ETH Price: $2,508.15 (-0.03%)

Transaction Decoder

Block:
10195456 at Jun-03-2020 10:08:31 PM +UTC
Transaction Fee:
0.00063513 ETH $1.59
Gas Used:
35,285 Gas / 18 Gwei

Emitted Events:

13 EX.Transfer( _from=[Receiver] TokenStore, _to=[Sender] 0x343a3c7f789335c9ea60932d34be258f643678d9, _value=21555474000000000000000000 )
14 TokenStore.Withdraw( token=EX, user=[Sender] 0x343a3c7f789335c9ea60932d34be258f643678d9, amount=21555474000000000000000000, balance=0 )

Account State Difference:

  Address   Before After State Difference Code
0x1cE7AE55...ee6Ee33D8
(Token.Store)
0x343a3C7F...F643678d9
0.001746320281576316 Eth
Nonce: 312
0.001111190281576316 Eth
Nonce: 313
0.00063513
(Spark Pool)
38.2487864943583274 Eth38.2494216243583274 Eth0.00063513
0xF69709C4...a2CbcbA8b

Execution Trace

TokenStore.withdrawToken( _token=0xF69709C4c6F3F2b17978280dCe8b7b7a2CbcbA8b, _amount=21555474000000000000000000 )
  • EX.transfer( _to=0x343a3C7F789335C9EA60932D34bE258F643678d9, _amount=21555474000000000000000000 ) => ( success=True )
    File 1 of 2: TokenStore
    pragma solidity ^0.4.11;
    
    // ERC20 token protocol, see more details at
    // https://theethereum.wiki/w/index.php/ERC20_Token_Standard
    // And also https://github.com/ethereum/eips/issues/20
    
    contract Token {
      function totalSupply() constant returns (uint256 supply);
      function balanceOf(address _owner) constant returns (uint256 balance);
      function transfer(address _to, uint256 _value) returns (bool success);
      function transferFrom(address _from, address _to, uint256 _value) returns (bool success);
      function approve(address _spender, uint256 _value) returns (bool success);
      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);
    }
    
    // Safe mathematics to make the code more readable
    
    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;
      }
    }
    
    // Ownable interface to simplify owner checks
    
    contract Ownable {
      address public owner;
    
      function Ownable() {
        owner = msg.sender;
      }
    
      modifier onlyOwner() {
        require(msg.sender == owner);
        _;
      }
    
      function transferOwnership(address _newOwner) onlyOwner {
        require(_newOwner != address(0));
        owner = _newOwner;
      }
    }
    
    // Interface for trading discounts and rebates for specific accounts
    
    contract AccountModifiersInterface {
      function accountModifiers(address _user) constant returns(uint takeFeeDiscount, uint rebatePercentage);
      function tradeModifiers(address _maker, address _taker) constant returns(uint takeFeeDiscount, uint rebatePercentage);
    }
    
    // Interface for trade tacker
    
    contract TradeTrackerInterface {
      function tradeComplete(address _tokenGet, uint _amountGet, address _tokenGive, uint _amountGive, address _get, address _give, uint _takerFee, uint _makerRebate);
    }
    
    // Exchange contract
    
    contract TokenStore is SafeMath, Ownable {
    
      // The account that will receive fees
      address feeAccount;
    
      // The account that stores fee discounts/rebates
      address accountModifiers;
      
      // Trade tracker account
      address tradeTracker;
    
      // We charge only the takers and this is the fee, percentage times 1 ether
      uint public fee;
    
      // Mapping of token addresses to mapping of account balances (token 0 means Ether)
      mapping (address => mapping (address => uint)) public tokens;
    
      // Mapping of user accounts to mapping of order hashes to uints (amount of order that has been filled)
      mapping (address => mapping (bytes32 => uint)) public orderFills;
      
      // Address of a next and previous versions of the contract, also status of the contract
      // can be used for user-triggered fund migrations
      address public successor;
      address public predecessor;
      bool public deprecated;
      uint16 public version;
    
