uint _ZUSDAmount, address _upperHint, address _lowerHint) external payable {\n borrowerOperations.openTrove{ value: msg.value }(_maxFee, _ZUSDAmount, _upperHint, _lowerHint);\n }\n\n function addColl(address _upperHint, address _lowerHint) external payable {\n borrowerOperations.addColl{ value: msg.value }(_upperHint, _lowerHint);\n }\n\n function withdrawColl(uint _amount, address _upperHint, address _lowerHint) external {\n borrowerOperations.withdrawColl(_amount, _upperHint, _lowerHint);\n }\n\n function withdrawZUSD(uint _maxFee, uint _amount, address _upperHint, address _lowerHint) external {\n borrowerOperations.withdrawZUSD(_maxFee, _amount, _upperHint, _lowerHint);\n }\n\n function repayZUSD(uint _amount, address _upperHint, address _lowerHint) external {\n borrowerOperations.repayZUSD(_amount, _upperHint, _lowerHint);\n }\n\n function closeTrove() external {\n borrowerOperations.closeTrove();\n }\n\n function adjustTrove(uint _maxFee, uint _collWithdrawal, uint _debtChange, bool isDebtIncrease, address _upperHint, address _lowerHint) external payable {\n borrowerOperations.adjustTrove{ value: msg.value }(_maxFee, _collWithdrawal, _debtChange, isDebtIncrease, _upperHint, _lowerHint);\n }\n\n function claimCollateral() external {\n borrowerOperations.claimCollateral();\n }\n}\n" + }, + "contracts/Proxy/BorrowerWrappersScript.sol": { + "content": "// SPDX-License-Identifier: MIT\n\npragma solidity 0.6.11;\n\nimport \"../Dependencies/SafeMath.sol\";\nimport \"../Dependencies/LiquityMath.sol\";\nimport \"../Dependencies/IERC20.sol\";\nimport \"../Interfaces/IBorrowerOperations.sol\";\nimport \"../Interfaces/ITroveManager.sol\";\nimport \"../Interfaces/IStabilityPool.sol\";\nimport \"../Interfaces/IPriceFeed.sol\";\nimport \"../Interfaces/IZEROStaking.sol\";\nimport \"./BorrowerOperationsScript.sol\";\nimport \"./ETHTransferScript.sol\";\nimport \"./ZEROStakingScript.sol\";\nimport \"../Dependencies/console.sol\";\n\n\ncontract BorrowerWrappersScript is BorrowerOperationsScript, ETHTransferScript, ZEROStakingScript {\n using SafeMath for uint;\n\n string constant public NAME = \"BorrowerWrappersScript\";\n\n ITroveManager immutable troveManager;\n IStabilityPool immutable stabilityPool;\n IPriceFeed immutable priceFeed;\n IERC20 immutable zusdToken;\n IERC20 immutable zeroToken;\n IZEROStaking immutable zeroStaking;\n\n constructor(\n address _borrowerOperationsAddress,\n address _troveManagerAddress,\n address _zeroStakingAddress,\n address _stabilityPoolAddress,\n address _priceFeedAddress,\n address _zusdTokenAddress,\n address _zeroTokenAddress\n )\n BorrowerOperationsScript(IBorrowerOperations(_borrowerOperationsAddress))\n ZEROStakingScript(_zeroStakingAddress)\n public\n {\n checkContract(_troveManagerAddress);\n ITroveManager troveManagerCached = ITroveManager(_troveManagerAddress);\n troveManager = troveManagerCached;\n\n IStabilityPool stabilityPoolCached = IStabilityPool(_stabilityPoolAddress);\n checkContract(_stabilityPoolAddress);\n stabilityPool = stabilityPoolCached;\n\n IPriceFeed priceFeedCached = IPriceFeed(_priceFeedAddress); \n checkContract(_priceFeedAddress);\n priceFeed = priceFeedCached;\n\n checkContract(_zusdTokenAddress);\n zusdToken = IERC20(_zusdTokenAddress);\n\n checkContract(_zeroTokenAddress);\n zeroToken = IERC20(_zeroTokenAddress);\n\n IZEROStaking zeroStakingCached = IZEROStaking(_zeroStakingAddress);\n checkContract(_zeroStakingAddress);\n zeroStaking = zeroStakingCached;\n }\n\n function claimCollateralAndOpenTrove(uint _maxFee, uint _ZUSDAmount, address _upperHint, address _lowerHint) external payable {\n uint balanceBefore = address(this).balance;\n\n // Claim collateral\n borrowerOperations.claimCollateral();\n\n uint balanceAfter = address(this).balance;\n\n // already checked in CollSurplusPool\n assert(balanceAfter > balanceBefore);\n\n uint totalCollateral = balanceAfter.sub(balanceBefore).add(msg.value);\n\n // Open trove with obtained collateral, plus collateral sent by user\n borrowerOperations.openTrove{ value: totalCollateral }(_maxFee, _ZUSDAmount, _upperHint, _lowerHint);\n }\n\n function claimSPRewardsAndRecycle(uint _maxFee, address _upperHint, address _lowerHint) external {\n uint collBalanceBefore = address(this).balance;\n uint zeroBalanceBefore = zeroToken.balanceOf(address(this));\n\n // Claim rewards\n stabilityPool.withdrawFromSP(0);\n\n uint collBalanceAfter = address(this).balance;\n uint zeroBalanceAfter = zeroToken.balanceOf(address(this));\n uint claimedCollateral = collBalanceAfter.sub(collBalanceBefore);\n\n // Add claimed ETH to trove, get more ZUSD and stake it into the Stability Pool\n if (claimedCollateral > 0) {\n _requireUserHasTrove(address(this));\n uint ZUSDAmount = _getNetZUSDAmount(claimedCollateral);\n borrowerOperations.adjustTrove{ value: claimedCollateral }(_maxFee, 0, ZUSDAmount, true, _upperHint, _lowerHint);\n // Provide withdrawn ZUSD to Stability Pool\n if (ZUSDAmount > 0) {\n stabilityPool.provideToSP(ZUSDAmount, address(0));\n }\n }\n\n // Stake claimed ZERO\n uint claimedZERO = zeroBalanceAfter.sub(zeroBalanceBefore);\n if (claimedZERO > 0) {\n zeroStaking.stake(claimedZERO);\n }\n }\n\n function claimStakingGainsAndRecycle(uint _maxFee, address _upperHint, address _lowerHint) external {\n uint collBalanceBefore = address(this).balance;\n uint zusdBalanceBefore = zusdToken.balanceOf(address(this));\n uint zeroBalanceBefore = zeroToken.balanceOf(address(this));\n\n // Claim gains\n zeroStaking.unstake(0);\n\n uint gainedCollateral = address(this).balance.sub(collBalanceBefore); // stack too deep issues :'(\n uint gainedZUSD = zusdToken.balanceOf(address(this)).sub(zusdBalanceBefore);\n\n uint netZUSDAmount;\n // Top up trove and get more ZUSD, keeping ICR constant\n if (gainedCollateral > 0) {\n _requireUserHasTrove(address(this));\n netZUSDAmount = _getNetZUSDAmount(gainedCollateral);\n borrowerOperations.adjustTrove{ value: gainedCollateral }(_maxFee, 0, netZUSDAmount, true, _upperHint, _lowerHint);\n }\n\n uint totalZUSD = gainedZUSD.add(netZUSDAmount);\n if (totalZUSD > 0) {\n stabilityPool.provideToSP(totalZUSD, address(0));\n\n // Providing to Stability Pool also triggers ZERO claim, so stake it if any\n uint zeroBalanceAfter = zeroToken.balanceOf(address(this));\n uint claimedZERO = zeroBalanceAfter.sub(zeroBalanceBefore);\n if (claimedZERO > 0) {\n zeroStaking.stake(claimedZERO);\n }\n }\n\n }\n\n function _getNetZUSDAmount(uint _collateral) internal returns (uint) {\n uint price = priceFeed.fetchPrice();\n uint ICR = troveManager.getCurrentICR(address(this), price);\n\n uint ZUSDAmount = _collateral.mul(price).div(ICR);\n uint borrowingRate = troveManager.getBorrowingRateWithDecay();\n uint netDebt = ZUSDAmount.mul(LiquityMath.DECIMAL_PRECISION).div(LiquityMath.DECIMAL_PRECISION.add(borrowingRate));\n\n return netDebt;\n }\n\n function _requireUserHasTrove(address _depositor) internal view {\n require(troveManager.getTroveStatus(_depositor) == 1, \"BorrowerWrappersScript: caller must have an active trove\");\n }\n}\n" + }, + "contracts/Proxy/ETHTransferScript.sol": { + "content": "// SPDX-License-Identifier: MIT\n\npragma solidity 0.6.11;\n\n\ncontract ETHTransferScript {\n function transferETH(address _recipient, uint256 _amount) external returns (bool) {\n (bool success, ) = _recipient.call{value: _amount}(\"\");\n return success;\n }\n}\n" + }, + "contracts/Proxy/Proxy.sol": { + "content": "// SPDX-License-Identifier: MIT\npragma solidity 0.6.11;\n\nimport \"../Dependencies/Ownable.sol\";\n/**\n * @title Base Proxy contract.\n * \n * Adapted version of https://github.com/DistributedCollective/Sovryn-smart-contracts/blob/development/contracts/proxy/Proxy.sol \n *\n * @notice The proxy performs delegated calls to the contract implementation\n * it is pointing to. This way upgradable contracts are possible on blockchain.\n *\n * Delegating proxy contracts are widely used for both upgradeability and gas\n * savings. These proxies rely on a logic contract (also known as implementation\n * contract or master copy) that is called using delegatecall. This allows\n * proxies to keep a persistent state (storage and balance) while the code is\n * delegated to the logic contract.\n *\n * Proxy contract is meant to be inherited and its internal functions\n * _setImplementation and _setOwner to be called when upgrades become\n * neccessary.\n *\n * The loan token (iToken) contract as well as the protocol contract act as\n * proxies, delegating all calls to underlying contracts. Therefore, if you\n * want to interact with them using web3, you need to use the ABIs from the\n * contracts containing the actual logic or the interface contract.\n * ABI for LoanToken contracts: LoanTokenLogicStandard\n * ABI for Protocol contract: ISovryn\n *\n * @dev UpgradableProxy is the contract that inherits Proxy and wraps these\n * functions.\n * */\ncontract Proxy is Ownable {\n bytes32 private constant KEY_IMPLEMENTATION = keccak256(\"key.implementation\");\n\n event ImplementationChanged(\n address indexed _oldImplementation,\n address indexed _newImplementation\n );\n\n /**\n * @notice Set address of the implementation.\n * @param _implementation Address of the implementation.\n * */\n function _setImplementation(address _implementation) internal {\n require(_implementation != address(0), \"Proxy::setImplementation: invalid address\");\n emit ImplementationChanged(getImplementation(), _implementation);\n\n bytes32 key = KEY_IMPLEMENTATION;\n assembly {\n sstore(key, _implementation)\n }\n }\n\n /**\n * @notice Return address of the implementation.\n * @return _implementation Address of the implementation.\n * */\n function getImplementation() public view returns (address _implementation) {\n bytes32 key = KEY_IMPLEMENTATION;\n assembly {\n _implementation := sload(key)\n }\n }\n\n /**\n * @notice Fallback function performs a delegate call\n * to the actual implementation address is pointing this proxy.\n * Returns whatever the implementation call returns.\n * */\n fallback() external payable {\n delegate();\n }\n\n /**\n * @notice Fallback function performs a delegate call\n * to the actual implementation address is pointing this proxy.\n * Returns whatever the implementation call returns.\n * */\n receive() external payable {\n delegate();\n }\n\n function delegate() internal {\n address implementation = getImplementation();\n require(implementation != address(0), \"Proxy::(): implementation not found\");\n\n assembly {\n let pointer := mload(0x40)\n calldatacopy(pointer, 0, calldatasize())\n let result := delegatecall(gas(), implementation, pointer, calldatasize(), 0, 0)\n let size := returndatasize()\n returndatacopy(pointer, 0, size)\n\n switch result\n case 0 {\n revert(pointer, size)\n }\n default {\n return(pointer, size)\n }\n }\n }\n}\n" + }, + "contracts/Proxy/StabilityPoolScript.sol": { + "content": "// SPDX-License-Identifier: MIT\n\npragma solidity 0.6.11;\n\nimport \"../Dependencies/CheckContract.sol\";\nimport \"../Interfaces/IStabilityPool.sol\";\n\n\ncontract StabilityPoolScript is CheckContract {\n string constant public NAME = \"StabilityPoolScript\";\n\n IStabilityPool immutable stabilityPool;\n\n constructor(IStabilityPool _stabilityPool) public {\n checkContract(address(_stabilityPool));\n stabilityPool = _stabilityPool;\n }\n\n function provideToSP(uint _amount, address _frontEndTag) external {\n stabilityPool.provideToSP(_amount, _frontEndTag);\n }\n\n function withdrawFromSP(uint _amount) external {\n stabilityPool.withdrawFromSP(_amount);\n }\n\n function withdrawETHGainToTrove(address _upperHint, address _lowerHint) external {\n stabilityPool.withdrawETHGainToTrove(_upperHint, _lowerHint);\n }\n}\n" + }, + "contracts/Proxy/TokenScript.sol": { + "content": "// SPDX-License-Identifier: MIT\n\npragma solidity 0.6.11;\n\nimport \"../Dependencies/CheckContract.sol\";\nimport \"../Dependencies/IERC20.sol\";\n\n\ncontract TokenScript is CheckContract {\n string constant public NAME = \"TokenScript\";\n\n IERC20 immutable token;\n\n constructor(address _tokenAddress) public {\n checkContract(_tokenAddress);\n token = IERC20(_tokenAddress);\n }\n\n function transfer(address recipient, uint256 amount) external returns (bool) {\n token.transfer(recipient, amount);\n }\n\n function allowance(address owner, address spender) external view returns (uint256) {\n token.allowance(owner, spender);\n }\n\n function approve(address spender, uint256 amount) external returns (bool) {\n token.approve(spender, amount);\n }\n\n function transferFrom(address sender, address recipient, uint256 amount) external returns (bool) {\n token.transferFrom(sender, recipient, amount);\n }\n\n function increaseAllowance(address spender, uint256 addedValue) external returns (bool) {\n token.increaseAllowance(spender, addedValue);\n }\n\n function decreaseAllowance(address spender, uint256 subtractedValue) external returns (bool) {\n token.decreaseAllowance(spender, subtractedValue);\n }\n}\n" + }, + "contracts/Proxy/TroveManagerScript.sol": { + "content": "// SPDX-License-Identifier: MIT\n\npragma solidity 0.6.11;\n\nimport \"../Dependencies/CheckContract.sol\";\nimport \"../Interfaces/ITroveManager.sol\";\n\n\ncontract TroveManagerScript is CheckContract {\n string constant public NAME = \"TroveManagerScript\";\n\n ITroveManager immutable troveManager;\n\n constructor(ITroveManager _troveManager) public {\n checkContract(address(_troveManager));\n troveManager = _troveManager;\n }\n\n function redeemCollateral(\n uint _ZUSDAmount,\n address _firstRedemptionHint,\n address _upperPartialRedemptionHint,\n address _lowerPartialRedemptionHint,\n uint _partialRedemptionHintNICR,\n uint _maxIterations,\n uint _maxFee\n ) external returns (uint) {\n troveManager.redeemCollateral(\n _ZUSDAmount,\n _firstRedemptionHint,\n _upperPartialRedemptionHint,\n _lowerPartialRedemptionHint,\n _partialRedemptionHintNICR,\n _maxIterations,\n _maxFee\n );\n }\n}\n" + }, + "contracts/Proxy/UpgradableProxy.sol": { + "content": "// SPDX-License-Identifier: MIT\npragma solidity 0.6.11;\n\nimport \"./Proxy.sol\";\n\n/**\n * @title Upgradable Proxy contract.\n *\n * Adapted version of https://github.com/DistributedCollective/Sovryn-smart-contracts/blob/development/contracts/proxy/UpgradableProxy.sol\n * \n * @notice A disadvantage of the immutable ledger is that nobody can change the\n * source code of a smart contract after it’s been deployed. In order to fix\n * bugs or introduce new features, smart contracts need to be upgradable somehow.\n *\n * Although it is not possible to upgrade the code of an already deployed smart\n * contract, it is possible to set-up a proxy contract architecture that will\n * allow to use new deployed contracts as if the main logic had been upgraded.\n *\n * A proxy architecture pattern is such that all message calls go through a\n * Proxy contract that will redirect them to the latest deployed contract logic.\n * To upgrade, a new version of the contract is deployed, and the Proxy is\n * updated to reference the new contract address.\n * */\ncontract UpgradableProxy is Proxy {\n /**\n * @notice Set address of the implementation.\n * @dev Wrapper for _setImplementation that exposes the function\n * as public for owner to be able to set a new version of the\n * contract as current pointing implementation.\n * @param _implementation Address of the implementation.\n * */\n function setImplementation(address _implementation) public onlyOwner {\n _setImplementation(_implementation);\n }\n\n}\n" + }, + "contracts/Proxy/ZEROStakingScript.sol": { + "content": "// SPDX-License-Identifier: MIT\n\npragma solidity 0.6.11;\n\nimport \"../Dependencies/CheckContract.sol\";\nimport \"../Interfaces/IZEROStaking.sol\";\n\n\ncontract ZEROStakingScript is CheckContract {\n IZEROStaking immutable ZEROStaking;\n\n constructor(address _zeroStakingAddress) public {\n checkContract(_zeroStakingAddress);\n ZEROStaking = IZEROStaking(_zeroStakingAddress);\n }\n\n function stake(uint _ZEROamount) external {\n ZEROStaking.stake(_ZEROamount);\n }\n}\n" + }, + "contracts/SortedTroves.sol": { + "content": "// SPDX-License-Identifier: MIT\n\npragma solidity 0.6.11;\n\nimport \"./Interfaces/ISortedTroves.sol\";\nimport \"./Interfaces/ITroveManager.sol\";\nimport \"./Interfaces/IBorrowerOperations.sol\";\nimport \"./Dependencies/SafeMath.sol\";\nimport \"./SortedTrovesStorage.sol\";\nimport \"./Dependencies/CheckContract.sol\";\nimport \"./Dependencies/console.sol\";\n\n/**\n * A sorted doubly linked list with nodes sorted in descending order.\n *\n * Nodes map to active Troves in the system - the ID property is the address of a Trove owner.\n * Nodes are ordered according to their current nominal individual collateral ratio (NICR),\n * which is like the ICR but without the price, i.e., just collateral / debt.\n *\n * The list optionally accepts insert position hints.\n *\n * NICRs are computed dynamically at runtime, and not stored on the Node. This is because NICRs of active Troves\n * change dynamically as liquidation events occur.\n *\n * The list relies on the fact that liquidation events preserve ordering: a liquidation decreases the NICRs of all active Troves,\n * but maintains their order. A node inserted based on current NICR will maintain the correct position,\n * relative to it's peers, as rewards accumulate, as long as it's raw collateral and debt have not changed.\n * Thus, Nodes remain sorted by current NICR.\n *\n * Nodes need only be re-inserted upon a Trove operation - when the owner adds or removes collateral or debt\n * to their position.\n *\n * The list is a modification of the following audited SortedDoublyLinkedList:\n * https://github.com/livepeer/protocol/blob/master/contracts/libraries/SortedDoublyLL.sol\n *\n *\n * Changes made in the Zero implementation:\n *\n * - Keys have been removed from nodes\n *\n * - Ordering checks for insertion are performed by comparing an NICR argument to the current NICR, calculated at runtime.\n * The list relies on the property that ordering by ICR is maintained as the ETH:USD price varies.\n *\n * - Public functions with parameters have been made internal to save gas, and given an external wrapper function for external access\n */\ncontract SortedTroves is SortedTrovesStorage, CheckContract, ISortedTroves {\n using SafeMath for uint256;\n\n event TroveManagerAddressChanged(address _troveManagerAddress);\n event BorrowerOperationsAddressChanged(address _borrowerOperationsAddress);\n event NodeAdded(address _id, uint256 _NICR);\n event NodeRemoved(address _id);\n\n // --- Dependency setters ---\n\n function setParams(\n uint256 _size,\n address _troveManagerAddress,\n address _borrowerOperationsAddress\n ) external override onlyOwner {\n require(_size > 0, \"SortedTroves: Size can’t be zero\");\n checkContract(_troveManagerAddress);\n checkContract(_borrowerOperationsAddress);\n\n data.maxSize = _size;\n\n troveManager = ITroveManager(_troveManagerAddress);\n borrowerOperationsAddress = _borrowerOperationsAddress;\n\n emit TroveManagerAddressChanged(_troveManagerAddress);\n emit BorrowerOperationsAddressChanged(_borrowerOperationsAddress);\n }\n\n /**\n * @dev Add a node to the list\n * @param _id Node's id\n * @param _NICR Node's NICR\n * @param _prevId Id of previous node for the insert position\n * @param _nextId Id of next node for the insert position\n */\n\n function insert(\n address _id,\n uint256 _NICR,\n address _prevId,\n address _nextId\n ) external override {\n ITroveManager troveManagerCached = troveManager;\n\n _requireCallerIsBOorTroveM(troveManagerCached);\n _insert(troveManagerCached, _id, _NICR, _prevId, _nextId);\n }\n\n function _insert(\n ITroveManager _troveManager,\n address _id,\n uint256 _NICR,\n address _prevId,\n address _nextId\n ) internal {\n // List must not be full\n require(!isFull(), \"SortedTroves: List is full\");\n // List must not already contain node\n require(!contains(_id), \"SortedTroves: List already contains the node\");\n // Node id must not be null\n require(_id != address(0), \"SortedTroves: Id cannot be zero\");\n // NICR must be non-zero\n require(_NICR > 0, \"SortedTroves: NICR must be positive\");\n\n address prevId = _prevId;\n address nextId = _nextId;\n\n if (!_validInsertPosition(_troveManager, _NICR, prevId, nextId)) {\n // Sender's hint was not a valid insert position\n // Use sender's hint to find a valid insert position\n (prevId, nextId) = _findInsertPosition(_troveManager, _NICR, prevId, nextId);\n }\n\n data.nodes[_id].exists = true;\n\n if (prevId == address(0) && nextId == address(0)) {\n // Insert as head and tail\n data.head = _id;\n data.tail = _id;\n } else if (prevId == address(0)) {\n // Insert before `prevId` as the head\n data.nodes[_id].nextId = data.head;\n data.nodes[data.head].prevId = _id;\n data.head = _id;\n } else if (nextId == address(0)) {\n // Insert after `nextId` as the tail\n data.nodes[_id].prevId = data.tail;\n data.nodes[data.tail].nextId = _id;\n data.tail = _id;\n } else {\n // Insert at insert position between `prevId` and `nextId`\n data.nodes[_id].nextId = nextId;\n data.nodes[_id].prevId = prevId;\n data.nodes[prevId].nextId = _id;\n data.nodes[nextId].prevId = _id;\n }\n\n data.size = data.size.add(1);\n emit NodeAdded(_id, _NICR);\n }\n\n function remove(address _id) external override {\n _requireCallerIsTroveManager();\n _remove(_id);\n }\n\n /**\n * @dev Remove a node from the list\n * @param _id Node's id\n */\n function _remove(address _id) internal {\n // List must contain the node\n require(contains(_id), \"SortedTroves: List does not contain the id\");\n\n if (data.size > 1) {\n // List contains more than a single node\n if (_id == data.head) {\n // The removed node is the head\n // Set head to next node\n data.head = data.nodes[_id].nextId;\n // Set prev pointer of new head to null\n data.nodes[data.head].prevId = address(0);\n } else if (_id == data.tail) {\n // The removed node is the tail\n // Set tail to previous node\n data.tail = data.nodes[_id].prevId;\n // Set next pointer of new tail to null\n data.nodes[data.tail].nextId = address(0);\n } else {\n // The removed node is neither the head nor the tail\n // Set next pointer of previous node to the next node\n data.nodes[data.nodes[_id].prevId].nextId = data.nodes[_id].nextId;\n // Set prev pointer of next node to the previous node\n data.nodes[data.nodes[_id].nextId].prevId = data.nodes[_id].prevId;\n }\n } else {\n // List contains a single node\n // Set the head and tail to null\n data.head = address(0);\n data.tail = address(0);\n }\n\n delete data.nodes[_id];\n data.size = data.size.sub(1);\n NodeRemoved(_id);\n }\n\n /**\n * @dev Re-insert the node at a new position, based on its new NICR\n * @param _id Node's id\n * @param _newNICR Node's new NICR\n * @param _prevId Id of previous node for the new insert position\n * @param _nextId Id of next node for the new insert position\n */\n function reInsert(\n address _id,\n uint256 _newNICR,\n address _prevId,\n address _nextId\n ) external override {\n ITroveManager troveManagerCached = troveManager;\n\n _requireCallerIsBOorTroveM(troveManagerCached);\n // List must contain the node\n require(contains(_id), \"SortedTroves: List does not contain the id\");\n // NICR must be non-zero\n require(_newNICR > 0, \"SortedTroves: NICR must be positive\");\n\n // Remove node from the list\n _remove(_id);\n\n _insert(troveManagerCached, _id, _newNICR, _prevId, _nextId);\n }\n\n /**\n * @dev Checks if the list contains a node\n */\n function contains(address _id) public view override returns (bool) {\n return data.nodes[_id].exists;\n }\n\n /**\n * @dev Checks if the list is full\n */\n function isFull() public view override returns (bool) {\n return data.size == data.maxSize;\n }\n\n /**\n * @dev Checks if the list is empty\n */\n function isEmpty() public view override returns (bool) {\n return data.size == 0;\n }\n\n /**\n * @dev Returns the current size of the list\n */\n function getSize() external view override returns (uint256) {\n return data.size;\n }\n\n /**\n * @dev Returns the maximum size of the list\n */\n function getMaxSize() external view override returns (uint256) {\n return data.maxSize;\n }\n\n /**\n * @dev Returns the first node in the list (node with the largest NICR)\n */\n function getFirst() external view override returns (address) {\n return data.head;\n }\n\n /**\n * @dev Returns the last node in the list (node with the smallest NICR)\n */\n function getLast() external view override returns (address) {\n return data.tail;\n }\n\n /**\n * @dev Returns the next node (with a smaller NICR) in the list for a given node\n * @param _id Node's id\n */\n function getNext(address _id) external view override returns (address) {\n return data.nodes[_id].nextId;\n }\n\n /**\n * @dev Returns the previous node (with a larger NICR) in the list for a given node\n * @param _id Node's id\n */\n function getPrev(address _id) external view override returns (address) {\n return data.nodes[_id].prevId;\n }\n\n /**\n * @dev Check if a pair of nodes is a valid insertion point for a new node with the given NICR\n * @param _NICR Node's NICR\n * @param _prevId Id of previous node for the insert position\n * @param _nextId Id of next node for the insert position\n */\n function validInsertPosition(\n uint256 _NICR,\n address _prevId,\n address _nextId\n ) external view override returns (bool) {\n return _validInsertPosition(troveManager, _NICR, _prevId, _nextId);\n }\n\n function _validInsertPosition(\n ITroveManager _troveManager,\n uint256 _NICR,\n address _prevId,\n address _nextId\n ) internal view returns (bool) {\n if (_prevId == address(0) && _nextId == address(0)) {\n // `(null, null)` is a valid insert position if the list is empty\n return isEmpty();\n } else if (_prevId == address(0)) {\n // `(null, _nextId)` is a valid insert position if `_nextId` is the head of the list\n return data.head == _nextId && _NICR >= _troveManager.getNominalICR(_nextId);\n } else if (_nextId == address(0)) {\n // `(_prevId, null)` is a valid insert position if `_prevId` is the tail of the list\n return data.tail == _prevId && _NICR <= _troveManager.getNominalICR(_prevId);\n } else {\n // `(_prevId, _nextId)` is a valid insert position if they are adjacent nodes and `_NICR` falls between the two nodes' NICRs\n return\n data.nodes[_prevId].nextId == _nextId &&\n _troveManager.getNominalICR(_prevId) >= _NICR &&\n _NICR >= _troveManager.getNominalICR(_nextId);\n }\n }\n\n /**\n * @dev Descend the list (larger NICRs to smaller NICRs) to find a valid insert position\n * @param _troveManager TroveManager contract, passed in as param to save SLOAD’s\n * @param _NICR Node's NICR\n * @param _startId Id of node to start descending the list from\n */\n function _descendList(\n ITroveManager _troveManager,\n uint256 _NICR,\n address _startId\n ) internal view returns (address, address) {\n // If `_startId` is the head, check if the insert position is before the head\n if (data.head == _startId && _NICR >= _troveManager.getNominalICR(_startId)) {\n return (address(0), _startId);\n }\n\n address prevId = _startId;\n address nextId = data.nodes[prevId].nextId;\n\n // Descend the list until we reach the end or until we find a valid insert position\n while (\n prevId != address(0) && !_validInsertPosition(_troveManager, _NICR, prevId, nextId)\n ) {\n prevId = data.nodes[prevId].nextId;\n nextId = data.nodes[prevId].nextId;\n }\n\n return (prevId, nextId);\n }\n\n /**\n * @dev Ascend the list (smaller NICRs to larger NICRs) to find a valid insert position\n * @param _troveManager TroveManager contract, passed in as param to save SLOAD’s\n * @param _NICR Node's NICR\n * @param _startId Id of node to start ascending the list from\n */\n function _ascendList(\n ITroveManager _troveManager,\n uint256 _NICR,\n address _startId\n ) internal view returns (address, address) {\n // If `_startId` is the tail, check if the insert position is after the tail\n if (data.tail == _startId && _NICR <= _troveManager.getNominalICR(_startId)) {\n return (_startId, address(0));\n }\n\n address nextId = _startId;\n address prevId = data.nodes[nextId].prevId;\n\n // Ascend the list until we reach the end or until we find a valid insertion point\n while (\n nextId != address(0) && !_validInsertPosition(_troveManager, _NICR, prevId, nextId)\n ) {\n nextId = data.nodes[nextId].prevId;\n prevId = data.nodes[nextId].prevId;\n }\n\n return (prevId, nextId);\n }\n\n /**\n * @dev Find the insert position for a new node with the given NICR\n * @param _NICR Node's NICR\n * @param _prevId Id of previous node for the insert position\n * @param _nextId Id of next node for the insert position\n */\n function findInsertPosition(\n uint256 _NICR,\n address _prevId,\n address _nextId\n ) external view override returns (address, address) {\n return _findInsertPosition(troveManager, _NICR, _prevId, _nextId);\n }\n\n function _findInsertPosition(\n ITroveManager _troveManager,\n uint256 _NICR,\n address _prevId,\n address _nextId\n ) internal view returns (address, address) {\n address prevId = _prevId;\n address nextId = _nextId;\n\n if (prevId != address(0)) {\n if (!contains(prevId) || _NICR > _troveManager.getNominalICR(prevId)) {\n // `prevId` does not exist anymore or now has a smaller NICR than the given NICR\n prevId = address(0);\n }\n }\n\n if (nextId != address(0)) {\n if (!contains(nextId) || _NICR < _troveManager.getNominalICR(nextId)) {\n // `nextId` does not exist anymore or now has a larger NICR than the given NICR\n nextId = address(0);\n }\n }\n\n if (prevId == address(0) && nextId == address(0)) {\n // No hint - descend list starting from head\n return _descendList(_troveManager, _NICR, data.head);\n } else if (prevId == address(0)) {\n // No `prevId` for hint - ascend list starting from `nextId`\n return _ascendList(_troveManager, _NICR, nextId);\n } else if (nextId == address(0)) {\n // No `nextId` for hint - descend list starting from `prevId`\n return _descendList(_troveManager, _NICR, prevId);\n } else {\n // Descend list starting from `prevId`\n return _descendList(_troveManager, _NICR, prevId);\n }\n }\n\n // --- 'require' functions ---\n\n function _requireCallerIsTroveManager() internal view {\n require(\n msg.sender == address(troveManager),\n \"SortedTroves: Caller is not the TroveManager\"\n );\n }\n\n function _requireCallerIsBOorTroveM(ITroveManager _troveManager) internal view {\n require(\n msg.sender == borrowerOperationsAddress || msg.sender == address(_troveManager),\n \"SortedTroves: Caller is neither BO nor TroveM\"\n );\n }\n}\n" + }, + "contracts/SortedTrovesStorage.sol": { + "content": "// SPDX-License-Identifier: MIT\n\npragma solidity 0.6.11;\n\nimport \"./Interfaces/ISortedTroves.sol\";\nimport \"./Interfaces/ITroveManager.sol\";\nimport \"./Interfaces/IBorrowerOperations.sol\";\nimport \"./Dependencies/Ownable.sol\";\nimport \"./Dependencies/CheckContract.sol\";\nimport \"./Dependencies/console.sol\";\n\ncontract SortedTrovesStorage is Ownable {\n string public constant NAME = \"SortedTroves\";\n\n address public borrowerOperationsAddress;\n\n ITroveManager public troveManager;\n\n // Information for a node in the list\n struct Node {\n bool exists;\n address nextId; // Id of next node (smaller NICR) in the list\n address prevId; // Id of previous node (larger NICR) in the list\n }\n\n // Information for the list\n struct Data {\n address head; // Head of the list. Also the node in the list with the largest NICR\n address tail; // Tail of the list. Also the node in the list with the smallest NICR\n uint256 maxSize; // Maximum size of the list\n uint256 size; // Current size of the list\n mapping(address => Node) nodes; // Track the corresponding ids for each node in the list\n }\n\n Data public data;\n}\n" + }, + "contracts/StabilityPool.sol": { + "content": "// SPDX-License-Identifier: MIT\n\npragma solidity 0.6.11;\npragma experimental ABIEncoderV2;\n\nimport \"./Interfaces/IBorrowerOperations.sol\";\nimport \"./Interfaces/IStabilityPool.sol\";\nimport \"./Interfaces/ITroveManager.sol\";\nimport \"./Interfaces/IZUSDToken.sol\";\nimport \"./Interfaces/ISortedTroves.sol\";\nimport \"./Interfaces/ICommunityIssuance.sol\";\nimport \"./Dependencies/LiquityBase.sol\";\nimport \"./Dependencies/LiquitySafeMath128.sol\";\nimport \"./Dependencies/CheckContract.sol\";\nimport \"./Dependencies/Mynt/MyntLib.sol\";\nimport \"./StabilityPoolStorage.sol\";\nimport \"./Interfaces/IPermit2.sol\";\n\n/**\n * The Stability Pool holds ZUSD tokens deposited by Stability Pool depositors.\n *\n * When a trove is liquidated, then depending on system conditions, some of its ZUSD debt gets offset with\n * ZUSD in the Stability Pool: that is, the offset debt evaporates, and an equal amount of ZUSD tokens in the Stability Pool is burned.\n *\n * Thus, a liquidation causes each depositor to receive a ZUSD loss, in proportion to their deposit as a share of total deposits.\n * They also receive an ETH gain, as the ETH collateral of the liquidated trove is distributed among Stability depositors,\n * in the same proportion.\n *\n * When a liquidation occurs, it depletes every deposit by the same fraction: for example, a liquidation that depletes 40%\n * of the total ZUSD in the Stability Pool, depletes 40% of each deposit.\n *\n * A deposit that has experienced a series of liquidations is termed a \"compounded deposit\": each liquidation depletes the deposit,\n * multiplying it by some factor in range ]0,1[\n *\n *\n * --- IMPLEMENTATION ---\n *\n * We use a highly scalable method of tracking deposits and ETH gains that has O(1) complexity.\n *\n * When a liquidation occurs, rather than updating each depositor's deposit and ETH gain, we simply update two state variables:\n * a product P, and a sum S.\n *\n * A mathematical manipulation allows us to factor out the initial deposit, and accurately track all depositors' compounded deposits\n * and accumulated ETH gains over time, as liquidations occur, using just these two variables P and S. When depositors join the\n * Stability Pool, they get a snapshot of the latest P and S: P_t and S_t, respectively.\n *\n * The formula for a depositor's accumulated ETH gain is derived here:\n * https://github.com/liquity/dev/blob/main/packages/contracts/mathProofs/Scalable%20Compounding%20Stability%20Pool%20Deposits.pdf\n *\n * For a given deposit d_t, the ratio P/P_t tells us the factor by which a deposit has decreased since it joined the Stability Pool,\n * and the term d_t * (S - S_t)/P_t gives us the deposit's total accumulated ETH gain.\n *\n * Each liquidation updates the product P and sum S. After a series of liquidations, a compounded deposit and corresponding ETH gain\n * can be calculated using the initial deposit, the depositor’s snapshots of P and S, and the latest values of P and S.\n *\n * Any time a depositor updates their deposit (withdrawal, top-up) their accumulated ETH gain is paid out, their new deposit is recorded\n * (based on their latest compounded deposit and modified by the withdrawal/top-up), and they receive new snapshots of the latest P and S.\n * Essentially, they make a fresh deposit that overwrites the old one.\n *\n *\n * --- SCALE FACTOR ---\n *\n * Since P is a running product in range ]0,1] that is always-decreasing, it should never reach 0 when multiplied by a number in range ]0,1[.\n * Unfortunately, Solidity floor division always reaches 0, sooner or later.\n *\n * A series of liquidations that nearly empty the Pool (and thus each multiply P by a very small number in range ]0,1[ ) may push P\n * to its 18 digit decimal limit, and round it to 0, when in fact the Pool hasn't been emptied: this would break deposit tracking.\n *\n * So, to track P accurately, we use a scale factor: if a liquidation would cause P to decrease to <1e-9 (and be rounded to 0 by Solidity),\n * we first multiply P by 1e9, and increment a currentScale factor by 1.\n *\n * The added benefit of using 1e9 for the scale factor (rather than 1e18) is that it ensures negligible precision loss close to the\n * scale boundary: when P is at its minimum value of 1e9, the relative precision loss in P due to floor division is only on the\n * order of 1e-9.\n *\n * --- EPOCHS ---\n *\n * Whenever a liquidation fully empties the Stability Pool, all deposits should become 0. However, setting P to 0 would make P be 0\n * forever, and break all future reward calculations.\n *\n * So, every time the Stability Pool is emptied by a liquidation, we reset P = 1 and currentScale = 0, and increment the currentEpoch by 1.\n *\n * --- TRACKING DEPOSIT OVER SCALE CHANGES AND EPOCHS ---\n *\n * When a deposit is made, it gets snapshots of the currentEpoch and the currentScale.\n *\n * When calculating a compounded deposit, we compare the current epoch to the deposit's epoch snapshot. If the current epoch is newer,\n * then the deposit was present during a pool-emptying liquidation, and necessarily has been depleted to 0.\n *\n * Otherwise, we then compare the current scale to the deposit's scale snapshot. If they're equal, the compounded deposit is given by d_t * P/P_t.\n * If it spans one scale change, it is given by d_t * P/(P_t * 1e9). If it spans more than one scale change, we define the compounded deposit\n * as 0, since it is now less than 1e-9'th of its initial value (e.g. a deposit of 1 billion ZUSD has depleted to < 1 ZUSD).\n *\n *\n * --- TRACKING DEPOSITOR'S ETH GAIN OVER SCALE CHANGES AND EPOCHS ---\n *\n * In the current epoch, the latest value of S is stored upon each scale change, and the mapping (scale -> S) is stored for each epoch.\n *\n * This allows us to calculate a deposit's accumulated ETH gain, during the epoch in which the deposit was non-zero and earned ETH.\n *\n * We calculate the depositor's accumulated ETH gain for the scale at which they made the deposit, using the ETH gain formula:\n * e_1 = d_t * (S - S_t) / P_t\n *\n * and also for scale after, taking care to divide the latter by a factor of 1e9:\n * e_2 = d_t * S / (P_t * 1e9)\n *\n * The gain in the second scale will be full, as the starting point was in the previous scale, thus no need to subtract anything.\n * The deposit therefore was present for reward events from the beginning of that second scale.\n *\n * S_i-S_t + S_{i+1}\n * .<--------.------------>\n * . .\n * . S_i . S_{i+1}\n * <--.-------->.<----------->\n * S_t. .\n * <->. .\n * t .\n * |---+---------|-------------|-----...\n * i i+1\n *\n * The sum of (e_1 + e_2) captures the depositor's total accumulated ETH gain, handling the case where their\n * deposit spanned one scale change. We only care about gains across one scale change, since the compounded\n * deposit is defined as being 0 once it has spanned more than one scale change.\n *\n *\n * --- UPDATING P WHEN A LIQUIDATION OCCURS ---\n *\n * Please see the implementation spec in the proof document, which closely follows on from the compounded deposit / ETH gain derivations:\n * https://github.com/liquity/liquity/blob/master/papers/Scalable_Reward_Distribution_with_Compounding_Stakes.pdf\n *\n *\n * --- SOV ISSUANCE TO STABILITY POOL DEPOSITORS ---\n *\n * An SOV issuance event occurs at every deposit operation, and every liquidation.\n *\n * Each deposit is tagged with the address of the front end through which it was made.\n *\n * All deposits earn a share of the issued SOV in proportion to the deposit as a share of total deposits. The SOV earned\n * by a given deposit, is split between the depositor and the front end through which the deposit was made, based on the front end's kickbackRate.\n *\n * Please see the system Readme for an overview:\n * https://github.com/liquity/dev/blob/main/README.md#zero-issuance-to-stability-providers\n *\n * We use the same mathematical product-sum approach to track SOV gains for depositors, where 'G' is the sum corresponding to SOV gains.\n * The product P (and snapshot P_t) is re-used, as the ratio P/P_t tracks a deposit's depletion due to liquidations.\n *\n */\ncontract StabilityPool is LiquityBase, StabilityPoolStorage, CheckContract, IStabilityPool {\n using LiquitySafeMath128 for uint128;\n address private constant ADDRESS_ZERO = address(0);\n IPermit2 public immutable permit2;\n\n // --- Events ---\n\n event StabilityPoolETHBalanceUpdated(uint256 _newBalance);\n event StabilityPoolZUSDBalanceUpdated(uint256 _newBalance);\n\n event BorrowerOperationsAddressChanged(address _newBorrowerOperationsAddress);\n event TroveManagerAddressChanged(address _newTroveManagerAddress);\n event ActivePoolAddressChanged(address _newActivePoolAddress);\n event DefaultPoolAddressChanged(address _newDefaultPoolAddress);\n event ZUSDTokenAddressChanged(address _newZUSDTokenAddress);\n event SortedTrovesAddressChanged(address _newSortedTrovesAddress);\n event PriceFeedAddressChanged(address _newPriceFeedAddress);\n event CommunityIssuanceAddressChanged(address _newCommunityIssuanceAddress);\n\n event P_Updated(uint256 _P);\n event S_Updated(uint256 _S, uint128 _epoch, uint128 _scale);\n event G_Updated(uint256 _G, uint128 _epoch, uint128 _scale);\n event EpochUpdated(uint128 _currentEpoch);\n event ScaleUpdated(uint128 _currentScale);\n\n event FrontEndRegistered(address indexed _frontEnd, uint256 _kickbackRate);\n event FrontEndTagSet(address indexed _depositor, address indexed _frontEnd);\n\n event DepositSnapshotUpdated(address indexed _depositor, uint256 _P, uint256 _S, uint256 _G);\n event FrontEndSnapshotUpdated(address indexed _frontEnd, uint256 _P, uint256 _G);\n event UserDepositChanged(address indexed _depositor, uint256 _newDeposit);\n event FrontEndStakeChanged(\n address indexed _frontEnd,\n uint256 _newFrontEndStake,\n address _depositor\n );\n\n event ETHGainWithdrawn(address indexed _depositor, uint256 _ETH, uint256 _ZUSDLoss);\n event SOVPaidToDepositor(address indexed _depositor, uint256 _SOV);\n event SOVPaidToFrontEnd(address indexed _frontEnd, uint256 _SOV);\n event EtherSent(address _to, uint256 _amount);\n\n /** Constructor */\n constructor(address _permit2) public {\n permit2 = IPermit2(_permit2);\n }\n\n // --- Contract setters ---\n\n function setAddresses(\n address _liquityBaseParamsAddress,\n address _borrowerOperationsAddress,\n address _troveManagerAddress,\n address _activePoolAddress,\n address _zusdTokenAddress,\n address _sortedTrovesAddress,\n address _priceFeedAddress,\n address _communityIssuanceAddress\n ) external override onlyOwner {\n checkContract(_liquityBaseParamsAddress);\n checkContract(_borrowerOperationsAddress);\n checkContract(_troveManagerAddress);\n checkContract(_activePoolAddress);\n checkContract(_zusdTokenAddress);\n checkContract(_sortedTrovesAddress);\n checkContract(_priceFeedAddress);\n checkContract(_communityIssuanceAddress);\n\n P = DECIMAL_PRECISION;\n\n liquityBaseParams = ILiquityBaseParams(_liquityBaseParamsAddress);\n borrowerOperations = IBorrowerOperations(_borrowerOperationsAddress);\n troveManager = ITroveManager(_troveManagerAddress);\n activePool = IActivePool(_activePoolAddress);\n zusdToken = IZUSDToken(_zusdTokenAddress);\n sortedTroves = ISortedTroves(_sortedTrovesAddress);\n priceFeed = IPriceFeed(_priceFeedAddress);\n communityIssuance = ICommunityIssuance(_communityIssuanceAddress);\n\n emit BorrowerOperationsAddressChanged(_borrowerOperationsAddress);\n emit TroveManagerAddressChanged(_troveManagerAddress);\n emit ActivePoolAddressChanged(_activePoolAddress);\n emit ZUSDTokenAddressChanged(_zusdTokenAddress);\n emit SortedTrovesAddressChanged(_sortedTrovesAddress);\n emit PriceFeedAddressChanged(_priceFeedAddress);\n emit CommunityIssuanceAddressChanged(_communityIssuanceAddress);\n }\n\n /**\n * @dev setter function specific for community issuance contract.\n * @param _communityIssuanceAddress address of new community issuance contract.\n */\n function setCommunityIssuanceAddress(address _communityIssuanceAddress) external onlyOwner {\n checkContract(_communityIssuanceAddress);\n communityIssuance = ICommunityIssuance(_communityIssuanceAddress);\n emit CommunityIssuanceAddressChanged(_communityIssuanceAddress);\n }\n\n // --- Getters for public variables. Required by IPool interface ---\n\n function getETH() external view override returns (uint256) {\n return ETH;\n }\n\n function getTotalZUSDDeposits() external view override returns (uint256) {\n return totalZUSDDeposits;\n }\n\n // --- External Depositor Functions ---\n\n /** provideToSP():\n *\n * - Triggers a SOV issuance, based on time passed since the last issuance and total amount of deposited ZUSD. The SOV issuance is shared between *all* depositors and front ends\n * - Tags the deposit with the provided front end tag param, if it's a new deposit\n * - Sends depositor's accumulated gains (SOV, ETH) to depositor\n * - Sends the tagged front end's accumulated SOV gains to the tagged front end\n * - Increases deposit and tagged front end's stake, and takes new snapshots for each.\n */\n function provideToSP(uint256 _amount, address _frontEndTag) external override {\n _provideToSP(_amount, _frontEndTag);\n }\n\n function _provideToSP(uint256 _amount, address _frontEndTag) internal {\n _requireFrontEndIsRegisteredOrZero(_frontEndTag);\n _requireFrontEndNotRegistered(msg.sender);\n _requireNonZeroAmount(_amount);\n\n uint256 initialDeposit = deposits[msg.sender].initialValue;\n\n ICommunityIssuance communityIssuanceCached = communityIssuance;\n\n _triggerSOVIssuance(communityIssuanceCached);\n\n if (initialDeposit == 0) {\n _setFrontEndTag(msg.sender, _frontEndTag);\n }\n uint256 depositorETHGain = getDepositorETHGain(msg.sender);\n uint256 compoundedZUSDDeposit = getCompoundedZUSDDeposit(msg.sender);\n uint256 ZUSDLoss = initialDeposit.sub(compoundedZUSDDeposit); // Needed only for event log\n\n // First pay out any SOV gains\n address frontEnd = deposits[msg.sender].frontEndTag;\n _payOutSOVGains(communityIssuanceCached, msg.sender, frontEnd);\n\n // Update front end stake\n uint256 compoundedFrontEndStake = getCompoundedFrontEndStake(frontEnd);\n uint256 newFrontEndStake = compoundedFrontEndStake.add(_amount);\n _updateFrontEndStakeAndSnapshots(frontEnd, newFrontEndStake);\n emit FrontEndStakeChanged(frontEnd, newFrontEndStake, msg.sender);\n\n _sendZUSDtoStabilityPool(msg.sender, _amount);\n\n uint256 newDeposit = compoundedZUSDDeposit.add(_amount);\n _updateDepositAndSnapshots(msg.sender, newDeposit);\n emit UserDepositChanged(msg.sender, newDeposit);\n\n emit ETHGainWithdrawn(msg.sender, depositorETHGain, ZUSDLoss); // ZUSD Loss required for event log\n\n _sendETHGainToDepositor(depositorETHGain);\n }\n\n ///DLLR _owner or _spender can convert a specified amount of DLLR into ZUSD via Sovryn Mynt and deposit the ZUSD into the Zero Stability Pool, all in a single transaction\n function provideToSpFromDLLR(\n uint256 _dllrAmount,\n IMassetManager.PermitParams calldata _permitParams\n ) external override {\n uint256 _ZUSDAmount = MyntLib.redeemZusdFromDllrWithPermit(\n borrowerOperations.getMassetManager(),\n _dllrAmount,\n address(zusdToken),\n _permitParams\n );\n\n _provideToSP(_ZUSDAmount, ADDRESS_ZERO);\n }\n\n ///DLLR _owner or _spender can convert a specified amount of DLLR into ZUSD via Sovryn Mynt and deposit the ZUSD into the Zero Stability Pool, all in a single transaction\n function provideToSpFromDllrWithPermit2(\n uint256 _dllrAmount,\n ISignatureTransfer.PermitTransferFrom memory _permit,\n bytes calldata _signature\n ) external override {\n uint256 _ZUSDAmount = MyntLib.redeemZusdFromDllrWithPermit2(\n borrowerOperations.getMassetManager(),\n address(zusdToken),\n _permit,\n permit2,\n _signature\n );\n\n _provideToSP(_ZUSDAmount, ADDRESS_ZERO);\n }\n\n /** withdrawFromSP():\n *\n * - Triggers a SOV issuance, based on time passed since the last issuance and total amount of ZUSD is deposited. The SOV issuance is shared between *all* depositors and front ends\n * - Removes the deposit's front end tag if it is a full withdrawal\n * - Sends all depositor's accumulated gains (SOV, ETH) to depositor\n * - Sends the tagged front end's accumulated SOV gains to the tagged front end\n * - Decreases deposit and tagged front end's stake, and takes new snapshots for each.\n *\n * If _amount > userDeposit, the user withdraws all of their compounded deposit.\n */\n function withdrawFromSP(uint256 _amount) external override {\n _withdrawFromSpTo(_amount, msg.sender);\n }\n\n ///@return actual ZUSD amount withdrawn\n function _withdrawFromSpTo(uint256 _amount, address _receiver) internal returns (uint256) {\n require(_receiver != address(0), \"SP::_withdrawFromSpTo: _receiver is zero address\");\n if (_amount != 0) {\n _requireNoUnderCollateralizedTroves();\n }\n uint256 initialDeposit = deposits[msg.sender].initialValue;\n _requireUserHasDeposit(initialDeposit);\n\n ICommunityIssuance communityIssuanceCached = communityIssuance;\n\n _triggerSOVIssuance(communityIssuanceCached);\n\n uint256 depositorETHGain = getDepositorETHGain(msg.sender);\n\n uint256 compoundedZUSDDeposit = getCompoundedZUSDDeposit(msg.sender);\n uint256 ZUSDtoWithdraw = LiquityMath._min(_amount, compoundedZUSDDeposit);\n uint256 ZUSDLoss = initialDeposit.sub(compoundedZUSDDeposit); // Needed only for event log\n\n // First pay out any SOV gains\n address frontEnd = deposits[msg.sender].frontEndTag;\n _payOutSOVGains(communityIssuanceCached, msg.sender, frontEnd);\n\n // Update front end stake\n uint256 compoundedFrontEndStake = getCompoundedFrontEndStake(frontEnd);\n uint256 newFrontEndStake = compoundedFrontEndStake.sub(ZUSDtoWithdraw);\n _updateFrontEndStakeAndSnapshots(frontEnd, newFrontEndStake);\n emit FrontEndStakeChanged(frontEnd, newFrontEndStake, msg.sender);\n\n _sendZUSDToDepositor(_receiver, ZUSDtoWithdraw);\n\n // Update deposit\n uint256 newDeposit = compoundedZUSDDeposit.sub(ZUSDtoWithdraw);\n _updateDepositAndSnapshots(msg.sender, newDeposit);\n emit UserDepositChanged(msg.sender, newDeposit);\n\n emit ETHGainWithdrawn(msg.sender, depositorETHGain, ZUSDLoss); // ZUSD Loss required for event log\n\n _sendETHGainTo(depositorETHGain, msg.sender);\n\n return ZUSDtoWithdraw;\n }\n\n ///Stability Pool depositor can withdraw a specified amount of ZUSD from the Zero Stability Pool and convert the ZUSD to DLLR via Sovryn Mynt, all in a single transaction\n function withdrawFromSpAndConvertToDLLR(uint256 _zusdAmountRequested) external override {\n IMassetManager massetManager = borrowerOperations.getMassetManager();\n uint256 amountWithdrawn = _withdrawFromSpTo(_zusdAmountRequested, address(this));\n require(\n zusdToken.approve(address(massetManager), amountWithdrawn),\n \"Failed to approve ZUSD amount for Mynt mAsset to redeem\"\n );\n massetManager.mintTo(address(zusdToken), amountWithdrawn, msg.sender);\n emit WithdrawFromSpAndConvertToDLLR(msg.sender, _zusdAmountRequested, amountWithdrawn);\n }\n\n /** withdrawETHGainToTrove:\n * - Triggers a SOV issuance, based on time passed since the last issuance. The SOV issuance is shared between *all* depositors and front ends\n * - Sends all depositor's SOV gain to depositor\n * - Sends all tagged front end's SOV gain to the tagged front end\n * - Transfers the depositor's entire ETH gain from the Stability Pool to the caller's trove\n * - Leaves their compounded deposit in the Stability Pool\n * - Updates snapshots for deposit and tagged front end stake */\n function withdrawETHGainToTrove(address _upperHint, address _lowerHint) external override {\n uint256 initialDeposit = deposits[msg.sender].initialValue;\n _requireUserHasDeposit(initialDeposit);\n _requireUserHasTrove(msg.sender);\n _requireUserHasETHGain(msg.sender);\n\n ICommunityIssuance communityIssuanceCached = communityIssuance;\n\n _triggerSOVIssuance(communityIssuanceCached);\n\n uint256 depositorETHGain = getDepositorETHGain(msg.sender);\n\n uint256 compoundedZUSDDeposit = getCompoundedZUSDDeposit(msg.sender);\n uint256 ZUSDLoss = initialDeposit.sub(compoundedZUSDDeposit); // Needed only for event log\n\n // First pay out any SOV gains\n address frontEnd = deposits[msg.sender].frontEndTag;\n _payOutSOVGains(communityIssuanceCached, msg.sender, frontEnd);\n\n // Update front end stake\n uint256 compoundedFrontEndStake = getCompoundedFrontEndStake(frontEnd);\n uint256 newFrontEndStake = compoundedFrontEndStake;\n _updateFrontEndStakeAndSnapshots(frontEnd, newFrontEndStake);\n emit FrontEndStakeChanged(frontEnd, newFrontEndStake, msg.sender);\n\n _updateDepositAndSnapshots(msg.sender, compoundedZUSDDeposit);\n\n /* Emit events before transferring ETH gain to Trove.