/** * Source Code first verified at https://etherscan.io on Sunday, March 24, 2019 (UTC) */ pragma solidity ^0.5.0; /* Copyright 2016, Jordi Baylina This program is free software: you can redistribute it and/or modify it under the terms of the GNU General Public License as published by the Free Software Foundation, either version 3 of the License, or (at your option) any later version. This program is distributed in the hope that it will be useful, but WITHOUT ANY WARRANTY; without even the implied warranty of MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU General Public License for more details. You should have received a copy of the GNU General Public License along with this program. If not, see . */ /// @title MiniMeToken Contract /// @author Jordi Baylina /// @dev This token contract's goal is to make it easy for anyone to clone this /// token using the token distribution at a given block, this will allow DAO's /// and DApps to upgrade their features in a decentralized manner without /// affecting the original token /// @dev It is ERC20 compliant, but still needs to under go further testing. contract Controlled { /// @notice The address of the controller is the only address that can call /// a function with this modifier modifier onlyController { require(msg.sender == controller); _; } address public controller; constructor() public { controller = msg.sender;} /// @notice Changes the controller of the contract /// @param _newController The new controller of the contract function changeController(address _newController) public onlyController { controller = _newController; } } contract TokenController { /// @notice Called when `_owner` sends ether to the MiniMe Token contract /// @param _owner The address that sent the ether to create tokens /// @return True if the ether is accepted, false if it throws function proxyPayment(address _owner) public payable returns(bool); /// @notice Notifies the controller about a token transfer allowing the /// controller to react if desired /// @param _from The origin of the transfer /// @param _to The destination of the transfer /// @param _amount The amount of the transfer /// @return False if the controller does not authorize the transfer function onTransfer(address _from, address _to, uint _amount) public returns(bool); /// @notice Notifies the controller about an approval allowing the /// controller to react if desired /// @param _owner The address that calls `approve()` /// @param _spender The spender in the `approve()` call /// @param _amount The amount in the `approve()` call /// @return False if the controller does not authorize the approval function onApprove(address _owner, address _spender, uint _amount) public returns(bool); /// @notice Notifies the controller about a token burn /// @param _owner The address of the burner /// @param _amount The amount to burn /// @return False if the controller does not authorize the burn function onBurn(address payable _owner, uint _amount) public returns(bool); } contract ApproveAndCallFallBack { function receiveApproval(address from, uint256 _amount, address _token, bytes memory _data) public; } /// @dev The actual token contract, the default controller is the msg.sender /// that deploys the contract, so usually this token will be deployed by a /// token controller contract, which Giveth will call a "Campaign" /// @dev The actual token contract, the default controller is the msg.sender /// that deploys the contract, so usually this token will be deployed by a /// token controller contract, which Giveth will call a "Campaign" contract MiniMeToken is Controlled { string public name; //The Token's name: e.g. DigixDAO Tokens uint8 public decimals; //Number of decimals of the smallest unit string public symbol; //An identifier: e.g. REP string public version = 'EFX_0.1'; //An arbitrary versioning scheme /// @dev `Checkpoint` is the structure that attaches a block number to a /// given value, the block number attached is the one that last changed the /// value struct Checkpoint { // `fromBlock` is the block number that the value was generated from uint128 fromBlock; // `value` is the amount of tokens at a specific block number uint128 value; } // `parentToken` is the Token address that was cloned to produce this token; // it will be 0x0 for a token that was not cloned MiniMeToken public parentToken; // `parentSnapShotBlock` is