ETH Price: $2,502.85 (+2.33%)

Transaction Decoder

Block:
6387129 at Sep-23-2018 10:09:16 PM +UTC
Transaction Fee:
0.000401715 ETH $1.01
Gas Used:
44,635 Gas / 9 Gwei

Emitted Events:

17 AURA.Transfer( from=[Sender] 0xacf61aee23c2f9cd2e380eed0e5bcb59cf29b97d, to=[Receiver] Exchange, value=1818492172556621905008 )
18 Exchange.Deposit( token=AURA, user=[Sender] 0xacf61aee23c2f9cd2e380eed0e5bcb59cf29b97d, amount=1818492172556621905008, balance=1818492172556621905008 )

Account State Difference:

  Address   Before After State Difference Code
0x2a0c0DBE...44050c208
(IDEX)
(Nanopool)
8,014.902292826287254597 Eth8,014.902694541287254597 Eth0.000401715
0xacF61aEe...9cF29B97d
0.003106491 Eth
Nonce: 52
0.002704776 Eth
Nonce: 53
0.000401715
0xCdCFc0f6...b9F9e8814

Execution Trace

Exchange.depositToken( token=0xCdCFc0f66c522Fd086A1b725ea3c0Eeb9F9e8814, amount=1818492172556621905008 )
  • AURA.transferFrom( _from=0xacF61aEe23C2F9cD2e380eed0e5BcB59cF29B97d, _to=0x2a0c0DBEcC7E4D658f48E01e3fA353F44050c208, _value=1818492172556621905008 ) => ( success=True )
    File 1 of 2: Exchange
    pragma solidity ^0.4.16;
    
    contract Token {
        bytes32 public standard;
        bytes32 public name;
        bytes32 public symbol;
        uint256 public totalSupply;
        uint8 public decimals;
        bool public allowTransactions;
        mapping (address => uint256) public balanceOf;
        mapping (address => mapping (address => uint256)) public allowance;
        function transfer(address _to, uint256 _value) returns (bool success);
        function approveAndCall(address _spender, uint256 _value, bytes _extraData) returns (bool success);
        function approve(address _spender, uint256 _value) returns (bool success);
        function transferFrom(address _from, address _to, uint256 _value) returns (bool success);
    }
    
    contract Exchange {
      function assert(bool assertion) {
        if (!assertion) throw;
      }
      function safeMul(uint a, uint b) returns (uint) {
        uint c = a * b;
        assert(a == 0 || c / a == b);
        return c;
      }
    
      function safeSub(uint a, uint b) returns (uint) {
        assert(b <= a);
        return a - b;
      }
    
      function safeAdd(uint a, uint b) returns (uint) {
        uint c = a + b;
        assert(c>=a && c>=b);
        return c;
      }
      address public owner;
      mapping (address => uint256) public invalidOrder;
      event SetOwner(address indexed previousOwner, address indexed newOwner);
      modifier onlyOwner {
        assert(msg.sender == owner);
        _;
      }
      function setOwner(address newOwner) onlyOwner {
        SetOwner(owner, newOwner);
        owner = newOwner;
      }
      function getOwner() returns (address out) {
        return owner;
      }
      function invalidateOrdersBefore(address user, uint256 nonce) onlyAdmin {
        if (nonce < invalidOrder[user]) throw;
        invalidOrder[user] = nonce;
      }
    
      mapping (address => mapping (address => uint256)) public tokens; //mapping of token addresses to mapping of account balances
    
      mapping (address => bool) public admins;
      mapping (address => uint256) public lastActiveTransaction;
      mapping (bytes32 => uint256) public orderFills;
      address public feeAccount;
      uint256 public inactivityReleasePeriod;
      mapping (bytes32 => bool) public traded;
      mapping (bytes32 => bool) public withdrawn;
      event Order(address tokenBuy, uint256 amountBuy, address tokenSell, uint256 amountSell, uint256 expires, uint256 nonce, address user, uint8 v, bytes32 r, bytes32 s);
      event Cancel(address tokenBuy, uint256 amountBuy, address tokenSell, uint256 amountSell, uint256 expires, uint256 nonce, address user, uint8 v, bytes32 r, bytes32 s);
      event Trade(address tokenBuy, uint256 amountBuy, address tokenSell, uint256 amountSell, address get, address give);
      event Deposit(address token, address user, uint256 amount, uint256 balance);
      event Withdraw(address token, address user, uint256 amount, uint256 balance);
    