\n This lets the event log make more sense (i.e. so it appears that first the ETH gain is withdrawn\n and then it is deposited into the Trove, not the other way around). */\n emit ETHGainWithdrawn(msg.sender, depositorETHGain, ZUSDLoss);\n emit UserDepositChanged(msg.sender, compoundedZUSDDeposit);\n\n ETH = ETH.sub(depositorETHGain);\n emit StabilityPoolETHBalanceUpdated(ETH);\n emit EtherSent(msg.sender, depositorETHGain);\n\n borrowerOperations.moveETHGainToTrove{ value: depositorETHGain }(\n msg.sender,\n _upperHint,\n _lowerHint\n );\n }\n\n // --- SOV issuance functions ---\n\n function _triggerSOVIssuance(ICommunityIssuance _communityIssuance) internal {\n uint256 SOVIssuance = _communityIssuance.issueSOV(totalZUSDDeposits);\n _updateG(SOVIssuance);\n }\n\n function _updateG(uint256 _SOVIssuance) internal {\n uint256 totalZUSD = totalZUSDDeposits; // cached to save an SLOAD\n /*\n * When total deposits is 0, G is not updated. In this case, the SOV issued can not be obtained by later\n * depositors - it is missed out on, and remains in the balanceof the CommunityIssuance contract.\n *\n */\n if (totalZUSD == 0 || _SOVIssuance == 0) {\n return;\n }\n\n uint256 SOVPerUnitStaked;\n SOVPerUnitStaked = _computeSOVPerUnitStaked(_SOVIssuance, totalZUSD);\n\n uint256 marginalSOVGain = SOVPerUnitStaked.mul(P);\n epochToScaleToG[currentEpoch][currentScale] = epochToScaleToG[currentEpoch][currentScale]\n .add(marginalSOVGain);\n\n emit G_Updated(epochToScaleToG[currentEpoch][currentScale], currentEpoch, currentScale);\n }\n\n function _computeSOVPerUnitStaked(uint256 _SOVIssuance, uint256 _totalZUSDDeposits)\n internal\n returns (uint256)\n {\n /*\n * Calculate the SOV-per-unit staked. Division uses a \"feedback\" error correction, to keep the\n * cumulative error low in the running total G:\n *\n * 1) Form a numerator which compensates for the floor division error that occurred the last time this\n * function was called.\n * 2) Calculate \"per-unit-staked\" ratio.\n * 3) Multiply the ratio back by its denominator, to reveal the current floor division error.\n * 4) Store this error for use in the next correction when this function is called.\n * 5) Note: static analysis tools complain about this \"division before multiplication\", however, it is intended.\n */\n uint256 SOVNumerator = _SOVIssuance.mul(DECIMAL_PRECISION).add(lastSOVError);\n\n uint256 SOVPerUnitStaked = SOVNumerator.div(_totalZUSDDeposits);\n lastSOVError = SOVNumerator.sub(SOVPerUnitStaked.mul(_totalZUSDDeposits));\n\n return SOVPerUnitStaked;\n }\n\n // --- Liquidation functions ---\n\n /**\n * Cancels out the specified debt against the ZUSD contained in the Stability Pool (as far as possible)\n * and transfers the Trove's ETH collateral from ActivePool to StabilityPool.\n * Only called by liquidation functions in the TroveManager.\n */\n function offset(uint256 _debtToOffset, uint256 _collToAdd) external override {\n _requireCallerIsTroveManager();\n uint256 totalZUSD = totalZUSDDeposits; // cached to save an SLOAD\n if (totalZUSD == 0 || _debtToOffset == 0) {\n return;\n }\n\n _triggerSOVIssuance(communityIssuance);\n\n (\n uint256 ETHGainPerUnitStaked,\n uint256 ZUSDLossPerUnitStaked\n ) = _computeRewardsPerUnitStaked(_collToAdd, _debtToOffset, totalZUSD);\n\n _updateRewardSumAndProduct(ETHGainPerUnitStaked, ZUSDLossPerUnitStaked); // updates S and P\n\n _moveOffsetCollAndDebt(_collToAdd, _debtToOffset);\n }\n\n // --- Offset helper functions ---\n\n function _computeRewardsPerUnitStaked(\n uint256 _collToAdd,\n uint256 _debtToOffset,\n uint256 _totalZUSDDeposits\n ) internal returns (uint256 ETHGainPerUnitStaked, uint256 ZUSDLossPerUnitStaked) {\n /*\n * Compute the ZUSD and ETH rewards. Uses a \"feedback\" error correction, to keep\n * the cumulative error in the P and S state variables low:\n *\n * 1) Form numerators which compensate for the floor division errors that occurred the last time this\n * function was called.\n * 2) Calculate \"per-unit-staked\" ratios.\n * 3) Multiply each ratio back by its denominator, to reveal the current floor division error.\n * 4) Store these errors for use in the next correction when this function is called.\n * 5) Note: static analysis tools complain about this \"division before multiplication\", however, it is intended.\n */\n uint256 ETHNumerator = _collToAdd.mul(DECIMAL_PRECISION).add(lastETHError_Offset);\n\n assert(_debtToOffset <= _totalZUSDDeposits);\n if (_debtToOffset == _totalZUSDDeposits) {\n ZUSDLossPerUnitStaked = DECIMAL_PRECISION; // When the Pool depletes to 0, so does each deposit\n lastZUSDLossError_Offset = 0;\n } else {\n uint256 ZUSDLossNumerator = _debtToOffset.mul(DECIMAL_PRECISION).sub(\n lastZUSDLossError_Offset\n );\n /*\n * Add 1 to make error in quotient positive. We want \"slightly too much\" ZUSD loss,\n * which ensures the error in any given compoundedZUSDDeposit favors the Stability Pool.\n */\n ZUSDLossPerUnitStaked = (ZUSDLossNumerator.div(_totalZUSDDeposits)).add(1);\n lastZUSDLossError_Offset = (ZUSDLossPerUnitStaked.mul(_totalZUSDDeposits)).sub(\n ZUSDLossNumerator\n );\n }\n\n ETHGainPerUnitStaked = ETHNumerator.div(_totalZUSDDeposits);\n lastETHError_Offset = ETHNumerator.sub(ETHGainPerUnitStaked.mul(_totalZUSDDeposits));\n\n return (ETHGainPerUnitStaked, ZUSDLossPerUnitStaked);\n }\n\n /// Update the Stability Pool reward sum S and product P\n function _updateRewardSumAndProduct(\n uint256 _ETHGainPerUnitStaked,\n uint256 _ZUSDLossPerUnitStaked\n ) internal {\n uint256 currentP = P;\n uint256 newP;\n\n assert(_ZUSDLossPerUnitStaked <= DECIMAL_PRECISION);\n /*\n * The newProductFactor is the factor by which to change all deposits, due to the depletion of Stability Pool ZUSD in the liquidation.\n * We make the product factor 0 if there was a pool-emptying. Otherwise, it is (1 - ZUSDLossPerUnitStaked)\n */\n uint256 newProductFactor = uint256(DECIMAL_PRECISION).sub(_ZUSDLossPerUnitStaked);\n\n uint128 currentScaleCached = currentScale;\n uint128 currentEpochCached = currentEpoch;\n uint256 currentS = epochToScaleToSum[currentEpochCached][currentScaleCached];\n\n /*\n * Calculate the new S first, before we update P.\n * The ETH gain for any given depositor from a liquidation depends on the value of their deposit\n * (and the value of totalDeposits) prior to the Stability being depleted by the debt in the liquidation.\n *\n * Since S corresponds to ETH gain, and P to deposit loss, we update S first.\n */\n uint256 marginalETHGain = _ETHGainPerUnitStaked.mul(currentP);\n uint256 newS = currentS.add(marginalETHGain);\n epochToScaleToSum[currentEpochCached][currentScaleCached] = newS;\n emit S_Updated(newS, currentEpochCached, currentScaleCached);\n\n // If the Stability Pool was emptied, increment the epoch, and reset the scale and product P\n if (newProductFactor == 0) {\n currentEpoch = currentEpochCached.add(1);\n emit EpochUpdated(currentEpoch);\n currentScale = 0;\n emit ScaleUpdated(currentScale);\n newP = DECIMAL_PRECISION;\n\n // If multiplying P by a non-zero product factor would reduce P below the scale boundary, increment the scale\n } else if (currentP.mul(newProductFactor).div(DECIMAL_PRECISION) < SCALE_FACTOR) {\n newP = currentP.mul(newProductFactor).mul(SCALE_FACTOR).div(DECIMAL_PRECISION);\n currentScale = currentScaleCached.add(1);\n emit ScaleUpdated(currentScale);\n } else {\n newP = currentP.mul(newProductFactor).div(DECIMAL_PRECISION);\n }\n\n assert(newP > 0);\n P = newP;\n\n emit P_Updated(newP);\n }\n\n function _moveOffsetCollAndDebt(uint256 _collToAdd, uint256 _debtToOffset) internal {\n IActivePool activePoolCached = activePool;\n\n // Cancel the liquidated ZUSD debt with the ZUSD in the stability pool\n activePoolCached.decreaseZUSDDebt(_debtToOffset);\n _decreaseZUSD(_debtToOffset);\n\n // Burn the debt that was successfully offset\n zusdToken.burn(address(this), _debtToOffset);\n\n activePoolCached.sendETH(address(this), _collToAdd);\n }\n\n function _decreaseZUSD(uint256 _amount) internal {\n uint256 newTotalZUSDDeposits = totalZUSDDeposits.sub(_amount);\n totalZUSDDeposits = newTotalZUSDDeposits;\n emit StabilityPoolZUSDBalanceUpdated(newTotalZUSDDeposits);\n }\n\n // --- Reward calculator functions for depositor and front end ---\n\n /** Calculates the ETH gain earned by the deposit since its last snapshots were taken.\n * Given by the formula: E = d0 * (S - S(0))/P(0)\n * where S(0) and P(0) are the depositor's snapshots of the sum S and product P, respectively.\n * d0 is the last recorded deposit value.\n */\n function getDepositorETHGain(address _depositor) public view override returns (uint256) {\n uint256 initialDeposit = deposits[_depositor].initialValue;\n\n if (initialDeposit == 0) {\n return 0;\n }\n\n Snapshots memory snapshots = depositSnapshots[_depositor];\n\n uint256 ETHGain = _getETHGainFromSnapshots(initialDeposit, snapshots);\n return ETHGain;\n }\n\n function _getETHGainFromSnapshots(uint256 initialDeposit, Snapshots memory snapshots)\n internal\n view\n returns (uint256)\n {\n /*\n * Grab the sum 'S' from the epoch at which the stake was made. The ETH gain may span up to one scale change.\n * If it does, the second portion of the ETH gain is scaled by 1e9.\n * If the gain spans no scale change, the second portion will be 0.\n */\n uint128 epochSnapshot = snapshots.epoch;\n uint128 scaleSnapshot = snapshots.scale;\n uint256 S_Snapshot = snapshots.S;\n uint256 P_Snapshot = snapshots.P;\n\n uint256 firstPortion = epochToScaleToSum[epochSnapshot][scaleSnapshot].sub(S_Snapshot);\n uint256 secondPortion = epochToScaleToSum[epochSnapshot][scaleSnapshot.add(1)].div(\n SCALE_FACTOR\n );\n\n uint256 ETHGain = initialDeposit.mul(firstPortion.add(secondPortion)).div(P_Snapshot).div(\n DECIMAL_PRECISION\n );\n\n return ETHGain;\n }\n\n /**\n * Calculate the SOV gain earned by a deposit since its last snapshots were taken.\n * Given by the formula: SOV = d0 * (G - G(0))/P(0)\n * where G(0) and P(0) are the depositor's snapshots of the sum G and product P, respectively.\n * d0 is the last recorded deposit value.\n */\n function getDepositorSOVGain(address _depositor) public view override returns (uint256) {\n uint256 initialDeposit = deposits[_depositor].initialValue;\n if (initialDeposit == 0) {\n return 0;\n }\n\n address frontEndTag = deposits[_depositor].frontEndTag;\n\n /*\n * If not tagged with a front end, the depositor gets a 100% cut of what their deposit earned.\n * Otherwise, their cut of the deposit's earnings is equal to the kickbackRate, set by the front end through\n * which they made their deposit.\n */\n uint256 kickbackRate = frontEndTag == ADDRESS_ZERO\n ? DECIMAL_PRECISION\n : frontEnds[frontEndTag].kickbackRate;\n\n Snapshots memory snapshots = depositSnapshots[_depositor];\n\n uint256 SOVGain = kickbackRate\n .mul(_getSOVGainFromSnapshots(initialDeposit, snapshots))\n .div(DECIMAL_PRECISION);\n\n return SOVGain;\n }\n\n /**\n * Return the SOV gain earned by the front end. Given by the formula: E = D0 * (G - G(0))/P(0)\n * where G(0) and P(0) are the depositor's snapshots of the sum G and product P, respectively.\n *\n * D0 is the last recorded value of the front end's total tagged deposits.\n */\n function getFrontEndSOVGain(address _frontEnd) public view override returns (uint256) {\n uint256 frontEndStake = frontEndStakes[_frontEnd];\n if (frontEndStake == 0) {\n return 0;\n }\n\n uint256 kickbackRate = frontEnds[_frontEnd].kickbackRate;\n uint256 frontEndShare = uint256(DECIMAL_PRECISION).sub(kickbackRate);\n\n Snapshots memory snapshots = frontEndSnapshots[_frontEnd];\n\n uint256 SOVGain = frontEndShare\n .mul(_getSOVGainFromSnapshots(frontEndStake, snapshots))\n .div(DECIMAL_PRECISION);\n return SOVGain;\n }\n\n function _getSOVGainFromSnapshots(uint256 initialStake, Snapshots memory snapshots)\n internal\n view\n returns (uint256)\n {\n /*\n * Grab the sum 'G' from the epoch at which the stake was made. The SOV gain may span up to one scale change.\n * If it does, the second portion of the SOV gain is scaled by 1e9.\n * If the gain spans no scale change, the second portion will be 0.\n */\n uint128 epochSnapshot = snapshots.epoch;\n uint128 scaleSnapshot = snapshots.scale;\n uint256 G_Snapshot = snapshots.G;\n uint256 P_Snapshot = snapshots.P;\n\n uint256 firstPortion = epochToScaleToG[epochSnapshot][scaleSnapshot].sub(G_Snapshot);\n uint256 secondPortion = epochToScaleToG[epochSnapshot][scaleSnapshot.add(1)].div(\n SCALE_FACTOR\n );\n\n uint256 SOVGain = initialStake.mul(firstPortion.add(secondPortion)).div(P_Snapshot).div(\n DECIMAL_PRECISION\n );\n\n return SOVGain;\n }\n\n // --- Compounded deposit and compounded front end stake ---\n\n /**\n * Return the user's compounded deposit. Given by the formula: d = d0 * P/P(0)\n * where P(0) is the depositor's snapshot of the product P, taken when they last updated their deposit.\n */\n function getCompoundedZUSDDeposit(address _depositor) public view override returns (uint256) {\n uint256 initialDeposit = deposits[_depositor].initialValue;\n if (initialDeposit == 0) {\n return 0;\n }\n\n Snapshots memory snapshots = depositSnapshots[_depositor];\n\n uint256 compoundedDeposit = _getCompoundedStakeFromSnapshots(initialDeposit, snapshots);\n return compoundedDeposit;\n }\n\n /**\n * Return the front end's compounded stake. Given by the formula: D = D0 * P/P(0)\n * where P(0) is the depositor's snapshot of the product P, taken at the last time\n * when one of the front end's tagged deposits updated their deposit.\n *\n * The front end's compounded stake is equal to the sum of its depositors' compounded deposits.\n */\n function getCompoundedFrontEndStake(address _frontEnd) public view override returns (uint256) {\n uint256 frontEndStake = frontEndStakes[_frontEnd];\n if (frontEndStake == 0) {\n return 0;\n }\n\n Snapshots memory snapshots = frontEndSnapshots[_frontEnd];\n\n uint256 compoundedFrontEndStake = _getCompoundedStakeFromSnapshots(\n frontEndStake,\n snapshots\n );\n return compoundedFrontEndStake;\n }\n\n // Internal function, used to calculcate compounded deposits and compounded front end stakes.\n function _getCompoundedStakeFromSnapshots(uint256 initialStake, Snapshots memory snapshots)\n internal\n view\n returns (uint256)\n {\n uint256 snapshot_P = snapshots.P;\n uint128 scaleSnapshot = snapshots.scale;\n uint128 epochSnapshot = snapshots.epoch;\n\n // If stake was made before a pool-emptying event, then it has been fully cancelled with debt -- so, return 0\n if (epochSnapshot < currentEpoch) {\n return 0;\n }\n\n uint256 compoundedStake;\n uint128 scaleDiff = currentScale.sub(scaleSnapshot);\n\n /* Compute the compounded stake. If a scale change in P was made during the stake's lifetime,\n * account for it. If more than one scale change was made, then the stake has decreased by a factor of\n * at least 1e-9 -- so return 0.\n */\n if (scaleDiff == 0) {\n compoundedStake = initialStake.mul(P).div(snapshot_P);\n } else if (scaleDiff == 1) {\n compoundedStake = initialStake.mul(P).div(snapshot_P).div(SCALE_FACTOR);\n } else {\n // if scaleDiff >= 2\n compoundedStake = 0;\n }\n\n /*\n * If compounded deposit is less than a billionth of the initial deposit, return 0.\n *\n * NOTE: originally, this line was in place to stop rounding errors making the deposit too large. However, the error\n * corrections should ensure the error in P \"favors the Pool\", i.e. any given compounded deposit should slightly less\n * than it's theoretical value.\n *\n * Thus it's unclear whether this line is still really needed.\n */\n if (compoundedStake < initialStake.div(1e9)) {\n return 0;\n }\n\n return compoundedStake;\n }\n\n // --- Sender functions for ZUSD deposit, ETH gains and SOV gains ---\n\n /// Transfer the ZUSD tokens from the user to the Stability Pool's address, and update its recorded ZUSD\n function _sendZUSDtoStabilityPool(address _address, uint256 _amount) internal {\n zusdToken.sendToPool(_address, address(this), _amount);\n uint256 newTotalZUSDDeposits = totalZUSDDeposits.add(_amount);\n totalZUSDDeposits = newTotalZUSDDeposits;\n emit StabilityPoolZUSDBalanceUpdated(newTotalZUSDDeposits);\n }\n\n function _sendETHGainToDepositor(uint256 _amount) internal {\n _sendETHGainTo(_amount, msg.sender);\n }\n\n function _sendETHGainTo(uint256 _amount, address _receiver) internal {\n require(_receiver != address(0), \"SP::_sendETHGainTo: _receiver is zero address\");\n if (_amount == 0) {\n return;\n }\n uint256 newETH = ETH.sub(_amount);\n ETH = newETH;\n emit StabilityPoolETHBalanceUpdated(newETH);\n emit EtherSent(msg.sender, _amount);\n\n (bool success, ) = msg.sender.call{ value: _amount }(\"\");\n require(success, \"StabilityPool: sending ETH failed\");\n }\n\n /// Send ZUSD to user and decrease ZUSD in Pool\n function _sendZUSDToDepositor(address _depositor, uint256 ZUSDWithdrawal) internal {\n if (ZUSDWithdrawal == 0) {\n return;\n }\n\n zusdToken.returnFromPool(address(this), _depositor, ZUSDWithdrawal);\n _decreaseZUSD(ZUSDWithdrawal);\n }\n\n // --- External Front End functions ---\n\n /// Front end makes a one-time selection of kickback rate upon registering\n function registerFrontEnd(uint256 _kickbackRate) external override {\n _requireFrontEndNotRegistered(msg.sender);\n _requireUserHasNoDeposit(msg.sender);\n _requireValidKickbackRate(_kickbackRate);\n\n frontEnds[msg.sender].kickbackRate = _kickbackRate;\n frontEnds[msg.sender].registered = true;\n\n emit FrontEndRegistered(msg.sender, _kickbackRate);\n }\n\n // --- Stability Pool Deposit Functionality ---\n\n function _setFrontEndTag(address _depositor, address _frontEndTag) internal {\n deposits[_depositor].frontEndTag = _frontEndTag;\n emit FrontEndTagSet(_depositor, _frontEndTag);\n }\n\n function _updateDepositAndSnapshots(address _depositor, uint256 _newValue) internal {\n deposits[_depositor].initialValue = _newValue;\n\n if (_newValue == 0) {\n delete deposits[_depositor].frontEndTag;\n delete depositSnapshots[_depositor];\n emit DepositSnapshotUpdated(_depositor, 0, 0, 0);\n return;\n }\n uint128 currentScaleCached = currentScale;\n uint128 currentEpochCached = currentEpoch;\n uint256 currentP = P;\n\n // Get S and G for the current epoch and current scale\n uint256 currentS = epochToScaleToSum[currentEpochCached][currentScaleCached];\n uint256 currentG = epochToScaleToG[currentEpochCached][currentScaleCached];\n\n // Record new snapshots of the latest running product P, sum S, and sum G, for the depositor\n depositSnapshots[_depositor].P = currentP;\n depositSnapshots[_depositor].S = currentS;\n depositSnapshots[_depositor].G = currentG;\n depositSnapshots[_depositor].scale = currentScaleCached;\n depositSnapshots[_depositor].epoch = currentEpochCached;\n\n emit DepositSnapshotUpdated(_depositor, currentP, currentS, currentG);\n }\n\n function _updateFrontEndStakeAndSnapshots(address _frontEnd, uint256 _newValue) internal {\n frontEndStakes[_frontEnd] = _newValue;\n\n if (_newValue == 0) {\n delete frontEndSnapshots[_frontEnd];\n emit FrontEndSnapshotUpdated(_frontEnd, 0, 0);\n return;\n }\n\n uint128 currentScaleCached = currentScale;\n uint128 currentEpochCached = currentEpoch;\n uint256 currentP = P;\n\n // Get G for the current epoch and current scale\n uint256 currentG = epochToScaleToG[currentEpochCached][currentScaleCached];\n\n // Record new snapshots of the latest running product P and sum G for the front end\n frontEndSnapshots[_frontEnd].P = currentP;\n frontEndSnapshots[_frontEnd].G = currentG;\n frontEndSnapshots[_frontEnd].scale = currentScaleCached;\n frontEndSnapshots[_frontEnd].epoch = currentEpochCached;\n\n emit FrontEndSnapshotUpdated(_frontEnd, currentP, currentG);\n }\n\n function _payOutSOVGains(\n ICommunityIssuance _communityIssuance,\n address _depositor,\n address _frontEnd\n ) internal {\n // Pay out front end's SOV gain\n if (_frontEnd != ADDRESS_ZERO) {\n uint256 frontEndSOVGain = getFrontEndSOVGain(_frontEnd);\n _communityIssuance.sendSOV(_frontEnd, frontEndSOVGain);\n emit SOVPaidToFrontEnd(_frontEnd, frontEndSOVGain);\n }\n\n // Pay out depositor's SOV gain\n uint256 depositorSOVGain = getDepositorSOVGain(_depositor);\n _communityIssuance.sendSOV(_depositor, depositorSOVGain);\n emit SOVPaidToDepositor(_depositor, depositorSOVGain);\n }\n\n // --- 'require' functions ---\n\n function _requireCallerIsActivePool() internal view {\n require(msg.sender == address(activePool), \"StabilityPool: Caller is not ActivePool\");\n }\n\n function _requireCallerIsTroveManager() internal view {\n require(msg.sender == address(troveManager), \"StabilityPool: Caller is not TroveManager\");\n }\n\n function _requireNoUnderCollateralizedTroves() internal {\n uint256 price = priceFeed.fetchPrice();\n address lowestTrove = sortedTroves.getLast();\n uint256 ICR = troveManager.getCurrentICR(lowestTrove, price);\n require(\n ICR >= liquityBaseParams.MCR(),\n \"StabilityPool: Cannot withdraw while there are troves with ICR < MCR\"\n );\n }\n\n function _requireUserHasDeposit(uint256 _initialDeposit) internal pure {\n require(_initialDeposit > 0, \"StabilityPool: User must have a non-zero deposit\");\n }\n\n function _requireUserHasNoDeposit(address _address) internal view {\n uint256 initialDeposit = deposits[_address].initialValue;\n require(initialDeposit == 0, \"StabilityPool: User must have no deposit\");\n }\n\n function _requireNonZeroAmount(uint256 _amount) internal pure {\n require(_amount > 0, \"StabilityPool: Amount must be non-zero\");\n }\n\n function _requireUserHasTrove(address _depositor) internal view {\n require(\n troveManager.getTroveStatus(_depositor) == 1,\n \"StabilityPool: caller must have an active trove to withdraw ETHGain to\"\n );\n }\n\n function _requireUserHasETHGain(address _depositor) internal view {\n uint256 ETHGain = getDepositorETHGain(_depositor);\n require(ETHGain > 0, \"StabilityPool: caller must have non-zero ETH Gain\");\n }\n\n function _requireFrontEndNotRegistered(address _address) internal view {\n require(\n !frontEnds[_address].registered,\n \"StabilityPool: must not already be a registered front end\"\n );\n }\n\n function _requireFrontEndIsRegisteredOrZero(address _address) internal view {\n require(\n frontEnds[_address].registered || _address == ADDRESS_ZERO,\n \"StabilityPool: Tag must be a registered front end, or the zero address\"\n );\n }\n\n function _requireValidKickbackRate(uint256 _kickbackRate) internal pure {\n require(\n _kickbackRate <= DECIMAL_PRECISION,\n \"StabilityPool: Kickback rate must be in range [0,1]\"\n );\n }\n\n // --- Fallback function ---\n\n receive() external payable {\n _requireCallerIsActivePool();\n ETH = ETH.add(msg.value);\n StabilityPoolETHBalanceUpdated(ETH);\n }\n}\n" + }, + "contracts/StabilityPoolStorage.sol": { + "content": "// SPDX-License-Identifier: MIT\n\npragma solidity 0.6.11;\n\nimport \"./Interfaces/IBorrowerOperations.sol\";\nimport \"./Interfaces/IStabilityPool.sol\";\nimport \"./Interfaces/IBorrowerOperations.sol\";\nimport \"./Interfaces/ITroveManager.sol\";\nimport \"./Interfaces/IZUSDToken.sol\";\nimport \"./Interfaces/ISortedTroves.sol\";\nimport \"./Interfaces/ICommunityIssuance.sol\";\nimport \"./Dependencies/Ownable.sol\";\nimport \"./Dependencies/BaseMath.sol\";\n\ncontract StabilityPoolStorage is Ownable, BaseMath {\n string public constant NAME = \"StabilityPool\";\n\n IBorrowerOperations public borrowerOperations;\n\n ITroveManager public troveManager;\n\n IZUSDToken public zusdToken;\n\n // Needed to check if there are pending liquidations\n ISortedTroves public sortedTroves;\n\n ICommunityIssuance public communityIssuance;\n\n uint256 internal ETH; // deposited ether tracker\n\n // Tracker for ZUSD held in the pool. Changes when users deposit/withdraw, and when Trove debt is offset.\n uint256 internal totalZUSDDeposits;\n\n // --- Data structures ---\n\n struct FrontEnd {\n uint256 kickbackRate;\n bool registered;\n }\n\n struct Deposit {\n uint256 initialValue;\n address frontEndTag;\n }\n\n struct Snapshots {\n uint256 S;\n uint256 P;\n uint256 G;\n uint128 scale;\n uint128 epoch;\n }\n\n mapping(address => Deposit) public deposits; // depositor address -> Deposit struct\n mapping(address => Snapshots) public depositSnapshots; // depositor address -> snapshots struct\n\n mapping(address => FrontEnd) public frontEnds; // front end address -> FrontEnd struct\n mapping(address => uint256) public frontEndStakes; // front end address -> last recorded total deposits, tagged with that front end\n mapping(address => Snapshots) public frontEndSnapshots; // front end address -> snapshots struct\n\n /* Product 'P': Running product by which to multiply an initial deposit, in order to find the current compounded deposit,\n * after a series of liquidations have occurred, each of which cancel some ZUSD debt with the deposit.\n *\n * During its lifetime, a deposit's value evolves from d_t to d_t * P / P_t , where P_t\n * is the snapshot of P taken at the instant the deposit was made. 18-digit decimal.\n */\n uint256 public P;\n\n uint256 public constant SCALE_FACTOR = 1e9;\n\n // Each time the scale of P shifts by SCALE_FACTOR, the scale is incremented by 1\n uint128 public currentScale;\n\n // With each offset that fully empties the Pool, the epoch is incremented by 1\n uint128 public currentEpoch;\n\n /* ETH Gain sum 'S': During its lifetime, each deposit d_t earns an ETH gain of ( d_t * [S - S_t] )/P_t, where S_t\n * is the depositor's snapshot of S taken at the time t when the deposit was made.\n *\n * The 'S' sums are stored in a nested mapping (epoch => scale => sum):\n *\n * - The inner mapping records the sum S at different scales\n * - The outer mapping records the (scale => sum) mappings, for different epochs.\n */\n mapping(uint128 => mapping(uint128 => uint256)) public epochToScaleToSum;\n\n /*\n * Similarly, the sum 'G' is used to calculate SOV gains. During it's lifetime, each deposit d_t earns a SOV gain of\n * ( d_t * [G - G_t] )/P_t, where G_t is the depositor's snapshot of G taken at time t when the deposit was made.\n *\n * SOV reward events occur are triggered by depositor operations (new deposit, topup, withdrawal), and liquidations.\n * In each case, the SOV reward is issued (i.e. G is updated), before other state changes are made.\n */\n mapping(uint128 => mapping(uint128 => uint256)) public epochToScaleToG;\n\n // Error tracker for the error correction in the SOV issuance calculation\n uint256 public lastSOVError;\n // Error trackers for the error correction in the offset calculation\n uint256 public lastETHError_Offset;\n uint256 public lastZUSDLossError_Offset;\n}\n" + }, + "contracts/TestContracts/ActivePoolTester.sol": { + "content": "// SPDX-License-Identifier: MIT\n\npragma solidity 0.6.11;\n\nimport \"../ActivePool.sol\";\n\ncontract ActivePoolTester is ActivePool {\n \n function unprotectedIncreaseZUSDDebt(uint _amount) external {\n ZUSDDebt = ZUSDDebt.add(_amount);\n }\n\n function unprotectedPayable() external payable {\n ETH = ETH.add(msg.value);\n }\n}\n" + }, + "contracts/TestContracts/BorrowerOperationsTester.sol": { + "content": "// SPDX-License-Identifier: MIT\n\npragma solidity 0.6.11;\npragma experimental ABIEncoderV2;\n\nimport \"../BorrowerOperations.sol\";\n\n/* Tester contract inherits from BorrowerOperations, and provides external functions \nfor testing the parent's internal functions. */\ncontract BorrowerOperationsTester is BorrowerOperations {\n\n constructor(address _permit2) public BorrowerOperations(_permit2) {}\n\n function getNewICRFromTroveChange\n (\n uint _coll, \n uint _debt, \n uint _collChange, \n bool isCollIncrease, \n uint _debtChange, \n bool isDebtIncrease, \n uint _price\n ) \n external\n pure\n returns (uint)\n {\n return _getNewICRFromTroveChange(_coll, _debt, _collChange, isCollIncrease, _debtChange, isDebtIncrease, _price);\n }\n\n function getNewTCRFromTroveChange\n (\n uint _collChange, \n bool isCollIncrease, \n uint _debtChange, \n bool isDebtIncrease, \n uint _price\n ) \n external \n view\n returns (uint) \n {\n return _getNewTCRFromTroveChange(_collChange, isCollIncrease, _debtChange, isDebtIncrease, _price);\n }\n\n function getUSDValue(uint _coll, uint _price) external pure returns (uint) {\n return _getUSDValue(_coll, _price);\n }\n\n function callInternalAdjustLoan\n (\n address _borrower, \n uint _collWithdrawal, \n uint _debtChange, \n bool _isDebtIncrease, \n address _upperHint,\n address _lowerHint)\n external \n {\n _adjustTrove(_borrower, _collWithdrawal, _debtChange, _isDebtIncrease, _upperHint, _lowerHint, 0);\n }\n\n\n // Payable fallback function\n receive() external payable { }\n}\n" + }, + "contracts/TestContracts/CommunityIssuanceTester.sol": { + "content": "// SPDX-License-Identifier: MIT\n\npragma solidity 0.6.11;\n\nimport \"../ZERO/CommunityIssuance.sol\";\n\ncontract CommunityIssuanceTester is CommunityIssuance {\n function obtainSOV(uint _amount) external {\n sovToken.transfer(msg.sender, _amount);\n }\n\n function unprotectedIssueSOV(uint256 _totalZUSDDeposits) external returns (uint) {\n // No checks on caller address\n \n return _issueSOV(_totalZUSDDeposits);\n }\n}\n" + }, + "contracts/TestContracts/DefaultPoolTester.sol": { + "content": "// SPDX-License-Identifier: MIT\n\npragma solidity 0.6.11;\n\nimport \"../DefaultPool.sol\";\n\ncontract DefaultPoolTester is DefaultPool {\n \n function unprotectedIncreaseZUSDDebt(uint _amount) external {\n ZUSDDebt = ZUSDDebt.add(_amount);\n }\n\n function unprotectedPayable() external payable {\n ETH = ETH.add(msg.value);\n }\n}\n" + }, + "contracts/TestContracts/EchidnaColFeeTester.sol": { + "content": "// SPDX-License-Identifier: MIT\n\npragma solidity 0.6.11;\npragma experimental ABIEncoderV2;\n\nimport \"./EchidnaTester.sol\";\nimport \"./ExitFeeControllerMock.sol\";\n\n/// @title EchidnaColFeeTester\n/// @notice Re-runs the full Zero Echidna campaign with the ColFee exit fee\n/// ACTIVE, so every collateral exit driven by the actor proxies routes\n/// through the fee hook (`_sendCollWithExitFee`) with a real fee leg.\n///\n/// The ColFee load-bearing invariant is the inherited\n/// `echidna_ETH_balances`:\n/// - `borrowerOperations` holds 0 ETH — the fee leg never strands ETH\n/// in BorrowerOperations;\n/// - each pool's real balance == its internal `getETH()` accounting —\n/// the fee leg's `ActivePool.sendETH` keeps balance and accounting\n/// in sync, so no ETH is created, destroyed, or double-counted by\n/// the fee.\n/// A fee-leg accounting bug breaks it. The two added invariants below\n/// guard that the run is genuinely exercising ColFee (not vacuous) and\n/// that ETH reaches the fee receiver only through the accounted leg.\n///\n/// Note: the inherited `echidna_canary_*` properties are Liquity's\n/// coverage markers and are EXPECTED to be falsified once the actors\n/// open troves / fund the pool — that is their purpose, not a ColFee\n/// failure. The meaningful result is that `echidna_ETH_balances`,\n/// `echidna_trove_properties`, `echidna_troves_order`,\n/// `echidna_ZUSD_global_balances`, and the two `echidna_colfee_*`\n/// invariants below HOLD with the fee active.\n///\n/// Run (from repo root, project/hardhat mode so the CryptoEnv-wrapped\n/// compile resolves — the single-file form needs a bare `solc` on PATH):\n/// __decryptionAlreadyDone__=TRUE echidna . \\\n/// --contract EchidnaColFeeTester \\\n/// --config fuzzTests/js/echidna_config.yaml\ncontract EchidnaColFeeTester is EchidnaTester {\n // Canonical deterministic Permit2 deployment address. Permit2 is not on any\n // ColFee path, so a fixed (codeless-in-VM) address is inert here; pinning it\n // lets Echidna deploy this tester with NO constructor arguments.\n address internal constant PERMIT2 = 0x000000000022D473030F116dDEE9F6B43aC78BA3;\n\n ExitFeeControllerMock public exitFeeCtrl;\n ColFeeEchidnaSink public feeSink;\n\n constructor() public payable EchidnaTester(PERMIT2) {\n feeSink = new ColFeeEchidnaSink();\n exitFeeCtrl = new ExitFeeControllerMock();\n // Active policy: 1% (100 bps) of the borrower's gross collateral, paid\n // to a sink that accepts ETH (so the fee leg settles, exercising the\n // ExitFeeApplied path rather than only the VAULT_REVERT fallback).\n exitFeeCtrl.configure(true, 100, address(feeSink), 0);\n // owner == this tester (Zero's setAddresses does not renounce).\n borrowerOperations.setExitFeeController(address(exitFeeCtrl));\n }\n\n /// Guards against a vacuous run: the controller stays pinned and active, so\n /// the inherited invariants are genuinely exercised WITH the fee in the loop.\n function echidna_colfee_controller_pinned() public view returns (bool) {\n return borrowerOperations.exitFeeController() == address(exitFeeCtrl);\n }\n\n /// ETH only reaches the fee receiver via the accounted fee leg: the sink's\n /// real balance equals the total it recorded receiving. (Combined with the\n /// inherited pool `balance == getETH()` invariant, this closes the loop on\n /// fee-leg value conservation.)\n function echidna_colfee_sink_synced() public view returns (bool) {\n return address(feeSink).balance == feeSink.totalReceived();\n }\n\n function exerciseColFeeExt() external {\n EchidnaProxy echidnaProxy = echidnaProxies[0];\n if (troveManager.getTroveDebt(address(echidnaProxy)) == 0) {\n openTroveExt(0, 1e23, 1e21);\n }\n\n uint amount = getAdjustedCollWithdrawal(address(echidnaProxy), 1e18);\n if (amount > 0) {\n echidnaProxy.withdrawCollPrx(amount, address(0), address(0));\n }\n }\n\n /// Canary: EXPECTED to be falsified once any exit charges a fee. If this\n /// stays passing, the campaign never exercised ColFee.\n function echidna_canary_colfee_charged() public view returns (bool) {\n return feeSink.totalReceived() == 0;\n }\n\n /// Fund a collateral surplus for an actor and claim it through the real\n /// BorrowerOperations hook with the fee ACTIVE. The tester owns the pool and\n /// Zero's setAddresses is re-callable, so it impersonates TroveManager and\n /// ActivePool for one atomic funding step (accountSurplus + backing ETH),\n /// restores the real wiring, then claims — exercising both the charging\n /// two-leg split (fee >= 1 wei at 100 bps needs amount >= 100) and, for dust\n /// amounts, the untouched claimColl fallback.\n function fundAndClaimSurplusExt(uint _i, uint _amount) external {\n EchidnaProxy echidnaProxy = echidnaProxies[_i % 100]; // 100 == NUMBER_OF_ACTORS (private in base)\n uint amount = 1 + (_amount % 1e21); // 1 wei .. 1000 ETH; tester balance is ample\n if (address(this).balance < amount) {\n return;\n }\n\n collSurplusPool.setAddresses(address(borrowerOperations), address(this), address(this));\n collSurplusPool.accountSurplus(address(echidnaProxy), amount);\n (bool funded, ) = address(collSurplusPool).call{ value: amount }(\"\");\n require(funded);\n collSurplusPool.setAddresses(\n address(borrowerOperations),\n address(troveManager),\n address(activePool)\n );\n\n echidnaProxy.claimCollateralPrx();\n }\n\n /// CollSurplusPool conservation under the two-leg split: raw balance always\n /// equals the recorded ETH accounting (mirrors the inherited per-pool checks\n /// in echidna_ETH_balances, which predates ColFee and does not cover this pool).\n function echidna_colfee_surplus_pool_synced() public view returns (bool) {\n return address(collSurplusPool).balance == collSurplusPool.getETH();\n }\n}\n\n/// Minimal payable fee receiver that records what it is paid.\ncontract ColFeeEchidnaSink {\n uint256 public totalReceived;\n\n receive() external payable {\n totalReceived += msg.value;\n }\n}\n" + }, + "contracts/TestContracts/EchidnaHarnessStubs.sol": { + "content": "// SPDX-License-Identifier: MIT\n\npragma solidity 0.6.11;\n\n/// @title Echidna harness stubs\n/// @notice Inert stand-ins for the peripheral contracts the core `setAddresses`\n/// calls now `checkContract`, but which the fuzzed trove/SP lifecycle\n/// only ever stores (zero token / staking) or calls in a way that is\n/// value-neutral (fee distributor, community issuance). They exist so\n/// the full system deploys; they deliberately do nothing so the\n/// inherited Liquity invariants keep holding under the fuzzer.\n\n/// Fee distributor: the borrowing-fee leg mints ZUSD here and the redemption\n/// leg sends RBTC here (via `ActivePool.sendETH`, a `call` that requires\n/// success) before invoking `distributeFees`. Leaving the value parked is\n/// exactly what `echidna_ZUSD_global_balances` expects (ZUSD at external\n/// addresses) and is invisible to `echidna_ETH_balances` (not a checked pool).\ncontract EchidnaFeeDistributorStub {\n function distributeFees() external {}\n\n receive() external payable {}\n}\n\n/// Community issuance: `StabilityPool` calls `issueSOV` on every\n/// deposit/withdraw/offset and `sendSOV` to pay gains. Returning 0 issuance\n/// makes `_updateG` early-return, so no SOV gain ever accrues — value-neutral\n/// for the ZUSD/ETH invariants.\ncontract EchidnaCommunityIssuanceStub {\n function issueSOV(uint256) external returns (uint256) {\n return 0;\n }\n\n function sendSOV(address, uint256) external {}\n}\n\n/// ZERO token / staking: only `checkContract`-ed at wiring time and stored;\n/// never called on the fuzzed path, so bytecode presence is all that is needed.\ncontract EchidnaInertStub {\n\n}\n" + }, + "contracts/TestContracts/EchidnaProxy.sol": { + "content": "// SPDX-License-Identifier: MIT\n\npragma solidity 0.6.11;\n\nimport \"../TroveManager.sol\";\nimport \"../BorrowerOperations.sol\";\nimport \"../StabilityPool.sol\";\nimport \"../ZUSDToken.sol\";\n\ncontract EchidnaProxy {\n TroveManager troveManager;\n BorrowerOperations borrowerOperations;\n StabilityPool stabilityPool;\n ZUSDToken zusdToken;\n\n constructor(\n TroveManager _troveManager,\n BorrowerOperations _borrowerOperations,\n StabilityPool _stabilityPool,\n ZUSDToken _zusdToken\n ) public {\n troveManager = _troveManager;\n borrowerOperations = _borrowerOperations;\n stabilityPool = _stabilityPool;\n zusdToken = _zusdToken;\n }\n\n receive() external payable {\n // do nothing\n }\n\n // TroveManager\n\n function liquidatePrx(address _user) external {\n troveManager.liquidate(_user);\n }\n\n function liquidateTrovesPrx(uint _n) external {\n troveManager.liquidateTroves(_n);\n }\n\n function batchLiquidateTrovesPrx(address[] calldata _troveArray) external {\n troveManager.batchLiquidateTroves(_troveArray);\n }\n\n function redeemCollateralPrx(\n uint _ZUSDAmount,\n address _firstRedemptionHint,\n address _upperPartialRedemptionHint,\n address _lowerPartialRedemptionHint,\n uint _partialRedemptionHintNICR,\n uint _maxIterations,\n uint _maxFee\n ) external {\n troveManager.redeemCollateral(\n _ZUSDAmount,\n _firstRedemptionHint,\n _upperPartialRedemptionHint,\n _lowerPartialRedemptionHint,\n _partialRedemptionHintNICR,\n _maxIterations,\n _maxFee\n );\n }\n\n // Borrower Operations\n function openTrovePrx(\n uint _ETH,\n uint _ZUSDAmount,\n address _upperHint,\n address _lowerHint,\n uint _maxFee\n ) external payable {\n borrowerOperations.openTrove{ value: _ETH }(_maxFee, _ZUSDAmount, _upperHint, _lowerHint);\n }\n\n function addCollPrx(uint _ETH, address _upperHint, address _lowerHint) external payable {\n borrowerOperations.addColl{ value: _ETH }(_upperHint, _lowerHint);\n }\n\n function withdrawCollPrx(uint _amount, address _upperHint, address _lowerHint) external {\n borrowerOperations.withdrawColl(_amount, _upperHint, _lowerHint);\n }\n\n function withdrawZUSDPrx(\n uint _amount,\n address _upperHint,\n address _lowerHint,\n uint _maxFee\n ) external {\n borrowerOperations.withdrawZUSD(_maxFee, _amount, _upperHint, _lowerHint);\n }\n\n function repayZUSDPrx(uint _amount, address _upperHint, address _lowerHint) external {\n borrowerOperations.repayZUSD(_amount, _upperHint, _lowerHint);\n }\n\n function closeTrovePrx() external {\n borrowerOperations.closeTrove();\n }\n\n function claimCollateralPrx() external {\n borrowerOperations.claimCollateral();\n }\n\n function adjustTrovePrx(\n uint _ETH,\n uint _collWithdrawal,\n uint _debtChange,\n bool _isDebtIncrease,\n address _upperHint,\n address _lowerHint,\n uint _maxFee\n ) external payable {\n borrowerOperations.adjustTrove{ value: _ETH }(\n _maxFee,\n _collWithdrawal,\n _debtChange,\n _isDebtIncrease,\n _upperHint,\n _lowerHint\n );\n }\n\n // Pool Manager\n function provideToSPPrx(uint _amount, address _frontEndTag) external {\n stabilityPool.provideToSP(_amount, _frontEndTag);\n }\n\n function withdrawFromSPPrx(uint _amount) external {\n stabilityPool.withdrawFromSP(_amount);\n }\n\n // ZUSD Token\n\n function transferPrx(address recipient, uint256 amount) external returns (bool) {\n return zusdToken.transfer(recipient, amount);\n }\n\n function approvePrx(address spender, uint256 amount) external returns (bool) {\n return zusdToken.approve(spender, amount);\n }\n\n function transferFromPrx(\n address sender,\n address recipient,\n uint256 amount\n ) external returns (bool) {\n return zusdToken.transferFrom(sender, recipient, amount);\n }\n\n function increaseAllowancePrx(address spender, uint256 addedValue) external returns (bool) {\n return zusdToken.increaseAllowance(spender, addedValue);\n }\n\n function decreaseAllowancePrx(\n address spender,\n uint256 subtractedValue\n ) external returns (bool) {\n return zusdToken.decreaseAllowance(spender, subtractedValue);\n }\n}\n" + }, + "contracts/TestContracts/EchidnaTester.sol": { + "content": "// SPDX-License-Identifier: MIT\n\npragma solidity 0.6.11;\npragma experimental ABIEncoderV2;\n\nimport \"../LiquityBaseParams.sol\";\nimport \"../Interfaces/ITroveManager.sol\";\nimport \"../TroveManager.sol\";\nimport \"../TroveManagerStorage.sol\";\nimport \"../Dependencies/TroveManagerRedeemOps.sol\";\nimport \"../BorrowerOperations.sol\";\nimport \"../ActivePool.sol\";\nimport \"../DefaultPool.sol\";\nimport \"../StabilityPool.sol\";\nimport \"../GasPool.sol\";\nimport \"../CollSurplusPool.sol\";\nimport \"../ZUSDToken.sol\";\nimport \"./PriceFeedTestnet.sol\";\nimport \"../SortedTroves.sol\";\nimport \"./EchidnaProxy.sol\";\nimport \"./EchidnaHarnessStubs.sol\";\n\n//import \"../Dependencies/console.sol\";\n\n// Run with:\n// rm -f fuzzTests/corpus/* # (optional)\n// ~/.local/bin/echidna-test contracts/TestContracts/EchidnaTester.sol --contract EchidnaTester --config fuzzTests/echidna_config.yaml\n\ncontract EchidnaTester {\n using SafeMath for uint;\n\n uint private constant NUMBER_OF_ACTORS = 100;\n uint private constant INITIAL_BALANCE = 1e24;\n uint private MCR;\n uint private CCR;\n uint private ZUSD_GAS_COMPENSATION;\n\n LiquityBaseParams public liquityBaseParams;\n TroveManagerRedeemOps public troveManagerRedeemOps;\n TroveManager public troveManager;\n BorrowerOperations public borrowerOperations;\n ActivePool public activePool;\n DefaultPool public defaultPool;\n StabilityPool public stabilityPool;\n GasPool public gasPool;\n CollSurplusPool public collSurplusPool;\n ZUSDToken public zusdToken;\n PriceFeedTestnet priceFeedTestnet;\n SortedTroves sortedTroves;\n\n EchidnaProxy[NUMBER_OF_ACTORS] public echidnaProxies;\n\n uint private numberOfTroves;\n\n constructor(address _permit2) public payable {\n liquityBaseParams = new LiquityBaseParams();\n liquityBaseParams.initialize(); // sets MCR (110%) / CCR (150%)\n troveManagerRedeemOps = new TroveManagerRedeemOps(14 * 86400, _permit2);\n troveManager = new TroveManager(14 days, _permit2);\n borrowerOperations = new BorrowerOperations(_permit2);\n activePool = new ActivePool();\n defaultPool = new DefaultPool();\n stabilityPool = new StabilityPool(_permit2);\n gasPool = new GasPool();\n zusdToken = new ZUSDToken();\n zusdToken.initialize(\n address(troveManager),\n address(stabilityPool),\n address(borrowerOperations)\n );\n\n collSurplusPool = new CollSurplusPool();\n priceFeedTestnet = new PriceFeedTestnet();\n\n sortedTroves = new SortedTroves();\n\n // Inert peripherals so the core `setAddresses` `checkContract` passes;\n // value-neutral under the fuzzer (see EchidnaHarnessStubs.sol).\n address feeDistributor = address(new EchidnaFeeDistributorStub());\n address communityIssuance = address(new EchidnaCommunityIssuanceStub());\n address zeroToken = address(new EchidnaInertStub());\n address zeroStaking = address(new EchidnaInertStub());\n\n troveManager.setAddresses(\n ITroveManager.TroveManagerInitAddressesParams(\n feeDistributor,\n address(troveManagerRedeemOps),\n address(liquityBaseParams),\n address(borrowerOperations),\n address(activePool),\n address(defaultPool),\n address(stabilityPool),\n address(gasPool),\n address(collSurplusPool),\n address(priceFeedTestnet),\n address(zusdToken),\n address(sortedTroves),\n zeroToken,\n zeroStaking\n )\n );\n\n borrowerOperations.setAddresses(\n feeDistributor,\n address(liquityBaseParams),\n address(troveManager),\n address(activePool),\n address(defaultPool),\n address(stabilityPool),\n address(gasPool),\n address(collSurplusPool),\n address(priceFeedTestnet),\n address(sortedTroves),\n address(zusdToken),\n zeroStaking\n );\n\n activePool.setAddresses(\n address(borrowerOperations),\n address(troveManager),\n address(stabilityPool),\n address(defaultPool)\n );\n\n defaultPool.setAddresses(address(troveManager), address(activePool));\n\n stabilityPool.setAddresses(\n address(liquityBaseParams),\n address(borrowerOperations),\n address(troveManager),\n address(activePool),\n address(zusdToken),\n address(sortedTroves),\n address(priceFeedTestnet),\n communityIssuance\n );\n\n collSurplusPool.setAddresses(\n address(borrowerOperations),\n address(troveManager),\n address(activePool)\n );\n\n sortedTroves.setParams(1e18, address(troveManager), address(borrowerOperations));\n\n for (uint i = 0; i < NUMBER_OF_ACTORS; i++) {\n echidnaProxies[i] = new EchidnaProxy(\n troveManager,\n borrowerOperations,\n stabilityPool,\n zusdToken\n );\n (bool success, ) = address(echidnaProxies[i]).call{ value: INITIAL_BALANCE }(\"\");\n require(success);\n }\n\n MCR = borrowerOperations.liquityBaseParams().MCR();\n CCR = borrowerOperations.liquityBaseParams().CCR();\n ZUSD_GAS_COMPENSATION = borrowerOperations.ZUSD_GAS_COMPENSATION();\n require(MCR > 0);\n require(CCR > 0);\n\n // TODO:\n priceFeedTestnet.setPrice(1e22);\n }\n\n // TroveManager\n\n function liquidateExt(uint _i, address _user) external {\n uint actor = _i % NUMBER_OF_ACTORS;\n echidnaProxies[actor].liquidatePrx(_user);\n }\n\n function liquidateTrovesExt(uint _i, uint _n) external {\n uint actor = _i % NUMBER_OF_ACTORS;\n echidnaProxies[actor].liquidateTrovesPrx(_n);\n }\n\n function batchLiquidateTrovesExt(uint _i, address[] calldata _troveArray) external {\n uint actor = _i % NUMBER_OF_ACTORS;\n echidnaProxies[actor].batchLiquidateTrovesPrx(_troveArray);\n }\n\n function redeemCollateralExt(\n uint _i,\n uint _ZUSDAmount,\n address _firstRedemptionHint,\n address _upperPartialRedemptionHint,\n address _lowerPartialRedemptionHint,\n uint _partialRedemptionHintNICR\n ) external {\n uint actor = _i % NUMBER_OF_ACTORS;\n echidnaProxies[actor].redeemCollateralPrx(\n _ZUSDAmount,\n _firstRedemptionHint,\n _upperPartialRedemptionHint,\n _lowerPartialRedemptionHint,\n _partialRedemptionHintNICR,\n 0,\n 0\n );\n }\n\n // Borrower Operations\n\n function getAdjustedETH(\n uint actorBalance,\n uint _ETH,\n uint ratio\n ) internal view returns (uint) {\n uint price = priceFeedTestnet.getPrice();\n require(price > 0);\n uint minETH = ratio.mul(ZUSD_GAS_COMPENSATION).div(price);\n require(actorBalance > minETH);\n uint ETH = minETH + (_ETH % (actorBalance - minETH));\n return ETH;\n }\n\n function getAdjustedZUSD(uint ETH, uint _ZUSDAmount, uint ratio) internal view returns (uint) {\n uint price = priceFeedTestnet.getPrice();\n uint ZUSDAmount = _ZUSDAmount;\n uint compositeDebt = ZUSDAmount.add(ZUSD_GAS_COMPENSATION);\n uint ICR = LiquityMath._computeCR(ETH, compositeDebt, price);\n if (ICR < ratio) {\n compositeDebt = ETH.mul(price).div(ratio);\n ZUSDAmount = compositeDebt.sub(ZUSD_GAS_COMPENSATION);\n }\n return ZUSDAmount;\n }\n\n function getMinCollForRatio(uint debt, uint ratio, uint price) internal pure returns (uint) {\n if (price == 0 || debt > uint(-1).div(ratio)) {\n return uint(-1);\n }\n\n uint minColl = debt.mul(ratio).div(price);\n if (minColl == uint(-1)) {\n return uint(-1);\n }\n return minColl.add(1);\n }\n\n function getAdjustedCollWithdrawal(\n address borrower,\n uint _amount\n ) internal view returns (uint) {\n uint price = priceFeedTestnet.getPrice();\n if (price == 0 || troveManager.checkRecoveryMode(price)) {\n return 0;\n }\n\n uint debt = troveManager.getTroveDebt(borrower);\n uint coll = troveManager.getTroveColl(borrower);\n if (debt == 0 || coll == 0) {\n return 0;\n }\n\n uint minBorrowerColl = getMinCollForRatio(debt, CCR, price);\n if (coll <= minBorrowerColl) {\n return 0;\n }\n\n uint maxWithdrawal = coll.sub(minBorrowerColl);\n uint systemDebt = activePool.getZUSDDebt().add(defaultPool.getZUSDDebt());\n uint systemColl = activePool.getETH().add(defaultPool.getETH());\n uint minSystemColl = getMinCollForRatio(systemDebt, CCR, price);\n if (systemColl <= minSystemColl) {\n return 0;\n }\n\n uint systemRoom = systemColl.sub(minSystemColl);\n if (maxWithdrawal > systemRoom) {\n maxWithdrawal = systemRoom;\n }\n if (maxWithdrawal == 0) {\n return 0;\n }\n\n uint minWithdrawal = 100; // 1% fee rounds to at least 1 wei.