commit
5aba967db9
@ -1,57 +0,0 @@ |
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pragma solidity ^0.4.11; |
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|
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import "./ERC20.sol"; |
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|
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/** |
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* @title LimitedTransferToken |
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* @dev LimitedTransferToken defines the generic interface and the implementation to limit token |
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* transferability for different events. It is intended to be used as a base class for other token |
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* contracts. |
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* LimitedTransferToken has been designed to allow for different limiting factors, |
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* this can be achieved by recursively calling super.transferableTokens() until the base class is |
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* hit. For example: |
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* function transferableTokens(address holder, uint64 time) constant public returns (uint256) { |
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* return min256(unlockedTokens, super.transferableTokens(holder, time)); |
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* } |
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* A working example is VestedToken.sol: |
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* https://github.com/OpenZeppelin/zeppelin-solidity/blob/master/contracts/token/VestedToken.sol |
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*/ |
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|
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contract LimitedTransferToken is ERC20 { |
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|
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/** |
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* @dev Checks whether it can transfer or otherwise throws. |
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*/ |
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modifier canTransfer(address _sender, uint256 _value) { |
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require(_value <= transferableTokens(_sender, uint64(now))); |
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_; |
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} |
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|
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/** |
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* @dev Checks modifier and allows transfer if tokens are not locked. |
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* @param _to The address that will receive the tokens. |
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* @param _value The amount of tokens to be transferred. |
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*/ |
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function transfer(address _to, uint256 _value) canTransfer(msg.sender, _value) public returns (bool) { |
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return super.transfer(_to, _value); |
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} |
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|
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/** |
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* @dev Checks modifier and allows transfer if tokens are not locked. |
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* @param _from The address that will send the tokens. |
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* @param _to The address that will receive the tokens. |
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* @param _value The amount of tokens to be transferred. |
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*/ |
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function transferFrom(address _from, address _to, uint256 _value) canTransfer(_from, _value) public returns (bool) { |
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return super.transferFrom(_from, _to, _value); |
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} |
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|
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/** |
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* @dev Default transferable tokens function returns all tokens for a holder (no limit). |
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* @dev Overwriting transferableTokens(address holder, uint64 time) is the way to provide the |
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* specific logic for limiting token transferability for a holder over time. |
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*/ |
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function transferableTokens(address holder, uint64 time) public constant returns (uint256) { |
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return balanceOf(holder); |
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} |
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} |
@ -0,0 +1,103 @@ |
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pragma solidity ^0.4.11; |
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|
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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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/** |
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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. Optionally revocable by the |
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* 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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|
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event Released(uint256 amount); |
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event Revoked(); |
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// beneficiary of tokens after they are released |
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address beneficiary; |
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|
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uint256 cliff; |
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uint256 start; |
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uint256 duration; |
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|
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bool revocable; |
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|
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mapping (address => uint256) released; |
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|
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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 _start + _duration. By then all |
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* of the balance 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 duration in seconds of the cliff in which tokens will begin to vest |
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* @param _duration duration in seconds of the period in which the tokens will vest |
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* @param _revocable whether the vesting is revocable or not |
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*/ |
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function TokenVesting(address _beneficiary, uint256 _start, uint256 _cliff, uint256 _duration, bool _revocable) { |
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require(_beneficiary != 0x0); |
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require(_cliff <= _duration); |
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beneficiary = _beneficiary; |
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revocable = _revocable; |
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duration = _duration; |
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cliff = _start + _cliff; |
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start = _start; |
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} |
