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IGP-8
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306
contracts/payloads/IGP8/PayloadIGP8.sol
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306
contracts/payloads/IGP8/PayloadIGP8.sol
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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(address[] memory targets, uint[] memory values, string[] memory signatures, bytes[] memory calldatas, string memory description) 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(address target, uint value, string memory signature, bytes memory data, uint eta) external returns (bytes32);
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function executeTransaction(address target, uint value, string memory signature, bytes memory data, uint eta) 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 IInstaIndex {
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function changeMaster(address _newMaster) external;
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function updateMaster() external;
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function master() external view returns(address);
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}
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interface ILite {
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function setAdmin(address newAdmin) external;
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function getAdmin() external view returns(address);
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function removeImplementation(address implementation_) 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 setDummyImplementation(address newDummyImplementation_) external;
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}
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interface IDSAV2 {
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function cast(
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string[] memory _targetNames,
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bytes[] memory _datas,
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address _origin
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)
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external
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payable
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returns (bytes32);
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function isAuth(address user) external view returns (bool);
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}
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contract PayloadIGP8 {
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uint256 public constant PROPOSAL_ID = 8;
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address public constant PROPOSER = 0xA45f7bD6A5Ff45D31aaCE6bCD3d426D9328cea01;
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IGovernorBravo public constant GOVERNOR = IGovernorBravo(0x0204Cd037B2ec03605CFdFe482D8e257C765fA1B);
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ITimelock public immutable TIMELOCK = ITimelock(0x2386DC45AdDed673317eF068992F19421B481F4c);
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address public immutable ADDRESS_THIS;
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ILite public constant LITE = ILite(0xA0D3707c569ff8C87FA923d3823eC5D81c98Be78);
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address internal constant OLD_USER_MODULE =
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0xFF93C10FB34f7069071D0679c45ed77A98f37f21;
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address internal constant OLD_ADMIN_MODULE =
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0x06feaa505193e987B12f161F1dB73b1D4d604001;
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address internal constant OLD_LEVERAGE_MODULE =
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0xA18519a6bb1282954e933DA0A775924E4CcE6019;
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address internal constant OLD_REBALANCER_MODULE =
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0xc6639CE123d779fE6eA545B70CbDc1dCA421740d;
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address internal constant OLD_REFINANCE_MODULE =
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0x390936658cB9B73ca75c6c02D5EF88b958D38241;
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address internal constant OLD_DSA_MODULE =
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0xbd45DfF3320b0d832C61fb41489fdd3a1b960067;
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address internal constant NEW_USER_MODULE =
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0xFF93C10FB34f7069071D0679c45ed77A98f37f21;
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address internal constant NEW_ADMIN_MODULE =
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0x06feaa505193e987B12f161F1dB73b1D4d604001;
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address internal constant NEW_LEVERAGE_MODULE =
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0xA18519a6bb1282954e933DA0A775924E4CcE6019;
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address internal constant NEW_REBALANCER_MODULE =
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0xc6639CE123d779fE6eA545B70CbDc1dCA421740d;
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address internal constant NEW_REFINANCE_MODULE =
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0x390936658cB9B73ca75c6c02D5EF88b958D38241;
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address internal constant NEW_DSA_MODULE =
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0xE38d5938d6D75ceF2c3Fc63Dc4AB32cD103E10df;
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address internal constant NEW_WITHDRAWALS_MODULE =
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0xbd45DfF3320b0d832C61fb41489fdd3a1b960067;
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address internal constant NEW_DUMMY_IMPLEMENTATION =
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0x5C122207f668D3fE345465Ac447b3FEF627f4963;
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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(msg.sender == PROPOSER, "msg.sender-not-proposer");
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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 lite
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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(
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ADDRESS_THIS,
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"execute()",
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abi.encode()
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);
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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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// Action 1: remove Implementations
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action1();
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// Action 2: add implementations
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action2();
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// Action 3: set dummy implementations