\n if (maxWithdrawal < minWithdrawal) {\n return 0;\n }\n return minWithdrawal + (_amount % (maxWithdrawal.sub(minWithdrawal).add(1)));\n }\n\n function openTroveExt(uint _i, uint _ETH, uint _ZUSDAmount) public payable {\n uint actor = _i % NUMBER_OF_ACTORS;\n EchidnaProxy echidnaProxy = echidnaProxies[actor];\n uint actorBalance = address(echidnaProxy).balance;\n\n // Keep convenience opens comfortably above CCR so collateral-exit\n // wrappers have room to exercise withdrawal paths.\n uint openRatio = CCR.mul(2);\n uint ETH = getAdjustedETH(actorBalance, _ETH, openRatio);\n uint ZUSDAmount = getAdjustedZUSD(ETH, _ZUSDAmount, openRatio);\n\n echidnaProxy.openTrovePrx(ETH, ZUSDAmount, address(0), address(0), 1e18);\n\n numberOfTroves = troveManager.getTroveOwnersCount();\n assert(numberOfTroves > 0);\n // canary\n //assert(numberOfTroves == 0);\n }\n\n function openTroveRawExt(\n uint _i,\n uint _ETH,\n uint _ZUSDAmount,\n address _upperHint,\n address _lowerHint,\n uint _maxFee\n ) public payable {\n uint actor = _i % NUMBER_OF_ACTORS;\n uint maxFee = _clampMaxFee(_maxFee);\n echidnaProxies[actor].openTrovePrx(_ETH, _ZUSDAmount, _upperHint, _lowerHint, maxFee);\n }\n\n function addCollExt(uint _i, uint _ETH) external payable {\n uint actor = _i % NUMBER_OF_ACTORS;\n EchidnaProxy echidnaProxy = echidnaProxies[actor];\n uint actorBalance = address(echidnaProxy).balance;\n\n uint ETH = getAdjustedETH(actorBalance, _ETH, MCR);\n\n echidnaProxy.addCollPrx(ETH, address(0), address(0));\n }\n\n function addCollRawExt(\n uint _i,\n uint _ETH,\n address _upperHint,\n address _lowerHint\n ) external payable {\n uint actor = _i % NUMBER_OF_ACTORS;\n echidnaProxies[actor].addCollPrx(_ETH, _upperHint, _lowerHint);\n }\n\n function withdrawCollExt(\n uint _i,\n uint _amount,\n address _upperHint,\n address _lowerHint\n ) external {\n uint actor = _i % NUMBER_OF_ACTORS;\n EchidnaProxy echidnaProxy = echidnaProxies[actor];\n uint amount = getAdjustedCollWithdrawal(address(echidnaProxy), _amount);\n if (amount == 0) {\n return;\n }\n echidnaProxy.withdrawCollPrx(amount, _upperHint, _lowerHint);\n }\n\n function withdrawZUSDExt(\n uint _i,\n uint _amount,\n address _upperHint,\n address _lowerHint,\n uint _maxFee\n ) external {\n uint actor = _i % NUMBER_OF_ACTORS;\n uint maxFee = _clampMaxFee(_maxFee);\n echidnaProxies[actor].withdrawZUSDPrx(_amount, _upperHint, _lowerHint, maxFee);\n }\n\n function repayZUSDExt(uint _i, uint _amount, address _upperHint, address _lowerHint) external {\n uint actor = _i % NUMBER_OF_ACTORS;\n echidnaProxies[actor].repayZUSDPrx(_amount, _upperHint, _lowerHint);\n }\n\n function closeTroveExt(uint _i) external {\n uint actor = _i % NUMBER_OF_ACTORS;\n echidnaProxies[actor].closeTrovePrx();\n }\n\n function adjustTroveExt(\n uint _i,\n uint _ETH,\n uint _collWithdrawal,\n uint _debtChange,\n bool _isDebtIncrease\n ) external payable {\n uint actor = _i % NUMBER_OF_ACTORS;\n EchidnaProxy echidnaProxy = echidnaProxies[actor];\n uint actorBalance = address(echidnaProxy).balance;\n\n uint ETH = getAdjustedETH(actorBalance, _ETH, MCR);\n uint debtChange = _debtChange;\n if (_isDebtIncrease) {\n // TODO: add current amount already withdrawn:\n debtChange = getAdjustedZUSD(ETH, uint(_debtChange), MCR);\n }\n // TODO: collWithdrawal, debtChange\n echidnaProxy.adjustTrovePrx(\n ETH,\n _collWithdrawal,\n debtChange,\n _isDebtIncrease,\n address(0),\n address(0),\n 1e18\n );\n }\n\n function adjustTroveRawExt(\n uint _i,\n uint _ETH,\n uint _collWithdrawal,\n uint _debtChange,\n bool _isDebtIncrease,\n address _upperHint,\n address _lowerHint,\n uint _maxFee\n ) external payable {\n uint actor = _i % NUMBER_OF_ACTORS;\n uint maxFee = _clampMaxFee(_maxFee);\n echidnaProxies[actor].adjustTrovePrx(\n _ETH,\n _collWithdrawal,\n _debtChange,\n _isDebtIncrease,\n _upperHint,\n _lowerHint,\n maxFee\n );\n }\n\n // Pool Manager\n\n function provideToSPExt(uint _i, uint _amount, address _frontEndTag) external {\n uint actor = _i % NUMBER_OF_ACTORS;\n echidnaProxies[actor].provideToSPPrx(_amount, _frontEndTag);\n }\n\n function withdrawFromSPExt(uint _i, uint _amount) external {\n uint actor = _i % NUMBER_OF_ACTORS;\n echidnaProxies[actor].withdrawFromSPPrx(_amount);\n }\n\n // ZUSD Token\n\n function transferExt(uint _i, address recipient, uint256 amount) external returns (bool) {\n uint actor = _i % NUMBER_OF_ACTORS;\n echidnaProxies[actor].transferPrx(recipient, amount);\n }\n\n function approveExt(uint _i, address spender, uint256 amount) external returns (bool) {\n uint actor = _i % NUMBER_OF_ACTORS;\n echidnaProxies[actor].approvePrx(spender, amount);\n }\n\n function transferFromExt(\n uint _i,\n address sender,\n address recipient,\n uint256 amount\n ) external returns (bool) {\n uint actor = _i % NUMBER_OF_ACTORS;\n echidnaProxies[actor].transferFromPrx(sender, recipient, amount);\n }\n\n function increaseAllowanceExt(\n uint _i,\n address spender,\n uint256 addedValue\n ) external returns (bool) {\n uint actor = _i % NUMBER_OF_ACTORS;\n echidnaProxies[actor].increaseAllowancePrx(spender, addedValue);\n }\n\n function decreaseAllowanceExt(\n uint _i,\n address spender,\n uint256 subtractedValue\n ) external returns (bool) {\n uint actor = _i % NUMBER_OF_ACTORS;\n echidnaProxies[actor].decreaseAllowancePrx(spender, subtractedValue);\n }\n\n // PriceFeed\n\n function setPriceExt(uint256 _price) external {\n if (_price == 0) {\n _price = 1;\n }\n bool result = priceFeedTestnet.setPrice(_price);\n assert(result);\n }\n\n function _clampMaxFee(uint _maxFee) internal pure returns (uint) {\n uint maxFee = _maxFee % (1e18 + 1);\n if (maxFee < 5e15) {\n maxFee = 5e15;\n }\n return maxFee;\n }\n\n // --------------------------\n // Invariants and properties\n // --------------------------\n\n function echidna_canary_number_of_troves() public view returns (bool) {\n if (numberOfTroves > 20) {\n return false;\n }\n\n return true;\n }\n\n function echidna_canary_active_pool_balance() public view returns (bool) {\n if (address(activePool).balance > 0) {\n return false;\n }\n return true;\n }\n\n function echidna_troves_order() external view returns (bool) {\n address currentTrove = sortedTroves.getFirst();\n address nextTrove = sortedTroves.getNext(currentTrove);\n\n while (currentTrove != address(0) && nextTrove != address(0)) {\n if (troveManager.getNominalICR(nextTrove) > troveManager.getNominalICR(currentTrove)) {\n return false;\n }\n // Uncomment to check that the condition is meaningful\n //else return false;\n\n currentTrove = nextTrove;\n nextTrove = sortedTroves.getNext(currentTrove);\n }\n\n return true;\n }\n\n /**\n * Status\n * Minimum debt (gas compensation)\n * Stake > 0\n */\n function echidna_trove_properties() public view returns (bool) {\n address currentTrove = sortedTroves.getFirst();\n while (currentTrove != address(0)) {\n // Status\n if (\n TroveManagerStorage.Status(troveManager.getTroveStatus(currentTrove)) !=\n TroveManagerStorage.Status.active\n ) {\n return false;\n }\n // Uncomment to check that the condition is meaningful\n //else return false;\n\n // Minimum debt (gas compensation)\n if (troveManager.getTroveDebt(currentTrove) < ZUSD_GAS_COMPENSATION) {\n return false;\n }\n // Uncomment to check that the condition is meaningful\n //else return false;\n\n // Stake > 0\n if (troveManager.getTroveStake(currentTrove) == 0) {\n return false;\n }\n // Uncomment to check that the condition is meaningful\n //else return false;\n\n currentTrove = sortedTroves.getNext(currentTrove);\n }\n return true;\n }\n\n function echidna_ETH_balances() public view returns (bool) {\n if (address(troveManager).balance > 0) {\n return false;\n }\n\n if (address(borrowerOperations).balance > 0) {\n return false;\n }\n\n if (address(activePool).balance != activePool.getETH()) {\n return false;\n }\n\n if (address(defaultPool).balance != defaultPool.getETH()) {\n return false;\n }\n\n if (address(stabilityPool).balance != stabilityPool.getETH()) {\n return false;\n }\n\n if (address(zusdToken).balance > 0) {\n return false;\n }\n\n if (address(priceFeedTestnet).balance > 0) {\n return false;\n }\n\n if (address(sortedTroves).balance > 0) {\n return false;\n }\n\n return true;\n }\n\n // TODO: What should we do with this? Should it be allowed? Should it be a canary?\n function echidna_price() public view returns (bool) {\n uint price = priceFeedTestnet.getPrice();\n\n if (price == 0) {\n return false;\n }\n // Uncomment to check that the condition is meaningful\n //else return false;\n\n return true;\n }\n\n // Total ZUSD matches\n function echidna_ZUSD_global_balances() public view returns (bool) {\n uint totalSupply = zusdToken.totalSupply();\n if (totalSupply == 0) {\n return true;\n }\n\n uint gasPoolBalance = zusdToken.balanceOf(address(gasPool));\n\n uint activePoolBalance = activePool.getZUSDDebt();\n uint defaultPoolBalance = defaultPool.getZUSDDebt();\n if (totalSupply != activePoolBalance + defaultPoolBalance) {\n return false;\n }\n\n uint stabilityPoolBalance = stabilityPool.getTotalZUSDDeposits();\n address currentTrove = sortedTroves.getFirst();\n uint trovesBalance;\n while (currentTrove != address(0)) {\n trovesBalance += zusdToken.balanceOf(address(currentTrove));\n currentTrove = sortedTroves.getNext(currentTrove);\n }\n // we cannot state equality because tranfers are made to external addresses too\n if (totalSupply <= stabilityPoolBalance + trovesBalance + gasPoolBalance) {\n return false;\n }\n\n return true;\n }\n\n /*\n function echidna_test() public view returns(bool) {\n return true;\n }\n */\n}\n" + }, + "contracts/TestContracts/ExitFeeControllerMock.sol": { + "content": "// SPDX-License-Identifier: MIT\npragma solidity 0.6.11;\npragma experimental ABIEncoderV2;\n\nimport \"../Interfaces/colfee/IExitFeeController.sol\";\n\n/// @title ExitFeeControllerMock\n/// @notice Test double for the ColFee controller. NOT production code — lives in\n/// TestContracts/ only. The production controller is Solidity 0.8.20 and\n/// cannot be compiled into the 0.6.11 zero-contracts workspace, so the\n/// hooks are exercised against this configurable stand-in.\n///\n/// Only `quoteExitFee` is implemented (the single selector the product\n/// hook calls). It deliberately does NOT inherit `IExitFeeController` so\n/// we avoid stubbing the full admin/view surface; the selector + ABI of\n/// `quoteExitFee` match, which is all `IExitFeeController(ctrl).quoteExitFee`\n/// needs at the call site.\ncontract ExitFeeControllerMock {\n bool public doRevert; // when true, quoteExitFee reverts → exercises CONTROLLER_REVERT fail-open\n bool public activeFlag;\n uint16 public rateBps;\n address public feeReceiverAddr;\n uint8 public reasonCode;\n\n // Optional override so tests can return a deliberately malformed quote\n // (e.g. feeAmount > gross) to exercise the INVALID_QUOTE guard.\n bool public overrideAmounts;\n uint256 public forcedFeeAmount;\n uint256 public forcedNetAmount;\n\n function configure(\n bool _active,\n uint16 _rateBps,\n address _feeReceiver,\n uint8 _reason\n ) external {\n activeFlag = _active;\n rateBps = _rateBps;\n feeReceiverAddr = _feeReceiver;\n reasonCode = _reason;\n }\n\n function setRevert(bool _v) external {\n doRevert = _v;\n }\n\n /// @dev Simulate a controller that becomes code-less after being wired in\n /// (e.g. a self-destructed/destroyed proxy) to exercise the product's\n /// _safeQuote extcodesize fail-open guard.\n function destroy() external {\n selfdestruct(msg.sender);\n }\n\n function setForcedAmounts(bool _on, uint256 _fee, uint256 _net) external {\n overrideAmounts = _on;\n forcedFeeAmount = _fee;\n forcedNetAmount = _net;\n }\n\n function quoteExitFee(\n bytes32,\n address,\n address,\n uint256 gross\n ) external view returns (IExitFeeController.ExitFeeQuote memory q) {\n require(!doRevert, \"EFCMock: forced revert\");\n q.active = activeFlag;\n q.rateBps = rateBps;\n q.feeReceiver = feeReceiverAddr;\n q.reason = reasonCode;\n if (overrideAmounts) {\n q.feeAmount = forcedFeeAmount;\n q.netAmount = forcedNetAmount;\n } else if (activeFlag) {\n q.feeAmount = (gross * uint256(rateBps)) / 10000;\n q.netAmount = gross - q.feeAmount;\n } else {\n q.netAmount = gross;\n }\n }\n}\n" + }, + "contracts/TestContracts/ExternalPriceFeedTester.sol": { + "content": "// SPDX-License-Identifier: MIT\npragma solidity 0.6.11;\n\nimport \"../Dependencies/PriceFeed/IExternalPriceFeed.sol\";\n\ninterface IMoCBaseOracle {\n function peek() external view returns (bytes32, bool);\n}\n\ncontract ExternalPriceFeedTester is IExternalPriceFeed {\n uint256 price;\n bool success;\n\n function setLatestAnswer(uint256 _price, bool _success) external {\n price = _price;\n success = _success;\n }\n\n function latestAnswer() external view override returns (uint256, bool) {\n return (price, success);\n }\n}\n" + }, + "contracts/TestContracts/FunctionCaller.sol": { + "content": "// SPDX-License-Identifier: MIT\n\npragma solidity 0.6.11;\n\nimport \"../Interfaces/ITroveManager.sol\";\nimport \"../Interfaces/ISortedTroves.sol\";\nimport \"../Interfaces/IPriceFeed.sol\";\nimport \"../Dependencies/LiquityMath.sol\";\n\n/* Wrapper contract - used for calculating gas of read-only and internal functions. \nNot part of the Zero application. */\ncontract FunctionCaller {\n ITroveManager troveManager;\n address public troveManagerAddress;\n\n ISortedTroves sortedTroves;\n address public sortedTrovesAddress;\n\n IPriceFeed priceFeed;\n address public priceFeedAddress;\n\n // --- Dependency setters ---\n\n function setTroveManagerAddress(address _troveManagerAddress) external {\n troveManagerAddress = _troveManagerAddress;\n troveManager = ITroveManager(_troveManagerAddress);\n }\n\n function setSortedTrovesAddress(address _sortedTrovesAddress) external {\n troveManagerAddress = _sortedTrovesAddress;\n sortedTroves = ISortedTroves(_sortedTrovesAddress);\n }\n\n function setPriceFeedAddress(address _priceFeedAddress) external {\n priceFeedAddress = _priceFeedAddress;\n priceFeed = IPriceFeed(_priceFeedAddress);\n }\n\n // --- Non-view wrapper functions used for calculating gas ---\n\n function troveManager_getCurrentICR(address _address, uint256 _price)\n external\n returns (uint256)\n {\n return troveManager.getCurrentICR(_address, _price);\n }\n\n function sortedTroves_findInsertPosition(\n uint256 _NICR,\n address _prevId,\n address _nextId\n ) external returns (address, address) {\n return sortedTroves.findInsertPosition(_NICR, _prevId, _nextId);\n }\n}\n" + }, + "contracts/TestContracts/LiquityMathTester.sol": { + "content": "// SPDX-License-Identifier: MIT\n\npragma solidity 0.6.11;\n\nimport \"../Dependencies/LiquityMath.sol\";\n\n/* Tester contract for math functions in Math.sol library. */\n\ncontract LiquityMathTester {\n\n function callMax(uint _a, uint _b) external pure returns (uint) {\n return LiquityMath._max(_a, _b);\n }\n\n // Non-view wrapper for gas test\n function callDecPowTx(uint _base, uint _n) external returns (uint) {\n return LiquityMath._decPow(_base, _n);\n }\n\n // External wrapper\n function callDecPow(uint _base, uint _n) external pure returns (uint) {\n return LiquityMath._decPow(_base, _n);\n }\n}\n" + }, + "contracts/TestContracts/LiquitySafeMath128Tester.sol": { + "content": "// SPDX-License-Identifier: MIT\n\npragma solidity 0.6.11;\n\nimport \"../Dependencies/LiquitySafeMath128.sol\";\n\n/* Tester contract for math functions in LiquitySafeMath128.sol library. */\n\ncontract LiquitySafeMath128Tester {\n using LiquitySafeMath128 for uint128;\n\n function add(uint128 a, uint128 b) external pure returns (uint128) {\n return a.add(b);\n }\n\n function sub(uint128 a, uint128 b) external pure returns (uint128) {\n return a.sub(b);\n }\n}\n" + }, + "contracts/TestContracts/MassetManagerTester.sol": { + "content": "// SPDX-License-Identifier: MIT\n\npragma solidity 0.6.11;\n\nimport { ERC20 } from \"@openzeppelin/contracts/token/ERC20/ERC20.sol\";\nimport { ERC20Permit } from \"@openzeppelin/contracts/drafts/ERC20Permit.sol\";\nimport \"../BorrowerOperationsStorage.sol\";\nimport \"hardhat/console.sol\";\n\n//TODO: rename NueMockToken to contract DLLRMockToken is ERC20(\"Sovryn Dollar\", \"DLLR\")\ncontract NueMockToken is ERC20(\"Nuestro\", \"NUE\"), ERC20Permit(\"Nuestro\"), Ownable {\n constructor() public {}\n\n function mint(address _account, uint256 _amount) public onlyOwner {\n _mint(_account, _amount);\n }\n\n function burn(address _account, uint256 _amount) public onlyOwner {\n _burn(_account, _amount);\n }\n\n function getChainId() external pure returns (uint256 chainID) {\n //return _chainID(); // it’s private\n assembly {\n chainID := chainid()\n }\n }\n\n function transferWithPermit(\n address _from,\n address _to,\n uint256 _amount,\n uint256 _deadline,\n uint8 _v,\n bytes32 _r,\n bytes32 _s\n ) external {\n permit(_from, msg.sender, _amount, _deadline, _v, _r, _s);\n transferFrom(_from, _to, _amount);\n }\n\n //TODO: add EIP-2612 Permit functionality\n}\n\ncontract MassetManagerTester is IMassetManager {\n NueMockToken public nueMockToken;\n\n constructor() public {\n nueMockToken = new NueMockToken();\n }\n\n function mintTo(\n address _bAsset,\n uint256 _bAssetQuantity,\n address _recipient\n ) external override returns (uint256) {\n IERC20(_bAsset).transferFrom(msg.sender, address(this), _bAssetQuantity);\n uint256 nueBalanceOfRecipientBeforeMint = nueMockToken.balanceOf(_recipient);\n nueMockToken.mint(_recipient, _bAssetQuantity);\n return nueMockToken.balanceOf(_recipient) - nueBalanceOfRecipientBeforeMint;\n }\n\n function getToken() external view override returns (address) {\n return address(nueMockToken);\n }\n\n /// @dev Transfer 'bAsset' to the recipient then burn the 'aggregator' nueMockToken\n function redeemTo(\n address _bAsset, //ZUSD nueMockToken\n uint256 _massetQuantity,\n address _recipient //user\n ) external override returns (uint256 massetRedeemed) {\n ERC20(_bAsset).transfer(_recipient, _massetQuantity);\n // nueMockToken.burn(_recipient, _massetQuantity); // _recipient used to be for the previous bridge-like implementation\n nueMockToken.burn(msg.sender, _massetQuantity);\n\n return _massetQuantity;\n }\n}\n" + }, + "contracts/TestContracts/MockFeeSharingCollector.sol": { + "content": "// SPDX-License-Identifier: MIT\n\npragma solidity 0.6.11;\n\nimport \"../ZERO/ZEROToken.sol\";\n\ninterface MockIFeeSharingCollector {\n\tfunction transferTokens(address _token, uint96 _amount) external;\n}\n\n/// @dev Simple contract that will receive ZERO tokens issued to the SOV stakers.\ncontract MockFeeSharingCollector is MockIFeeSharingCollector {\n\tfunction transferTokens(address _token, uint96 _amount) override external {\n\t\t/// Just a fake function to receive the tokens\n\t\tZEROToken(_token).transferFrom(msg.sender, address(this), _amount);\n\t}\n\n\tfunction transferRBTC() external payable {}\n}\n" + }, + "contracts/TestContracts/PriceFeedSovrynTester.sol": { + "content": "// SPDX-License-Identifier: MIT\n\npragma solidity 0.6.11;\n\nimport \"../Interfaces/IPriceFeedSovryn.sol\";\nimport \"../Dependencies/SafeMath.sol\";\n\n/*\n* PriceFeed placeholder for testnet and development. The price is simply set manually and saved in a state \n* variable. The contract does not connect to a live Chainlink price feed. \n*/\ncontract PriceFeedSovrynTester {\n using SafeMath for uint256;\n\n mapping(address => mapping(address => uint256)) public prices;\n\n // --- Functions ---\n // Manual external price setter.\n function setPrice(address sourceToken, address destToken, uint256 price) external {\n prices[sourceToken][destToken] = price;\n }\n\n function queryRate(address sourceToken, address destToken) public view returns(uint256 rate, uint256 precision) {\n return (prices[sourceToken][destToken], 1e18);\n }\n\n function queryReturn(\n address sourceToken,\n address destToken,\n uint256 sourceAmount\n ) public view returns (uint256 destAmount) {\n (uint256 rate, uint256 precision) = queryRate(sourceToken, destToken);\n return sourceAmount.mul(rate).div(precision);\n }\n}\n" + }, + "contracts/TestContracts/PriceFeedTester.sol": { + "content": "// SPDX-License-Identifier: MIT\n\npragma solidity 0.6.11;\n\nimport \"../PriceFeed.sol\";\n\ncontract PriceFeedTester is PriceFeed {\n function setLastGoodPrice(uint256 _lastGoodPrice) external {\n lastGoodPrice = _lastGoodPrice;\n }\n}\n" + }, + "contracts/TestContracts/PriceFeedTestnet.sol": { + "content": "// SPDX-License-Identifier: MIT\n\npragma solidity 0.6.11;\n\nimport \"../Interfaces/IPriceFeed.sol\";\n\n/*\n* PriceFeed placeholder for testnet and development. The price is simply set manually and saved in a state \n* variable. The contract does not connect to a live Chainlink price feed. \n*/\ncontract PriceFeedTestnet is IPriceFeed {\n \n uint256 private _price = 200 * 1e18;\n\n // --- Functions ---\n\n // View price getter for simplicity in tests\n function getPrice() external view returns (uint256) {\n return _price;\n }\n\n function fetchPrice() external override returns (uint256) {\n // Fire an event just like the mainnet version would.\n // This lets the subgraph rely on events to get the latest price even when developing locally.\n emit LastGoodPriceUpdated(_price);\n return _price;\n }\n\n // Manual external price setter.\n function setPrice(uint256 price) external returns (bool) {\n _price = price;\n return true;\n }\n}\n" + }, + "contracts/TestContracts/ReentrantSurplusClaimer.sol": { + "content": "// SPDX-License-Identifier: MIT\n\npragma solidity 0.6.11;\n\nimport \"../Interfaces/IBorrowerOperations.sol\";\n\n/// @notice Test attacker: attempts to re-enter BorrowerOperations.claimCollateral()\n/// from its receive() while the surplus payout is in flight. CEI in\n/// CollSurplusPool zeroes the balance before paying, so the reentrant\n/// claim must hit \"No collateral available to claim\"; the attacker\n/// swallows that revert (recording it) so the outer claim completes.\ncontract ReentrantSurplusClaimer {\n IBorrowerOperations public borrowerOperations;\n bool public reentryAttempted;\n bool public reentrySucceeded;\n uint256 public totalReceived;\n\n constructor(IBorrowerOperations _borrowerOperations) public {\n borrowerOperations = _borrowerOperations;\n }\n\n /// Open a trove owned by this contract (so a full redemption parks its\n /// surplus here and claimCollateral() pays out to this receive()).\n function openTrove(\n uint256 _maxFee,\n uint256 _zusdAmount,\n address _upperHint,\n address _lowerHint\n ) external payable {\n borrowerOperations.openTrove{ value: msg.value }(\n _maxFee,\n _zusdAmount,\n _upperHint,\n _lowerHint\n );\n }\n\n function claim() external {\n borrowerOperations.claimCollateral();\n }\n\n receive() external payable {\n totalReceived += msg.value;\n if (!reentryAttempted) {\n reentryAttempted = true;\n try borrowerOperations.claimCollateral() {\n reentrySucceeded = true;\n } catch {}\n }\n }\n}\n" + }, + "contracts/TestContracts/SortedTrovesTester.sol": { + "content": "// SPDX-License-Identifier: MIT\n\npragma solidity 0.6.11;\n\nimport \"../Interfaces/ISortedTroves.sol\";\n\n\ncontract SortedTrovesTester {\n ISortedTroves sortedTroves;\n\n function setSortedTroves(address _sortedTrovesAddress) external {\n sortedTroves = ISortedTroves(_sortedTrovesAddress);\n }\n\n function insert(address _id, uint256 _NICR, address _prevId, address _nextId) external {\n sortedTroves.insert(_id, _NICR, _prevId, _nextId);\n }\n\n function remove(address _id) external {\n sortedTroves.remove(_id);\n }\n\n function reInsert(address _id, uint256 _newNICR, address _prevId, address _nextId) external {\n sortedTroves.reInsert(_id, _newNICR, _prevId, _nextId);\n }\n\n function getNominalICR(address) external pure returns (uint) {\n return 1;\n }\n\n function getCurrentICR(address, uint) external pure returns (uint) {\n return 1;\n }\n}\n" + }, + "contracts/TestContracts/StabilityPoolTester.sol": { + "content": "// SPDX-License-Identifier: MIT\n\npragma solidity 0.6.11;\npragma experimental ABIEncoderV2;\n\nimport \"../StabilityPool.sol\";\n\ncontract StabilityPoolTester is StabilityPool {\n\n /** Constructor */\n constructor(address _permit2) public StabilityPool(_permit2) {}\n \n function unprotectedPayable() external payable {\n ETH = ETH.add(msg.value);\n }\n}\n" + }, + "contracts/TestContracts/TestLibraries.sol": { + "content": "// SPDX-License-Identifier: MIT\n\npragma solidity 0.6.11;\nimport \"../Libraries/BorrowerLib.sol\";\nimport \"../Libraries/LiquidationLib.sol\";\nimport \"../Libraries/StabilityPoolLib.sol\";\nimport \"../Libraries/TroveStatisticsLib.sol\";\n\ncontract TestLibraries {\n address private libraryContractAddress;\n\n constructor(address _libraryContractAddress) public {\n libraryContractAddress = _libraryContractAddress;\n }\n\n function testOpenCreditLine(uint256 _maxFeePercentage, uint256 _ZUSDAmount) external payable {\n BorrowerLib.openCreditLineInZusd(_maxFeePercentage, _ZUSDAmount, libraryContractAddress);\n }\n\n function testWithdrawZUSD(uint256 _maxFee, uint256 _amount) external {\n BorrowerLib.withdrawZUSD(_maxFee, _amount, libraryContractAddress);\n }\n\n function testWithdrawCollateral(uint256 _amount) external {\n BorrowerLib.withdrawCollateral(_amount, libraryContractAddress);\n }\n\n function testRepayZUSD(uint256 _amount) external {\n BorrowerLib.repayZUSD(_amount, libraryContractAddress);\n }\n\n function testAddCollateral() external payable {\n BorrowerLib.addCollateral(libraryContractAddress);\n }\n\n function testCloseCreditLineAndWithdrawCollateral() external {\n BorrowerLib.closeCreditLineAndWithdrawCollateral(libraryContractAddress);\n }\n\n function testBorrowerLiquidation(address borrower) external {\n LiquidationLib.liquidateBorrower(borrower, libraryContractAddress);\n }\n\n function testNPositionsLiquidation(uint256 maxLiquidations) external {\n LiquidationLib.liquidateBadPositions(libraryContractAddress, maxLiquidations);\n }\n\n function testRedeemCollateral(\n address _hintHelpersAddress,\n address _priceFeedAddress,\n uint256 _ZUSDAmount,\n uint256 _maxFeePercentage\n ) external {\n LiquidationLib.redeemCollateral(\n libraryContractAddress,\n _hintHelpersAddress,\n _priceFeedAddress,\n _ZUSDAmount,\n _maxFeePercentage\n );\n }\n\n function testProvideToSP(uint256 _amount) external {\n StabilityPoolLib.provideToSP(_amount, libraryContractAddress);\n }\n\n function testWithdrawFromSP(uint256 _amount) external {\n StabilityPoolLib.withdrawFromSP(_amount, libraryContractAddress);\n }\n\n function testWithdrawRBTCGainToTrove() external {\n StabilityPoolLib.withdrawRBTCGainToTrove(libraryContractAddress);\n }\n\n function testGetNominalICR(address _borrower) external view returns (uint256 collateralRatio) {\n return TroveStatisticsLib.getNominalICR(libraryContractAddress, _borrower);\n }\n\n function testGetEntireDebtAndColl(\n address _borrower\n )\n external\n view\n returns (\n uint256 debt,\n uint256 coll,\n uint256 pendingZUSDDebtReward,\n uint256 pendingRBTCReward\n )\n {\n return TroveStatisticsLib.getEntireDebtAndColl(libraryContractAddress, _borrower);\n }\n\n function testCalculateBorrowingFee(\n uint256 _ZUSDDebt\n ) external view returns (uint256 borrowingFee) {\n return TroveStatisticsLib.calculateBorrowingFee(libraryContractAddress, _ZUSDDebt);\n }\n}\n" + }, + "contracts/TestContracts/TroveManagerTester.sol": { + "content": "// SPDX-License-Identifier: MIT\n\npragma solidity 0.6.11;\npragma experimental ABIEncoderV2;\n\nimport \"../TroveManager.sol\";\n\n/* Tester contract inherits from TroveManager, and provides external functions \nfor testing the parent's internal functions. */\n\ncontract TroveManagerTester is TroveManager {\n constructor(address _permit2) public TroveManager(14 days, _permit2) {}\n\n function computeICR(uint _coll, uint _debt, uint _price) external pure returns (uint) {\n return LiquityMath._computeCR(_coll, _debt, _price);\n }\n\n function getCollGasCompensation(uint _coll) external view returns (uint) {\n return _getCollGasCompensation(_coll);\n }\n\n function getZUSDGasCompensation() external pure returns (uint) {\n return ZUSD_GAS_COMPENSATION;\n }\n\n function getCompositeDebt(uint _debt) external pure returns (uint) {\n return _getCompositeDebt(_debt);\n }\n\n function unprotectedDecayBaseRateFromBorrowing() external returns (uint) {\n baseRate = _calcDecayedBaseRate();\n assert(baseRate >= 0 && baseRate <= DECIMAL_PRECISION);\n\n _updateLastFeeOpTime();\n return baseRate;\n }\n\n function minutesPassedSinceLastFeeOp() external view returns (uint) {\n return _minutesPassedSinceLastFeeOp();\n }\n\n function setLastFeeOpTimeToNow() external {\n lastFeeOperationTime = block.timestamp;\n }\n\n function setBaseRate(uint _baseRate) external {\n baseRate = _baseRate;\n }\n\n function callGetRedemptionFee(uint _ETHDrawn) external view returns (uint) {\n _getRedemptionFee(_ETHDrawn);\n }\n\n function getActualDebtFromComposite(uint _debtVal) external pure returns (uint) {\n return _getNetDebt(_debtVal);\n }\n\n function callInternalRemoveTroveOwner(address _troveOwner) external {\n uint troveOwnersArrayLength = TroveOwners.length;\n _removeTroveOwner(_troveOwner, troveOwnersArrayLength);\n }\n}\n" + }, + "contracts/TestContracts/UpgradableProxyTester.sol": { + "content": "\n// SPDX-License-Identifier: MIT\npragma solidity 0.6.11;\n\nimport \"../Proxy/UpgradableProxy.sol\";\ncontract Storage {\n uint someVar;\n}\n\ncontract ProxiableContract is Storage {\n\n function getSomeVar() public view returns (uint) {\n return someVar;\n }\n\n function setSomeVar(uint value) public {\n someVar = value;\n }\n}\n\ncontract Storage2 {\n uint anotherVar;\n}\n\ncontract ProxiableContract2 is ProxiableContract, Storage2 {\n\n function getAnotherVar() public view returns (uint) {\n return anotherVar;\n }\n\n function setAnotherVar(uint value) public {\n anotherVar = value;\n }\n\n function mulVars() public view returns (uint) {\n return someVar * anotherVar;\n }\n}\n\ncontract UpgradableProxyTester is UpgradableProxy, Storage {}\n" + }, + "contracts/TestContracts/ZEROStakingTester.sol": { + "content": "// SPDX-License-Identifier: MIT\n\npragma solidity 0.6.11;\n\nimport \"../ZERO/ZEROStaking.sol\";\n\n\ncontract ZEROStakingTester is ZEROStaking {\n function requireCallerIsFeeDistributor() external view {\n _requireCallerIsFeeDistributor();\n }\n}\n" + }, + "contracts/TestContracts/ZEROTokenTester.sol": { + "content": "// SPDX-License-Identifier: MIT\n\npragma solidity 0.6.11;\n\nimport \"../ZERO/ZEROToken.sol\";\n\ncontract ZEROTokenTester is ZEROToken {\n constructor\n (\n address _zeroStakingAddress,\n address _marketMakerAddress,\n address _presaleAddress\n ) \n public \n {\n initialize(\n _zeroStakingAddress,\n _marketMakerAddress,\n _presaleAddress\n );\n } \n\n function unprotectedMint(address account, uint256 amount) external {\n // No check for the caller here\n\n _mint(account, amount);\n }\n\n function unprotectedSendToZEROStaking(address _sender, uint256 _amount) external {\n // No check for the caller here\n \n _transfer(_sender, zeroStakingAddress, _amount);\n }\n\n function callInternalApprove(address owner, address spender, uint256 amount) external returns (bool) {\n _approve(owner, spender, amount);\n }\n\n function callInternalTransfer(address sender, address recipient, uint256 amount) external returns (bool) {\n _transfer(sender, recipient, amount);\n }\n\n function getChainId() external pure returns (uint256 chainID) {\n //return _chainID(); // it’s private\n assembly {\n chainID := chainid()\n }\n }\n}" + }, + "contracts/TestContracts/ZUSDTokenCaller.sol": { + "content": "// SPDX-License-Identifier: MIT\n\npragma solidity 0.6.11;\n\nimport \"../Interfaces/IZUSDToken.sol\";\n\ncontract ZUSDTokenCaller {\n IZUSDToken ZUSD;\n\n function setZUSD(IZUSDToken _ZUSD) external {\n ZUSD = _ZUSD;\n }\n\n function zusdMint(address _account, uint _amount) external {\n ZUSD.mint(_account, _amount);\n }\n\n function zusdBurn(address _account, uint _amount) external {\n ZUSD.burn(_account, _amount);\n }\n\n function zusdSendToPool(address _sender, address _poolAddress, uint256 _amount) external {\n ZUSD.sendToPool(_sender, _poolAddress, _amount);\n }\n\n function zusdReturnFromPool(address _poolAddress, address _receiver, uint256 _amount ) external {\n ZUSD.returnFromPool(_poolAddress, _receiver, _amount);\n }\n}\n" + }, + "contracts/TestContracts/ZUSDTokenTester.sol": { + "content": "// SPDX-License-Identifier: MIT\n\npragma solidity 0.6.11;\n\nimport \"../ZUSDToken.sol\";\n\ncontract ZUSDTokenTester is ZUSDToken {\n \n constructor( \n address _troveManagerAddress,\n address _stabilityPoolAddress,\n address _borrowerOperationsAddress\n ) public {\n initialize(_troveManagerAddress, _stabilityPoolAddress, _borrowerOperationsAddress);\n }\n \n function unprotectedMint(address _account, uint256 _amount) external {\n // No check on caller here\n\n _mint(_account, _amount);\n }\n\n function unprotectedBurn(address _account, uint _amount) external {\n // No check on caller here\n \n _burn(_account, _amount);\n }\n\n function unprotectedSendToPool(address _sender, address _poolAddress, uint256 _amount) external {\n // No check on caller here\n\n _transfer(_sender, _poolAddress, _amount);\n }\n\n function unprotectedReturnFromPool(address _poolAddress, address _receiver, uint256 _amount ) external {\n // No check on caller here\n\n _transfer(_poolAddress, _receiver, _amount);\n }\n\n function callInternalApprove(address owner, address spender, uint256 amount) external returns (bool) {\n _approve(owner, spender, amount);\n }\n\n function getChainId() external pure returns (uint256 chainID) {\n //return _chainID(); // it’s private\n assembly {\n chainID := chainid()\n }\n }\n\n function getDigest(address owner, address spender, uint amount, uint nonce, uint deadline) external view returns (bytes32) {\n return keccak256(abi.encodePacked(\n uint16(0x1901),\n domainSeparator(),\n keccak256(abi.encode(_PERMIT_TYPEHASH, owner, spender, amount, nonce, deadline))\n )\n );\n }\n\n function recoverAddress(bytes32 digest, uint8 v, bytes32 r, bytes32 s) external pure returns (address) {\n return ecrecover(digest, v, r, s);\n }\n}\n" + }, + "contracts/TestContracts/ZUSDTokenTestnet.sol": { + "content": "// SPDX-License-Identifier: MIT\n\npragma solidity 0.6.11;\n\nimport \"../Interfaces/IZUSDToken.sol\";\nimport \"../Dependencies/SafeMath.sol\";\nimport \"../Dependencies/Ownable.sol\";\nimport \"../Dependencies/CheckContract.sol\";\nimport \"../Dependencies/console.sol\";\nimport \"../ZUSDToken.sol\";\n\n/**\n *\n * Based upon OpenZeppelin's ERC20 contract:\n * https://github.com/OpenZeppelin/openzeppelin-contracts/blob/master/contracts/token/ERC20/ERC20.sol\n *\n * and their EIP2612 (ERC20Permit / ERC712) functionality:\n * https://github.com/OpenZeppelin/openzeppelin-contracts/blob/53516bc555a454862470e7860a9b5254db4d00f5/contracts/token/ERC20/ERC20Permit.sol\n *\n *\n * --- Functionality added specific to the ZUSDToken ---\n *\n * 1) Transfer protection: blacklist of addresses that are invalid recipients (i.e. core Zero contracts) in external\n * transfer() and transferFrom() calls. The purpose is to protect users from losing tokens by mistakenly sending ZUSD directly to a Zero\n * core contract, when they should rather call the right function.\n *\n * 2) sendToPool() and returnFromPool(): functions callable only Zero core contracts, which move ZUSD tokens between Zero <-> user.\n */\n\n/// @dev ZUSDTokenTestnet has unptotected initialize function to bypass initializer() modifier validation\n/// @notice use if need to redeploy the token logic AND run initialize() again on the proxy\ncontract ZUSDTokenTestnet is ZUSDToken {\n function initialize(\n address _troveManagerAddress,\n address _stabilityPoolAddress,\n address _borrowerOperationsAddress\n ) public override onlyOwner {\n _initialize(_troveManagerAddress, _stabilityPoolAddress, _borrowerOperationsAddress);\n }\n}\n" + }, + "contracts/TroveManager.sol": { + "content": "// SPDX-License-Identifier: MIT\n\npragma solidity 0.6.11;\npragma experimental ABIEncoderV2;\n\nimport \"./Interfaces/ITroveManager.sol\";\nimport \"./Interfaces/IStabilityPool.sol\";\nimport \"./Interfaces/ICollSurplusPool.sol\";\nimport \"./Interfaces/IZUSDToken.sol\";\nimport \"./Interfaces/ISortedTroves.sol\";\nimport \"./Interfaces/IZEROToken.sol\";\nimport \"./Interfaces/IZEROStaking.sol\";\nimport \"./Interfaces/IFeeDistributor.sol\";\nimport \"./Dependencies/LiquityBase.sol\";\nimport \"./Dependencies/CheckContract.sol\";\nimport \"./Dependencies/console.sol\";\nimport \"./Dependencies/TroveManagerBase.sol\";\nimport \"./TroveManagerStorage.sol\";\nimport \"./Interfaces/IPermit2.sol\";\n\ncontract TroveManager is TroveManagerBase, CheckContract, ITroveManager {\n /** CONSTANT / IMMUTABLE VARIABLE ONLY */\n IPermit2 public immutable permit2;\n\n event FeeDistributorAddressChanged(address _feeDistributorAddress);\n event TroveManagerRedeemOpsAddressChanged(address _troveManagerRedeemOps);\n event LiquityBaseParamsAddressChanges(address _borrowerOperationsAddress);\n event BorrowerOperationsAddressChanged(address _newBorrowerOperationsAddress);\n event PriceFeedAddressChanged(address _newPriceFeedAddress);\n event ZUSDTokenAddressChanged(address _newZUSDTokenAddress);\n event ActivePoolAddressChanged(address _activePoolAddress);\n event DefaultPoolAddressChanged(address _defaultPoolAddress);\n event StabilityPoolAddressChanged(address _stabilityPoolAddress);\n event GasPoolAddressChanged(address _gasPoolAddress);\n event CollSurplusPoolAddressChanged(address _collSurplusPoolAddress);\n event SortedTrovesAddressChanged(address _sortedTrovesAddress);\n event ZEROTokenAddressChanged(address _zeroTokenAddress);\n event ZEROStakingAddressChanged(address _zeroStakingAddress);\n\n ///@param _bootstrapPeriod During bootsrap period redemptions are not allowed\n constructor(uint256 _bootstrapPeriod, address _permit2) public TroveManagerBase(_bootstrapPeriod) {\n permit2 = IPermit2(_permit2);\n }\n\n // --- Dependency setter ---\n function setAddresses(\n TroveManagerInitAddressesParams memory _troveManagerInitAddressesParams\n ) external override onlyOwner {\n {\n checkContract(_troveManagerInitAddressesParams._feeDistributorAddress);\n checkContract(_troveManagerInitAddressesParams._troveManagerRedeemOps);\n checkContract(_troveManagerInitAddressesParams._liquityBaseParamsAddress);\n checkContract(_troveManagerInitAddressesParams._borrowerOperationsAddress);\n checkContract(_troveManagerInitAddressesParams._activePoolAddress);\n checkContract(_troveManagerInitAddressesParams._defaultPoolAddress);\n checkContract(_troveManagerInitAddressesParams._stabilityPoolAddress);\n checkContract(_troveManagerInitAddressesParams._gasPoolAddress);\n checkContract(_troveManagerInitAddressesParams._collSurplusPoolAddress);\n checkContract(_troveManagerInitAddressesParams._priceFeedAddress);\n checkContract(_troveManagerInitAddressesParams._zusdTokenAddress);\n checkContract(_troveManagerInitAddressesParams._sortedTrovesAddress);\n checkContract(_troveManagerInitAddressesParams._zeroTokenAddress);\n checkContract(_troveManagerInitAddressesParams._zeroStakingAddress);\n }\n\n feeDistributor = IFeeDistributor(_troveManagerInitAddressesParams._feeDistributorAddress);\n troveManagerRedeemOps = _troveManagerInitAddressesParams._troveManagerRedeemOps;\n liquityBaseParams = ILiquityBaseParams(\n _troveManagerInitAddressesParams._liquityBaseParamsAddress\n );\n {\n borrowerOperationsAddress = _troveManagerInitAddressesParams\n ._borrowerOperationsAddress;\n activePool = IActivePool(_troveManagerInitAddressesParams._activePoolAddress);\n defaultPool = IDefaultPool(_troveManagerInitAddressesParams._defaultPoolAddress);\n _stabilityPool = IStabilityPool(\n _troveManagerInitAddressesParams._stabilityPoolAddress\n );\n gasPoolAddress = _troveManagerInitAddressesParams._gasPoolAddress;\n collSurplusPool = ICollSurplusPool(\n _troveManagerInitAddressesParams._collSurplusPoolAddress\n );\n priceFeed = IPriceFeed(_troveManagerInitAddressesParams._priceFeedAddress);\n _zusdToken = IZUSDToken(_troveManagerInitAddressesParams._zusdTokenAddress);\n sortedTroves = ISortedTroves(_troveManagerInitAddressesParams._sortedTrovesAddress);\n _zeroToken = IZEROToken(_troveManagerInitAddressesParams._zeroTokenAddress);\n _zeroStaking = IZEROStaking(_troveManagerInitAddressesParams._zeroStakingAddress);\n }\n\n emit FeeDistributorAddressChanged(_troveManagerInitAddressesParams._feeDistributorAddress);\n emit TroveManagerRedeemOpsAddressChanged(\n _troveManagerInitAddressesParams._troveManagerRedeemOps\n );\n emit LiquityBaseParamsAddressChanges(\n _troveManagerInitAddressesParams._borrowerOperationsAddress\n );\n emit BorrowerOperationsAddressChanged(\n _troveManagerInitAddressesParams._borrowerOperationsAddress\n );\n emit ActivePoolAddressChanged(_troveManagerInitAddressesParams._activePoolAddress);\n emit DefaultPoolAddressChanged(_troveManagerInitAddressesParams._defaultPoolAddress);\n emit StabilityPoolAddressChanged(_troveManagerInitAddressesParams._stabilityPoolAddress);\n emit GasPoolAddressChanged(_troveManagerInitAddressesParams._gasPoolAddress);\n emit CollSurplusPoolAddressChanged(\n _troveManagerInitAddressesParams._collSurplusPoolAddress\n );\n emit PriceFeedAddressChanged(_troveManagerInitAddressesParams._priceFeedAddress);\n emit ZUSDTokenAddressChanged(_troveManagerInitAddressesParams._zusdTokenAddress);\n emit SortedTrovesAddressChanged(_troveManagerInitAddressesParams._sortedTrovesAddress);\n emit ZEROTokenAddressChanged(_troveManagerInitAddressesParams._zeroTokenAddress);\n emit ZEROStakingAddressChanged(_troveManagerInitAddressesParams._zeroStakingAddress);\n }\n\n function setTroveManagerRedeemOps(address _troveManagerRedeemOps) external override onlyOwner {\n checkContract(_troveManagerRedeemOps);\n troveManagerRedeemOps = _troveManagerRedeemOps;\n emit TroveManagerRedeemOpsAddressChanged(_troveManagerRedeemOps);\n }\n\n // --- Getters ---\n\n function getTroveOwnersCount() external view override returns (uint256) {\n return TroveOwners.length;\n }\n\n function getTroveFromTroveOwnersArray(\n uint256 _index\n ) external view override returns (address) {\n return TroveOwners[_index];\n }\n\n // --- Trove Liquidation functions ---\n\n /// Single liquidation function. Closes the trove if its ICR is lower than the minimum collateral ratio.\n function liquidate(address _borrower) external override {\n _requireTroveIsActive(_borrower);\n\n address[] memory borrowers = new address[](1);\n borrowers[0] = _borrower;\n batchLiquidateTroves(borrowers);\n }\n\n // --- Inner single liquidation functions ---\n\n /// Liquidate one trove, in Normal Mode.\n function _liquidateNormalMode(\n IActivePool _activePool,\n IDefaultPool _defaultPool,\n address _borrower,\n uint256 _ZUSDInStabPool\n ) internal returns (LiquidationValues memory singleLiquidation) {\n LocalVariables_InnerSingleLiquidateFunction memory vars;\n\n (\n singleLiquidation.entireTroveDebt,\n singleLiquidation.entireTroveColl,\n vars.pendingDebtReward,\n vars.pendingCollReward\n ) = getEntireDebtAndColl(_borrower);\n\n _movePendingTroveRewardsToActivePool(\n _activePool,\n _defaultPool,\n vars.pendingDebtReward,\n vars.pendingCollReward\n );\n _removeStake(_borrower);\n\n singleLiquidation.collGasCompensation = _getCollGasCompensation(\n singleLiquidation.entireTroveColl\n );\n singleLiquidation.ZUSDGasCompensation = ZUSD_GAS_COMPENSATION;\n uint256 collToLiquidate = singleLiquidation.entireTroveColl.sub(\n singleLiquidation.collGasCompensation\n );\n\n (\n singleLiquidation.debtToOffset,\n singleLiquidation.collToSendToSP,\n singleLiquidation.debtToRedistribute,\n singleLiquidation.collToRedistribute\n ) = _getOffsetAndRedistributionVals(\n singleLiquidation.entireTroveDebt,\n collToLiquidate,\n _ZUSDInStabPool\n );\n\n _closeTrove(_borrower, Status.closedByLiquidation);\n emit TroveLiquidated(\n _borrower,\n singleLiquidation.entireTroveDebt,\n singleLiquidation.entireTroveColl,\n TroveManagerOperation.liquidateInNormalMode\n );\n emit TroveUpdated(_borrower, 0, 0, 0, TroveManagerOperation.liquidateInNormalMode);\n return singleLiquidation;\n }\n\n /// Liquidate one trove, in Recovery Mode.\n function _liquidateRecoveryMode(\n IActivePool _activePool,\n IDefaultPool _defaultPool,\n address _borrower,\n uint256 _ICR,\n uint256 _ZUSDInStabPool,\n uint256 _TCR,\n uint256 _price\n ) internal returns (LiquidationValues memory singleLiquidation) {\n LocalVariables_InnerSingleLiquidateFunction memory vars;\n if (TroveOwners.length <= 1) {\n return singleLiquidation;\n } // don't liquidate if last trove\n (\n singleLiquidation.entireTroveDebt,\n singleLiquidation.entireTroveColl,\n vars.pendingDebtReward,\n vars.pendingCollReward\n ) = getEntireDebtAndColl(_borrower);\n\n singleLiquidation.collGasCompensation = _getCollGasCompensation(\n singleLiquidation.entireTroveColl\n );\n singleLiquidation.ZUSDGasCompensation = ZUSD_GAS_COMPENSATION;\n vars.collToLiquidate = singleLiquidation.entireTroveColl.sub(\n singleLiquidation.collGasCompensation\n );\n\n // If ICR <= 100%, purely redistribute the Trove across all active Troves\n if (_ICR <= _100pct) {\n _movePendingTroveRewardsToActivePool(\n _activePool,\n _defaultPool,\n vars.pendingDebtReward,\n vars.pendingCollReward\n );\n _removeStake(_borrower);\n\n singleLiquidation.debtToOffset = 0;\n singleLiquidation.collToSendToSP = 0;\n singleLiquidation.debtToRedistribute = singleLiquidation.entireTroveDebt;\n singleLiquidation.collToRedistribute = vars.collToLiquidate;\n\n _closeTrove(_borrower, Status.closedByLiquidation);\n emit TroveLiquidated(\n _borrower,\n singleLiquidation.entireTroveDebt,\n singleLiquidation.entireTroveColl,\n TroveManagerOperation.liquidateInRecoveryMode\n );\n emit TroveUpdated(_borrower, 0, 0, 0, TroveManagerOperation.liquidateInRecoveryMode);\n\n // If 100% < ICR < MCR, offset as much as possible, and redistribute the remainder\n } else if ((_ICR > _100pct) && (_ICR < liquityBaseParams.MCR())) {\n _movePendingTroveRewardsToActivePool(\n _activePool,\n _defaultPool,\n vars.pendingDebtReward,\n vars.pendingCollReward\n );\n _removeStake(_borrower);\n\n (\n singleLiquidation.debtToOffset,\n singleLiquidation.collToSendToSP,\n singleLiquidation.debtToRedistribute,\n singleLiquidation.collToRedistribute\n ) = _getOffsetAndRedistributionVals(\n singleLiquidation.entireTroveDebt,\n vars.collToLiquidate,\n _ZUSDInStabPool\n );\n\n _closeTrove(_borrower, Status.closedByLiquidation);\n emit TroveLiquidated(\n _borrower,\n singleLiquidation.entireTroveDebt,\n singleLiquidation.entireTroveColl,\n TroveManagerOperation.liquidateInRecoveryMode\n );\n emit TroveUpdated(_borrower, 0, 0, 0, TroveManagerOperation.liquidateInRecoveryMode);\n /*\n * If 110% <= ICR < current TCR (accounting for the preceding liquidations in the current sequence)\n * and there is ZUSD in the Stability Pool, only offset, with no redistribution,\n * but at a capped rate of 1.1 and only if the whole debt can be liquidated.\n * The remainder due to the capped rate will be claimable as collateral surplus.\n */\n } else if (\n (_ICR >= liquityBaseParams.MCR()) &&\n (_ICR < _TCR) &&\n (singleLiquidation.entireTroveDebt <= _ZUSDInStabPool)\n ) {\n _movePendingTroveRewardsToActivePool(\n _activePool,\n _defaultPool,\n vars.pendingDebtReward,\n vars.pendingCollReward\n );\n assert(_ZUSDInStabPool != 0);\n\n _removeStake(_borrower);\n singleLiquidation = _getCappedOffsetVals(\n singleLiquidation.entireTroveDebt,\n singleLiquidation.entireTroveColl,\n _price\n );\n\n _closeTrove(_borrower, Status.closedByLiquidation);\n if (singleLiquidation.collSurplus > 0) {\n collSurplusPool.accountSurplus(_borrower, singleLiquidation.collSurplus);\n }\n\n emit TroveLiquidated(\n _borrower,\n singleLiquidation.entireTroveDebt,\n singleLiquidation.collToSendToSP,\n TroveManagerOperation.liquidateInRecoveryMode\n );\n emit TroveUpdated(_borrower, 0, 0, 0, TroveManagerOperation.liquidateInRecoveryMode);\n } else {\n // if (_ICR >= liquityBaseParams.MCR() && ( _ICR >= _TCR || singleLiquidation.entireTroveDebt > _ZUSDInStabPool))\n LiquidationValues memory zeroVals;\n return zeroVals;\n }\n\n return singleLiquidation;\n }\n\n /** In a full liquidation, returns the values for a trove's coll and debt to be offset, and coll and debt to be\n * redistributed to active troves.\n */\n function _getOffsetAndRedistributionVals(\n uint256 _debt,\n uint256 _coll,\n uint256 _ZUSDInStabPool\n )\n internal\n pure\n returns (\n uint256 debtToOffset,\n uint256 collToSendToSP,\n uint256 debtToRedistribute,\n uint256 collToRedistribute\n )\n {\n if (_ZUSDInStabPool > 0) {\n /*\n * Offset as much debt & collateral as possible against the Stability Pool, and redistribute the remainder\n * between all active troves.\n *\n * If the trove's debt is larger than the deposited ZUSD in the Stability Pool:\n *\n * - Offset an amount of the trove's debt equal to the ZUSD in the Stability Pool\n * - Send a fraction of the trove's collateral to the Stability Pool, equal to the fraction of its offset debt\n *\n */\n debtToOffset = LiquityMath._min(_debt, _ZUSDInStabPool);\n collToSendToSP = _coll.mul(debtToOffset).div(_debt);\n debtToRedistribute = _debt.sub(debtToOffset);\n collToRedistribute = _coll.sub(collToSendToSP);\n } else {\n debtToOffset = 0;\n collToSendToSP = 0;\n debtToRedistribute = _debt;\n collToRedistribute = _coll;\n }\n }\n\n /**\n * Get its offset coll/debt and ETH gas comp, and close the trove.