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Block
From
To
Transfer100963762020-05-19 12:26:202113 days ago1589891180IN
0x11E724dD...6f93AA4D5
0.02034933 ETH0.00003431
Transfer100513562020-05-12 12:22:302120 days ago1589286150IN
0x11E724dD...6f93AA4D5
0.02315695 ETH0.00003431
Transfer100061962020-05-05 12:18:582127 days ago1588681138IN
0x11E724dD...6f93AA4D5
0.03488411 ETH0.00003431
Transfer99609232020-04-28 12:10:342134 days ago1588075834IN
0x11E724dD...6f93AA4D5
0.03643787 ETH0.00003431
Transfer99157402020-04-21 12:09:492141 days ago1587470989IN
0x11E724dD...6f93AA4D5
0.03616911 ETH0.00003431
Transfer98704852020-04-14 12:08:442148 days ago1586866124IN
0x11E724dD...6f93AA4D5
0.03560591 ETH0.00003431
Transfer98249362020-04-07 12:10:562155 days ago1586261456IN
0x11E724dD...6f93AA4D5
0.03682053 ETH0.00003431
Transfer97793702020-03-31 12:02:012162 days ago1585656121IN
0x11E724dD...6f93AA4D5
0.03566846 ETH0.00003431
Transfer97340422020-03-24 11:57:082169 days ago1585051028IN
0x11E724dD...6f93AA4D5
0.0366434 ETH0.00003431
Transfer96888942020-03-17 11:56:232176 days ago1584446183IN
0x11E724dD...6f93AA4D5
0.03455318 ETH0.00003431
Transfer96436042020-03-10 11:54:542183 days ago1583841294IN
0x11E724dD...6f93AA4D5
0.03598187 ETH0.00003431
Transfer95980062020-03-03 11:47:372190 days ago1583236057IN
0x11E724dD...6f93AA4D5
0.04521877 ETH0.00003431
Transfer95523762020-02-25 11:41:412197 days ago1582630901IN
0x11E724dD...6f93AA4D5
0.05000884 ETH0.00003431
Transfer95175052020-02-20 2:41:262202 days ago1582166486IN
0x11E724dD...6f93AA4D5
0.05004082 ETH0.00003431
Transfer94826252020-02-14 18:00:562207 days ago1581703256IN
0x11E724dD...6f93AA4D5
0.05004366 ETH0.00003431
Transfer94404992020-02-08 6:31:492214 days ago1581143509IN
0x11E724dD...6f93AA4D5
0.05001124 ETH0.00003431
Transfer94079952020-02-03 6:36:142219 days ago1580711774IN
0x11E724dD...6f93AA4D5
0.05003919 ETH0.00003431
Transfer93747882020-01-29 4:14:172224 days ago1580271257IN
0x11E724dD...6f93AA4D5
0.05002079 ETH0.00003431
Transfer93412452020-01-24 0:33:342229 days ago1579826014IN
0x11E724dD...6f93AA4D5
0.05003252 ETH0.00003431
Transfer93078912020-01-18 22:05:262234 days ago1579385126IN
0x11E724dD...6f93AA4D5
0.05002734 ETH0.00003431
Transfer92730512020-01-13 13:54:342240 days ago1578923674IN
0x11E724dD...6f93AA4D5
0.05001705 ETH0.00003431
Transfer92402652020-01-08 13:33:572245 days ago1578490437IN
0x11E724dD...6f93AA4D5
0.01001169 ETH0.00003431
Transfer91669512019-12-26 18:22:022257 days ago1577384522IN
0x11E724dD...6f93AA4D5
0.03378446 ETH0.00003431
Transfer91318232019-12-19 18:17:492264 days ago1576779469IN
0x11E724dD...6f93AA4D5
0.05005208 ETH0.00003431
Transfer90965562019-12-12 21:34:032271 days ago1576186443IN
0x11E724dD...6f93AA4D5
0.04557695 ETH0.00003431
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Latest 25 internal transactions (View All)