the block number from the Parent Token that was // used to determine the initial distribution of the Clone Token uint public parentSnapShotBlock; // `creationBlock` is the block number that the Clone Token was created uint public creationBlock; // `balances` is the map that tracks the balance of each address, in this // contract when the balance changes the block number that the change // occurred is also included in the map mapping (address => Checkpoint[]) balances; // `allowed` tracks any extra transfer rights as in all ERC20 tokens mapping (address => mapping (address => uint256)) allowed; // Tracks the history of the `totalSupply` of the token Checkpoint[] totalSupplyHistory; // Flag that determines if the token is transferable or not. bool public transfersEnabled; // Tracks the history of the `pledgedFees` belonging to token holders Checkpoint[] totalPledgedFeesHistory; // in wei // The factory used to create new clone tokens MiniMeTokenFactory public tokenFactory; //////////////// // Constructor //////////////// /// @notice Constructor to create a MiniMeToken /// @param _tokenFactory The address of the MiniMeTokenFactory contract that /// will create the Clone token contracts, the token factory needs to be /// deployed first /// @param _parentToken Address of the parent token, set to 0x0 if it is a /// new token /// @param _parentSnapShotBlock Block of the parent token that will /// determine the initial distribution of the clone token, set to 0 if it /// is a new token /// @param _tokenName Name of the new token /// @param _decimalUnits Number of decimals of the new token /// @param _tokenSymbol Token Symbol for the new token /// @param _transfersEnabled If true, tokens will be able to be transferred constructor( address _tokenFactory, address payable _parentToken, uint _parentSnapShotBlock, string memory _tokenName, uint8 _decimalUnits, string memory _tokenSymbol, bool _transfersEnabled ) public { tokenFactory = MiniMeTokenFactory(_tokenFactory); name = _tokenName; // Set the name decimals = _decimalUnits; // Set the decimals symbol = _tokenSymbol; // Set the symbol parentToken = MiniMeToken(_parentToken); parentSnapShotBlock = _parentSnapShotBlock; transfersEnabled = _transfersEnabled; creationBlock = block.number; } /////////////////// // ERC20 Methods /////////////////// uint constant MAX_UINT = 2**256 - 1; /// @notice Send `_amount` tokens to `_to` from `msg.sender` /// @param _to The address of the recipient /// @param _amount The amount of tokens to be transferred /// @return Whether the transfer was successful or not function transfer(address _to, uint256 _amount) public returns (bool success) { require(transfersEnabled); doTransfer(msg.sender, _to, _amount); return true; } /// @notice Send `_amount` tokens to `_to` from `_from` on the condition it /// is approved by `_from` /// @param _from The address holding the tokens being transferred /// @param _to The address of the recipient /// @param _amount The amount of tokens to be transferred /// @return True if the transfer was successful function transferFrom(address _from, address _to, uint256 _amount ) public returns (bool success) { // The controller of this contract can move tokens around at will, // this is important to recognize! Confirm that you trust the // controller of this contract, which in most situations should be // another open source smart contract or 0x0 if (msg.sender != controller) { require(transfersEnabled); // The standard ERC 20 transferFrom functionality if (allowed[_from][msg.sender] < MAX_UINT) { require(allowed[_from][msg.sender] >= _amount); allowed[_from][msg.sender] -= _amount; } } doTransfer(_from, _to, _amount); return true; } /// @dev This is the actual transfer function in the token contract, it can /// only be called by other functions in this contract. /// @param _from The address holding the tokens being transferred /// @param _to The address of the recipient /// @param _amount The amount of tokens to be transferred /// @return True if the transfer was successful function doTransfer(address _from, address _to, uint _amount ) internal { if (_amount == 0) { emit Transfer(_from, _to, _amount); // Follow the spec to louch the event when transfer 0 return; } require(parentSnapShotBlock < block.number); // Do not allow transfer to 0x0 or the token contract itself require((_to != address(0)) && (_to != address(this))); // If the amount being transfered is more than the balance of the // account the transfer throws uint256 previousBalanceFrom = balanceOfAt(_from, block.number); require(previousBalanceFrom >= _amount); // Alerts the token controller of the transfer if (isContract(controller)) { require(TokenController(controller).onTransfer(_from, _to, _amount)); } // First update the balance array with the new value for the address // sending the tokens updateValueAtNow(balances[_from], previousBalanceFrom - _amount); // Then update the balance array with the new value for the address // receiving the tokens uint256 previousBalanceTo = balanceOfAt(_to, block.number); require(previousBalanceTo + _amount >= previousBalanceTo); // Check for overflow updateValueAtNow(balances[_to], previousBalanceTo + _amount); // An event to make the transfer easy to find on the blockchain emit Transfer(_from, _to, _amount); } /// @param _owner The address that's balance is being requested /// @return The balance of `_owner` at the current block function balanceOf(address _owner) public view returns (uint256 balance) { return balanceOfAt(_owner, block.number); } /// @notice `msg.sender` approves `_spender` to spend `_amount` tokens on /// its behalf. This is a modified version of the ERC20 approve function /// to be a little bit safer /// @param _spender The address of the account able to transfer the tokens /// @param _amount The amount of tokens to be approved for transfer /// @return True if the approval was successful function approve(address _spender, uint256 _amount) public returns (bool success) { require(transfersEnabled); // To change the approve amount you first have to reduce the addresses` // allowance to zero by calling `approve(_spender,0)` if it is not // already 0 to mitigate the race condition described here: // https://github.com/ethereum/EIPs/issues/20#issuecomment-263524729 require((_amount == 0) || (allowed[msg.sender][_spender] == 0)); // Alerts the token controller of the approve function call if (isContract(controller)) { require(TokenController(controller).onApprove(msg.sender, _spender, _amount)); } allowed[msg.sender][_spender] = _amount; emit Approval(msg.sender, _spender, _amount); return true; } /// @dev This function makes it easy to read the `allowed[]` map /// @param _owner The address of the account that owns the token /// @param _spender The address of the account able to transfer the tokens /// @return Amount of remaining tokens of _owner that _spender is allowed /// to spend function allowance(address _owner, address _spender ) public view returns (uint256 remaining) { return allowed[_owner][_spender]; } /// @notice `msg.sender` approves `_spender` to send `_amount` tokens on /// its behalf, and then a function is triggered in the contract that is /// being approved, `_spender`. This allows users to use their tokens to /// interact with contracts in one function call instead of two /// @param _spender The address of the contract able to transfer the tokens /// @param _amount The amount of tokens to be approved for transfer /// @return True if the function call was successful function approveAndCall(address _spender, uint256 _amount, bytes memory _extraData ) public returns (bool success) { require(approve(_spender, _amount)); ApproveAndCallFallBack(_spender).receiveApproval( msg.sender, _amount, address(this), _extraData ); return true; } /// @dev This function makes it easy to get the total number of tokens /// @return The total number of tokens function totalSupply() public view returns (uint) { return totalSupplyAt(block.number); } //////////////// // Query balance and totalSupply in History //////////////// /// @dev Queries the balance of `_owner` at a specific `_blockNumber` /// @param _owner The address from which the balance will be retrieved /// @param _blockNumber The block number when the balance is queried /// @return The balance at `_blockNumber` function balanceOfAt(address _owner, uint _blockNumber) public view returns (uint) { // These next few lines are used when the balance of the token is // requested before a check point was ever created for this token, it // requires that the `parentToken.balanceOfAt` be queried at the // genesis block for that token as this contains initial balance of // this token if ((balances[_owner].length == 0) || (balances[_owner][0].fromBlock > _blockNumber)) { if (address(parentToken) != address(0)) { return parentToken.balanceOfAt(_owner, min(_blockNumber, parentSnapShotBlock)); } else { // Has no parent return 0; } // This will return the expected balance during normal situations } else { return getValueAt(balances[_owner], _blockNumber); } } /// @notice Total amount of tokens at a specific `_blockNumber`. /// @param _blockNumber The block number when the totalSupply is queried /// @return The total amount of tokens at `_blockNumber` function totalSupplyAt(uint _blockNumber) public view returns(uint) { // These next few lines are used when the totalSupply of the token is // requested before a check point was ever created for this token, it // requires that the `parentToken.totalSupplyAt` be queried at the // genesis block for this token as that contains totalSupply of this // token at this block number. if ((totalSupplyHistory.length == 0) || (totalSupplyHistory[0].fromBlock > _blockNumber)) { if (address(parentToken) != address(0)) { return parentToken.totalSupplyAt(min(_blockNumber, parentSnapShotBlock)); } else { return 0; } // This will return the expected totalSupply during normal situations } else { return getValueAt(totalSupplyHistory, _blockNumber); } } //////////////// // Query pledgedFees // in wei //////////////// /// @dev This function makes it easy to get the total pledged fees /// @return The total number of fees belonging to token holders function totalPledgedFees() public view returns (uint) { return totalPledgedFeesAt(block.number); } /// @notice Total amount of fees at a specific `_blockNumber`. /// @param _blockNumber The block number when the totalPledgedFees is queried /// @return The total amount of pledged fees at `_blockNumber` function totalPledgedFeesAt(uint _blockNumber) public view returns(uint) { // These next few lines are used when the totalPledgedFees of the token is // requested before a check point was ever created for this token, it // requires that the `parentToken.totalPledgedFeesAt` be queried at the // genesis block for this token as that contains totalPledgedFees of this // token at this block number. if ((totalPledgedFeesHistory.length == 0) || (totalPledgedFeesHistory[0].fromBlock > _blockNumber)) { if (address(parentToken) != address(0)) { return parentToken.totalPledgedFeesAt(min(_blockNumber, parentSnapShotBlock)); } else { return 0; } // This will return the expected totalPledgedFees during normal situations } else { return getValueAt(totalPledgedFeesHistory, _blockNumber); } } //////////////// // Pledge Fees To Token Holders or Reduce Pledged Fees // in wei //////////////// /// @notice Pledges fees to the token holders, later to be claimed by burning /// @param _value The amount sent to the vault by controller, reserved for token holders function pledgeFees(uint _value) public onlyController returns (bool) { uint curTotalFees = totalPledgedFees(); require(curTotalFees + _value >= curTotalFees); // Check for overflow updateValueAtNow(totalPledgedFeesHistory, curTotalFees + _value); return true; } /// @notice Reduces pledged fees to the token holders, i.e. during upgrade or token burning /// @param _value The amount of pledged fees which are being distributed to token holders, reducing liability function reducePledgedFees(uint _value) public onlyController returns (bool) { uint curTotalFees = totalPledgedFees(); require(curTotalFees >= _value); updateValueAtNow(totalPledgedFeesHistory, curTotalFees - _value); return true; } //////////////// // Clone Token Method //////////////// /// @notice Creates a new clone token with the initial distribution being /// this token at `_snapshotBlock` /// @param _cloneTokenName Name of the clone token /// @param _cloneDecimalUnits Number of decimals of the smallest unit /// @param _cloneTokenSymbol Symbol of the clone token /// @param _snapshotBlock Block when the distribution of the parent token is /// copied to set the initial distribution of the new clone token; /// if the block is zero than the actual block, the current block is used /// @param _transfersEnabled True if transfers are allowed in the clone /// @return The address of the new MiniMeToken Contract function createCloneToken( string memory _cloneTokenName, uint8 _cloneDecimalUnits, string memory _cloneTokenSymbol, uint _snapshotBlock, bool _transfersEnabled ) public