      function setInactivityReleasePeriod(uint256 expiry) onlyAdmin returns (bool success) {
        if (expiry > 1000000) throw;
        inactivityReleasePeriod = expiry;
        return true;
      }
    
      function Exchange(address feeAccount_) {
        owner = msg.sender;
        feeAccount = feeAccount_;
        inactivityReleasePeriod = 100000;
      }
    
      function setAdmin(address admin, bool isAdmin) onlyOwner {
        admins[admin] = isAdmin;
      }
    
      modifier onlyAdmin {
        if (msg.sender != owner && !admins[msg.sender]) throw;
        _;
      }
    
      function() external {
        throw;
      }
    
      function depositToken(address token, uint256 amount) {
        tokens[token][msg.sender] = safeAdd(tokens[token][msg.sender], amount);
        lastActiveTransaction[msg.sender] = block.number;
        if (!Token(token).transferFrom(msg.sender, this, amount)) throw;
        Deposit(token, msg.sender, amount, tokens[token][msg.sender]);
      }
    
      function deposit() payable {
        tokens[address(0)][msg.sender] = safeAdd(tokens[address(0)][msg.sender], msg.value);
        lastActiveTransaction[msg.sender] = block.number;
        Deposit(address(0), msg.sender, msg.value, tokens[address(0)][msg.sender]);
      }
    
      function withdraw(address token, uint256 amount) returns (bool success) {
        if (safeSub(block.number, lastActiveTransaction[msg.sender]) < inactivityReleasePeriod) throw;
        if (tokens[token][msg.sender] < amount) throw;
        tokens[token][msg.sender] = safeSub(tokens[token][msg.sender], amount);
        if (token == address(0)) {
          if (!msg.sender.send(amount)) throw;
        } else {
          if (!Token(token).transfer(msg.sender, amount)) throw;
        }
        Withdraw(token, msg.sender, amount, tokens[token][msg.sender]);
      }
    
      function adminWithdraw(address token, uint256 amount, address user, uint256 nonce, uint8 v, bytes32 r, bytes32 s, uint256 feeWithdrawal) onlyAdmin returns (bool success) {
        bytes32 hash = keccak256(this, token, amount, user, nonce);
        if (withdrawn[hash]) throw;
        withdrawn[hash] = true;
        if (ecrecover(keccak256("\x19Ethereum Signed Message:\n32", hash), v, r, s) != user) throw;
        if (feeWithdrawal > 50 finney) feeWithdrawal = 50 finney;
        if (tokens[token][user] < amount) throw;
        tokens[token][user] = safeSub(tokens[token][user], amount);
        tokens[token][feeAccount] = safeAdd(tokens[token][feeAccount], safeMul(feeWithdrawal, amount) / 1 ether);
        amount = safeMul((1 ether - feeWithdrawal), amount) / 1 ether;
        if (token == address(0)) {
          if (!user.send(amount)) throw;
        } else {
          if (!Token(token).transfer(user, amount)) throw;
        }
        lastActiveTransaction[user] = block.number;
        Withdraw(token, user, amount, tokens[token][user]);
      }
    
      function balanceOf(address token, address user) constant returns (uint256) {
        return tokens[token][user];
      }
    
