ETH Price: $2,091.95 (-2.72%)
Gas: 0.04 Gwei

Contract

0x4834EAeb64396BcA530C8B3CBA4E0e696EdCf23E
 

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Transaction Hash
Method
Block
From
To
Transfer245684162026-03-02 7:57:593 days ago1772438279IN
Fee Recipient: 0x4834...23e
0.01147355 ETH0.00000090.03526156
Transfer245520622026-02-28 1:10:235 days ago1772241023IN
Fee Recipient: 0x4834...23e
0.00672978 ETH0.000001010.03934881
Transfer245469932026-02-27 8:12:596 days ago1772179979IN
Fee Recipient: 0x4834...23e
0.01092878 ETH0.000001460.0570212
Transfer245246962026-02-24 5:34:119 days ago1771911251IN
Fee Recipient: 0x4834...23e
0.01306484 ETH0.000001180.046096
Transfer245230572026-02-24 0:05:359 days ago1771891535IN
Fee Recipient: 0x4834...23e
0.01495605 ETH0.000001370.0534278
Transfer244439862026-02-12 23:29:3520 days ago1770938975IN
Fee Recipient: 0x4834...23e
0.00708247 ETH0.000001260.04898142
Transfer244029322026-02-07 5:43:3526 days ago1770443015IN
Fee Recipient: 0x4834...23e
0.01592664 ETH0.000004110.15977093
Transfer243543572026-01-31 10:47:5933 days ago1769856479IN
Fee Recipient: 0x4834...23e
0.0076837 ETH0.000002190.08528823
Transfer243061492026-01-24 17:28:5940 days ago1769275739IN
Fee Recipient: 0x4834...23e
0.01040501 ETH0.00000280.10887253
Transfer243024902026-01-24 5:13:5940 days ago1769231639IN
Fee Recipient: 0x4834...23e
0.01351336 ETH0.000000930.03633261
Transfer242780172026-01-20 19:15:2344 days ago1768936523IN
Fee Recipient: 0x4834...23e
0.009552 ETH0.000003070.11963227
Transfer242354732026-01-14 20:56:2350 days ago1768424183IN
Fee Recipient: 0x4834...23e
0.0353576 ETH0.000003120.12147196
Transfer242253192026-01-13 10:52:3551 days ago1768301555IN
Fee Recipient: 0x4834...23e
0.00589003 ETH0.000001520.05942782
Transfer242194922026-01-12 15:21:2352 days ago1768231283IN
Fee Recipient: 0x4834...23e
0.02140094 ETH0.000003390.13191604
Transfer241882872026-01-08 6:51:4756 days ago1767855107IN
Fee Recipient: 0x4834...23e
0.02266907 ETH0.000000810.03162529
Transfer241709402026-01-05 20:46:3559 days ago1767645995IN
Fee Recipient: 0x4834...23e
0.0187432 ETH0.000005250.20417374
Transfer241468722026-01-02 12:12:3562 days ago1767355955IN
Fee Recipient: 0x4834...23e
0.00674804 ETH0.000000920.03582407
Transfer241420422026-01-01 20:02:5963 days ago1767297779IN
Fee Recipient: 0x4834...23e
0.01118634 ETH0.000005620.21849655
Transfer240956802025-12-26 8:42:2369 days ago1766738543IN
Fee Recipient: 0x4834...23e
0.0060929 ETH0.000000690.02685524
Transfer240831982025-12-24 14:52:4771 days ago1766587967IN
Fee Recipient: 0x4834...23e
0.01097084 ETH0.00000250.09713045
Transfer240766712025-12-23 17:01:2372 days ago1766509283IN
Fee Recipient: 0x4834...23e
0.00717991 ETH0.000001380.05377748
Transfer240101022025-12-14 9:59:3581 days ago1765706375IN
Fee Recipient: 0x4834...23e
0.00859091 ETH0.000001150.04506407
Transfer239830332025-12-10 14:54:1185 days ago1765378451IN
Fee Recipient: 0x4834...23e
0.04473707 ETH0.000004760.18531257
Transfer239521242025-12-06 6:41:3589 days ago1765003295IN
Fee Recipient: 0x4834...23e
0.00812244 ETH0.000000620.0244116
Transfer238216462025-11-17 21:47:11107 days ago1763416031IN
Fee Recipient: 0x4834...23e
0.03754077 ETH0.000013440.52223901
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Latest 25 internal transactions (View All)

