Transaction Hash:
Block:
8595752 at Sep-22-2019 12:11:36 AM +UTC
Transaction Fee:
0.000387336 ETH
$1.41
Gas Used:
48,417 Gas / 8 Gwei
Emitted Events:
9 |
EtherollToken.Transfer( _from=[Receiver] EtherDelta, _to=[Sender] 0xe427a52824c5eab60a163e5d7f4f0970262d7c61, _value=397380000000000000 )
|
10 |
EtherDelta.Withdraw( token=EtherollToken, user=[Sender] 0xe427a52824c5eab60a163e5d7f4f0970262d7c61, amount=397380000000000000, balance=0 )
|
Account State Difference:
Address | Before | After | State Difference | ||
---|---|---|---|---|---|
0x2e071D29...7D6038A65 | |||||
0x5A0b54D5...D3E029c4c
Miner
| (Spark Pool) | 41.370376317783054503 Eth | 41.370763653783054503 Eth | 0.000387336 | |
0x8d12A197...2A5CC6819 | (EtherDelta 2) | ||||
0xe427A528...0262D7c61 |
0.060951108540370479 Eth
Nonce: 637
|
0.060563772540370479 Eth
Nonce: 638
| 0.000387336 |
Execution Trace
EtherDelta.withdrawToken( token=0x2e071D2966Aa7D8dECB1005885bA1977D6038A65, amount=397380000000000000 )
-
EtherollToken.transfer( _to=0xe427A52824c5EAb60A163E5d7f4f0970262D7c61, _value=397380000000000000 ) => ( success=True )
withdrawToken[EtherDelta (ln:234)]
safeSub[EtherDelta (ln:237)]
transfer[EtherDelta (ln:238)]
Withdraw[EtherDelta (ln:239)]
File 1 of 2: EtherDelta
File 2 of 2: EtherollToken
pragma solidity ^0.4.9; contract SafeMath { function safeMul(uint a, uint b) internal returns (uint) { uint c = a * b; assert(a == 0 || c / a == b); return c; } function safeSub(uint a, uint b) internal returns (uint) { assert(b <= a); return a - b; } function safeAdd(uint a, uint b) internal returns (uint) { uint c = a + b; assert(c>=a && c>=b); return c; } function assert(bool assertion) internal { if (!assertion) throw; } } contract Token { /// @return total amount of tokens function totalSupply() constant returns (uint256 supply) {} /// @param _owner The address from which the balance will be retrieved /// @return The balance function balanceOf(address _owner) constant returns (uint256 balance) {} /// @notice send `_value` token to `_to` from `msg.sender` /// @param _to The address of the recipient /// @param _value The amount of token to be transferred /// @return Whether the transfer was successful or not function transfer(address _to, uint256 _value) returns (bool success) {} /// @notice send `_value` token to `_to` from `_from` on the condition it is approved by `_from` /// @param _from The address of the sender /// @param _to The address of the recipient /// @param _value The amount of token to be transferred /// @return Whether the transfer was successful or not function transferFrom(address _from, address _to, uint256 _value) returns (bool success) {} /// @notice `msg.sender` approves `_addr` to spend `_value` tokens /// @param _spender The address of the account able to transfer the tokens /// @param _value The amount of wei to be approved for transfer /// @return Whether the approval was successful or not function approve(address _spender, uint256 _value) returns (bool success) {} /// @param _owner The address of the account owning tokens /// @param _spender The address of the account able to transfer the tokens /// @return Amount of remaining tokens allowed to spent function allowance(address _owner, address _spender) constant returns (uint256 remaining) {} event Transfer(address indexed _from, address indexed _to, uint256 _value); event Approval(address indexed _owner, address indexed _spender, uint256 _value); uint public decimals; string public name; } contract StandardToken is Token { function transfer(address _to, uint256 _value) returns (bool success) { //Default assumes totalSupply can't be over max (2^256 - 1). //If your token leaves out totalSupply and can issue more tokens as time goes on, you need to check if it doesn't wrap. //Replace the if with this one instead. if (balances[msg.sender] >= _value && balances[_to] + _value > balances[_to]) { //if (balances[msg.sender] >= _value && _value > 0) { balances[msg.sender] -= _value; balances[_to] += _value; Transfer(msg.sender, _to, _value); return true; } else { return false; } } function transferFrom(address _from, address _to, uint256 _value) returns (bool success) { //same as above. Replace this line with the following if you want to protect against wrapping uints. if (balances[_from] >= _value && allowed[_from][msg.sender] >= _value && balances[_to] + _value > balances[_to]) { //if (balances[_from] >= _value && allowed[_from][msg.sender] >= _value && _value > 0) { balances[_to] += _value; balances[_from] -= _value; allowed[_from][msg.sender] -= _value; Transfer(_from, _to, _value); return true; } else { return false; } } function balanceOf(address _owner) constant returns (uint256 balance) { return balances[_owner]; } function approve(address _spender, uint256 _value) returns (bool success) { allowed[msg.sender][_spender] = _value; Approval(msg.sender, _spender, _value); return true; } function allowance(address _owner, address _spender) constant returns (uint256 remaining) { return allowed[_owner][_spender]; } mapping(address => uint256) balances; mapping (address => mapping (address => uint256)) allowed; uint256 public totalSupply; } contract ReserveToken is StandardToken, SafeMath { address public minter; function ReserveToken() { minter = msg.sender; } function create(address account, uint amount) { if (msg.sender != minter) throw; balances[account] = safeAdd(balances[account], amount); totalSupply = safeAdd(totalSupply, amount); } function destroy(address account, uint amount) { if (msg.sender != minter) throw; if (balances[account] < amount) throw; balances[account] = safeSub(balances[account], amount); totalSupply = safeSub(totalSupply, amount); } } contract AccountLevels { //given a user, returns an account level //0 = regular user (pays take fee and make fee) //1 = market maker silver (pays take fee, no make fee, gets rebate) //2 = market maker gold (pays take fee, no make fee, gets entire counterparty's take fee as rebate) function accountLevel(address user) constant returns(uint) {} } contract AccountLevelsTest is AccountLevels { mapping (address => uint) public accountLevels; function setAccountLevel(address user, uint level) { accountLevels[user] = level; } function accountLevel(address user) constant returns(uint) { return accountLevels[user]; } } contract EtherDelta is SafeMath { address public admin; //the admin address address public feeAccount; //the account that will receive fees address public accountLevelsAddr; //the address of the AccountLevels contract uint public feeMake; //percentage times (1 ether) uint public feeTake; //percentage times (1 ether) uint public feeRebate; //percentage times (1 ether) mapping (address => mapping (address => uint)) public tokens; //mapping of token addresses to mapping of account balances (token=0 means Ether) mapping (address => mapping (bytes32 => bool)) public orders; //mapping of user accounts to mapping of order hashes to booleans (true = submitted by user, equivalent to offchain signature) mapping (address => mapping (bytes32 => uint)) public orderFills; //mapping of user accounts to mapping of order hashes to uints (amount of order that has been filled) event Order(address tokenGet, uint amountGet, address tokenGive, uint amountGive, uint expires, uint nonce, address user); event Cancel(address tokenGet, uint amountGet, address tokenGive, uint amountGive, uint expires, uint nonce, address user, uint8 v, bytes32 r, bytes32 s); event Trade(address tokenGet, uint amountGet, address tokenGive, uint amountGive, address get, address give); event Deposit(address token, address user, uint amount, uint balance); event Withdraw(address token, address user, uint amount, uint balance); function EtherDelta(address admin_, address feeAccount_, address accountLevelsAddr_, uint feeMake_, uint