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action3();
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// Action 4: verify proposal
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}
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function verifyProposal() external view {
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}
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/***********************************|
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| Proposal Payload Actions |
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|__________________________________*/
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/// @notice Action 1: Remove all old implementations
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function action1() internal {
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LITE.removeImplementation(OLD_USER_MODULE);
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LITE.removeImplementation(OLD_ADMIN_MODULE);
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LITE.removeImplementation(OLD_LEVERAGE_MODULE);
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LITE.removeImplementation(OLD_REBALANCER_MODULE);
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LITE.removeImplementation(OLD_REFINANCE_MODULE);
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LITE.removeImplementation(OLD_DSA_MODULE);
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}
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/// @notice Action 2: Add new implementations
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function action2() internal {
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LITE.addImplementation(NEW_USER_MODULE, userSigs());
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LITE.addImplementation(NEW_ADMIN_MODULE, adminSigs());
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LITE.addImplementation(NEW_LEVERAGE_MODULE, leverageSigs());
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LITE.addImplementation(NEW_REBALANCER_MODULE, rebalancerSigs());
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LITE.addImplementation(NEW_REFINANCE_MODULE, refinanceSigs());
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LITE.addImplementation(NEW_DSA_MODULE, dsaSigs());
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LITE.addImplementation(NEW_WITHDRAWALS_MODULE, withdrawalsSigs());
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}
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/// @notice Action 3: call changeMaster() - change ownership of DSA to new timelock contract
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function action3() internal {
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LITE.setDummyImplementation(NEW_DUMMY_IMPLEMENTATION);
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}
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/***********************************|
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| Function Signatures |
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|__________________________________*/
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function userSigs() public pure returns (bytes4[] memory sigs_) {
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sigs_ = new bytes4[](54);
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sigs_[0] = bytes4(keccak256("allowance(address,address)"));
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sigs_[1] = bytes4(keccak256("approve(address,uint256)"));
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sigs_[2] = bytes4(keccak256("balanceOf(address)"));
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sigs_[3] = bytes4(keccak256("decreaseAllowance(address,uint256)"));
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sigs_[4] = bytes4(keccak256("increaseAllowance(address,uint256)"));
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sigs_[5] = bytes4(keccak256("name()"));
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sigs_[6] = bytes4(keccak256("symbol()"));
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sigs_[7] = bytes4(keccak256("totalSupply()"));
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sigs_[8] = bytes4(keccak256("transfer(address,uint256)"));
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sigs_[9] = bytes4(keccak256("transferFrom(address,address,uint256)"));
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sigs_[10] = bytes4(keccak256("asset()"));
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sigs_[11] = bytes4(keccak256("convertToAssets(uint256)"));
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sigs_[12] = bytes4(keccak256("convertToShares(uint256)"));
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sigs_[13] = bytes4(keccak256("decimals()"));
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sigs_[14] = bytes4(keccak256("maxDeposit(address)"));
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sigs_[15] = bytes4(keccak256("maxMint(address)"));
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sigs_[16] = bytes4(keccak256("maxRedeem(address)"));
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sigs_[17] = bytes4(keccak256("maxWithdraw(address)"));
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sigs_[18] = bytes4(keccak256("previewDeposit(uint256)"));
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sigs_[19] = bytes4(keccak256("previewMint(uint256)"));
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sigs_[20] = bytes4(keccak256("previewRedeem(uint256)"));
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sigs_[21] = bytes4(keccak256("previewWithdraw(uint256)"));
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sigs_[22] = bytes4(keccak256("getNetAssets()"));
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sigs_[23] = bytes4(keccak256("getProtocolRatio(uint8)"));
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sigs_[24] = bytes4(keccak256("getRatioAaveV2()"));
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sigs_[25] = bytes4(keccak256("getRatioAaveV3(uint256)"));
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sigs_[26] = bytes4(keccak256("getRatioCompoundV3(uint256)"));
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sigs_[27] = bytes4(keccak256("getRatioEuler(uint256)"));
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sigs_[28] = bytes4(keccak256("getRatioMorphoAaveV2()"));
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sigs_[29] = bytes4(keccak256("getWithdrawFee(uint256)"));
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sigs_[30] = bytes4(keccak256("aggrMaxVaultRatio()"));
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sigs_[31] = bytes4(keccak256("exchangePrice()"));
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sigs_[32] = bytes4(keccak256("isRebalancer(address)"));
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sigs_[33] = bytes4(keccak256("leverageMaxUnitAmountLimit()"));
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sigs_[34] = bytes4(keccak256("maxRiskRatio(uint8)"));
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sigs_[35] = bytes4(keccak256("revenue()"));
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sigs_[36] = bytes4(keccak256("revenueExchangePrice()"));