returns(address) { if (_snapshotBlock == 0) _snapshotBlock = block.number; MiniMeToken cloneToken = tokenFactory.createCloneToken( address(this), _snapshotBlock, _cloneTokenName, _cloneDecimalUnits, _cloneTokenSymbol, _transfersEnabled ); cloneToken.changeController(msg.sender); // An event to make the token easy to find on the blockchain emit NewCloneToken(address(cloneToken), _snapshotBlock); return address(cloneToken); } //////////////// // Generate and destroy tokens //////////////// /// @notice Generates `_amount` tokens that are assigned to `_owner` /// @param _owner The address that will be assigned the new tokens /// @param _amount The quantity of tokens generated /// @return True if the tokens are generated correctly function generateTokens(address _owner, uint _amount ) public onlyController returns (bool) { uint curTotalSupply = totalSupply(); require(curTotalSupply + _amount >= curTotalSupply); // Check for overflow uint previousBalanceTo = balanceOf(_owner); require(previousBalanceTo + _amount >= previousBalanceTo); // Check for overflow updateValueAtNow(totalSupplyHistory, curTotalSupply + _amount); updateValueAtNow(balances[_owner], previousBalanceTo + _amount); emit Transfer(address(0), _owner, _amount); return true; } /// @notice Burns `_amount` tokens from `_owner` /// @param _owner The address that will lose the tokens /// @param _amount The quantity of tokens to burn /// @return True if the tokens are burned correctly function destroyTokens(address _owner, uint _amount ) onlyController public returns (bool) { uint curTotalSupply = totalSupply(); require(curTotalSupply >= _amount); uint previousBalanceFrom = balanceOf(_owner); require(previousBalanceFrom >= _amount); updateValueAtNow(totalSupplyHistory, curTotalSupply - _amount); updateValueAtNow(balances[_owner], previousBalanceFrom - _amount); emit Transfer(_owner, address(0), _amount); return true; } //////////////// // Enable tokens transfers //////////////// /// @notice Enables token holders to transfer their tokens freely if true /// @param _transfersEnabled True if transfers are allowed in the clone function enableTransfers(bool _transfersEnabled) public onlyController { transfersEnabled = _transfersEnabled; } //////////////// // Internal helper functions to query and set a value in a snapshot array //////////////// /// @dev `getValueAt` retrieves the number of tokens at a given block number /// @param checkpoints The history of values being queried /// @param _block The block number to retrieve the value at /// @return The number of tokens being queried function getValueAt(Checkpoint[] storage checkpoints, uint _block ) view internal returns (uint) { if (checkpoints.length == 0) return 0; // Shortcut for the actual value if (_block >= checkpoints[checkpoints.length-1].fromBlock) return checkpoints[checkpoints.length-1].value; if (_block < checkpoints[0].fromBlock) return 0; // Binary search of the value in the array uint min = 0; uint max = checkpoints.length-1; while (max > min) { uint mid = (max + min + 1)/ 2; if (checkpoints[mid].fromBlock<=_block) { min = mid; } else { max = mid-1; } } return checkpoints[min].value; } /// @dev `updateValueAtNow` used to update the `balances` map and the /// `totalSupplyHistory` /// @param checkpoints The history of data being updated /// @param _value The new number of tokens function updateValueAtNow(Checkpoint[] storage checkpoints, uint _value ) internal { if ((checkpoints.length == 0) || (checkpoints[checkpoints.length -1].fromBlock < block.number)) { Checkpoint storage newCheckPoint = checkpoints[ checkpoints.length++ ]; newCheckPoint.fromBlock = uint128(block.number); newCheckPoint.value = uint128(_value); } else { Checkpoint storage oldCheckPoint = checkpoints[checkpoints.length-1]; oldCheckPoint.value = uint128(_value); } } /// @dev Internal function to determine if an address is a contract /// @param _addr The address being queried /// @return True if `_addr` is a contract function isContract(address _addr) view internal returns(bool) { uint size; if (_addr == address(0)) return false; assembly { size := extcodesize(_addr) } return size>0; } /// @dev Helper function to return a min betwen the two uints function min(uint a, uint b) pure internal returns (uint) { return a < b ? a : b; } /// @notice The fallback function: If the contract's controller has not been /// set to 0, then the `proxyPayment` method is called which relays the /// ether and creates tokens as described in the token controller contract function () external payable { require(isContract(controller)); require(TokenController(controller).proxyPayment.value(msg.value)(msg.sender)); } //////////////// // Events //////////////// event ClaimedTokens(address indexed _token, address indexed _controller, uint _amount); event Transfer(address indexed _from, address indexed _to, uint256 _amount); event NewCloneToken(address indexed _cloneToken, uint _snapshotBlock); event Approval( address indexed _owner, address indexed _spender, uint256 _amount ); } //////////////// // MiniMeTokenFactory //////////////// /// @dev This contract is used to generate clone contracts from a contract. /// In solidity this is the way to create a contract from a contract of the /// same class contract MiniMeTokenFactory { /// @notice Update the DApp by creating a new token with new functionalities /// the msg.sender becomes the controller of this clone token /// @param _parentToken Address of the token being cloned /// @param _snapshotBlock Block of the parent token that will /// determine the initial distribution of the clone token /// @param _tokenName Name of the new token /// @param _decimalUnits Number of decimals of the new token /// @param _tokenSymbol Token Symbol for the new token /// @param _transfersEnabled If true, tokens will be able to be transferred /// @return The address of the new token contract function createCloneToken( address payable _parentToken, uint _snapshotBlock, string memory _tokenName, uint8 _decimalUnits, string memory _tokenSymbol, bool _transfersEnabled ) public returns (MiniMeToken) { MiniMeToken newToken = new MiniMeToken( address(this), _parentToken, _snapshotBlock, _tokenName, _decimalUnits, _tokenSymbol, _transfersEnabled ); newToken.changeController(msg.sender); return newToken; } } /* Copyright 2017, Will Harborne (Ethfinex) */ contract DestructibleMiniMeToken is MiniMeToken { address payable public terminator; constructor( address _tokenFactory, address payable _parentToken, uint _parentSnapShotBlock, string memory _tokenName, uint8 _decimalUnits, string memory _tokenSymbol, bool _transfersEnabled, address payable _terminator ) public MiniMeToken( _tokenFactory, _parentToken, _parentSnapShotBlock, _tokenName, _decimalUnits, _tokenSymbol, _transfersEnabled ) { terminator = _terminator; } function recycle() public { require(msg.sender == terminator); selfdestruct(terminator); } } contract DestructibleMiniMeTokenFactory { /// @notice Update the DApp by creating a new token with new functionalities /// the msg.sender becomes the controller of this clone token /// @param _parentToken Address of the token being cloned /// @param _snapshotBlock Block of the parent token that will /// determine the initial distribution of the clone token /// @param _tokenName Name of the new token /// @param _decimalUnits Number of decimals of the new token /// @param _tokenSymbol Token Symbol for the new token /// @param _transfersEnabled If true, tokens will be able to be transferred /// @return The address of the new token contract function createDestructibleCloneToken( address payable _parentToken, uint _snapshotBlock, string memory _tokenName, uint8 _decimalUnits, string memory _tokenSymbol, bool _transfersEnabled ) public returns (DestructibleMiniMeToken) { DestructibleMiniMeToken newToken = new DestructibleMiniMeToken( address(this), _parentToken, _snapshotBlock, _tokenName, _decimalUnits, _tokenSymbol, _transfersEnabled, msg.sender ); newToken.changeController(msg.sender); return newToken; } } contract Ownable { address public owner; event OwnershipTransferred(address indexed previousOwner, address indexed newOwner); constructor() public { owner = msg.sender; } modifier onlyOwner() { require(msg.sender == owner); _; } function transferOwnership(address newOwner) public onlyOwner { require(newOwner != address(0)); emit OwnershipTransferred(owner, newOwner); owner = newOwner; } } /* Copyright 2018, Will Harborne @ Ethfinex */ /// @title ProposalManager Contract /// @author Will Harborne @ Ethfinex contract TokenListingManager is Ownable { address public constant NECTAR_TOKEN = 0xCc80C051057B774cD75067Dc48f8987C4Eb97A5e; address public constant TOKEN_FACTORY = 0x8936131A81F29205EeDDec486f401A8A0aFAb15A; uint public constant