feeTake_, uint feeRebate_) { admin = admin_; feeAccount = feeAccount_; accountLevelsAddr = accountLevelsAddr_; feeMake = feeMake_; feeTake = feeTake_; feeRebate = feeRebate_; } function() { throw; } function changeAdmin(address admin_) { if (msg.sender != admin) throw; admin = admin_; } function changeAccountLevelsAddr(address accountLevelsAddr_) { if (msg.sender != admin) throw; accountLevelsAddr = accountLevelsAddr_; } function changeFeeAccount(address feeAccount_) { if (msg.sender != admin) throw; feeAccount = feeAccount_; } function changeFeeMake(uint feeMake_) { if (msg.sender != admin) throw; if (feeMake_ > feeMake) throw; feeMake = feeMake_; } function changeFeeTake(uint feeTake_) { if (msg.sender != admin) throw; if (feeTake_ > feeTake || feeTake_ < feeRebate) throw; feeTake = feeTake_; } function changeFeeRebate(uint feeRebate_) { if (msg.sender != admin) throw; if (feeRebate_ < feeRebate || feeRebate_ > feeTake) throw; feeRebate = feeRebate_; } function deposit() payable { tokens[0][msg.sender] = safeAdd(tokens[0][msg.sender], msg.value); Deposit(0, msg.sender, msg.value, tokens[0][msg.sender]); } function withdraw(uint amount) { if (tokens[0][msg.sender] < amount) throw; tokens[0][msg.sender] = safeSub(tokens[0][msg.sender], amount); if (!msg.sender.call.value(amount)()) throw; Withdraw(0, msg.sender, amount, tokens[0][msg.sender]); } function depositToken(address token, uint amount) { //remember to call Token(address).approve(this, amount) or this contract will not be able to do the transfer on your behalf. if (token==0) throw; if (!Token(token).transferFrom(msg.sender, this, amount)) throw; tokens[token][msg.sender] = safeAdd(tokens[token][msg.sender], amount); Deposit(token, msg.sender, amount, tokens[token][msg.sender]); } function withdrawToken(address token, uint amount) { if (token==0) throw; if (tokens[token][msg.sender] < amount) throw; tokens[token][msg.sender] = safeSub(tokens[token][msg.sender], amount); if (!Token(token).transfer(msg.sender, amount)) throw; Withdraw(token, msg.sender, amount, tokens[token][msg.sender]); } function balanceOf(address token, address user) constant returns (uint) { return tokens[token][user]; } function order(address tokenGet, uint amountGet, address tokenGive, uint amountGive, uint expires, uint nonce) { bytes32 hash = sha256(this, tokenGet, amountGet, tokenGive, amountGive, expires, nonce); orders[msg.sender][hash] = true; Order(tokenGet, amountGet, tokenGive, amountGive, expires, nonce, msg.sender); } function trade(address tokenGet, uint amountGet, address tokenGive, uint amountGive, uint expires, uint nonce, address user, uint8 v, bytes32 r, bytes32 s, uint amount) { //amount is in amountGet terms bytes32 hash = sha256(this, tokenGet, amountGet, tokenGive, amountGive, expires, nonce); if (!( (orders[user][hash] || ecrecover(sha3("\x19Ethereum Signed Message:\n32", hash),v,r,s) == user) && block.number <= expires && safeAdd(orderFills[user][hash], amount) <= amountGet )) throw; tradeBalances(tokenGet, amountGet, tokenGive, amountGive, user, amount); orderFills[user][hash] = safeAdd(orderFills[user][hash], amount); Trade(tokenGet, amount, tokenGive, amountGive * amount / amountGet, user, msg.sender); } function tradeBalances(address tokenGet, uint amountGet, address tokenGive, uint amountGive, address user, uint amount) private { uint feeMakeXfer = safeMul(amount, feeMake) / (1 ether); uint feeTakeXfer = safeMul(amount, feeTake) / (1 ether); uint feeRebateXfer = 0; if (accountLevelsAddr != 0x0) { uint accountLevel = AccountLevels(accountLevelsAddr).accountLevel(user); if (accountLevel==1) feeRebateXfer = safeMul(amount, feeRebate) / (1 ether); if (accountLevel==2) feeRebateXfer = feeTakeXfer; } tokens[tokenGet][msg.sender] = safeSub(tokens[tokenGet][msg.sender], safeAdd(amount, feeTakeXfer)); tokens[tokenGet][user] = safeAdd(tokens[tokenGet][user], safeSub(safeAdd(amount, feeRebateXfer), feeMakeXfer)); tokens[tokenGet][feeAccount] = safeAdd(tokens[tokenGet][feeAccount], safeSub(safeAdd(feeMakeXfer, feeTakeXfer), feeRebateXfer)); tokens[tokenGive][user] = safeSub(tokens[tokenGive][user], safeMul(amountGive, amount) / amountGet); tokens[tokenGive][msg.sender] = safeAdd(tokens[tokenGive][msg.sender], safeMul(amountGive, amount) / amountGet); } function testTrade(address tokenGet, uint amountGet, address tokenGive, uint amountGive, uint expires, uint nonce, address user, uint8 v, bytes32 r, bytes32 s, uint amount, address sender) constant returns(bool) { if (!