mirror of https://github.com/logos-co/staking.git
599 lines
21 KiB
Solidity
599 lines
21 KiB
Solidity
// SPDX-License-Identifier: MIT
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pragma solidity ^0.8.18;
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import { ERC20 } from "@openzeppelin/contracts/token/ERC20/ERC20.sol";
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import { Ownable } from "@openzeppelin/contracts/access/Ownable.sol";
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import { Math } from "@openzeppelin/contracts/utils/math/Math.sol";
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import { StakeVault } from "./StakeVault.sol";
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contract StakeRewardEstimate is Ownable {
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mapping(uint256 epochId => uint256 balance) public expiredMPPerEpoch;
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function getExpiredMP(uint256 epochId) public view returns (uint256) {
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return expiredMPPerEpoch[epochId];
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}
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function incrementExpiredMP(uint256 epochId, uint256 amount) public onlyOwner {
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expiredMPPerEpoch[epochId] += amount;
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}
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function decrementExpiredMP(uint256 epochId, uint256 amount) public onlyOwner {
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expiredMPPerEpoch[epochId] -= amount;
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}
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function deleteExpiredMP(uint256 epochId) public onlyOwner {
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delete expiredMPPerEpoch[epochId];
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}
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}
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contract StakeManager is Ownable {
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error StakeManager__SenderIsNotVault();
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error StakeManager__FundsLocked();
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error StakeManager__InvalidLockTime();
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error StakeManager__NoPendingMigration();
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error StakeManager__PendingMigration();
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error StakeManager__SenderIsNotPreviousStakeManager();
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error StakeManager__InvalidLimitEpoch();
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error StakeManager__AccountNotInitialized();
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error StakeManager__InvalidMigration();
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error StakeManager__AlreadyProcessedEpochs();
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error StakeManager__InsufficientFunds();
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error StakeManager__AlreadyStaked();
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error StakeManager__StakeIsTooLow();
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struct Account {
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address rewardAddress;
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uint256 balance;
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uint256 bonusMP;
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uint256 totalMP;
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uint256 lastMint;
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uint256 lockUntil;
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uint256 epoch;
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uint256 mpLimitEpoch;
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}
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struct Epoch {
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uint256 startTime;
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uint256 epochReward;
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uint256 totalSupply;
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uint256 estimatedMP;
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}
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uint256 public constant EPOCH_SIZE = 1 weeks;
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uint256 public constant YEAR = 365 days;
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uint256 public constant MIN_LOCKUP_PERIOD = 2 weeks;
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uint256 public constant MAX_LOCKUP_PERIOD = 4 * YEAR; // 4 years
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uint256 public constant MP_APY = 1;
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uint256 public constant MAX_BOOST = 4;
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mapping(address index => Account value) public accounts;
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mapping(uint256 index => Epoch value) public epochs;
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mapping(bytes32 codehash => bool approved) public isVault;
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uint256 public currentEpoch;
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uint256 public pendingReward;
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uint256 public pendingMPToBeMinted;
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uint256 public totalSupplyMP;
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uint256 public totalSupplyBalance;
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uint256 public totalMPPerEpoch;
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StakeRewardEstimate public stakeRewardEstimate;
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uint256 public currentEpochTotalExpiredMP;
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StakeManager public migration;
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StakeManager public immutable previousManager;
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ERC20 public immutable stakedToken;
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/**
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* @notice Only callable by vaults
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*/
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modifier onlyVault() {
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if (!isVault[msg.sender.codehash]) {
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revert StakeManager__SenderIsNotVault();
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}
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_;
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}
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modifier onlyAccountInitialized(address account) {
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if (accounts[account].lockUntil == 0) {
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revert StakeManager__AccountNotInitialized();
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}
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_;
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}
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/**
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* @notice Only callable when migration is not initialized.
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*/
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modifier noPendingMigration() {
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if (address(migration) != address(0)) {
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revert StakeManager__PendingMigration();
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}
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_;
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}
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/**
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* @notice Only callable when migration is initialized.
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*/
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modifier onlyPendingMigration() {
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if (address(migration) == address(0)) {
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revert StakeManager__NoPendingMigration();
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}
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_;
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}
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/**
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* @notice Only callable from old manager.
