2023-05-21 20:02:21 +03:00
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// SPDX-License-Identifier: MIT
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pragma solidity ^0.6.0;
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pragma experimental ABIEncoderV2;
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import "@openzeppelin/contracts/math/SafeMath.sol";
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import "@openzeppelin/upgrades-core/contracts/Initializable.sol";
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import "@openzeppelin/contracts/utils/Address.sol";
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import "torn-token/contracts/ENS.sol";
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import "torn-token/contracts/TORN.sol";
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import "./Delegation.sol";
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import "./Configuration.sol";
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contract Governance is Initializable, Configuration, Delegation, EnsResolve {
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using SafeMath for uint256;
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/// @notice Possible states that a proposal may be in
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enum ProposalState {
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Pending,
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Active,
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Defeated,
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Timelocked,
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AwaitingExecution,
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Executed,
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Expired
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}
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struct Proposal {
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// Creator of the proposal
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address proposer;
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// target addresses for the call to be made
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address target;
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// The block at which voting begins
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uint256 startTime;
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// The block at which voting ends: votes must be cast prior to this block
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uint256 endTime;
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// Current number of votes in favor of this proposal
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uint256 forVotes;
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// Current number of votes in opposition to this proposal
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uint256 againstVotes;
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// Flag marking whether the proposal has been executed
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bool executed;
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// Flag marking whether the proposal voting time has been extended
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// Voting time can be extended once, if the proposal outcome has changed during CLOSING_PERIOD
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bool extended;
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// Receipts of ballots for the entire set of voters
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mapping(address => Receipt) receipts;
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}
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/// @notice Ballot receipt record for a voter
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struct Receipt {
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// Whether or not a vote has been cast
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bool hasVoted;
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// Whether or not the voter supports the proposal
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bool support;
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// The number of votes the voter had, which were cast
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uint256 votes;
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}
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/// @notice The official record of all proposals ever proposed
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Proposal[] public proposals;
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/// @notice The latest proposal for each proposer
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mapping(address => uint256) public latestProposalIds;
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/// @notice Timestamp when a user can withdraw tokens
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mapping(address => uint256) public canWithdrawAfter;
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TORN public torn;
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/// @notice An event emitted when a new proposal is created
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event ProposalCreated(
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uint256 indexed id,
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address indexed proposer,
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address target,
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uint256 startTime,
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uint256 endTime,
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string description
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);
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/// @notice An event emitted when a vote has been cast on a proposal
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event Voted(uint256 indexed proposalId, address indexed voter, bool indexed support, uint256 votes);
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/// @notice An event emitted when a proposal has been executed
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event ProposalExecuted(uint256 indexed proposalId);
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/// @notice Makes this instance inoperable to prevent selfdestruct attack
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/// Proxy will still be able to properly initialize its storage
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constructor() public initializer {
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torn = TORN(0x000000000000000000000000000000000000dEaD);
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_initializeConfiguration();
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}
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function initialize(bytes32 _torn) public initializer {
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torn = TORN(resolve(_torn));
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// Create a dummy proposal so that indexes start from 1
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proposals.push(
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Proposal({
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proposer: address(this),
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target: 0x000000000000000000000000000000000000dEaD,
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startTime: 0,
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endTime: 0,
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forVotes: 0,
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againstVotes: 0,
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executed: true,
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extended: false
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})
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);
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_initializeConfiguration();
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}
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function lock(
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address owner,
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uint256 amount,
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uint256 deadline,
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uint8 v,
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bytes32 r,
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bytes32 s
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) public virtual {
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torn.permit(owner, address(this), amount, deadline, v, r, s);
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_transferTokens(owner, amount);
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}
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function lockWithApproval(uint256 amount) public virtual {
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_transferTokens(msg.sender, amount);
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}
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function unlock(uint256 amount) public virtual {
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require(getBlockTimestamp() > canWithdrawAfter[msg.sender], "Governance: tokens are locked");
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lockedBalance[msg.sender] = lockedBalance[msg.sender].sub(amount, "Governance: insufficient balance");
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require(torn.transfer(msg.sender, amount), "TORN: transfer failed");
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}
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function propose(address target, string memory description) external returns (uint256) {
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return _propose(msg.sender, target, description);
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}
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/**
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* @notice Propose implementation
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* @param proposer proposer address
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* @param target smart contact address that will be executed as result of voting
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* @param description description of the proposal
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* @return the new proposal id
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*/
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function _propose(
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address proposer,
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address target,
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string memory description
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2023-05-21 22:51:14 +03:00
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) internal virtual override(Delegation) returns (uint256) {
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2023-05-21 20:02:21 +03:00
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uint256 votingPower = lockedBalance[proposer];
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2023-05-25 19:31:55 +03:00
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require(
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votingPower >= PROPOSAL_THRESHOLD,
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"Governance::propose: proposer votes below proposal threshold"
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);
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2023-05-21 20:02:21 +03:00