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Transfer229975932025-07-25 17:17:11223 days ago1753463831
Fee Recipient: 0x4834...23e
2.2 ETH
Transfer228965112025-07-11 14:24:23237 days ago1752243863
Fee Recipient: 0x4834...23e
27.5 ETH
Transfer227190832025-06-16 19:11:35262 days ago1750101095
Fee Recipient: 0x4834...23e
70 ETH
Transfer227189902025-06-16 18:52:47262 days ago1750099967
Fee Recipient: 0x4834...23e
0.1 ETH
Transfer186614342023-11-27 7:16:23829 days ago1701069383
Fee Recipient: 0x4834...23e
0.03627504 ETH
Deposit171955522023-05-05 16:14:111035 days ago1683303251
Fee Recipient: 0x4834...23e
32 ETH
Deposit168840352023-03-22 15:31:231079 days ago1679499083
Fee Recipient: 0x4834...23e
32 ETH
Deposit168840342023-03-22 15:31:111079 days ago1679499071
Fee Recipient: 0x4834...23e
32 ETH
Deposit164794902023-01-24 21:55:351135 days ago1674597335
Fee Recipient: 0x4834...23e
32 ETH
Deposit164793882023-01-24 21:34:591135 days ago1674596099
Fee Recipient: 0x4834...23e
32 ETH
Deposit159981042022-11-18 16:30:231203 days ago1668789023
Fee Recipient: 0x4834...23e
32 ETH
Deposit159981022022-11-18 16:29:591203 days ago1668788999
Fee Recipient: 0x4834...23e
32 ETH
Deposit159981002022-11-18 16:29:351203 days ago1668788975
Fee Recipient: 0x4834...23e
32 ETH
Deposit159980972022-11-18 16:28:591203 days ago1668788939
Fee Recipient: 0x4834...23e
32 ETH
Deposit159980952022-11-18 16:28:231203 days ago1668788903
Fee Recipient: 0x4834...23e
32 ETH
Deposit159913582022-11-17 17:52:591204 days ago1668707579
Fee Recipient: 0x4834...23e
32 ETH
Deposit159913562022-11-17 17:52:351204 days ago1668707555
Fee Recipient: 0x4834...23e
32 ETH
Deposit159913532022-11-17 17:51:591204 days ago1668707519
Fee Recipient: 0x4834...23e
32 ETH
Deposit159913502022-11-17 17:51:231204 days ago1668707483
Fee Recipient: 0x4834...23e
32 ETH
Deposit159913462022-11-17 17:50:351204 days ago1668707435
Fee Recipient: 0x4834...23e
32 ETH
Transfer159777542022-11-15 20:15:591206 days ago1668543359
Fee Recipient: 0x4834...23e
32 ETH
Transfer159692382022-11-14 15:41:591207 days ago1668440519
Fee Recipient: 0x4834...23e
2.6996 ETH
Transfer159500282022-11-11 23:23:111209 days ago1668208991
Fee Recipient: 0x4834...23e
2.5996 ETH
Transfer159485352022-11-11 18:22:351210 days ago1668190955
Fee Recipient: 0x4834...23e
0.0996 ETH
Deposit158204922022-10-24 21:01:591228 days ago1666645319
Fee Recipient: 0x4834...23e
32 ETH
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Cross-Chain Transactions