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*/
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modifier onlyPreviousManager() {
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if (msg.sender != address(previousManager)) {
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revert StakeManager__SenderIsNotPreviousStakeManager();
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}
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_;
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}
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/**
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* @notice Process epoch if it has ended
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*/
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modifier finalizeEpoch() {
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if (block.timestamp >= epochEnd() && address(migration) == address(0)) {
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uint256 expiredMP = stakeRewardEstimate.getExpiredMP(currentEpoch);
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if (expiredMP > 0) {
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totalMPPerEpoch -= expiredMP;
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stakeRewardEstimate.deleteExpiredMP(currentEpoch);
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}
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epochs[currentEpoch].estimatedMP = totalMPPerEpoch - currentEpochTotalExpiredMP;
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delete currentEpochTotalExpiredMP;
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pendingMPToBeMinted += epochs[currentEpoch].estimatedMP;
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//finalize current epoch
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epochs[currentEpoch].epochReward = epochReward();
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epochs[currentEpoch].totalSupply = totalSupply();
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pendingReward += epochs[currentEpoch].epochReward;
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//create new epoch
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currentEpoch++;
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epochs[currentEpoch].startTime = block.timestamp;
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}
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_;
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}
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constructor(address _stakedToken, address _previousManager) {
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epochs[0].startTime = block.timestamp;
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previousManager = StakeManager(_previousManager);
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stakedToken = ERC20(_stakedToken);
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if (address(previousManager) != address(0)) {
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stakeRewardEstimate = previousManager.stakeRewardEstimate();
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} else {
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stakeRewardEstimate = new StakeRewardEstimate();
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}
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}
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/**
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* Increases balance of msg.sender;
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* @param _amount Amount of balance being staked.
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* @param _secondsToLock Seconds of lockup time. 0 means no lockup.
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*
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* @dev Reverts when resulting locked time is not in range of [MIN_LOCKUP_PERIOD, MAX_LOCKUP_PERIOD]
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* @dev Reverts when account has already staked funds.
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* @dev Reverts when amount staked results in less than 1 MP per epoch.
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*/
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function stake(uint256 _amount, uint256 _secondsToLock) external onlyVault noPendingMigration finalizeEpoch {
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Account storage account = accounts[msg.sender];
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if (account.balance > 0 || account.lockUntil != 0) {
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revert StakeManager__AlreadyStaked();
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}
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if (_secondsToLock != 0 && (_secondsToLock < MIN_LOCKUP_PERIOD || _secondsToLock > MAX_LOCKUP_PERIOD)) {
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revert StakeManager__InvalidLockTime();
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}
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//mp estimation
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uint256 mpPerEpoch = _getMPToMint(_amount, EPOCH_SIZE);
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if (mpPerEpoch < 1) {
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revert StakeManager__StakeIsTooLow();
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}
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uint256 currentEpochExpiredMP = mpPerEpoch - _getMPToMint(_amount, epochEnd() - block.timestamp);
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uint256 maxMpToMint = _getMPToMint(_amount, MAX_BOOST * YEAR) + currentEpochExpiredMP;
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uint256 epochAmountToReachMpLimit = (maxMpToMint) / mpPerEpoch;
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uint256 mpLimitEpoch = currentEpoch + epochAmountToReachMpLimit;
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uint256 lastEpochAmountToMint = ((mpPerEpoch * (epochAmountToReachMpLimit + 1)) - maxMpToMint);
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// account initialization
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account.lockUntil = block.timestamp + _secondsToLock;
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account.epoch = currentEpoch; //starts in current epoch
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account.rewardAddress = StakeVault(msg.sender).owner();
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account.balance = _amount;
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account.mpLimitEpoch = mpLimitEpoch;
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_mintBonusMP(account, _secondsToLock, _amount);
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//update global storage
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totalSupplyBalance += _amount;
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currentEpochTotalExpiredMP += currentEpochExpiredMP;
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totalMPPerEpoch += mpPerEpoch;
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stakeRewardEstimate.incrementExpiredMP(mpLimitEpoch, lastEpochAmountToMint);
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stakeRewardEstimate.incrementExpiredMP(mpLimitEpoch + 1, mpPerEpoch - lastEpochAmountToMint);
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}
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/**
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* leaves the staking pool and withdraws all funds;
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*/
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function unstake(uint256 _amount)
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external
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onlyVault
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onlyAccountInitialized(msg.sender)
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noPendingMigration
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finalizeEpoch
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{
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Account storage account = accounts[msg.sender];
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if (_amount > account.balance) {
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revert StakeManager__InsufficientFunds();
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}
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if (account.lockUntil > block.timestamp) {
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revert StakeManager__FundsLocked();
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}
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_processAccount(account, currentEpoch);
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uint256 reducedMP = Math.mulDiv(_amount, account.totalMP, account.balance);
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uint256 reducedInitialMP = Math.mulDiv(_amount, account.bonusMP, account.balance);
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uint256 mpPerEpoch = _getMPToMint(account.balance, EPOCH_SIZE);
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stakeRewardEstimate.decrementExpiredMP(account.mpLimitEpoch, mpPerEpoch);
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if (account.mpLimitEpoch < currentEpoch) {
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totalMPPerEpoch -= mpPerEpoch;
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}
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//update storage
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account.balance -= _amount;
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account.bonusMP -= reducedInitialMP;
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account.totalMP -= reducedMP;
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totalSupplyBalance -= _amount;
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totalSupplyMP -= reducedMP;
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}
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/**
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* @notice Locks entire balance for more amount of time.