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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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Released(vested); |
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} |
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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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require(revocable); |
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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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Revoked(); |
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} |
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/** |
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* @dev Calculates the amount that has already vested but hasn't been released yet. |
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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 >= start + duration) { |
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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(duration); |
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uint256 unreleased = vested.sub(released[token]); |
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// currentBalance can be 0 in case of vesting being revoked earlier. |
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return Math.min256(currentBalance, unreleased); |
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} |
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} |
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} |
@ -1,241 +0,0 @@ |
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pragma solidity ^0.4.11; |
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import "../math/Math.sol"; |
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import "./StandardToken.sol"; |
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import "./LimitedTransferToken.sol"; |
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|
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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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uint256 MAX_GRANTS_PER_ADDRESS = 20; |
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struct TokenGrant { |
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address granter; // 20 bytes |
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uint256 value; // 32 bytes |
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uint64 cliff; |
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uint64 vesting; |
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uint64 start; // 3 * 8 = 24 bytes |
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bool revokable; |
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bool burnsOnRevoke; // 2 * 1 = 2 bits? or 2 bytes? |
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} // total 78 bytes = 3 sstore per operation (32 per sstore) |
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mapping (address => TokenGrant[]) public grants; |
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event NewTokenGrant(address indexed from, address indexed to, uint256 value, uint256 grantId); |
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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 Time of the beginning of the grant. |
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* @param _cliff uint64 Time of the cliff period. |
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* @param _vesting uint64 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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bool _revokable, |
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bool _burnsOnRevoke |
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) public { |
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// Check for date inconsistencies that may cause unexpected behavior |
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require(_cliff >= _start && _vesting >= _cliff); |
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require(tokenGrantsCount(_to) < MAX_GRANTS_PER_ADDRESS); // To prevent a user being spammed and have his balance locked (out of gas attack when calculating vesting). |
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uint256 count = grants[_to].push( |
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TokenGrant( |
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_revokable ? msg.sender : 0, // avoid storing an extra 20 bytes when it is non-revokable |
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_value, |
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_cliff, |
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_vesting, |
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_start, |
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_revokable, |
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_burnsOnRevoke |
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) |
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); |
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transfer(_to, _value); |
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NewTokenGrant(msg.sender, _to, _value, count - 1); |
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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, uint256 _grantId) public { |
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TokenGrant storage grant = grants[_holder][_grantId]; |
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require(grant.revokable); |
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require(grant.granter == msg.sender); // Only granter can revoke it |
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address receiver = grant.burnsOnRevoke ? 0xdead : msg.sender; |
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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.sub(1)]; |
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grants[_holder].length -= 1; |
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balances[receiver] = balances[receiver].add(nonVested); |
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balances[_holder] = balances[_holder].sub(nonVested); |
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Transfer(_holder, receiver, nonVested); |
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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 uint256 representing a holder's total amount of transferable tokens. |
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*/ |
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function transferableTokens(address holder, uint64 time) public constant returns (uint256) { |
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uint256 grantIndex = tokenGrantsCount(holder); |
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if (grantIndex == 0) return super.transferableTokens(holder, time); // shortcut for holder without grants |
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|
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// Iterate through all the grants the holder has, and add all non-vested tokens |
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uint256 nonVested = 0; |
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for (uint256 i = 0; i < grantIndex; i++) { |
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nonVested = SafeMath.add(nonVested, nonVestedTokens(grants[holder][i], time)); |
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} |
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|
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// Balance - totalNonVested is the amount of tokens a holder can transfer at any given time |
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uint256 vestedTransferable = SafeMath.sub(balanceOf(holder), nonVested); |
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|
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// Return the minimum of how many vested can transfer and other value |
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// in case there are other limiting transferability factors (default is balanceOf) |
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return Math.min256(vestedTransferable, super.transferableTokens(holder, time)); |
