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// SPDX-License-Identifier: MIT
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// OpenZeppelin Contracts v4.4.0 (governance/Governor.sol)
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pragma solidity ^0.8.0;
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import "../utils/cryptography/ECDSA.sol";
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import "../utils/cryptography/draft-EIP712.sol";
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import "../utils/introspection/ERC165.sol";
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import "../utils/math/SafeCast.sol";
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import "../utils/Address.sol";
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import "../utils/Context.sol";
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import "../utils/Timers.sol";
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import "./IGovernor.sol";
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/**
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* @dev Core of the governance system, designed to be extended though various modules.
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*
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* This contract is abstract and requires several function to be implemented in various modules:
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*
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* - A counting module must implement {quorum}, {_quorumReached}, {_voteSucceeded} and {_countVote}
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* - A voting module must implement {getVotes}
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* - Additionanly, the {votingPeriod} must also be implemented
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*
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* _Available since v4.3._
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*/
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abstract contract Governor is Context, ERC165, EIP712, IGovernor {
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using SafeCast for uint256;
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using Timers for Timers.BlockNumber;
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bytes32 public constant BALLOT_TYPEHASH = keccak256("Ballot(uint256 proposalId,uint8 support)");
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struct ProposalCore {
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Timers.BlockNumber voteStart;
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Timers.BlockNumber voteEnd;
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bool executed;
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bool canceled;
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}
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string private _name;
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mapping(uint256 => ProposalCore) private _proposals;
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/**
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* @dev Restrict access to governor executing address. Some module might override the _executor function to make
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* sure this modifier is consistant with the execution model.
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*/
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modifier onlyGovernance() {
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require(_msgSender() == _executor(), "Governor: onlyGovernance");
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_;
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}
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/**
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* @dev Sets the value for {name} and {version}
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*/
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constructor(string memory name_) EIP712(name_, version()) {
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_name = name_;
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}
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/**
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* @dev Function to receive ETH that will be handled by the governor (disabled if executor is a third party contract)
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*/
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receive() external payable virtual {
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require(_executor() == address(this));
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}
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/**
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* @dev See {IERC165-supportsInterface}.
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*/
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function supportsInterface(bytes4 interfaceId) public view virtual override(IERC165, ERC165) returns (bool) {
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return interfaceId == type(IGovernor).interfaceId || super.supportsInterface(interfaceId);
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}
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/**
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* @dev See {IGovernor-name}.
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*/
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function name() public view virtual override returns (string memory) {
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return _name;
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}
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/**
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* @dev See {IGovernor-version}.
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*/
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function version() public view virtual override returns (string memory) {
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return "1";
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}
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/**
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* @dev See {IGovernor-hashProposal}.
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*
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* The proposal id is produced by hashing the RLC encoded `targets` array, the `values` array, the `calldatas` array
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* and the descriptionHash (bytes32 which itself is the keccak256 hash of the description string). This proposal id
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* can be produced from the proposal data which is part of the {ProposalCreated} event. It can even be computed in
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* advance, before the proposal is submitted.
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*
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* Note that the chainId and the governor address are not part of the proposal id computation. Consequently, the
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* same proposal (with same operation and same description) will have the same id if submitted on multiple governors
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* accross multiple networks. This also means that in order to execute the same operation twice (on the same
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* governor) the proposer will have to change the description in order to avoid proposal id conflicts.
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*/
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function hashProposal(
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address[] memory targets,
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uint256[] memory values,
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bytes[] memory calldatas,
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bytes32 descriptionHash
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) public pure virtual override returns (uint256) {
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return uint256(keccak256(abi.encode(targets, values, calldatas, descriptionHash)));
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}
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/**
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* @dev See {IGovernor-state}.
