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				https://github.com/Instadapp/dsa-governance.git
				synced 2024-07-29 22:27:52 +00:00 
			
		
		
		
	
		
			
				
	
	
		
			370 lines
		
	
	
		
			13 KiB
		
	
	
	
		
			Solidity
		
	
	
	
	
	
			
		
		
	
	
			370 lines
		
	
	
		
			13 KiB
		
	
	
	
		
			Solidity
		
	
	
	
	
	
pragma solidity ^0.7.0;
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pragma experimental ABIEncoderV2;
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interface IGovernorBravo {
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    function _acceptAdmin() external;
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    function _setVotingDelay(uint newVotingDelay) external;
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    function _setVotingPeriod(uint newVotingPeriod) external;
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    function _acceptAdminOnTimelock() external;
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    function _setImplementation(address implementation_) external;
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    function propose(
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        address[] memory targets,
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        uint[] memory values,
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        string[] memory signatures,
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        bytes[] memory calldatas,
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        string memory description
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    ) external returns (uint);
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    function admin() external view returns (address);
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    function pendingAdmin() external view returns (address);
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    function timelock() external view returns (address);
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    function votingDelay() external view returns (uint256);
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    function votingPeriod() external view returns (uint256);
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}
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interface ITimelock {
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    function acceptAdmin() external;
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    function setDelay(uint delay_) external;
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    function setPendingAdmin(address pendingAdmin_) external;
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    function queueTransaction(
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        address target,
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        uint value,
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        string memory signature,
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        bytes memory data,
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        uint eta
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    ) external returns (bytes32);
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    function executeTransaction(
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        address target,
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        uint value,
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        string memory signature,
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        bytes memory data,
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        uint eta
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    ) external payable returns (bytes memory);
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    function pendingAdmin() external view returns (address);
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    function admin() external view returns (address);
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    function delay() external view returns (uint256);
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}
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interface AdminModuleStructs {
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    struct AddressBool {
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        address addr;
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        bool value;
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    }
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    struct AddressUint256 {
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        address addr;
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        uint256 value;
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    }
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    struct RateDataV1Params {
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        address token;
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        uint256 kink;
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        uint256 rateAtUtilizationZero;
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        uint256 rateAtUtilizationKink;
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        uint256 rateAtUtilizationMax;
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    }
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    struct RateDataV2Params {
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        address token;
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        uint256 kink1;
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        uint256 kink2;
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        uint256 rateAtUtilizationZero;
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        uint256 rateAtUtilizationKink1;
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        uint256 rateAtUtilizationKink2;
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        uint256 rateAtUtilizationMax;
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    }
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    struct TokenConfig {
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        address token;
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        uint256 fee;
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        uint256 threshold;
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    }
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    struct UserSupplyConfig {
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        address user;
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        address token;
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        uint8 mode;
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        uint256 expandPercent;
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        uint256 expandDuration;
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        uint256 baseWithdrawalLimit;
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    }
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    struct UserBorrowConfig {
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        address user;
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        address token;
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        uint8 mode;
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        uint256 expandPercent;
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        uint256 expandDuration;
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        uint256 baseDebtCeiling;
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        uint256 maxDebtCeiling;
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    }
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}
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interface IProxy {
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    function setAdmin(address newAdmin_) external;
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    function setDummyImplementation(address newDummyImplementation_) external;
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    function addImplementation(
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        address implementation_,
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        bytes4[] calldata sigs_
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    ) external;
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    function removeImplementation(address implementation_) external;
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    function getAdmin() external view returns (address);
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    function getDummyImplementation() external view returns (address);
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    function getImplementationSigs(
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        address impl_
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    ) external view returns (bytes4[] memory);
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    function getSigsImplementation(bytes4 sig_) external view returns (address);
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    function readFromStorage(
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        bytes32 slot_
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    ) external view returns (uint256 result_);
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}
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interface IFluidLiquidityAdmin {
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    /// @notice adds/removes auths. Auths generally could be contracts which can have restricted actions defined on contract.