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Parent Transaction Hash Method Block
From
To
-100963762020-05-19 12:26:202113 days ago1589891180
0x11E724dD...6f93AA4D5
0.02034933 ETH
-100513562020-05-12 12:22:302120 days ago1589286150
0x11E724dD...6f93AA4D5
0.02315695 ETH
-100061962020-05-05 12:18:582127 days ago1588681138
0x11E724dD...6f93AA4D5
0.03488411 ETH
-99609232020-04-28 12:10:342134 days ago1588075834
0x11E724dD...6f93AA4D5
0.03643787 ETH
-99157402020-04-21 12:09:492141 days ago1587470989
0x11E724dD...6f93AA4D5
0.03616911 ETH
-98704852020-04-14 12:08:442148 days ago1586866124
0x11E724dD...6f93AA4D5
0.03560591 ETH
-98249362020-04-07 12:10:562155 days ago1586261456
0x11E724dD...6f93AA4D5
0.03682053 ETH
-97793702020-03-31 12:02:012162 days ago1585656121
0x11E724dD...6f93AA4D5
0.03566846 ETH
-97340422020-03-24 11:57:082169 days ago1585051028
0x11E724dD...6f93AA4D5
0.0366434 ETH
-96888942020-03-17 11:56:232176 days ago1584446183
0x11E724dD...6f93AA4D5
0.03455318 ETH
-96436042020-03-10 11:54:542183 days ago1583841294
0x11E724dD...6f93AA4D5
0.03598187 ETH
-95980062020-03-03 11:47:372190 days ago1583236057
0x11E724dD...6f93AA4D5
0.04521877 ETH
-95523762020-02-25 11:41:412197 days ago1582630901
0x11E724dD...6f93AA4D5
0.05000884 ETH
-95175052020-02-20 2:41:262202 days ago1582166486
0x11E724dD...6f93AA4D5
0.05004082 ETH
-94826252020-02-14 18:00:562207 days ago1581703256
0x11E724dD...6f93AA4D5
0.05004366 ETH
-94404992020-02-08 6:31:492214 days ago1581143509
0x11E724dD...6f93AA4D5
0.05001124 ETH
-94079952020-02-03 6:36:142219 days ago1580711774
0x11E724dD...6f93AA4D5
0.05003919 ETH
-93747882020-01-29 4:14:172224 days ago1580271257
0x11E724dD...6f93AA4D5
0.05002079 ETH
-93412452020-01-24 0:33:342229 days ago1579826014
0x11E724dD...6f93AA4D5
0.05003252 ETH
-93078912020-01-18 22:05:262234 days ago1579385126
0x11E724dD...6f93AA4D5
0.05002734 ETH
-92730512020-01-13 13:54:342240 days ago1578923674
0x11E724dD...6f93AA4D5
0.05001705 ETH
-92402652020-01-08 13:33:572245 days ago1578490437
0x11E724dD...6f93AA4D5
0.01001169 ETH
-91669512019-12-26 18:22:022257 days ago1577384522
0x11E724dD...6f93AA4D5
0.03378446 ETH
-91318232019-12-19 18:17:492264 days ago1576779469
0x11E724dD...6f93AA4D5
0.05005208 ETH
-90965562019-12-12 21:34:032271 days ago1576186443
0x11E724dD...6f93AA4D5
0.04557695 ETH
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Similar Match Source Code
This contract matches the deployed Bytecode of the Source Code for Contract 0xe236AeBE...08FE07D3f
The constructor portion of the code might be different and could alter the actual behaviour of the contract

Contract Name:
Forwarder

Compiler Version
v0.4.16-nightly.2017.8.11+commit.c84de7fa

Optimization Enabled:
Yes with 200 runs

Other Settings:
default evmVersion

Contract Source Code (Solidity)

/**
 *Submitted for verification at Etherscan.io on 2017-11-21
*/

pragma solidity ^0.4.14;

/**
 * Contract that exposes the needed erc20 token functions
 */

contract ERC20Interface {
  // Send _value amount of tokens to address _to
  function transfer(address _to, uint256 _value) returns (bool success);
  // Get the account balance of another account with address _owner
  function balanceOf(address _owner) constant returns (uint256 balance);
}

/**
 * Contract that will forward any incoming Ether to its creator
 */
contract Forwarder {
  // Address to which any funds sent to this contract will be forwarded
  address public parentAddress;
  event ForwarderDeposited(address from, uint value, bytes data);

  event TokensFlushed(
    address tokenContractAddress, // The contract address of the token
    uint value // Amount of token sent
  );

  /**
   * Create the contract, and set the destination address to that of the creator
   */
  function Forwarder() {
    parentAddress = msg.sender;
  }

  /**
   * Modifier that will execute internal code block only if the sender is a parent of the forwarder contract
   */
  modifier onlyParent {
    if (msg.sender != parentAddress) {
      throw;
    }
    _;
  }