      function trade(uint256[8] tradeValues, address[4] tradeAddresses, uint8[2] v, bytes32[4] rs) onlyAdmin returns (bool success) {
        /* amount is in amountBuy terms */
        /* tradeValues
           [0] amountBuy
           [1] amountSell
           [2] expires
           [3] nonce
           [4] amount
           [5] tradeNonce
           [6] feeMake
           [7] feeTake
         tradeAddressses
           [0] tokenBuy
           [1] tokenSell
           [2] maker
           [3] taker
         */
        if (invalidOrder[tradeAddresses[2]] > tradeValues[3]) throw;
        bytes32 orderHash = keccak256(this, tradeAddresses[0], tradeValues[0], tradeAddresses[1], tradeValues[1], tradeValues[2], tradeValues[3], tradeAddresses[2]);
        if (ecrecover(keccak256("\x19Ethereum Signed Message:\n32", orderHash), v[0], rs[0], rs[1]) != tradeAddresses[2]) throw;
        bytes32 tradeHash = keccak256(orderHash, tradeValues[4], tradeAddresses[3], tradeValues[5]); 
        if (ecrecover(keccak256("\x19Ethereum Signed Message:\n32", tradeHash), v[1], rs[2], rs[3]) != tradeAddresses[3]) throw;
        if (traded[tradeHash]) throw;
        traded[tradeHash] = true;
        if (tradeValues[6] > 100 finney) tradeValues[6] = 100 finney;
        if (tradeValues[7] > 100 finney) tradeValues[7] = 100 finney;
        if (safeAdd(orderFills[orderHash], tradeValues[4]) > tradeValues[0]) throw;
        if (tokens[tradeAddresses[0]][tradeAddresses[3]] < tradeValues[4]) throw;
        if (tokens[tradeAddresses[1]][tradeAddresses[2]] < (safeMul(tradeValues[1], tradeValues[4]) / tradeValues[0])) throw;
        tokens[tradeAddresses[0]][tradeAddresses[3]] = safeSub(tokens[tradeAddresses[0]][tradeAddresses[3]], tradeValues[4]);
        tokens[tradeAddresses[0]][tradeAddresses[2]] = safeAdd(tokens[tradeAddresses[0]][tradeAddresses[2]], safeMul(tradeValues[4], ((1 ether) - tradeValues[6])) / (1 ether));
        tokens[tradeAddresses[0]][feeAccount] = safeAdd(tokens[tradeAddresses[0]][feeAccount], safeMul(tradeValues[4], tradeValues[6]) / (1 ether));
        tokens[tradeAddresses[1]][tradeAddresses[2]] = safeSub(tokens[tradeAddresses[1]][tradeAddresses[2]], safeMul(tradeValues[1], tradeValues[4]) / tradeValues[0]);
        tokens[tradeAddresses[1]][tradeAddresses[3]] = safeAdd(tokens[tradeAddresses[1]][tradeAddresses[3]], safeMul(safeMul(((1 ether) - tradeValues[7]), tradeValues[1]), tradeValues[4]) / tradeValues[0] / (1 ether));
        tokens[tradeAddresses[1]][feeAccount] = safeAdd(tokens[tradeAddresses[1]][feeAccount], safeMul(safeMul(tradeValues[7], tradeValues[1]), tradeValues[4]) / tradeValues[0] / (1 ether));
        orderFills[orderHash] = safeAdd(orderFills[orderHash], tradeValues[4]);
        lastActiveTransaction[tradeAddresses[2]] = block.number;
        lastActiveTransaction[tradeAddresses[3]] = block.number;
      }
    }

    File 2 of 2: AURA
    pragma solidity ^0.4.19;
    
    interface tokenRecipient { function receiveApproval(address _from, uint256 _value, address _token, bytes _extraData) public; }
    
    contract SafeMath {
      function safeMul(uint256 a, uint256 b) returns (uint256) {
        uint256 c = a * b;
        require(a == 0 || c / a == b);
        return c;
      }
      function safeSub(uint256 a, uint256 b) returns (uint256) {
        require(b <= a);
        return a - b;
      }
      function safeAdd(uint256 a, uint256 b) returns (uint256) {
        uint c = a + b;
        require(c >= a && c >= b);
        return c;
      }
    }
    