( tokens[tokenGet][sender] >= amount && availableVolume(tokenGet, amountGet, tokenGive, amountGive, expires, nonce, user, v, r, s) >= amount )) return false; return true; } function availableVolume(address tokenGet, uint amountGet, address tokenGive, uint amountGive, uint expires, uint nonce, address user, uint8 v, bytes32 r, bytes32 s) constant returns(uint) { bytes32 hash = sha256(this, tokenGet, amountGet, tokenGive, amountGive, expires, nonce); if (!( (orders[user][hash] || ecrecover(sha3("\x19Ethereum Signed Message:\n32", hash),v,r,s) == user) && block.number <= expires )) return 0; uint available1 = safeSub(amountGet, orderFills[user][hash]); uint available2 = safeMul(tokens[tokenGive][user], amountGet) / amountGive; if (available1<available2) return available1; return available2; } function amountFilled(address tokenGet, uint amountGet, address tokenGive, uint amountGive, uint expires, uint nonce, address user, uint8 v, bytes32 r, bytes32 s) constant returns(uint) { bytes32 hash = sha256(this, tokenGet, amountGet, tokenGive, amountGive, expires, nonce); return orderFills[user][hash]; } function cancelOrder(address tokenGet, uint amountGet, address tokenGive, uint amountGive, uint expires, uint nonce, uint8 v, bytes32 r, bytes32 s) { bytes32 hash = sha256(this, tokenGet, amountGet, tokenGive, amountGive, expires, nonce); if (!(orders[msg.sender][hash] || ecrecover(sha3("\x19Ethereum Signed Message:\n32", hash),v,r,s) == msg.sender)) throw; orderFills[msg.sender][hash] = amountGet; Cancel(tokenGet, amountGet, tokenGive, amountGive, expires, nonce, msg.sender, v, r, s); } }
File 2 of 2: EtherollToken
pragma solidity ^0.4.2; /* `* is owned */ contract owned { address public owner; function owned() { owner = msg.sender; } modifier onlyOwner { if (msg.sender != owner) throw; _; } function ownerTransferOwnership(address newOwner) onlyOwner { owner = newOwner; } } /* * safe math */ contract DSSafeAddSub { function safeToAdd(uint a, uint b) internal returns (bool) { return (a + b >= a); } function safeAdd(uint a, uint b) internal returns (uint) { if (!safeToAdd(a, b)) throw; return a + b; } function safeToSubtract(uint a, uint b) internal returns (bool) { return (b <= a); } function safeSub(uint a, uint b) internal returns (uint) { if (!safeToSubtract(a, b)) throw; return a - b; } } /** * * @title EtherollToken * * The official token powering etheroll. * EtherollToken is a ERC.20 standard token with some custom functionality * */ contract EtherollToken is owned, DSSafeAddSub { /* check address */ modifier onlyBy(address _account) { if (msg.sender != _account) throw; _; } /* vars */ string public standard = 'Token 1.0'; string public name = "DICE"; string public symbol = "ROL"; uint8 public decimals = 16; uint public totalSupply = 250000000000000000000000; address public priviledgedAddress; bool public tokensFrozen; uint public crowdfundDeadline = now + 2 * 1 weeks; uint public nextFreeze = now + 12 * 1 weeks; uint public nextThaw = now + 13 * 1 weeks; /* map balances */ mapping (address => uint) public balanceOf; mapping (address => mapping (address => uint)) public allowance; /* events */ event Transfer(address indexed _from, address indexed _to, uint256 _value); event Approval(address indexed _owner, address indexed _spender, uint256 _value); event LogTokensFrozen(bool