  /**
   * Default function; Gets called when Ether is deposited, and forwards it to the destination address
   */
  function() payable {
    if (!parentAddress.call.value(msg.value)(msg.data))
      throw;
    // Fire off the deposited event if we can forward it  
    ForwarderDeposited(msg.sender, msg.value, msg.data);
  }

  /**
   * Execute a token transfer of the full balance from the forwarder token to the main wallet contract
   * @param tokenContractAddress the address of the erc20 token contract
   */
  function flushTokens(address tokenContractAddress) onlyParent {
    ERC20Interface instance = ERC20Interface(tokenContractAddress);
    var forwarderAddress = address(this);
    var forwarderBalance = instance.balanceOf(forwarderAddress);
    if (forwarderBalance == 0) {
      return;
    }
    if (!instance.transfer(parentAddress, forwarderBalance)) {
      throw;
    }
    TokensFlushed(tokenContractAddress, forwarderBalance);
  }

  /**
   * It is possible that funds were sent to this address before the contract was deployed.
   * We can flush those funds to the destination address.
   */
  function flush() {
    if (!parentAddress.call.value(this.balance)())
      throw;
  }
}

/**
 * Basic multi-signer wallet designed for use in a co-signing environment where 2 signatures are required to move funds.
 * Typically used in a 2-of-3 signing configuration. Uses ecrecover to allow for 2 signatures in a single transaction.
 */
contract WalletSimple {
  // Events
  event Deposited(address from, uint value, bytes data);
  event SafeModeActivated(address msgSender);
  event Transacted(
    address msgSender, // Address of the sender of the message initiating the transaction
    address otherSigner, // Address of the signer (second signature) used to initiate the transaction
    bytes32 operation, // Operation hash (sha3 of toAddress, value, data, expireTime, sequenceId)
    address toAddress, // The address the transaction was sent to
    uint value, // Amount of Wei sent to the address
    bytes data // Data sent when invoking the transaction
  );
  event TokenTransacted(
    address msgSender, // Address of the sender of the message initiating the transaction
    address otherSigner, // Address of the signer (second signature) used to initiate the transaction
    bytes32 operation, // Operation hash (sha3 of toAddress, value, tokenContractAddress, expireTime, sequenceId)
    address toAddress, // The address the transaction was sent to
    uint value, // Amount of token sent
    address tokenContractAddress // The contract address of the token
  );

  // Public fields
  address[] public signers; // The addresses that can co-sign transactions on the wallet
  bool public safeMode = false; // When active, wallet may only send to signer addresses

  // Internal fields
  uint constant SEQUENCE_ID_WINDOW_SIZE = 10;
  uint[10] recentSequenceIds;

  /**
   * Modifier that will execute internal code block only if the sender is an authorized signer on this wallet
   */
  modifier onlysigner {
    if (!isSigner(msg.sender)) {
      throw;
    }
    _;
  }

  /**
   * Set up a simple multi-sig wallet by specifying the signers allowed to be used on this wallet.
   * 2 signers will be required to send a transaction from this wallet.
   * Note: The sender is NOT automatically added to the list of signers.
   * Signers CANNOT be changed once they are set
   *
   * @param allowedSigners An array of signers on the wallet
   */
  function WalletSimple(address[] allowedSigners) {
    if (allowedSigners.length != 3) {
      // Invalid number of signers
      throw;
    }
    signers = allowedSigners;
  }

  /**
   * Gets called when a transaction is received without calling a method
   */
  function() payable {
    if (msg.value > 0) {
      // Fire deposited event if we are receiving funds
      Deposited(msg.sender, msg.value, msg.data);
    }
  }

  /**
   * Create a new contract (and also address) that forwards funds to this contract
   * returns address of newly created forwarder address
   */
  function createForwarder() onlysigner returns (address) {
    return new Forwarder();
  }

  /**
   * Execute a multi-signature transaction from this wallet using 2 signers: one from msg.sender and the other from ecrecover.
   * The signature is a signed form (using eth.sign) of tightly packed toAddress, value, data, expireTime and sequenceId
   * Sequence IDs are numbers starting from 1. They are used to prevent replay attacks and may not be repeated.
   *
   * @param toAddress the destination address to send an outgoing transaction
   * @param value the amount in Wei to be sent
   * @param data the data to send to the toAddress when invoking the transaction
   * @param expireTime the number of seconds since 1970 for which this transaction is valid
   * @param sequenceId the unique sequence id obtainable from getNextSequenceId
   * @param signature the result of eth.sign on the operationHash sha3(toAddress, value, data, expireTime, sequenceId)
   */
  function sendMultiSig(address toAddress, uint value, bytes data, uint expireTime, uint sequenceId, bytes signature) onlysigner {
    // Verify the other signer
    var operationHash = sha3("ETHER", toAddress, value, data, expireTime, sequenceId);
    
    var otherSigner = verifyMultiSig(toAddress, operationHash, signature, expireTime, sequenceId);