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*/
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function state(uint256 proposalId) public view virtual override returns (ProposalState) {
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ProposalCore memory proposal = _proposals[proposalId];
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if (proposal.executed) {
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return ProposalState.Executed;
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} else if (proposal.canceled) {
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return ProposalState.Canceled;
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} else if (proposal.voteStart.getDeadline() >= block.number) {
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return ProposalState.Pending;
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} else if (proposal.voteEnd.getDeadline() >= block.number) {
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return ProposalState.Active;
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} else if (proposal.voteEnd.isExpired()) {
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return
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_quorumReached(proposalId) && _voteSucceeded(proposalId)
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? ProposalState.Succeeded
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: ProposalState.Defeated;
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} else {
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revert("Governor: unknown proposal id");
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}
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}
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/**
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* @dev See {IGovernor-proposalSnapshot}.
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*/
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function proposalSnapshot(uint256 proposalId) public view virtual override returns (uint256) {
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return _proposals[proposalId].voteStart.getDeadline();
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}
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/**
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* @dev See {IGovernor-proposalDeadline}.
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*/
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function proposalDeadline(uint256 proposalId) public view virtual override returns (uint256) {
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return _proposals[proposalId].voteEnd.getDeadline();
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}
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/**
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* @dev Part of the Governor Bravo's interface: _"The number of votes required in order for a voter to become a proposer"_.
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*/
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function proposalThreshold() public view virtual returns (uint256) {
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return 0;
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}
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/**
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* @dev Amount of votes already cast passes the threshold limit.
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*/
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function _quorumReached(uint256 proposalId) internal view virtual returns (bool);
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/**
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* @dev Is the proposal successful or not.
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*/
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function _voteSucceeded(uint256 proposalId) internal view virtual returns (bool);
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/**
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* @dev Register a vote with a given support and voting weight.
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*
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* Note: Support is generic and can represent various things depending on the voting system used.
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*/
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function _countVote(
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uint256 proposalId,
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address account,
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uint8 support,
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uint256 weight
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) internal virtual;
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/**
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* @dev See {IGovernor-propose}.
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*/
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function propose(
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address[] memory targets,
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uint256[] memory values,
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bytes[] memory calldatas,
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string memory description
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) public virtual override returns (uint256) {
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require(
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getVotes(msg.sender, block.number - 1) >= proposalThreshold(),
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"GovernorCompatibilityBravo: proposer votes below proposal threshold"
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);
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uint256 proposalId = hashProposal(targets, values, calldatas, keccak256(bytes(description)));
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require(targets.length == values.length, "Governor: invalid proposal length");
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require(targets.length == calldatas.length, "Governor: invalid proposal length");
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require(targets.length > 0, "Governor: empty proposal");
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ProposalCore storage proposal = _proposals[proposalId];
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require(proposal.voteStart.isUnset(), "Governor: proposal already exists");
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uint64 snapshot = block.number.toUint64() + votingDelay().toUint64();
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uint64 deadline = snapshot + votingPeriod().toUint64();
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proposal.voteStart.setDeadline(snapshot);
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proposal.voteEnd.setDeadline(deadline);
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emit ProposalCreated(
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proposalId,
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_msgSender(),
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targets,
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values,
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new string[](targets.length),
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calldatas,
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snapshot,
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deadline,
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description
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);
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return proposalId;
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}
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/**
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* @dev See {IGovernor-execute}.
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*/
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function execute(
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address[] memory targets,
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uint256[] memory values,
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bytes[] memory calldatas,
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bytes32 descriptionHash
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) public payable virtual override returns (uint256) {
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uint256 proposalId = hashProposal(targets, values, calldatas, descriptionHash);
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ProposalState status = state(proposalId);
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require(
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status == ProposalState.Succeeded || status == ProposalState.Queued,
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"Governor: proposal not successful"
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);
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_proposals[proposalId].executed = true;
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emit ProposalExecuted(proposalId);
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_execute(proposalId, targets, values, calldatas, descriptionHash);
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return proposalId;
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}
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/**
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* @dev Internal execution mechanism. Can be overriden to implement different execution mechanism
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*/
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function _execute(
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uint256, /* proposalId */
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address[] memory targets,
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uint256[] memory values,
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bytes[] memory calldatas,
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bytes32 /*descriptionHash*/
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) internal virtual {
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string memory errorMessage = "Governor: call reverted without message";
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for (uint256 i = 0; i < targets.length; ++i) {
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(bool success, bytes memory returndata) = targets[i].call{value: values[i]}(calldatas[i]);
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Address.verifyCallResult(success, returndata, errorMessage);
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}
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}
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/**
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* @dev Internal cancel mechanism: locks up the proposal timer, preventing it from being re-submitted. Marks it as
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* canceled to allow distinguishing it from executed proposals.
