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pragma solidity ^0.4.11;
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import './ERC20Basic.sol';
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import '../ownership/Ownable.sol';
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import '../math/Math.sol';
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import '../math/SafeMath.sol';
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/**
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* @title TokenVesting
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* @dev A token holder contract that can release its token balance gradually like a
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* typical vesting scheme, with a cliff and vesting period. Revokable by the owner.
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*/
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contract TokenVesting is Ownable {
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using SafeMath for uint256;
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// beneficiary of tokens after they are released
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address beneficiary;
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uint256 cliff;
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uint256 start;
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uint256 end;
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mapping (address => uint256) released;
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/**
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* @dev Creates a vesting contract that vests its balance of any ERC20 token to the
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* _beneficiary, gradually in a linear fashion until _end. By then all of the balance
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* will have vested.
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* @param _beneficiary address of the beneficiary to whom vested tokens are transferred
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* @param _cliff timestamp of the moment when tokens will begin to vest
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* @param _end timestamp of the moment when all balance will have been vested
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*/
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function TokenVesting(address _beneficiary, uint256 _cliff, uint256 _end) {
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beneficiary = _beneficiary;
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cliff = _cliff;
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end = _end;
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start = now;
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}
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/**
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* @notice Transfers vested tokens to beneficiary.
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* @param token ERC20 token which is being vested
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*/
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function release(ERC20Basic token) {
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uint256 vested = vestedAmount(token);
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require(vested > 0);
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token.transfer(beneficiary, vested);
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released[token] = released[token].add(vested);
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}
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/**
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* @notice Allows the owner to revoke the vesting. Tokens already vested remain in the contract.
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* @param token ERC20 token which is being vested
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*/
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function revoke(ERC20Basic token) onlyOwner {
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uint256 balance = token.balanceOf(this);
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uint256 vested = vestedAmount(token);
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token.transfer(owner, balance - vested);
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}
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/**
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* @dev Calculates the amount that has already vested.
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* @param token ERC20 token which is being vested
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*/
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function vestedAmount(ERC20Basic token) constant returns (uint256) {
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if (now < cliff) {
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return 0;
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} else if (now >= end) {
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return token.balanceOf(this);
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} else {
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uint256 currentBalance = token.balanceOf(this);
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uint256 totalBalance = currentBalance.add(released[token]);
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uint256 vested = totalBalance.mul(now - start).div(end - start);
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return Math.min256(currentBalance, vested);
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}
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}
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}
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