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} |
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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 uint256 representing the total amount of grants. |
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*/ |
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function tokenGrantsCount(address _holder) public constant returns (uint256 index) { |
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return grants[_holder].length; |
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} |
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|
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/** |
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* @dev Calculate amount of vested tokens at a specific time |
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* @param tokens uint256 The amount of tokens granted |
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* @param time uint64 The time to be checked |
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* @param start uint64 The time representing the beginning of the grant |
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* @param cliff uint64 The cliff period, the period before nothing can be paid out |
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* @param vesting uint64 The vesting period |
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* @return An uint256 representing the amount of vested tokens of a specific grant |
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* transferableTokens |
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* | _/-------- vestedTokens rect |
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* | _/ |
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* | _/ |
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* | _/ |
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* | _/ |
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* | / |
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* | .| |
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* | . | |
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* | . | |
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* | . | |
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* | . | |
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* | . | |
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* +===+===========+---------+----------> time |
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* Start Cliff Vesting |
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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) public constant returns (uint256) |
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{ |
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// Shortcuts for before cliff and after vesting cases. |
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if (time < cliff) return 0; |
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if (time >= vesting) return tokens; |
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|
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// Interpolate all vested tokens. |
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// As before cliff the shortcut returns 0, we can use just calculate a value |
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// in the vesting rect (as shown in above's figure) |
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|
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// vestedTokens = (tokens * (time - start)) / (vesting - start) |
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uint256 vestedTokens = SafeMath.div( |
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SafeMath.mul( |
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tokens, |
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SafeMath.sub(time, start) |
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), |
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SafeMath.sub(vesting, start) |
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); |
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|
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return vestedTokens; |
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} |
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|
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/** |
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* @dev Get all information about a specific 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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* revokability, burnsOnRevoke, and vesting) plus the vested value at the current time. |
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*/ |
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function tokenGrant(address _holder, uint256 _grantId) public constant returns (address granter, uint256 value, uint256 vested, uint64 start, uint64 cliff, uint64 vesting, bool revokable, bool burnsOnRevoke) { |
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TokenGrant storage grant = grants[_holder][_grantId]; |
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|
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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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revokable = grant.revokable; |
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burnsOnRevoke = grant.burnsOnRevoke; |
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|
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vested = vestedTokens(grant, uint64(now)); |
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} |
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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 uint256 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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/** |
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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 uint256 representing the amount of non vested tokens of a specific 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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/** |
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* @dev Calculate the date when the holder can transfer all its tokens |
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* @param holder address The address of the holder |
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* @return An uint256 representing the date of the last transferable tokens. |
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*/ |
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function lastTokenIsTransferableDate(address holder) public constant 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 = Math.max64(grants[holder][i].vesting, date); |
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} |
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} |
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} |
@ -0,0 +1,107 @@ |
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const BigNumber = web3.BigNumber |
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|
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require('chai') |
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.use(require('chai-as-promised')) |
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.use(require('chai-bignumber')(BigNumber)) |
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.should(); |
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|
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import EVMThrow from './helpers/EVMThrow' |
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import latestTime from './helpers/latestTime'; |
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import {increaseTimeTo, duration} from './helpers/increaseTime'; |
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|
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const MintableToken = artifacts.require('MintableToken'); |
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const TokenVesting = artifacts.require('TokenVesting'); |
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|
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contract('TokenVesting', function ([_, owner, beneficiary]) { |