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    ///         auths can be helpful in reducing governance overhead where it's not needed.
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    /// @param authsStatus_ array of structs setting allowed status for an address.
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    ///                     status true => add auth, false => remove auth
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    function updateAuths(
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        AdminModuleStructs.AddressBool[] calldata authsStatus_
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    ) external;
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    /// @notice adds/removes guardians. Only callable by Governance.
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    /// @param guardiansStatus_ array of structs setting allowed status for an address.
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    ///                         status true => add guardian, false => remove guardian
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    function updateGuardians(
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        AdminModuleStructs.AddressBool[] calldata guardiansStatus_
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    ) external;
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    /// @notice changes the revenue collector address (contract that is sent revenue). Only callable by Governance.
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    /// @param revenueCollector_  new revenue collector address
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    function updateRevenueCollector(address revenueCollector_) external;
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    /// @notice changes current status, e.g. for pausing or unpausing all user operations. Only callable by Auths.
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    /// @param newStatus_ new status
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    ///        status = 2 -> pause, status = 1 -> resume.
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    function changeStatus(uint256 newStatus_) external;
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    /// @notice                  update tokens rate data version 1. Only callable by Auths.
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    /// @param tokensRateData_   array of RateDataV1Params with rate data to set for each token
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    function updateRateDataV1s(
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        AdminModuleStructs.RateDataV1Params[] calldata tokensRateData_
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    ) external;
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    /// @notice                  update tokens rate data version 2. Only callable by Auths.
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    /// @param tokensRateData_   array of RateDataV2Params with rate data to set for each token
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    function updateRateDataV2s(
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        AdminModuleStructs.RateDataV2Params[] calldata tokensRateData_
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    ) external;
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    /// @notice updates token configs: fee charge on borrowers interest & storage update utilization threshold.
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    ///         Only callable by Auths.
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    /// @param tokenConfigs_ contains token address, fee & utilization threshold
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    function updateTokenConfigs(
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        AdminModuleStructs.TokenConfig[] calldata tokenConfigs_
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    ) external;
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    /// @notice updates user classes: 0 is for new protocols, 1 is for established protocols.
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    ///         Only callable by Auths.
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    /// @param userClasses_ struct array of uint256 value to assign for each user address
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    function updateUserClasses(
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        AdminModuleStructs.AddressUint256[] calldata userClasses_
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    ) external;
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    /// @notice sets user supply configs per token basis. Eg: with interest or interest-free and automated limits.
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    ///         Only callable by Auths.
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    /// @param userSupplyConfigs_ struct array containing user supply config, see `UserSupplyConfig` struct for more info
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    function updateUserSupplyConfigs(
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        AdminModuleStructs.UserSupplyConfig[] memory userSupplyConfigs_
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    ) external;
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    /// @notice setting user borrow configs per token basis. Eg: with interest or interest-free and automated limits.
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    ///         Only callable by Auths.
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    /// @param userBorrowConfigs_ struct array containing user borrow config, see `UserBorrowConfig` struct for more info
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    function updateUserBorrowConfigs(
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        AdminModuleStructs.UserBorrowConfig[] memory userBorrowConfigs_
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    ) external;
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    /// @notice pause operations for a particular user in class 0 (class 1 users can't be paused by guardians).
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    /// Only callable by Guardians.
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    /// @param user_          address of user to pause operations for
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    /// @param supplyTokens_  token addresses to pause withdrawals for
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    /// @param borrowTokens_  token addresses to pause borrowings for
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    function pauseUser(
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        address user_,
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        address[] calldata supplyTokens_,
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        address[] calldata borrowTokens_
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    ) external;
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    /// @notice unpause operations for a particular user in class 0 (class 1 users can't be paused by guardians).
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    /// Only callable by Guardians.
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    /// @param user_          address of user to unpause operations for
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    /// @param supplyTokens_  token addresses to unpause withdrawals for
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    /// @param borrowTokens_  token addresses to unpause borrowings for
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    function unpauseUser(
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        address user_,
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        address[] calldata supplyTokens_,
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        address[] calldata borrowTokens_
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    ) external;
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    /// @notice         collects revenue for tokens to configured revenueCollector address.
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    /// @param tokens_  array of tokens to collect revenue for
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    /// @dev            Note that this can revert if token balance is < revenueAmount (utilization > 100%)
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    function collectRevenue(address[] calldata tokens_) external;
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    /// @notice gets the current updated exchange prices for n tokens and updates all prices, rates related data in storage.
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    /// @param tokens_ tokens to update exchange prices for
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    /// @return supplyExchangePrices_ new supply rates of overall system for each token
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    /// @return borrowExchangePrices_ new borrow rates of overall system for each token
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    function updateExchangePrices(
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        address[] calldata tokens_
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    )
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        external
