mirror of
https://github.com/Instadapp/dsa-governance.git
synced 2024-07-29 22:27:52 +00:00
121 lines
5.0 KiB
Solidity
121 lines
5.0 KiB
Solidity
pragma solidity ^0.7.0;
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import "./SafeMath.sol";
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contract InstaTimelockV2 {
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using SafeMath for uint;
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event NewAdmin(address indexed newAdmin);
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event NewPendingAdmin(address indexed newPendingAdmin);
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event NewDelay(uint indexed newDelay);
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event NewGuardian(address indexed newGuardian);
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event CancelTransaction(bytes32 indexed txHash, address indexed target, uint value, string signature, bytes data, uint eta);
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event ExecuteTransaction(bytes32 indexed txHash, address indexed target, uint value, string signature, bytes data, uint eta);
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event QueueTransaction(bytes32 indexed txHash, address indexed target, uint value, string signature, bytes data, uint eta);
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uint public constant GRACE_PERIOD = 14 days;
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uint public constant MINIMUM_DELAY = 2 days;
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uint public constant MAXIMUM_DELAY = 30 days;
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address public admin;
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address public pendingAdmin;
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address pubic guardian;
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uint public delay;
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mapping (bytes32 => bool) public queuedTransactions;
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constructor(address admin_, uint delay_, address guardian_) {
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require(delay_ >= MINIMUM_DELAY, "Timelock::constructor: Delay must exceed minimum delay.");
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require(delay_ <= MAXIMUM_DELAY, "Timelock::setDelay: Delay must not exceed maximum delay.");
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admin = admin_;
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delay = delay_;
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guardian = guardian_;
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}
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fallback() external payable { }
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function setDelay(uint delay_) public {
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require(msg.sender == address(this), "Timelock::setDelay: Call must come from Timelock.");
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require(delay_ >= MINIMUM_DELAY, "Timelock::setDelay: Delay must exceed minimum delay.");
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require(delay_ <= MAXIMUM_DELAY, "Timelock::setDelay: Delay must not exceed maximum delay.");
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delay = delay_;
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emit NewDelay(delay);
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}
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function setGuardian(address guardian_) public {
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require(msg.sender == address(this), "Timelock::setGuardian: Call must come from Timelock.");
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guardian = guardian_;
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emit NewGuardian(guardian_);
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}
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function acceptAdmin() public {
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require(msg.sender == pendingAdmin, "Timelock::acceptAdmin: Call must come from pendingAdmin.");
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admin = msg.sender;
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pendingAdmin = address(0);
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emit NewAdmin(admin);
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}
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function setPendingAdmin(address pendingAdmin_) public {
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require(msg.sender == address(this), "Timelock::setPendingAdmin: Call must come from Timelock.");
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pendingAdmin = pendingAdmin_;
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emit NewPendingAdmin(pendingAdmin);
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}
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function queueTransaction(address target, uint value, string memory signature, bytes memory data, uint eta) public returns (bytes32) {
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require(msg.sender == admin, "Timelock::queueTransaction: Call must come from admin.");
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require(eta >= getBlockTimestamp().add(delay), "Timelock::queueTransaction: Estimated execution block must satisfy delay.");
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bytes32 txHash = keccak256(abi.encode(target, value, signature, data, eta));
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queuedTransactions[txHash] = true;
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emit QueueTransaction(txHash, target, value, signature, data, eta);
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return txHash;
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}
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function cancelTransaction(address target, uint value, string memory signature, bytes memory data, uint eta) public {
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require(msg.sender == admin || msg.sender == guardian, "Timelock::cancelTransaction: Call must come from admin or guardian.");
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bytes32 txHash = keccak256(abi.encode(target, value, signature, data, eta));
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queuedTransactions[txHash] = false;
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emit CancelTransaction(txHash, target, value, signature, data, eta);
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}
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function executeTransaction(address target, uint value, string memory signature, bytes memory data, uint eta) public payable returns (bytes memory) {
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require(msg.sender == admin, "Timelock::executeTransaction: Call must come from admin.");
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bytes32 txHash = keccak256(abi.encode(target, value, signature, data, eta));
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require(queuedTransactions[txHash], "Timelock::executeTransaction: Transaction hasn't been queued.");
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require(getBlockTimestamp() >= eta, "Timelock::executeTransaction: Transaction hasn't surpassed time lock.");
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require(getBlockTimestamp() <= eta.add(GRACE_PERIOD), "Timelock::executeTransaction: Transaction is stale.");
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queuedTransactions[txHash] = false;
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bytes memory callData;
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if (bytes(signature).length == 0) {
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callData = data;
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} else {
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callData = abi.encodePacked(bytes4(keccak256(bytes(signature))), data);
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}
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// solium-disable-next-line security/no-call-value
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(bool success, bytes memory returnData) = target.call{value: value}(callData);
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require(success, "Timelock::executeTransaction: Transaction execution reverted.");
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emit ExecuteTransaction(txHash, target, value, signature, data, eta);
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return returnData;
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}
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function getBlockTimestamp() internal view returns (uint) {
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// solium-disable-next-line security/no-block-members
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return block.timestamp;
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}
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} |