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* @param _secondsToIncreaseLock Seconds to increase in locked time. If stake is unlocked, increases from
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* block.timestamp.
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*
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* @dev Reverts when resulting locked time is not in range of [MIN_LOCKUP_PERIOD, MAX_LOCKUP_PERIOD]
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*/
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function lock(uint256 _secondsToIncreaseLock)
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external
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onlyVault
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onlyAccountInitialized(msg.sender)
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noPendingMigration
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finalizeEpoch
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{
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Account storage account = accounts[msg.sender];
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_processAccount(account, currentEpoch);
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uint256 lockUntil = account.lockUntil;
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uint256 deltaTime;
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if (lockUntil < block.timestamp) {
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lockUntil = block.timestamp + _secondsToIncreaseLock;
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deltaTime = _secondsToIncreaseLock;
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} else {
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lockUntil += _secondsToIncreaseLock;
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deltaTime = lockUntil - block.timestamp;
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}
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if (deltaTime < MIN_LOCKUP_PERIOD || deltaTime > MAX_LOCKUP_PERIOD) {
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revert StakeManager__InvalidLockTime();
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}
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_mintBonusMP(account, _secondsToIncreaseLock, 0);
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//update account storage
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account.lockUntil = lockUntil;
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}
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/**
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* @notice Release rewards for current epoch and increase epoch.
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* @dev only executes the prerequisite modifier finalizeEpoch
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*/
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function executeEpoch() external noPendingMigration finalizeEpoch {
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return; //see modifier finalizeEpoch
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}
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/**
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* @notice Execute rewards for account until limit has reached
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* @param _vault Referred account
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* @param _limitEpoch Until what epoch it should be executed
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*/
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function executeAccount(
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address _vault,
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uint256 _limitEpoch
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)
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external
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onlyAccountInitialized(_vault)
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finalizeEpoch
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{
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_processAccount(accounts[_vault], _limitEpoch);
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}
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/**
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* @notice Enables a contract class to interact with staking functions
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* @param _codehash bytecode hash of contract
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*/
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function setVault(bytes32 _codehash) external onlyOwner {
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isVault[_codehash] = true;
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}
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/**
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* @notice starts migration to new StakeManager
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* @param _migration new StakeManager
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*/
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function startMigration(StakeManager _migration) external onlyOwner noPendingMigration finalizeEpoch {
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if (_migration == this || address(_migration) == address(0)) {
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revert StakeManager__InvalidMigration();
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}
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migration = _migration;
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stakedToken.transfer(address(migration), epochReward());
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stakeRewardEstimate.transferOwnership(address(_migration));
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migration.migrationInitialize(
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currentEpoch,
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totalSupplyMP,
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totalSupplyBalance,
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epochs[currentEpoch].startTime,
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totalMPPerEpoch,
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pendingMPToBeMinted,
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currentEpochTotalExpiredMP
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);
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}
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/**
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* @dev Callable automatically from old StakeManager.startMigration(address)
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* @notice Initilizes migration process
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* @param _currentEpoch epoch of old manager
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* @param _totalSupplyMP MP supply on old manager
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* @param _totalSupplyBalance stake supply on old manager
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* @param _epochStartTime epoch start time of old manager
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*/
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function migrationInitialize(
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uint256 _currentEpoch,
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uint256 _totalSupplyMP,
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uint256 _totalSupplyBalance,
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uint256 _epochStartTime,
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uint256 _totalMPPerEpoch,
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uint256 _pendingMPToBeMinted,
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uint256 _currentEpochExpiredMP
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)
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external
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onlyPreviousManager
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{
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if (address(migration) != address(0)) {
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revert StakeManager__PendingMigration();
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}
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if (currentEpoch > 0) {
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revert StakeManager__AlreadyProcessedEpochs();
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}
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currentEpoch = _currentEpoch;
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totalSupplyMP = _totalSupplyMP;
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totalSupplyBalance = _totalSupplyBalance;
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epochs[currentEpoch].startTime = _epochStartTime;
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totalMPPerEpoch = _totalMPPerEpoch;
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pendingMPToBeMinted = _pendingMPToBeMinted;
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currentEpochTotalExpiredMP = _currentEpochExpiredMP;
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}
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/**
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* @notice Transfer current epoch funds for migrated manager
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*/
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function transferNonPending() external onlyPendingMigration {
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stakedToken.transfer(address(migration), epochReward());
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}
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/**
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* @notice Migrate account to new manager.
