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194 lines
6.1 KiB
194 lines
6.1 KiB
pragma solidity ^0.4.8;
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import "./StandardToken.sol";
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import "./LimitedTransferToken.sol";
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/**
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* @title Vested token
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* @dev Tokens that can be vested for a group of addresses.
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*/
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contract VestedToken is StandardToken, LimitedTransferToken {
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struct TokenGrant {
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address granter;
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uint256 value;
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uint64 cliff;
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uint64 vesting;
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uint64 start;
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}
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mapping (address => TokenGrant[]) public grants;
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/**
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* @dev Grant tokens to a specified address
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* @param _to address The address which the tokens will be granted to.
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* @param _value uint256 The amount of tokens to be granted.
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* @param _start uint64 Represents time of the begining of the grant.
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* @param _cliff uint64 Represents the cliff period.
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* @param _vesting uint64 Represents the vesting period.
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*/
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function grantVestedTokens(
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address _to,
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uint256 _value,
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uint64 _start,
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uint64 _cliff,
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uint64 _vesting) {
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if (_cliff < _start) {
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throw;
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}
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if (_vesting < _start) {
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throw;
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}
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if (_vesting < _cliff) {
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throw;
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}
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TokenGrant memory grant = TokenGrant(msg.sender, _value, _cliff, _vesting, _start);
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grants[_to].push(grant);
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transfer(_to, _value);
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}
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/**
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* @dev Revoke the grant of tokens of a specifed address.
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* @param _holder The address which will have its tokens revoked.
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* @param _grantId The id of the token grant.
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*/
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function revokeTokenGrant(address _holder, uint _grantId) {
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TokenGrant grant = grants[_holder][_grantId];
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if (grant.granter != msg.sender) {
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throw;
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}
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uint256 nonVested = nonVestedTokens(grant, uint64(now));
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// remove grant from array
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delete grants[_holder][_grantId];
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grants[_holder][_grantId] = grants[_holder][grants[_holder].length - 1];
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grants[_holder].length -= 1;
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balances[msg.sender] = balances[msg.sender].add(nonVested);
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balances[_holder] = balances[_holder].sub(nonVested);
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Transfer(_holder, msg.sender, nonVested);
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}
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/**
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* @dev Check the amount of grants that an address has.
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* @param _holder The holder of the grants.
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* @return A uint representing the total amount of grants.
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*/
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function tokenGrantsCount(address _holder) constant returns (uint index) {
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return grants[_holder].length;
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}
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/**
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* @dev Get all information about a specifc grant.
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* @param _holder The address which will have its tokens revoked.
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* @param _grantId The id of the token grant.
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* @return Returns all the values that represent a TokenGrant(address, value, start, cliff
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* and vesting) plus the vested value at the current time.
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*/
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function tokenGrant(address _holder, uint _grantId) constant returns (address granter, uint256 value, uint256 vested, uint64 start, uint64 cliff, uint64 vesting) {
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TokenGrant grant = grants[_holder][_grantId];
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granter = grant.granter;
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value = grant.value;
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start = grant.start;
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cliff = grant.cliff;
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vesting = grant.vesting;
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vested = vestedTokens(grant, uint64(now));
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}
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/**
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* @dev Get the amount of vested tokens at a specific time.
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* @param grant TokenGrant The grant to be checked.
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* @param time The time to be checked
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* @return An uint representing the amount of vested tokens of a specific grant at a specific time.
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*/
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function vestedTokens(TokenGrant grant, uint64 time) private constant returns (uint256) {
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return calculateVestedTokens(
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grant.value,
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uint256(time),
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uint256(grant.start),
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uint256(grant.cliff),
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uint256(grant.vesting)
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);
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}
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/**
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* @dev Calculate amount of vested tokens at a specifc time.
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* @param tokens uint256 The amount of tokens grantted.
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* @param time uint64 The time to be checked
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* @param start uint64 A time representing the begining of the grant
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* @param _cliff uint64 Represents the cliff period.
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* @param _vesting uint64 Represents the vesting period.
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* @return An uint representing the amount of vested tokensof a specif grant.
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*/
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function calculateVestedTokens(
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uint256 tokens,
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uint256 time,
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uint256 start,
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uint256 cliff,
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uint256 vesting) constant returns (uint256 vestedTokens)
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{
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if (time < cliff) {
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return 0;
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}
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if (time >= vesting) {
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return tokens;
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}
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uint256 cliffTokens = tokens.mul(cliff.sub(start)).div(vesting.sub(start));
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vestedTokens = cliffTokens;
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uint256 vestingTokens = tokens.sub(cliffTokens);
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vestedTokens = vestedTokens.add(vestingTokens.mul(time.sub(cliff)).div(vesting.sub(cliff)));
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}
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/**
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* @dev Calculate the amount of non vested tokens at a specific time.
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* @param grant TokenGrant The grant to be checked.
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* @param time uint64 The time to be checked
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* @return An uint representing the amount of non vested tokens of a specifc grant on the
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* passed time frame.
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*/
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function nonVestedTokens(TokenGrant grant, uint64 time) private constant returns (uint256) {
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return grant.value.sub(vestedTokens(grant, time));
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}
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/**
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* @dev Calculate the date when the holder can trasfer all its tokens
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* @param holder address The address of the holder
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* @return An uint representing the date of the last transferable tokens.
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*/
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function lastTokenIsTransferableDate(address holder) constant public returns (uint64 date) {
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date = uint64(now);
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uint256 grantIndex = grants[holder].length;
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for (uint256 i = 0; i < grantIndex; i++) {
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date = SafeMath.max64(grants[holder][i].vesting, date);
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}
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}
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/**
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* @dev Calculate the total amount of transferable tokens of a holder at a given time
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* @param holder address The address of the holder
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* @param time uint64 The specific time.
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* @return An uint representing a holder's total amount of transferable tokens.
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*/
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function transferableTokens(address holder, uint64 time) constant public returns (uint256 nonVested) {
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uint256 grantIndex = grants[holder].length;
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for (uint256 i = 0; i < grantIndex; i++) {
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uint256 current = nonVestedTokens(grants[holder][i], time);
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nonVested = nonVested.add(current);
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}
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return SafeMath.min256(balances[holder].sub(nonVested), super.transferableTokens(holder, time));
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}
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}
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