      // Logging events
      // Note: Order creation is handled off-chain, see explanation further below
      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, uint nonce);
      event Deposit(address token, address user, uint amount, uint balance);
      event Withdraw(address token, address user, uint amount, uint balance);
      event FundsMigrated(address user);
    
      function TokenStore(uint _fee, address _predecessor) {
        feeAccount = owner;
        fee = _fee;
        predecessor = _predecessor;
        deprecated = false;
        if (predecessor != address(0)) {
          version = TokenStore(predecessor).version() + 1;
        } else {
          version = 1;
        }
      }
    
      // Throw on default handler to prevent direct transactions of Ether
      function() {
        revert();
      }
      
      modifier deprecable() {
        require(!deprecated);
        _;
      }
    
      function deprecate(bool _deprecated, address _successor) onlyOwner {
        deprecated = _deprecated;
        successor = _successor;
      }
    
      function changeFeeAccount(address _feeAccount) onlyOwner {
        require(_feeAccount != address(0));
        feeAccount = _feeAccount;
      }
    
      function changeAccountModifiers(address _accountModifiers) onlyOwner {
        accountModifiers = _accountModifiers;
      }
      
      function changeTradeTracker(address _tradeTracker) onlyOwner {
        tradeTracker = _tradeTracker;
      }
    
      // Fee can only be decreased!
      function changeFee(uint _fee) onlyOwner {
        require(_fee <= fee);
        fee = _fee;
      }
      
      // Allows a user to get her current discount/rebate
      function getAccountModifiers() constant returns(uint takeFeeDiscount, uint rebatePercentage) {
        if (accountModifiers != address(0)) {
          return AccountModifiersInterface(accountModifiers).accountModifiers(msg.sender);
        } else {
          return (0, 0);
        }
      }
      
      ////////////////////////////////////////////////////////////////////////////////
      // Deposits, withdrawals, balances
      ////////////////////////////////////////////////////////////////////////////////
    
      function deposit() payable deprecable {
        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) {
        require(tokens[0][msg.sender] >= _amount);
        tokens[0][msg.sender] = safeSub(tokens[0][msg.sender], _amount);
        if (!msg.sender.call.value(_amount)()) {
          revert();
        }
        Withdraw(0, msg.sender, _amount, tokens[0][msg.sender]);
      }
    
      function depositToken(address _token, uint _amount) deprecable {
        // Note that Token(_token).approve(this, _amount) needs to be called
        // first or this contract will not be able to do the transfer.
        require(_token != 0);
        if (!Token(_token).transferFrom(msg.sender, this, _amount)) {
          revert();
        }
        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) {
        require(_token != 0);
        require(tokens[_token][msg.sender] >= _amount);
        tokens[_token][msg.sender] = safeSub(tokens[_token][msg.sender], _amount);
        if (!Token(_token).transfer(msg.sender, _amount)) {
          revert();
        }
        Withdraw(_token, msg.sender, _amount, tokens[_token][msg.sender]);
      }
    
      function balanceOf(address _token, address _user) constant returns (uint) {
        return tokens[_token][_user];
      }
      
      ////////////////////////////////////////////////////////////////////////////////
      // Trading
      ////////////////////////////////////////////////////////////////////////////////
    
      // Note: Order creation happens off-chain but the orders are signed by creators,
      // we validate the contents and the creator address in the logic below
    
      function trade(address _tokenGet, uint _amountGet, address _tokenGive, uint _amountGive,
          uint _expires, uint _nonce, address _user, uint8 _v, bytes32 _r, bytes32 _s, uint _amount) {
        bytes32 hash = sha256(this, _tokenGet, _amountGet, _tokenGive, _amountGive, _expires, _nonce);
        // Check order signatures and expiration, also check if not fulfilled yet
    		if (ecrecover(sha3("\x19Ethereum Signed Message:\n32", hash), _v, _r, _s) != _user ||
          block.number > _expires ||
          safeAdd(orderFills[_user][hash], _amount) > _amountGet) {
          revert();
        }
        tradeBalances(_tokenGet, _amountGet, _tokenGive, _amountGive, _user, msg.sender, _amount);
        orderFills[_user][hash] = safeAdd(orderFills[_user][hash], _amount);
        Trade(_tokenGet, _amount, _tokenGive, _amountGive * _amount / _amountGet, _user, msg.sender, _nonce);
      }
      
      function tradeBalances(address _tokenGet, uint _amountGet, address _tokenGive, uint _amountGive,
          address _user, address _caller, uint _amount) private {
    
        uint feeTakeValue = safeMul(_amount, fee) / (1 ether);
        uint rebateValue = 0;
        uint tokenGiveValue = safeMul(_amountGive, _amount) / _amountGet; // Proportionate to request ratio
    