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* @param _acceptMigration true if wants to migrate, false if wants to leave
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*/
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function migrateTo(bool _acceptMigration)
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external
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onlyVault
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onlyAccountInitialized(msg.sender)
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onlyPendingMigration
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returns (StakeManager newManager)
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{
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_processAccount(accounts[msg.sender], currentEpoch);
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Account memory account = accounts[msg.sender];
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totalSupplyMP -= account.totalMP;
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totalSupplyBalance -= account.balance;
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delete accounts[msg.sender];
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migration.migrateFrom(msg.sender, _acceptMigration, account);
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return migration;
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}
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/**
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* @dev Only callable from old manager.
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* @notice Migrate account from old manager
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* @param _vault Account address
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* @param _account Account data
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* @param _acceptMigration If account should be stored or its MP/balance supply reduced
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*/
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function migrateFrom(address _vault, bool _acceptMigration, Account memory _account) external onlyPreviousManager {
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if (_acceptMigration) {
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accounts[_vault] = _account;
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} else {
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totalSupplyMP -= _account.totalMP;
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totalSupplyBalance -= _account.balance;
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}
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}
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/**
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* @dev Only callable from old manager.
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* @notice Increase total MP from old manager
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* @param _amount amount MP increased on account after migration initialized
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*/
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function increaseTotalMP(uint256 _amount) external onlyPreviousManager {
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totalSupplyMP += _amount;
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}
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/**
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* @notice Process account until limit has reached
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* @param account Account to process
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* @param _limitEpoch Until what epoch it should be executed
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*/
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function _processAccount(Account storage account, uint256 _limitEpoch) private {
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if (_limitEpoch > currentEpoch) {
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revert StakeManager__InvalidLimitEpoch();
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}
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uint256 userReward;
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uint256 userEpoch = account.epoch;
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uint256 mpDifference = account.totalMP;
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while (userEpoch < _limitEpoch) {
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Epoch storage iEpoch = epochs[userEpoch];
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//mint multiplier points to that epoch
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_mintMP(account, iEpoch.startTime + EPOCH_SIZE, iEpoch);
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uint256 userSupply = account.balance + account.totalMP;
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uint256 userEpochReward = Math.mulDiv(userSupply, iEpoch.epochReward, iEpoch.totalSupply);
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userReward += userEpochReward;
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iEpoch.epochReward -= userEpochReward;
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iEpoch.totalSupply -= userSupply;
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if (iEpoch.totalSupply == 0) {
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pendingReward -= iEpoch.epochReward;
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delete epochs[userEpoch];
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}
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userEpoch++;
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}
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account.epoch = userEpoch;
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if (userReward > 0) {
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pendingReward -= userReward;
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stakedToken.transfer(account.rewardAddress, userReward);
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}
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if (address(migration) != address(0)) {
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mpDifference = account.totalMP - mpDifference;
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migration.increaseTotalMP(mpDifference);
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}