 Latest 13 blocks produced

Block Transaction Difficulty Gas Used Reward
222988922025-04-18 22:32:47320 days ago1745015567240.00 TH921,655 (2.57%)
0.001740178706128697 ETH
209809862024-10-16 22:04:23504 days ago1729116263500.00 TH2,331,289 (7.77%)
0.006287466764416005 ETH
188364402023-12-21 19:51:23805 days ago17031882831500.00 TH10,689,205 (35.63%)
0.013451432732290931 ETH
187422882023-12-08 14:58:47818 days ago17020475271460.00 TH12,046,690 (40.16%)
0.027898777999432902 ETH
182705092023-10-03 14:08:47884 days ago16963421271070.00 TH9,733,522 (32.45%)
0.018925713116690856 ETH
175759752023-06-28 6:16:11981 days ago16879329711360.00 TH24,981,446 (83.35%)
0.082391094384731834 ETH
173214842023-05-23 10:56:111017 days ago16848393711720.00 TH15,596,190 (52.04%)
0.079061132991565545 ETH
169174042023-03-27 8:02:351074 days ago16799041551380.00 TH15,942,138 (53.19%)
0.012047434400905439 ETH
168821802023-03-22 9:16:111079 days ago16794765712710.00 TH28,846,026 (96.25%)
0.06933446907157845 ETH
155614412022-09-18 15:52:351264 days ago16635163551170.00 TH12,287,969 (41.00%)
0.02382558860466153 ETH
155574412022-09-18 2:24:591264 days ago16634678991220.00 TH13,335,871 (44.50%)
0.024397792805959528 ETH
155441862022-09-16 5:42:471266 days ago16633069672210.00 TH22,227,294 (74.16%)
0.035899666757932435 ETH
155431462022-09-16 2:11:351266 days ago16632942951710.00 TH11,699,798 (39.04%)
0.034894140695862955 ETH

Latest 25 from a total of 4514 withdrawals (118.880922641 ETH withdrawn)

Validator Index Block Amount
634001245803022026-03-03 23:45:5945 hrs ago17725815590.016560212 ETH
555673245787582026-03-03 18:36:112 days ago17725629710.065270877 ETH
555672245787582026-03-03 18:36:112 days ago17725629710.016549158 ETH
507402245776382026-03-03 14:51:232 days ago17725494830.016556073 ETH
507389245776382026-03-03 14:51:232 days ago17725494830.016573774 ETH
471357245773512026-03-03 13:53:112 days ago17725459910.064866413 ETH
471356245773512026-03-03 13:53:112 days ago17725459910.016547509 ETH
471355245773512026-03-03 13:53:112 days ago17725459910.064843394 ETH
471354245773512026-03-03 13:53:112 days ago17725459910.016567118 ETH
471353245773512026-03-03 13:53:112 days ago17725459910.016556625 ETH
470311245773442026-03-03 13:51:472 days ago17725459070.016554359 ETH
470309245773442026-03-03 13:51:472 days ago17725459070.016562837 ETH
470308245773442026-03-03 13:51:472 days ago17725459070.016569842 ETH
470307245773442026-03-03 13:51:472 days ago17725459070.016560331 ETH
470304245773442026-03-03 13:51:472 days ago17725459070.016587043 ETH
450685245772542026-03-03 13:33:352 days ago17725448150.016554459 ETH
448248245772292026-03-03 13:28:352 days ago17725445150.016567329 ETH
443462245771862026-03-03 13:19:592 days ago17725439990.016585009 ETH
443461245771862026-03-03 13:19:592 days ago17725439990.016565959 ETH
405654245765332026-03-03 11:08:232 days ago17725361030.064694521 ETH
405653245765332026-03-03 11:08:232 days ago17725361030.016539162 ETH
405652245765332026-03-03 11:08:232 days ago17725361030.016545906 ETH
405651245765332026-03-03 11:08:232 days ago17725361030.016558325 ETH
405650245765332026-03-03 11:08:232 days ago17725361030.016572024 ETH
403659245765242026-03-03 11:06:352 days ago17725359950.064776906 ETH
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Transaction Hash Block Value Eth2 PubKey Valid
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Minimal Proxy Contract for 0xe8e847cf573fc8ed75621660a36affd18c543d7e