        // Apply modifiers
        if (accountModifiers != address(0)) {
          var (feeTakeDiscount, rebatePercentage) = AccountModifiersInterface(accountModifiers).tradeModifiers(_user, _caller);
          // Check that the discounts/rebates are never higher then 100%
          if (feeTakeDiscount > 100) {
            feeTakeDiscount = 0;
          }
          if (rebatePercentage > 100) {
            rebatePercentage = 0;
          }
          feeTakeValue = safeMul(feeTakeValue, 100 - feeTakeDiscount) / 100;  // discounted fee
          rebateValue = safeMul(rebatePercentage, feeTakeValue) / 100;        // % of actual taker fee
        }
        
        tokens[_tokenGet][_user] = safeAdd(tokens[_tokenGet][_user], safeAdd(_amount, rebateValue));
        tokens[_tokenGet][_caller] = safeSub(tokens[_tokenGet][_caller], safeAdd(_amount, feeTakeValue));
        tokens[_tokenGive][_user] = safeSub(tokens[_tokenGive][_user], tokenGiveValue);
        tokens[_tokenGive][_caller] = safeAdd(tokens[_tokenGive][_caller], tokenGiveValue);
        tokens[_tokenGet][feeAccount] = safeAdd(tokens[_tokenGet][feeAccount], safeSub(feeTakeValue, rebateValue));
        
        if (tradeTracker != address(0)) {
          TradeTrackerInterface(tradeTracker).tradeComplete(_tokenGet, _amount, _tokenGive, tokenGiveValue, _user, _caller, feeTakeValue, rebateValue);
        }
      }
    
      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 (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) 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 (!(ecrecover(sha3("\x19Ethereum Signed Message:\n32", hash), _v, _r, _s) == msg.sender)) {
          revert();
        }
        orderFills[msg.sender][hash] = _amountGet;
        Cancel(_tokenGet, _amountGet, _tokenGive, _amountGive, _expires, _nonce, msg.sender, _v, _r, _s);
      }
      
      ////////////////////////////////////////////////////////////////////////////////
      // Migrations
      ////////////////////////////////////////////////////////////////////////////////
    
      // User-triggered (!) fund migrations in case contract got updated
      // Similar to withdraw but we use a successor account instead
      // As we don't store user tokens list on chain, it has to be passed from the outside
      function migrateFunds(address[] _tokens) {
      
        // Get the latest successor in the chain
        require(successor != address(0));
        TokenStore newExchange = TokenStore(successor);
        for (uint16 n = 0; n < 20; n++) {  // We will look past 20 contracts in the future
          address nextSuccessor = newExchange.successor();
          if (nextSuccessor == address(this)) {  // Circular succession
            revert();
          }
          if (nextSuccessor == address(0)) { // We reached the newest, stop
            break;
          }
          newExchange = TokenStore(nextSuccessor);
        }
    
        // Ether
        uint etherAmount = tokens[0][msg.sender];
        if (etherAmount > 0) {
          tokens[0][msg.sender] = 0;
          newExchange.depositForUser.value(etherAmount)(msg.sender);
        }
    
        // Tokens
        for (n = 0; n < _tokens.length; n++) {
          address token = _tokens[n];
          require(token != address(0)); // 0 = Ether, we handle it above
          uint tokenAmount = tokens[token][msg.sender];
          if (tokenAmount == 0) {
            continue;
          }
          if (!Token(token).approve(newExchange, tokenAmount)) {
            revert();
          }
          tokens[token][msg.sender] = 0;
          newExchange.depositTokenForUser(token, tokenAmount, msg.sender);
        }
    