\n */\n function _getCappedOffsetVals(\n uint256 _entireTroveDebt,\n uint256 _entireTroveColl,\n uint256 _price\n ) internal view returns (LiquidationValues memory singleLiquidation) {\n singleLiquidation.entireTroveDebt = _entireTroveDebt;\n singleLiquidation.entireTroveColl = _entireTroveColl;\n uint256 collToOffset = _entireTroveDebt.mul(liquityBaseParams.MCR()).div(_price);\n\n singleLiquidation.collGasCompensation = _getCollGasCompensation(collToOffset);\n singleLiquidation.ZUSDGasCompensation = ZUSD_GAS_COMPENSATION;\n\n singleLiquidation.debtToOffset = _entireTroveDebt;\n singleLiquidation.collToSendToSP = collToOffset.sub(singleLiquidation.collGasCompensation);\n singleLiquidation.collSurplus = _entireTroveColl.sub(collToOffset);\n singleLiquidation.debtToRedistribute = 0;\n singleLiquidation.collToRedistribute = 0;\n }\n\n /**\n * Liquidate a sequence of troves. Closes a maximum number of n under-collateralized Troves,\n * starting from the one with the lowest collateral ratio in the system, and moving upwards\n */\n function liquidateTroves(uint256 _n) external override {\n ContractsCache memory contractsCache = ContractsCache(\n activePool,\n defaultPool,\n IZUSDToken(address(0)),\n IZEROStaking(address(0)),\n sortedTroves,\n ICollSurplusPool(address(0)),\n address(0)\n );\n IStabilityPool stabilityPoolCached = _stabilityPool;\n\n LocalVariables_OuterLiquidationFunction memory vars;\n\n LiquidationTotals memory totals;\n\n vars.price = priceFeed.fetchPrice();\n vars.ZUSDInStabPool = stabilityPoolCached.getTotalZUSDDeposits();\n vars.recoveryModeAtStart = _checkRecoveryMode(vars.price);\n\n // Perform the appropriate liquidation sequence - tally the values, and obtain their totals\n if (vars.recoveryModeAtStart) {\n totals = _getTotalsFromLiquidateTrovesSequence_RecoveryMode(\n contractsCache,\n vars.price,\n vars.ZUSDInStabPool,\n _n\n );\n } else {\n // if !vars.recoveryModeAtStart\n totals = _getTotalsFromLiquidateTrovesSequence_NormalMode(\n contractsCache.activePool,\n contractsCache.defaultPool,\n vars.price,\n vars.ZUSDInStabPool,\n _n\n );\n }\n\n require(totals.totalDebtInSequence > 0, \"TroveManager: nothing to liquidate\");\n\n // Move liquidated ETH and ZUSD to the appropriate pools\n stabilityPoolCached.offset(totals.totalDebtToOffset, totals.totalCollToSendToSP);\n _redistributeDebtAndColl(\n contractsCache.activePool,\n contractsCache.defaultPool,\n totals.totalDebtToRedistribute,\n totals.totalCollToRedistribute\n );\n if (totals.totalCollSurplus > 0) {\n contractsCache.activePool.sendETH(address(collSurplusPool), totals.totalCollSurplus);\n }\n\n // Update system snapshots\n _updateSystemSnapshots_excludeCollRemainder(\n contractsCache.activePool,\n totals.totalCollGasCompensation\n );\n\n vars.liquidatedDebt = totals.totalDebtInSequence;\n vars.liquidatedColl = totals.totalCollInSequence.sub(totals.totalCollGasCompensation).sub(\n totals.totalCollSurplus\n );\n emit Liquidation(\n vars.liquidatedDebt,\n vars.liquidatedColl,\n totals.totalCollGasCompensation,\n totals.totalZUSDGasCompensation\n );\n\n // Send gas compensation to caller\n _sendGasCompensation(\n contractsCache.activePool,\n msg.sender,\n totals.totalZUSDGasCompensation,\n totals.totalCollGasCompensation\n );\n }\n\n /**\n * This function is used when the liquidateTroves sequence starts during Recovery Mode. However, it\n * handle the case where the system *leaves* Recovery Mode, part way through the liquidation sequence\n */\n function _getTotalsFromLiquidateTrovesSequence_RecoveryMode(\n ContractsCache memory _contractsCache,\n uint256 _price,\n uint256 _ZUSDInStabPool,\n uint256 _n\n ) internal returns (LiquidationTotals memory totals) {\n LocalVariables_LiquidationSequence memory vars;\n LiquidationValues memory singleLiquidation;\n\n vars.remainingZUSDInStabPool = _ZUSDInStabPool;\n vars.backToNormalMode = false;\n vars.entireSystemDebt = getEntireSystemDebt();\n vars.entireSystemColl = getEntireSystemColl();\n\n vars.user = _contractsCache.sortedTroves.getLast();\n address firstUser = _contractsCache.sortedTroves.getFirst();\n for (vars.i = 0; vars.i < _n && vars.user != firstUser; vars.i++) {\n // we need to cache it, because current user is likely going to be deleted\n address nextUser = _contractsCache.sortedTroves.getPrev(vars.user);\n\n vars.ICR = _getCurrentICR(vars.user, _price);\n\n if (!vars.backToNormalMode) {\n // Break the loop if ICR is greater than liquityBaseParams.MCR() and Stability Pool is empty\n if (vars.ICR >= liquityBaseParams.MCR() && vars.remainingZUSDInStabPool == 0) {\n break;\n }\n\n uint256 TCR = LiquityMath._computeCR(\n vars.entireSystemColl,\n vars.entireSystemDebt,\n _price\n );\n\n singleLiquidation = _liquidateRecoveryMode(\n _contractsCache.activePool,\n _contractsCache.defaultPool,\n vars.user,\n vars.ICR,\n vars.remainingZUSDInStabPool,\n TCR,\n _price\n );\n\n // Update aggregate trackers\n vars.remainingZUSDInStabPool = vars.remainingZUSDInStabPool.sub(\n singleLiquidation.debtToOffset\n );\n vars.entireSystemDebt = vars.entireSystemDebt.sub(singleLiquidation.debtToOffset);\n vars.entireSystemColl = vars\n .entireSystemColl\n .sub(singleLiquidation.collToSendToSP)\n .sub(singleLiquidation.collSurplus);\n\n // Add liquidation values to their respective running totals\n totals = _addLiquidationValuesToTotals(totals, singleLiquidation);\n\n vars.backToNormalMode = !_checkPotentialRecoveryMode(\n vars.entireSystemColl,\n vars.entireSystemDebt,\n _price\n );\n } else if (vars.backToNormalMode && vars.ICR < liquityBaseParams.MCR()) {\n singleLiquidation = _liquidateNormalMode(\n _contractsCache.activePool,\n _contractsCache.defaultPool,\n vars.user,\n vars.remainingZUSDInStabPool\n );\n\n vars.remainingZUSDInStabPool = vars.remainingZUSDInStabPool.sub(\n singleLiquidation.debtToOffset\n );\n\n // Add liquidation values to their respective running totals\n totals = _addLiquidationValuesToTotals(totals, singleLiquidation);\n } else break; // break if the loop reaches a Trove with ICR >= MCR\n\n vars.user = nextUser;\n }\n }\n\n function _getTotalsFromLiquidateTrovesSequence_NormalMode(\n IActivePool _activePool,\n IDefaultPool _defaultPool,\n uint256 _price,\n uint256 _ZUSDInStabPool,\n uint256 _n\n ) internal returns (LiquidationTotals memory totals) {\n LocalVariables_LiquidationSequence memory vars;\n LiquidationValues memory singleLiquidation;\n ISortedTroves sortedTrovesCached = sortedTroves;\n\n vars.remainingZUSDInStabPool = _ZUSDInStabPool;\n\n for (vars.i = 0; vars.i < _n; vars.i++) {\n vars.user = sortedTrovesCached.getLast();\n vars.ICR = _getCurrentICR(vars.user, _price);\n\n if (vars.ICR < liquityBaseParams.MCR()) {\n singleLiquidation = _liquidateNormalMode(\n _activePool,\n _defaultPool,\n vars.user,\n vars.remainingZUSDInStabPool\n );\n\n vars.remainingZUSDInStabPool = vars.remainingZUSDInStabPool.sub(\n singleLiquidation.debtToOffset\n );\n\n // Add liquidation values to their respective running totals\n totals = _addLiquidationValuesToTotals(totals, singleLiquidation);\n } else break; // break if the loop reaches a Trove with ICR >= MCR\n }\n }\n\n /**\n * Attempt to liquidate a custom list of troves provided by the caller.\n */\n function batchLiquidateTroves(address[] memory _troveArray) public override {\n require(_troveArray.length != 0, \"TroveManager: Calldata address array must not be empty\");\n\n IActivePool activePoolCached = activePool;\n IDefaultPool defaultPoolCached = defaultPool;\n IStabilityPool stabilityPoolCached = _stabilityPool;\n\n LocalVariables_OuterLiquidationFunction memory vars;\n LiquidationTotals memory totals;\n\n vars.price = priceFeed.fetchPrice();\n vars.ZUSDInStabPool = stabilityPoolCached.getTotalZUSDDeposits();\n vars.recoveryModeAtStart = _checkRecoveryMode(vars.price);\n\n // Perform the appropriate liquidation sequence - tally values and obtain their totals.\n if (vars.recoveryModeAtStart) {\n totals = _getTotalFromBatchLiquidate_RecoveryMode(\n activePoolCached,\n defaultPoolCached,\n vars.price,\n vars.ZUSDInStabPool,\n _troveArray\n );\n } else {\n // if !vars.recoveryModeAtStart\n totals = _getTotalsFromBatchLiquidate_NormalMode(\n activePoolCached,\n defaultPoolCached,\n vars.price,\n vars.ZUSDInStabPool,\n _troveArray\n );\n }\n\n require(totals.totalDebtInSequence > 0, \"TroveManager: nothing to liquidate\");\n\n // Move liquidated ETH and ZUSD to the appropriate pools\n stabilityPoolCached.offset(totals.totalDebtToOffset, totals.totalCollToSendToSP);\n _redistributeDebtAndColl(\n activePoolCached,\n defaultPoolCached,\n totals.totalDebtToRedistribute,\n totals.totalCollToRedistribute\n );\n if (totals.totalCollSurplus > 0) {\n activePoolCached.sendETH(address(collSurplusPool), totals.totalCollSurplus);\n }\n\n // Update system snapshots\n _updateSystemSnapshots_excludeCollRemainder(\n activePoolCached,\n totals.totalCollGasCompensation\n );\n\n vars.liquidatedDebt = totals.totalDebtInSequence;\n vars.liquidatedColl = totals.totalCollInSequence.sub(totals.totalCollGasCompensation).sub(\n totals.totalCollSurplus\n );\n emit Liquidation(\n vars.liquidatedDebt,\n vars.liquidatedColl,\n totals.totalCollGasCompensation,\n totals.totalZUSDGasCompensation\n );\n\n // Send gas compensation to caller\n _sendGasCompensation(\n activePoolCached,\n msg.sender,\n totals.totalZUSDGasCompensation,\n totals.totalCollGasCompensation\n );\n }\n\n /**\n * This function is used when the batch liquidation sequence starts during Recovery Mode. However, it\n * handle the case where the system *leaves* Recovery Mode, part way through the liquidation sequence\n */\n function _getTotalFromBatchLiquidate_RecoveryMode(\n IActivePool _activePool,\n IDefaultPool _defaultPool,\n uint256 _price,\n uint256 _ZUSDInStabPool,\n address[] memory _troveArray\n ) internal returns (LiquidationTotals memory totals) {\n LocalVariables_LiquidationSequence memory vars;\n LiquidationValues memory singleLiquidation;\n\n vars.remainingZUSDInStabPool = _ZUSDInStabPool;\n vars.backToNormalMode = false;\n vars.entireSystemDebt = getEntireSystemDebt();\n vars.entireSystemColl = getEntireSystemColl();\n\n for (vars.i = 0; vars.i < _troveArray.length; vars.i++) {\n vars.user = _troveArray[vars.i];\n // Skip non-active troves\n if (Troves[vars.user].status != Status.active) {\n continue;\n }\n vars.ICR = _getCurrentICR(vars.user, _price);\n\n if (!vars.backToNormalMode) {\n // Skip this trove if ICR is greater than liquityBaseParams.MCR() and Stability Pool is empty\n if (vars.ICR >= liquityBaseParams.MCR() && vars.remainingZUSDInStabPool == 0) {\n continue;\n }\n\n uint256 TCR = LiquityMath._computeCR(\n vars.entireSystemColl,\n vars.entireSystemDebt,\n _price\n );\n\n singleLiquidation = _liquidateRecoveryMode(\n _activePool,\n _defaultPool,\n vars.user,\n vars.ICR,\n vars.remainingZUSDInStabPool,\n TCR,\n _price\n );\n\n // Update aggregate trackers\n vars.remainingZUSDInStabPool = vars.remainingZUSDInStabPool.sub(\n singleLiquidation.debtToOffset\n );\n vars.entireSystemDebt = vars.entireSystemDebt.sub(singleLiquidation.debtToOffset);\n vars.entireSystemColl = vars.entireSystemColl.sub(\n singleLiquidation.collToSendToSP\n );\n\n // Add liquidation values to their respective running totals\n totals = _addLiquidationValuesToTotals(totals, singleLiquidation);\n\n vars.backToNormalMode = !_checkPotentialRecoveryMode(\n vars.entireSystemColl,\n vars.entireSystemDebt,\n _price\n );\n } else if (vars.backToNormalMode && vars.ICR < liquityBaseParams.MCR()) {\n singleLiquidation = _liquidateNormalMode(\n _activePool,\n _defaultPool,\n vars.user,\n vars.remainingZUSDInStabPool\n );\n vars.remainingZUSDInStabPool = vars.remainingZUSDInStabPool.sub(\n singleLiquidation.debtToOffset\n );\n\n // Add liquidation values to their respective running totals\n totals = _addLiquidationValuesToTotals(totals, singleLiquidation);\n } else continue; // In Normal Mode skip troves with ICR >= MCR\n }\n }\n\n function _getTotalsFromBatchLiquidate_NormalMode(\n IActivePool _activePool,\n IDefaultPool _defaultPool,\n uint256 _price,\n uint256 _ZUSDInStabPool,\n address[] memory _troveArray\n ) internal returns (LiquidationTotals memory totals) {\n LocalVariables_LiquidationSequence memory vars;\n LiquidationValues memory singleLiquidation;\n\n vars.remainingZUSDInStabPool = _ZUSDInStabPool;\n\n for (vars.i = 0; vars.i < _troveArray.length; vars.i++) {\n vars.user = _troveArray[vars.i];\n vars.ICR = _getCurrentICR(vars.user, _price);\n\n if (vars.ICR < liquityBaseParams.MCR()) {\n singleLiquidation = _liquidateNormalMode(\n _activePool,\n _defaultPool,\n vars.user,\n vars.remainingZUSDInStabPool\n );\n vars.remainingZUSDInStabPool = vars.remainingZUSDInStabPool.sub(\n singleLiquidation.debtToOffset\n );\n\n // Add liquidation values to their respective running totals\n totals = _addLiquidationValuesToTotals(totals, singleLiquidation);\n }\n }\n }\n\n // --- Liquidation helper functions ---\n\n function _addLiquidationValuesToTotals(\n LiquidationTotals memory oldTotals,\n LiquidationValues memory singleLiquidation\n ) internal pure returns (LiquidationTotals memory newTotals) {\n // Tally all the values with their respective running totals\n newTotals.totalCollGasCompensation = oldTotals.totalCollGasCompensation.add(\n singleLiquidation.collGasCompensation\n );\n newTotals.totalZUSDGasCompensation = oldTotals.totalZUSDGasCompensation.add(\n singleLiquidation.ZUSDGasCompensation\n );\n newTotals.totalDebtInSequence = oldTotals.totalDebtInSequence.add(\n singleLiquidation.entireTroveDebt\n );\n newTotals.totalCollInSequence = oldTotals.totalCollInSequence.add(\n singleLiquidation.entireTroveColl\n );\n newTotals.totalDebtToOffset = oldTotals.totalDebtToOffset.add(\n singleLiquidation.debtToOffset\n );\n newTotals.totalCollToSendToSP = oldTotals.totalCollToSendToSP.add(\n singleLiquidation.collToSendToSP\n );\n newTotals.totalDebtToRedistribute = oldTotals.totalDebtToRedistribute.add(\n singleLiquidation.debtToRedistribute\n );\n newTotals.totalCollToRedistribute = oldTotals.totalCollToRedistribute.add(\n singleLiquidation.collToRedistribute\n );\n newTotals.totalCollSurplus = oldTotals.totalCollSurplus.add(singleLiquidation.collSurplus);\n\n return newTotals;\n }\n\n function _sendGasCompensation(\n IActivePool _activePool,\n address _liquidator,\n uint256 _ZUSD,\n uint256 _ETH\n ) internal {\n if (_ZUSD > 0) {\n _zusdToken.returnFromPool(gasPoolAddress, _liquidator, _ZUSD);\n }\n\n if (_ETH > 0) {\n _activePool.sendETH(_liquidator, _ETH);\n }\n }\n\n // --- Helper functions ---\n\n /// @return the nominal collateral ratio (ICR) of a given Trove, without the price. Takes a trove's pending coll and debt rewards from redistributions into account.\n function getNominalICR(address _borrower) public view override returns (uint256) {\n (uint256 currentETH, uint256 currentZUSDDebt) = _getCurrentTroveAmounts(_borrower);\n\n uint256 NICR = LiquityMath._computeNominalCR(currentETH, currentZUSDDebt);\n return NICR;\n }\n\n function applyPendingRewards(address _borrower) external override {\n _requireCallerIsBorrowerOperations();\n return _applyPendingRewards(activePool, defaultPool, _borrower);\n }\n\n /// Update borrower's snapshots of L_ETH and L_ZUSDDebt to reflect the current values\n function updateTroveRewardSnapshots(address _borrower) external override {\n _requireCallerIsBorrowerOperations();\n return _updateTroveRewardSnapshots(_borrower);\n }\n\n /// Return the Troves entire debt and coll, including pending rewards from redistributions.\n function getEntireDebtAndColl(\n address _borrower\n )\n public\n view\n override\n returns (\n uint256 debt,\n uint256 coll,\n uint256 pendingZUSDDebtReward,\n uint256 pendingETHReward\n )\n {\n debt = Troves[_borrower].debt;\n coll = Troves[_borrower].coll;\n\n pendingZUSDDebtReward = getPendingZUSDDebtReward(_borrower);\n pendingETHReward = getPendingETHReward(_borrower);\n\n debt = debt.add(pendingZUSDDebtReward);\n coll = coll.add(pendingETHReward);\n }\n\n function removeStake(address _borrower) external override {\n _requireCallerIsBorrowerOperations();\n return _removeStake(_borrower);\n }\n\n function updateStakeAndTotalStakes(address _borrower) external override returns (uint256) {\n _requireCallerIsBorrowerOperations();\n return _updateStakeAndTotalStakes(_borrower);\n }\n\n function _redistributeDebtAndColl(\n IActivePool _activePool,\n IDefaultPool _defaultPool,\n uint256 _debt,\n uint256 _coll\n ) internal {\n if (_debt == 0) {\n return;\n }\n\n /*\n * Add distributed coll and debt rewards-per-unit-staked to the running totals. Division uses a \"feedback\"\n * error correction, to keep the cumulative error low in the running totals L_ETH and L_ZUSDDebt:\n *\n * 1) Form numerators which compensate for the floor division errors that occurred the last time this\n * function was called.\n * 2) Calculate \"per-unit-staked\" ratios.\n * 3) Multiply each ratio back by its denominator, to reveal the current floor division error.\n * 4) Store these errors for use in the next correction when this function is called.\n * 5) Note: static analysis tools complain about this \"division before multiplication\", however, it is intended.\n */\n uint256 ETHNumerator = _coll.mul(DECIMAL_PRECISION).add(lastETHError_Redistribution);\n uint256 ZUSDDebtNumerator = _debt.mul(DECIMAL_PRECISION).add(\n lastZUSDDebtError_Redistribution\n );\n\n // Get the per-unit-staked terms\n uint256 ETHRewardPerUnitStaked = ETHNumerator.div(totalStakes);\n uint256 ZUSDDebtRewardPerUnitStaked = ZUSDDebtNumerator.div(totalStakes);\n\n lastETHError_Redistribution = ETHNumerator.sub(ETHRewardPerUnitStaked.mul(totalStakes));\n lastZUSDDebtError_Redistribution = ZUSDDebtNumerator.sub(\n ZUSDDebtRewardPerUnitStaked.mul(totalStakes)\n );\n\n // Add per-unit-staked terms to the running totals\n L_ETH = L_ETH.add(ETHRewardPerUnitStaked);\n L_ZUSDDebt = L_ZUSDDebt.add(ZUSDDebtRewardPerUnitStaked);\n\n emit LTermsUpdated(L_ETH, L_ZUSDDebt);\n\n // Transfer coll and debt from ActivePool to DefaultPool\n _activePool.decreaseZUSDDebt(_debt);\n _defaultPool.increaseZUSDDebt(_debt);\n _activePool.sendETH(address(_defaultPool), _coll);\n }\n\n function closeTrove(address _borrower) external override {\n _requireCallerIsBorrowerOperations();\n return _closeTrove(_borrower, Status.closedByOwner);\n }\n\n /**\n * Updates snapshots of system total stakes and total collateral, excluding a given collateral remainder from the calculation.\n * Used in a liquidation sequence.\n *\n * The calculation excludes a portion of collateral that is in the ActivePool:\n *\n * the total ETH gas compensation from the liquidation sequence\n *\n * The ETH as compensation must be excluded as it is always sent out at the very end of the liquidation sequence.\n */\n function _updateSystemSnapshots_excludeCollRemainder(\n IActivePool _activePool,\n uint256 _collRemainder\n ) internal {\n totalStakesSnapshot = totalStakes;\n\n uint256 activeColl = _activePool.getETH();\n uint256 liquidatedColl = defaultPool.getETH();\n totalCollateralSnapshot = activeColl.sub(_collRemainder).add(liquidatedColl);\n\n emit SystemSnapshotsUpdated(totalStakesSnapshot, totalCollateralSnapshot);\n }\n\n /// Push the owner's address to the Trove owners list, and record the corresponding array index on the Trove struct\n function addTroveOwnerToArray(address _borrower) external override returns (uint256 index) {\n _requireCallerIsBorrowerOperations();\n return _addTroveOwnerToArray(_borrower);\n }\n\n function _addTroveOwnerToArray(address _borrower) internal returns (uint128 index) {\n /* Max array size is 2**128 - 1, i.e. ~3e30 troves. No risk of overflow, since troves have minimum ZUSD\n debt of liquidation reserve plus MIN_NET_DEBT. 3e30 ZUSD dwarfs the value of all wealth in the world ( which is < 1e15 USD). */\n\n // Push the Troveowner to the array\n TroveOwners.push(_borrower);\n\n // Record the index of the new Troveowner on their Trove struct\n index = uint128(TroveOwners.length.sub(1));\n Troves[_borrower].arrayIndex = index;\n\n return index;\n }\n\n // --- Recovery Mode and TCR functions ---\n\n function getTCR(uint256 _price) external view override returns (uint256) {\n return _getTCR(_price);\n }\n\n function MCR() external view override returns (uint256) {\n return liquityBaseParams.MCR();\n }\n\n function CCR() external view override returns (uint256) {\n return liquityBaseParams.CCR();\n }\n\n function checkRecoveryMode(uint256 _price) external view override returns (bool) {\n return _checkRecoveryMode(_price);\n }\n\n // Check whether or not the system *would be* in Recovery Mode, given an ETH:USD price, and the entire system coll and debt.\n function _checkPotentialRecoveryMode(\n uint256 _entireSystemColl,\n uint256 _entireSystemDebt,\n uint256 _price\n ) internal view returns (bool) {\n uint256 TCR = LiquityMath._computeCR(_entireSystemColl, _entireSystemDebt, _price);\n\n return TCR < liquityBaseParams.CCR();\n }\n\n function getRedemptionRateWithDecay() public view override returns (uint256) {\n return _calcRedemptionRate(_calcDecayedBaseRate());\n }\n\n function getRedemptionFeeWithDecay(\n uint256 _ETHDrawn\n ) external view override returns (uint256) {\n return _calcRedemptionFee(getRedemptionRateWithDecay(), _ETHDrawn);\n }\n\n // --- Borrowing fee functions ---\n\n function getBorrowingRate() public view override returns (uint256) {\n return _calcBorrowingRate(baseRate);\n }\n\n function getBorrowingRateWithDecay() public view override returns (uint256) {\n return _calcBorrowingRate(_calcDecayedBaseRate());\n }\n\n function _calcBorrowingRate(uint256 _baseRate) internal view returns (uint256) {\n return\n LiquityMath._min(\n liquityBaseParams.BORROWING_FEE_FLOOR().add(_baseRate),\n liquityBaseParams.MAX_BORROWING_FEE()\n );\n }\n\n function getBorrowingFee(uint256 _ZUSDDebt) external view override returns (uint256) {\n return _calcBorrowingFee(getBorrowingRate(), _ZUSDDebt);\n }\n\n function getBorrowingFeeWithDecay(uint256 _ZUSDDebt) external view override returns (uint256) {\n return _calcBorrowingFee(getBorrowingRateWithDecay(), _ZUSDDebt);\n }\n\n function _calcBorrowingFee(\n uint256 _borrowingRate,\n uint256 _ZUSDDebt\n ) internal pure returns (uint256) {\n return _borrowingRate.mul(_ZUSDDebt).div(DECIMAL_PRECISION);\n }\n\n /// Updates the baseRate state variable based on time elapsed since the last redemption or ZUSD borrowing operation.\n function decayBaseRateFromBorrowing() external override {\n _requireCallerIsBorrowerOperations();\n\n uint256 decayedBaseRate = _calcDecayedBaseRate();\n assert(decayedBaseRate <= DECIMAL_PRECISION); // The baseRate can decay to 0\n\n baseRate = decayedBaseRate;\n emit BaseRateUpdated(decayedBaseRate);\n\n _updateLastFeeOpTime();\n }\n\n // --- Internal fee functions ---\n\n // --- Trove property getters ---\n\n function getTroveStatus(address _borrower) external view override returns (uint256) {\n return uint256(Troves[_borrower].status);\n }\n\n function getTroveStake(address _borrower) external view override returns (uint256) {\n return Troves[_borrower].stake;\n }\n\n function getTroveDebt(address _borrower) external view override returns (uint256) {\n return Troves[_borrower].debt;\n }\n\n function getTroveColl(address _borrower) external view override returns (uint256) {\n return Troves[_borrower].coll;\n }\n\n // --- Trove property setters, called by BorrowerOperations ---\n\n function setTroveStatus(address _borrower, uint256 _num) external override {\n _requireCallerIsBorrowerOperations();\n Troves[_borrower].status = Status(_num);\n }\n\n function increaseTroveColl(\n address _borrower,\n uint256 _collIncrease\n ) external override returns (uint256) {\n _requireCallerIsBorrowerOperations();\n uint256 newColl = Troves[_borrower].coll.add(_collIncrease);\n Troves[_borrower].coll = newColl;\n return newColl;\n }\n\n function decreaseTroveColl(\n address _borrower,\n uint256 _collDecrease\n ) external override returns (uint256) {\n _requireCallerIsBorrowerOperations();\n uint256 newColl = Troves[_borrower].coll.sub(_collDecrease);\n Troves[_borrower].coll = newColl;\n return newColl;\n }\n\n function increaseTroveDebt(\n address _borrower,\n uint256 _debtIncrease\n ) external override returns (uint256) {\n _requireCallerIsBorrowerOperations();\n uint256 newDebt = Troves[_borrower].debt.add(_debtIncrease);\n Troves[_borrower].debt = newDebt;\n return newDebt;\n }\n\n function decreaseTroveDebt(\n address _borrower,\n uint256 _debtDecrease\n ) external override returns (uint256) {\n _requireCallerIsBorrowerOperations();\n uint256 newDebt = Troves[_borrower].debt.sub(_debtDecrease);\n Troves[_borrower].debt = newDebt;\n return newDebt;\n }\n\n function getCurrentICR(\n address _borrower,\n uint256 _price\n ) external view override returns (uint256) {\n return _getCurrentICR(_borrower, _price);\n }\n\n function getPendingETHReward(address _borrower) public view override returns (uint256) {\n return _getPendingETHReward(_borrower);\n }\n\n function getPendingZUSDDebtReward(address _borrower) public view override returns (uint256) {\n return _getPendingZUSDDebtReward(_borrower);\n }\n\n function hasPendingRewards(address _borrower) public view override returns (bool) {\n return _hasPendingRewards(_borrower);\n }\n\n function getRedemptionRate() public view override returns (uint256) {\n return _getRedemptionRate();\n }\n\n /// @dev this function forwards the call to the troveManagerRedeemOps in a delegate call fashion\n /// so the parameters are not needed\n function redeemCollateral(\n uint256 _ZUSDamount,\n address _firstRedemptionHint,\n address _upperPartialRedemptionHint,\n address _lowerPartialRedemptionHint,\n uint256 _partialRedemptionHintNICR,\n uint256 _maxIterations,\n uint256 _maxFeePercentage\n ) external override {\n (bool success, bytes memory returndata) = troveManagerRedeemOps.delegatecall(msg.data);\n require(success, string(returndata));\n }\n\n /// @dev this function forwards the call to the troveManagerRedeemOps in a delegate call fashion\n /// so the parameters are not needed\n ///DLLR _owner or _spender can use Sovryn Mynt to convert DLLR to ZUSD, then use the Zero redemption mechanism to redeem ZUSD for RBTC, all in a single transaction\n function redeemCollateralViaDLLR(\n uint256 _dllrAmount,\n address _firstRedemptionHint,\n address _upperPartialRedemptionHint,\n address _lowerPartialRedemptionHint,\n uint256 _partialRedemptionHintNICR,\n uint256 _maxIterations,\n uint256 _maxFeePercentage,\n IMassetManager.PermitParams calldata _permitParams\n ) external override {\n (bool success, bytes memory returndata) = troveManagerRedeemOps.delegatecall(msg.data);\n require(success, string(returndata));\n }\n\n /// @dev this function forwards the call to the troveManagerRedeemOps in a delegate call fashion\n /// so the parameters are not needed\n ///DLLR _owner or _spender can use Sovryn Mynt to convert DLLR to ZUSD, then use the Zero redemption mechanism to redeem ZUSD for RBTC, all in a single transaction\n function redeemCollateralViaDllrWithPermit2(\n uint256 _dllrAmount,\n address _firstRedemptionHint,\n address _upperPartialRedemptionHint,\n address _lowerPartialRedemptionHint,\n uint256 _partialRedemptionHintNICR,\n uint256 _maxIterations,\n uint256 _maxFeePercentage,\n ISignatureTransfer.PermitTransferFrom memory _permit,\n bytes calldata _signature\n ) external override {\n (bool success, bytes memory returndata) = troveManagerRedeemOps.delegatecall(msg.data);\n require(success, string(returndata));\n }\n}\n" + }, + "contracts/TroveManagerStorage.sol": { + "content": "// SPDX-License-Identifier: MIT\n\npragma solidity 0.6.11;\n\nimport \"./Interfaces/IStabilityPool.sol\";\nimport \"./Interfaces/ICollSurplusPool.sol\";\nimport \"./Interfaces/IZUSDToken.sol\";\nimport \"./Interfaces/ISortedTroves.sol\";\nimport \"./Interfaces/IZEROToken.sol\";\nimport \"./Interfaces/IZEROStaking.sol\";\nimport \"./Interfaces/IFeeDistributor.sol\";\nimport \"./Dependencies/Ownable.sol\";\nimport \"./Dependencies/BaseMath.sol\";\nimport \"./Dependencies/console.sol\";\n\ncontract TroveManagerStorage is Ownable, BaseMath {\n string public constant NAME = \"TroveManager\";\n\n // --- Connected contract declarations ---\n\n address public troveManagerRedeemOps;\n\n address public borrowerOperationsAddress;\n\n IStabilityPool public _stabilityPool;\n\n address gasPoolAddress;\n\n ICollSurplusPool collSurplusPool;\n\n IZUSDToken public _zusdToken;\n\n IZEROToken public _zeroToken;\n\n IZEROStaking public _zeroStaking;\n\n IFeeDistributor public feeDistributor;\n\n // A doubly linked list of Troves, sorted by their sorted by their collateral ratios\n ISortedTroves public sortedTroves;\n\n // --- Data structures ---\n\n uint256 public baseRate;\n\n // The timestamp of the latest fee operation (redemption or new ZUSD issuance)\n uint256 public lastFeeOperationTime;\n\n enum Status {\n nonExistent,\n active,\n closedByOwner,\n closedByLiquidation,\n closedByRedemption\n }\n\n // Store the necessary data for a trove\n struct Trove {\n uint256 debt;\n uint256 coll;\n uint256 stake;\n Status status;\n uint128 arrayIndex;\n }\n\n mapping(address => Trove) public Troves;\n\n uint256 public totalStakes;\n\n // Snapshot of the value of totalStakes, taken immediately after the latest liquidation\n uint256 public totalStakesSnapshot;\n\n // Snapshot of the total collateral across the ActivePool and DefaultPool, immediately after the latest liquidation.\n uint256 public totalCollateralSnapshot;\n\n /*\n * L_ETH and L_ZUSDDebt track the sums of accumulated liquidation rewards per unit staked. During its lifetime, each stake earns:\n *\n * An ETH gain of ( stake * [L_ETH - L_ETH(0)] )\n * A ZUSDDebt increase of ( stake * [L_ZUSDDebt - L_ZUSDDebt(0)] )\n *\n * Where L_ETH(0) and L_ZUSDDebt(0) are snapshots of L_ETH and L_ZUSDDebt for the active Trove taken at the instant the stake was made\n */\n uint256 public L_ETH;\n uint256 public L_ZUSDDebt;\n\n // Map addresses with active troves to their RewardSnapshot\n mapping(address => RewardSnapshot) public rewardSnapshots;\n\n // Object containing the ETH and ZUSD snapshots for a given active trove\n struct RewardSnapshot {\n uint256 ETH;\n uint256 ZUSDDebt;\n }\n\n // Array of all active trove addresses - used to to compute an approximate hint off-chain, for the sorted list insertion\n address[] public TroveOwners;\n\n // Error trackers for the trove redistribution calculation\n uint256 public lastETHError_Redistribution;\n uint256 public lastZUSDDebtError_Redistribution;\n}\n" + }, + "contracts/ZERO/CommunityIssuance.sol": { + "content": "// SPDX-License-Identifier: MIT\npragma solidity 0.6.11;\npragma experimental ABIEncoderV2;\n\nimport \"../Interfaces/ICommunityIssuance.sol\";\nimport \"../Dependencies/BaseMath.sol\";\nimport \"../Dependencies/LiquityMath.sol\";\nimport \"../Dependencies/Ownable.sol\";\nimport \"../Dependencies/CheckContract.sol\";\nimport \"../Dependencies/SafeMath.sol\";\nimport \"./CommunityIssuanceStorage.sol\";\nimport \"../Interfaces/IStabilityPool.sol\";\n\ncontract CommunityIssuance is\n CommunityIssuanceStorage,\n ICommunityIssuance,\n CheckContract,\n BaseMath\n{\n using SafeMath for uint256;\n\n // --- Events ---\n\n event SOVTokenAddressSet(address _sovTokenAddress);\n event ZUSDTokenAddressSet(address _zusdTokenAddress);\n event StabilityPoolAddressSet(address _stabilityPoolAddress);\n event PriceFeedAddressSet(address _priceFeed);\n event RewardManagerAddressSet(address _rewardManagerAddress);\n event TotalSOVIssuedUpdated(uint256 _latestSOVIssued);\n event APRSet(uint256 _APR);\n\n // --- Modifier ---\n modifier onlyRewardManager() {\n require(msg.sender == rewardManager, \"Permission::rewardManager: access denied\");\n _;\n }\n\n // --- Functions ---\n\n /**\n * @dev initialization function to set configs.\n * can only be initialized by owner.\n * @param _sovTokenAddress sov token address.\n * @param _zusdTokenAddress zero token address.\n * @param _stabilityPoolAddress stability pool address.\n * @param _priceFeed price feed address.\n * @param _APR apr in basis points.\n */\n function initialize(\n address _sovTokenAddress,\n address _zusdTokenAddress,\n address _stabilityPoolAddress,\n address _priceFeed,\n uint256 _APR\n ) external override initializer onlyOwner {\n checkContract(_sovTokenAddress);\n checkContract(_zusdTokenAddress);\n checkContract(_stabilityPoolAddress);\n checkContract(_priceFeed);\n\n _validateAPR(_APR);\n\n sovToken = IERC20(_sovTokenAddress);\n zusdToken = IERC20(_zusdTokenAddress);\n stabilityPoolAddress = _stabilityPoolAddress;\n priceFeed = IPriceFeedSovryn(_priceFeed);\n APR = _APR;\n lastIssuanceTime = block.timestamp;\n\n emit SOVTokenAddressSet(_sovTokenAddress);\n emit StabilityPoolAddressSet(_stabilityPoolAddress);\n emit PriceFeedAddressSet(_priceFeed);\n emit APRSet(_APR);\n }\n\n /**\n * @dev setter function to set the APR value in basis points.\n * can only be called by reward manager.\n * @param _APR apr value in basis points.\n */\n function setAPR(uint256 _APR) external override onlyRewardManager {\n _validateAPR(_APR);\n\n // We need to trigger issueSOV function before set the new APR\n // because otherwise, we will change the APR retrospectively for the time passed since last issuance.\n uint256 _totalZUSDDeposits = IStabilityPool(stabilityPoolAddress).getTotalZUSDDeposits();\n _issueSOV(_totalZUSDDeposits);\n\n APR = _APR;\n\n emit APRSet(_APR);\n }\n\n /**\n * @dev setter function to set the price feed.\n * can only be called by the owner.\n * @param _priceFeedAddress price feed address.\n */\n function setPriceFeed(address _priceFeedAddress) external override onlyOwner {\n checkContract(_priceFeedAddress);\n\n priceFeed = IPriceFeedSovryn(_priceFeedAddress);\n\n emit PriceFeedAddressSet(_priceFeedAddress);\n }\n\n /**\n * @dev setter function to set reward manager.\n * can only be called by the owner.\n * @param _rewardManagerAddress reward manager address.\n */\n function setRewardManager(address _rewardManagerAddress) external override onlyOwner {\n require(_rewardManagerAddress != address(0), \"Account cannot be zero address\");\n\n rewardManager = _rewardManagerAddress;\n\n emit RewardManagerAddressSet(_rewardManagerAddress);\n }\n\n /**\n * @dev validate the APR value.\n * the value must be >= 0 <= MAX_BPS (10000)\n */\n function _validateAPR(uint256 _APR) private {\n require(_APR <= MAX_BPS, \"APR must be less than MAX_BPS\");\n }\n\n /**\n * @dev public function to record SOV issuance\n * @dev can only be called by stabilityPool contract\n *\n * @param _totalZUSDDeposits total zusd deposited to record the latest of sov issuance.\n *\n * @return total issuance of SOV.\n */\n function issueSOV(uint256 _totalZUSDDeposits) external override returns (uint256) {\n _requireCallerIsStabilityPool();\n\n return _issueSOV(_totalZUSDDeposits);\n }\n\n /**\n * @dev private function to record SOV issuance\n *\n * @param _totalZUSDDeposits total zusd deposited to record the latest of sov issuance.\n *\n * @return total issuance of SOV.\n */\n function _issueSOV(uint256 _totalZUSDDeposits) internal returns (uint256) {\n uint256 timePassedSinceLastIssuance = (block.timestamp.sub(lastIssuanceTime));\n uint256 issuance = _getZUSDToSOV(_totalZUSDDeposits.mul(APR).mul(timePassedSinceLastIssuance).div(365 days).div(MAX_BPS));\n\n totalSOVIssued = totalSOVIssued + issuance;\n lastIssuanceTime = block.timestamp;\n emit TotalSOVIssuedUpdated(totalSOVIssued);\n\n return issuance;\n }\n\n function sendSOV(address _account, uint256 _SOVamount) public override {\n _requireCallerIsStabilityPool();\n\n bool success = sovToken.transfer(_account, _SOVamount);\n require(success, \"Failed to send ZERO\");\n }\n\n function _requireCallerIsStabilityPool() internal view {\n require(msg.sender == stabilityPoolAddress, \"CommunityIssuance: caller is not SP\");\n }\n\n /**\n * @dev get the ZUSD to SOV rate conversion. Mostly will be using Sovryn's PriceFeed.\n * @param _zusdAmount zusd amount to get the rate conversion\n * @return the total SOV will be returned.\n */\n function _getZUSDToSOV(uint256 _zusdAmount) internal view returns (uint256) {\n return priceFeed.queryReturn(address(zusdToken), address(sovToken), _zusdAmount);\n }\n}\n" + }, + "contracts/ZERO/CommunityIssuanceStorage.sol": { + "content": "// SPDX-License-Identifier: MIT\n\npragma solidity 0.6.11;\n\nimport \"../Dependencies/Ownable.sol\";\nimport \"../Dependencies/IERC20.sol\";\nimport \"../Interfaces/IPriceFeedSovryn.sol\";\nimport \"../Dependencies/Initializable.sol\";\n\ncontract CommunityIssuanceStorage is Ownable, Initializable {\n // --- Data ---\n\n string constant public NAME = \"CommunityIssuance\";\n\n uint256 constant MAX_BPS = 10000;\n\n IERC20 public sovToken;\n\n IERC20 public zusdToken;\n\n address public stabilityPoolAddress;\n\n uint256 public totalSOVIssued;\n\n uint256 public lastIssuanceTime;\n\n uint256 public APR; //in basis points\n\n address public rewardManager;\n\n IPriceFeedSovryn public priceFeed;\n}\n" + }, + "contracts/ZERO/ZEROStaking.sol": { + "content": "// SPDX-License-Identifier: MIT\n\npragma solidity 0.6.11;\n\nimport \"../Dependencies/BaseMath.sol\";\nimport \"../Dependencies/SafeMath.sol\";\nimport \"../Dependencies/Ownable.sol\";\nimport \"../Dependencies/CheckContract.sol\";\nimport \"../Dependencies/console.sol\";\nimport \"../Interfaces/IZEROToken.sol\";\nimport \"../Interfaces/IZEROStaking.sol\";\nimport \"../Dependencies/LiquityMath.sol\";\nimport \"../Interfaces/IZUSDToken.sol\";\nimport \"./ZEROStakingStorage.sol\";\n\ncontract ZEROStaking is ZEROStakingStorage, IZEROStaking, CheckContract, BaseMath {\n using SafeMath for uint256;\n\n // --- Events ---\n\n event ZEROTokenAddressSet(address _zeroTokenAddress);\n event ZUSDTokenAddressSet(address _zusdTokenAddress);\n event FeeDistributorAddressSet(address _feeDistributorAddress);\n event ActivePoolAddressSet(address _activePoolAddress);\n\n event StakeChanged(address indexed staker, uint256 newStake);\n event StakingGainsWithdrawn(address indexed staker, uint256 ZUSDGain, uint256 ETHGain);\n event F_ETHUpdated(uint256 _F_ETH);\n event F_ZUSDUpdated(uint256 _F_ZUSD);\n event TotalZEROStakedUpdated(uint256 _totalZEROStaked);\n event EtherSent(address _account, uint256 _amount);\n event StakerSnapshotsUpdated(address _staker, uint256 _F_ETH, uint256 _F_ZUSD);\n\n // --- Functions ---\n\n function setAddresses(\n address _zeroTokenAddress,\n address _zusdTokenAddress,\n address _feeDistributorAddress,\n address _activePoolAddress\n ) external override onlyOwner {\n checkContract(_zeroTokenAddress);\n checkContract(_zusdTokenAddress);\n checkContract(_feeDistributorAddress);\n checkContract(_activePoolAddress);\n\n zeroToken = IZEROToken(_zeroTokenAddress);\n zusdToken = IZUSDToken(_zusdTokenAddress);\n feeDistributorAddress = _feeDistributorAddress;\n activePoolAddress = _activePoolAddress;\n\n emit ZEROTokenAddressSet(_zeroTokenAddress);\n emit ZEROTokenAddressSet(_zusdTokenAddress);\n emit FeeDistributorAddressSet(_feeDistributorAddress);\n emit ActivePoolAddressSet(_activePoolAddress);\n }\n\n // If caller has a pre-existing stake, send any accumulated ETH and ZUSD gains to them.\n function stake(uint256 _ZEROamount) external override {\n _requireNonZeroAmount(_ZEROamount);\n\n uint256 currentStake = stakes[msg.sender];\n\n uint256 ETHGain;\n uint256 ZUSDGain;\n // Grab any accumulated ETH and ZUSD gains from the current stake\n if (currentStake != 0) {\n ETHGain = _getPendingETHGain(msg.sender);\n ZUSDGain = _getPendingZUSDGain(msg.sender);\n }\n\n _updateUserSnapshots(msg.sender);\n\n uint256 newStake = currentStake.add(_ZEROamount);\n\n // Increase user’s stake and total ZERO staked\n stakes[msg.sender] = newStake;\n totalZEROStaked = totalZEROStaked.add(_ZEROamount);\n emit TotalZEROStakedUpdated(totalZEROStaked);\n\n // Transfer ZERO from caller to this contract\n zeroToken.sendToZEROStaking(msg.sender, _ZEROamount);\n\n emit StakeChanged(msg.sender, newStake);\n emit StakingGainsWithdrawn(msg.sender, ZUSDGain, ETHGain);\n\n // Send accumulated ZUSD and ETH gains to the caller\n if (currentStake != 0) {\n require(zusdToken.transfer(msg.sender, ZUSDGain), \"Coudn't execute ZUSD transfer\");\n _sendETHGainToUser(ETHGain);\n }\n }\n\n /// Unstake the ZERO and send the it back to the caller, along with their accumulated ZUSD & ETH gains.\n /// If requested amount > stake, send their entire stake.\n function unstake(uint256 _ZEROamount) external override {\n uint256 currentStake = stakes[msg.sender];\n _requireUserHasStake(currentStake);\n\n // Grab any accumulated ETH and ZUSD gains from the current stake\n uint256 ETHGain = _getPendingETHGain(msg.sender);\n uint256 ZUSDGain = _getPendingZUSDGain(msg.sender);\n\n _updateUserSnapshots(msg.sender);\n\n if (_ZEROamount > 0) {\n uint256 ZEROToWithdraw = LiquityMath._min(_ZEROamount, currentStake);\n\n uint256 newStake = currentStake.sub(ZEROToWithdraw);\n\n // Decrease user's stake and total ZERO staked\n stakes[msg.sender] = newStake;\n totalZEROStaked = totalZEROStaked.sub(ZEROToWithdraw);\n emit TotalZEROStakedUpdated(totalZEROStaked);\n\n // Transfer unstaked ZERO to user\n require(\n zeroToken.transfer(msg.sender, ZEROToWithdraw),\n \"Couldn't execute ZUSD transfer\"\n );\n\n emit StakeChanged(msg.sender, newStake);\n }\n\n emit StakingGainsWithdrawn(msg.sender, ZUSDGain, ETHGain);\n\n // Send accumulated ZUSD and ETH gains to the caller\n require(zusdToken.transfer(msg.sender, ZUSDGain), \"Couldn't execute ZUSD transfer\");\n _sendETHGainToUser(ETHGain);\n }\n\n // --- Reward-per-unit-staked increase functions. Called by Zero core contracts ---\n\n function increaseF_ETH(uint256 _ETHFee) external override {\n _requireCallerIsFeeDistributor();\n uint256 ETHFeePerZEROStaked;\n\n if (totalZEROStaked > 0) {\n ETHFeePerZEROStaked = _ETHFee.mul(DECIMAL_PRECISION).div(totalZEROStaked);\n }\n\n F_ETH = F_ETH.add(ETHFeePerZEROStaked);\n emit F_ETHUpdated(F_ETH);\n }\n\n function increaseF_ZUSD(uint256 _ZUSDFee) external override {\n _requireCallerIsFeeDistributor();\n uint256 ZUSDFeePerZEROStaked;\n\n if (totalZEROStaked > 0) {\n ZUSDFeePerZEROStaked = _ZUSDFee.mul(DECIMAL_PRECISION).div(totalZEROStaked);\n }\n\n F_ZUSD = F_ZUSD.add(ZUSDFeePerZEROStaked);\n emit F_ZUSDUpdated(F_ZUSD);\n }\n\n // --- Pending reward functions ---\n\n function getPendingETHGain(address _user) external view override returns (uint256) {\n return _getPendingETHGain(_user);\n }\n\n function _getPendingETHGain(address _user) internal view returns (uint256) {\n uint256 F_ETH_Snapshot = snapshots[_user].F_ETH_Snapshot;\n uint256 ETHGain = stakes[_user].mul(F_ETH.sub(F_ETH_Snapshot)).div(DECIMAL_PRECISION);\n return ETHGain;\n }\n\n function getPendingZUSDGain(address _user) external view override returns (uint256) {\n return _getPendingZUSDGain(_user);\n }\n\n function _getPendingZUSDGain(address _user) internal view returns (uint256) {\n uint256 F_ZUSD_Snapshot = snapshots[_user].F_ZUSD_Snapshot;\n uint256 ZUSDGain = stakes[_user].mul(F_ZUSD.sub(F_ZUSD_Snapshot)).div(DECIMAL_PRECISION);\n return ZUSDGain;\n }\n\n // --- Internal helper functions ---\n\n function _updateUserSnapshots(address _user) internal {\n snapshots[_user].F_ETH_Snapshot = F_ETH;\n snapshots[_user].F_ZUSD_Snapshot = F_ZUSD;\n emit StakerSnapshotsUpdated(_user, F_ETH, F_ZUSD);\n }\n\n function _sendETHGainToUser(uint256 ETHGain) internal {\n emit EtherSent(msg.sender, ETHGain);\n (bool success, ) = msg.sender.call{value: ETHGain}(\"\");\n require(success, \"ZEROStaking: Failed to send accumulated ETHGain\");\n }\n\n // --- 'require' functions ---\n\n function _requireCallerIsFeeDistributor() internal view {\n require(msg.sender == feeDistributorAddress, \"ZEROStaking: caller is not FeeDistributor\");\n }\n\n function _requireCallerIsActivePool() internal view {\n require(msg.sender == activePoolAddress, \"ZEROStaking: caller is not ActivePool\");\n }\n\n function _requireUserHasStake(uint256 currentStake) internal pure {\n require(currentStake > 0, \"ZEROStaking: User must have a non-zero stake\");\n }\n\n function _requireNonZeroAmount(uint256 _amount) internal pure {\n require(_amount > 0, \"ZEROStaking: Amount must be non-zero\");\n }\n\n receive() external payable {\n _requireCallerIsFeeDistributor();\n }\n}\n" + }, + "contracts/ZERO/ZEROStakingStorage.sol": { + "content": "// SPDX-License-Identifier: MIT\n\npragma solidity 0.6.11;\n\nimport \"../Dependencies/Ownable.sol\";\nimport \"../Interfaces/IZEROToken.sol\";\nimport \"../Interfaces/IZUSDToken.sol\";\n\ncontract ZEROStakingStorage is Ownable {\n // --- Data ---\n string constant public NAME = \"ZEROStaking\";\n\n mapping( address => uint) public stakes;\n uint public totalZEROStaked;\n\n uint public F_ETH; // Running sum of ETH fees per-ZERO-staked\n uint public F_ZUSD; // Running sum of ZERO fees per-ZERO-staked\n\n // User snapshots of F_ETH and F_ZUSD, taken at the point at which their latest deposit was made\n mapping (address => Snapshot) public snapshots; \n\n struct Snapshot {\n uint F_ETH_Snapshot;\n uint F_ZUSD_Snapshot;\n }\n \n IZEROToken public zeroToken;\n IZUSDToken public zusdToken;\n\n address public feeDistributorAddress;\n address public activePoolAddress;\n\n}\n" + }, + "contracts/ZERO/ZEROToken.sol": { + "content": "// SPDX-License-Identifier: MIT\n\npragma solidity 0.6.11;\n\nimport \"../Dependencies/CheckContract.sol\";\nimport \"../Dependencies/SafeMath.sol\";\nimport \"../Interfaces/IZEROToken.sol\";\nimport \"./ZEROTokenStorage.sol\";\n\n/**\n * Based upon OpenZeppelin's ERC20 contract:\n * https://github.com/OpenZeppelin/openzeppelin-contracts/blob/master/contracts/token/ERC20/ERC20.sol\n *\n * and their EIP2612 (ERC20Permit / ERC712) functionality:\n * https://github.com/OpenZeppelin/openzeppelin-contracts/blob/53516bc555a454862470e7860a9b5254db4d00f5/contracts/token/ERC20/ERC20Permit.sol\n *\n *\n * --- Functionality added specific to the ZEROToken ---\n *\n * 1) Transfer protection: blacklist of addresses that are invalid recipients (i.e. core Zero contracts) in external\n * transfer() and transferFrom() calls. The purpose is to protect users from losing tokens by mistakenly sending ZERO directly to a Zero\n * core contract, when they should rather call the right function.\n *\n * 2) sendToZEROStaking(): callable only by Zero core contracts, which move ZERO tokens from user -> ZEROStaking contract.\n *\n */\n\ncontract ZEROToken is ZEROTokenStorage, CheckContract, IZEROToken {\n using SafeMath for uint256;\n\n // --- Functions ---\n\n function initialize(\n address _zeroStakingAddress,\n address _marketMakerAddress,\n address _presaleAddress\n ) public initializer {\n // checkContract(_marketMakerAddress);\n // checkContract(_presaleAddress);\n\n deploymentStartTime = block.timestamp;\n\n zeroStakingAddress = _zeroStakingAddress;\n marketMakerAddress = _marketMakerAddress;\n presale = IBalanceRedirectPresale(_presaleAddress);\n\n bytes32 hashedName = keccak256(bytes(_NAME));\n bytes32 hashedVersion = keccak256(bytes(_VERSION));\n\n _HASHED_NAME = hashedName;\n _HASHED_VERSION = hashedVersion;\n _CACHED_CHAIN_ID = _chainID();\n _CACHED_DOMAIN_SEPARATOR = _buildDomainSeparator(_TYPE_HASH, hashedName, hashedVersion);\n }\n\n // --- External functions ---\n\n /// @notice Generates `amount` tokens that are assigned to `account`\n /// @param account The address that will be assigned the new tokens\n /// @param amount The quantity of tokens generated\n function mint(address account, uint256 amount) external {\n require(\n msg.sender == marketMakerAddress || msg.sender == address(presale),\n \"Invalid caller\"\n );\n _mint(account, amount);\n }\n\n /// @notice Burns `amount` tokens from `account`\n /// @param account The address that will lose the tokens\n /// @param amount The quantity of tokens to burn\n function burn(address account, uint256 amount) external {\n require(msg.sender == marketMakerAddress, \"Invalid caller\");\n _burn(account, amount);\n }\n\n function totalSupply() external view override returns (uint256) {\n return _totalSupply;\n }\n\n function balanceOf(address account) external view override returns (uint256) {\n return _balances[account];\n }\n\n function getDeploymentStartTime() external view override returns (uint256) {\n return deploymentStartTime;\n }\n\n function transfer(address recipient, uint256 amount) external override returns (bool) {\n _requireValidRecipient(recipient);\n\n // Otherwise, standard transfer functionality\n _transfer(msg.sender, recipient, amount);\n return true;\n }\n\n function allowance(address owner, address spender) external view override returns (uint256) {\n return _allowances[owner][spender];\n }\n\n function approve(address spender, uint256 amount) external override returns (bool) {\n _approve(msg.sender, spender, amount);\n return true;\n }\n\n function transferFrom(\n address sender,\n address recipient,\n uint256 amount\n ) external override returns (bool) {\n _requireValidRecipient(recipient);\n\n _transfer(sender, recipient, amount);\n _approve(\n sender,\n msg.sender,\n _allowances[sender][msg.sender].sub(amount, \"ERC20: transfer amount exceeds allowance\")\n );\n return true;\n }\n\n function increaseAllowance(address spender, uint256 addedValue)\n external\n override\n returns (bool)\n {\n _approve(msg.sender, spender, _allowances[msg.sender][spender].add(addedValue));\n return true;\n }\n\n function decreaseAllowance(address spender, uint256 subtractedValue)\n external\n override\n returns (bool)\n {\n _approve(\n msg.sender,\n spender,\n _allowances[msg.sender][spender].sub(\n subtractedValue,\n \"ERC20: decreased allowance below zero\"\n )\n );\n return true;\n }\n\n function sendToZEROStaking(address _sender, uint256 _amount) external override {\n _requireCallerIsZEROStaking();\n _transfer(_sender, zeroStakingAddress, _amount);\n }\n\n // --- EIP 2612 functionality ---\n\n function domainSeparator() public view override returns (bytes32) {\n if (_chainID() == _CACHED_CHAIN_ID) {\n return _CACHED_DOMAIN_SEPARATOR;\n } else {\n return _buildDomainSeparator(_TYPE_HASH, _HASHED_NAME, _HASHED_VERSION);\n }\n }\n\n function permit(\n address owner,\n address spender,\n uint256 amount,\n uint256 deadline,\n uint8 v,\n bytes32 r,\n bytes32 s\n ) external override {\n require(deadline >= now, \"ZERO: expired deadline\");\n bytes32 digest = keccak256(\n abi.encodePacked(\n \"\\x19\\x01\",\n domainSeparator(),\n keccak256(\n abi.encode(_PERMIT_TYPEHASH, owner, spender, amount, _nonces[owner]++, deadline)\n )\n )\n );\n address recoveredAddress = ecrecover(digest, v, r, s);\n require(recoveredAddress == owner, \"ZERO: invalid signature\");\n _approve(owner, spender, amount);\n }\n\n function nonces(address owner) external view override returns (uint256) {\n // FOR EIP 2612\n return _nonces[owner];\n }\n\n // --- Internal operations ---\n\n function _chainID() private pure returns (uint256 chainID) {\n assembly {\n chainID := chainid()\n }\n }\n\n function _buildDomainSeparator(\n bytes32 typeHash,\n bytes32 name,\n bytes32 version\n ) private view returns (bytes32) {\n return keccak256(abi.encode(typeHash, name, version, _chainID(), address(this)));\n }\n\n function _transfer(\n address sender,\n address recipient,\n uint256 amount\n ) internal {\n return; // disable the func call - ZEROToken is not used in beta\n require(sender != address(0), \"ERC20: transfer from the zero address\");\n require(recipient != address(0), \"ERC20: transfer to the zero address\");\n require(presale.isClosed(), \"Presale is not over yet\");\n\n _balances[sender] = _balances[sender].sub(amount, \"ERC20: transfer amount exceeds balance\");\n _balances[recipient] = _balances[recipient].add(amount);\n\n emit Transfer(sender, recipient, amount);\n }\n\n function _mint(address account, uint256 amount) internal {\n return; // disable the func call - ZEROToken is not used in beta\n require(account != address(0), \"ERC20: mint to the zero address\");\n\n _totalSupply = _totalSupply.add(amount);\n _balances[account] = _balances[account].add(amount);\n emit Transfer(address(0), account, amount);\n }\n\n function _burn(address account, uint256 amount) internal {\n return; // disable the func call - ZEROToken is not used in beta\n require(account != address(0), \"ERC20: mint to the zero address\");\n require(amount <= _balances[account], \"balance too low\");\n\n _totalSupply = _totalSupply.sub(amount);\n _balances[account] = _balances[account].sub(amount);\n emit Transfer(account, address(0), amount);\n }\n\n function _approve(\n address owner,\n address spender,\n uint256 amount\n ) internal {\n require(owner != address(0), \"ERC20: approve from the zero address\");\n require(spender != address(0), \"ERC20: approve to the zero address\");\n\n _allowances[owner][spender] = amount;\n emit Approval(owner, spender, amount);\n }\n\n // --- Helper functions ---\n\n // --- 'require' functions ---\n\n function _requireValidRecipient(address _recipient) internal view {\n require(\n _recipient != address(0) && _recipient != address(this),\n \"ZERO: Cannot transfer tokens directly to the ZERO token contract or the zero address\"\n );\n }\n\n function _requireCallerIsZEROStaking() internal view {\n require(\n msg.sender == zeroStakingAddress,\n \"ZEROToken: caller must be the ZEROStaking contract\"\n );\n }\n\n // --- Optional functions ---\n\n function name() external view override returns (string memory) {\n return _NAME;\n }\n\n function symbol() external view override returns (string memory) {\n return _SYMBOL;\n }\n\n function decimals() external view override returns (uint8) {\n return _DECIMALS;\n }\n\n function version() external view override returns (string memory) {\n return _VERSION;\n }\n\n function permitTypeHash() external view override returns (bytes32) {\n return _PERMIT_TYPEHASH;\n }\n}\n" + }, + "contracts/ZERO/ZEROTokenStorage.sol": { + "content": "// SPDX-License-Identifier: MIT\n\npragma solidity 0.6.11;\n\nimport \"../Interfaces/IBalanceRedirectPresale.sol\";\nimport \"../Dependencies/Initializable.sol\";\n\ncontract ZEROTokenStorage is Initializable {\n // --- ERC20 Data ---\n\n string constant internal _NAME = \"ZERO\";\n string constant internal _SYMBOL = \"ZERO\";\n string constant internal _VERSION = \"1\";\n uint8 constant internal _DECIMALS = 18;\n\n mapping (address => uint256) internal _balances;\n mapping (address => mapping (address => uint256)) internal _allowances;\n uint internal _totalSupply;\n\n // --- EIP 2612 Data ---\n\n // keccak256(\"Permit(address owner,address spender,uint256 value,uint256 nonce,uint256 deadline)\");\n bytes32 internal constant _PERMIT_TYPEHASH = 0x6e71edae12b1b97f4d1f60370fef10105fa2faae0126114a169c64845d6126c9;\n // keccak256(\"EIP712Domain(string name,string version,uint256 chainId,address verifyingContract)\");\n bytes32 internal constant _TYPE_HASH = 0x8b73c3c69bb8fe3d512ecc4cf759cc79239f7b179b0ffacaa9a75d522b39400f;\n\n // Cache the domain separator as an immutable value, but also store the chain id that it corresponds to, in order to\n // invalidate the cached domain separator if the chain id changes.