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}
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/**
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* @notice Mint bonus multiplier points for given staking amount and time
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* @dev if amount is greater 0, it increases difference of amount for current remaining lock time
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* @dev if increased lock time, increases difference of total new balance for increased lock time
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* @param account Account to mint multiplier points
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* @param increasedLockTime increased lock time
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* @param amount amount to stake
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*/
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function _mintBonusMP(Account storage account, uint256 increasedLockTime, uint256 amount) private {
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uint256 mpToMint;
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if (amount > 0) {
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mpToMint += amount; //initial multiplier points
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}
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if (increasedLockTime > 0) {
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//bonus for increased lock time
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mpToMint += _getMPToMint(account.balance + amount, increasedLockTime);
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}
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//update storage
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totalSupplyMP += mpToMint;
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account.bonusMP += mpToMint;
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account.totalMP += mpToMint;
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account.lastMint = block.timestamp;
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}
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/**
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* @notice Mint multiplier points for given account and epoch
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* @param account Account earning multiplier points
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* @param processTime amount of time of multiplier points
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* @param epoch Epoch to increment total supply
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*/
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function _mintMP(Account storage account, uint256 processTime, Epoch storage epoch) private {
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uint256 mpToMint = _getMaxMPToMint(
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_getMPToMint(account.balance, processTime - account.lastMint),
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account.balance,
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account.bonusMP,
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account.totalMP
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);
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//update storage
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account.lastMint = processTime;
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account.totalMP += mpToMint;
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totalSupplyMP += mpToMint;
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//mp estimation
|
|
epoch.estimatedMP -= mpToMint;
|
|
pendingMPToBeMinted -= mpToMint;
|
|
}
|
|
|
|
/**
|
|
* @notice Calculates maximum multiplier point increase for given balance
|
|
* @param _mpToMint tested value
|
|
* @param _balance balance of account
|
|
* @param _totalMP total multiplier point of the account
|
|
* @param _bonusMP bonus multiplier point of the account
|
|
* @return _maxMpToMint maximum multiplier points to mint
|
|
*/
|
|
function _getMaxMPToMint(
|
|
uint256 _mpToMint,
|
|
uint256 _balance,
|
|
uint256 _bonusMP,
|
|
uint256 _totalMP
|
|
)
|
|
private
|
|
pure
|
|
returns (uint256 _maxMpToMint)
|
|
{
|
|
// Maximum multiplier point for given balance
|
|
_maxMpToMint = _getMPToMint(_balance, MAX_BOOST * YEAR) + _bonusMP;
|
|
if (_mpToMint + _totalMP > _maxMpToMint) {
|
|
//reached cap when increasing MP
|
|
return _maxMpToMint - _totalMP; //how much left to reach cap
|
|
} else {
|
|
//not reached capw hen increasing MP
|
|
return _mpToMint; //just return tested value
|
|
}
|
|
}
|
|
|
|
/**
|
|
* @notice Calculates multiplier points to mint for given balance and time
|
|
* @param _balance balance of account
|
|
* @param _deltaTime time difference
|
|
* @return multiplier points to mint
|
|
*/
|
|
function _getMPToMint(uint256 _balance, uint256 _deltaTime) private pure returns (uint256) {
|
|
return Math.mulDiv(_balance, _deltaTime, YEAR) * MP_APY;
|
|
}
|
|
|
|
/*
|
|
* @notice Calculates multiplier points to mint for given balance and time
|
|
* @param _balance balance of account
|
|
* @param _deltaTime time difference
|
|
* @return multiplier points to mint
|
|
*/
|
|
function calculateMPToMint(uint256 _balance, uint256 _deltaTime) public pure returns (uint256) {
|
|
return _getMPToMint(_balance, _deltaTime);
|
|
}
|
|
|
|
/**
|
|
* @notice Returns total of multiplier points and balance,
|
|
* and the pending MPs that would be minted if all accounts were processed
|
|
* @return _totalSupply current total supply
|
|
*/
|
|
function totalSupply() public view returns (uint256 _totalSupply) {
|
|
return totalSupplyMP + totalSupplyBalance + pendingMPToBeMinted;
|
|
}
|
|
|
|
/**
|
|
* @notice Returns total of multiplier points and balance
|
|
* @return _totalSupply current total supply
|
|
*/
|
|
function totalSupplyMinted() public view returns (uint256 _totalSupply) {
|
|
return totalSupplyMP + totalSupplyBalance;
|
|
}
|
|
|
|
/**
|
|
* @notice Returns funds available for current epoch
|
|
* @return _epochReward current epoch reward
|
|
*/
|
|
function epochReward() public view returns (uint256 _epochReward) {
|
|
return stakedToken.balanceOf(address(this)) - pendingReward;
|
|
}
|
|
|
|
/**
|
|
* @notice Returns end time of current epoch
|
|
* @return _epochEnd end time of current epoch
|
|
*/
|
|
function epochEnd() public view returns (uint256 _epochEnd) {
|
|
return epochs[currentEpoch].startTime + EPOCH_SIZE;
|
|
}
|
|
}
|