MAX_CANDIDATES = 20; struct TokenProposal { address[] consideredTokens; uint startBlock; uint startTime; uint duration; DestructibleMiniMeToken votingToken; uint[] yesVotes; // criteria values // 0. only first one win the vote; // 1. top N (number in extraData) win the vote; // 2. All over N (number in extra data) votes win the vote; uint criteria; uint extraData; bool concluded; mapping(address => mapping(address => uint256)) votesForToken; } TokenProposal[] public tokenBatches; DestructibleMiniMeTokenFactory public tokenFactory; address payable public nectarToken; mapping(address => bool) public admins; mapping(address => bool) public isWinner; mapping(address => uint256) public winningVotes; mapping(address => uint) public proposalWhenTokenWon; modifier onlyAdmins() { require(isAdmin(msg.sender)); _; } constructor(address _tokenFactory, address payable _nectarToken) public { tokenFactory = DestructibleMiniMeTokenFactory(_tokenFactory); nectarToken = _nectarToken; admins[msg.sender] = true; } /// @notice Admins are able to approve proposal that someone submitted /// @param _tokens the list of tokens in consideration during this period /// @param _duration number of days for voting /// @param _criteria number that determines how winner is selected /// @param _extraData extra data for criteria parameter function startTokenVotes(address[] memory _tokens, uint _duration, uint _criteria, uint _extraData) public onlyAdmins { require(_tokens.length <= MAX_CANDIDATES); if (_criteria == 1) { // in other case all tokens would be winners require(_extraData < _tokens.length); } uint _proposalId = tokenBatches.length; if (_proposalId > 0) { endTokenVote(_proposalId - 1); } tokenBatches.length++; TokenProposal storage p = tokenBatches[_proposalId]; p.duration = _duration * (1 days); p.consideredTokens = _tokens; p.yesVotes = new uint[](_tokens.length); p.votingToken = tokenFactory.createDestructibleCloneToken( nectarToken, getBlockNumber(), appendUintToString("EfxTokenVotes-", _proposalId), MiniMeToken(nectarToken).decimals(), appendUintToString("EVT-", _proposalId), true); p.startTime = now; p.startBlock = getBlockNumber(); p.criteria = _criteria; p.extraData = _extraData; p.concluded = false; emit NewTokens(_proposalId); } /// @notice Anyone can end the vote if it has completed function endTokenVote(uint _proposalId) public returns(bool) { require(_proposalId <= tokenBatches.length); TokenProposal storage op = tokenBatches[_proposalId]; require(op.startTime + op.duration < now); if (op.concluded) { return true; } uint[] memory _previousWinnerMap = getWinnerIndices(_proposalId); for (uint i=0; i < _previousWinnerMap.length; i++) { isWinner[op.consideredTokens[_previousWinnerMap[i]]] = true; winningVotes[op.consideredTokens[_previousWinnerMap[i]]] = op.yesVotes[_previousWinnerMap[i]]; proposalWhenTokenWon[op.consideredTokens[_previousWinnerMap[i]]] = _proposalId; } DestructibleMiniMeToken(op.votingToken).recycle(); op.concluded = true; return true; } /// @notice Vote for specific token with yes /// @param _proposalId is the proposal's position in tokenBatches array /// @param _tokenIndex is the position from 0-9 in the token array of the chosen token function vote(uint _proposalId, uint _tokenIndex, uint _amount) public { // voting only on the most recent set of proposed tokens require(tokenBatches.length > 0); require(_proposalId == tokenBatches.length - 1); require(_tokenIndex < 10); TokenProposal storage p = tokenBatches[_proposalId]; require(now < p.startTime + p.duration); uint amount = DestructibleMiniMeToken(p.votingToken).balanceOf(msg.sender); require(amount >= _amount); uint weightedAmount = getFactor(_amount); require(DestructibleMiniMeToken(p.votingToken).transferFrom(msg.sender, address(this), _amount)); tokenBatches[_proposalId].yesVotes[_tokenIndex] += weightedAmount; p.votesForToken[tokenBatches[_proposalId].consideredTokens[_tokenIndex]][msg.sender] += weightedAmount; emit Vote(_proposalId, msg.sender, tokenBatches[_proposalId].consideredTokens[_tokenIndex], weightedAmount); } function getFactor(uint _amount) view public returns (uint weighted) { uint currentRound = tokenBatches.length - 1; TokenProposal memory p = tokenBatches[currentRound]; weighted = 2 * _amount - ((now - p.startTime) * _amount / p.duration); } function getWinnerIndices(uint _proposalId) public view returns(uint[] memory