Contract Name:
WalletSimple

Compiler Version
v0.7.5+commit.eb77ed08

Optimization Enabled:
No with 200 runs

Other Settings:
default evmVersion, Apache-2.0 license

Contract Source Code (Solidity Multiple files format)

File 1 of 4: WalletSimple.sol
// SPDX-License-Identifier: Apache-2.0
pragma solidity 0.7.5;
import './TransferHelper.sol';
import './Forwarder.sol';
import './ERC20Interface.sol';

/**
 *
 * WalletSimple
 * ============
 *
 * 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.
 *
 * The first signature is created on the operation hash (see Data Formats) and passed to sendMultiSig/sendMultiSigToken
 * The signer is determined by verifyMultiSig().
 *
 * The second signature is created by the submitter of the transaction and determined by msg.signer.
 *
 * Data Formats
 * ============
 *
 * The signature is created with ethereumjs-util.ecsign(operationHash).
 * Like the eth_sign RPC call, it packs the values as a 65-byte array of [r, s, v].
 * Unlike eth_sign, the message is not prefixed.
 *
 * The operationHash the result of keccak256(prefix, toAddress, value, data, expireTime).
 * For ether transactions, `prefix` is "ETHER".
 * For token transaction, `prefix` is "ERC20" and `data` is the tokenContractAddress.
 *
 *
 */
contract WalletSimple {
  // Events
  event Deposited(address from, uint256 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 (see Data Formats)
    address toAddress, // The address the transaction was sent to
    uint256 value, // Amount of Wei sent to the address
    bytes data // Data sent when invoking the transaction
  );

  event BatchTransfer(address sender, address recipient, uint256 value);
  // this event shows the other signer and the operation hash that they signed
  // specific batch transfer events are emitted in Batcher
  event BatchTransacted(
    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 (see Data Formats)
  );

  // Public fields
  mapping(address => bool) 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
  bool public initialized = false; // True if the contract has been initialized

  // Internal fields
  uint256 private constant MAX_SEQUENCE_ID_INCREASE = 10000;
  uint256 constant SEQUENCE_ID_WINDOW_SIZE = 10;
  uint256[SEQUENCE_ID_WINDOW_SIZE] recentSequenceIds;

  /**
   * 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 init(address[] calldata allowedSigners) external onlyUninitialized {
    require(allowedSigners.length == 3, 'Invalid number of signers');

    for (uint8 i = 0; i < allowedSigners.length; i++) {
      require(allowedSigners[i] != address(0), 'Invalid signer');
      signers[allowedSigners[i]] = true;
    }
    initialized = true;
  }

  /**
   * Get the network identifier that signers must sign over
   * This provides protection signatures being replayed on other chains
   * This must be a virtual function because chain-specific contracts will need
   *    to override with their own network ids. It also can't be a field
   *    to allow this contract to be used by proxy with delegatecall, which will
   *    not pick up on state variables
   */
  function getNetworkId() internal virtual pure returns (string memory) {
    return 'ETHER';
  }

  /**
   * Get the network identifier that signers must sign over for token transfers
   * This provides protection signatures being replayed on other chains
   * This must be a virtual function because chain-specific contracts will need
   *    to override with their own network ids. It also can't be a field
   *    to allow this contract to be used by proxy with delegatecall, which will
   *    not pick up on state variables
   */
  function getTokenNetworkId() internal virtual pure returns (string memory) {
    return 'ERC20';
  }

  /**
   * Get the network identifier that signers must sign over for batch transfers
   * This provides protection signatures being replayed on other chains
   * This must be a virtual function because chain-specific contracts will need
   *    to override with their own network ids. It also can't be a field
   *    to allow this contract to be used by proxy with delegatecall, which will
   *    not pick up on state variables
   */
  function getBatchNetworkId() internal virtual pure returns (string memory) {
    return 'ETHER-Batch';
  }