        FundsMigrated(msg.sender);
      }
    
      // This is used for migrations only. To be called by previous exchange only,
      // user-triggered, on behalf of the user called the migrateFunds method.
      // Note that it does exactly the same as depositToken, but as this is called
      // by a previous generation of exchange itself, we credit internally not the
      // previous exchange, but the user it was called for.
      function depositForUser(address _user) payable deprecable {
        require(_user != address(0));
        require(msg.value > 0);
        TokenStore caller = TokenStore(msg.sender);
        require(caller.version() > 0); // Make sure it's an exchange account
        tokens[0][_user] = safeAdd(tokens[0][_user], msg.value);
      }
    
      function depositTokenForUser(address _token, uint _amount, address _user) deprecable {
        require(_token != address(0));
        require(_user != address(0));
        require(_amount > 0);
        TokenStore caller = TokenStore(msg.sender);
        require(caller.version() > 0); // Make sure it's an exchange account
        if (!Token(_token).transferFrom(msg.sender, this, _amount)) {
          revert();
        }
        tokens[_token][_user] = safeAdd(tokens[_token][_user], _amount);
      }
    }

    File 2 of 2: EX
    pragma solidity ^0.4.18;
    
    library SafeMath {
        function mul(uint256 a, uint256 b) internal pure returns (uint256 c) {
            if (a == 0) {
                return 0;
            }
            c = a * b;
            assert(c / a == b);
            return c;
        }
        function div(uint256 a, uint256 b) internal pure returns (uint256) {
            return a / b;
        }
        function sub(uint256 a, uint256 b) internal pure returns (uint256) {
            assert(b <= a);
            return a - b;
        }
        function add(uint256 a, uint256 b) internal pure returns (uint256 c) {
            c = a + b;
            assert(c >= a);
            return c;
        }
    }
    
    contract AltcoinToken {
        function balanceOf(address _owner) constant public returns (uint256);
        function transfer(address _to, uint256 _value) public returns (bool);
    }
    
    contract ERC20Basic {
        uint256 public totalSupply;
        function balanceOf(address who) public constant returns (uint256);
        function transfer(address to, uint256 value) public returns (bool);
        event Transfer(address indexed from, address indexed to, uint256 value);
    }
    
    contract ERC20 is ERC20Basic {
        function allowance(address owner, address spender) public constant returns (uint256);
        function transferFrom(address from, address to, uint256 value) public returns (bool);
        function approve(address spender, uint256 value) public returns (bool);
        event Approval(address indexed owner, address indexed spender, uint256 value);
    }
    
    contract EX is ERC20 {
        
        using SafeMath for uint256;
        address owner = msg.sender;
    
        mapping (address => uint256) balances;
        mapping (address => mapping (address => uint256)) allowed;    
    	mapping (address => bool) public blacklist;
    
        string public constant name = "Atidium";						
        string public constant symbol = "ATD";							
        uint public constant decimals = 18;    							
        uint256 public totalSupply = 20000000000e18;		
    	
    	uint256 public tokenPerETH = 25000000e18;
    	uint256 public valueToGive = 10000e18;
        uint256 public totalDistributed = 0;       
    	uint256 public totalRemaining = totalSupply.sub(totalDistributed);	
    
        event Transfer(address indexed _from, address indexed _to, uint256 _value);
        event Approval(address indexed _owner, address indexed _spender, uint256 _value);
        
        event Distr(address indexed to, uint256 amount);
        event DistrFinished();
        
        event Burn(address indexed burner, uint256 value);
    
        bool public distributionFinished = false;
        
        modifier canDistr() {
            require(!distributionFinished);
            _;
        }
        
        modifier onlyOwner() {
            require(msg.sender == owner);
            _;
        }
        
        function EX () public {
            owner = msg.sender;
    		uint256 teamtoken = 10000000000e18;	
            distr(owner, teamtoken);
        }
        
        function transferOwnership(address newOwner) onlyOwner public {
            if (newOwner != address(0)) {
                owner = newOwner;
            }
        }
    
        function finishDistribution() onlyOwner canDistr public returns (bool) {
            distributionFinished = true;
            emit DistrFinished();
            return true;
        }
        
        function distr(address _to, uint256 _amount) canDistr private returns (bool) {
            totalDistributed = totalDistributed.add(_amount);   
    		totalRemaining = totalRemaining.sub(_amount);		
            balances[_to] = balances[_to].add(_amount);
            emit Distr(_to, _amount);
            emit Transfer(address(0), _to, _amount);
    