\n bytes32 internal _CACHED_DOMAIN_SEPARATOR;\n uint256 internal _CACHED_CHAIN_ID;\n\n bytes32 internal _HASHED_NAME;\n bytes32 internal _HASHED_VERSION;\n \n mapping (address => uint256) internal _nonces;\n\n // --- ZEROToken specific data ---\n\n uint public constant ONE_YEAR_IN_SECONDS = 31536000; // 60 * 60 * 24 * 365\n\n // uint for use with SafeMath\n uint internal constant _1_MILLION = 1e24; // 1e6 * 1e18 = 1e24\n\n uint internal deploymentStartTime;\n\n address public zeroStakingAddress;\n address public marketMakerAddress;\n IBalanceRedirectPresale public presale;\n\n}\n" + }, + "contracts/ZUSDToken.sol": { + "content": "// SPDX-License-Identifier: MIT\n\npragma solidity 0.6.11;\n\nimport \"./Interfaces/IZUSDToken.sol\";\nimport \"./Dependencies/SafeMath.sol\";\nimport \"./Dependencies/Ownable.sol\";\nimport \"./Dependencies/CheckContract.sol\";\nimport \"./Dependencies/console.sol\";\nimport \"./ZUSDTokenStorage.sol\";\n\n/**\n *\n * Based upon OpenZeppelin's ERC20 contract:\n * https://github.com/OpenZeppelin/openzeppelin-contracts/blob/master/contracts/token/ERC20/ERC20.sol\n *\n * and their EIP2612 (ERC20Permit / ERC712) functionality:\n * https://github.com/OpenZeppelin/openzeppelin-contracts/blob/53516bc555a454862470e7860a9b5254db4d00f5/contracts/token/ERC20/ERC20Permit.sol\n *\n *\n * --- Functionality added specific to the ZUSDToken ---\n *\n * 1) Transfer protection: blacklist of addresses that are invalid recipients (i.e. core Zero contracts) in external\n * transfer() and transferFrom() calls. The purpose is to protect users from losing tokens by mistakenly sending ZUSD directly to a Zero\n * core contract, when they should rather call the right function.\n *\n * 2) sendToPool() and returnFromPool(): functions callable only Zero core contracts, which move ZUSD tokens between Zero <-> user.\n */\n\ncontract ZUSDToken is ZUSDTokenStorage, CheckContract, IZUSDToken, Ownable {\n using SafeMath for uint256;\n // --- Events ---\n event TroveManagerAddressChanged(address _troveManagerAddress);\n event StabilityPoolAddressChanged(address _newStabilityPoolAddress);\n event BorrowerOperationsAddressChanged(address _newBorrowerOperationsAddress);\n\n function initialize(\n address _troveManagerAddress,\n address _stabilityPoolAddress,\n address _borrowerOperationsAddress\n ) public virtual initializer onlyOwner {\n _initialize(_troveManagerAddress, _stabilityPoolAddress, _borrowerOperationsAddress);\n }\n\n function _initialize(\n address _troveManagerAddress,\n address _stabilityPoolAddress,\n address _borrowerOperationsAddress\n ) internal {\n checkContract(_troveManagerAddress);\n checkContract(_stabilityPoolAddress);\n checkContract(_borrowerOperationsAddress);\n\n troveManagerAddress = _troveManagerAddress;\n emit TroveManagerAddressChanged(_troveManagerAddress);\n\n stabilityPoolAddress = _stabilityPoolAddress;\n emit StabilityPoolAddressChanged(_stabilityPoolAddress);\n\n borrowerOperationsAddress = _borrowerOperationsAddress;\n emit BorrowerOperationsAddressChanged(_borrowerOperationsAddress);\n\n bytes32 hashedName = keccak256(bytes(_NAME));\n bytes32 hashedVersion = keccak256(bytes(_VERSION));\n\n _HASHED_NAME = hashedName;\n _HASHED_VERSION = hashedVersion;\n _CACHED_CHAIN_ID = _chainID();\n _CACHED_DOMAIN_SEPARATOR = _buildDomainSeparator(_TYPE_HASH, hashedName, hashedVersion);\n }\n\n // --- Functions for intra-Zero calls ---\n\n function mint(address _account, uint256 _amount) external override {\n _requireCallerIsBorrowerOperations();\n _mint(_account, _amount);\n }\n\n function burn(address _account, uint256 _amount) external override {\n _requireCallerIsBOorTroveMorSP();\n _burn(_account, _amount);\n }\n\n function sendToPool(\n address _sender,\n address _poolAddress,\n uint256 _amount\n ) external override {\n _requireCallerIsStabilityPool();\n _transfer(_sender, _poolAddress, _amount);\n }\n\n function returnFromPool(\n address _poolAddress,\n address _receiver,\n uint256 _amount\n ) external override {\n _requireCallerIsTroveMorSP();\n _transfer(_poolAddress, _receiver, _amount);\n }\n\n // --- External functions ---\n\n function totalSupply() external view override returns (uint256) {\n return _totalSupply;\n }\n\n function balanceOf(address account) external view override returns (uint256) {\n return _balances[account];\n }\n\n function transfer(address recipient, uint256 amount) external override returns (bool) {\n _requireValidRecipient(recipient);\n _transfer(msg.sender, recipient, amount);\n return true;\n }\n\n function allowance(address owner, address spender) external view override returns (uint256) {\n return _allowances[owner][spender];\n }\n\n function approve(address spender, uint256 amount) external override returns (bool) {\n _approve(msg.sender, spender, amount);\n return true;\n }\n\n function transferFrom(\n address sender,\n address recipient,\n uint256 amount\n ) external override returns (bool) {\n _requireValidRecipient(recipient);\n _transfer(sender, recipient, amount);\n _approve(\n sender,\n msg.sender,\n _allowances[sender][msg.sender].sub(amount, \"ERC20: transfer amount exceeds allowance\")\n );\n return true;\n }\n\n function increaseAllowance(address spender, uint256 addedValue)\n external\n override\n returns (bool)\n {\n _approve(msg.sender, spender, _allowances[msg.sender][spender].add(addedValue));\n return true;\n }\n\n function decreaseAllowance(address spender, uint256 subtractedValue)\n external\n override\n returns (bool)\n {\n _approve(\n msg.sender,\n spender,\n _allowances[msg.sender][spender].sub(\n subtractedValue,\n \"ERC20: decreased allowance below zero\"\n )\n );\n return true;\n }\n\n // --- EIP 2612 Functionality ---\n\n function domainSeparator() public view override returns (bytes32) {\n if (_chainID() == _CACHED_CHAIN_ID) {\n return _CACHED_DOMAIN_SEPARATOR;\n } else {\n return _buildDomainSeparator(_TYPE_HASH, _HASHED_NAME, _HASHED_VERSION);\n }\n }\n\n function permit(\n address owner,\n address spender,\n uint256 amount,\n uint256 deadline,\n uint8 v,\n bytes32 r,\n bytes32 s\n ) external override {\n require(deadline >= now, \"ZUSD: expired deadline\");\n bytes32 digest = keccak256(\n abi.encodePacked(\n \"\\x19\\x01\",\n domainSeparator(),\n keccak256(\n abi.encode(\n _PERMIT_TYPEHASH,\n owner,\n spender,\n amount,\n _nonces[owner]++,\n deadline\n )\n )\n )\n );\n address recoveredAddress = ecrecover(digest, v, r, s);\n require(recoveredAddress == owner, \"ZUSD: invalid signature\");\n _approve(owner, spender, amount);\n }\n\n function nonces(address owner) external view override returns (uint256) {\n // FOR EIP 2612\n return _nonces[owner];\n }\n\n // --- Internal operations ---\n\n function _chainID() private pure returns (uint256 chainID) {\n assembly {\n chainID := chainid()\n }\n }\n\n function _buildDomainSeparator(\n bytes32 typeHash,\n bytes32 name,\n bytes32 version\n ) private view returns (bytes32) {\n return keccak256(abi.encode(typeHash, name, version, _chainID(), address(this)));\n }\n\n // --- Internal operations ---\n // Warning: sanity checks (for sender and recipient) should have been done before calling these internal functions\n\n function _transfer(\n address sender,\n address recipient,\n uint256 amount\n ) internal {\n assert(sender != address(0));\n assert(recipient != address(0));\n\n _balances[sender] = _balances[sender].sub(\n amount,\n \"ERC20: transfer amount exceeds balance\"\n );\n _balances[recipient] = _balances[recipient].add(amount);\n emit Transfer(sender, recipient, amount);\n }\n\n function _mint(address account, uint256 amount) internal {\n assert(account != address(0));\n\n _totalSupply = _totalSupply.add(amount);\n _balances[account] = _balances[account].add(amount);\n emit Transfer(address(0), account, amount);\n }\n\n function _burn(address account, uint256 amount) internal {\n assert(account != address(0));\n\n _balances[account] = _balances[account].sub(amount, \"ERC20: burn amount exceeds balance\");\n _totalSupply = _totalSupply.sub(amount);\n emit Transfer(account, address(0), amount);\n }\n\n function _approve(\n address owner,\n address spender,\n uint256 amount\n ) internal {\n assert(owner != address(0));\n assert(spender != address(0));\n\n _allowances[owner][spender] = amount;\n emit Approval(owner, spender, amount);\n }\n\n // --- 'require' functions ---\n\n function _requireValidRecipient(address _recipient) internal view {\n require(\n _recipient != address(0) && _recipient != address(this),\n \"ZUSD: Cannot transfer tokens directly to the ZUSD token contract or the zero address\"\n );\n }\n\n function _requireCallerIsBorrowerOperations() internal view {\n require(\n msg.sender == borrowerOperationsAddress,\n \"ZUSDToken: Caller is not BorrowerOperations\"\n );\n }\n\n function _requireCallerIsBOorTroveMorSP() internal view {\n require(\n msg.sender == borrowerOperationsAddress ||\n msg.sender == troveManagerAddress ||\n msg.sender == stabilityPoolAddress,\n \"ZUSD: Caller is neither BorrowerOperations nor TroveManager nor StabilityPool\"\n );\n }\n\n function _requireCallerIsStabilityPool() internal view {\n require(msg.sender == stabilityPoolAddress, \"ZUSD: Caller is not the StabilityPool\");\n }\n\n function _requireCallerIsTroveMorSP() internal view {\n require(\n msg.sender == troveManagerAddress || msg.sender == stabilityPoolAddress,\n \"ZUSD: Caller is neither TroveManager nor StabilityPool\"\n );\n }\n\n // --- Optional functions ---\n\n function name() external view override returns (string memory) {\n return _NAME;\n }\n\n function symbol() external view override returns (string memory) {\n return _SYMBOL;\n }\n\n function decimals() external view override returns (uint8) {\n return _DECIMALS;\n }\n\n function version() external view override returns (string memory) {\n return _VERSION;\n }\n\n function permitTypeHash() external view override returns (bytes32) {\n return _PERMIT_TYPEHASH;\n }\n}\n" + }, + "contracts/ZUSDTokenStorage.sol": { + "content": "// SPDX-License-Identifier: MIT\npragma solidity 0.6.11;\n\nimport \"./Dependencies/Initializable.sol\";\n\ncontract ZUSDTokenStorage is Initializable {\n uint256 internal _totalSupply;\n string internal constant _NAME = \"ZUSD Stablecoin\";\n string internal constant _SYMBOL = \"ZUSD\";\n string internal constant _VERSION = \"1\";\n uint8 internal constant _DECIMALS = 18;\n\n // --- Data for EIP2612 ---\n\n // keccak256(\"Permit(address owner,address spender,uint256 value,uint256 nonce,uint256 deadline)\");\n bytes32 internal constant _PERMIT_TYPEHASH =\n 0x6e71edae12b1b97f4d1f60370fef10105fa2faae0126114a169c64845d6126c9;\n // keccak256(\"EIP712Domain(string name,string version,uint256 chainId,address verifyingContract)\");\n bytes32 internal constant _TYPE_HASH =\n 0x8b73c3c69bb8fe3d512ecc4cf759cc79239f7b179b0ffacaa9a75d522b39400f;\n\n // Cache the domain separator, but also store the chain id that it corresponds to, in order to\n // invalidate the cached domain separator if the chain id changes.\n bytes32 internal _CACHED_DOMAIN_SEPARATOR;\n uint256 internal _CACHED_CHAIN_ID;\n\n bytes32 internal _HASHED_NAME;\n bytes32 internal _HASHED_VERSION;\n\n mapping(address => uint256) internal _nonces;\n\n // User data for ZUSD token\n mapping(address => uint256) internal _balances;\n mapping(address => mapping(address => uint256)) internal _allowances;\n\n // --- Addresses ---\n address internal troveManagerAddress;\n address internal stabilityPoolAddress;\n address internal borrowerOperationsAddress;\n}\n" + }, + "hardhat/console.sol": { + "content": "// SPDX-License-Identifier: MIT\npragma solidity >=0.4.22 <0.9.0;\n\nlibrary console {\n address constant CONSOLE_ADDRESS =\n 0x000000000000000000636F6e736F6c652e6c6f67;\n\n function _sendLogPayloadImplementation(bytes memory payload) internal view {\n address consoleAddress = CONSOLE_ADDRESS;\n /// @solidity memory-safe-assembly\n assembly {\n pop(\n staticcall(\n gas(),\n consoleAddress,\n add(payload, 32),\n mload(payload),\n 0,\n 0\n )\n )\n }\n }\n\n function _castToPure(\n function(bytes memory) internal view fnIn\n ) internal pure returns (function(bytes memory) pure fnOut) {\n assembly {\n fnOut := fnIn\n }\n }\n\n function _sendLogPayload(bytes memory payload) internal pure {\n _castToPure(_sendLogPayloadImplementation)(payload);\n }\n\n function log() internal pure {\n _sendLogPayload(abi.encodeWithSignature(\"log()\"));\n }\n function logInt(int256 p0) internal pure {\n _sendLogPayload(abi.encodeWithSignature(\"log(int256)\", p0));\n }\n\n function logUint(uint256 p0) internal pure {\n _sendLogPayload(abi.encodeWithSignature(\"log(uint256)\", p0));\n }\n\n function logString(string memory p0) internal pure {\n _sendLogPayload(abi.encodeWithSignature(\"log(string)\", p0));\n }\n\n function logBool(bool p0) internal pure {\n _sendLogPayload(abi.encodeWithSignature(\"log(bool)\", p0));\n }\n\n function logAddress(address p0) internal pure {\n _sendLogPayload(abi.encodeWithSignature(\"log(address)\", p0));\n }\n\n function logBytes(bytes memory p0) internal pure {\n _sendLogPayload(abi.encodeWithSignature(\"log(bytes)\", p0));\n }\n\n function logBytes1(bytes1 p0) internal pure {\n _sendLogPayload(abi.encodeWithSignature(\"log(bytes1)\", p0));\n }\n\n function logBytes2(bytes2 p0) internal pure {\n _sendLogPayload(abi.encodeWithSignature(\"log(bytes2)\", p0));\n }\n\n function logBytes3(bytes3 p0) internal pure {\n _sendLogPayload(abi.encodeWithSignature(\"log(bytes3)\", p0));\n }\n\n function logBytes4(bytes4 p0) internal pure {\n _sendLogPayload(abi.encodeWithSignature(\"log(bytes4)\", p0));\n }\n\n function logBytes5(bytes5 p0) internal pure {\n _sendLogPayload(abi.encodeWithSignature(\"log(bytes5)\", p0));\n }\n\n function logBytes6(bytes6 p0) internal pure {\n _sendLogPayload(abi.encodeWithSignature(\"log(bytes6)\", p0));\n }\n\n function logBytes7(bytes7 p0) internal pure {\n _sendLogPayload(abi.encodeWithSignature(\"log(bytes7)\", p0));\n }\n\n function logBytes8(bytes8 p0) internal pure {\n _sendLogPayload(abi.encodeWithSignature(\"log(bytes8)\", p0));\n }\n\n function logBytes9(bytes9 p0) internal pure {\n _sendLogPayload(abi.encodeWithSignature(\"log(bytes9)\", p0));\n }\n\n function logBytes10(bytes10 p0) internal pure {\n _sendLogPayload(abi.encodeWithSignature(\"log(bytes10)\", p0));\n }\n\n function logBytes11(bytes11 p0) internal pure {\n _sendLogPayload(abi.encodeWithSignature(\"log(bytes11)\", p0));\n }\n\n function logBytes12(bytes12 p0) internal pure {\n _sendLogPayload(abi.encodeWithSignature(\"log(bytes12)\", p0));\n }\n\n function logBytes13(bytes13 p0) internal pure {\n _sendLogPayload(abi.encodeWithSignature(\"log(bytes13)\", p0));\n }\n\n function logBytes14(bytes14 p0) internal pure {\n _sendLogPayload(abi.encodeWithSignature(\"log(bytes14)\", p0));\n }\n\n function logBytes15(bytes15 p0) internal pure {\n _sendLogPayload(abi.encodeWithSignature(\"log(bytes15)\", p0));\n }\n\n function logBytes16(bytes16 p0) internal pure {\n _sendLogPayload(abi.encodeWithSignature(\"log(bytes16)\", p0));\n }\n\n function logBytes17(bytes17 p0) internal pure {\n _sendLogPayload(abi.encodeWithSignature(\"log(bytes17)\", p0));\n }\n\n function logBytes18(bytes18 p0) internal pure {\n _sendLogPayload(abi.encodeWithSignature(\"log(bytes18)\", p0));\n }\n\n function logBytes19(bytes19 p0) internal pure {\n _sendLogPayload(abi.encodeWithSignature(\"log(bytes19)\", p0));\n }\n\n function logBytes20(bytes20 p0) internal pure {\n _sendLogPayload(abi.encodeWithSignature(\"log(bytes20)\", p0));\n }\n\n function logBytes21(bytes21 p0) internal pure {\n _sendLogPayload(abi.encodeWithSignature(\"log(bytes21)\", p0));\n }\n\n function logBytes22(bytes22 p0) internal pure {\n _sendLogPayload(abi.encodeWithSignature(\"log(bytes22)\", p0));\n }\n\n function logBytes23(bytes23 p0) internal pure {\n _sendLogPayload(abi.encodeWithSignature(\"log(bytes23)\", p0));\n }\n\n function logBytes24(bytes24 p0) internal pure {\n _sendLogPayload(abi.encodeWithSignature(\"log(bytes24)\", p0));\n }\n\n function logBytes25(bytes25 p0) internal pure {\n _sendLogPayload(abi.encodeWithSignature(\"log(bytes25)\", p0));\n }\n\n function logBytes26(bytes26 p0) internal pure {\n _sendLogPayload(abi.encodeWithSignature(\"log(bytes26)\", p0));\n }\n\n function logBytes27(bytes27 p0) internal pure {\n _sendLogPayload(abi.encodeWithSignature(\"log(bytes27)\", p0));\n }\n\n function logBytes28(bytes28 p0) internal pure {\n _sendLogPayload(abi.encodeWithSignature(\"log(bytes28)\", p0));\n }\n\n function logBytes29(bytes29 p0) internal pure {\n _sendLogPayload(abi.encodeWithSignature(\"log(bytes29)\", p0));\n }\n\n function logBytes30(bytes30 p0) internal pure {\n _sendLogPayload(abi.encodeWithSignature(\"log(bytes30)\", p0));\n }\n\n function logBytes31(bytes31 p0) internal pure {\n _sendLogPayload(abi.encodeWithSignature(\"log(bytes31)\", p0));\n }\n\n function logBytes32(bytes32 p0) internal pure {\n _sendLogPayload(abi.encodeWithSignature(\"log(bytes32)\", p0));\n }\n\n function log(uint256 p0) internal pure {\n _sendLogPayload(abi.encodeWithSignature(\"log(uint256)\", p0));\n }\n\n function log(string memory p0) internal pure {\n _sendLogPayload(abi.encodeWithSignature(\"log(string)\", p0));\n }\n\n function log(bool p0) internal pure {\n _sendLogPayload(abi.encodeWithSignature(\"log(bool)\", p0));\n }\n\n function log(address p0) internal pure {\n _sendLogPayload(abi.encodeWithSignature(\"log(address)\", p0));\n }\n\n function log(uint256 p0, uint256 p1) internal pure {\n _sendLogPayload(abi.encodeWithSignature(\"log(uint256,uint256)\", p0, p1));\n }\n\n function log(uint256 p0, string memory p1) internal pure {\n _sendLogPayload(abi.encodeWithSignature(\"log(uint256,string)\", p0, p1));\n }\n\n function log(uint256 p0, bool p1) internal pure {\n _sendLogPayload(abi.encodeWithSignature(\"log(uint256,bool)\", p0, p1));\n }\n\n function log(uint256 p0, address p1) internal pure {\n _sendLogPayload(abi.encodeWithSignature(\"log(uint256,address)\", p0, p1));\n }\n\n function log(string memory p0, uint256 p1) internal pure {\n _sendLogPayload(abi.encodeWithSignature(\"log(string,uint256)\", p0, p1));\n }\n\n function log(string memory p0, string memory p1) internal pure {\n _sendLogPayload(abi.encodeWithSignature(\"log(string,string)\", p0, p1));\n }\n\n function log(string memory p0, bool p1) internal pure {\n _sendLogPayload(abi.encodeWithSignature(\"log(string,bool)\", p0, p1));\n }\n\n function log(string memory p0, address p1) internal pure {\n _sendLogPayload(abi.encodeWithSignature(\"log(string,address)\", p0, p1));\n }\n\n function log(bool p0, uint256 p1) internal pure {\n _sendLogPayload(abi.encodeWithSignature(\"log(bool,uint256)\", p0, p1));\n }\n\n function log(bool p0, string memory p1) internal pure {\n _sendLogPayload(abi.encodeWithSignature(\"log(bool,string)\", p0, p1));\n }\n\n function log(bool p0, bool p1) internal pure {\n _sendLogPayload(abi.encodeWithSignature(\"log(bool,bool)\", p0, p1));\n }\n\n function log(bool p0, address p1) internal pure {\n _sendLogPayload(abi.encodeWithSignature(\"log(bool,address)\", p0, p1));\n }\n\n function log(address p0, uint256 p1) internal pure {\n _sendLogPayload(abi.encodeWithSignature(\"log(address,uint256)\", p0, p1));\n }\n\n function log(address p0, string memory p1) internal pure {\n _sendLogPayload(abi.encodeWithSignature(\"log(address,string)\", p0, p1));\n }\n\n function log(address p0, bool p1) internal pure {\n _sendLogPayload(abi.encodeWithSignature(\"log(address,bool)\", p0, p1));\n }\n\n function log(address p0, address p1) internal pure {\n _sendLogPayload(abi.encodeWithSignature(\"log(address,address)\", p0, p1));\n }\n\n function log(uint256 p0, uint256 p1, uint256 p2) internal pure {\n _sendLogPayload(abi.encodeWithSignature(\"log(uint256,uint256,uint256)\", p0, p1, p2));\n }\n\n function log(uint256 p0, uint256 p1, string memory p2) internal pure {\n _sendLogPayload(abi.encodeWithSignature(\"log(uint256,uint256,string)\", p0, p1, p2));\n }\n\n function log(uint256 p0, uint256 p1, bool p2) internal pure {\n _sendLogPayload(abi.encodeWithSignature(\"log(uint256,uint256,bool)\", p0, p1, p2));\n }\n\n function log(uint256 p0, uint256 p1, address p2) internal pure {\n _sendLogPayload(abi.encodeWithSignature(\"log(uint256,uint256,address)\", p0, p1, p2));\n }\n\n function log(uint256 p0, string memory p1, uint256 p2) internal pure {\n _sendLogPayload(abi.encodeWithSignature(\"log(uint256,string,uint256)\", p0, p1, p2));\n }\n\n function log(uint256 p0, string memory p1, string memory p2) internal pure {\n _sendLogPayload(abi.encodeWithSignature(\"log(uint256,string,string)\", p0, p1, p2));\n }\n\n function log(uint256 p0, string memory p1, bool p2) internal pure {\n _sendLogPayload(abi.encodeWithSignature(\"log(uint256,string,bool)\", p0, p1, p2));\n }\n\n function log(uint256 p0, string memory p1, address p2) internal pure {\n _sendLogPayload(abi.encodeWithSignature(\"log(uint256,string,address)\", p0, p1, p2));\n }\n\n function log(uint256 p0, bool p1, uint256 p2) internal pure {\n _sendLogPayload(abi.encodeWithSignature(\"log(uint256,bool,uint256)\", p0, p1, p2));\n }\n\n function log(uint256 p0, bool p1, string memory p2) internal pure {\n _sendLogPayload(abi.encodeWithSignature(\"log(uint256,bool,string)\", p0, p1, p2));\n }\n\n function log(uint256 p0, bool p1, bool p2) internal pure {\n _sendLogPayload(abi.encodeWithSignature(\"log(uint256,bool,bool)\", p0, p1, p2));\n }\n\n function log(uint256 p0, bool p1, address p2) internal pure {\n _sendLogPayload(abi.encodeWithSignature(\"log(uint256,bool,address)\", p0, p1, p2));\n }\n\n function log(uint256 p0, address p1, uint256 p2) internal pure {\n _sendLogPayload(abi.encodeWithSignature(\"log(uint256,address,uint256)\", p0, p1, p2));\n }\n\n function log(uint256 p0, address p1, string memory p2) internal pure {\n _sendLogPayload(abi.encodeWithSignature(\"log(uint256,address,string)\", p0, p1, p2));\n }\n\n function log(uint256 p0, address p1, bool p2) internal pure {\n _sendLogPayload(abi.encodeWithSignature(\"log(uint256,address,bool)\", p0, p1, p2));\n }\n\n function log(uint256 p0, address p1, address p2) internal pure {\n _sendLogPayload(abi.encodeWithSignature(\"log(uint256,address,address)\", p0, p1, p2));\n }\n\n function log(string memory p0, uint256 p1, uint256 p2) internal pure {\n _sendLogPayload(abi.encodeWithSignature(\"log(string,uint256,uint256)\", p0, p1, p2));\n }\n\n function log(string memory p0, uint256 p1, string memory p2) internal pure {\n _sendLogPayload(abi.encodeWithSignature(\"log(string,uint256,string)\", p0, p1, p2));\n }\n\n function log(string memory p0, uint256 p1, bool p2) internal pure {\n _sendLogPayload(abi.encodeWithSignature(\"log(string,uint256,bool)\", p0, p1, p2));\n }\n\n function log(string memory p0, uint256 p1, address p2) internal pure {\n _sendLogPayload(abi.encodeWithSignature(\"log(string,uint256,address)\", p0, p1, p2));\n }\n\n function log(string memory p0, string memory p1, uint256 p2) internal pure {\n _sendLogPayload(abi.encodeWithSignature(\"log(string,string,uint256)\", p0, p1, p2));\n }\n\n function log(string memory p0, string memory p1, string memory p2) internal pure {\n _sendLogPayload(abi.encodeWithSignature(\"log(string,string,string)\", p0, p1, p2));\n }\n\n function log(string memory p0, string memory p1, bool p2) internal pure {\n _sendLogPayload(abi.encodeWithSignature(\"log(string,string,bool)\", p0, p1, p2));\n }\n\n function log(string memory p0, string memory p1, address p2) internal pure {\n _sendLogPayload(abi.encodeWithSignature(\"log(string,string,address)\", p0, p1, p2));\n }\n\n function log(string memory p0, bool p1, uint256 p2) internal pure {\n _sendLogPayload(abi.encodeWithSignature(\"log(string,bool,uint256)\", p0, p1, p2));\n }\n\n function log(string memory p0, bool p1, string memory p2) internal pure {\n _sendLogPayload(abi.encodeWithSignature(\"log(string,bool,string)\", p0, p1, p2));\n }\n\n function log(string memory p0, bool p1, bool p2) internal pure {\n _sendLogPayload(abi.encodeWithSignature(\"log(string,bool,bool)\", p0, p1, p2));\n }\n\n function log(string memory p0, bool p1, address p2) internal pure {\n _sendLogPayload(abi.encodeWithSignature(\"log(string,bool,address)\", p0, p1, p2));\n }\n\n function log(string memory p0, address p1, uint256 p2) internal pure {\n _sendLogPayload(abi.encodeWithSignature(\"log(string,address,uint256)\", p0, p1, p2));\n }\n\n function log(string memory p0, address p1, string memory p2) internal pure {\n _sendLogPayload(abi.encodeWithSignature(\"log(string,address,string)\", p0, p1, p2));\n }\n\n function log(string memory p0, address p1, bool p2) internal pure {\n _sendLogPayload(abi.encodeWithSignature(\"log(string,address,bool)\", p0, p1, p2));\n }\n\n function log(string memory p0, address p1, address p2) internal pure {\n _sendLogPayload(abi.encodeWithSignature(\"log(string,address,address)\", p0, p1, p2));\n }\n\n function log(bool p0, uint256 p1, uint256 p2) internal pure {\n _sendLogPayload(abi.encodeWithSignature(\"log(bool,uint256,uint256)\", p0, p1, p2));\n }\n\n function log(bool p0, uint256 p1, string memory p2) internal pure {\n _sendLogPayload(abi.encodeWithSignature(\"log(bool,uint256,string)\", p0, p1, p2));\n }\n\n function log(bool p0, uint256 p1, bool p2) internal pure {\n _sendLogPayload(abi.encodeWithSignature(\"log(bool,uint256,bool)\", p0, p1, p2));\n }\n\n function log(bool p0, uint256 p1, address p2) internal pure {\n _sendLogPayload(abi.encodeWithSignature(\"log(bool,uint256,address)\", p0, p1, p2));\n }\n\n function log(bool p0, string memory p1, uint256 p2) internal pure {\n _sendLogPayload(abi.encodeWithSignature(\"log(bool,string,uint256)\", p0, p1, p2));\n }\n\n function log(bool p0, string memory p1, string memory p2) internal pure {\n _sendLogPayload(abi.encodeWithSignature(\"log(bool,string,string)\", p0, p1, p2));\n }\n\n function log(bool p0, string memory p1, bool p2) internal pure {\n _sendLogPayload(abi.encodeWithSignature(\"log(bool,string,bool)\", p0, p1, p2));\n }\n\n function log(bool p0, string memory p1, address p2) internal pure {\n _sendLogPayload(abi.encodeWithSignature(\"log(bool,string,address)\", p0, p1, p2));\n }\n\n function log(bool p0, bool p1, uint256 p2) internal pure {\n _sendLogPayload(abi.encodeWithSignature(\"log(bool,bool,uint256)\", p0, p1, p2));\n }\n\n function log(bool p0, bool p1, string memory p2) internal pure {\n _sendLogPayload(abi.encodeWithSignature(\"log(bool,bool,string)\", p0, p1, p2));\n }\n\n function log(bool p0, bool p1, bool p2) internal pure {\n _sendLogPayload(abi.encodeWithSignature(\"log(bool,bool,bool)\", p0, p1, p2));\n }\n\n function log(bool p0, bool p1, address p2) internal pure {\n _sendLogPayload(abi.encodeWithSignature(\"log(bool,bool,address)\", p0, p1, p2));\n }\n\n function log(bool p0, address p1, uint256 p2) internal pure {\n _sendLogPayload(abi.encodeWithSignature(\"log(bool,address,uint256)\", p0, p1, p2));\n }\n\n function log(bool p0, address p1, string memory p2) internal pure {\n _sendLogPayload(abi.encodeWithSignature(\"log(bool,address,string)\", p0, p1, p2));\n }\n\n function log(bool p0, address p1, bool p2) internal pure {\n _sendLogPayload(abi.encodeWithSignature(\"log(bool,address,bool)\", p0, p1, p2));\n }\n\n function log(bool p0, address p1, address p2) internal pure {\n _sendLogPayload(abi.encodeWithSignature(\"log(bool,address,address)\", p0, p1, p2));\n }\n\n function log(address p0, uint256 p1, uint256 p2) internal pure {\n _sendLogPayload(abi.encodeWithSignature(\"log(address,uint256,uint256)\", p0, p1, p2));\n }\n\n function log(address p0, uint256 p1, string memory p2) internal pure {\n _sendLogPayload(abi.encodeWithSignature(\"log(address,uint256,string)\", p0, p1, p2));\n }\n\n function log(address p0, uint256 p1, bool p2) internal pure {\n _sendLogPayload(abi.encodeWithSignature(\"log(address,uint256,bool)\", p0, p1, p2));\n }\n\n function log(address p0, uint256 p1, address p2) internal pure {\n _sendLogPayload(abi.encodeWithSignature(\"log(address,uint256,address)\", p0, p1, p2));\n }\n\n function log(address p0, string memory p1, uint256 p2) internal pure {\n _sendLogPayload(abi.encodeWithSignature(\"log(address,string,uint256)\", p0, p1, p2));\n }\n\n function log(address p0, string memory p1, string memory p2) internal pure {\n _sendLogPayload(abi.encodeWithSignature(\"log(address,string,string)\", p0, p1, p2));\n }\n\n function log(address p0, string memory p1, bool p2) internal pure {\n _sendLogPayload(abi.encodeWithSignature(\"log(address,string,bool)\", p0, p1, p2));\n }\n\n function log(address p0, string memory p1, address p2) internal pure {\n _sendLogPayload(abi.encodeWithSignature(\"log(address,string,address)\", p0, p1, p2));\n }\n\n function log(address p0, bool p1, uint256 p2) internal pure {\n _sendLogPayload(abi.encodeWithSignature(\"log(address,bool,uint256)\", p0, p1, p2));\n }\n\n function log(address p0, bool p1, string memory p2) internal pure {\n _sendLogPayload(abi.encodeWithSignature(\"log(address,bool,string)\", p0, p1, p2));\n }\n\n function log(address p0, bool p1, bool p2) internal pure {\n _sendLogPayload(abi.encodeWithSignature(\"log(address,bool,bool)\", p0, p1, p2));\n }\n\n function log(address p0, bool p1, address p2) internal pure {\n _sendLogPayload(abi.encodeWithSignature(\"log(address,bool,address)\", p0, p1, p2));\n }\n\n function log(address p0, address p1, uint256 p2) internal pure {\n _sendLogPayload(abi.encodeWithSignature(\"log(address,address,uint256)\", p0, p1, p2));\n }\n\n function log(address p0, address p1, string memory p2) internal pure {\n _sendLogPayload(abi.encodeWithSignature(\"log(address,address,string)\", p0, p1, p2));\n }\n\n function log(address p0, address p1, bool p2) internal pure {\n _sendLogPayload(abi.encodeWithSignature(\"log(address,address,bool)\", p0, p1, p2));\n }\n\n function log(address p0, address p1, address p2) internal pure {\n _sendLogPayload(abi.encodeWithSignature(\"log(address,address,address)\", p0, p1, p2));\n }\n\n function log(uint256 p0, uint256 p1, uint256 p2, uint256 p3) internal pure {\n _sendLogPayload(abi.encodeWithSignature(\"log(uint256,uint256,uint256,uint256)\", p0, p1, p2, p3));\n }\n\n function log(uint256 p0, uint256 p1, uint256 p2, string memory p3) internal pure {\n _sendLogPayload(abi.encodeWithSignature(\"log(uint256,uint256,uint256,string)\", p0, p1, p2, p3));\n }\n\n function log(uint256 p0, uint256 p1, uint256 p2, bool p3) internal pure {\n _sendLogPayload(abi.encodeWithSignature(\"log(uint256,uint256,uint256,bool)\", p0, p1, p2, p3));\n }\n\n function log(uint256 p0, uint256 p1, uint256 p2, address p3) internal pure {\n _sendLogPayload(abi.encodeWithSignature(\"log(uint256,uint256,uint256,address)\", p0, p1, p2, p3));\n }\n\n function log(uint256 p0, uint256 p1, string memory p2, uint256 p3) internal pure {\n _sendLogPayload(abi.encodeWithSignature(\"log(uint256,uint256,string,uint256)\", p0, p1, p2, p3));\n }\n\n function log(uint256 p0, uint256 p1, string memory p2, string memory p3) internal pure {\n _sendLogPayload(abi.encodeWithSignature(\"log(uint256,uint256,string,string)\", p0, p1, p2, p3));\n }\n\n function log(uint256 p0, uint256 p1, string memory p2, bool p3) internal pure {\n _sendLogPayload(abi.encodeWithSignature(\"log(uint256,uint256,string,bool)\", p0, p1, p2, p3));\n }\n\n function log(uint256 p0, uint256 p1, string memory p2, address p3) internal pure {\n _sendLogPayload(abi.encodeWithSignature(\"log(uint256,uint256,string,address)\", p0, p1, p2, p3));\n }\n\n function log(uint256 p0, uint256 p1, bool p2, uint256 p3) internal pure {\n _sendLogPayload(abi.encodeWithSignature(\"log(uint256,uint256,bool,uint256)\", p0, p1, p2, p3));\n }\n\n function log(uint256 p0, uint256 p1, bool p2, string memory p3) internal pure {\n _sendLogPayload(abi.encodeWithSignature(\"log(uint256,uint256,bool,string)\", p0, p1, p2, p3));\n }\n\n function log(uint256 p0, uint256 p1, bool p2, bool p3) internal pure {\n _sendLogPayload(abi.encodeWithSignature(\"log(uint256,uint256,bool,bool)\", p0, p1, p2, p3));\n }\n\n function log(uint256 p0, uint256 p1, bool p2, address p3) internal pure {\n _sendLogPayload(abi.encodeWithSignature(\"log(uint256,uint256,bool,address)\", p0, p1, p2, p3));\n }\n\n function log(uint256 p0, uint256 p1, address p2, uint256 p3) internal pure {\n _sendLogPayload(abi.encodeWithSignature(\"log(uint256,uint256,address,uint256)\", p0, p1, p2, p3));\n }\n\n function log(uint256 p0, uint256 p1, address p2, string memory p3) internal pure {\n _sendLogPayload(abi.encodeWithSignature(\"log(uint256,uint256,address,string)\", p0, p1, p2, p3));\n }\n\n function log(uint256 p0, uint256 p1, address p2, bool p3) internal pure {\n _sendLogPayload(abi.encodeWithSignature(\"log(uint256,uint256,address,bool)\", p0, p1, p2, p3));\n }\n\n function log(uint256 p0, uint256 p1, address p2, address p3) internal pure {\n _sendLogPayload(abi.encodeWithSignature(\"log(uint256,uint256,address,address)\", p0, p1, p2, p3));\n }\n\n function log(uint256 p0, string memory p1, uint256 p2, uint256 p3) internal pure {\n _sendLogPayload(abi.encodeWithSignature(\"log(uint256,string,uint256,uint256)\", p0, p1, p2, p3));\n }\n\n function log(uint256 p0, string memory p1, uint256 p2, string memory p3) internal pure {\n _sendLogPayload(abi.encodeWithSignature(\"log(uint256,string,uint256,string)\", p0, p1, p2, p3));\n }\n\n function log(uint256 p0, string memory p1, uint256 p2, bool p3) internal pure {\n _sendLogPayload(abi.encodeWithSignature(\"log(uint256,string,uint256,bool)\", p0, p1, p2, p3));\n }\n\n function log(uint256 p0, string memory p1, uint256 p2, address p3) internal pure {\n _sendLogPayload(abi.encodeWithSignature(\"log(uint256,string,uint256,address)\", p0, p1, p2, p3));\n }\n\n function log(uint256 p0, string memory p1, string memory p2, uint256 p3) internal pure {\n _sendLogPayload(abi.encodeWithSignature(\"log(uint256,string,string,uint256)\", p0, p1, p2, p3));\n }\n\n function log(uint256 p0, string memory p1, string memory p2, string memory p3) internal pure {\n _sendLogPayload(abi.encodeWithSignature(\"log(uint256,string,string,string)\", p0, p1, p2, p3));\n }\n\n function log(uint256 p0, string memory p1, string memory p2, bool p3) internal pure {\n _sendLogPayload(abi.encodeWithSignature(\"log(uint256,string,string,bool)\", p0, p1, p2, p3));\n }\n\n function log(uint256 p0, string memory p1, string memory p2, address p3) internal pure {\n _sendLogPayload(abi.encodeWithSignature(\"log(uint256,string,string,address)\", p0, p1, p2, p3));\n }\n\n function log(uint256 p0, string memory p1, bool p2, uint256 p3) internal pure {\n _sendLogPayload(abi.encodeWithSignature(\"log(uint256,string,bool,uint256)\", p0, p1, p2, p3));\n }\n\n function log(uint256 p0, string memory p1, bool p2, string memory p3) internal pure {\n _sendLogPayload(abi.encodeWithSignature(\"log(uint256,string,bool,string)\", p0, p1, p2, p3));\n }\n\n function log(uint256 p0, string memory p1, bool p2, bool p3) internal pure {\n _sendLogPayload(abi.encodeWithSignature(\"log(uint256,string,bool,bool)\", p0, p1, p2, p3));\n }\n\n function log(uint256 p0, string memory p1, bool p2, address p3) internal pure {\n _sendLogPayload(abi.encodeWithSignature(\"log(uint256,string,bool,address)\", p0, p1, p2, p3));\n }\n\n function log(uint256 p0, string memory p1, address p2, uint256 p3) internal pure {\n _sendLogPayload(abi.encodeWithSignature(\"log(uint256,string,address,uint256)\", p0, p1, p2, p3));\n }\n\n function log(uint256 p0, string memory p1, address p2, string memory p3) internal pure {\n _sendLogPayload(abi.encodeWithSignature(\"log(uint256,string,address,string)\", p0, p1, p2, p3));\n }\n\n function log(uint256 p0, string memory p1, address p2, bool p3) internal pure {\n _sendLogPayload(abi.encodeWithSignature(\"log(uint256,string,address,bool)\", p0, p1, p2, p3));\n }\n\n function log(uint256 p0, string memory p1, address p2, address p3) internal pure {\n _sendLogPayload(abi.encodeWithSignature(\"log(uint256,string,address,address)\", p0, p1, p2, p3));\n }\n\n function log(uint256 p0, bool p1, uint256 p2, uint256 p3) internal pure {\n _sendLogPayload(abi.encodeWithSignature(\"log(uint256,bool,uint256,uint256)\", p0, p1, p2, p3));\n }\n\n function log(uint256 p0, bool p1, uint256 p2, string memory p3) internal pure {\n _sendLogPayload(abi.encodeWithSignature(\"log(uint256,bool,uint256,string)\", p0, p1, p2, p3));\n }\n\n function log(uint256 p0, bool p1, uint256 p2, bool p3) internal pure {\n _sendLogPayload(abi.encodeWithSignature(\"log(uint256,bool,uint256,bool)\", p0, p1, p2, p3));\n }\n\n function log(uint256 p0, bool p1, uint256 p2, address p3) internal pure {\n _sendLogPayload(abi.encodeWithSignature(\"log(uint256,bool,uint256,address)\", p0, p1, p2, p3));\n }\n\n function log(uint256 p0, bool p1, string memory p2, uint256 p3) internal pure {\n _sendLogPayload(abi.encodeWithSignature(\"log(uint256,bool,string,uint256)\", p0, p1, p2, p3));\n }\n\n function log(uint256 p0, bool p1, string memory p2, string memory p3) internal pure {\n _sendLogPayload(abi.encodeWithSignature(\"log(uint256,bool,string,string)\", p0, p1, p2, p3));\n }\n\n function log(uint256 p0, bool p1, string memory p2, bool p3) internal pure {\n _sendLogPayload(abi.encodeWithSignature(\"log(uint256,bool,string,bool)\", p0, p1, p2, p3));\n }\n\n function log(uint256 p0, bool p1, string memory p2, address p3) internal pure {\n _sendLogPayload(abi.encodeWithSignature(\"log(uint256,bool,string,address)\", p0, p1, p2, p3));\n }\n\n function log(uint256 p0, bool p1, bool p2, uint256 p3) internal pure {\n _sendLogPayload(abi.encodeWithSignature(\"log(uint256,bool,bool,uint256)\", p0, p1, p2, p3));\n }\n\n function log(uint256 p0, bool p1, bool p2, string memory p3) internal pure {\n _sendLogPayload(abi.encodeWithSignature(\"log(uint256,bool,bool,string)\", p0, p1, p2, p3));\n }\n\n function log(uint256 p0, bool p1, bool p2, bool p3) internal pure {\n _sendLogPayload(abi.encodeWithSignature(\"log(uint256,bool,bool,bool)\", p0, p1, p2, p3));\n }\n\n function log(uint256 p0, bool p1, bool p2, address p3) internal pure {\n _sendLogPayload(abi.encodeWithSignature(\"log(uint256,bool,bool,address)\", p0, p1, p2, p3));\n }\n\n function log(uint256 p0, bool p1, address p2, uint256 p3) internal pure {\n _sendLogPayload(abi.encodeWithSignature(\"log(uint256,bool,address,uint256)\", p0, p1, p2, p3));\n }\n\n function log(uint256 p0, bool p1, address p2, string memory p3) internal pure {\n _sendLogPayload(abi.encodeWithSignature(\"log(uint256,bool,address,string)\", p0, p1, p2, p3));\n }\n\n function log(uint256 p0, bool p1, address p2, bool p3) internal pure {\n _sendLogPayload(abi.encodeWithSignature(\"log(uint256,bool,address,bool)\", p0, p1, p2, p3));\n }\n\n function log(uint256 p0, bool p1, address p2, address p3) internal pure {\n _sendLogPayload(abi.encodeWithSignature(\"log(uint256,bool,address,address)\", p0, p1, p2, p3));\n }\n\n function log(uint256 p0, address p1, uint256 p2, uint256 p3) internal pure {\n _sendLogPayload(abi.encodeWithSignature(\"log(uint256,address,uint256,uint256)\", p0, p1, p2, p3));\n }\n\n function log(uint256 p0, address p1, uint256 p2, string memory p3) internal pure {\n _sendLogPayload(abi.encodeWithSignature(\"log(uint256,address,uint256,string)\", p0, p1, p2, p3));\n }\n\n function log(uint256 p0, address p1, uint256 p2, bool p3) internal pure {\n _sendLogPayload(abi.encodeWithSignature(\"log(uint256,address,uint256,bool)\", p0, p1, p2, p3));\n }\n\n function log(uint256 p0, address p1, uint256 p2, address p3) internal pure {\n _sendLogPayload(abi.encodeWithSignature(\"log(uint256,address,uint256,address)\", p0, p1, p2, p3));\n }\n\n function log(uint256 p0, address p1, string memory p2, uint256 p3) internal pure {\n _sendLogPayload(abi.encodeWithSignature(\"log(uint256,address,string,uint256)\", p0, p1, p2, p3));\n }\n\n function log(uint256 p0, address p1, string memory p2, string memory p3) internal pure {\n _sendLogPayload(abi.encodeWithSignature(\"log(uint256,address,string,string)\", p0, p1, p2, p3));\n }\n\n function log(uint256 p0, address p1, string memory p2, bool p3) internal pure {\n _sendLogPayload(abi.encodeWithSignature(\"log(uint256,address,string,bool)\", p0, p1, p2, p3));\n }\n\n function log(uint256 p0, address p1, string memory p2, address p3) internal pure {\n _sendLogPayload(abi.encodeWithSignature(\"log(uint256,address,string,address)\", p0, p1, p2, p3));\n }\n\n function log(uint256 p0, address p1, bool p2, uint256 p3) internal pure {\n _sendLogPayload(abi.encodeWithSignature(\"log(uint256,address,bool,uint256)\", p0, p1, p2, p3));\n }\n\n function log(uint256 p0, address p1, bool p2, string memory p3) internal pure {\n _sendLogPayload(abi.encodeWithSignature(\"log(uint256,address,bool,string)\", p0, p1, p2, p3));\n }\n\n function log(uint256 p0, address p1, bool p2, bool p3) internal pure {\n _sendLogPayload(abi.encodeWithSignature(\"log(uint256,address,bool,bool)\", p0, p1, p2, p3));\n }\n\n function log(uint256 p0, address p1, bool p2, address p3) internal pure {\n _sendLogPayload(abi.encodeWithSignature(\"log(uint256,address,bool,address)\", p0, p1, p2, p3));\n }\n\n function log(uint256 p0, address p1, address p2, uint256 p3) internal pure {\n _sendLogPayload(abi.encodeWithSignature(\"log(uint256,address,address,uint256)\", p0, p1, p2, p3));\n }\n\n function log(uint256 p0, address p1, address p2, string memory p3) internal pure {\n _sendLogPayload(abi.encodeWithSignature(\"log(uint256,address,address,string)\", p0, p1, p2, p3));\n }\n\n function log(uint256 p0, address p1, address p2, bool p3) internal pure {\n _sendLogPayload(abi.encodeWithSignature(\"log(uint256,address,address,bool)\", p0, p1, p2, p3));\n }\n\n function log(uint256 p0, address p1, address p2, address p3) internal pure {\n _sendLogPayload(abi.encodeWithSignature(\"log(uint256,address,address,address)\", p0, p1, p2, p3));\n }\n\n function log(string memory p0, uint256 p1, uint256 p2, uint256 p3) internal pure {\n _sendLogPayload(abi.encodeWithSignature(\"log(string,uint256,uint256,uint256)\", p0, p1, p2, p3));\n }\n\n function log(string memory p0, uint256 p1, uint256 p2, string memory p3) internal pure {\n _sendLogPayload(abi.encodeWithSignature(\"log(string,uint256,uint256,string)\", p0, p1, p2, p3));\n }\n\n function log(string memory p0, uint256 p1, uint256 p2, bool p3) internal pure {\n _sendLogPayload(abi.encodeWithSignature(\"log(string,uint256,uint256,bool)\", p0, p1, p2, p3));\n }\n\n function log(string memory p0, uint256 p1, uint256 p2, address p3) internal pure {\n _sendLogPayload(abi.encodeWithSignature(\"log(string,uint256,uint256,address)\", p0, p1, p2, p3));\n }\n\n function log(string memory p0, uint256 p1, string memory p2, uint256 p3) internal pure {\n _sendLogPayload(abi.encodeWithSignature(\"log(string,uint256,string,uint256)\", p0, p1, p2, p3));\n }\n\n function log(string memory p0, uint256 p1, string memory p2, string memory p3) internal pure {\n _sendLogPayload(abi.encodeWithSignature(\"log(string,uint256,string,string)\", p0, p1, p2, p3));\n }\n\n function log(string memory p0, uint256 p1, string memory p2, bool p3) internal pure {\n _sendLogPayload(abi.encodeWithSignature(\"log(string,uint256,string,bool)\", p0, p1, p2, p3));\n }\n\n function log(string memory p0, uint256 p1, string memory p2, address p3) internal pure {\n _sendLogPayload(abi.encodeWithSignature(\"log(string,uint256,string,address)\", p0, p1, p2, p3));\n }\n\n function log(string memory p0, uint256 p1, bool p2, uint256 p3) internal pure {\n _sendLogPayload(abi.encodeWithSignature(\"log(string,uint256,bool,uint256)\", p0, p1, p2, p3));\n }\n\n function log(string memory p0, uint256 p1, bool p2, string memory p3) internal pure {\n _sendLogPayload(abi.encodeWithSignature(\"log(string,uint256,bool,string)\", p0, p1, p2, p3));\n }\n\n function log(string memory p0, uint256 p1, bool p2, bool p3) internal pure {\n _sendLogPayload(abi.encodeWithSignature(\"log(string,uint256,bool,bool)\", p0, p1, p2, p3));\n }\n\n function log(string memory p0, uint256 p1, bool p2, address p3) internal pure {\n _sendLogPayload(abi.encodeWithSignature(\"log(string,uint256,bool,address)\", p0, p1, p2, p3));\n }\n\n function log(string memory p0, uint256 p1, address p2, uint256 p3) internal pure {\n _sendLogPayload(abi.encodeWithSignature(\"log(string,uint256,address,uint256)\", p0, p1, p2, p3));\n }\n\n function log(string memory p0, uint256 p1, address p2, string memory p3) internal pure {\n _sendLogPayload(abi.encodeWithSignature(\"log(string,uint256,address,string)\", p0, p1, p2, p3));\n }\n\n function log(string memory p0, uint256 p1, address p2, bool p3) internal pure {\n _sendLogPayload(abi.encodeWithSignature(\"log(string,uint256,address,bool)\", p0, p1, p2, p3));\n }\n\n function log(string memory p0, uint256 p1, address p2, address p3) internal pure {\n _sendLogPayload(abi.encodeWithSignature(\"log(string,uint256,address,address)\", p0, p1, p2, p3));\n }\n\n function log(string memory p0, string memory p1, uint256 p2, uint256 p3) internal pure {\n _sendLogPayload(abi.encodeWithSignature(\"log(string,string,uint256,uint256)\", p0, p1, p2, p3));\n }\n\n function log(string memory p0, string memory p1, uint256 p2, string memory p3) internal pure {\n _sendLogPayload(abi.encodeWithSignature(\"log(string,string,uint256,string)\", p0, p1, p2, p3));\n }\n\n function log(string memory p0, string memory p1, uint256 p2, bool p3) internal pure {\n _sendLogPayload(abi.encodeWithSignature(\"log(string,string,uint256,bool)\", p0, p1, p2, p3));\n }\n\n function log(string memory p0, string memory p1, uint256 p2, address p3) internal pure {\n _sendLogPayload(abi.encodeWithSignature(\"log(string,string,uint256,address)\", p0, p1, p2, p3));\n }\n\n function log(string memory p0, string memory p1, string memory p2, uint256 p3) internal pure {\n _sendLogPayload(abi.encodeWithSignature(\"log(string,string,string,uint256)\", p0, p1, p2, p3));\n }\n\n function log(string memory p0, string memory p1, string memory p2, string memory p3) internal pure {\n _sendLogPayload(abi.encodeWithSignature(\"log(string,string,string,string)\", p0, p1, p2, p3));\n }\n\n function log(string memory p0, string memory p1, string memory p2, bool p3) internal pure {\n _sendLogPayload(abi.encodeWithSignature(\"log(string,string,string,bool)\", p0, p1, p2, p3));\n }\n\n function log(string memory p0, string memory p1, string memory p2, address p3) internal pure {\n _sendLogPayload(abi.encodeWithSignature(\"log(string,string,string,address)\", p0, p1, p2, p3));\n }\n\n function log(string memory p0, string memory p1, bool p2, uint256 p3) internal pure {\n _sendLogPayload(abi.encodeWithSignature(\"log(string,string,bool,uint256)\", p0, p1, p2, p3));\n }\n\n function log(string memory p0, string memory p1, bool p2, string memory p3) internal pure {\n _sendLogPayload(abi.encodeWithSignature(\"log(string,string,bool,string)\", p0, p1, p2, p3));\n }\n\n function log(string memory p0, string memory p1, bool p2, bool p3) internal pure {\n _sendLogPayload(abi.encodeWithSignature(\"log(string,string,bool,bool)\", p0, p1, p2, p3));\n }\n\n function log(string memory p0, string memory p1, bool p2, address p3) internal pure {\n _sendLogPayload(abi.encodeWithSignature(\"log(string,string,bool,address)\", p0, p1, p2, p3));\n }\n\n function log(string memory p0, string memory p1, address p2, uint256 p3) internal pure {\n _sendLogPayload(abi.encodeWithSignature(\"log(string,string,address,uint256)\", p0, p1, p2, p3));\n }\n\n function log(string memory p0, string memory p1, address p2, string memory p3) internal pure {\n _sendLogPayload(abi.encodeWithSignature(\"log(string,string,address,string)\", p0, p1, p2, p3));\n }\n\n function log(string memory p0, string memory p1, address p2, bool p3) internal pure {\n _sendLogPayload(abi.encodeWithSignature(\"log(string,string,address,bool)\", p0, p1, p2, p3));\n }\n\n function log(string memory p0, string memory p1, address p2, address p3) internal pure {\n _sendLogPayload(abi.encodeWithSignature(\"log(string,string,address,address)\", p0, p1, p2, p3));\n }\n\n function log(string memory p0, bool p1, uint256 p2, uint256 p3) internal pure {\n _sendLogPayload(abi.encodeWithSignature(\"log(string,bool,uint256,uint256)\", p0, p1, p2, p3));\n }\n\n function log(string memory p0, bool p1, uint256 p2, string memory p3) internal pure {\n _sendLogPayload(abi.encodeWithSignature(\"log(string,bool,uint256,string)\", p0, p1, p2, p3));\n }\n\n function log(string memory p0, bool p1, uint256 p2, bool p3) internal pure {\n _sendLogPayload(abi.encodeWithSignature(\"log(string,bool,uint256,bool)\", p0, p1, p2, p3));\n }\n\n function log(string memory p0, bool p1, uint256 p2, address p3) internal pure {\n _sendLogPayload(abi.encodeWithSignature(\"log(string,bool,uint256,address)\", p0, p1, p2, p3));\n }\n\n function log(string memory p0, bool p1, string memory p2, uint256 p3) internal pure {\n _sendLogPayload(abi.encodeWithSignature(\"log(string,bool,string,uint256)\", p0, p1, p2, p3));\n }\n\n function log(string memory p0, bool p1, string memory p2, string memory p3) internal pure {\n _sendLogPayload(abi.encodeWithSignature(\"log(string,bool,string,string)\", p0, p1, p2, p3));\n }\n\n function log(string memory p0, bool p1, string memory p2, bool p3) internal pure {\n _sendLogPayload(abi.encodeWithSignature(\"log(string,bool,string,bool)\", p0, p1, p2, p3));\n }\n\n function log(string memory p0, bool p1, string memory p2, address p3) internal pure {\n _sendLogPayload(abi.encodeWithSignature(\"log(string,bool,string,address)\", p0, p1, p2, p3));\n }\n\n function log(string memory p0, bool p1, bool p2, uint256 p3) internal pure {\n _sendLogPayload(abi.encodeWithSignature(\"log(string,bool,bool,uint256)\", p0, p1, p2, p3));\n }\n\n function log(string memory p0, bool p1, bool p2, string memory p3) internal pure {\n _sendLogPayload(abi.encodeWithSignature(\"log(string,bool,bool,string)\", p0, p1, p2, p3));\n }\n\n function log(string memory p0, bool p1, bool p2, bool p3) internal pure {\n _sendLogPayload(abi.encodeWithSignature(\"log(string,bool,bool,bool)\", p0, p1, p2, p3));\n }\n\n function log(string memory p0, bool p1, bool p2, address p3) internal pure {\n _sendLogPayload(abi.encodeWithSignature(\"log(string,bool,bool,address)\", p0, p1, p2, p3));\n }\n\n function log(string memory p0, bool p1, address p2, uint256 p3) internal pure {\n _sendLogPayload(abi.encodeWithSignature(\"log(string,bool,address,uint256)\", p0, p1, p2, p3));\n }\n\n function log(string memory p0, bool p1, address p2, string memory p3) internal pure {\n _sendLogPayload(abi.encodeWithSignature(\"log(string,bool,address,string)\", p0, p1, p2, p3));\n }\n\n function log(string memory p0, bool p1, address p2, bool p3) internal pure {\n _sendLogPayload(abi.encodeWithSignature(\"log(string,bool,address,bool)\", p0, p1, p2, p3));\n }\n\n function log(string memory p0, bool p1, address p2, address p3) internal pure {\n _sendLogPayload(abi.encodeWithSignature(\"log(string,bool,address,address)\", p0, p1, p2, p3));\n }\n\n function log(string memory p0, address p1, uint256 p2, uint256 p3) internal pure {\n _sendLogPayload(abi.encodeWithSignature(\"log(string,address,uint256,uint256)\", p0, p1, p2, p3));\n }\n\n function log(string memory p0, address p1, uint256 p2, string memory p3) internal pure {\n _sendLogPayload(abi.encodeWithSignature(\"log(string,address,uint256,string)\", p0, p1, p2, p3));\n }\n\n function log(string memory p0, address p1, uint256 p2, bool p3) internal pure {\n _sendLogPayload(abi.encodeWithSignature(\"log(string,address,uint256,bool)\", p0, p1, p2, p3));\n }\n\n function log(string memory p0, address p1, uint256 p2, address p3) internal pure {\n _sendLogPayload(abi.encodeWithSignature(\"log(string,address,uint256,address)\", p0, p1, p2, p3));\n }\n\n function log(string memory p0, address p1, string memory p2, uint256 p3) internal pure {\n _sendLogPayload(abi.encodeWithSignature(\"log(string,address,string,uint256)\", p0, p1, p2, p3));\n }\n\n function log(string memory p0, address p1, string memory p2, string memory p3) internal pure {\n _sendLogPayload(abi.encodeWithSignature(\"log(string,address,string,string)\", p0, p1, p2, p3));\n }\n\n function log(string memory p0, address p1, string memory p2, bool p3) internal pure {\n _sendLogPayload(abi.encodeWithSignature(\"log(string,address,string,bool)\", p0, p1, p2, p3));\n }\n\n function log(string memory p0, address p1, string memory p2, address p3) internal pure {\n _sendLogPayload(abi.encodeWithSignature(\"log(string,address,string,address)\", p0, p1, p2, p3));\n }\n\n function log(string memory p0, address p1, bool p2, uint256 p3) internal pure {\n _sendLogPayload(abi.encodeWithSignature(\"log(string,address,bool,uint256)\", p0, p1, p2, p3));\n }\n\n function log(string memory p0, address p1, bool p2, string memory p3) internal pure {\n _sendLogPayload(abi.encodeWithSignature(\"log(string,address,bool,string)\", p0, p1, p2, p3));\n }\n\n function log(string memory p0, address p1, bool p2, bool p3) internal pure {\n _sendLogPayload(abi.encodeWithSignature(\"log(string,address,bool,bool)\", p0, p1, p2, p3));\n }\n\n function log(string memory p0, address p1, bool p2, address p3) internal pure {\n _sendLogPayload(abi.encodeWithSignature(\"log(string,address,bool,address)\", p0, p1, p2, p3));\n }\n\n function log(string memory p0, address p1, address p2, uint256 p3) internal pure {\n _sendLogPayload(abi.encodeWithSignature(\"log(string,address,address,uint256)\", p0, p1, p2, p3));\n }\n\n function log(string memory p0, address p1, address p2, string memory p3) internal pure {\n _sendLogPayload(abi.encodeWithSignature(\"log(string,address,address,string)\", p0, p1, p2, p3));\n }\n\n function log(string memory p0, address p1, address p2, bool p3) internal pure {\n _sendLogPayload(abi.encodeWithSignature(\"log(string,address,address,bool)\", p0, p1, p2, p3));\n }\n\n function log(string memory p0, address p1, address p2, address p3) internal pure {\n _sendLogPayload(abi.encodeWithSignature(\"log(string,address,address,address)\", p0, p1, p2, p3));\n }\n\n function log(bool p0, uint256 p1, uint256 p2, uint256 p3) internal pure {\n _sendLogPayload(abi.encodeWithSignature(\"log(bool,uint256,uint256,uint256)\", p0, p1, p2, p3));\n }\n\n function log(bool p0, uint256 p1, uint256 p2, string memory p3) internal pure {\n _sendLogPayload(abi.encodeWithSignature(\"log(bool,uint256,uint256,string)\", p0, p1, p2, p3));\n }\n\n function log(bool p0, uint256 p1, uint256 p2, bool p3) internal pure {\n _sendLogPayload(abi.encodeWithSignature(\"log(bool,uint256,uint256,bool)\", p0, p1, p2, p3));\n }\n\n function log(bool p0, uint256 p1, uint256 p2, address p3) internal pure {\n _sendLogPayload(abi.encodeWithSignature(\"log(bool,uint256,uint256,address)\", p0, p1, p2, p3));\n }\n\n function log(bool p0, uint256 p1, string memory p2, uint256 p3) internal pure {\n _sendLogPayload(abi.encodeWithSignature(\"log(bool,uint256,string,uint256)\", p0, p1, p2, p3));\n }\n\n function log(bool p0, uint256 p1, string memory p2, string memory p3) internal pure {\n _sendLogPayload(abi.encodeWithSignature(\"log(bool,uint256,string,string)\", p0, p1, p2, p3));\n }\n\n function log(bool p0, uint256 p1, string memory p2, bool p3) internal pure {\n _sendLogPayload(abi.encodeWithSignature(\"log(bool,uint256,string,bool)\", p0, p1, p2, p3));\n }\n\n function log(bool p0, uint256 p1, string memory p2, address p3) internal pure {\n _sendLogPayload(abi.encodeWithSignature(\"log(bool,uint256,string,address)\", p0, p1, p2, p3));\n }\n\n function log(bool p0, uint256 p1, bool p2, uint256 p3) internal pure {\n _sendLogPayload(abi.encodeWithSignature(\"log(bool,uint256,bool,uint256)\", p0, p1, p2, p3));\n }\n\n function log(bool p0, uint256 p1, bool p2, string memory p3) internal pure {\n _sendLogPayload(abi.encodeWithSignature(\"log(bool,uint256,bool,string)\", p0, p1, p2, p3));\n }\n\n function log(bool p0, uint256 p1, bool p2, bool p3) internal pure {\n _sendLogPayload(abi.encodeWithSignature(\"log(bool,uint256,bool,bool)\", p0, p1, p2, p3));\n }\n\n function log(bool p0, uint256 p1, bool p2, address p3) internal pure {\n _sendLogPayload(abi.encodeWithSignature(\"log(bool,uint256,bool,address)\", p0, p1, p2, p3));\n }\n\n function log(bool p0, uint256 p1, address p2, uint256 p3) internal pure {\n _sendLogPayload(abi.encodeWithSignature(\"log(bool,uint256,address,uint256)\", p0, p1, p2, p3));\n }\n\n function log(bool p0, uint256 p1, address p2, string memory p3) internal pure {\n _sendLogPayload(abi.encodeWithSignature(\"log(bool,uint256,address,string)\", p0, p1, p2, p3));\n }\n\n function log(bool p0, uint256 p1, address p2, bool p3) internal pure {\n _sendLogPayload(abi.encodeWithSignature(\"log(bool,uint256,address,bool)\", p0, p1, p2, p3));\n }\n\n function log(bool p0, uint256 p1, address p2, address p3) internal pure {\n _sendLogPayload(abi.encodeWithSignature(\"log(bool,uint256,address,address)\", p0, p1, p2, p3));\n }\n\n function log(bool p0, string memory p1, uint256 p2, uint256 p3) internal pure {\n _sendLogPayload(abi.encodeWithSignature(\"log(bool,string,uint256,uint256)\", p0, p1, p2, p3));\n }\n\n function log(bool p0, string memory p1, uint256 p2, string memory p3) internal pure {\n _sendLogPayload(abi.encodeWithSignature(\"log(bool,string,uint256,string)\", p0, p1, p2, p3));\n }\n\n function log(bool p0, string memory p1, uint256 p2, bool p3) internal pure {\n _sendLogPayload(abi.encodeWithSignature(\"log(bool,string,uint256,bool)\", p0, p1, p2, p3));\n }\n\n function log(bool p0, string memory p1, uint256 p2, address p3) internal pure {\n _sendLogPayload(abi.encodeWithSignature(\"log(bool,string,uint256,address)\", p0, p1, p2, p3));\n }\n\n function log(bool p0, string memory p1, string memory p2, uint256 p3) internal pure {\n _sendLogPayload(abi.encodeWithSignature(\"log(bool,string,string,uint256)\", p0, p1, p2, p3));\n }\n\n function log(bool p0, string memory p1, string memory p2, string memory p3) internal pure {\n _sendLogPayload(abi.encodeWithSignature(\"log(bool,string,string,string)\", p0, p1, p2, p3));\n }\n\n function log(bool p0, string memory p1, string memory p2, bool p3) internal pure {\n _sendLogPayload(abi.encodeWithSignature(\"log(bool,string,string,bool)\", p0, p1, p2, p3));\n }\n\n function log(bool p0, string memory p1, string memory p2, address p3) internal pure {\n _sendLogPayload(abi.encodeWithSignature(\"log(bool,string,string,address)\", p0, p1, p2, p3));\n }\n\n function log(bool p0, string memory p1, bool p2, uint256 p3) internal pure {\n _sendLogPayload(abi.encodeWithSignature(\"log(bool,string,bool,uint256)\", p0, p1, p2, p3));\n }\n\n function log(bool p0, string memory p1, bool p2, string memory p3) internal pure {\n _sendLogPayload(abi.encodeWithSignature(\"log(bool,string,bool,string)\", p0, p1, p2, p3));\n }\n\n function log(bool p0, string memory p1, bool p2, bool p3) internal pure {\n _sendLogPayload(abi.encodeWithSignature(\"log(bool,string,bool,bool)\", p0, p1, p2, p3));\n }\n\n function log(bool p0, string memory p1, bool p2, address p3) internal pure {\n _sendLogPayload(abi.encodeWithSignature(\"log(bool,string,bool,address)\", p0, p1, p2, p3));\n }\n\n function log(bool p0, string memory p1, address p2, uint256 p3) internal pure {\n _sendLogPayload(abi.encodeWithSignature(\"log(bool,string,address,uint256)\", p0, p1, p2, p3));\n }\n\n function log(bool p0, string memory p1, address p2, string memory p3) internal pure {\n _sendLogPayload(abi.encodeWithSignature(\"log(bool,string,address,string)\", p0, p1, p2, p3));\n }\n\n function log(bool p0, string memory p1, address p2, bool p3) internal pure {\n _sendLogPayload(abi.encodeWithSignature(\"log(bool,string,address,bool)\", p0, p1, p2, p3));\n }\n\n function log(bool p0, string memory p1, address p2, address p3) internal pure {\n _sendLogPayload(abi.encodeWithSignature(\"log(bool,string,address,address)\", p0, p1, p2, p3));\n }\n\n function log(bool p0, bool p1, uint256 p2, uint256 p3) internal pure {\n _sendLogPayload(abi.encodeWithSignature(\"log(bool,bool,uint256,uint256)\", p0, p1, p2, p3));\n }\n\n function log(bool p0, bool p1, uint256 p2, string memory p3) internal pure {\n _sendLogPayload(abi.encodeWithSignature(\"log(bool,bool,uint256,string)\", p0, p1, p2, p3));\n }\n\n function log(bool p0, bool p1, uint256 p2, bool p3) internal pure {\n _sendLogPayload(abi.encodeWithSignature(\"log(bool,bool,uint256,bool)\", p0, p1, p2, p3));\n }\n\n function log(bool p0, bool p1, uint256 p2, address p3) internal pure {\n _sendLogPayload(abi.encodeWithSignature(\"log(bool,bool,uint256,address)\", p0, p1, p2, p3));\n }\n\n function log(bool p0, bool p1, string memory p2, uint256 p3) internal pure {\n _sendLogPayload(abi.encodeWithSignature(\"log(bool,bool,string,uint256)\", p0, p1, p2, p3));\n }\n\n function log(bool p0, bool p1, string memory p2, string memory p3) internal pure {\n _sendLogPayload(abi.encodeWithSignature(\"log(bool,bool,string,string)\", p0, p1, p2, p3));\n }\n\n function log(bool p0, bool p1, string memory p2, bool p3) internal pure {\n _sendLogPayload(abi.encodeWithSignature(\"log(bool,bool,string,bool)\", p0, p1, p2, p3));\n }\n\n function log(bool p0, bool p1, string memory p2, address p3) internal pure {\n _sendLogPayload(abi.encodeWithSignature(\"log(bool,bool,string,address)\", p0, p1, p2, p3));\n }\n\n function log(bool p0, bool p1, bool p2, uint256 p3) internal pure {\n _sendLogPayload(abi.encodeWithSignature(\"log(bool,bool,bool,uint256)\", p0, p1, p2, p3));\n }\n\n function log(bool p0, bool p1, bool p2, string memory p3) internal pure {\n _sendLogPayload(abi.encodeWithSignature(\"log(bool,bool,bool,string)\", p0, p1, p2, p3));\n }\n\n function log(bool p0, bool p1, bool p2, bool p3) internal pure {\n _sendLogPayload(abi.encodeWithSignature(\"log(bool,bool,bool,bool)\", p0, p1, p2, p3));\n }\n\n function log(bool p0, bool p1, bool p2, address p3) internal pure {\n _sendLogPayload(abi.encodeWithSignature(\"log(bool,bool,bool,address)\", p0, p1, p2, p3));\n }\n\n function log(bool p0, bool p1, address p2, uint256 p3) internal pure {\n _sendLogPayload(abi.encodeWithSignature(\"log(bool,bool,address,uint256)\", p0, p1, p2, p3));\n }\n\n function log(bool p0, bool p1, address p2, string memory p3) internal pure {\n _sendLogPayload(abi.encodeWithSignature(\"log(bool,bool,address,string)\", p0, p1, p2, p3));\n }\n\n function log(bool p0, bool p1, address p2, bool p3) internal pure {\n _sendLogPayload(abi.encodeWithSignature(\"log(bool,bool,address,bool)\", p0, p1, p2, p3));\n }\n\n function log(bool p0, bool p1, address p2, address p3) internal pure {\n _sendLogPayload(abi.encodeWithSignature(\"log(bool,bool,address,address)\", p0, p1, p2, p3));\n }\n\n function log(bool p0, address p1, uint256 p2, uint256 p3) internal pure {\n _sendLogPayload(abi.encodeWithSignature(\"log(bool,address,uint256,uint256)\", p0, p1, p2, p3));\n }\n\n function log(bool p0, address p1, uint256 p2, string memory p3) internal pure {\n _sendLogPayload(abi.encodeWithSignature(\"log(bool,address,uint256,string)\", p0, p1, p2, p3));\n }\n\n function log(bool p0, address p1, uint256 p2, bool p3) internal pure {\n _sendLogPayload(abi.encodeWithSignature(\"log(bool,address,uint256,bool)\", p0, p1, p2, p3));\n }\n\n function log(bool p0, address p1, uint256 p2, address p3) internal pure {\n _sendLogPayload(abi.encodeWithSignature(\"log(bool,address,uint256,address)\", p0, p1, p2, p3));\n }\n\n function log(bool p0, address p1, string memory p2, uint256 p3) internal pure {\n _sendLogPayload(abi.encodeWithSignature(\"log(bool,address,string,uint256)\", p0, p1, p2, p3));\n }\n\n function log(bool p0, address p1, string memory p2, string memory p3) internal pure {\n _sendLogPayload(abi.encodeWithSignature(\"log(bool,address,string,string)\", p0, p1, p2, p3));\n }\n\n function log(bool p0, address p1, string memory p2, bool p3) internal pure {\n _sendLogPayload(abi.encodeWithSignature(\"log(bool,address,string,bool)\", p0, p1, p2, p3));\n }\n\n function log(bool p0, address p1, string memory p2, address p3) internal pure {\n _sendLogPayload(abi.encodeWithSignature(\"log(bool,address,string,address)\", p0, p1, p2, p3));\n }\n\n function log(bool p0, address p1, bool p2, uint256 p3) internal pure {\n _sendLogPayload(abi.encodeWithSignature(\"log(bool,address,bool,uint256)\", p0, p1, p2, p3));\n }\n\n function log(bool p0, address p1, bool p2, string memory p3) internal pure {\n _sendLogPayload(abi.encodeWithSignature(\"log(bool,address,bool,string)\", p0, p1, p2, p3));\n }\n\n function log(bool p0, address p1, bool p2, bool p3) internal pure {\n _sendLogPayload(abi.encodeWithSignature(\"log(bool,address,bool,bool)\", p0, p1, p2, p3));\n }\n\n function log(bool p0, address p1, bool p2, address p3) internal pure {\n _sendLogPayload(abi.encodeWithSignature(\"log(bool,address,bool,address)\", p0, p1, p2, p3));\n }\n\n function log(bool p0, address p1, address p2, uint256 p3) internal pure {\n _sendLogPayload(abi.encodeWithSignature(\"log(bool,address,address,uint256)\", p0, p1, p2, p3));\n }\n\n function log(bool p0, address p1, address p2, string memory p3) internal pure {\n _sendLogPayload(abi.encodeWithSignature(\"log(bool,address,address,string)\", p0, p1, p2, p3));\n }\n\n function log(bool p0, address p1, address p2, bool p3) internal pure {\n _sendLogPayload(abi.encodeWithSignature(\"log(bool,address,address,bool)\", p0, p1, p2, p3));\n }\n\n function log(bool p0, address p1, address p2, address p3) internal pure {\n _sendLogPayload(abi.encodeWithSignature(\"log(bool,address,address,address)\", p0, p1, p2, p3));\n }\n\n function log(address p0, uint256 p1, uint256 p2, uint256 p3) internal pure {\n _sendLogPayload(abi.encodeWithSignature(\"log(address,uint256,uint256,uint256)\", p0, p1, p2, p3));\n }\n\n function log(address p0, uint256 p1, uint256 p2, string memory p3) internal pure {\n _sendLogPayload(abi.encodeWithSignature(\"log(address,uint256,uint256,string)\", p0, p1, p2, p3));\n }\n\n function log(address p0, uint256 p1, uint256 p2, bool p3) internal pure {\n _sendLogPayload(abi.encodeWithSignature(\"log(address,uint256,uint256,bool)\", p0, p1, p2, p3));\n }\n\n function log(address p0, uint256 p1, uint256 p2, address p3) internal pure {\n _sendLogPayload(abi.encodeWithSignature(\"log(address,uint256,uint256,address)\", p0, p1, p2, p3));\n }\n\n function log(address p0, uint256 p1, string memory p2, uint256 p3) internal pure {\n _sendLogPayload(abi.encodeWithSignature(\"log(address,uint256,string,uint256)\", p0, p1, p2, p3));\n }\n\n function log(address p0, uint256 p1, string memory p2, string memory p3) internal pure {\n _sendLogPayload(abi.encodeWithSignature(\"log(address,uint256,string,string)\", p0, p1, p2, p3));\n }\n\n function log(address p0, uint256 p1, string memory p2, bool p3) internal pure {\n _sendLogPayload(abi.encodeWithSignature(\"log(address,uint256,string,bool)\", p0, p1, p2, p3));\n }\n\n function log(address p0, uint256 p1, string memory p2, address p3) internal pure {\n _sendLogPayload(abi.encodeWithSignature(\"log(address,uint256,string,address)\", p0, p1, p2, p3));\n }\n\n function log(address p0, uint256 p1, bool p2, uint256 p3) internal pure {\n _sendLogPayload(abi.encodeWithSignature(\"log(address,uint256,bool,uint256)\", p0, p1, p2, p3));\n }\n\n function log(address p0, uint256 p1, bool p2, string memory p3) internal pure {\n _sendLogPayload(abi.encodeWithSignature(\"log(address,uint256,bool,string)\", p0, p1, p2, p3));\n }\n\n function log(address p0, uint256 p1, bool p2, bool p3) internal pure {\n _sendLogPayload(abi.encodeWithSignature(\"log(address,uint256,bool,bool)\", p0, p1, p2, p3));\n }\n\n function log(address p0, uint256 p1, bool p2, address p3) internal pure {\n _sendLogPayload(abi.encodeWithSignature(\"log(address,uint256,bool,address)\", p0, p1, p2, p3));\n }\n\n function log(address p0, uint256 p1, address p2, uint256 p3) internal pure {\n _sendLogPayload(abi.encodeWithSignature(\"log(address,uint256,address,uint256)\", p0, p1, p2, p3));\n }\n\n function log(address p0, uint256 p1, address p2, string memory p3) internal pure {\n _sendLogPayload(abi.encodeWithSignature(\"log(address,uint256,address,string)\", p0, p1, p2, p3));\n }\n\n function log(address p0, uint256 p1, address p2, bool p3) internal pure {\n _sendLogPayload(abi.encodeWithSignature(\"log(address,uint256,address,bool)\", p0, p1, p2, p3));\n }\n\n function log(address p0, uint256 p1, address p2, address p3) internal pure {\n _sendLogPayload(abi.encodeWithSignature(\"log(address,uint256,address,address)\", p0, p1, p2, p3));\n }\n\n function log(address p0, string memory p1, uint256 p2, uint256 p3) internal pure {\n _sendLogPayload(abi.encodeWithSignature(\"log(address,string,uint256,uint256)\", p0, p1, p2, p3));\n }\n\n function log(address p0, string memory p1, uint256 p2, string memory p3) internal pure {\n _sendLogPayload(abi.encodeWithSignature(\"log(address,string,uint256,string)\", p0, p1, p2, p3));\n }\n\n function log(address p0, string memory p1, uint256 p2, bool p3) internal pure {\n _sendLogPayload(abi.encodeWithSignature(\"log(address,string,uint256,bool)\", p0, p1, p2, p3));\n }\n\n function log(address p0, string memory p1, uint256 p2, address p3) internal pure {\n _sendLogPayload(abi.encodeWithSignature(\"log(address,string,uint256,address)\", p0, p1, p2, p3));\n }\n\n function log(address p0, string memory p1, string memory p2, uint256 p3) internal pure {\n _sendLogPayload(abi.encodeWithSignature(\"log(address,string,string,uint256)\", p0, p1, p2, p3));\n }\n\n function log(address p0, string memory p1, string memory p2, string memory p3) internal pure {\n _sendLogPayload(abi.encodeWithSignature(\"log(address,string,string,string)\", p0, p1, p2, p3));\n }\n\n function log(address p0, string memory p1, string memory p2, bool p3) internal pure {\n _sendLogPayload(abi.encodeWithSignature(\"log(address,string,string,bool)\", p0, p1, p2, p3));\n }\n\n function log(address p0, string memory p1, string memory p2, address p3) internal pure {\n _sendLogPayload(abi.encodeWithSignature(\"log(address,string,string,address)\", p0, p1, p2, p3));\n }\n\n function log(address p0, string memory p1, bool p2, uint256 p3) internal pure {\n _sendLogPayload(abi.encodeWithSignature(\"log(address,string,bool,uint256)\", p0, p1, p2, p3));\n }\n\n function log(address p0, string memory p1, bool p2, string memory p3) internal pure {\n _sendLogPayload(abi.encodeWithSignature(\"log(address,string,bool,string)\", p0, p1, p2, p3));\n }\n\n function log(address p0, string memory p1, bool p2, bool p3) internal pure {\n _sendLogPayload(abi.encodeWithSignature(\"log(address,string,bool,bool)\", p0, p1, p2, p3));\n }\n\n function log(address p0, string memory p1, bool p2, address p3) internal pure {\n _sendLogPayload(abi.encodeWithSignature(\"log(address,string,bool,address)\", p0, p1, p2, p3));\n }\n\n function log(address p0, string memory p1, address p2, uint256 p3) internal pure {\n _sendLogPayload(abi.encodeWithSignature(\"log(address,string,address,uint256)\", p0, p1, p2, p3));\n }\n\n function log(address p0, string memory p1, address p2, string memory p3) internal pure {\n _sendLogPayload(abi.encodeWithSignature(\"log(address,string,address,string)\", p0, p1, p2, p3));\n }\n\n function log(address p0, string memory p1, address p2, bool p3) internal pure {\n _sendLogPayload(abi.encodeWithSignature(\"log(address,string,address,bool)\", p0, p1, p2, p3));\n }\n\n function log(address p0, string memory p1, address p2, address p3) internal pure {\n _sendLogPayload(abi.encodeWithSignature(\"log(address,string,address,address)\", p0, p1, p2, p3));\n }\n\n function log(address p0, bool p1, uint256 p2, uint256 p3) internal pure {\n _sendLogPayload(abi.encodeWithSignature(\"log(address,bool,uint256,uint256)\", p0, p1, p2, p3));\n }\n\n function log(address p0, bool p1, uint256 p2, string memory p3) internal pure {\n _sendLogPayload(abi.encodeWithSignature(\"log(address,bool,uint256,string)\", p0, p1, p2, p3));\n }\n\n function log(address p0, bool p1, uint256 p2, bool p3) internal pure {\n _sendLogPayload(abi.encodeWithSignature(\"log(address,bool,uint256,bool)\", p0, p1, p2, p3));\n }\n\n function log(address p0, bool p1, uint256 p2, address p3) internal pure {\n _sendLogPayload(abi.encodeWithSignature(\"log(address,bool,uint256,address)\", p0, p1, p2, p3));\n }\n\n function log(address p0, bool p1, string memory p2, uint256 p3) internal pure {\n _sendLogPayload(abi.encodeWithSignature(\"log(address,bool,string,uint256)\", p0, p1, p2, p3));\n }\n\n function log(address p0, bool p1, string memory p2, string memory p3) internal pure {\n _sendLogPayload(abi.encodeWithSignature(\"log(address,bool,string,string)\", p0, p1, p2, p3));\n }\n\n function log(address p0, bool p1, string memory p2, bool p3) internal pure {\n _sendLogPayload(abi.encodeWithSignature(\"log(address,bool,string,bool)\", p0, p1, p2, p3));\n }\n\n function log(address p0, bool p1, string memory p2, address p3) internal pure {\n _sendLogPayload(abi.encodeWithSignature(\"log(address,bool,string,address)\", p0, p1, p2, p3));\n }\n\n function log(address p0, bool p1, bool p2, uint256 p3) internal pure {\n _sendLogPayload(abi.encodeWithSignature(\"log(address,bool,bool,uint256)\", p0, p1, p2, p3));\n }\n\n function log(address p0, bool p1, bool p2, string memory p3) internal pure {\n _sendLogPayload(abi.encodeWithSignature(\"log(address,bool,bool,string)\", p0, p1, p2, p3));\n }\n\n function log(address p0, bool p1, bool p2, bool p3) internal pure {\n _sendLogPayload(abi.encodeWithSignature(\"log(address,bool,bool,bool)\", p0, p1, p2, p3));\n }\n\n function log(address p0, bool p1, bool p2, address p3) internal pure {\n _sendLogPayload(abi.encodeWithSignature(\"log(address,bool,bool,address)\", p0, p1, p2, p3));\n }\n\n function log(address p0, bool p1, address p2, uint256 p3) internal pure {\n _sendLogPayload(abi.encodeWithSignature(\"log(address,bool,address,uint256)\", p0, p1, p2, p3));\n }\n\n function log(address p0, bool p1, address p2, string memory p3) internal pure {\n _sendLogPayload(abi.encodeWithSignature(\"log(address,bool,address,string)\", p0, p1, p2, p3));\n }\n\n function log(address p0, bool p1, address p2, bool p3) internal pure {\n _sendLogPayload(abi.encodeWithSignature(\"log(address,bool,address,bool)\", p0, p1, p2, p3));\n }\n\n function log(address p0, bool p1, address p2, address p3) internal pure {\n _sendLogPayload(abi.encodeWithSignature(\"log(address,bool,address,address)\", p0, p1, p2, p3));\n }\n\n function log(address p0, address p1, uint256 p2, uint256 p3) internal pure {\n _sendLogPayload(abi.encodeWithSignature(\"log(address,address,uint256,uint256)\", p0, p1, p2, p3));\n }\n\n function log(address p0, address p1, uint256 p2, string memory p3) internal pure {\n _sendLogPayload(abi.encodeWithSignature(\"log(address,address,uint256,string)\", p0, p1, p2, p3));\n }\n\n function log(address p0, address p1, uint256 p2, bool p3) internal pure {\n _sendLogPayload(abi.encodeWithSignature(\"log(address,address,uint256,bool)\", p0, p1, p2, p3));\n }\n\n function log(address p0, address p1, uint256 p2, address p3) internal pure {\n _sendLogPayload(abi.encodeWithSignature(\"log(address,address,uint256,address)\", p0, p1, p2, p3));\n }\n\n function log(address p0, address p1, string memory p2, uint256 p3) internal pure {\n _sendLogPayload(abi.encodeWithSignature(\"log(address,address,string,uint256)\", p0, p1, p2, p3));\n }\n\n function log(address p0, address p1, string memory p2, string memory p3) internal pure {\n _sendLogPayload(abi.encodeWithSignature(\"log(address,address,string,string)\", p0, p1, p2, p3));\n }\n\n function log(address p0, address p1, string memory p2, bool p3) internal pure {\n _sendLogPayload(abi.encodeWithSignature(\"log(address,address,string,bool)\", p0, p1, p2, p3));\n }\n\n function log(address p0, address p1, string memory p2, address p3) internal pure {\n _sendLogPayload(abi.encodeWithSignature(\"log(address,address,string,address)\", p0, p1, p2, p3));\n }\n\n function log(address p0, address p1, bool p2, uint256 p3) internal pure {\n _sendLogPayload(abi.encodeWithSignature(\"log(address,address,bool,uint256)\", p0, p1, p2, p3));\n }\n\n function log(address p0, address p1, bool p2, string memory p3) internal pure {\n _sendLogPayload(abi.encodeWithSignature(\"log(address,address,bool,string)\", p0, p1, p2, p3));\n }\n\n function log(address p0, address p1, bool p2, bool p3) internal pure {\n _sendLogPayload(abi.encodeWithSignature(\"log(address,address,bool,bool)\", p0, p1, p2, p3));\n }\n\n function log(address p0, address p1, bool p2, address p3) internal pure {\n _sendLogPayload(abi.encodeWithSignature(\"log(address,address,bool,address)\", p0, p1, p2, p3));\n }\n\n function log(address p0, address p1, address p2, uint256 p3) internal pure {\n _sendLogPayload(abi.encodeWithSignature(\"log(address,address,address,uint256)\", p0, p1, p2, p3));\n }\n\n function log(address p0, address p1, address p2, string memory p3) internal pure {\n _sendLogPayload(abi.encodeWithSignature(\"log(address,address,address,string)\", p0, p1, p2, p3));\n }\n\n function log(address p0, address p1, address p2, bool p3) internal pure {\n _sendLogPayload(abi.encodeWithSignature(\"log(address,address,address,bool)\", p0, p1, p2, p3));\n }\n\n function log(address p0, address p1, address p2, address p3) internal pure {\n _sendLogPayload(abi.encodeWithSignature(\"log(address,address,address,address)\", p0, p1, p2, p3));\n }\n\n}\n" + } + }, + "settings": { + "optimizer": { + "enabled": true, + "runs": 100 + }, + "outputSelection": { + "*": { + "*": [ + "storageLayout", + "abi", + "evm.bytecode", + "evm.deployedBytecode", + "evm.methodIdentifiers", + "metadata", + "devdoc", + "userdoc", + "evm.gasEstimates", + "devdoc", + "userdoc" + ], + "": [ + "ast" + ] + } + }, + "metadata": { + "useLiteralContent": true + } + } +} \ No newline at end of file diff --git a/hardhat.config.ts b/hardhat.config.ts index 87ddb60..d7d8fec 100644 --- a/hardhat.config.ts +++ b/hardhat.config.ts @@ -70,7 +70,10 @@ const testnetPKs = [ const testnetAccounts = testnetPKs.length > 0 ? testnetPKs : mnemonic; const mainnetAccounts = process.env.MAINNET_DEPLOYER_PRIVATE_KEY - ? [process.env.MAINNET_DEPLOYER_PRIVATE_KEY] + ? [ + process.env.MAINNET_DEPLOYER_PRIVATE_KEY, + ...(process.env.DEPLOYER ? [process.env.DEPLOYER] : []), + ] : mnemonic; task( @@ -158,6 +161,16 @@ const config: HardhatUserConfig = { enabled: true, runs: 100, }, + // Emit per-contract storageLayout so the ColFee storage-layout + // zero-diff regression (tests-colfee/StorageLayout.zerodiff.test.js) + // can assert the surplus-claim fee hook adds NO state to the + // upgradeable BorrowerOperations / CollSurplusPool proxies or + // ActivePool. Additive solc output; does not affect bytecode. + outputSelection: { + "*": { + "*": ["storageLayout"], + }, + }, }, }, { @@ -180,6 +193,7 @@ const config: HardhatUserConfig = { namedAccounts: { deployer: { default: 0, + rskSovrynMainnet: 1, }, signer: { default: 1, @@ -240,6 +254,13 @@ const config: HardhatUserConfig = { timeout: 100000, gasPrice: 66000000, blockGasLimit: 6800000, + // Source verification target for `hardhat etherscan-verify` (hardhat-deploy): + // Rootstock Blockscout, etherscan-compatible API. The task submits the + // standard-JSON input stored in the deployment record; Blockscout accepts + // any non-empty --api-key value. + verify: { + etherscan: { apiUrl: "https://rootstock-testnet.blockscout.com" }, + }, //timeout: 20000, // increase if needed; 20000 is the default value //allowUnlimitedContractSize, //EIP170 contrtact size restriction temporal testnet workaround }, @@ -275,6 +296,10 @@ const config: HardhatUserConfig = { gasPrice: 66000000, blockGasLimit: 6800000, gas: "auto", + // Source verification target for `hardhat etherscan-verify` (see testnet note). + verify: { + etherscan: { apiUrl: "https://rootstock.blockscout.com" }, + }, //timeout: 20000, // increase if needed; 20000 is the default value }, rskForkedMainnet: { diff --git a/package.json b/package.json index 994bdad..95c49b6 100644 --- a/package.json +++ b/package.json @@ -33,6 +33,8 @@ "prepare-artifacts": "node scripts/prepare-artifacts.js", "prepack:prepare-dist": "echo 'commented out: yarn prepare-dist'", "test": "hardhat test", + "test:colfee": "hardhat test tests-colfee/*.test.js", + "test:all": "hardhat test && hardhat test tests-colfee/*.test.js", "coverage": "hardhat coverage", "coveralls": "cat coverage/lcov.info | coveralls", "hh:fork-testnet": "yarn hardhat node --fork https://testnet.sovryn.app/rpc --no-deploy", @@ -49,8 +51,8 @@ "author": "", "license": "ISC", "dependencies": { - "@openzeppelin/contracts": "^3.3.0", "@nomicfoundation/hardhat-ethers": "^3.0.4", + "@openzeppelin/contracts": "^3.3.0", "cross-env": "^7.0.3", "decimal.js": "^10.2.0", "eth-mutants": "^0.1.1", @@ -94,6 +96,8 @@ "hardhat-deploy": "^0.11.37", "hardhat-deploy-ethers": "^0.4.1", "hardhat-gas-reporter": "^1.0.9", + "husky": "^4.3.8", + "lint-staged": "^13.2.0", "node-logs": "^1.1.0", "npm-run-all": "^4.1.5", "prettier": "^2.8.4", @@ -105,5 +109,19 @@ "typechain": "^8.3.1", "typescript": "^4.9.5", "web3": "^1.3.4" + }, + "husky": { + "hooks": { + "pre-commit": "lint-staged", + "pre-push": "yarn lint" + } + }, + "lint-staged": { + "*.sol": [ + "prettier --write" + ], + "*.{js,ts,json,md,yml,yaml}": [ + "prettier --write" + ] } } diff --git a/scripts/helpers/helpers.ts b/scripts/helpers/helpers.ts index 372bd3d..62d8cf2 100644 --- a/scripts/helpers/helpers.ts +++ b/scripts/helpers/helpers.ts @@ -385,7 +385,7 @@ const deployWithCustomProxy = async ( const proxyDeployment = await get(proxyDeployedName); await deploymentsSave(logicName, { abi: tx.abi, - address: proxy.address, // used to override receipt.contractAddress (useful for proxies) + address: proxyDeployment.address, // used to override receipt.contractAddress (useful for proxies); the ethers v6 Contract has no .address, which would silently fall back to the implementation address here receipt: tx.receipt, bytecode: tx.bytecode, deployedBytecode: tx.deployedBytecode, diff --git a/tests-colfee/StorageLayout.zerodiff.test.js b/tests-colfee/StorageLayout.zerodiff.test.js new file mode 100644 index 0000000..6159b71 --- /dev/null +++ b/tests-colfee/StorageLayout.zerodiff.test.js @@ -0,0 +1,83 @@ +// ColFee security perimeter — storage-layout ZERO-DIFF regression. +// +// The Zero surplus-claim exit-fee hook adds NO storage to any deployed +// upgradeable contract: the surface id is a constant, the exit-fee controller +// pointer lives in an EIP-1967-style unstructured slot, and the hook declares +// no new state variables on the BorrowerOperations or CollSurplusPool proxies. +// That is true BY CONSTRUCTION today — but nothing GUARDS a future edit from +// appending a `uint256` to the proxy and silently corrupting every live +// trove's storage on the next upgrade. +// +// This test is that guard. It compares the current, normalized solc +// `storageLayout` of BorrowerOperations, CollSurplusPool, and ActivePool +// against a committed baseline and FAILS on any label/slot/offset/type +// difference. The ColFee lending side carries an equivalent Hardhat guard over +// its own upgradeable contracts. +// +// SCOPE OF THE BASELINE (be precise about what this proves): the committed +// baseline was captured at `sovryn-perimeter-fee @ b6584a6`, a tree that ALREADY +// contains the borrower-exit hook (`_sendCollWithExitFee`, the unstructured +// controller slot, the surface-id constants). So this guard proves the +// SURPLUS-CLAIM hook appended no state, and forbids any future append to all +// three contracts. It does NOT independently re-prove the borrower-exit hook's +// zero-diff — that holds by construction (constants + an EIP-1967-style slot, +// neither of which occupies a regular-storage slot) and is reviewable in the +// contract source, but it is not what this baseline compares against. +// +// Requires `storageLayout` in the 0.6.11 compiler outputSelection +// (hardhat.config.ts) — the shared helper throws (never silently passes) if the +// layout is missing or empty, closing the "two empty layouts compare equal" +// false-PASS hole. +// +// REGENERATE BASELINE (only on an INTENTIONAL, reviewed layout change): +// 1. git worktree add sovryn-perimeter-fee +// 2. overlay this repo's hardhat.config.ts (storageLayout output) into +// 3. (cd && npx hardhat compile --force) +// 4. extract the normalized layout for the three targets and overwrite +// tests-colfee/baselines/storage-layout.sovryn-perimeter-fee.json (keep _meta). + +const assert = require("assert"); +const fs = require("fs"); +const path = require("path"); +const { normalizedLayout } = require("./utils/storageLayout.js"); + +const BASELINE = path.join(__dirname, "baselines", "storage-layout.sovryn-perimeter-fee.json"); + +const TARGETS = [ + "contracts/BorrowerOperations.sol:BorrowerOperations", // hooked upgradeable proxy + "contracts/ActivePool.sol:ActivePool", // native pusher — must stay untouched + "contracts/CollSurplusPool.sol:CollSurplusPool", // gains claimCollWithFee — functions only, no state +]; + +describe("ColFee — storage-layout zero-diff (Zero surplus-claim exit fee)", () => { + let baseline; + + before(() => { + baseline = JSON.parse(fs.readFileSync(BASELINE, "utf8")); + }); + + it("baseline snapshot is present and non-empty for every target", () => { + for (const fq of TARGETS) { + assert.ok(Array.isArray(baseline[fq]), `baseline missing ${fq}`); + assert.ok( + baseline[fq].length > 0, + `baseline for ${fq} is empty (would be a false pass)` + ); + } + }); + + for (const fq of TARGETS) { + it(`${fq}: current layout == sovryn-perimeter-fee baseline (no appended state)`, async () => { + const current = await normalizedLayout(fq); + const base = baseline[fq]; + // Exact structural equality: label/slot/offset/type per entry, in order. + assert.deepStrictEqual( + current, + base, + `STORAGE LAYOUT DIFF for ${fq} vs sovryn-perimeter-fee baseline:\n` + + ` baseline entries: ${base.length}\n current entries : ${current.length}\n` + + ` current: ${JSON.stringify(current)}` + ); + }); + } +}); diff --git a/tests-colfee/ZeroBorrowerExit.adjust.test.js b/tests-colfee/ZeroBorrowerExit.adjust.test.js new file mode 100644 index 0000000..7a65d86 --- /dev/null +++ b/tests-colfee/ZeroBorrowerExit.adjust.test.js @@ -0,0 +1,556 @@ +// ColFee — Zero borrower collateral-exit hook: withdrawColl / adjustTrove legs. +// Surface: SURFACE_ZERO_WITHDRAW_COLL +// Covers the `_moveTokensAndETHfromAdjustment` hook reached by: +// - withdrawColl(amount, ...) +// - adjustTrove(_collWithdrawal>0, _isDebtIncrease=false, msg.value=0) +// +// In-process full-system deployment (the zero-contracts test convention; the +// production controller is 0.8.20 so the hook is exercised against +// ExitFeeControllerMock, a 0.6.11 stand-in). _closeTrove has its own suite, as +// do the no-touch / failure-passthrough invariants. + +const deploymentHelper = require("../utils/js/deploymentHelpers.js"); +const testHelpers = require("../utils/js/testHelpers.js"); +const { + assertRevertWithReason, + assertSurface, + SURFACE_ZERO_WITHDRAW_COLL, +} = require("./utils/assertions.js"); +const timeMachine = require("ganache-time-traveler"); + +const BorrowerOperationsTester = artifacts.require("./BorrowerOperationsTester.sol"); +const TroveManagerTester = artifacts.require("TroveManagerTester"); +const MassetManagerTester = artifacts.require("MassetManagerTester"); +const ExitFeeControllerMock = artifacts.require("ExitFeeControllerMock"); + +const th = testHelpers.TestHelper; +const dec = th.dec; +const toBN = th.toBN; +const ZERO_ADDRESS = th.ZERO_ADDRESS; + +// SkipReason enum (mirrors IExitFeeController.SkipReason) +const NONE = 0; +const INACTIVE = 1; +const INVALID_QUOTE = 3; +const CONTROLLER_REVERT = 4; + +const GAS_PRICE = toBN(dec(1, 9)); // 1 gwei — used to back out gas cost from the borrower's RBTC delta + +contract("ColFee — Zero borrower collateral exit (adjust/withdraw)", async (accounts) => { + const [owner, alice, bob] = accounts; + const feeReceiver = accounts[995]; + const multisig = accounts[999]; + + let priceFeed; + let troveManager; + let activePool; + let sortedTroves; + let borrowerOperations; + let controller; + let contracts; + + const openTrove = async (params) => th.openTrove(contracts, params); + + const getEvent = (tx, name) => tx.logs.find((l) => l.event === name); + + before(async () => { + contracts = await deploymentHelper.deployLiquityCore(); + const permit2 = contracts.permit2; + + contracts.borrowerOperations = await BorrowerOperationsTester.new(permit2.address); + contracts.massetManager = await MassetManagerTester.new(); + contracts.troveManager = await TroveManagerTester.new(permit2.address); + contracts = await deploymentHelper.deployZUSDTokenTester(contracts); + const ZEROContracts = await deploymentHelper.deployZEROTesterContractsHardhat(multisig); + + await ZEROContracts.zeroToken.unprotectedMint(multisig, toBN(dec(20, 24))); + + await deploymentHelper.connectZEROContracts(ZEROContracts); + await deploymentHelper.connectCoreContracts(contracts, ZEROContracts); + await deploymentHelper.connectZEROContractsToCore(ZEROContracts, contracts); + + priceFeed = contracts.priceFeedTestnet; + troveManager = contracts.troveManager; + activePool = contracts.activePool; + sortedTroves = contracts.sortedTroves; + borrowerOperations = contracts.borrowerOperations; + + await borrowerOperations.setMassetManagerAddress(contracts.massetManager.address); + }); + + let snapshotId; + beforeEach(async () => { + const snap = await timeMachine.takeSnapshot(); + snapshotId = snap["result"]; + controller = await ExitFeeControllerMock.new(); + }); + afterEach(async () => { + await timeMachine.revertToSnapshot(snapshotId); + }); + + // Open a roomy trove so a meaningful collateral withdrawal stays well above MCR. + const openRoomyTrove = async (from) => + openTrove({ + ICR: toBN(dec(10, 18)), + extraParams: { from, value: toBN(dec(100, "ether")) }, + }); + + // --- setExitFeeController (rotatable, owner-gated) --- + + it("setExitFeeController: owner-gated, rejects zero, emits ExitFeeControllerSet", async () => { + assert.equal(await borrowerOperations.exitFeeController(), ZERO_ADDRESS); + + await assertRevertWithReason( + borrowerOperations.setExitFeeController(controller.address, { from: bob }), + "Ownable:: access denied" + ); + // Reason-checked on purpose: `checkContract(address(0))` would ALSO revert + // here ("Account cannot be zero address"), so an unchecked assertRevert + // would still pass with the explicit EFC:zero guard deleted. + await assertRevertWithReason( + borrowerOperations.setExitFeeController(ZERO_ADDRESS, { from: owner }), + "EFC:zero" + ); + + const tx = await borrowerOperations.setExitFeeController(controller.address, { + from: owner, + }); + const ev = getEvent(tx, "ExitFeeControllerSet"); + assert.isDefined(ev, "ExitFeeControllerSet not emitted"); + assert.equal(ev.args.previous, ZERO_ADDRESS); + assert.equal(ev.args.current, controller.address); + assert.equal(await borrowerOperations.exitFeeController(), controller.address); + }); + + // --- withdrawColl charging path --- + + it("withdrawColl (fee active): ActivePool -= gross, feeReceiver += fee, borrower += net", async () => { + await openRoomyTrove(alice); + await borrowerOperations.setExitFeeController(controller.address, { from: owner }); + await controller.configure(true, 50, feeReceiver, NONE); // 50 bps + + const gross = toBN(dec(1, "ether")); + const fee = gross.mul(toBN(50)).div(toBN(10000)); + const net = gross.sub(fee); + + const apEthBefore = await activePool.getETH(); + const apRawBefore = toBN(await web3.eth.getBalance(activePool.address)); + const frBefore = toBN(await web3.eth.getBalance(feeReceiver)); + const aliceBefore = toBN(await web3.eth.getBalance(alice)); + + const tx = await borrowerOperations.withdrawColl(gross, alice, alice, { + from: alice, + gasPrice: GAS_PRICE, + }); + const gasCost = GAS_PRICE.mul(toBN(tx.receipt.gasUsed)); + + assert.isTrue( + (await activePool.getETH()).eq(apEthBefore.sub(gross)), + "ActivePool ETH != -gross" + ); + assert.isTrue( + toBN(await web3.eth.getBalance(activePool.address)).eq(apRawBefore.sub(gross)), + "ActivePool raw ether != -gross" + ); + assert.isTrue( + toBN(await web3.eth.getBalance(feeReceiver)).eq(frBefore.add(fee)), + "feeReceiver != +fee" + ); + assert.isTrue( + toBN(await web3.eth.getBalance(alice)).eq(aliceBefore.add(net).sub(gasCost)), + "borrower != +net (minus gas)" + ); + + const ev = getEvent(tx, "ExitFeeApplied"); + assert.isDefined(ev, "ExitFeeApplied not emitted"); + assertSurface(ev, SURFACE_ZERO_WITHDRAW_COLL, "withdrawColl ExitFeeApplied"); + assert.equal(ev.args.actor, alice); + assert.equal(ev.args.asset, ZERO_ADDRESS); + assert.equal(ev.args.subProduct, ZERO_ADDRESS); + assert.equal(ev.args.recipient, alice); + assert.equal(ev.args.feeReceiver, feeReceiver); + assert.isTrue(toBN(ev.args.grossAmount).eq(gross)); + assert.isTrue(toBN(ev.args.feeAmount).eq(fee)); + assert.isTrue(toBN(ev.args.netAmount).eq(net)); + }); + + it("withdrawColl: trove accounting + ICR + TCR + sorted position are fee-independent (vs baseline)", async () => { + await openRoomyTrove(alice); + const gross = toBN(dec(1, "ether")); + const collBefore = await troveManager.getTroveColl(alice); + const price = await priceFeed.getPrice(); + + // local snapshot so we can run the SAME withdrawal twice: baseline then fee-active + const inner = (await timeMachine.takeSnapshot())["result"]; + + // baseline: no controller set → full gross to borrower + await borrowerOperations.withdrawColl(gross, alice, alice, { from: alice }); + const baseColl = await troveManager.getTroveColl(alice); + const baseICR = await troveManager.getCurrentICR(alice, price); + const baseTCR = await th.getTCR(contracts); + const baseInList = await sortedTroves.contains(alice); + + await timeMachine.revertToSnapshot(inner); + + // fee-active path + await borrowerOperations.setExitFeeController(controller.address, { from: owner }); + await controller.configure(true, 50, feeReceiver, NONE); + await borrowerOperations.withdrawColl(gross, alice, alice, { from: alice }); + const feeColl = await troveManager.getTroveColl(alice); + const feeICR = await troveManager.getCurrentICR(alice, price); + const feeTCR = await th.getTCR(contracts); + const feeInList = await sortedTroves.contains(alice); + + // trove collateral falls by full GROSS in both cases (fee comes out of the payout, not the trove) + assert.isTrue(baseColl.eq(collBefore.sub(gross)), "baseline coll != before-gross"); + assert.isTrue(feeColl.eq(baseColl), "fee-path coll != baseline coll"); + assert.isTrue(feeICR.eq(baseICR), "ICR differs from baseline"); + assert.isTrue(toBN(feeTCR).eq(toBN(baseTCR)), "TCR differs from baseline"); + assert.equal(feeInList, baseInList); + }); + + it("adjustTrove (collWithdrawal>0, debt unchanged): same split as withdrawColl", async () => { + await openRoomyTrove(alice); + await borrowerOperations.setExitFeeController(controller.address, { from: owner }); + await controller.configure(true, 50, feeReceiver, NONE); + + const gross = toBN(dec(1, "ether")); + const fee = gross.mul(toBN(50)).div(toBN(10000)); + const net = gross.sub(fee); + + const apEthBefore = await activePool.getETH(); + const frBefore = toBN(await web3.eth.getBalance(feeReceiver)); + const aliceBefore = toBN(await web3.eth.getBalance(alice)); + + // _maxFeePercentage, _collWithdrawal, _ZUSDChange=0, _isDebtIncrease=false, no msg.value + const tx = await borrowerOperations.adjustTrove(0, gross, 0, false, alice, alice, { + from: alice, + gasPrice: GAS_PRICE, + }); + const gasCost = GAS_PRICE.mul(toBN(tx.receipt.gasUsed)); + + assert.isTrue( + (await activePool.getETH()).eq(apEthBefore.sub(gross)), + "ActivePool != -gross" + ); + assert.isTrue( + toBN(await web3.eth.getBalance(feeReceiver)).eq(frBefore.add(fee)), + "feeReceiver != +fee" + ); + assert.isTrue( + toBN(await web3.eth.getBalance(alice)).eq(aliceBefore.add(net).sub(gasCost)), + "borrower != +net (minus gas)" + ); + const ev = getEvent(tx, "ExitFeeApplied"); + assert.isDefined(ev, "ExitFeeApplied not emitted"); + assert.equal(ev.args.recipient, alice); + assert.isTrue(toBN(ev.args.grossAmount).eq(gross)); + assert.isTrue(toBN(ev.args.feeAmount).eq(fee)); + assert.isTrue(toBN(ev.args.netAmount).eq(net)); + }); + + // --- arithmetic edges: truncation and dust --- + + it("withdrawColl: non-round gross at a truncating rate — fee + net == gross exactly, remainder to the borrower", async () => { + // The 1-ether/50-bps cases divide exactly, so they cannot catch a rounding + // bug. Here gross * rateBps is NOT a multiple of 10000: the truncated wei + // must land with the BORROWER (net = gross - fee), and the pool must still + // drain by exactly gross with no residue. + await openRoomyTrove(alice); + await borrowerOperations.setExitFeeController(controller.address, { from: owner }); + const rateBps = toBN(37); + await controller.configure(true, 37, feeReceiver, NONE); + + const gross = toBN("1234567890123456789"); // deliberately non-round + const fee = gross.mul(rateBps).div(toBN(10000)); // floor division + const net = gross.sub(fee); + assert.isTrue( + fee.mul(toBN(10000)).lt(gross.mul(rateBps)), + "chosen gross/rate must truncate, else this test proves nothing" + ); + + const apEthBefore = await activePool.getETH(); + const frBefore = toBN(await web3.eth.getBalance(feeReceiver)); + const aliceBefore = toBN(await web3.eth.getBalance(alice)); + + const tx = await borrowerOperations.withdrawColl(gross, alice, alice, { + from: alice, + gasPrice: GAS_PRICE, + }); + const gasCost = GAS_PRICE.mul(toBN(tx.receipt.gasUsed)); + + assert.isTrue(fee.add(net).eq(gross), "fee + net != gross"); + assert.isTrue( + (await activePool.getETH()).eq(apEthBefore.sub(gross)), + "ActivePool != -gross" + ); + const frDelta = toBN(await web3.eth.getBalance(feeReceiver)).sub(frBefore); + const aliceDelta = toBN(await web3.eth.getBalance(alice)) + .sub(aliceBefore) + .add(gasCost); + assert.isTrue(frDelta.eq(fee), "feeReceiver delta != truncated fee"); + assert.isTrue(aliceDelta.eq(net), "borrower delta != gross - fee"); + assert.isTrue(frDelta.add(aliceDelta).eq(gross), "measured legs do not sum to gross"); + + const ev = getEvent(tx, "ExitFeeApplied"); + assert.isDefined(ev); + assert.isTrue(toBN(ev.args.feeAmount).eq(fee)); + assert.isTrue(toBN(ev.args.netAmount).eq(net)); + }); + + it("withdrawColl: dust gross where the fee truncates to 0 → ExitFeeSkipped(NONE), full gross, nothing charged", async () => { + // 199 wei at 50 bps floors to 0. `q.active && q.feeAmount > 0` is false, so + // the hook must take the non-charging path — not send a 0-value fee leg and + // not emit ExitFeeApplied. + await openRoomyTrove(alice); + await borrowerOperations.setExitFeeController(controller.address, { from: owner }); + await controller.configure(true, 50, feeReceiver, NONE); + + const gross = toBN(199); // 199 * 50 / 10000 == 0 + const apEthBefore = await activePool.getETH(); + const frBefore = toBN(await web3.eth.getBalance(feeReceiver)); + const aliceBefore = toBN(await web3.eth.getBalance(alice)); + + const tx = await borrowerOperations.withdrawColl(gross, alice, alice, { + from: alice, + gasPrice: GAS_PRICE, + }); + const gasCost = GAS_PRICE.mul(toBN(tx.receipt.gasUsed)); + + assert.isTrue((await activePool.getETH()).eq(apEthBefore.sub(gross))); + assert.isTrue( + toBN(await web3.eth.getBalance(feeReceiver)).eq(frBefore), + "dust fee must not be charged" + ); + assert.isTrue( + toBN(await