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|
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const amount = new BigNumber(1000); |
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|
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beforeEach(async function () { |
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this.token = await MintableToken.new({ from: owner }); |
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|
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this.start = latestTime() + duration.minutes(1); // +1 minute so it starts after contract instantiation
|
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this.cliff = duration.years(1); |
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this.duration = duration.years(2); |
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|
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this.vesting = await TokenVesting.new(beneficiary, this.start, this.cliff, this.duration, true, { from: owner }); |
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|
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await this.token.mint(this.vesting.address, amount, { from: owner }); |
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}); |
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|
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it('cannot be released before cliff', async function () { |
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await this.vesting.release(this.token.address).should.be.rejectedWith(EVMThrow); |
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}); |
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|
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it('can be released after cliff', async function () { |
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await increaseTimeTo(this.start + this.cliff + duration.weeks(1)); |
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await this.vesting.release(this.token.address).should.be.fulfilled; |
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}); |
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|
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it('should release proper amount after cliff', async function () { |
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await increaseTimeTo(this.start + this.cliff); |
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|
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const { receipt } = await this.vesting.release(this.token.address); |
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const releaseTime = web3.eth.getBlock(receipt.blockNumber).timestamp; |
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|
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const balance = await this.token.balanceOf(beneficiary); |
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balance.should.bignumber.equal(amount.mul(releaseTime - this.start).div(this.duration).floor()); |
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}); |
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|
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it('should linearly release tokens during vesting period', async function () { |
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const vestingPeriod = this.duration - this.cliff; |
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const checkpoints = 4; |
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|
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for (let i = 1; i <= checkpoints; i++) { |
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const now = this.start + this.cliff + i * (vestingPeriod / checkpoints); |
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await increaseTimeTo(now); |
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|
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await this.vesting.release(this.token.address); |
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const balance = await this.token.balanceOf(beneficiary); |
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const expectedVesting = amount.mul(now - this.start).div(this.duration).floor(); |
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|
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balance.should.bignumber.equal(expectedVesting); |
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} |
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}); |
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|
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it('should have released all after end', async function () { |
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await increaseTimeTo(this.start + this.duration); |
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await this.vesting.release(this.token.address); |
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const balance = await this.token.balanceOf(beneficiary); |
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balance.should.bignumber.equal(amount); |
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}); |
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|
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it('should be revoked by owner if revocable is set', async function () { |
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await this.vesting.revoke(this.token.address, { from: owner }).should.be.fulfilled; |
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}); |
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|
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it('should fail to be revoked by owner if revocable not set', async function () { |
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const vesting = await TokenVesting.new(beneficiary, this.start, this.cliff, this.duration, false, { from: owner } ); |
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await vesting.revoke(this.token.address, { from: owner }).should.be.rejectedWith(EVMThrow); |
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}); |
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|
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it('should return the non-vested tokens when revoked by owner', async function () { |
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await increaseTimeTo(this.start + this.cliff + duration.weeks(1)); |
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await this.vesting.release(this.token.address); |
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|
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const vested = await this.vesting.vestedAmount(this.token.address); |
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const balance = await this.token.balanceOf(this.vesting.address); |
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|
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await this.vesting.revoke(this.token.address, { from: owner }); |
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|
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const ownerBalance = await this.token.balanceOf(owner); |
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ownerBalance.should.bignumber.equal(balance.sub(vested)); |
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}); |
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|
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it('should keep the vested tokens when revoked by owner', async function () { |
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await increaseTimeTo(this.start + this.cliff + duration.weeks(1)); |
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await this.vesting.release(this.token.address); |
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|
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const vested = await this.vesting.vestedAmount(this.token.address); |
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|
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await this.vesting.revoke(this.token.address, { from: owner }); |
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|
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const balance = await this.token.balanceOf(this.vesting.address); |
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balance.should.bignumber.equal(vested); |