winners) { require(_proposalId < tokenBatches.length); TokenProposal memory p = tokenBatches[_proposalId]; // there is only one winner in criteria 0 if (p.criteria == 0) { winners = new uint[](1); uint max = 0; for (uint i=0; i < p.consideredTokens.length; i++) { if (p.yesVotes[i] > p.yesVotes[max]) { max = i; } } winners[0] = max; } // there is N winners in criteria 1 if (p.criteria == 1) { uint[] memory indexesWithMostVotes = new uint[](p.extraData); winners = new uint[](p.extraData); // for each token we check if he has more votes than last one, // if it has we put it in array and always keep array sorted for (uint i = 0; i < p.consideredTokens.length; i++) { uint last = p.extraData - 1; if (p.yesVotes[i] > p.yesVotes[indexesWithMostVotes[last]]) { indexesWithMostVotes[last] = i; for (uint j=last; j > 0; j--) { if (p.yesVotes[indexesWithMostVotes[j]] > p.yesVotes[indexesWithMostVotes[j-1]]) { uint help = indexesWithMostVotes[j]; indexesWithMostVotes[j] = indexesWithMostVotes[j-1]; indexesWithMostVotes[j-1] = help; } } } } for (uint i = 0; i < p.extraData; i++) { winners[i] = indexesWithMostVotes[i]; } } // everybody who has over N votes are winners in criteria 2 if (p.criteria == 2) { uint numOfTokens = 0; for (uint i = 0; i < p.consideredTokens.length; i++) { if (p.yesVotes[i] > p.extraData) { numOfTokens++; } } winners = new uint[](numOfTokens); uint count = 0; for (uint i = 0; i < p.consideredTokens.length; i++) { if (p.yesVotes[i] > p.extraData) { winners[count] = i; count++; } } } } function getWinners() public view returns(address[] memory) { if(tokenBatches.length == 0) { return new address[](0); } uint[] memory winnerIndices = getWinnerIndices(tokenBatches.length - 1); TokenProposal memory p = tokenBatches[tokenBatches.length - 1]; address[] memory winners = new address[](winnerIndices.length); for (uint i = 0; i < winnerIndices.length; i++) { winners[i] = p.consideredTokens[winnerIndices[i]]; } } function getUserVotesForWinner(address _token, address _voter) external view returns(uint256) { uint roundWhenWon = proposalWhenTokenWon[_token]; return tokenBatches[roundWhenWon].votesForToken[_token][_voter]; } /// @notice Get number of proposals so you can know which is the last one function numberOfProposals() public view returns(uint) { return tokenBatches.length; } /// @notice Any admin is able to add new admin /// @param _newAdmin Address of new admin function addAdmin(address _newAdmin) public onlyAdmins { admins[_newAdmin] = true; } /// @notice Only owner is able to remove admin /// @param _admin Address of current admin function removeAdmin(address _admin) public onlyOwner { admins[_admin] = false; } /// @notice Get data about specific proposal /// @param _proposalId Id of proposal function proposal(uint _proposalId) public view returns( uint _startBlock, uint _startTime, uint _duration, bool _active, bool _finalized, uint[] memory _votes, address[] memory _tokens, address _votingToken, bool _hasBalance ) { require(_proposalId < tokenBatches.length); TokenProposal memory p = tokenBatches[_proposalId]; _startBlock = p.startBlock; _startTime = p.startTime; _duration = p.duration; _finalized = (_startTime+_duration < now); _active = !_finalized && (p.startBlock < getBlockNumber()); _votes = p.yesVotes; _tokens = p.consideredTokens; _votingToken = address(p.votingToken); _hasBalance = (_votingToken == address(0)) ? false : (DestructibleMiniMeToken(p.votingToken).balanceOf(msg.sender) > 0); } function isAdmin(address _admin) public view returns(bool) { return admins[_admin]; } function proxyPayment(address ) public payable returns(bool) { return false; } function onTransfer(address, address, uint ) public pure returns(bool) { return true; } function onApprove(address, address, uint ) public pure returns(bool) { return true; } function getBlockNumber() internal view returns (uint) { return block.number; } function appendUintToString(string memory inStr, uint _i) internal pure returns (string memory _str) { if (_i == 0) { return "0"; } uint j = _i; uint len; while (j != 0) { len++; j /= 10; } bytes memory bstr = new bytes(len); uint k = len - 1; while (_i != 0) { bstr[k--] = byte(uint8(48 + _i % 10)); _i /= 10; } return string(abi.encodePacked(inStr, string(bstr))); } event Vote(uint indexed idProposal, address indexed _voter, address chosenToken, uint amount); event NewTokens(uint indexed idProposal); }