web3.eth.getBalance(alice)).eq(aliceBefore.add(gross).sub(gasCost)), + "borrower must receive the FULL dust gross" + ); + const ev = getEvent(tx, "ExitFeeSkipped"); + assert.isDefined(ev, "ExitFeeSkipped not emitted"); + assert.equal(toBN(ev.args.reason).toNumber(), NONE); + assert.equal(toBN(ev.args.rateBps).toNumber(), 50, "resolved rate must survive the skip"); + assert.isUndefined(getEvent(tx, "ExitFeeApplied")); + }); + + // --- fail-open branches --- + + it("withdrawColl: controller unset → full gross to borrower, ExitFeeSkipped(CONTROLLER_REVERT)", async () => { + await openRoomyTrove(alice); + const gross = toBN(dec(1, "ether")); + + const apEthBefore = await activePool.getETH(); + const frBefore = toBN(await web3.eth.getBalance(feeReceiver)); + + const tx = await borrowerOperations.withdrawColl(gross, alice, alice, { from: alice }); + + assert.isTrue((await activePool.getETH()).eq(apEthBefore.sub(gross))); + assert.isTrue( + toBN(await web3.eth.getBalance(feeReceiver)).eq(frBefore), + "feeReceiver should be untouched" + ); + const ev = getEvent(tx, "ExitFeeSkipped"); + assert.isDefined(ev, "ExitFeeSkipped not emitted"); + assertSurface(ev, SURFACE_ZERO_WITHDRAW_COLL, "withdrawColl ExitFeeSkipped"); + assert.equal(toBN(ev.args.reason).toNumber(), CONTROLLER_REVERT); + assert.isUndefined(getEvent(tx, "ExitFeeApplied")); + }); + + it("setExitFeeController: rejects a no-code address (EOA / destroyed)", async () => { + // Defense-in-depth: a no-code controller would make the high-level + // quoteExitFee call revert with "function call to a non-contract account", + // which 0.6.11 try/catch does NOT catch — so reject it at config time. + await assertRevertWithReason( + borrowerOperations.setExitFeeController(bob, { from: owner }), // bob = EOA, no code + "Account code size cannot be zero" + ); + }); + + it("withdrawColl: controller becomes no-code after being set → fail open, ExitFeeSkipped(CONTROLLER_REVERT)", async () => { + await openRoomyTrove(alice); + // Controller has code when wired in (passes the setter check)... + await borrowerOperations.setExitFeeController(controller.address, { from: owner }); + await controller.configure(true, 50, feeReceiver, NONE); + // ...then becomes code-less (simulates a destroyed/self-destructed proxy). + await controller.destroy(); + + const gross = toBN(dec(1, "ether")); + const apEthBefore = await activePool.getETH(); + const frBefore = toBN(await web3.eth.getBalance(feeReceiver)); + + // Must NOT revert — the borrower exit must complete (fail open). + const tx = await borrowerOperations.withdrawColl(gross, alice, alice, { from: alice }); + + assert.isTrue( + (await activePool.getETH()).eq(apEthBefore.sub(gross)), + "ActivePool != -gross" + ); + assert.isTrue( + toBN(await web3.eth.getBalance(feeReceiver)).eq(frBefore), + "feeReceiver should be untouched" + ); + const ev = getEvent(tx, "ExitFeeSkipped"); + assert.isDefined(ev, "ExitFeeSkipped not emitted"); + assert.equal(toBN(ev.args.reason).toNumber(), CONTROLLER_REVERT); + assert.isUndefined(getEvent(tx, "ExitFeeApplied")); + }); + + it("withdrawColl: controller reverts → full gross to borrower, ExitFeeSkipped(CONTROLLER_REVERT)", async () => { + await openRoomyTrove(alice); + await borrowerOperations.setExitFeeController(controller.address, { from: owner }); + await controller.setRevert(true); + const gross = toBN(dec(1, "ether")); + + const apEthBefore = await activePool.getETH(); + const tx = await borrowerOperations.withdrawColl(gross, alice, alice, { from: alice }); + + assert.isTrue((await activePool.getETH()).eq(apEthBefore.sub(gross))); + const ev = getEvent(tx, "ExitFeeSkipped"); + assert.isDefined(ev); + assert.equal(toBN(ev.args.reason).toNumber(), CONTROLLER_REVERT); + }); + + it("withdrawColl: malformed quote (feeAmount > gross) → INVALID_QUOTE, full gross to borrower", async () => { + await openRoomyTrove(alice); + await borrowerOperations.setExitFeeController(controller.address, { from: owner }); + const gross = toBN(dec(1, "ether")); + await controller.configure(true, 50, feeReceiver, NONE); + await controller.setForcedAmounts(true, gross.add(toBN(1)), 0); // fee > gross + + const apEthBefore = await activePool.getETH(); + const frBefore = toBN(await web3.eth.getBalance(feeReceiver)); + const tx = await borrowerOperations.withdrawColl(gross, alice, alice, { from: alice }); + + assert.isTrue((await activePool.getETH()).eq(apEthBefore.sub(gross))); + assert.isTrue(toBN(await web3.eth.getBalance(feeReceiver)).eq(frBefore)); + const ev = getEvent(tx, "ExitFeeSkipped"); + assert.isDefined(ev); + assert.equal(toBN(ev.args.reason).toNumber(), INVALID_QUOTE); + // the resolved rate must survive onto the skip event (parity with VAULT_REVERT path) + assert.equal( + toBN(ev.args.rateBps).toNumber(), + 50, + "INVALID_QUOTE skip must preserve the controller's rateBps" + ); + }); + + it("withdrawColl: consumer trusts the controller's feeAmount (no fee↔rate reconciliation), enforcing only pool safety", async () => { + // SRP: the consumer does NOT reproduce the controller's fee-from-rate formula. A quote with + // feeAmount == gross (<= gross, so pool-safe) is charged in full even though rateBps looks + // inconsistent — fee↔rate correctness is the configured controller's job. + // The consumer's guarantee is unchanged: ActivePool drains by exactly gross, no residue. + await openRoomyTrove(alice); + await borrowerOperations.setExitFeeController(controller.address, { from: owner }); + const gross = toBN(dec(1, "ether")); + await controller.configure(true, 0, feeReceiver, NONE); + await controller.setForcedAmounts(true, gross, 0); // fee == gross (pool-safe), rateBps == 0 + + const apEthBefore = await activePool.getETH(); + const frBefore = toBN(await web3.eth.getBalance(feeReceiver)); + const tx = await borrowerOperations.withdrawColl(gross, alice, alice, { from: alice }); + + assert.isTrue( + (await activePool.getETH()).eq(apEthBefore.sub(gross)), + "pool must drain by exactly gross" + ); + assert.isTrue( + toBN(await web3.eth.getBalance(feeReceiver)).eq(frBefore.add(gross)), + "fee leg charges feeAmount" + ); + const ev = getEvent(tx, "ExitFeeApplied"); + assert.isDefined(ev); + assert.isTrue(toBN(ev.args.feeAmount).eq(gross)); + assert.isTrue(toBN(ev.args.netAmount).eq(toBN(0)), "net = gross - fee recomputed"); + }); + + it("withdrawColl: forced divergent netAmount is ignored — net recomputed as gross-fee", async () => { + // Pins the defensive recompute: a controller returning a bogus netAmount must not + // be trusted; the charged net is always gross - feeAmount. + await openRoomyTrove(alice); + await borrowerOperations.setExitFeeController(controller.address, { from: owner }); + const gross = toBN(dec(1, "ether")); + const fee = gross.mul(toBN(50)).div(toBN(10000)); + await controller.configure(true, 50, feeReceiver, NONE); + await controller.setForcedAmounts(true, fee, toBN(0)); // bogus net=0 (correct is gross-fee) + + const apEthBefore = await activePool.getETH(); + const frBefore = toBN(await web3.eth.getBalance(feeReceiver)); + const tx = await borrowerOperations.withdrawColl(gross, alice, alice, { from: alice }); + + assert.isTrue( + (await activePool.getETH()).eq(apEthBefore.sub(gross)), + "ActivePool != -gross" + ); + assert.isTrue(toBN(await web3.eth.getBalance(feeReceiver)).eq(frBefore.add(fee))); + const ev = getEvent(tx, "ExitFeeApplied"); + assert.isDefined(ev); + assert.isTrue( + toBN(ev.args.netAmount).eq(gross.sub(fee)), + "net must be recomputed, not the bogus 0" + ); + }); + + it("withdrawColl: active policy with zero rate (feeAmount==0) → ExitFeeSkipped(NONE), full gross", async () => { + await openRoomyTrove(alice); + await borrowerOperations.setExitFeeController(controller.address, { from: owner }); + await controller.configure(true, 0, feeReceiver, NONE); // active, but 0 bps → fee 0 + const gross = toBN(dec(1, "ether")); + + const apEthBefore = await activePool.getETH(); + const frBefore = toBN(await web3.eth.getBalance(feeReceiver)); + const tx = await borrowerOperations.withdrawColl(gross, alice, alice, { from: alice }); + + assert.isTrue((await activePool.getETH()).eq(apEthBefore.sub(gross))); + assert.isTrue(toBN(await web3.eth.getBalance(feeReceiver)).eq(frBefore)); + const ev = getEvent(tx, "ExitFeeSkipped"); + assert.isDefined(ev); + assert.equal(toBN(ev.args.reason).toNumber(), NONE); + assert.isUndefined(getEvent(tx, "ExitFeeApplied")); + }); + + it("withdrawColl: inactive policy propagates the controller's reason (INACTIVE) onto the skip event", async () => { + // Distinct from the zero-rate (active, NONE) case above: proves a non-zero + // SkipReason from the controller is plumbed through to ExitFeeSkipped. + await openRoomyTrove(alice); + await borrowerOperations.setExitFeeController(controller.address, { from: owner }); + await controller.configure(false, 0, feeReceiver, INACTIVE); + const gross = toBN(dec(1, "ether")); + + const apEthBefore = await activePool.getETH(); + const tx = await borrowerOperations.withdrawColl(gross, alice, alice, { from: alice }); + + assert.isTrue((await activePool.getETH()).eq(apEthBefore.sub(gross))); + const ev = getEvent(tx, "ExitFeeSkipped"); + assert.isDefined(ev); + assert.equal(toBN(ev.args.reason).toNumber(), INACTIVE); + }); + + it("debt-only adjustTrove (gross==0) emits no ColFee event and skips the controller", async () => { + // Repay / debt-only adjustments move no collateral → the hook must short-circuit + // (no wasted quoteExitFee round-trip, no spurious ExitFeeSkipped). + await openRoomyTrove(alice); + await borrowerOperations.setExitFeeController(controller.address, { from: owner }); + await controller.configure(true, 50, feeReceiver, NONE); + + const debtBefore = (await troveManager.Troves(alice))[0]; // [0] = debt + // debt increase, no collateral change, no msg.value → gross == 0 at the hook + const tx = await borrowerOperations.adjustTrove( + dec(1, 18), + 0, + toBN(dec(100, 18)), + true, + alice, + alice, + { + from: alice, + } + ); + + assert.isTrue( + (await troveManager.Troves(alice))[0].gt(debtBefore), + "debt did not increase — setup invalid" + ); + assert.isUndefined(getEvent(tx, "ExitFeeApplied"), "no ColFee event on a debt-only op"); + assert.isUndefined(getEvent(tx, "ExitFeeSkipped"), "no ColFee event on a debt-only op"); + }); +}); diff --git a/tests-colfee/ZeroBorrowerExit.close.test.js b/tests-colfee/ZeroBorrowerExit.close.test.js new file mode 100644 index 0000000..55ff6d2 --- /dev/null +++ b/tests-colfee/ZeroBorrowerExit.close.test.js @@ -0,0 +1,184 @@ +// ColFee — Zero borrower collateral-exit hook: closeTrove leg. +// Surface: SURFACE_ZERO_WITHDRAW_COLL +// +// closeTrove() returns the trove's entire collateral to the borrower; this +// suite proves the exit fee is charged on that payout and that close invariants +// (trove removed, ActivePool drained by exactly the collateral) are preserved. +// The _sendCollWithExitFee branches themselves are covered in the adjust suite. + +const deploymentHelper = require("../utils/js/deploymentHelpers.js"); +const testHelpers = require("../utils/js/testHelpers.js"); +const { assertSurface, SURFACE_ZERO_WITHDRAW_COLL } = require("./utils/assertions.js"); +const timeMachine = require("ganache-time-traveler"); + +const BorrowerOperationsTester = artifacts.require("./BorrowerOperationsTester.sol"); +const TroveManagerTester = artifacts.require("TroveManagerTester"); +const MassetManagerTester = artifacts.require("MassetManagerTester"); +const ExitFeeControllerMock = artifacts.require("ExitFeeControllerMock"); + +const th = testHelpers.TestHelper; +const dec = th.dec; +const toBN = th.toBN; +const ZERO_ADDRESS = th.ZERO_ADDRESS; + +const NONE = 0; +const CONTROLLER_REVERT = 4; +const GAS_PRICE = toBN(dec(1, 9)); + +contract("ColFee — Zero borrower collateral exit (closeTrove)", async (accounts) => { + const [owner, alice, dennis] = accounts; + const feeReceiver = accounts[995]; + const multisig = accounts[999]; + + let zusdToken; + let troveManager; + let activePool; + let sortedTroves; + let borrowerOperations; + let controller; + let contracts; + + const openTrove = async (params) => th.openTrove(contracts, params); + const getTroveEntireColl = async (trove) => th.getTroveEntireColl(contracts, trove); + const getEvent = (tx, name) => tx.logs.find((l) => l.event === name); + + before(async () => { + contracts = await deploymentHelper.deployLiquityCore(); + const permit2 = contracts.permit2; + + contracts.borrowerOperations = await BorrowerOperationsTester.new(permit2.address); + contracts.massetManager = await MassetManagerTester.new(); + contracts.troveManager = await TroveManagerTester.new(permit2.address); + contracts = await deploymentHelper.deployZUSDTokenTester(contracts); + const ZEROContracts = await deploymentHelper.deployZEROTesterContractsHardhat(multisig); + + await ZEROContracts.zeroToken.unprotectedMint(multisig, toBN(dec(20, 24))); + + await deploymentHelper.connectZEROContracts(ZEROContracts); + await deploymentHelper.connectCoreContracts(contracts, ZEROContracts); + await deploymentHelper.connectZEROContractsToCore(ZEROContracts, contracts); + + zusdToken = contracts.zusdToken; + troveManager = contracts.troveManager; + activePool = contracts.activePool; + sortedTroves = contracts.sortedTroves; + borrowerOperations = contracts.borrowerOperations; + + await borrowerOperations.setMassetManagerAddress(contracts.massetManager.address); + }); + + let snapshotId; + beforeEach(async () => { + const snap = await timeMachine.takeSnapshot(); + snapshotId = snap["result"]; + controller = await ExitFeeControllerMock.new(); + }); + afterEach(async () => { + await timeMachine.revertToSnapshot(snapshotId); + }); + + // Open a pair of troves; give `alice` enough ZUSD (from dennis) to repay her + // debt + borrowing fee so closeTrove() succeeds. + const setupCloseable = async () => { + await openTrove({ + extraZUSDAmount: toBN(dec(10000, 18)), + ICR: toBN(dec(2, 18)), + extraParams: { from: dennis }, + }); + await openTrove({ + extraZUSDAmount: toBN(dec(10000, 18)), + ICR: toBN(dec(2, 18)), + extraParams: { from: alice }, + }); + await zusdToken.transfer(alice, await zusdToken.balanceOf(dennis), { from: dennis }); + }; + + it("closeTrove (fee active): ActivePool -= coll, feeReceiver += fee, borrower += net; trove removed", async () => { + await setupCloseable(); + await borrowerOperations.setExitFeeController(controller.address, { from: owner }); + await controller.configure(true, 50, feeReceiver, NONE); // 50 bps + + const gross = await getTroveEntireColl(alice); + const fee = gross.mul(toBN(50)).div(toBN(10000)); + const net = gross.sub(fee); + + const apEthBefore = await activePool.getETH(); + const frBefore = toBN(await web3.eth.getBalance(feeReceiver)); + const aliceBefore = toBN(await web3.eth.getBalance(alice)); + + const tx = await borrowerOperations.closeTrove({ from: alice, gasPrice: GAS_PRICE }); + const gasCost = GAS_PRICE.mul(toBN(tx.receipt.gasUsed)); + + assert.isTrue( + (await activePool.getETH()).eq(apEthBefore.sub(gross)), + "ActivePool != -coll" + ); + assert.isTrue( + toBN(await web3.eth.getBalance(feeReceiver)).eq(frBefore.add(fee)), + "feeReceiver != +fee" + ); + assert.isTrue( + toBN(await web3.eth.getBalance(alice)).eq(aliceBefore.add(net).sub(gasCost)), + "borrower != +net (minus gas)" + ); + assert.isFalse(await sortedTroves.contains(alice), "trove not removed from sorted list"); + assert.equal((await troveManager.Troves(alice))[3].toString(), "2"); // closedByOwner + + const ev = getEvent(tx, "ExitFeeApplied"); + assert.isDefined(ev, "ExitFeeApplied not emitted"); + // closeTrove settles through the same borrower-exit surface as withdrawColl + assertSurface(ev, SURFACE_ZERO_WITHDRAW_COLL, "closeTrove ExitFeeApplied"); + assert.equal(ev.args.actor, alice); + assert.equal(ev.args.recipient, alice); + assert.equal(ev.args.asset, ZERO_ADDRESS); + assert.isTrue(toBN(ev.args.grossAmount).eq(gross)); + assert.isTrue(toBN(ev.args.feeAmount).eq(fee)); + assert.isTrue(toBN(ev.args.netAmount).eq(net)); + }); + + it("closeTrove: ActivePool drain + trove removal identical to baseline (fee vs no-fee)", async () => { + await setupCloseable(); + const gross = await getTroveEntireColl(alice); + const apEthBefore = await activePool.getETH(); + + const inner = (await timeMachine.takeSnapshot())["result"]; + + // baseline: no controller → full coll to borrower + await borrowerOperations.closeTrove({ from: alice }); + const baseDrain = apEthBefore.sub(await activePool.getETH()); + const baseInList = await sortedTroves.contains(alice); + const baseStatus = (await troveManager.Troves(alice))[3].toString(); + + await timeMachine.revertToSnapshot(inner); + + // fee-active + await borrowerOperations.setExitFeeController(controller.address, { from: owner }); + await controller.configure(true, 50, feeReceiver, NONE); + await borrowerOperations.closeTrove({ from: alice }); + const feeDrain = apEthBefore.sub(await activePool.getETH()); + + assert.isTrue(baseDrain.eq(gross), "baseline drain != coll"); + assert.isTrue(feeDrain.eq(baseDrain), "fee-path drain != baseline (residue!)"); + assert.equal(await sortedTroves.contains(alice), baseInList); + assert.equal((await troveManager.Troves(alice))[3].toString(), baseStatus); + }); + + it("closeTrove: controller unset → full coll to borrower, ExitFeeSkipped(CONTROLLER_REVERT)", async () => { + await setupCloseable(); + const gross = await getTroveEntireColl(alice); + + const apEthBefore = await activePool.getETH(); + const frBefore = toBN(await web3.eth.getBalance(feeReceiver)); + const tx = await borrowerOperations.closeTrove({ from: alice }); + + assert.isTrue((await activePool.getETH()).eq(apEthBefore.sub(gross))); + assert.isTrue( + toBN(await web3.eth.getBalance(feeReceiver)).eq(frBefore), + "feeReceiver should be untouched" + ); + const ev = getEvent(tx, "ExitFeeSkipped"); + assert.isDefined(ev, "ExitFeeSkipped not emitted"); + assert.equal(toBN(ev.args.reason).toNumber(), CONTROLLER_REVERT); + assert.isUndefined(getEvent(tx, "ExitFeeApplied")); + }); +}); diff --git a/tests-colfee/ZeroBorrowerExit.notouch.test.js b/tests-colfee/ZeroBorrowerExit.notouch.test.js new file mode 100644 index 0000000..1daea43 --- /dev/null +++ b/tests-colfee/ZeroBorrowerExit.notouch.test.js @@ -0,0 +1,277 @@ +// ColFee — Zero borrower-exit hook: no-touch + invariant suite. +// +// Proves: +// - Fee-receiver failure passthrough: a reverting feeReceiver is caught by the +// try/catch fee leg; the borrower still receives the full gross and the exit +// completes (ExitFeeSkipped(VAULT_REVERT)). ColFee infra failure cannot brick +// a borrower exit. +// - No-touch: redemption, liquidation, and stability-pool ETH-gain withdrawals +// route their collateral through TroveManager / StabilityPool — NOT through +// BorrowerOperations._sendCollWithExitFee — so an ACTIVE controller charges +// nothing on those paths (feeReceiver balance unchanged). + +const deploymentHelper = require("../utils/js/deploymentHelpers.js"); +const testHelpers = require("../utils/js/testHelpers.js"); +const { assertSurface, SURFACE_ZERO_WITHDRAW_COLL } = require("./utils/assertions.js"); +const timeMachine = require("ganache-time-traveler"); + +const BorrowerOperationsTester = artifacts.require("./BorrowerOperationsTester.sol"); +const TroveManagerTester = artifacts.require("TroveManagerTester"); +const MassetManagerTester = artifacts.require("MassetManagerTester"); +const ExitFeeControllerMock = artifacts.require("ExitFeeControllerMock"); +const NonPayable = artifacts.require("NonPayable"); + +const th = testHelpers.TestHelper; +const dec = th.dec; +const toBN = th.toBN; +const timeValues = testHelpers.TimeValues; +const ZERO_ADDRESS = th.ZERO_ADDRESS; + +const NONE = 0; +const VAULT_REVERT = 5; +const GAS_PRICE = toBN(dec(1, 9)); + +contract("ColFee — Zero borrower exit: no-touch + invariants", async (accounts) => { + const [owner, alice, bob, whale, defaulter_1] = accounts; + const feeReceiver = accounts[995]; + const multisig = accounts[999]; + + let priceFeed; + let zusdToken; + let troveManager; + let activePool; + let stabilityPool; + let borrowerOperations; + let controller; + let contracts; + + const openTrove = async (params) => th.openTrove(contracts, params); + const getOpenTroveZUSDAmount = async (totalDebt) => + th.getOpenTroveZUSDAmount(contracts, totalDebt); + const getTroveEntireColl = async (trove) => th.getTroveEntireColl(contracts, trove); + const getEvent = (tx, name) => tx.logs.find((l) => l.event === name); + + // POSITIVE CONTROL for every no-touch case below. + // + // "feeReceiver balance unchanged" is only evidence of an exemption if the fee + // system would otherwise have charged. Run under the SAME controller wiring and + // rate the no-touch assertion relied on, this drives a genuinely chargeable + // borrower exit and requires the fee to land. Without it, deleting + // `_sendCollWithExitFee` outright — or a fixture where `setExitFeeController` + // silently did nothing — would leave the no-touch tests passing and vacuous. + const assertChargeableTwinDoesCharge = async (borrower, rateBps) => { + const gross = toBN(dec(1, "ether")); + const expectedFee = gross.mul(toBN(rateBps)).div(toBN(10000)); + assert.isTrue(expectedFee.gt(toBN(0)), "positive control needs a non-zero fee"); + + const frBefore = toBN(await web3.eth.getBalance(feeReceiver)); + const tx = await borrowerOperations.withdrawColl(gross, borrower, borrower, { + from: borrower, + }); + + assert.isTrue( + toBN(await web3.eth.getBalance(feeReceiver)).eq(frBefore.add(expectedFee)), + "POSITIVE CONTROL FAILED: a chargeable exit charged nothing under this same " + + "controller config — the no-touch assertion above proves nothing" + ); + const ev = getEvent(tx, "ExitFeeApplied"); + assert.isDefined(ev, "positive control: ExitFeeApplied not emitted"); + assertSurface(ev, SURFACE_ZERO_WITHDRAW_COLL, "positive control ExitFeeApplied"); + assert.isTrue(toBN(ev.args.feeAmount).eq(expectedFee)); + }; + + before(async () => { + contracts = await deploymentHelper.deployLiquityCore(); + const permit2 = contracts.permit2; + + contracts.borrowerOperations = await BorrowerOperationsTester.new(permit2.address); + contracts.massetManager = await MassetManagerTester.new(); + contracts.troveManager = await TroveManagerTester.new(permit2.address); + contracts = await deploymentHelper.deployZUSDTokenTester(contracts); + const ZEROContracts = await deploymentHelper.deployZEROTesterContractsHardhat(multisig); + + await ZEROContracts.zeroToken.unprotectedMint(multisig, toBN(dec(20, 24))); + + await deploymentHelper.connectZEROContracts(ZEROContracts); + await deploymentHelper.connectCoreContracts(contracts, ZEROContracts); + await deploymentHelper.connectZEROContractsToCore(ZEROContracts, contracts); + + priceFeed = contracts.priceFeedTestnet; + zusdToken = contracts.zusdToken; + troveManager = contracts.troveManager; + activePool = contracts.activePool; + stabilityPool = contracts.stabilityPool; + borrowerOperations = contracts.borrowerOperations; + + await borrowerOperations.setMassetManagerAddress(contracts.massetManager.address); + }); + + let snapshotId; + beforeEach(async () => { + const snap = await timeMachine.takeSnapshot(); + snapshotId = snap["result"]; + controller = await ExitFeeControllerMock.new(); + }); + afterEach(async () => { + await timeMachine.revertToSnapshot(snapshotId); + }); + + // --- fee-receiver failure passthrough --- + + it("withdrawColl: reverting feeReceiver → full gross to borrower, ExitFeeSkipped(VAULT_REVERT), exit completes", async () => { + await openTrove({ + ICR: toBN(dec(10, 18)), + extraParams: { from: alice, value: toBN(dec(100, "ether")) }, + }); + + const badReceiver = await NonPayable.new(); // receive() reverts while isPayable=false + await borrowerOperations.setExitFeeController(controller.address, { from: owner }); + await controller.configure(true, 50, badReceiver.address, NONE); + + const gross = toBN(dec(1, "ether")); + const apEthBefore = await activePool.getETH(); + const aliceBefore = toBN(await web3.eth.getBalance(alice)); + const collBefore = await getTroveEntireColl(alice); + + const tx = await borrowerOperations.withdrawColl(gross, alice, alice, { + from: alice, + gasPrice: GAS_PRICE, + }); + const gasCost = GAS_PRICE.mul(toBN(tx.receipt.gasUsed)); + + // ActivePool drained by exactly gross (the reverted fee-leg subcall rolled back its ETH.sub) + assert.isTrue( + (await activePool.getETH()).eq(apEthBefore.sub(gross)), + "ActivePool != -gross" + ); + // borrower received the FULL gross (no fee skimmed) minus gas + assert.isTrue( + toBN(await web3.eth.getBalance(alice)).eq(aliceBefore.add(gross).sub(gasCost)), + "borrower != +gross" + ); + // fee receiver got nothing + assert.isTrue( + toBN(await web3.eth.getBalance(badReceiver.address)).eq(toBN(0)), + "bad receiver got ETH" + ); + // trove accounting still correct (coll reduced by gross) → exit completed + assert.isTrue((await getTroveEntireColl(alice)).eq(collBefore.sub(gross))); + + const ev = getEvent(tx, "ExitFeeSkipped"); + assert.isDefined(ev, "ExitFeeSkipped not emitted"); + assertSurface(ev, SURFACE_ZERO_WITHDRAW_COLL, "VAULT_REVERT ExitFeeSkipped"); + assert.equal(toBN(ev.args.reason).toNumber(), VAULT_REVERT); + assert.equal( + toBN(ev.args.rateBps).toNumber(), + 50, + "rateBps should be the rate the controller used" + ); + assert.isUndefined(getEvent(tx, "ExitFeeApplied")); + }); + + // --- no-touch: liquidation --- + + it("liquidation: charges no exit fee (collateral routes via TroveManager, not the BO hook)", async () => { + await priceFeed.setPrice(dec(200, 18)); + await openTrove({ + ICR: toBN(dec(10, 18)), + extraParams: { from: whale, value: toBN(dec(1000, "ether")) }, + }); + await openTrove({ ICR: toBN(dec(2, 18)), extraParams: { from: defaulter_1 } }); + + await borrowerOperations.setExitFeeController(controller.address, { from: owner }); + await controller.configure(true, 500, feeReceiver, NONE); // 5% — would be very visible if it fired + + const frBefore = toBN(await web3.eth.getBalance(feeReceiver)); + + await priceFeed.setPrice(dec(100, 18)); // defaulter_1 now under MCR + assert.isFalse(await th.checkRecoveryMode(contracts)); + await troveManager.liquidate(defaulter_1, { from: owner }); + + assert.equal((await troveManager.Troves(defaulter_1))[3].toString(), "3"); // closedByLiquidation + assert.isTrue( + toBN(await web3.eth.getBalance(feeReceiver)).eq(frBefore), + "feeReceiver charged on a liquidation" + ); + + await assertChargeableTwinDoesCharge(whale, 500); + }); + + // --- no-touch: redemption --- + + it("redemption: charges no exit fee (collateral routes via TroveManager, not the BO hook)", async () => { + await priceFeed.setPrice(dec(200, 18)); + // whale holds plenty of ZUSD to redeem with + await openTrove({ + ICR: toBN(dec(20, 18)), + extraZUSDAmount: toBN(dec(50000, 18)), + extraParams: { from: whale, value: toBN(dec(1000, "ether")) }, + }); + await openTrove({ ICR: toBN(dec(2, 18)), extraParams: { from: alice } }); + + await borrowerOperations.setExitFeeController(controller.address, { from: owner }); + await controller.configure(true, 500, feeReceiver, NONE); + + // pass the redemption bootstrap window + await th.fastForwardTime( + timeValues.SECONDS_IN_ONE_WEEK * 2 + timeValues.SECONDS_IN_ONE_DAY, + web3.currentProvider + ); + + const frBefore = toBN(await web3.eth.getBalance(feeReceiver)); + const apEthBefore = await activePool.getETH(); + await th.redeemCollateral(whale, contracts, toBN(dec(1000, 18))); + + // the redemption must actually move collateral, else the no-touch claim is vacuous + assert.isTrue( + (await activePool.getETH()).lt(apEthBefore), + "redemption moved no collateral — no-touch assertion would be vacuous" + ); + assert.isTrue( + toBN(await web3.eth.getBalance(feeReceiver)).eq(frBefore), + "feeReceiver charged on a redemption" + ); + + await assertChargeableTwinDoesCharge(whale, 500); + }); + + // --- no-touch: stability pool ETH-gain withdrawal --- + + it("stability-pool ETH-gain withdrawal: charges no exit fee", async () => { + await priceFeed.setPrice(dec(200, 18)); + await openTrove({ + ICR: toBN(dec(10, 18)), + extraParams: { from: whale, value: toBN(dec(1000, "ether")) }, + }); + // alice deposits to the Stability Pool + await openTrove({ + ICR: toBN(dec(10, 18)), + extraZUSDAmount: toBN(dec(20000, 18)), + extraParams: { from: alice, value: toBN(dec(200, "ether")) }, + }); + await stabilityPool.provideToSP(toBN(dec(10000, 18)), ZERO_ADDRESS, { from: alice }); + + // a defaulter is liquidated and offset against the SP → alice accrues an ETH gain + await openTrove({ ICR: toBN(dec(2, 18)), extraParams: { from: defaulter_1 } }); + + await borrowerOperations.setExitFeeController(controller.address, { from: owner }); + await controller.configure(true, 500, feeReceiver, NONE); + + await priceFeed.setPrice(dec(100, 18)); + await troveManager.liquidate(defaulter_1, { from: owner }); + await priceFeed.setPrice(dec(200, 18)); + + const gain = await stabilityPool.getDepositorETHGain(alice); + assert.isTrue(gain.gt(toBN(0)), "no ETH gain accrued — setup invalid"); + + const frBefore = toBN(await web3.eth.getBalance(feeReceiver)); + await stabilityPool.withdrawFromSP(toBN(dec(10000, 18)), { from: alice }); + + assert.isTrue( + toBN(await web3.eth.getBalance(feeReceiver)).eq(frBefore), + "feeReceiver charged on an SP ETH-gain withdrawal" + ); + + await assertChargeableTwinDoesCharge(alice, 500); + }); +}); diff --git a/tests-colfee/ZeroClaimSurplus.test.js b/tests-colfee/ZeroClaimSurplus.test.js new file mode 100644 index 0000000..34868e5 --- /dev/null +++ b/tests-colfee/ZeroClaimSurplus.test.js @@ -0,0 +1,665 @@ +// ColFee — Zero surplus-claim exit fee (SURFACE_ZERO_CLAIM_SURPLUS) +// +// Surplus enters CollSurplusPool on full redemption (TroveManagerRedeemOps) or +// recovery-mode liquidation with ICR > MCR; the ONLY outlet is +// BorrowerOperations.claimCollateral(). This suite proves the pool-side two-leg +// split (claimCollWithFee) charges the fee when the policy is active, fails +// open on every ColFee failure, and leaves the non-charging path +// state-equivalent to the untouched claimColl flow. + +const deploymentHelper = require("../utils/js/deploymentHelpers.js"); +const testHelpers = require("../utils/js/testHelpers.js"); +const { + assertRevertWithReason, + assertSurface, + SURFACE_ZERO_CLAIM_SURPLUS, +} = require("./utils/assertions.js"); +const timeMachine = require("ganache-time-traveler"); + +const BorrowerOperationsTester = artifacts.require("./BorrowerOperationsTester.sol"); +const TroveManagerTester = artifacts.require("TroveManagerTester"); +const MassetManagerTester = artifacts.require("MassetManagerTester"); +const ExitFeeControllerMock = artifacts.require("ExitFeeControllerMock"); +const NonPayable = artifacts.require("NonPayable"); +const ReentrantSurplusClaimer = artifacts.require("ReentrantSurplusClaimer"); +const GasSinkFeeReceiver = artifacts.require("GasSinkFeeReceiver"); +const LegacyCollSurplusPoolMock = artifacts.require("LegacyCollSurplusPoolMock"); + +const th = testHelpers.TestHelper; +const dec = th.dec; +const toBN = th.toBN; +const timeValues = testHelpers.TimeValues; +const ZERO_ADDRESS = th.ZERO_ADDRESS; +const assertRevert = th.assertRevert; + +const NONE = 0; +const INACTIVE = 1; +const DISABLED = 2; +const INVALID_QUOTE = 3; +const CONTROLLER_REVERT = 4; +const VAULT_REVERT = 5; +const GAS_PRICE = toBN(dec(1, 9)); + +contract("ColFee — Zero surplus-claim exit fee", async (accounts) => { + const [owner, alice, whale] = accounts; + const feeReceiver = accounts[995]; + const multisig = accounts[999]; + + let priceFeed; + let zusdToken; + let troveManager; + let activePool; + let collSurplusPool; + let borrowerOperations; + let controller; + let contracts; + let zeroStakingAddr; + + const openTrove = async (params) => th.openTrove(contracts, params); + const getEvent = (tx, name) => tx.logs.find((l) => l.event === name); + + before(async () => { + contracts = await deploymentHelper.deployLiquityCore(); + const permit2 = contracts.permit2; + + contracts.borrowerOperations = await BorrowerOperationsTester.new(permit2.address); + contracts.massetManager = await MassetManagerTester.new(); + contracts.troveManager = await TroveManagerTester.new(permit2.address); + contracts = await deploymentHelper.deployZUSDTokenTester(contracts); + const ZEROContracts = await deploymentHelper.deployZEROTesterContractsHardhat(multisig); + + await ZEROContracts.zeroToken.unprotectedMint(multisig, toBN(dec(20, 24))); + + await deploymentHelper.connectZEROContracts(ZEROContracts); + await deploymentHelper.connectCoreContracts(contracts, ZEROContracts); + await deploymentHelper.connectZEROContractsToCore(ZEROContracts, contracts); + + // Captured for the pre-upgrade-pool test, which re-calls setAddresses (the + // 12-arg form) to rewire collSurplusPool to a legacy mock; zeroStaking is the + // only address not exposed on `contracts`. + zeroStakingAddr = ZEROContracts.zeroStaking.address; + + priceFeed = contracts.priceFeedTestnet; + zusdToken = contracts.zusdToken; + troveManager = contracts.troveManager; + activePool = contracts.activePool; + collSurplusPool = contracts.collSurplusPool; + borrowerOperations = contracts.borrowerOperations; + + await borrowerOperations.setMassetManagerAddress(contracts.massetManager.address); + }); + + let snapshotId; + beforeEach(async () => { + const snap = await timeMachine.takeSnapshot(); + snapshotId = snap["result"]; + controller = await ExitFeeControllerMock.new(); + }); + afterEach(async () => { + await timeMachine.revertToSnapshot(snapshotId); + }); + + // Create a claimable surplus for `claimant` (an EOA) by fully redeeming their + // ~200%-ICR trove at ETH:USD = 100 (mirrors tests/js/CollSurplusPool.js): + // surplus == coll - netDebt/price stays in CollSurplusPool for the claimant. + const setupSurplus = async (claimant) => { + const price = toBN(dec(100, 18)); + await priceFeed.setPrice(price); + const { netDebt } = await openTrove({ + ICR: toBN(dec(200, 16)), + extraParams: { from: claimant }, + }); + await openTrove({ + extraZUSDAmount: netDebt, + extraParams: { from: whale, value: dec(3000, "ether") }, + }); + await th.fastForwardTime(timeValues.SECONDS_IN_ONE_WEEK * 2, web3.currentProvider); + await th.redeemCollateralAndGetTxObject(whale, contracts, netDebt); + const gross = await collSurplusPool.getCollateral(claimant); + assert.isTrue(gross.gt(toBN(0)), "setup failed: no surplus created"); + return gross; + }; + + // --- claimCollWithFee access control (pool-side) --- + + it("claimCollWithFee: reverts when caller is not BorrowerOperations", async () => { + // The surplus is funded FIRST and the reason string is checked, so the + // caller gate is the only thing that can reject this call. Without both, + // the test passes on the later `claimableColl > 0` require and would + // survive deleting `_requireCallerIsBorrowerOperations()` entirely. + const gross = await setupSurplus(alice); + await assertRevertWithReason( + collSurplusPool.claimCollWithFee(alice, feeReceiver, 0, { from: alice }), + "CollSurplusPool: Caller is not Borrower Operations" + ); + assert.isTrue( + (await collSurplusPool.getCollateral(alice)).eq(gross), + "surplus touched by a rejected call" + ); + }); + + // --- fee-active claim --- + + it("claimCollateral (fee active): feeReceiver += fee, claimant += net, pool getETH -= gross, ExitFeeApplied exact", async () => { + const gross = await setupSurplus(alice); + await borrowerOperations.setExitFeeController(controller.address, { from: owner }); + await controller.configure(true, 50, feeReceiver, NONE); // 50 bps + + const fee = gross.mul(toBN(50)).div(toBN(10000)); + const net = gross.sub(fee); + + const poolEthBefore = await collSurplusPool.getETH(); + const poolRawBefore = toBN(await web3.eth.getBalance(collSurplusPool.address)); + const frBefore = toBN(await web3.eth.getBalance(feeReceiver)); + const aliceBefore = toBN(await web3.eth.getBalance(alice)); + + const tx = await borrowerOperations.claimCollateral({ from: alice, gasPrice: GAS_PRICE }); + const gasCost = GAS_PRICE.mul(toBN(tx.receipt.gasUsed)); + + assert.isTrue( + (await collSurplusPool.getETH()).eq(poolEthBefore.sub(gross)), + "pool getETH != -gross" + ); + assert.isTrue( + toBN(await web3.eth.getBalance(collSurplusPool.address)).eq(poolRawBefore.sub(gross)), + "pool raw balance != -gross" + ); + assert.isTrue( + toBN(await web3.eth.getBalance(collSurplusPool.address)).eq( + await collSurplusPool.getETH() + ), + "pool raw balance drifted from getETH()" + ); + assert.isTrue( + toBN(await web3.eth.getBalance(feeReceiver)).eq(frBefore.add(fee)), + "feeReceiver != +fee" + ); + assert.isTrue( + toBN(await web3.eth.getBalance(alice)).eq(aliceBefore.add(net).sub(gasCost)), + "claimant != +net (minus gas)" + ); + assert.isTrue( + (await collSurplusPool.getCollateral(alice)).eq(toBN(0)), + "claimable not zeroed" + ); + + const ev = getEvent(tx, "ExitFeeApplied"); + assert.isDefined(ev, "ExitFeeApplied not emitted"); + // Pins the surplus claim to its OWN surface: the controller mock ignores + // surfaceId, so a hook quoting SURFACE_ZERO_WITHDRAW_COLL here would charge + // the borrower-exit policy on surplus claims and every other assertion in + // this file would still pass. + assertSurface(ev, SURFACE_ZERO_CLAIM_SURPLUS, "claimCollateral ExitFeeApplied"); + assert.equal(ev.args.actor, alice); + assert.equal(ev.args.recipient, alice); + assert.equal(ev.args.asset, ZERO_ADDRESS); + assert.equal(ev.args.subProduct, ZERO_ADDRESS); + assert.equal(ev.args.feeReceiver, feeReceiver); + assert.isTrue(toBN(ev.args.grossAmount).eq(gross)); + assert.isTrue(toBN(ev.args.feeAmount).eq(fee)); + assert.isTrue(toBN(ev.args.netAmount).eq(net)); + assert.isUndefined(getEvent(tx, "ExitFeeSkipped")); + }); + + it("claimCollateral: controller unset → claimant receives FULL gross, ExitFeeSkipped(CONTROLLER_REVERT), state == baseline", async () => { + const gross = await setupSurplus(alice); + + const poolEthBefore = await collSurplusPool.getETH(); + const frBefore = toBN(await web3.eth.getBalance(feeReceiver)); + const aliceBefore = toBN(await web3.eth.getBalance(alice)); + + const tx = await borrowerOperations.claimCollateral({ from: alice, gasPrice: GAS_PRICE }); + const gasCost = GAS_PRICE.mul(toBN(tx.receipt.gasUsed)); + + assert.isTrue((await collSurplusPool.getETH()).eq(poolEthBefore.sub(gross))); + assert.isTrue( + toBN(await web3.eth.getBalance(feeReceiver)).eq(frBefore), + "feeReceiver must be untouched" + ); + assert.isTrue( + toBN(await web3.eth.getBalance(alice)).eq(aliceBefore.add(gross).sub(gasCost)), + "claimant != +FULL gross" + ); + assert.isTrue((await collSurplusPool.getCollateral(alice)).eq(toBN(0))); + + const ev = getEvent(tx, "ExitFeeSkipped"); + assert.isDefined(ev, "ExitFeeSkipped not emitted"); + assertSurface(ev, SURFACE_ZERO_CLAIM_SURPLUS, "claimCollateral ExitFeeSkipped"); + assert.equal(toBN(ev.args.reason).toNumber(), CONTROLLER_REVERT); + assert.isTrue(toBN(ev.args.grossAmount).eq(gross)); + assert.isUndefined(getEvent(tx, "ExitFeeApplied")); + }); + + it("claimCollateral: fee-path pool drain identical to baseline no-fee drain (no residue)", async () => { + const gross = await setupSurplus(alice); + const poolEthBefore = await collSurplusPool.getETH(); + + const inner = (await timeMachine.takeSnapshot())["result"]; + + // baseline: no controller → untouched claimColl path + await borrowerOperations.claimCollateral({ from: alice }); + const baseDrain = poolEthBefore.sub(await collSurplusPool.getETH()); + const baseRaw = toBN(await web3.eth.getBalance(collSurplusPool.address)); + + await timeMachine.revertToSnapshot(inner); + + // fee-active + await borrowerOperations.setExitFeeController(controller.address, { from: owner }); + await controller.configure(true, 50, feeReceiver, NONE); + await borrowerOperations.claimCollateral({ from: alice }); + const feeDrain = poolEthBefore.sub(await collSurplusPool.getETH()); + + assert.isTrue(baseDrain.eq(gross), "baseline drain != gross"); + assert.isTrue(feeDrain.eq(baseDrain), "fee-path drain != baseline (residue!)"); + assert.isTrue( + toBN(await web3.eth.getBalance(collSurplusPool.address)).eq(baseRaw), + "fee-path raw pool balance != baseline" + ); + }); + + // --- fail-open matrix --- + + it("claimCollateral: controller inactive → full gross, ExitFeeSkipped(INACTIVE)", async () => { + const gross = await setupSurplus(alice); + await borrowerOperations.setExitFeeController(controller.address, { from: owner }); + await controller.configure(false, 50, feeReceiver, INACTIVE); + + const aliceBefore = toBN(await web3.eth.getBalance(alice)); + const frBefore = toBN(await web3.eth.getBalance(feeReceiver)); + const tx = await borrowerOperations.claimCollateral({ from: alice, gasPrice: GAS_PRICE }); + const gasCost = GAS_PRICE.mul(toBN(tx.receipt.gasUsed)); + + assert.isTrue( + toBN(await web3.eth.getBalance(alice)).eq(aliceBefore.add(gross).sub(gasCost)) + ); + assert.isTrue(toBN(await web3.eth.getBalance(feeReceiver)).eq(frBefore)); + const ev = getEvent(tx, "ExitFeeSkipped"); + assert.isDefined(ev); + assert.equal(toBN(ev.args.reason).toNumber(), INACTIVE); + assert.isUndefined(getEvent(tx, "ExitFeeApplied")); + }); + + it("claimCollateral: controller destroyed after set → full gross, ExitFeeSkipped(CONTROLLER_REVERT)", async () => { + const gross = await setupSurplus(alice); + await borrowerOperations.setExitFeeController(controller.address, { from: owner }); + await controller.configure(true, 50, feeReceiver, NONE); + await controller.destroy(); // code-less controller → extcodesize fail-open path + + const aliceBefore = toBN(await web3.eth.getBalance(alice)); + const tx = await borrowerOperations.claimCollateral({ from: alice, gasPrice: GAS_PRICE }); + const gasCost = GAS_PRICE.mul(toBN(tx.receipt.gasUsed)); + + assert.isTrue( + toBN(await web3.eth.getBalance(alice)).eq(aliceBefore.add(gross).sub(gasCost)) + ); + const ev = getEvent(tx, "ExitFeeSkipped"); + assert.isDefined(ev); + assert.equal(toBN(ev.args.reason).toNumber(), CONTROLLER_REVERT); + }); + + it("claimCollateral: controller reverts → full gross, ExitFeeSkipped(CONTROLLER_REVERT)", async () => { + const gross = await setupSurplus(alice); + await borrowerOperations.setExitFeeController(controller.address, { from: owner }); + await controller.setRevert(true); + + const aliceBefore = toBN(await web3.eth.getBalance(alice)); + const tx = await borrowerOperations.claimCollateral({ from: alice, gasPrice: GAS_PRICE }); + const gasCost = GAS_PRICE.mul(toBN(tx.receipt.gasUsed)); + + assert.isTrue( + toBN(await web3.eth.getBalance(alice)).eq(aliceBefore.add(gross).sub(gasCost)) + ); + const ev = getEvent(tx, "ExitFeeSkipped"); + assert.isDefined(ev); + assert.equal(toBN(ev.args.reason).toNumber(), CONTROLLER_REVERT); + }); + + it("claimCollateral: malformed quote (fee > gross) → full gross, ExitFeeSkipped(INVALID_QUOTE)", async () => { + const gross = await setupSurplus(alice); + await borrowerOperations.setExitFeeController(controller.address, { from: owner }); + await controller.configure(true, 50, feeReceiver, NONE); + await controller.setForcedAmounts(true, gross.add(toBN(1)), 0); + + const aliceBefore = toBN(await web3.eth.getBalance(alice)); + const frBefore = toBN(await web3.eth.getBalance(feeReceiver)); + const tx = await borrowerOperations.claimCollateral({ from: alice, gasPrice: GAS_PRICE }); + const gasCost = GAS_PRICE.mul(toBN(tx.receipt.gasUsed)); + + assert.isTrue( + toBN(await web3.eth.getBalance(alice)).eq(aliceBefore.add(gross).sub(gasCost)) + ); + assert.isTrue(toBN(await web3.eth.getBalance(feeReceiver)).eq(frBefore)); + const ev = getEvent(tx, "ExitFeeSkipped"); + assert.isDefined(ev); + assert.equal(toBN(ev.args.reason).toNumber(), INVALID_QUOTE); + assert.equal( + toBN(ev.args.rateBps).toNumber(), + 50, + "skip must preserve the controller's rateBps" + ); + }); + + it("claimCollateral: reverting feeReceiver → feePaid=false, full gross to claimant, ExitFeeSkipped(VAULT_REVERT)", async () => { + const gross = await setupSurplus(alice); + const badReceiver = await NonPayable.new(); // receive() reverts while isPayable=false + await borrowerOperations.setExitFeeController(controller.address, { from: owner }); + await controller.configure(true, 50, badReceiver.address, NONE); + + const poolEthBefore = await collSurplusPool.getETH(); + const aliceBefore = toBN(await web3.eth.getBalance(alice)); + const tx = await borrowerOperations.claimCollateral({ from: alice, gasPrice: GAS_PRICE }); + const gasCost = GAS_PRICE.mul(toBN(tx.receipt.gasUsed)); + + assert.isTrue( + (await collSurplusPool.getETH()).eq(poolEthBefore.sub(gross)), + "pool != -gross" + ); + assert.isTrue( + toBN(await web3.eth.getBalance(alice)).eq(aliceBefore.add(gross).sub(gasCost)), + "claimant must receive FULL gross when the fee leg fails" + ); + assert.isTrue(toBN(await web3.eth.getBalance(badReceiver.address)).eq(toBN(0))); + assert.isTrue( + toBN(await web3.eth.getBalance(collSurplusPool.address)).eq( + await collSurplusPool.getETH() + ), + "pool raw balance drifted from getETH()" + ); + + const ev = getEvent(tx, "ExitFeeSkipped"); + assert.isDefined(ev); + assert.equal(toBN(ev.args.reason).toNumber(), VAULT_REVERT); + assert.equal(toBN(ev.args.rateBps).toNumber(), 50); + assert.isUndefined(getEvent(tx, "ExitFeeApplied")); + }); + + // --- edges --- + + it("claimCollateral: zero surplus reverts exactly as today (fee active and inactive)", async () => { + // Reason-checked: the point of this test is that the fee hook does not + // change WHICH revert a zero-surplus claim produces, so asserting merely + // "it reverted" would not prove the claim. + await assertRevertWithReason( + borrowerOperations.claimCollateral({ from: alice }), + "CollSurplusPool: No collateral available to claim" + ); + await borrowerOperations.setExitFeeController(controller.address, { from: owner }); + await controller.configure(true, 50, feeReceiver, NONE); + await assertRevertWithReason( + borrowerOperations.claimCollateral({ from: alice }), + "CollSurplusPool: No collateral available to claim" + ); + }); + + it("claimCollateral: 100% fee policy (fee == gross) → user leg sends 0 and succeeds, ExitFeeApplied(net=0)", async () => { + const gross = await setupSurplus(alice); + await borrowerOperations.setExitFeeController(controller.address, { from: owner }); + await controller.configure(true, 0, feeReceiver, NONE); + await controller.setForcedAmounts(true, gross, 0); // fee == gross (pool-safe) + + const frBefore = toBN(await web3.eth.getBalance(feeReceiver)); + const aliceBefore = toBN(await web3.eth.getBalance(alice)); + const tx = await borrowerOperations.claimCollateral({ from: alice, gasPrice: GAS_PRICE }); + const gasCost = GAS_PRICE.mul(toBN(tx.receipt.gasUsed)); + + assert.isTrue( + toBN(await web3.eth.getBalance(feeReceiver)).eq(frBefore.add(gross)), + "feeReceiver != +gross" + ); + assert.isTrue( + toBN(await web3.eth.getBalance(alice)).eq(aliceBefore.sub(gasCost)), + "claimant should net 0" + ); + assert.isTrue((await collSurplusPool.getCollateral(alice)).eq(toBN(0))); + + const ev = getEvent(tx, "ExitFeeApplied"); + assert.isDefined(ev); + assert.isTrue(toBN(ev.args.feeAmount).eq(gross)); + assert.isTrue(toBN(ev.args.netAmount).eq(toBN(0))); + }); + + // --- reentrancy --- + + it("claimCollateral: reentrant claimant gets 'No collateral' on the inner call; single net payout only", async () => { + const price = toBN(dec(100, 18)); + await priceFeed.setPrice(price); + + const attacker = await ReentrantSurplusClaimer.new(borrowerOperations.address); + // Attacker opens its own ~200%-ICR trove (mirrors the NonPayable pattern in + // tests/js/CollSurplusPool.js), then whale fully redeems it → surplus parked + // for the attacker contract. + const zusdAmount = toBN(dec(3000, 18)); + const netDebt = await th.getAmountWithBorrowingFee(contracts, zusdAmount); + await attacker.openTrove( + toBN(dec(1, 18)), + zusdAmount, + attacker.address, + attacker.address, + { + value: toBN(dec(60, 18)), + } + ); + await openTrove({ + extraZUSDAmount: netDebt, + extraParams: { from: whale, value: dec(3000, "ether") }, + }); + await th.fastForwardTime(timeValues.SECONDS_IN_ONE_WEEK * 2, web3.currentProvider); + await th.redeemCollateralAndGetTxObject(whale, contracts, netDebt); + + const gross = await collSurplusPool.getCollateral(attacker.address); + assert.isTrue(gross.gt(toBN(0)), "setup failed: no attacker surplus"); + + await borrowerOperations.setExitFeeController(controller.address, { from: owner }); + await controller.configure(true, 50, feeReceiver, NONE); + const fee = gross.mul(toBN(50)).div(toBN(10000)); + const net = gross.sub(fee); + + await attacker.claim(); + + assert.isTrue(await attacker.reentryAttempted(), "attacker never re-entered"); + assert.isFalse(await attacker.reentrySucceeded(), "reentrant inner claim MUST revert"); + assert.isTrue( + toBN(await attacker.totalReceived()).eq(net), + "attacker got more than one net payout" + ); + assert.isTrue((await collSurplusPool.getCollateral(attacker.address)).eq(toBN(0))); + assert.isTrue( + toBN(await web3.eth.getBalance(collSurplusPool.address)).eq( + await collSurplusPool.getETH() + ), + "pool raw balance drifted from getETH()" + ); + }); + + // --- hardening: fee-leg gas cap (gas-sink receiver cannot starve the claim) --- + + it("claimCollateral: gas-sink feeReceiver (success mode) → FEE_LEG_GAS_CAP bounds the burn, both legs settle, ExitFeeApplied", async () => { + const gross = await setupSurplus(alice); + const sink = await GasSinkFeeReceiver.new(); + await sink.setConsumeAll(false); // burn to floor, then RETURN SUCCESS + await borrowerOperations.setExitFeeController(controller.address, { from: owner }); + await controller.configure(true, 50, sink.address, NONE); + + const fee = gross.mul(toBN(50)).div(toBN(10000)); + const net = gross.sub(fee); + + const poolEthBefore = await collSurplusPool.getETH(); + const aliceBefore = toBN(await web3.eth.getBalance(alice)); + + // Explicit generous gas limit: without the cap the sink would burn ~63/64 of + // it (~1.4M). The gasUsed bound below is the actual cap regression guard: with + // FEE_LEG_GAS_CAP the whole tx fits comfortably under 500k; delete the cap and + // the sink's burn pushes gasUsed to ~1.45M, failing this test even though an + // EOA claimant would still get paid. + const tx = await borrowerOperations.claimCollateral({ + from: alice, + gas: 1500000, + gasPrice: GAS_PRICE, + }); + const gasCost = GAS_PRICE.mul(toBN(tx.receipt.gasUsed)); + + assert.isBelow(tx.receipt.gasUsed, 500000, "fee-leg burn not confined by FEE_LEG_GAS_CAP"); + assert.isTrue( + (await collSurplusPool.getETH()).eq(poolEthBefore.sub(gross)), + "pool getETH != -gross" + ); + assert.isTrue( + toBN(await web3.eth.getBalance(alice)).eq(aliceBefore.add(net).sub(gasCost)), + "claimant != +net (minus gas)" + ); + assert.isTrue(toBN(await sink.totalReceived()).eq(fee), "sink totalReceived != fee"); + assert.isTrue( + (await collSurplusPool.getCollateral(alice)).eq(toBN(0)), + "claimable