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// target should be a contract
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require(Address.isContract(target), "Governance::propose: not a contract");
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uint256 latestProposalId = latestProposalIds[proposer];
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if (latestProposalId != 0) {
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ProposalState proposersLatestProposalState = state(latestProposalId);
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require(
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2023-05-25 19:31:55 +03:00
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proposersLatestProposalState != ProposalState.Active &&
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proposersLatestProposalState != ProposalState.Pending,
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2023-05-21 20:02:21 +03:00
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"Governance::propose: one live proposal per proposer, found an already active proposal"
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);
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}
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uint256 startTime = getBlockTimestamp().add(VOTING_DELAY);
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uint256 endTime = startTime.add(VOTING_PERIOD);
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Proposal memory newProposal = Proposal({
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proposer: proposer,
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target: target,
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startTime: startTime,
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endTime: endTime,
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forVotes: 0,
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againstVotes: 0,
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executed: false,
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extended: false
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});
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proposals.push(newProposal);
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uint256 proposalId = proposalCount();
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latestProposalIds[newProposal.proposer] = proposalId;
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_lockTokens(proposer, endTime.add(VOTE_EXTEND_TIME).add(EXECUTION_EXPIRATION).add(EXECUTION_DELAY));
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emit ProposalCreated(proposalId, proposer, target, startTime, endTime, description);
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return proposalId;
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}
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2023-05-21 22:51:14 +03:00
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function execute(uint256 proposalId) public payable virtual {
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2023-05-25 19:31:55 +03:00
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require(
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state(proposalId) == ProposalState.AwaitingExecution,
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"Governance::execute: invalid proposal state"
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);
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2023-05-21 20:02:21 +03:00
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Proposal storage proposal = proposals[proposalId];
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proposal.executed = true;
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address target = proposal.target;
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require(Address.isContract(target), "Governance::execute: not a contract");
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(bool success, bytes memory data) = target.delegatecall(abi.encodeWithSignature("executeProposal()"));
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if (!success) {
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if (data.length > 0) {
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revert(string(data));
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} else {
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revert("Proposal execution failed");
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}
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}
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emit ProposalExecuted(proposalId);
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}
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function castVote(uint256 proposalId, bool support) external virtual {
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_castVote(msg.sender, proposalId, support);
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}
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function _castVote(
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address voter,
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uint256 proposalId,
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bool support
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) internal override(Delegation) {
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require(state(proposalId) == ProposalState.Active, "Governance::_castVote: voting is closed");
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Proposal storage proposal = proposals[proposalId];
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Receipt storage receipt = proposal.receipts[voter];
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bool beforeVotingState = proposal.forVotes <= proposal.againstVotes;
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uint256 votes = lockedBalance[voter];
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require(votes > 0, "Governance: balance is 0");
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if (receipt.hasVoted) {
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if (receipt.support) {
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proposal.forVotes = proposal.forVotes.sub(receipt.votes);
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} else {
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proposal.againstVotes = proposal.againstVotes.sub(receipt.votes);
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}
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}
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if (support) {
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proposal.forVotes = proposal.forVotes.add(votes);
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} else {
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proposal.againstVotes = proposal.againstVotes.add(votes);
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}
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if (!proposal.extended && proposal.endTime.sub(getBlockTimestamp()) < CLOSING_PERIOD) {
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bool afterVotingState = proposal.forVotes <= proposal.againstVotes;
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if (beforeVotingState != afterVotingState) {
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proposal.extended = true;
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proposal.endTime = proposal.endTime.add(VOTE_EXTEND_TIME);
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}
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}
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receipt.hasVoted = true;
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receipt.support = support;
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receipt.votes = votes;
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_lockTokens(voter, proposal.endTime.add(VOTE_EXTEND_TIME).add(EXECUTION_EXPIRATION).add(EXECUTION_DELAY));
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emit Voted(proposalId, voter, support, votes);
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}
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function _lockTokens(address owner, uint256 timestamp) internal {
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if (timestamp > canWithdrawAfter[owner]) {
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canWithdrawAfter[owner] = timestamp;
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}
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}
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function _transferTokens(address owner, uint256 amount) internal virtual {
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require(torn.transferFrom(owner, address(this), amount), "TORN: transferFrom failed");
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lockedBalance[owner] = lockedBalance[owner].add(amount);
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}
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function getReceipt(uint256 proposalId, address voter) public view returns (Receipt memory) {
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return proposals[proposalId].receipts[voter];
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}
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function state(uint256 proposalId) public view returns (ProposalState) {
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require(proposalId <= proposalCount() && proposalId > 0, "Governance::state: invalid proposal id");
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Proposal storage proposal = proposals[proposalId];
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if (getBlockTimestamp() <= proposal.startTime) {
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return ProposalState.Pending;
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} else if (getBlockTimestamp() <= proposal.endTime) {
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return ProposalState.Active;
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} else if (
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proposal.forVotes <= proposal.againstVotes || proposal.forVotes + proposal.againstVotes < QUORUM_VOTES
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) {
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return ProposalState.Defeated;
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} else if (proposal.executed) {
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return ProposalState.Executed;
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} else if (getBlockTimestamp() >= proposal.endTime.add(EXECUTION_DELAY).add(EXECUTION_EXPIRATION)) {
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return ProposalState.Expired;
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} else if (getBlockTimestamp() >= proposal.endTime.add(EXECUTION_DELAY)) {
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return ProposalState.AwaitingExecution;
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} else {
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return ProposalState.Timelocked;
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}
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}
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function proposalCount() public view returns (uint256) {
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return proposals.length - 1;
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}
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function getBlockTimestamp() internal view virtual returns (uint256) {
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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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}
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