indexed Frozen); /* * @notice sends all tokens to msg.sender on init */ function EtherollToken(){ /* send creator all initial tokens 25,000,000 */ balanceOf[msg.sender] = 250000000000000000000000; /* tokens are not frozen */ tokensFrozen = false; } /* * @notice public function * @param _to address to send tokens to * @param _value number of tokens to transfer * @returns boolean success */ function transfer(address _to, uint _value) public returns (bool success) { if(tokensFrozen && msg.sender != priviledgedAddress) return false; /* transfer only by priviledgedAddress during crowdfund or reward phases */ if (balanceOf[msg.sender] < _value) return false; /* check if the sender has enough */ if (balanceOf[_to] + _value < balanceOf[_to]) return false; /* check for overflows */ balanceOf[msg.sender] -= _value; /* subtract from the sender */ balanceOf[_to] += _value; /* add the same to the recipient */ Transfer(msg.sender, _to, _value); /* notify anyone listening that this transfer took place */ return true; } /* * @notice public function * @param _from address to send tokens from * @param _to address to send tokens to * @param _value number of tokens to transfer * @returns boolean success * another contract attempts to spend tokens on your behalf */ function transferFrom(address _from, address _to, uint _value) public returns (bool success) { if(tokensFrozen && msg.sender != priviledgedAddress) return false; /* transfer only by priviledgedAddress during crowdfund or reward phases */ if (balanceOf[_from] < _value) return false; /* check if the sender has enough */ if (balanceOf[_to] + _value < balanceOf[_to]) return false; /* check for overflows */ if (_value > allowance[_from][msg.sender]) return false; /* check allowance */ balanceOf[_from] -= _value; /* subtract from the sender */ balanceOf[_to] += _value; /* add the same to the recipient */ allowance[_from][msg.sender] -= _value; /* reduce allowance */ Transfer(_from, _to, _value); /* notify anyone listening that this transfer took place */ return true; } /* * @notice public function * @param _spender address being granted approval to spend on behalf of msg.sender * @param _value number of tokens granted approval for _spender to spend on behalf of msg.sender * @returns boolean success * approves another contract to spend some tokens on your behalf */ function approve(address _spender, uint _value) public returns (bool success) { /* set allowance for _spender on behalf of msg.sender */ allowance[msg.sender][_spender] = _value; /* log event about transaction */ Approval(msg.sender, _spender, _value); return true; } /* * @notice address restricted function * crowdfund contract calls this to burn its unsold coins */ function priviledgedAddressBurnUnsoldCoins() public /* only crowdfund contract can call this */ onlyBy(priviledgedAddress) { /* totalSupply should equal total tokens in circulation */ totalSupply = safeSub(totalSupply, balanceOf[priviledgedAddress]); /* burns unsold tokens from crowdfund address */ balanceOf[priviledgedAddress] = 0; } /* * @notice public function * locks/unlocks tokens on a recurring cycle */ function updateTokenStatus() public { /* locks tokens during initial crowdfund period */ if(now < crowdfundDeadline){ tokensFrozen = true; LogTokensFrozen(tokensFrozen); } /* locks tokens */ if(now >= nextFreeze){ tokensFrozen = true; LogTokensFrozen(tokensFrozen); } /* unlocks tokens */ if(now >= nextThaw){ tokensFrozen = false; nextFreeze = now + 12 * 1 weeks; nextThaw = now + 13 * 1 weeks; LogTokensFrozen(tokensFrozen); } } /* * @notice owner restricted function * @param _newPriviledgedAddress the address * only this address can burn unsold tokens * transfer tokens only by priviledgedAddress during crowdfund or reward phases */ function ownerSetPriviledgedAddress(address _newPriviledgedAddress) public onlyOwner { priviledgedAddress = _newPriviledgedAddress; } }