not zeroed" + ); + + const ev = getEvent(tx, "ExitFeeApplied"); + assert.isDefined(ev, "ExitFeeApplied not emitted"); + assert.isTrue(toBN(ev.args.feeAmount).eq(fee)); + assert.isTrue(toBN(ev.args.netAmount).eq(net)); + assert.equal(ev.args.feeReceiver, sink.address); + assert.isUndefined(getEvent(tx, "ExitFeeSkipped")); + }); + + it("claimCollateral: gas-sink feeReceiver (OOG mode) → fee leg fails fail-open, FULL gross to claimant, ExitFeeSkipped(VAULT_REVERT)", async () => { + const gross = await setupSurplus(alice); + const sink = await GasSinkFeeReceiver.new(); + await sink.setConsumeAll(true); // burn until OOG → the fee-leg call fails + await borrowerOperations.setExitFeeController(controller.address, { from: owner }); + await controller.configure(true, 50, sink.address, NONE); + + const poolEthBefore = await collSurplusPool.getETH(); + const aliceBefore = toBN(await web3.eth.getBalance(alice)); + + const tx = await borrowerOperations.claimCollateral({ + from: alice, + gas: 1500000, + gasPrice: GAS_PRICE, + }); + const gasCost = GAS_PRICE.mul(toBN(tx.receipt.gasUsed)); + + // Cap regression guard (see success-mode test): an uncapped OOG-mode sink + // burns its full 63/64 forwarded allowance (~1.4M) before failing. + assert.isBelow(tx.receipt.gasUsed, 500000, "fee-leg burn not confined by FEE_LEG_GAS_CAP"); + assert.isTrue( + (await collSurplusPool.getETH()).eq(poolEthBefore.sub(gross)), + "pool != -gross" + ); + assert.isTrue( + toBN(await web3.eth.getBalance(alice)).eq(aliceBefore.add(gross).sub(gasCost)), + "claimant must receive FULL gross when the fee leg OOGs" + ); + assert.isTrue( + toBN(await sink.totalReceived()).eq(toBN(0)), + "sink received despite its receive reverting" + ); + + const ev = getEvent(tx, "ExitFeeSkipped"); + assert.isDefined(ev); + assert.equal(toBN(ev.args.reason).toNumber(), VAULT_REVERT); + assert.isUndefined(getEvent(tx, "ExitFeeApplied")); + }); + + // --- hardening: zero-receiver demotion (fee-burn-to-0x0 hole) --- + + it("claimCollateral: feeReceiver == address(0) demoted → FULL gross to claimant, ExitFeeSkipped(DISABLED), no fee burned", async () => { + const gross = await setupSurplus(alice); + await borrowerOperations.setExitFeeController(controller.address, { from: owner }); + await controller.configure(true, 50, ZERO_ADDRESS, NONE); // charging quote into 0x0 + + const poolEthBefore = await collSurplusPool.getETH(); + const aliceBefore = toBN(await web3.eth.getBalance(alice)); + + const tx = await borrowerOperations.claimCollateral({ from: alice, gasPrice: GAS_PRICE }); + const gasCost = GAS_PRICE.mul(toBN(tx.receipt.gasUsed)); + + assert.isTrue( + (await collSurplusPool.getETH()).eq(poolEthBefore.sub(gross)), + "pool != -gross" + ); + assert.isTrue( + toBN(await web3.eth.getBalance(alice)).eq(aliceBefore.add(gross).sub(gasCost)), + "claimant must receive FULL gross (no fee burned to 0x0)" + ); + assert.isTrue((await collSurplusPool.getCollateral(alice)).eq(toBN(0))); + + const ev = getEvent(tx, "ExitFeeSkipped"); + assert.isDefined(ev, "ExitFeeSkipped not emitted"); + assert.equal(toBN(ev.args.reason).toNumber(), DISABLED); + assert.isUndefined(getEvent(tx, "ExitFeeApplied")); + }); + + // --- ordering precondition guard (activation-ordering hazard, documented) --- + + it("claimCollateral: pre-upgrade pool + active surface REVERTS — pool setImplementation MUST precede surface activation", async () => { + // Simulate the LIVE pool implementation before the proxy is upgraded: it has + // claimColl but NOT claimCollWithFee (no fallback). There is intentionally no + // try/catch in the hook — a pool-side revert must surface loudly rather than + // silently degrade a fee-active claim into an unfee'd one. This test PINS the + // deployment ordering: the CollSurplusPool implementation upgrade must land + // before SURFACE_ZERO_CLAIM_SURPLUS is activated (handled atomically in one SIP). + const mock = await LegacyCollSurplusPoolMock.new(); + await mock.setBO(borrowerOperations.address); + await mock.setSurplus(alice, { value: dec(1, "ether") }); + + // Rewire BO to the legacy mock (setAddresses is re-callable, onlyOwner). Same + // 12 addresses as the original wiring, only collSurplusPool swapped. + await borrowerOperations.setAddresses( + contracts.feeDistributor.address, + contracts.liquityBaseParams.address, + contracts.troveManager.address, + contracts.activePool.address, + contracts.defaultPool.address, + contracts.stabilityPool.address, + contracts.gasPool.address, + mock.address, // collSurplusPool → legacy (pre-upgrade) mock + contracts.priceFeedTestnet.address, + contracts.sortedTroves.address, + contracts.zusdToken.address, + zeroStakingAddr, + { from: owner } + ); + + // Active surface with feeAmount > 0 → the hook calls the missing selector. + await borrowerOperations.setExitFeeController(controller.address, { from: owner }); + await controller.configure(true, 50, feeReceiver, NONE); + + await assertRevert(borrowerOperations.claimCollateral({ from: alice })); + + // Surplus untouched by the reverted claim. + assert.isTrue( + (await mock.getCollateral(alice)).eq(toBN(dec(1, "ether"))), + "surplus consumed despite revert" + ); + + // Companion safe case: with the surface inactive the claim degrades to the + // untouched claimColl path, which the legacy pool DOES implement — proving only + // the active-fee path depends on the pool upgrade. + await controller.configure(false, 50, feeReceiver, INACTIVE); + + const aliceBefore = toBN(await web3.eth.getBalance(alice)); + const frBefore = toBN(await web3.eth.getBalance(feeReceiver)); + const tx = await borrowerOperations.claimCollateral({ from: alice, gasPrice: GAS_PRICE }); + const gasCost = GAS_PRICE.mul(toBN(tx.receipt.gasUsed)); + + assert.isTrue( + toBN(await web3.eth.getBalance(alice)).eq( + aliceBefore.add(toBN(dec(1, "ether"))).sub(gasCost) + ), + "inactive-surface claim must succeed full-gross via legacy claimColl" + ); + assert.isTrue( + toBN(await web3.eth.getBalance(feeReceiver)).eq(frBefore), + "feeReceiver must be untouched" + ); + assert.isTrue( + (await mock.getCollateral(alice)).eq(toBN(0)), + "mock surplus not zeroed by claimColl" + ); + + const ev = getEvent(tx, "ExitFeeSkipped"); + assert.isDefined(ev, "ExitFeeSkipped not emitted"); + assert.equal(toBN(ev.args.reason).toNumber(), INACTIVE); + assert.isUndefined(getEvent(tx, "ExitFeeApplied")); + }); +}); diff --git a/tests-colfee/ZeroPreview.test.js b/tests-colfee/ZeroPreview.test.js new file mode 100644 index 0000000..80ddad5 --- /dev/null +++ b/tests-colfee/ZeroPreview.test.js @@ -0,0 +1,221 @@ +// ColFee — Zero exit-fee preview helper. +// previewZeroCollWithdrawExitFee(borrower, grossColl): read-only policy lookup +// hard-wired to SURFACE_ZERO_WITHDRAW_COLL / subProduct=address(0) / actor=borrower. +// Must agree wei-for-wei with the live _sendCollWithExitFee charge. + +const deploymentHelper = require("../utils/js/deploymentHelpers.js"); +const testHelpers = require("../utils/js/testHelpers.js"); +const timeMachine = require("ganache-time-traveler"); + +const BorrowerOperationsTester = artifacts.require("./BorrowerOperationsTester.sol"); +const TroveManagerTester = artifacts.require("TroveManagerTester"); +const MassetManagerTester = artifacts.require("MassetManagerTester"); +const ExitFeeControllerMock = artifacts.require("ExitFeeControllerMock"); + +const th = testHelpers.TestHelper; +const dec = th.dec; +const toBN = th.toBN; +const ZERO_ADDRESS = th.ZERO_ADDRESS; + +const NONE = 0; +const CONTROLLER_REVERT = 4; +const GAS_PRICE = toBN(dec(1, 9)); // 1 gwei — used to back gas out of the borrower's RBTC delta + +contract("ColFee — Zero exit-fee preview", async (accounts) => { + const [owner, alice, bob] = accounts; + const feeReceiver = accounts[995]; + const multisig = accounts[999]; + + let activePool; + let borrowerOperations; + let controller; + let contracts; + + const openTrove = async (params) => th.openTrove(contracts, params); + const getEvent = (tx, name) => tx.logs.find((l) => l.event === name); + + before(async () => { + contracts = await deploymentHelper.deployLiquityCore(); + const permit2 = contracts.permit2; + + contracts.borrowerOperations = await BorrowerOperationsTester.new(permit2.address); + contracts.massetManager = await MassetManagerTester.new(); + contracts.troveManager = await TroveManagerTester.new(permit2.address); + contracts = await deploymentHelper.deployZUSDTokenTester(contracts); + const ZEROContracts = await deploymentHelper.deployZEROTesterContractsHardhat(multisig); + await ZEROContracts.zeroToken.unprotectedMint(multisig, toBN(dec(20, 24))); + await deploymentHelper.connectZEROContracts(ZEROContracts); + await deploymentHelper.connectCoreContracts(contracts, ZEROContracts); + await deploymentHelper.connectZEROContractsToCore(ZEROContracts, contracts); + + activePool = contracts.activePool; + borrowerOperations = contracts.borrowerOperations; + await borrowerOperations.setMassetManagerAddress(contracts.massetManager.address); + }); + + let snapshotId; + beforeEach(async () => { + const snap = await timeMachine.takeSnapshot(); + snapshotId = snap["result"]; + controller = await ExitFeeControllerMock.new(); + }); + afterEach(async () => { + await timeMachine.revertToSnapshot(snapshotId); + }); + + const openRoomyTrove = async (from) => + openTrove({ + ICR: toBN(dec(10, 18)), + extraParams: { from, value: toBN(dec(100, "ether")) }, + }); + + it("preview matches the live withdrawColl charge wei-for-wei (active fee)", async () => { + await openRoomyTrove(alice); + await borrowerOperations.setExitFeeController(controller.address, { from: owner }); + await controller.configure(true, 50, feeReceiver, NONE); + + const gross = toBN(dec(1, "ether")); + const expectedFee = gross.mul(toBN(50)).div(toBN(10000)); + + // preview (read-only, callable by anyone — here bob simulates for alice) + const p = await borrowerOperations.previewZeroCollWithdrawExitFee(alice, gross, { + from: bob, + }); + assert.equal(p.active, true); + assert.equal(toBN(p.rateBps).toNumber(), 50); + assert.isTrue(toBN(p.feeAmount).eq(expectedFee)); + assert.isTrue(toBN(p.netAmount).eq(gross.sub(expectedFee))); + assert.equal(p.feeReceiver, feeReceiver); + assert.equal(toBN(p.reason).toNumber(), NONE); + + // execute and assert the live charge equals the preview wei-for-wei + const frBefore = toBN(await web3.eth.getBalance(feeReceiver)); + const tx = await borrowerOperations.withdrawColl(gross, alice, alice, { from: alice }); + const ev = getEvent(tx, "ExitFeeApplied"); + assert.isTrue( + toBN(ev.args.feeAmount).eq(toBN(p.feeAmount)), + "feeAmount preview != execution" + ); + assert.isTrue( + toBN(ev.args.netAmount).eq(toBN(p.netAmount)), + "netAmount preview != execution" + ); + assert.equal(ev.args.feeReceiver, p.feeReceiver); + assert.isTrue( + toBN(await web3.eth.getBalance(feeReceiver)).eq(frBefore.add(toBN(p.feeAmount))), + "feeReceiver delta != preview feeAmount" + ); + }); + + // A preview is only useful if it agrees with EXECUTION. Each non-charging case + // below therefore executes the same withdrawal and pins the live outcome to the + // previewed numbers, rather than only asserting the preview's own shape. + const assertLiveMatchesPreview = async (p, gross) => { + const frBefore = toBN(await web3.eth.getBalance(feeReceiver)); + const aliceBefore = toBN(await web3.eth.getBalance(alice)); + + const tx = await borrowerOperations.withdrawColl(gross, alice, alice, { + from: alice, + gasPrice: GAS_PRICE, + }); + const gasCost = GAS_PRICE.mul(toBN(tx.receipt.gasUsed)); + + assert.isTrue( + toBN(await web3.eth.getBalance(alice)).eq( + aliceBefore.add(toBN(p.netAmount)).sub(gasCost) + ), + "borrower delta != previewed netAmount" + ); + assert.isTrue( + toBN(await web3.eth.getBalance(feeReceiver)).eq(frBefore.add(toBN(p.feeAmount))), + "feeReceiver delta != previewed feeAmount" + ); + const ev = getEvent(tx, "ExitFeeSkipped"); + assert.isDefined(ev, "non-charging execution must emit ExitFeeSkipped"); + assert.equal( + toBN(ev.args.reason).toNumber(), + toBN(p.reason).toNumber(), + "live SkipReason != previewed reason" + ); + assert.equal( + toBN(ev.args.rateBps).toNumber(), + toBN(p.rateBps).toNumber(), + "live rateBps != previewed rateBps" + ); + assert.isUndefined(getEvent(tx, "ExitFeeApplied")); + }; + + it("preview reflects fail-open when controller is unset (active=false, CONTROLLER_REVERT, net==gross)", async () => { + await openRoomyTrove(alice); + const gross = toBN(dec(1, "ether")); + + const p = await borrowerOperations.previewZeroCollWithdrawExitFee(alice, gross); + assert.equal(p.active, false); + assert.isTrue(toBN(p.feeAmount).eq(toBN(0))); + assert.isTrue(toBN(p.netAmount).eq(gross), "net must equal gross when not charging"); + assert.equal(toBN(p.reason).toNumber(), CONTROLLER_REVERT); + + await assertLiveMatchesPreview(p, gross); + }); + + it("preview distinguishes an active zero-rate (exemption) from a positive charge", async () => { + await openRoomyTrove(alice); + await borrowerOperations.setExitFeeController(controller.address, { from: owner }); + await controller.configure(true, 0, feeReceiver, NONE); // active, 0 bps + const gross = toBN(dec(1, "ether")); + + const p = await borrowerOperations.previewZeroCollWithdrawExitFee(alice, gross); + assert.equal(p.active, true, "exemption is active=true"); + assert.equal(toBN(p.rateBps).toNumber(), 0); + assert.isTrue(toBN(p.feeAmount).eq(toBN(0))); + assert.isTrue(toBN(p.netAmount).eq(gross)); + assert.equal(toBN(p.reason).toNumber(), NONE); + + await assertLiveMatchesPreview(p, gross); + }); + + it("preview agrees with execution on a non-round gross that truncates", async () => { + // Round inputs (1 ether @ 50 bps) divide exactly, so they cannot show that + // the preview shares the live truncation. 37 bps on a non-round gross does. + await openRoomyTrove(alice); + await borrowerOperations.setExitFeeController(controller.address, { from: owner }); + await controller.configure(true, 37, feeReceiver, NONE); + + const gross = toBN("1234567890123456789"); + const p = await borrowerOperations.previewZeroCollWithdrawExitFee(alice, gross); + assert.equal(p.active, true); + assert.isTrue( + toBN(p.feeAmount) + .mul(toBN(10000)) + .lt(gross.mul(toBN(37))), + "chosen gross/rate must truncate, else this test proves nothing" + ); + assert.isTrue( + toBN(p.feeAmount).add(toBN(p.netAmount)).eq(gross), + "previewed fee + net != gross" + ); + + const frBefore = toBN(await web3.eth.getBalance(feeReceiver)); + const aliceBefore = toBN(await web3.eth.getBalance(alice)); + const tx = await borrowerOperations.withdrawColl(gross, alice, alice, { + from: alice, + gasPrice: GAS_PRICE, + }); + const gasCost = GAS_PRICE.mul(toBN(tx.receipt.gasUsed)); + + assert.isTrue( + toBN(await web3.eth.getBalance(feeReceiver)).eq(frBefore.add(toBN(p.feeAmount))), + "feeReceiver delta != previewed feeAmount" + ); + assert.isTrue( + toBN(await web3.eth.getBalance(alice)).eq( + aliceBefore.add(toBN(p.netAmount)).sub(gasCost) + ), + "borrower delta != previewed netAmount" + ); + const ev = getEvent(tx, "ExitFeeApplied"); + assert.isDefined(ev, "ExitFeeApplied not emitted"); + assert.isTrue(toBN(ev.args.feeAmount).eq(toBN(p.feeAmount))); + assert.isTrue(toBN(ev.args.netAmount).eq(toBN(p.netAmount))); + }); +}); diff --git a/tests-colfee/baselines/storage-layout.sovryn-perimeter-fee.json b/tests-colfee/baselines/storage-layout.sovryn-perimeter-fee.json new file mode 100644 index 0000000..fd1f2b9 --- /dev/null +++ b/tests-colfee/baselines/storage-layout.sovryn-perimeter-fee.json @@ -0,0 +1,167 @@ +{ + "_meta": { + "purpose": "Storage-layout zero-diff baseline for the Zero surplus-claim exit fee.", + "baseRef": "sovryn-perimeter-fee @ b6584a6", + "note": "Normalized solc storageLayout (AST id suffixes after ')' stripped) for the upgradeable BorrowerOperations and CollSurplusPool proxies plus ActivePool, captured from the UNMODIFIED b6584a6 tree, before the surplus-claim fee hook was applied. tests-colfee/StorageLayout.zerodiff.test.js asserts the current tree's layout is identical — proving the hook appends NO state. Regenerate only on an intentional, reviewed layout change (see the test header).", + "consumers": [ + "tests-colfee/StorageLayout.zerodiff.test.js", + "tests-colfee/utils/storageLayout.js" + ] + }, + "contracts/BorrowerOperations.sol:BorrowerOperations": [ + { + "label": "activePool", + "slot": "0", + "offset": 0, + "type": "t_contract(IActivePool)" + }, + { + "label": "defaultPool", + "slot": "1", + "offset": 0, + "type": "t_contract(IDefaultPool)" + }, + { + "label": "priceFeed", + "slot": "2", + "offset": 0, + "type": "t_contract(IPriceFeed)" + }, + { + "label": "liquityBaseParams", + "slot": "3", + "offset": 0, + "type": "t_contract(ILiquityBaseParams)" + }, + { + "label": "troveManager", + "slot": "4", + "offset": 0, + "type": "t_contract(ITroveManager)" + }, + { + "label": "stabilityPoolAddress", + "slot": "5", + "offset": 0, + "type": "t_address" + }, + { + "label": "gasPoolAddress", + "slot": "6", + "offset": 0, + "type": "t_address" + }, + { + "label": "collSurplusPool", + "slot": "7", + "offset": 0, + "type": "t_contract(ICollSurplusPool)" + }, + { + "label": "zeroStaking", + "slot": "8", + "offset": 0, + "type": "t_contract(IZEROStaking)" + }, + { + "label": "zeroStakingAddress", + "slot": "9", + "offset": 0, + "type": "t_address" + }, + { + "label": "zusdToken", + "slot": "10", + "offset": 0, + "type": "t_contract(IZUSDToken)" + }, + { + "label": "sortedTroves", + "slot": "11", + "offset": 0, + "type": "t_contract(ISortedTroves)" + }, + { + "label": "massetManager", + "slot": "12", + "offset": 0, + "type": "t_contract(IMassetManager)" + }, + { + "label": "feeDistributor", + "slot": "13", + "offset": 0, + "type": "t_contract(IFeeDistributor)" + } + ], + "contracts/ActivePool.sol:ActivePool": [ + { + "label": "borrowerOperationsAddress", + "slot": "0", + "offset": 0, + "type": "t_address" + }, + { + "label": "troveManagerAddress", + "slot": "1", + "offset": 0, + "type": "t_address" + }, + { + "label": "stabilityPoolAddress", + "slot": "2", + "offset": 0, + "type": "t_address" + }, + { + "label": "defaultPoolAddress", + "slot": "3", + "offset": 0, + "type": "t_address" + }, + { + "label": "ETH", + "slot": "4", + "offset": 0, + "type": "t_uint256" + }, + { + "label": "ZUSDDebt", + "slot": "5", + "offset": 0, + "type": "t_uint256" + } + ], + "contracts/CollSurplusPool.sol:CollSurplusPool": [ + { + "label": "borrowerOperationsAddress", + "slot": "0", + "offset": 0, + "type": "t_address" + }, + { + "label": "troveManagerAddress", + "slot": "1", + "offset": 0, + "type": "t_address" + }, + { + "label": "activePoolAddress", + "slot": "2", + "offset": 0, + "type": "t_address" + }, + { + "label": "ETH", + "slot": "3", + "offset": 0, + "type": "t_uint256" + }, + { + "label": "balances", + "slot": "4", + "offset": 0, + "type": "t_mapping(t_address,t_uint256)" + } + ] +} diff --git a/tests-colfee/utils/assertions.js b/tests-colfee/utils/assertions.js new file mode 100644 index 0000000..c012434 --- /dev/null +++ b/tests-colfee/utils/assertions.js @@ -0,0 +1,57 @@ +// Shared assertion helpers for the ColFee Zero test suites. +// +// `TestHelper.assertRevert(txPromise, message)` accepts an expected revert +// string but NEVER checks it (the comparison is commented out upstream), so a +// test written against it passes when the call reverts for a completely +// different reason — e.g. an access-control check can be deleted and the test +// still passes because a later `require` fires. `assertRevertWithReason` below +// asserts the reason string, so these suites prove WHICH guard rejected the +// call, not merely that something did. + +const { assert } = require("chai"); + +const NOT_REVERTED = "COLFEE_ASSERT_NOT_REVERTED"; + +/// Assert `txPromise` reverts AND that the revert reason contains `expected`. +async function assertRevertWithReason(txPromise, expected) { + assert.isString(expected, "assertRevertWithReason requires an expected reason string"); + try { + await txPromise; + } catch (err) { + assert.include(err.message, "revert", `expected a revert, got: ${err.message}`); + assert.include( + err.message, + expected, + `revert reason mismatch — expected to contain "${expected}", got: ${err.message}` + ); + return; + } + throw new Error(`${NOT_REVERTED}: expected revert containing "${expected}", but tx succeeded`); +} + +/// ColFee surface ids as the hooks compute them on-chain +/// (`keccak256("COLFEE:SURFACE_...")`). Asserting these on the emitted events +/// pins each hook to its OWN surface: the controller mock ignores `surfaceId`, +/// so without this a hook quoting the wrong surface would charge the wrong +/// policy in production and every test would still pass. +/// Computed lazily — `web3` is a test-runtime global, not available at require time. +const surfaceId = (name) => web3.utils.keccak256(`COLFEE:${name}`); +const SURFACE_ZERO_WITHDRAW_COLL = () => surfaceId("SURFACE_ZERO_WITHDRAW_COLL"); +const SURFACE_ZERO_CLAIM_SURPLUS = () => surfaceId("SURFACE_ZERO_CLAIM_SURPLUS"); + +/// Assert a ColFee event carries the expected surface id. +/// `expected` is one of the SURFACE_* thunks above. +function assertSurface(ev, expected, label) { + assert.equal( + ev.args.surfaceId, + expected(), + `${label || "ColFee event"} carries the wrong surfaceId` + ); +} + +module.exports = { + assertRevertWithReason, + assertSurface, + SURFACE_ZERO_WITHDRAW_COLL, + SURFACE_ZERO_CLAIM_SURPLUS, +}; diff --git a/tests-colfee/utils/storageLayout.js b/tests-colfee/utils/storageLayout.js new file mode 100644 index 0000000..124f12e --- /dev/null +++ b/tests-colfee/utils/storageLayout.js @@ -0,0 +1,49 @@ +// Shared helper for the storage-layout zero-diff regression guard. +// +// Extracts a NORMALIZED storage layout for a fully-qualified contract from the +// hardhat build-info (solc `storageLayout` output, enabled in hardhat.config.ts +// for 0.6.11). Normalization strips the solc AST node-id suffixes that follow a +// `)` in type strings (e.g. `t_struct(Foo)1234_storage` → +// `t_struct(Foo)_storage`) — those numeric ids shift with the compilation set +// and are NOT a storage-layout change. + +const hre = require("hardhat"); + +// Strip `)` id suffixes wherever they appear in a solc type string. +const normType = (t) => (typeof t === "string" ? t.replace(/\)[0-9]+/g, ")") : t); + +// Return a stable, comparable array of {label, slot, offset, type} for the +// contract's declared state variables. Throws (never silently empties) if the +// layout is missing/empty — an empty layout compared to an empty layout is a +// silent false PASS, which would make this guard useless. +async function normalizedLayout(fqName) { + const bi = await hre.artifacts.getBuildInfo(fqName); + if (!bi) throw new Error(`no build-info for ${fqName} (compile with storageLayout enabled)`); + const [source, name] = fqName.split(":"); + const artifact = bi.output.contracts[source] && bi.output.contracts[source][name]; + if (!artifact) throw new Error(`contract ${fqName} not found in its build-info output`); + const layout = artifact.storageLayout; + if (!layout || !Array.isArray(layout.storage)) { + throw new Error(`no storageLayout for ${fqName} — is "storageLayout" in outputSelection?`); + } + if (layout.storage.length === 0) { + throw new Error( + `${fqName} storageLayout has ZERO entries — refusing to treat as zero-diff (silent false pass)` + ); + } + return layout.storage + .map((s) => ({ + label: s.label, + slot: String(s.slot), + offset: s.offset, + type: normType(s.type), + })) + .sort( + (a, b) => + Number(a.slot) - Number(b.slot) || + a.offset - b.offset || + a.label.localeCompare(b.label) + ); +} + +module.exports = { normalizedLayout, normType }; diff --git a/yarn.lock b/yarn.lock index 4b0a3c0..2e0719f 100644 --- a/yarn.lock +++ b/yarn.lock @@ -1432,6 +1432,11 @@ resolved "https://registry.yarnpkg.com/@types/node/-/node-8.10.66.tgz#dd035d409df322acc83dff62a602f12a5783bbb3" integrity sha512-tktOkFUA4kXx2hhhrB8bIFb5TbwzS4uOhKEmwiD+NoiL0qtP2OQ9mFldbgD4dV1djrlBYP6eBuQZiWjuHUpqFw== +"@types/parse-json@^4.0.0": + version "4.0.2" + resolved "https://registry.yarnpkg.com/@types/parse-json/-/parse-json-4.0.2.tgz#5950e50960793055845e956c427fc2b0d70c5239" + integrity sha512-dISoDXWWQwUquiKsyZ4Ng+HX2KsPL7LyHKHQwgGFEA3IaKac4Obd+h2a/a6waisAoepJlBcx9paWqjA8/HVjCw== + "@types/pbkdf2@^3.0.0": version "3.1.0" resolved "https://registry.yarnpkg.com/@types/pbkdf2/-/pbkdf2-3.1.0.tgz#039a0e9b67da0cdc4ee5dab865caa6b267bb66b1" @@ -1622,6 +1627,13 @@ ansi-escapes@^4.2.1, ansi-escapes@^4.3.0: dependencies: type-fest "^0.21.3" +ansi-escapes@^5.0.0: + version "5.0.0" + resolved "https://registry.yarnpkg.com/ansi-escapes/-/ansi-escapes-5.0.0.tgz#b6a0caf0eef0c41af190e9a749e0c00ec04bb2a6" + integrity sha512-5GFMVX8HqE/TB+FuBJGuO5XG0WrsA6ptUqoODaT/n9mmUaZFkqnBueB4leqGBCmrUHnCnC4PCZTCd0E7QQ83bA== + dependencies: + type-fest "^1.0.2" + ansi-regex@^2.0.0: version "2.1.1" resolved "https://registry.yarnpkg.com/ansi-regex/-/ansi-regex-2.1.1.tgz#c3b33ab5ee360d86e0e628f0468ae7ef27d654df" @@ -1642,6 +1654,11 @@ ansi-regex@^5.0.1: resolved "https://registry.yarnpkg.com/ansi-regex/-/ansi-regex-5.0.1.tgz#082cb2c89c9fe8659a311a53bd6a4dc5301db304" integrity sha512-quJQXlTSUGL2LH9SUXo8VwsY4soanhgo6LNSm84E1LBcE8s3O0wpdiRzyR9z/ZZJMlMWv37qOOb9pdJlMUEKFQ== +ansi-regex@^6.2.2: + version "6.2.2" + resolved "https://registry.yarnpkg.com/ansi-regex/-/ansi-regex-6.2.2.tgz#60216eea464d864597ce2832000738a0589650c1" + integrity sha512-Bq3SmSpyFHaWjPk8If9yc6svM8c56dB5BAtW4Qbw5jHTwwXXcTLoRMkpDJp6VL0XzlWaCHTXrkFURMYmD0sLqg== + ansi-styles@^3.2.0, ansi-styles@^3.2.1: version "3.2.1" resolved "https://registry.yarnpkg.com/ansi-styles/-/ansi-styles-3.2.1.tgz#41fbb20243e50b12be0f04b8dedbf07520ce841d" @@ -1656,6 +1673,11 @@ ansi-styles@^4.0.0, ansi-styles@^4.1.0: dependencies: color-convert "^2.0.1" +ansi-styles@^6.0.0, ansi-styles@^6.1.0: + version "6.2.3" + resolved "https://registry.yarnpkg.com/ansi-styles/-/ansi-styles-6.2.3.tgz#c044d5dcc521a076413472597a1acb1f103c4041" + integrity sha512-4Dj6M28JB+oAH8kFkTLUo+a2jwOFkuqb3yucU0CANcRRUbxS0cP0nZYCGjcc3BNXwRIsUVmDGgzawme7zvJHvg== + antlr4@^4.11.0: version "4.13.0" resolved "https://registry.yarnpkg.com/antlr4/-/antlr4-4.13.0.tgz#25c0b17f0d9216de114303d38bafd6f181d5447f" @@ -2221,6 +2243,11 @@ chai@^4.2.0, chai@^4.3.4, chai@^4.3.8: pathval "^1.1.1" type-detect "^4.0.5" +chalk@5.3.0: + version "5.3.0" + resolved "https://registry.yarnpkg.com/chalk/-/chalk-5.3.0.tgz#67c20a7ebef70e7f3970a01f90fa210cb6860385" + integrity sha512-dLitG79d+GV1Nb/VYcCDFivJeK1hiukt9QjRNVOsUtTy1rR1YJsmpGGTZ3qJos+uw7WmWF4wUwBd9jxjocFC2w== + chalk@^2.3.2, chalk@^2.4.1, chalk@^2.4.2: version "2.4.2" resolved "https://registry.yarnpkg.com/chalk/-/chalk-2.4.2.tgz#cd42541677a54333cf541a49108c1432b44c9424" @@ -2389,6 +2416,13 @@ cli-cursor@^3.1.0: dependencies: restore-cursor "^3.1.0" +cli-cursor@^4.0.0: + version "4.0.0" + resolved "https://registry.yarnpkg.com/cli-cursor/-/cli-cursor-4.0.0.tgz#3cecfe3734bf4fe02a8361cbdc0f6fe28c6a57ea" + integrity sha512-VGtlMu3x/4DOtIUwEkRezxUZ2lBacNJCHash0N0WeZDBS+7Ux1dm3XWAgWYxLJFMMdOeXMHXorshEFhbMSGelg== + dependencies: + restore-cursor "^4.0.0" + cli-spinners@^2.5.0: version "2.9.0" resolved "https://registry.yarnpkg.com/cli-spinners/-/cli-spinners-2.9.0.tgz#5881d0ad96381e117bbe07ad91f2008fe6ffd8db" @@ -2413,6 +2447,14 @@ cli-table3@^0.6.0: optionalDependencies: "@colors/colors" "1.5.0" +cli-truncate@^3.1.0: + version "3.1.0" + resolved "https://registry.yarnpkg.com/cli-truncate/-/cli-truncate-3.1.0.tgz#3f23ab12535e3d73e839bb43e73c9de487db1389" + integrity sha512-wfOBkjXteqSnI59oPcJkcPl/ZmwvMMOj340qUIY1SKZCv0B9Cf4D4fAucRkIKQmsIuYK3x1rrgU7MeGRruiuiA== + dependencies: + slice-ansi "^5.0.0" + string-width "^5.0.0" + cli-width@^3.0.0: version "3.0.0" resolved "https://registry.yarnpkg.com/cli-width/-/cli-width-3.0.0.tgz#a2f48437a2caa9a22436e794bf071ec9e61cedf6" @@ -2495,6 +2537,11 @@ color-name@~1.1.4: resolved "https://registry.yarnpkg.com/color-name/-/color-name-1.1.4.tgz#c2a09a87acbde69543de6f63fa3995c826c536a2" integrity sha512-dOy+3AuW3a2wNbZHIuMZpTcgjGuLU/uBL/ubcZF9OXbDo8ff4O8yVp5Bf0efS8uEoYo5q4Fx7dY9OgQGXgAsQA== +colorette@^2.0.20: + version "2.0.20" + resolved "https://registry.yarnpkg.com/colorette/-/colorette-2.0.20.tgz#9eb793e6833067f7235902fcd3b09917a000a95a" + integrity sha512-IfEDxwoWIjkeXL1eXcDiow4UbKjhLdq6/EuSVR9GMN7KVH3r9gQ83e73hsz1Nd1T3ijd5xv1wcWRYO+D6kCI2w== + colors@1.4.0, colors@^1.1.2: version "1.4.0" resolved "https://registry.yarnpkg.com/colors/-/colors-1.4.0.tgz#c50491479d4c1bdaed2c9ced32cf7c7dc2360f78" @@ -2532,6 +2579,11 @@ command-line-usage@^6.1.0: table-layout "^1.0.2" typical "^5.2.0" +commander@11.0.0: + version "11.0.0" + resolved "https://registry.yarnpkg.com/commander/-/commander-11.0.0.tgz#43e19c25dbedc8256203538e8d7e9346877a6f67" + integrity sha512-9HMlXtt/BNoYr8ooyjjNRdIilOTkVJXB+GhxMTtOKwk0R4j4lS4NpjuqmRxroBfnfTSHQIHQB7wryHhXarNjmQ== + commander@3.0.2: version "3.0.2" resolved "https://registry.yarnpkg.com/commander/-/commander-3.0.2.tgz#6837c3fb677ad9933d1cfba42dd14d5117d6b39e" @@ -2542,6 +2594,11 @@ commander@^10.0.0: resolved "https://registry.yarnpkg.com/commander/-/commander-10.0.1.tgz#881ee46b4f77d1c1dccc5823433aa39b022cbe06" integrity sha512-y4Mg2tXshplEbSGzx7amzPwKKOCGuoSRP/CjEdwwk0FOGlUbq6lKuoyDZTNZkmxHdJtp54hdfY/JUrdL7Xfdug== +compare-versions@^3.6.0: + version "3.6.0" + resolved "https://registry.yarnpkg.com/compare-versions/-/compare-versions-3.6.0.tgz#1a5689913685e5a87637b8d3ffca75514ec41d62" + integrity sha512-W6Af2Iw1z4CB7q4uU4hv646dW9GQuBM+YpC0UvUCWSD8w90SJjp+ujJuXaEMtAXBtSqGfMPuFOVn4/+FlaqfBA== + concat-map@0.0.1: version "0.0.1" resolved "https://registry.yarnpkg.com/concat-map/-/concat-map-0.0.1.tgz#d8a96bd77fd68df7793a73036a3ba0d5405d477b" @@ -2619,6 +2676,17 @@ cors@^2.8.1: object-assign "^4" vary "^1" +cosmiconfig@^7.0.0: + version "7.1.0" + resolved "https://registry.yarnpkg.com/cosmiconfig/-/cosmiconfig-7.1.0.tgz#1443b9afa596b670082ea46cbd8f6a62b84635f6" + integrity sha512-AdmX6xUzdNASswsFtmwSt7Vj8po9IuqXm0UXz7QKPuEUmPB4XyjGfaAr2PSuELMwkRMVH1EpIkX5bTZGRB3eCA== + dependencies: + "@types/parse-json" "^4.0.0" + import-fresh "^3.2.1" + parse-json "^5.0.0" + path-type "^4.0.0" + yaml "^1.10.0" + cosmiconfig@^8.0.0: version "8.2.0" resolved "https://registry.yarnpkg.com/cosmiconfig/-/cosmiconfig-8.2.0.tgz#f7d17c56a590856cd1e7cee98734dca272b0d8fd" @@ -2703,6 +2771,15 @@ cross-spawn@^7.0.1, cross-spawn@^7.0.2: shebang-command "^2.0.0" which "^2.0.1" +cross-spawn@^7.0.3: + version "7.0.6" + resolved "https://registry.yarnpkg.com/cross-spawn/-/cross-spawn-7.0.6.tgz#8a58fe78f00dcd70c370451759dfbfaf03e8ee9f" + integrity sha512-uV2QOWP2nWzsy2aMp8aRibhi9dlzF5Hgh5SHaB9OiTGEyDTiJJyx0uy51QXdyWbtAHNua4XJzUKca3OzKUd3vA== + dependencies: + path-key "^3.1.0" + shebang-command "^2.0.0" + which "^2.0.1" + "crypt@>= 0.0.1": version "0.0.2" resolved "https://registry.yarnpkg.com/crypt/-/crypt-0.0.2.tgz#88d7ff7ec0dfb86f713dc87bbb42d044d3e6c41b" @@ -2965,6 +3042,11 @@ dotenv@^16.0.3: resolved "https://registry.yarnpkg.com/dotenv/-/dotenv-16.3.1.tgz#369034de7d7e5b120972693352a3bf112172cc3e" integrity sha512-IPzF4w4/Rd94bA9imS68tZBaYyBWSCE47V1RGuMrB94iyTOIEwRmVL2x/4An+6mETpLrKJ5hQkB8W4kFAadeIQ== +eastasianwidth@^0.2.0: + version "0.2.0" + resolved "https://registry.yarnpkg.com/eastasianwidth/-/eastasianwidth-0.2.0.tgz#696ce2ec0aa0e6ea93a397ffcf24aa7840c827cb" + integrity sha512-I88TYZWc9XiYHRQ4/3c5rjjfgkjhLyW2luGIheGERbNQ6OY7yTybanSpDXZa8y7VUP9YmDcYa+eyq4ca7iLqWA== + ecc-jsbn@~0.1.1: version "0.1.2" resolved "https://registry.yarnpkg.com/ecc-jsbn/-/ecc-jsbn-0.1.2.tgz#3a83a904e54353287874c564b7549386849a98c9" @@ -3001,6 +3083,11 @@ emoji-regex@^8.0.0: resolved "https://registry.yarnpkg.com/emoji-regex/-/emoji-regex-8.0.0.tgz#e818fd69ce5ccfcb404594f842963bf53164cc37" integrity sha512-MSjYzcWNOA0ewAHpz0MxpYFvwg6yjy1NG3xteoqz644VCo/RPgnr1/GGt+ic3iJTzQ8Eu3TdM14SawnVUmGE6A== +emoji-regex@^9.2.2: + version "9.2.2" + resolved "https://registry.yarnpkg.com/emoji-regex/-/emoji-regex-9.2.2.tgz#840c8803b0d8047f4ff0cf963176b32d4ef3ed72" + integrity sha512-L18DaJsXSUk2+42pv8mLs5jJT2hqFkFE4j21wOmgbUqsZ2hL72NsUU785g9RXgo3s0ZNgVl42TiHp3ZtOv/Vyg== + encode-utf8@^1.0.2: version "1.0.3" resolved "https://registry.yarnpkg.com/encode-utf8/-/encode-utf8-1.0.3.tgz#f30fdd31da07fb596f281beb2f6b027851994cda" @@ -3573,6 +3660,11 @@ eventemitter3@4.0.4: resolved "https://registry.yarnpkg.com/eventemitter3/-/eventemitter3-4.0.4.tgz#b5463ace635a083d018bdc7c917b4c5f10a85384" integrity sha512-rlaVLnVxtxvoyLsQQFBx53YmXHDxRIzzTLbdfxqi4yocpSjAxXwkU0cScM5JgSKMqEhrZpnvQ2D9gjylR0AimQ== +eventemitter3@^5.0.1: + version "5.0.4" + resolved "https://registry.yarnpkg.com/eventemitter3/-/eventemitter3-5.0.4.tgz#a86d66170433712dde814707ac52b5271ceb1feb" + integrity sha512-mlsTRyGaPBjPedk6Bvw+aqbsXDtoAyAzm5MO7JgU+yVRyMQ5O8bD4Kcci7BS85f93veegeCPkL8R4GLClnjLFw== + evp_bytestokey@^1.0.3: version "1.0.3" resolved "https://registry.yarnpkg.com/evp_bytestokey/-/evp_bytestokey-1.0.3.tgz#7fcbdb198dc71959432efe13842684e0525acb02" @@ -3581,6 +3673,21 @@ evp_bytestokey@^1.0.3: md5.js "^1.3.4" safe-buffer "^5.1.1" +execa@7.2.0: + version "7.2.0" + resolved "https://registry.yarnpkg.com/execa/-/execa-7.2.0.tgz#657e75ba984f42a70f38928cedc87d6f2d4fe4e9" + integrity sha512-UduyVP7TLB5IcAQl+OzLyLcS/l32W/GLg+AhHJ+ow40FOk2U3SAllPwR44v4vmdFwIWqpdwxxpQbF1n5ta9seA== + dependencies: + cross-spawn "^7.0.3" + get-stream "^6.0.1" + human-signals "^4.3.0" + is-stream "^3.0.0" + merge-stream "^2.0.0" + npm-run-path "^5.1.0" + onetime "^6.0.0" + signal-exit "^3.0.7" + strip-final-newline "^3.0.0" + execa@^1.0.0: version "1.0.0" resolved "https://registry.yarnpkg.com/execa/-/execa-1.0.0.tgz#c6236a5bb4df6d6f15e88e7f017798216749ddd8" @@ -3793,6 +3900,13 @@ find-up@^4.1.0: locate-path "^5.0.0" path-exists "^4.0.0" +find-versions@^4.0.0: + version "4.0.0" + resolved "https://registry.yarnpkg.com/find-versions/-/find-versions-4.0.0.tgz#3c57e573bf97769b8cb8df16934b627915da4965" + integrity sha512-wgpWy002tA+wgmO27buH/9KzyEOQnKsG/R0yrcjPT9BOFm0zRBVQbZ95nRGXWMywS8YR5knRbpohio0bcJABxQ== + dependencies: + semver-regex "^3.1.2" + find-yarn-workspace-root@^2.0.0: version "2.0.0" resolved "https://registry.yarnpkg.com/find-yarn-workspace-root/-/find-yarn-workspace-root-2.0.0.tgz#f47fb8d239c900eb78179aa81b66673eac88f7bd" @@ -4360,7 +4474,7 @@ hardhat-gas-reporter@^1.0.9: eth-gas-reporter "^0.2.25" sha1 "^1.1.1" -hardhat@^2.17.2: +hardhat@2.17.2: version "2.17.2" resolved "https://registry.yarnpkg.com/hardhat/-/hardhat-2.17.2.tgz#250a8c8e76029e9bfbfb9b9abee68d5b350b5d4a" integrity sha512-oUv40jBeHw0dKpbyQ+iH9cmNMziweLoTW3MnkNxJ2Gc0KGLrQR/1n4vV4xY60zn2LdmRgnwPqy3CgtY0mfwIIA== @@ -4618,6 +4732,27 @@ https-proxy-agent@^5.0.0: agent-base "6" debug "4" +human-signals@^4.3.0: + version "4.3.1" + resolved "https://registry.yarnpkg.com/human-signals/-/human-signals-4.3.1.tgz#ab7f811e851fca97ffbd2c1fe9a958964de321b2" + integrity sha512-nZXjEF2nbo7lIw3mgYjItAfgQXog3OjJogSbKa2CQIIvSGWcKgeJnQlNXip6NglNzYH45nSRiEVimMvYL8DDqQ== + +husky@^4.3.8: + version "4.3.8" + resolved "https://registry.yarnpkg.com/husky/-/husky-4.3.8.tgz#31144060be963fd6850e5cc8f019a1dfe194296d" + integrity sha512-LCqqsB0PzJQ/AlCgfrfzRe3e3+NvmefAdKQhRYpxS4u6clblBoDdzzvHi8fmxKRzvMxPY/1WZWzomPZww0Anow== + dependencies: + chalk "^4.0.0" + ci-info "^2.0.0" + compare-versions "^3.6.0" + cosmiconfig "^7.0.0" + find-versions "^4.0.0" + opencollective-postinstall "^2.0.2" + pkg-dir "^5.0.0" + please-upgrade-node "^3.2.0" + slash "^3.0.0" + which-pm-runs "^1.0.0" + iconv-lite@0.4.24, iconv-lite@^0.4.24: version "0.4.24" resolved "https://registry.yarnpkg.com/iconv-lite/-/iconv-lite-0.4.24.tgz#2022b4b25fbddc21d2f524974a474aafe733908b" @@ -4847,6 +4982,11 @@ is-fullwidth-code-point@^3.0.0: resolved "https://registry.yarnpkg.com/is-fullwidth-code-point/-/is-fullwidth-code-point-3.0.0.tgz#f116f8064fe90b3f7844a38997c0b75051269f1d" integrity sha512-zymm5+u+sCsSWyD9qNaejV3DFvhCKclKdizYaJUuHA83RLjb7nSuGnddCHGv0hk+KY7BMAlsWeK4Ueg6EV6XQg== +is-fullwidth-code-point@^4.0.0: + version "4.0.0" + resolved "https://registry.yarnpkg.com/is-fullwidth-code-point/-/is-fullwidth-code-point-4.0.0.tgz#fae3167c729e7463f8461ce512b080a49268aa88" + integrity sha512-O4L094N2/dZ7xqVdrXhh9r1KODPJpFms8B5sGdJLPy664AgvXsreZUyCQQNItZRDlYug4xStLjNp/sz3HvBowQ== + is-function@^1.0.1: version "1.0.2" resolved "https://registry.yarnpkg.com/is-function/-/is-function-1.0.2.tgz#4f097f30abf6efadac9833b17ca5dc03f8144e08" @@ -4930,6 +5070,11 @@ is-stream@^1.1.0: resolved "https://registry.yarnpkg.com/is-stream/-/is-stream-1.1.0.tgz#12d4a3dd4e68e0b79ceb8dbc84173ae80d91ca44" integrity sha512-uQPm8kcs47jx38atAcWTVxyltQYoPT68y9aWYdV6yWXSyW8mzSat0TL6CiWdZeCdF3KrAvpVtnHbTv4RN+rqdQ== +is-stream@^3.0.0: + version "3.0.0" + resolved "https://registry.yarnpkg.com/is-stream/-/is-stream-3.0.0.tgz#e6bfd7aa6bef69f4f472ce9bb681e3e57b4319ac" + integrity sha512-LnQR4bZ9IADDRSkvpqMGvt/tEJWclzklNgSw48V5EAaAeDd6qGvN8ei6k5p0tvxSR171VmGyHuTiAOfxAbr8kA== + is-string@^1.0.5, is-string@^1.0.7: version "1.0.7" resolved "https://registry.yarnpkg.com/is-string/-/is-string-1.0.7.tgz#0dd12bf2006f255bb58f695110eff7491eebc0fd" @@ -5239,11 +5384,44 @@ levn@~0.3.0: prelude-ls "~1.1.2" type-check "~0.3.2" +lilconfig@2.1.0: + version "2.1.0" + resolved "https://registry.yarnpkg.com/lilconfig/-/lilconfig-2.1.0.tgz#78e23ac89ebb7e1bfbf25b18043de756548e7f52" + integrity sha512-utWOt/GHzuUxnLKxB6dk81RoOeoNeHgbrXiuGk4yyF5qlRz+iIVWu56E2fqGHFrXz0QNUhLB/8nKqvRH66JKGQ== + lines-and-columns@^1.1.6: version "1.2.4" resolved "https://registry.yarnpkg.com/lines-and-columns/-/lines-and-columns-1.2.4.tgz#eca284f75d2965079309dc0ad9255abb2ebc1632" integrity sha512-7ylylesZQ/PV29jhEDl3Ufjo6ZX7gCqJr5F7PKrqc93v7fzSymt1BpwEU8nAUXs8qzzvqhbjhK5QZg6Mt/HkBg== +lint-staged@^13.2.0: + version "13.3.0" + resolved "https://registry.yarnpkg.com/lint-staged/-/lint-staged-13.3.0.tgz#7965d72a8d6a6c932f85e9c13ccf3596782d28a5" + integrity sha512-mPRtrYnipYYv1FEE134ufbWpeggNTo+O/UPzngoaKzbzHAthvR55am+8GfHTnqNRQVRRrYQLGW9ZyUoD7DsBHQ== + dependencies: + chalk "5.3.0" + commander "11.0.0" + debug "4.3.4" + execa "7.2.0" + lilconfig "2.1.0" + listr2 "6.6.1" + micromatch "4.0.5" + pidtree "0.6.0" + string-argv "0.3.2" + yaml "2.3.1" + +listr2@6.6.1: + version "6.6.1" + resolved "https://registry.yarnpkg.com/listr2/-/listr2-6.6.1.tgz#08b2329e7e8ba6298481464937099f4a2cd7f95d" + integrity sha512-+rAXGHh0fkEWdXBmX+L6mmfmXmXvDGEKzkjxO+8mP3+nI/r/CWznVBvsibXdxda9Zz0OW2e2ikphN3OwCT/jSg== + dependencies: + cli-truncate "^3.1.0" + colorette "^2.0.20" + eventemitter3 "^5.0.1" + log-update "^5.0.1" + rfdc "^1.3.0" + wrap-ansi "^8.1.0" + load-json-file@^1.0.0: version "1.1.0" resolved "https://registry.yarnpkg.com/load-json-file/-/load-json-file-1.1.0.tgz#956905708d58b4bab4c2261b04f59f31c99374c0" @@ -5350,6 +5528,17 @@ log-symbols@4.1.0, log-symbols@^4.1.0: chalk "^4.1.0" is-unicode-supported "^0.1.0" +log-update@^5.0.1: + version "5.0.1" + resolved "https://registry.yarnpkg.com/log-update/-/log-update-5.0.1.tgz#9e928bf70cb183c1f0c9e91d9e6b7115d597ce09" + integrity sha512-5UtUDQ/6edw4ofyljDNcOVJQ4c7OjDro4h3y8e1GQL5iYElYclVHJ3zeWchylvMaKnDbDilC8irOVyexnA/Slw== + dependencies: + ansi-escapes "^5.0.0" + cli-cursor "^4.0.0" + slice-ansi "^5.0.0" + strip-ansi "^7.0.1" + wrap-ansi "^8.0.1" + loupe@^2.3.1: version "2.3.6" resolved "https://registry.yarnpkg.com/loupe/-/loupe-2.3.6.tgz#76e4af498103c532d1ecc9be102036a21f787b53" @@ -5477,6 +5666,11 @@ merge-descriptors@1.0.1: resolved "https://registry.yarnpkg.com/merge-descriptors/-/merge-descriptors-1.0.1.tgz#b00aaa556dd8b44568150ec9d1b953f3f90cbb61" integrity sha512-cCi6g3/Zr1iqQi6ySbseM1Xvooa98N0w31jzUYrXPX2xqObmFGHJ0tQ5u74H3mVh7wLouTseZyYIq39g8cNp1w== +merge-stream@^2.0.0: + version "2.0.0" + resolved "https://registry.yarnpkg.com/merge-stream/-/merge-stream-2.0.0.tgz#52823629a14dd00c9770fb6ad47dc6310f2c1f60" + integrity sha512-abv/qOcuPfk3URPfDzmZU1LKmuw8kT+0nIHvKrKgFrwifol/doWcdA4ZqsWQ8ENrFKkd67Mfpo/LovbIUsbt3w== + merge2@^1.2.3, merge2@^1.3.0: version "1.4.1" resolved "https://registry.yarnpkg.com/merge2/-/merge2-1.4.1.tgz#4368892f885e907455a6fd7dc55c0c9d404990ae" @@ -5492,7 +5686,7 @@ micro-ftch@^0.3.1: resolved "https://registry.yarnpkg.com/micro-ftch/-/micro-ftch-0.3.1.tgz#6cb83388de4c1f279a034fb0cf96dfc050853c5f" integrity sha512-/0LLxhzP0tfiR5hcQebtudP56gUurs2CLkGarnCiB/OqEyUFQ6U3paQi/tgLv0hBJYt2rnr9MNpxz4fiiugstg== -micromatch@^4.0.2, micromatch@^4.0.4: +micromatch@4.0.5, micromatch@^4.0.2, micromatch@^4.0.4: version "4.0.5" resolved "https://registry.yarnpkg.com/micromatch/-/micromatch-4.0.5.tgz#bc8999a7cbbf77cdc89f132f6e467051b49090c6" integrity sha512-DMy+ERcEW2q8Z2Po+WNXuw3c5YaUSFjAO5GsJqfEl7UjvtIuFKO6ZrKvcItdy98dwFI2N1tg3zNIdKaQT+aNdA== @@ -5527,6 +5721,11 @@ mimic-fn@^2.0.0, mimic-fn@^2.1.0: resolved 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"^4.0.0" + nth-check@^2.0.1: version "2.1.1" resolved "https://registry.yarnpkg.com/nth-check/-/nth-check-2.1.1.tgz#c9eab428effce36cd6b92c924bdb000ef1f1ed1d" @@ -6065,6 +6271,13 @@ onetime@^5.1.0: dependencies: mimic-fn "^2.1.0" +onetime@^6.0.0: + version "6.0.0" + resolved "https://registry.yarnpkg.com/onetime/-/onetime-6.0.0.tgz#7c24c18ed1fd2e9bca4bd26806a33613c77d34b4" + integrity sha512-1FlR+gjXK7X+AsAHso35MnyN5KqGwJRi/31ft6x0M194ht7S+rWAvd7PHss9xSKMzE0asv1pyIHaJYq+BbacAQ== + dependencies: + mimic-fn "^4.0.0" + open@^7.4.2: version "7.4.2" resolved "https://registry.yarnpkg.com/open/-/open-7.4.2.tgz#b8147e26dcf3e426316c730089fd71edd29c2321" @@ -6073,6 +6286,11 @@ open@^7.4.2: is-docker "^2.0.0" is-wsl "^2.1.1" +opencollective-postinstall@^2.0.2: + version "2.0.3" + resolved "https://registry.yarnpkg.com/opencollective-postinstall/-/opencollective-postinstall-2.0.3.tgz#7a0fff978f6dbfa4d006238fbac98ed4198c3259" + integrity 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picomatch@^2.3.1: resolved "https://registry.yarnpkg.com/picomatch/-/picomatch-2.3.1.tgz#3ba3833733646d9d3e4995946c1365a67fb07a42" integrity sha512-JU3teHTNjmE2VCGFzuY8EXzCDVwEqB2a8fsIvwaStHhAWJEeVd1o1QD80CU6+ZdEXXSLbSsuLwJjkCBWqRQUVA== +pidtree@0.6.0: + version "0.6.0" + resolved "https://registry.yarnpkg.com/pidtree/-/pidtree-0.6.0.tgz#90ad7b6d42d5841e69e0a2419ef38f8883aa057c" + integrity sha512-eG2dWTVw5bzqGRztnHExczNxt5VGsE6OwTeCG3fdUf9KBsZzO3R5OIIIzWR+iZA0NtZ+RDVdaoE2dK1cn6jH4g== + pidtree@^0.3.0: version "0.3.1" resolved "https://registry.yarnpkg.com/pidtree/-/pidtree-0.3.1.tgz#ef09ac2cc0533df1f3250ccf2c4d366b0d12114a" @@ -6459,6 +6687,13 @@ pinkie@^2.0.0: resolved "https://registry.yarnpkg.com/pinkie/-/pinkie-2.0.4.tgz#72556b80cfa0d48a974e80e77248e80ed4f7f870" integrity sha512-MnUuEycAemtSaeFSjXKW/aroV7akBbY+Sv+RkyqFjgAe73F+MR0TBWKBRDkmfWq/HiFmdavfZ1G7h4SPZXaCSg== +pkg-dir@^5.0.0: + version "5.0.0" + resolved 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onetime "^5.1.0" signal-exit "^3.0.2" +restore-cursor@^4.0.0: + version "4.0.0" + resolved "https://registry.yarnpkg.com/restore-cursor/-/restore-cursor-4.0.0.tgz#519560a4318975096def6e609d44100edaa4ccb9" + integrity sha512-I9fPXU9geO9bHOt9pHHOhOkYerIMsmVaWB0rA2AI9ERh/+x/i7MV5HKBNrg+ljO5eoPVgCcnFuRjJ9uH6I/3eg== + dependencies: + onetime "^5.1.0" + signal-exit "^3.0.2" + reusify@^1.0.4: version "1.0.4" resolved "https://registry.yarnpkg.com/reusify/-/reusify-1.0.4.tgz#90da382b1e126efc02146e90845a88db12925d76" integrity sha512-U9nH88a3fc/ekCF1l0/UP1IosiuIjyTh7hBvXVMHYgVcfGvt897Xguj2UOLDeI5BG2m7/uwyaLVT6fbtCwTyzw== +rfdc@^1.3.0: + version "1.4.1" + resolved "https://registry.yarnpkg.com/rfdc/-/rfdc-1.4.1.tgz#778f76c4fb731d93414e8f925fbecf64cce7f6ca" + integrity sha512-q1b3N5QkRUWUl7iyylaaj3kOpIT0N2i9MqIEQXP73GVsN9cw3fdx8X63cEmWhJGi2PPCF23Ijp7ktmd39rawIA== + rimraf@^2.2.8, rimraf@^2.6.3, rimraf@^2.7.1: version "2.7.1" resolved "https://registry.yarnpkg.com/rimraf/-/rimraf-2.7.1.tgz#35797f13a7fdadc566142c29d4f07ccad483e3ec" @@ -7029,6 +7284,16 @@ secp256k1@^4.0.1: node-addon-api "^2.0.0" node-gyp-build "^4.2.0" +semver-compare@^1.0.0: + version "1.0.0" + resolved "https://registry.yarnpkg.com/semver-compare/-/semver-compare-1.0.0.tgz#0dee216a1c941ab37e9efb1788f6afc5ff5537fc" + integrity sha512-YM3/ITh2MJ5MtzaM429anh+x2jiLVjqILF4m4oyQB18W7Ggea7BfqdH/wGMK7dDiMghv/6WG7znWMwUDzJiXow== + +semver-regex@^3.1.2: + version "3.1.4" + resolved "https://registry.yarnpkg.com/semver-regex/-/semver-regex-3.1.4.tgz#13053c0d4aa11d070a2f2872b6b1e3ae1e1971b4" + integrity sha512-6IiqeZNgq01qGf0TId0t3NvKzSvUsjcpdEO3AQNeIjR6A2+ckTnQlDpl4qu1bjRv0RzN3FP9hzFmws3lKqRWkA== + "semver@2 || 3 || 4 || 5", semver@^5.3.0, semver@^5.5.0, semver@^5.6.0, semver@^5.7.0: version "5.7.2" resolved "https://registry.yarnpkg.com/semver/-/semver-5.7.2.tgz#48d55db737c3287cd4835e17fa13feace1c41ef8" @@ -7203,7 +7468,7 @@ side-channel@^1.0.4: get-intrinsic "^1.0.2" object-inspect "^1.9.0" -signal-exit@^3.0.0, signal-exit@^3.0.2: +signal-exit@^3.0.0, signal-exit@^3.0.2, signal-exit@^3.0.7: version "3.0.7" resolved "https://registry.yarnpkg.com/signal-exit/-/signal-exit-3.0.7.tgz#a9a1767f8af84155114eaabd73f99273c8f59ad9" integrity sha512-wnD2ZE+l+SPC/uoS0vXeE9L1+0wuaMqKlfz9AMUo38JsyLSBWSFcHR1Rri62LZc12vLr1gb3jl7iwQhgwpAbGQ== @@ -7246,6 +7511,14 @@ slice-ansi@^4.0.0: astral-regex "^2.0.0" is-fullwidth-code-point "^3.0.0" +slice-ansi@^5.0.0: + version "5.0.0" + resolved "https://registry.yarnpkg.com/slice-ansi/-/slice-ansi-5.0.0.tgz#b73063c57aa96f9cd881654b15294d95d285c42a" + integrity sha512-FC+lgizVPfie0kkhqUScwRu1O/lF6NOgJmlCgK+/LYxDCTk8sGelYaHDhFcDN+Sn3Cv+3VSa4Byeo+IMCzpMgQ== + dependencies: + ansi-styles "^6.0.0" + is-fullwidth-code-point "^4.0.0" + snake-case@^2.1.0: version "2.1.0" resolved "https://registry.yarnpkg.com/snake-case/-/snake-case-2.1.0.tgz#41bdb1b73f30ec66a04d4e2cad1b76387d4d6d9f" @@ -7459,6 +7732,11 @@ strict-uri-encode@^1.0.0: resolved "https://registry.yarnpkg.com/strict-uri-encode/-/strict-uri-encode-1.1.0.tgz#279b225df1d582b1f54e65addd4352e18faa0713" integrity sha512-R3f198pcvnB+5IpnBlRkphuE9n46WyVl8I39W/ZUTZLz4nqSP/oLYUrcnJrw462Ds8he4YKMov2efsTIw1BDGQ== +string-argv@0.3.2: + version "0.3.2" + resolved "https://registry.yarnpkg.com/string-argv/-/string-argv-0.3.2.tgz#2b6d0ef24b656274d957d54e0a4bbf6153dc02b6" + integrity sha512-aqD2Q0144Z+/RqG52NeHEkZauTAUWJO8c6yTftGJKO3Tja5tUgIfmIl6kExvhtxSDP7fXB6DvzkfMpCd/F3G+Q== + string-format@^2.0.0: version "2.0.0" resolved "https://registry.yarnpkg.com/string-format/-/string-format-2.0.0.tgz#f2df2e7097440d3b65de31b6d40d54c96eaffb9b" @@ -7499,6 +7777,15 @@ string-width@^4.1.0, string-width@^4.2.0, string-width@^4.2.3: is-fullwidth-code-point "^3.0.0" strip-ansi "^6.0.1" +string-width@^5.0.0, string-width@^5.0.1: + version "5.1.2" + resolved "https://registry.yarnpkg.com/string-width/-/string-width-5.1.2.tgz#14f8daec6d81e7221d2a357e668cab73bdbca794" + integrity sha512-HnLOCR3vjcY8beoNLtcjZ5/nxn2afmME6lhrDrebokqMap+XbeW8n9TXpPDOqdGK5qcI3oT0GKTW6wC7EMiVqA== + dependencies: + eastasianwidth "^0.2.0" + emoji-regex "^9.2.2" + strip-ansi "^7.0.1" + string.prototype.padend@^3.0.0: version "3.1.4" resolved "https://registry.yarnpkg.com/string.prototype.padend/-/string.prototype.padend-3.1.4.tgz#2c43bb3a89eb54b6750de5942c123d6c98dd65b6" @@ -7577,6 +7864,13 @@ strip-ansi@^6.0.0, strip-ansi@^6.0.1: dependencies: ansi-regex "^5.0.1" +strip-ansi@^7.0.1: + version "7.2.0" + resolved "https://registry.yarnpkg.com/strip-ansi/-/strip-ansi-7.2.0.tgz#d22a269522836a627af8d04b5c3fd2c7fa3e32e3" + integrity sha512-yDPMNjp4WyfYBkHnjIRLfca1i6KMyGCtsVgoKe/z1+6vukgaENdgGBZt+ZmKPc4gavvEZ5OgHfHdrazhgNyG7w== + dependencies: + ansi-regex "^6.2.2" + strip-bom@^2.0.0: version "2.0.0" resolved "https://registry.yarnpkg.com/strip-bom/-/strip-bom-2.0.0.tgz#6219a85616520491f35788bdbf1447a99c7e6b0e" @@ -7594,6 +7888,11 @@ strip-eof@^1.0.0: resolved "https://registry.yarnpkg.com/strip-eof/-/strip-eof-1.0.0.tgz#bb43ff5598a6eb05d89b59fcd129c983313606bf" integrity sha512-7FCwGGmx8mD5xQd3RPUvnSpUXHM3BWuzjtpD4TXsfcZ9EL4azvVVUscFYwD9nx8Kh+uCBC00XBtAykoMHwTh8Q== +strip-final-newline@^3.0.0: + version "3.0.0" + resolved "https://registry.yarnpkg.com/strip-final-newline/-/strip-final-newline-3.0.0.tgz#52894c313fbff318835280aed60ff71ebf12b8fd" + integrity sha512-dOESqjYr96iWYylGObzd39EuNTa5VJxyvVAEm5Jnh7KGo75V43Hk1odPQkNDyXNmUR6k+gEiDVXnjB8HJ3crXw== + strip-hex-prefix@1.0.0: version "1.0.0" resolved "https://registry.yarnpkg.com/strip-hex-prefix/-/strip-hex-prefix-1.0.0.tgz#0c5f155fef1151373377de9dbb588da05500e36f" @@ -7937,6 +8236,11 @@ type-fest@^0.7.1: resolved "https://registry.yarnpkg.com/type-fest/-/type-fest-0.7.1.tgz#8dda65feaf03ed78f0a3f9678f1869147f7c5c48" integrity sha512-Ne2YiiGN8bmrmJJEuTWTLJR32nh/JdL1+PSicowtNb0WFpn59GK8/lfD61bVtzguz7b3PBt74nxpv/Pw5po5Rg== +type-fest@^1.0.2: + version "1.4.0" + resolved "https://registry.yarnpkg.com/type-fest/-/type-fest-1.4.0.tgz#e9fb813fe3bf1744ec359d55d1affefa76f14be1" + integrity sha512-yGSza74xk0UG8k+pLh5oeoYirvIiWo5t0/o3zHHAO2tRDiZcxWP7fywNlXhqb6/r6sWvwi+RsyQMWhVLe4BVuA== + type-is@~1.6.18: version "1.6.18" resolved "https://registry.yarnpkg.com/type-is/-/type-is-1.6.18.tgz#4e552cd05df09467dcbc4ef739de89f2cf37c131" @@ -8705,6 +9009,11 @@ which-module@^2.0.0: resolved "https://registry.yarnpkg.com/which-module/-/which-module-2.0.1.tgz#776b1fe35d90aebe99e8ac15eb24093389a4a409" integrity sha512-iBdZ57RDvnOR9AGBhML2vFZf7h8vmBjhoaZqODJBFWHVtKkDmKuHai3cx5PgVMrX5YDNp27AofYbAwctSS+vhQ== +which-pm-runs@^1.0.0: + version "1.1.0" + resolved "https://registry.yarnpkg.com/which-pm-runs/-/which-pm-runs-1.1.0.tgz#35ccf7b1a0fce87bd8b92a478c9d045785d3bf35" + integrity sha512-n1brCuqClxfFfq/Rb0ICg9giSZqCS+pLtccdag6C2HyufBrh3fBOiy9nb6ggRMvWOVH5GrdJskj5iGTZNxd7SA== + which-typed-array@^1.1.10, which-typed-array@^1.1.11, which-typed-array@^1.1.2: version "1.1.11" resolved "https://registry.yarnpkg.com/which-typed-array/-/which-typed-array-1.1.11.tgz#99d691f23c72aab6768680805a271b69761ed61a" @@ -8800,6 +9109,15 @@ wrap-ansi@^7.0.0: string-width "^4.1.0" strip-ansi "^6.0.0" +wrap-ansi@^8.0.1, wrap-ansi@^8.1.0: + version "8.1.0" + resolved "https://registry.yarnpkg.com/wrap-ansi/-/wrap-ansi-8.1.0.tgz#56dc22368ee570face1b49819975d9b9a5ead214" + integrity sha512-si7QWI6zUMq56bESFvagtmzMdGOtoxfR+Sez11Mobfc7tm+VkUckk9bW2UeffTGVUbOksxmSw0AA2gs8g71NCQ== + dependencies: + ansi-styles "^6.1.0" + string-width "^5.0.1" + strip-ansi "^7.0.1" + wrappy@1: version "1.0.2" resolved "https://registry.yarnpkg.com/wrappy/-/wrappy-1.0.2.tgz#b5243d8f3ec1aa35f1364605bc0d1036e30ab69f" @@ -8899,6 +9217,11 @@ yallist@^4.0.0: resolved "https://registry.yarnpkg.com/yallist/-/yallist-4.0.0.tgz#9bb92790d9c0effec63be73519e11a35019a3a72" integrity sha512-3wdGidZyq5PB084XLES5TpOSRA3wjXAlIWMhum2kRcv/41Sn2emQ0dycQW4uZXLejwKvg6EsvbdlVL+FYEct7A== +yaml@2.3.1: + version "2.3.1" + resolved "https://registry.yarnpkg.com/yaml/-/yaml-2.3.1.tgz#02fe0975d23cd441242aa7204e09fc28ac2ac33b" + integrity sha512-2eHWfjaoXgTBC2jNM1LRef62VQa0umtvRiDSk6HSzW7RvS5YtkabJrwYLLEKWBc8a5U2PTSCs+dJjUTJdlHsWQ== + yaml@^1.10.0, yaml@^1.10.2: version "1.10.2" resolved "https://registry.yarnpkg.com/yaml/-/yaml-1.10.2.tgz#2301c5ffbf12b467de8da2333a459e29e7920e4b"