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*
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* Emits a {IGovernor-ProposalCanceled} event.
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*/
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function _cancel(
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address[] memory targets,
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uint256[] memory values,
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bytes[] memory calldatas,
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bytes32 descriptionHash
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) internal virtual returns (uint256) {
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uint256 proposalId = hashProposal(targets, values, calldatas, descriptionHash);
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ProposalState status = state(proposalId);
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require(
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status != ProposalState.Canceled && status != ProposalState.Expired && status != ProposalState.Executed,
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"Governor: proposal not active"
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);
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_proposals[proposalId].canceled = true;
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emit ProposalCanceled(proposalId);
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return proposalId;
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}
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/**
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* @dev See {IGovernor-castVote}.
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*/
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function castVote(uint256 proposalId, uint8 support) public virtual override returns (uint256) {
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address voter = _msgSender();
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return _castVote(proposalId, voter, support, "");
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}
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/**
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* @dev See {IGovernor-castVoteWithReason}.
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*/
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function castVoteWithReason(
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uint256 proposalId,
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uint8 support,
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string calldata reason
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) public virtual override returns (uint256) {
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address voter = _msgSender();
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return _castVote(proposalId, voter, support, reason);
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}
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/**
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* @dev See {IGovernor-castVoteBySig}.
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*/
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function castVoteBySig(
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uint256 proposalId,
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uint8 support,
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uint8 v,
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bytes32 r,
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bytes32 s
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) public virtual override returns (uint256) {
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address voter = ECDSA.recover(
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_hashTypedDataV4(keccak256(abi.encode(BALLOT_TYPEHASH, proposalId, support))),
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v,
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r,
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s
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);
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return _castVote(proposalId, voter, support, "");
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}
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/**
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* @dev Internal vote casting mechanism: Check that the vote is pending, that it has not been cast yet, retrieve
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* voting weight using {IGovernor-getVotes} and call the {_countVote} internal function.
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*
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* Emits a {IGovernor-VoteCast} event.
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*/
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function _castVote(
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uint256 proposalId,
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address account,
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uint8 support,
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string memory reason
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) internal virtual returns (uint256) {
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ProposalCore storage proposal = _proposals[proposalId];
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require(state(proposalId) == ProposalState.Active, "Governor: vote not currently active");
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uint256 weight = getVotes(account, proposal.voteStart.getDeadline());
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_countVote(proposalId, account, support, weight);
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emit VoteCast(account, proposalId, support, weight, reason);
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return weight;
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}
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/**
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* @dev Relays a transaction or function call to an arbitrary target. In cases where the governance executor
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* is some contract other than the governor itself, like when using a timelock, this function can be invoked
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* in a governance proposal to recover tokens or Ether that was sent to the governor contract by mistake.
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* Note that if the executor is simply the governor itself, use of `relay` is redundant.
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*/
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function relay(
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address target,
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uint256 value,
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bytes calldata data
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) external onlyGovernance {
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Address.functionCallWithValue(target, data, value);
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}
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/**
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* @dev Address through which the governor executes action. Will be overloaded by module that execute actions
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* through another contract such as a timelock.
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*/
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function _executor() internal view virtual returns (address) {
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return address(this);
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}
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}
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