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}); |
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|
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}); |
@ -1,175 +0,0 @@ |
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const assertJump = require('./helpers/assertJump'); |
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const timer = require('./helpers/timer'); |
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var VestedTokenMock = artifacts.require("./helpers/VestedTokenMock.sol"); |
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|
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contract('VestedToken', function(accounts) { |
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let token = null |
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let now = 0 |
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|
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const tokenAmount = 50 |
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|
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const granter = accounts[0] |
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const receiver = accounts[1] |
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|
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beforeEach(async () => { |
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token = await VestedTokenMock.new(granter, 100); |
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now = web3.eth.getBlock(web3.eth.blockNumber).timestamp; |
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}) |
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|
||||
it('granter can grant tokens without vesting', async () => { |
||||
await token.transfer(receiver, tokenAmount, { from: granter }) |
||||
|
||||
assert.equal(await token.balanceOf(receiver), tokenAmount); |
||||
assert.equal(await token.transferableTokens(receiver, now), tokenAmount); |
||||
}) |
||||
|
||||
describe('getting a revokable/non-burnable token grant', async () => { |
||||
const cliff = 10000 |
||||
const vesting = 20000 // seconds
|
||||
|
||||
beforeEach(async () => { |
||||
await token.grantVestedTokens(receiver, tokenAmount, now, now + cliff, now + vesting, true, false, { from: granter }) |
||||
}) |
||||
|
||||
it('tokens are received', async () => { |
||||
assert.equal(await token.balanceOf(receiver), tokenAmount); |
||||
}) |
||||
|
||||
it('has 0 transferable tokens before cliff', async () => { |
||||
assert.equal(await token.transferableTokens(receiver, now), 0); |
||||
}) |
||||
|
||||
it('all tokens are transferable after vesting', async () => { |
||||
assert.equal(await token.transferableTokens(receiver, now + vesting), tokenAmount); |
||||
}) |
||||
|
||||
it('throws when trying to transfer non vested tokens', async () => { |
||||
try { |
||||
await token.transfer(accounts[7], 1, { from: receiver }) |
||||
assert.fail('should have thrown before'); |
||||
} catch(error) { |
||||
assertJump(error); |
||||
} |
||||
}) |
||||
|
||||
it('throws when trying to transfer from non vested tokens', async () => { |
||||
try { |
||||
await token.approve(accounts[7], 1, { from: receiver }) |
||||
await token.transferFrom(receiver, accounts[7], tokenAmount, { from: accounts[7] }) |
||||
assert.fail('should have thrown before'); |
||||
} catch(error) { |
||||
assertJump(error); |
||||
} |
||||
}) |
||||
|
||||
it('can be revoked by granter', async () => { |
||||
await token.revokeTokenGrant(receiver, 0, { from: granter }); |
||||
assert.equal(await token.balanceOf(receiver), 0); |
||||
assert.equal(await token.balanceOf(granter), 100); |
||||
}) |
||||
|
||||
it('cannot be revoked by non granter', async () => { |
||||
try { |
||||
await token.revokeTokenGrant(receiver, 0, { from: accounts[3] }); |
||||
assert.fail('should have thrown before'); |
||||
} catch(error) { |
||||
assertJump(error); |
||||
} |
||||
}) |
||||
|
||||
it('can be revoked by granter and non vested tokens are returned', async () => { |
||||
await timer(cliff); |
||||
await token.revokeTokenGrant(receiver, 0, { from: granter }); |
||||
assert.equal(await token.balanceOf(receiver), tokenAmount * cliff / vesting); |
||||
}) |
||||
|
||||
it('can transfer all tokens after vesting ends', async () => { |
||||
await timer(vesting); |
||||
await token.transfer(accounts[7], tokenAmount, { from: receiver }) |
||||
assert.equal(await token.balanceOf(accounts[7]), tokenAmount); |
||||
}) |
||||
|
||||
it('can approve and transferFrom all tokens after vesting ends', async () => { |
||||
await timer(vesting); |
||||
await token.approve(accounts[7], tokenAmount, { from: receiver }) |
||||
await token.transferFrom(receiver, accounts[7], tokenAmount, { from: accounts[7] }) |
||||
assert.equal(await token.balanceOf(accounts[7]), tokenAmount); |
||||
}) |
||||
|
||||
it('can handle composed vesting schedules', async () => { |
||||
await timer(cliff); |
||||
await token.transfer(accounts[7], 12, { from: receiver }) |
||||
assert.equal(await token.balanceOf(accounts[7]), 12); |
||||
|
||||
let newNow = web3.eth.getBlock(web3.eth.blockNumber).timestamp |
||||
|
||||
await token.grantVestedTokens(receiver, tokenAmount, newNow, newNow + cliff, newNow + vesting, false, false, { from: granter }) |
||||
|
||||
await token.transfer(accounts[7], 13, { from: receiver }) |
||||
assert.equal(await token.balanceOf(accounts[7]), tokenAmount / 2); |
||||
|
||||
assert.equal(await token.balanceOf(receiver), 3 * tokenAmount / 2) |
||||
assert.equal(await token.transferableTokens(receiver, newNow), 0) |
||||
await timer(vesting); |
||||
await token.transfer(accounts[7], 3 * tokenAmount / 2, { from: receiver }) |
||||
assert.equal(await token.balanceOf(accounts[7]), tokenAmount * 2) |
||||
}) |
||||
}) |
||||
|
||||
describe('getting a non-revokable token grant', async () => { |
||||
const cliff = 10000 |
||||
const vesting = 20000 // seconds
|
||||
|
||||
beforeEach(async () => { |
||||
await token.grantVestedTokens(receiver, tokenAmount, now, now + cliff, now + vesting, false, false, { from: granter }) |
||||
}) |
||||
|
||||
it('tokens are received', async () => { |
||||
assert.equal(await token.balanceOf(receiver), tokenAmount); |
||||
}) |
||||
|
||||
it('throws when granter attempts to revoke', async () => { |
||||
try { |
||||
await token.revokeTokenGrant(receiver, 0, { from: granter }); |
||||
assert.fail('should have thrown before'); |
||||
} catch(error) { |
||||
assertJump(error); |
||||
} |
||||
}) |
||||
}) |
||||
|
||||
describe('getting a revokable/burnable token grant', async () => { |
||||
const cliff = 100000 |
||||
const vesting = 200000 // seconds
|
||||
const burnAddress = '0x000000000000000000000000000000000000dead' |
||||
|
||||
beforeEach(async () => { |
||||
await token.grantVestedTokens(receiver, tokenAmount, now, now + cliff, now + vesting, true, true, { from: granter }) |
||||
}) |
||||
|
||||
it('tokens are received', async () => { |
||||
assert.equal(await token.balanceOf(receiver), tokenAmount); |
||||
}) |
||||
|
||||
it('can be revoked by granter and tokens are burned', async () => { |
||||
await token.revokeTokenGrant(receiver, 0, { from: granter }); |
||||
assert.equal(await token.balanceOf(receiver), 0); |
||||
assert.equal(await token.balanceOf(burnAddress), tokenAmount); |
||||
}) |
||||
|
||||
it('cannot be revoked by non granter', async () => { |
||||
try { |
||||
await token.revokeTokenGrant(receiver, 0, { from: accounts[3] }); |
||||
assert.fail('should have thrown before'); |
||||
} catch(error) { |
||||
assertJump(error); |
||||
} |
||||
}) |
||||
|
||||
it('can be revoked by granter and non vested tokens are returned', async () => { |
||||
await timer(cliff); |
||||
await token.revokeTokenGrant(receiver, 0, { from: granter }); |
||||
assert.equal(await token.balanceOf(burnAddress), tokenAmount * cliff / vesting); |
||||
}) |
||||
}) |
||||
}); |
@ -1,11 +0,0 @@ |
||||
pragma solidity ^0.4.11; |
||||
|
||||
import '../../contracts/token/VestedToken.sol'; |
||||
|
||||
// mock class using StandardToken |
||||
contract VestedTokenMock is VestedToken { |
||||
function VestedTokenMock(address initialAccount, uint256 initialBalance) { |
||||
balances[initialAccount] = initialBalance; |
||||
totalSupply = initialBalance; |
||||
} |
||||
} |
Loading…
Reference in new issue