    contract Owned {
      address public owner;
      function Owned() {
        owner = msg.sender;
      }
      function setOwner(address _owner) returns (bool success) {
        owner = _owner;
        return true;
      }
      modifier onlyOwner {
        require(msg.sender == owner);
        _;
      }
    }
    
    contract AURA is SafeMath, Owned {
        bool public locked = true;
        string public name = "Aurora DAO";
        string public symbol = "AURA";
        uint8 public decimals = 18;
        uint256 public totalSupply;
        mapping (address => uint256) public balanceOf;
        mapping (address => mapping (address => uint256)) public allowance;
    
        event Transfer(address indexed from, address indexed to, uint256 value);
    
        /**
         * Constructor function
         *
         * Initializes contract with initial supply tokens to the creator of the contract
         */
        function AURA() public {
            totalSupply = 1000000000000000000000000000;
            balanceOf[msg.sender] = totalSupply;
        }
    
        /**
         * Internal transfer, only can be called by this contract
         */
        function _transfer(address _from, address _to, uint _value) internal {
            require(!locked || msg.sender == owner);
            require(_to != 0x0);
            require(balanceOf[_from] >= _value);
            require(balanceOf[_to] + _value > balanceOf[_to]);
            uint previousBalances = balanceOf[_from] + balanceOf[_to];
            balanceOf[_from] -= _value;
            balanceOf[_to] += _value;
            Transfer(_from, _to, _value);
            require(balanceOf[_from] + balanceOf[_to] == previousBalances);
        }
    
        /**
         * Transfer tokens
         *
         * Send `_value` tokens to `_to` from your account
         *
         * @param _to The address of the recipient
         * @param _value the amount to send
         */
        function transfer(address _to, uint256 _value) public returns (bool success) {
            _transfer(msg.sender, _to, _value);
            return true;
        }
    
        /**
         * Transfer tokens from other address
         *
         * Send `_value` tokens to `_to` in behalf of `_from`
         *
         * @param _from The address of the sender
         * @param _to The address of the recipient
         * @param _value the amount to send
         */
        function transferFrom(address _from, address _to, uint256 _value) public returns (bool success) {
            require(_value <= allowance[_from][msg.sender]);     // Check allowance
            allowance[_from][msg.sender] -= _value;
            _transfer(_from, _to, _value);
            return true;
        }
    
        /**
         * Set allowance for other address
         *
         * Allows `_spender` to spend no more than `_value` tokens in your behalf
         *
         * @param _spender The address authorized to spend
         * @param _value the max amount they can spend
         */
        function approve(address _spender, uint256 _value) public
            returns (bool success) {
            require(!locked);
            allowance[msg.sender][_spender] = _value;
            return true;
        }
    
        /**
         * Set allowance for other address and notify
         *
         * Allows `_spender` to spend no more than `_value` tokens in your behalf, and then ping the contract about it
         *
         * @param _spender The address authorized to spend
         * @param _value the max amount they can spend
         * @param _extraData some extra information to send to the approved contract
         */
        function approveAndCall(address _spender, uint256 _value, bytes _extraData)
            public
            returns (bool success) {
            tokenRecipient spender = tokenRecipient(_spender);
            if (approve(_spender, _value)) {
                spender.receiveApproval(msg.sender, _value, this, _extraData);
                return true;
            }
        }
    
        function unlockToken() onlyOwner {
          locked = false;
        }
    
        bool public balancesUploaded = false;
        function uploadBalances(address[] recipients, uint256[] balances) onlyOwner {
          require(!balancesUploaded);
          uint256 sum = 0;
          for (uint256 i = 0; i < recipients.length; i++) {
            balanceOf[recipients[i]] = safeAdd(balanceOf[recipients[i]], balances[i]);
            sum = safeAdd(sum, balances[i]);
          }
          balanceOf[owner] = safeSub(balanceOf[owner], sum);
        }
        function lockBalances() onlyOwner {
          balancesUploaded = true;
        }
    }