  /**
   * 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) public view returns (bool) {
    return signers[signer];
  }

  /**
   * Modifier that will execute internal code block only if the sender is an authorized signer on this wallet
   */
  modifier onlySigner {
    require(isSigner(msg.sender), 'Non-signer in onlySigner method');
    _;
  }

  /**
   * Modifier that will execute internal code block only if the contract has not been initialized yet
   */
  modifier onlyUninitialized {
    require(!initialized, 'Contract already initialized');
    _;
  }

  /**
   * Gets called when a transaction is received with data that does not match any other method
   */
  fallback() external payable {
    if (msg.value > 0) {
      // Fire deposited event if we are receiving funds
      Deposited(msg.sender, msg.value, msg.data);
    }
  }

  /**
   * Gets called when a transaction is received with ether and no data
   */
  receive() external payable {
    if (msg.value > 0) {
      // Fire deposited event if we are receiving funds
      Deposited(msg.sender, msg.value, msg.data);
    }
  }

  /**
   * Execute a multi-signature transaction from this wallet using 2 signers: one from msg.sender and the other from ecrecover.
   * 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 see Data Formats
   */
  function sendMultiSig(
    address toAddress,
    uint256 value,
    bytes calldata data,
    uint256 expireTime,
    uint256 sequenceId,
    bytes calldata signature
  ) external onlySigner {
    // Verify the other signer
    bytes32 operationHash = keccak256(
      abi.encodePacked(
        getNetworkId(),
        toAddress,
        value,
        data,
        expireTime,
        sequenceId
      )
    );

    address otherSigner = verifyMultiSig(
      toAddress,
      operationHash,
      signature,
      expireTime,
      sequenceId
    );

    // Success, send the transaction
    (bool success, ) = toAddress.call{ value: value }(data);
    require(success, 'Call execution failed');

    emit Transacted(
      msg.sender,
      otherSigner,
      operationHash,
      toAddress,
      value,
      data
    );
  }

  /**
   * Execute a batched multi-signature transaction from this wallet using 2 signers: one from msg.sender and the other from ecrecover.
   * Sequence IDs are numbers starting from 1. They are used to prevent replay attacks and may not be repeated.
   * The recipients and values to send are encoded in two arrays, where for index i, recipients[i] will be sent values[i].
   *
   * @param recipients The list of recipients to send to
   * @param values The list of values to send to
   * @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 see Data Formats
   */
  function sendMultiSigBatch(
    address[] calldata recipients,
    uint256[] calldata values,
    uint256 expireTime,
    uint256 sequenceId,
    bytes calldata signature
  ) external onlySigner {
    require(recipients.length != 0, 'Not enough recipients');
    require(
      recipients.length == values.length,
      'Unequal recipients and values'
    );
    require(recipients.length < 256, 'Too many recipients, max 255');

    // Verify the other signer
    bytes32 operationHash = keccak256(
      abi.encodePacked(
        getBatchNetworkId(),
        recipients,
        values,
        expireTime,
        sequenceId
      )
    );

    // the first parameter (toAddress) is used to ensure transactions in safe mode only go to a signer
    // if in safe mode, we should use normal sendMultiSig to recover, so this check will always fail if in safe mode
    require(!safeMode, 'Batch in safe mode');
    address otherSigner = verifyMultiSig(
      address(0x0),
      operationHash,
      signature,
      expireTime,
      sequenceId
    );

    batchTransfer(recipients, values);
    emit BatchTransacted(msg.sender, otherSigner, operationHash);
  }

  /**
   * Transfer funds in a batch to each of recipients
   * @param recipients The list of recipients to send to
   * @param values The list of values to send to recipients.
   *  The recipient with index i in recipients array will be sent values[i].
   *  Thus, recipients and values must be the same length
   */
  function batchTransfer(
    address[] calldata recipients,
    uint256[] calldata values
  ) internal {
    for (uint256 i = 0; i < recipients.length; i++) {
      require(address(this).balance >= values[i], 'Insufficient funds');