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sigs_[37] = bytes4(keccak256("revenueFeePercentage()"));
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sigs_[38] = bytes4(keccak256("secondaryAuth()"));
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sigs_[39] = bytes4(keccak256("treasury()"));
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sigs_[40] = bytes4(keccak256("vaultDSA()"));
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sigs_[41] = bytes4(keccak256("withdrawFeeAbsoluteMin()"));
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sigs_[42] = bytes4(keccak256("withdrawalFeePercentage()"));
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sigs_[43] = bytes4(keccak256("deposit(uint256,address)"));
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sigs_[44] = bytes4(
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keccak256("importPosition(uint256,uint256,uint256,address)")
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);
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sigs_[45] = bytes4(keccak256("mint(uint256,address)"));
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sigs_[46] = bytes4(keccak256("redeem(uint256,address,address)"));
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sigs_[47] = bytes4(keccak256("totalAssets()"));
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sigs_[48] = bytes4(keccak256("withdraw(uint256,address,address)"));
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// new functions
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sigs_[49] = bytes4(keccak256("borrowBalanceMorphoAaveV3(address)"));
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sigs_[50] = bytes4(keccak256("collateralBalanceMorphoAaveV3(address)"));
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sigs_[51] = bytes4(keccak256("getRatioMorphoAaveV3(uint256)"));
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sigs_[52] = bytes4(keccak256("getRatioSpark(uint256)"));
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sigs_[53] = bytes4(keccak256("queuedWithdrawStEth()"));
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// TODO: add new function
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}
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function adminSigs() public pure returns (bytes4[] memory sigs_) {
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sigs_ = new bytes4[](10);
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sigs_[0] = bytes4(keccak256("changeVaultStatus(uint8)"));
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sigs_[1] = bytes4(keccak256("reduceAggrMaxVaultRatio(uint256)"));
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sigs_[2] = bytes4(keccak256("reduceMaxRiskRatio(uint8[],uint256[])"));
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sigs_[3] = bytes4(keccak256("updateAggrMaxVaultRatio(uint256)"));
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sigs_[4] = bytes4(keccak256("updateFees(uint256,uint256,uint256)"));
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sigs_[5] = bytes4(
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keccak256("updateLeverageMaxUnitAmountLimit(uint256)")
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);
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sigs_[6] = bytes4(keccak256("updateMaxRiskRatio(uint8[],uint256[])"));
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sigs_[7] = bytes4(keccak256("updateRebalancer(address,bool)"));
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sigs_[8] = bytes4(keccak256("updateSecondaryAuth(address)"));
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sigs_[9] = bytes4(keccak256("updateTreasury(address)"));
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}
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function leverageSigs() public pure returns (bytes4[] memory sigs_) {
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sigs_ = new bytes4[](1);
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sigs_[0] = bytes4(
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keccak256(
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"leverage(uint8,uint256,uint256,uint256,address[],uint256[],uint256,uint256,bytes)"
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)
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);
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}
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function rebalancerSigs() public pure returns (bytes4[] memory sigs_) {
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sigs_ = new bytes4[](6);
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sigs_[0] = bytes4(keccak256("collectRevenue(uint256)"));
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sigs_[1] = bytes4(keccak256("fillVaultAvailability(uint8,uint256)"));
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sigs_[2] = bytes4(keccak256("sweepEthToSteth()"));
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sigs_[3] = bytes4(keccak256("sweepWethToSteth()"));
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sigs_[4] = bytes4(keccak256("updateExchangePrice()"));
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sigs_[5] = bytes4(keccak256("vaultToProtocolDeposit(uint8,uint256)"));
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}
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function refinanceSigs() public pure returns (bytes4[] memory sigs_) {
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sigs_ = new bytes4[](1);
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sigs_[0] = bytes4(
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keccak256("refinance(uint8,uint8,uint256,uint256,uint256,uint256)")
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);
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}
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function dsaSigs() public pure returns (bytes4[] memory sigs_) {
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sigs_ = new bytes4[](2);
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sigs_[0] = bytes4(keccak256("addDSAAuth(address)"));
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sigs_[1] = bytes4(keccak256("spell(address,bytes,uint256,uint256)"));
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}
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function withdrawalsSigs() public pure returns (bytes4[] memory sigs_) {
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sigs_ = new bytes4[](4);
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// new functions
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sigs_[0] = bytes4(
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keccak256("onERC721Received(address,address,uint256,bytes)")
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);
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sigs_[1] = bytes4(keccak256("queueEthWithdrawal(uint256,uint8)"));
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sigs_[2] = bytes4(keccak256("paybackDebt(uint8)"));
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sigs_[3] = bytes4(keccak256("claimEthWithdrawal(uint256,uint8)"));
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}
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}
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