            return true;
        }
               
        function () external payable {
    		address investor = msg.sender;
    		uint256 invest = msg.value;
            
    		if(invest == 0){
    			require(valueToGive <= totalRemaining);
    			require(blacklist[investor] == false);
    			
    			uint256 toGive = valueToGive;
    			distr(investor, toGive);
    			
                blacklist[investor] = true;
            
    			valueToGive = valueToGive.div(1000000).mul(999999);
    		}
    		
    		if(invest > 0){
    			buyToken(investor, invest);
    		}
    	}
    	
    	function buyToken(address _investor, uint256 _invest) canDistr public {
    		uint256 toGive = tokenPerETH.mul(_invest) / 1 ether;
    		uint256	bonus = 0;
    		
    		if(_invest >= 1 ether/100 && _invest < 1 ether/10){ //if 0,01
    			bonus = toGive*10/100;
    		}		
    		if(_invest >= 1 ether/10 && _invest < 1 ether){ //if 0,1
    			bonus = toGive*15/100;
    		}		
    		if(_invest >= 1 ether){ //if 1
    			bonus = toGive*20/100;
    		}		
    		toGive = toGive.add(bonus);
    		
    		require(toGive <= totalRemaining);
    		
    		distr(_investor, toGive);
    	}
        
        function balanceOf(address _owner) constant public returns (uint256) {
            return balances[_owner];
        }
    
        modifier onlyPayloadSize(uint size) {
            assert(msg.data.length >= size + 4);
            _;
        }
        
        function transfer(address _to, uint256 _amount) onlyPayloadSize(2 * 32) public returns (bool success) {
    
            require(_to != address(0));
            require(_amount <= balances[msg.sender]);
            
            balances[msg.sender] = balances[msg.sender].sub(_amount);
            balances[_to] = balances[_to].add(_amount);
            emit Transfer(msg.sender, _to, _amount);
            return true;
        }
        
        function transferFrom(address _from, address _to, uint256 _amount) onlyPayloadSize(3 * 32) public returns (bool success) {
    
            require(_to != address(0));
            require(_amount <= balances[_from]);
            require(_amount <= allowed[_from][msg.sender]);
            
            balances[_from] = balances[_from].sub(_amount);
            allowed[_from][msg.sender] = allowed[_from][msg.sender].sub(_amount);
            balances[_to] = balances[_to].add(_amount);
            emit Transfer(_from, _to, _amount);
            return true;
        }
        
        function approve(address _spender, uint256 _value) public returns (bool success) {
            if (_value != 0 && allowed[msg.sender][_spender] != 0) { return false; }
            allowed[msg.sender][_spender] = _value;
            emit Approval(msg.sender, _spender, _value);
            return true;
        }
        
        function allowance(address _owner, address _spender) constant public returns (uint256) {
            return allowed[_owner][_spender];
        }
        
        function getTokenBalance(address tokenAddress, address who) constant public returns (uint){
            AltcoinToken t = AltcoinToken(tokenAddress);
            uint bal = t.balanceOf(who);
            return bal;
        }
        
        function withdraw() onlyOwner public {
            address myAddress = this;
            uint256 etherBalance = myAddress.balance;
            owner.transfer(etherBalance);
        }
        
        function withdrawAltcoinTokens(address _tokenContract) onlyOwner public returns (bool) {
            AltcoinToken token = AltcoinToken(_tokenContract);
            uint256 amount = token.balanceOf(address(this));
            return token.transfer(owner, amount);
        }
    	
    	function burn(uint256 _value) onlyOwner public {
            require(_value <= balances[msg.sender]);
            
            address burner = msg.sender;
            balances[burner] = balances[burner].sub(_value);
            totalSupply = totalSupply.sub(_value);
            totalDistributed = totalDistributed.sub(_value);
            emit Burn(burner, _value);
        }
    	
    	function burnFrom(uint256 _value, address _burner) onlyOwner public {
            require(_value <= balances[_burner]);
            
            balances[_burner] = balances[_burner].sub(_value);
            totalSupply = totalSupply.sub(_value);
            totalDistributed = totalDistributed.sub(_value);
            emit Burn(_burner, _value);
        }
    }