      (bool success, ) = recipients[i].call{ value: values[i] }('');
      require(success, 'Call failed');

      emit BatchTransfer(msg.sender, recipients[i], values[i]);
    }
  }

  /**
   * Execute a multi-signature token transfer from this wallet using 2 signers: one from msg.sender and the other from ecrecover.
   * 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 see Data Formats
   */
  function sendMultiSigToken(
    address toAddress,
    uint256 value,
    address tokenContractAddress,
    uint256 expireTime,
    uint256 sequenceId,
    bytes calldata signature
  ) external onlySigner {
    // Verify the other signer
    bytes32 operationHash = keccak256(
      abi.encodePacked(
        getTokenNetworkId(),
        toAddress,
        value,
        tokenContractAddress,
        expireTime,
        sequenceId
      )
    );

    verifyMultiSig(toAddress, operationHash, signature, expireTime, sequenceId);

    TransferHelper.safeTransfer(tokenContractAddress, toAddress, value);
  }

  /**
   * 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 payable forwarderAddress,
    address tokenContractAddress
  ) external 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 see Data Formats
   * @param signature see Data Formats
   * @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 that has created the signature
   */
  function verifyMultiSig(
    address toAddress,
    bytes32 operationHash,
    bytes calldata signature,
    uint256 expireTime,
    uint256 sequenceId
  ) private returns (address) {
    address otherSigner = recoverAddressFromSignature(operationHash, signature);

    // Verify if we are in safe mode. In safe mode, the wallet can only send to signers
    require(!safeMode || isSigner(toAddress), 'External transfer in safe mode');

    // Verify that the transaction has not expired
    require(expireTime >= block.timestamp, 'Transaction expired');

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

    require(isSigner(otherSigner), 'Invalid signer');

    require(otherSigner != msg.sender, 'Signers cannot be equal');

    return otherSigner;
  }

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

  /**
   * Gets signer's address using ecrecover
   * @param operationHash see Data Formats
   * @param signature see Data Formats
   * returns address recovered from the signature
   */
  function recoverAddressFromSignature(
    bytes32 operationHash,
    bytes memory signature
  ) private pure returns (address) {
    require(signature.length == 65, 'Invalid signature - wrong length');

    // We need to unpack the signature, which is given as an array of 65 bytes (like eth.sign)
    bytes32 r;
    bytes32 s;
    uint8 v;

    // solhint-disable-next-line
    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
    }

    // protect against signature malleability
    // S value must be in the lower half orader
    // reference: https://github.com/OpenZeppelin/openzeppelin-contracts/blob/051d340171a93a3d401aaaea46b4b62fa81e5d7c/contracts/cryptography/ECDSA.sol#L53
    require(
      uint256(s) <=
        0x7FFFFFFFFFFFFFFFFFFFFFFFFFFFFFFF5D576E7357A4501DDFE92F46681B20A0,
      "ECDSA: invalid signature 's' value"
    );

    // note that this returns 0 if the signature is invalid
    // Since 0x0 can never be a signer, when the recovered signer address
    // is checked against our signer list, that 0x0 will cause an invalid signer failure
    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(uint256 sequenceId) private onlySigner {
    // Keep a pointer to the lowest value element in the window
    uint256 lowestValueIndex = 0;
    // fetch recentSequenceIds into memory for function context to avoid unnecessary sloads
    uint256[SEQUENCE_ID_WINDOW_SIZE] memory _recentSequenceIds = recentSequenceIds;
    for (uint256 i = 0; i < SEQUENCE_ID_WINDOW_SIZE; i++) {
      require(_recentSequenceIds[i] != sequenceId, 'Sequence ID already used');

      if (_recentSequenceIds[i] < _recentSequenceIds[lowestValueIndex]) {
        lowestValueIndex = i;
      }
    }