    // Success, send the transaction
    if (!(toAddress.call.value(value)(data))) {
      // Failed executing transaction
      throw;
    }
    Transacted(msg.sender, otherSigner, operationHash, toAddress, value, data);
  }
  
  /**
   * Execute a multi-signature token transfer from this wallet using 2 signers: one from msg.sender and the other from ecrecover.
   * The signature is a signed form (using eth.sign) of tightly packed toAddress, value, tokenContractAddress, expireTime and sequenceId
   * Sequence IDs are numbers starting from 1. They are used to prevent replay attacks and may not be repeated.
   *
   * @param toAddress the destination address to send an outgoing transaction
   * @param value the amount in tokens to be sent
   * @param tokenContractAddress the address of the erc20 token contract
   * @param expireTime the number of seconds since 1970 for which this transaction is valid
   * @param sequenceId the unique sequence id obtainable from getNextSequenceId
   * @param signature the result of eth.sign on the operationHash sha3(toAddress, value, tokenContractAddress, expireTime, sequenceId)
   */
  function sendMultiSigToken(address toAddress, uint value, address tokenContractAddress, uint expireTime, uint sequenceId, bytes signature) onlysigner {
    // Verify the other signer
    var operationHash = sha3("ERC20", toAddress, value, tokenContractAddress, expireTime, sequenceId);
    
    var otherSigner = verifyMultiSig(toAddress, operationHash, signature, expireTime, sequenceId);
    
    ERC20Interface instance = ERC20Interface(tokenContractAddress);
    if (!instance.transfer(toAddress, value)) {
        throw;
    }
    TokenTransacted(msg.sender, otherSigner, operationHash, toAddress, value, tokenContractAddress);
  }

  /**
   * Execute a token flush from one of the forwarder addresses. This transfer needs only a single signature and can be done by any signer
   *
   * @param forwarderAddress the address of the forwarder address to flush the tokens from
   * @param tokenContractAddress the address of the erc20 token contract
   */
  function flushForwarderTokens(address forwarderAddress, address tokenContractAddress) onlysigner {    
    Forwarder forwarder = Forwarder(forwarderAddress);
    forwarder.flushTokens(tokenContractAddress);
  }  
  
  /**
   * Do common multisig verification for both eth sends and erc20token transfers
   *
   * @param toAddress the destination address to send an outgoing transaction
   * @param operationHash the sha3 of the toAddress, value, data/tokenContractAddress and expireTime
   * @param signature the tightly packed signature of r, s, and v as an array of 65 bytes (returned by eth.sign)
   * @param expireTime the number of seconds since 1970 for which this transaction is valid
   * @param sequenceId the unique sequence id obtainable from getNextSequenceId
   * returns address of the address to send tokens or eth to
   */
  function verifyMultiSig(address toAddress, bytes32 operationHash, bytes signature, uint expireTime, uint sequenceId) private returns (address) {

    var otherSigner = recoverAddressFromSignature(operationHash, signature);

    // Verify if we are in safe mode. In safe mode, the wallet can only send to signers
    if (safeMode && !isSigner(toAddress)) {
      // We are in safe mode and the toAddress is not a signer. Disallow!
      throw;
    }
    // Verify that the transaction has not expired
    if (expireTime < block.timestamp) {
      // Transaction expired
      throw;
    }

    // Try to insert the sequence ID. Will throw if the sequence id was invalid
    tryInsertSequenceId(sequenceId);

    if (!isSigner(otherSigner)) {
      // Other signer not on this wallet or operation does not match arguments
      throw;
    }
    if (otherSigner == msg.sender) {
      // Cannot approve own transaction
      throw;
    }

    return otherSigner;
  }

  /**
   * Irrevocably puts contract into safe mode. When in this mode, transactions may only be sent to signing addresses.
   */
  function activateSafeMode() onlysigner {
    safeMode = true;
    SafeModeActivated(msg.sender);
  }