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        returns (
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            uint256[] memory supplyExchangePrices_,
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            uint256[] memory borrowExchangePrices_
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        );
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}
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interface IFluidVaultT1 {
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    /// @notice updates the Vault oracle to `newOracle_`. Must implement the FluidOracle interface.
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    function updateOracle(address newOracle_) external;
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    /// @notice updates the all Vault core settings according to input params.
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    /// All input values are expected in 1e2 (1% = 100, 100% = 10_000).
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    function updateCoreSettings(
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        uint256 supplyRateMagnifier_,
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        uint256 borrowRateMagnifier_,
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        uint256 collateralFactor_,
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        uint256 liquidationThreshold_,
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        uint256 liquidationMaxLimit_,
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        uint256 withdrawGap_,
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        uint256 liquidationPenalty_,
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        uint256 borrowFee_
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    ) external;
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    /// @notice updates the allowed rebalancer to `newRebalancer_`.
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    function updateRebalancer(address newRebalancer_) external;
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    /// @notice updates the supply rate magnifier to `supplyRateMagnifier_`. Input in 1e2 (1% = 100, 100% = 10_000).
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    function updateSupplyRateMagnifier(uint supplyRateMagnifier_) external;
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    /// @notice updates the collateral factor to `collateralFactor_`. Input in 1e2 (1% = 100, 100% = 10_000).
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    function updateCollateralFactor(uint collateralFactor_) external;
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    /// @notice updates the liquidation threshold to `liquidationThreshold_`. Input in 1e2 (1% = 100, 100% = 10_000).
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    function updateLiquidationThreshold(uint liquidationThreshold_) external;
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    /// @notice updates the liquidation max limit to `liquidationMaxLimit_`. Input in 1e2 (1% = 100, 100% = 10_000).
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    function updateLiquidationMaxLimit(uint liquidationMaxLimit_) external;
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}
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contract PayloadIGP18 {
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    uint256 public constant PROPOSAL_ID = 18;
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    address public constant PROPOSER =
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        0xA45f7bD6A5Ff45D31aaCE6bCD3d426D9328cea01;
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    address public constant PROPOSER_AVO_MULTISIG =
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        0x059A94A72951c0ae1cc1CE3BF0dB52421bbE8210;
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    IGovernorBravo public constant GOVERNOR =
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        IGovernorBravo(0x0204Cd037B2ec03605CFdFe482D8e257C765fA1B);
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    ITimelock public immutable TIMELOCK =
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        ITimelock(0x2386DC45AdDed673317eF068992F19421B481F4c);
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    address public immutable ADDRESS_THIS;
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    address public constant TEAM_MULTISIG =
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        0x4F6F977aCDD1177DCD81aB83074855EcB9C2D49e;
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    IFluidLiquidityAdmin public constant LIQUIDITY =
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        IFluidLiquidityAdmin(0x52Aa899454998Be5b000Ad077a46Bbe360F4e497);
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    address public constant VAULT_weETH_wstETH =
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        address(0x40D9b8417E6E1DcD358f04E3328bCEd061018A82);
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    constructor() {
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        ADDRESS_THIS = address(this);
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    }
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    function propose(string memory description) external {
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        require(
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            msg.sender == PROPOSER ||
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                msg.sender == TEAM_MULTISIG ||
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                address(this) == PROPOSER_AVO_MULTISIG,
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            "msg.sender-not-allowed"
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        );
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        uint256 totalActions = 1;
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        address[] memory targets = new address[](totalActions);
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        uint256[] memory values = new uint256[](totalActions);
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        string[] memory signatures = new string[](totalActions);
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        bytes[] memory calldatas = new bytes[](totalActions);
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        // Action 1: call executePayload on timelock contract to execute payload related to Fluid
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        targets[0] = address(TIMELOCK);
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        values[0] = 0;
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        signatures[0] = "executePayload(address,string,bytes)";
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        calldatas[0] = abi.encode(ADDRESS_THIS, "execute()", abi.encode());
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        uint256 proposedId = GOVERNOR.propose(
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            targets,
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            values,
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            signatures,
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            calldatas,
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            description
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        );
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        require(proposedId == PROPOSAL_ID, "PROPOSAL_IS_NOT_SAME");
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    }
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    function execute() external {
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        require(address(this) == address(TIMELOCK), "not-valid-caller");
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        // Action 1: Update weETH/wstETH vault parameters.
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        action1();
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    }
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    function verifyProposal() external view {}
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    /***********************************|
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    |     Proposal Payload Actions      |
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    |__________________________________*/
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    /// @notice Action 1: Update weETH/wstETH vault parameters.
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    function action1() internal {
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        // Update max liquidation limit from 95% to 96%.
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        IFluidVaultT1(VAULT_weETH_wstETH).updateLiquidationMaxLimit(96 * 1e2); // 96% or 96 * 1e2
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        // Update liquidation threshold from 93% to 95%.
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        IFluidVaultT1(VAULT_weETH_wstETH).updateLiquidationThreshold(95 * 1e2); // 95% or 95 * 1e2
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        // Update collateral factor from 90.5% to 93%.
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        IFluidVaultT1(VAULT_weETH_wstETH).updateCollateralFactor(93 * 1e2); // 93% or 93 * 1e2
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    }
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}
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