  /**
   * Determine if an address is a signer on this wallet
   * @param signer address to check
   * returns boolean indicating whether address is signer or not
   */
  function isSigner(address signer) returns (bool) {
    // Iterate through all signers on the wallet and
    for (uint i = 0; i < signers.length; i++) {
      if (signers[i] == signer) {
        return true;
      }
    }
    return false;
  }

  /**
   * Gets the second signer's address using ecrecover
   * @param operationHash the sha3 of the toAddress, value, data/tokenContractAddress and expireTime
   * @param signature the tightly packed signature of r, s, and v as an array of 65 bytes (returned by eth.sign)
   * returns address recovered from the signature
   */
  function recoverAddressFromSignature(bytes32 operationHash, bytes signature) private returns (address) {
    if (signature.length != 65) {
      throw;
    }
    // We need to unpack the signature, which is given as an array of 65 bytes (from eth.sign)
    bytes32 r;
    bytes32 s;
    uint8 v;
    assembly {
      r := mload(add(signature, 32))
      s := mload(add(signature, 64))
      v := and(mload(add(signature, 65)), 255)
    }
    if (v < 27) {
      v += 27; // Ethereum versions are 27 or 28 as opposed to 0 or 1 which is submitted by some signing libs
    }
    return ecrecover(operationHash, v, r, s);
  }

  /**
   * Verify that the sequence id has not been used before and inserts it. Throws if the sequence ID was not accepted.
   * We collect a window of up to 10 recent sequence ids, and allow any sequence id that is not in the window and
   * greater than the minimum element in the window.
   * @param sequenceId to insert into array of stored ids
   */
  function tryInsertSequenceId(uint sequenceId) onlysigner private {
    // Keep a pointer to the lowest value element in the window
    uint lowestValueIndex = 0;
    for (uint i = 0; i < SEQUENCE_ID_WINDOW_SIZE; i++) {
      if (recentSequenceIds[i] == sequenceId) {
        // This sequence ID has been used before. Disallow!
        throw;
      }
      if (recentSequenceIds[i] < recentSequenceIds[lowestValueIndex]) {
        lowestValueIndex = i;
      }
    }
    if (sequenceId < recentSequenceIds[lowestValueIndex]) {
      // The sequence ID being used is lower than the lowest value in the window
      // so we cannot accept it as it may have been used before
      throw;
    }
    if (sequenceId > (recentSequenceIds[lowestValueIndex] + 10000)) {
      // Block sequence IDs which are much higher than the lowest value
      // This prevents people blocking the contract by using very large sequence IDs quickly
      throw;
    }
    recentSequenceIds[lowestValueIndex] = sequenceId;
  }

  /**
   * Gets the next available sequence ID for signing when using executeAndConfirm
   * returns the sequenceId one higher than the highest currently stored
   */
  function getNextSequenceId() returns (uint) {
    uint highestSequenceId = 0;
    for (uint i = 0; i < SEQUENCE_ID_WINDOW_SIZE; i++) {
      if (recentSequenceIds[i] > highestSequenceId) {
        highestSequenceId = recentSequenceIds[i];
      }
    }
    return highestSequenceId + 1;
  }
}

Contract Security Audit

Contract ABI

API
[{"constant":true,"inputs":[],"name":"parentAddress","outputs":[{"name":"","type":"address"}],"payable":false,"type":"function"},{"constant":false,"inputs":[{"name":"tokenContractAddress","type":"address"}],"name":"flushTokens","outputs":[],"payable":false,"type":"function"},{"constant":false,"inputs":[],"name":"flush","outputs":[],"payable":false,"type":"function"},{"inputs":[],"payable":false,"type":"constructor"},{"payable":true,"type":"fallback"},{"anonymous":false,"inputs":[{"indexed":false,"name":"from","type":"address"},{"indexed":false,"name":"value","type":"uint256"},{"indexed":false,"name":"data","type":"bytes"}],"name":"ForwarderDeposited","type":"event"},{"anonymous":false,"inputs":[{"indexed":false,"name":"tokenContractAddress","type":"address"},{"indexed":false,"name":"value","type":"uint256"}],"name":"TokensFlushed","type":"event"}]

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Deployed Bytecode

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

Swarm Source

bzzr://d0f8838ba17108a895d34ae8ef3bff4e0dc9d639c3c51921fee1d17eaa803721

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A contract address hosts a smart contract, which is a set of code stored on the blockchain that runs when predetermined conditions are met. Learn more about addresses in our Knowledge Base.