    // 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
    require(
      sequenceId > _recentSequenceIds[lowestValueIndex],
      'Sequence ID below window'
    );

    // Block sequence IDs which are much higher than the lowest value
    // This prevents people blocking the contract by using very large sequence IDs quickly
    require(
      sequenceId <=
        (_recentSequenceIds[lowestValueIndex] + MAX_SEQUENCE_ID_INCREASE),
      'Sequence ID above maximum'
    );

    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() public view returns (uint256) {
    uint256 highestSequenceId = 0;
    for (uint256 i = 0; i < SEQUENCE_ID_WINDOW_SIZE; i++) {
      if (recentSequenceIds[i] > highestSequenceId) {
        highestSequenceId = recentSequenceIds[i];
      }
    }
    return highestSequenceId + 1;
  }
}

File 2 of 4: ERC20Interface.sol
// SPDX-License-Identifier: UNLICENSED
pragma solidity 0.7.5;

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

abstract contract ERC20Interface {
  // Send _value amount of tokens to address _to
  function transfer(address _to, uint256 _value)
    public
    virtual
    returns (bool success);

  // Get the account balance of another account with address _owner
  function balanceOf(address _owner)
    public
    virtual
    view
    returns (uint256 balance);
}

File 3 of 4: Forwarder.sol
// SPDX-License-Identifier: Apache-2.0
pragma solidity 0.7.5;
import './TransferHelper.sol';
import './ERC20Interface.sol';

/**
 * Contract that will forward any incoming Ether to the creator of the contract
 *
 */
contract Forwarder {
  // Address to which any funds sent to this contract will be forwarded
  address public parentAddress;
  event ForwarderDeposited(address from, uint256 value, bytes data);

  /**
   * Initialize the contract, and sets the destination address to that of the creator
   */
  function init(address _parentAddress) external onlyUninitialized {
    parentAddress = _parentAddress;
    uint256 value = address(this).balance;

    if (value == 0) {
      return;
    }

    (bool success, ) = parentAddress.call{ value: value }('');
    require(success, 'Flush failed');
    // NOTE: since we are forwarding on initialization,
    // we don't have the context of the original sender.
    // We still emit an event about the forwarding but set
    // the sender to the forwarder itself
    emit ForwarderDeposited(address(this), value, msg.data);
  }

  /**
   * Modifier that will execute internal code block only if the sender is the parent address
   */
  modifier onlyParent {
    require(msg.sender == parentAddress, 'Only Parent');
    _;
  }

  /**
   * Modifier that will execute internal code block only if the contract has not been initialized yet
   */
  modifier onlyUninitialized {
    require(parentAddress == address(0x0), 'Already initialized');
    _;
  }

  /**
   * Default function; Gets called when data is sent but does not match any other function
   */
  fallback() external payable {
    flush();
  }

  /**
   * Default function; Gets called when Ether is deposited with no data, and forwards it to the parent address
   */
  receive() external payable {
    flush();
  }

  /**
   * Execute a token transfer of the full balance from the forwarder token to the parent address
   * @param tokenContractAddress the address of the erc20 token contract
   */
  function flushTokens(address tokenContractAddress) external onlyParent {
    ERC20Interface instance = ERC20Interface(tokenContractAddress);
    address forwarderAddress = address(this);
    uint256 forwarderBalance = instance.balanceOf(forwarderAddress);
    if (forwarderBalance == 0) {
      return;
    }

    TransferHelper.safeTransfer(
      tokenContractAddress,
      parentAddress,
      forwarderBalance
    );
  }

  /**
   * Flush the entire balance of the contract to the parent address.
   */
  function flush() public {
    uint256 value = address(this).balance;

    if (value == 0) {
      return;
    }

    (bool success, ) = parentAddress.call{ value: value }('');
    require(success, 'Flush failed');
    emit ForwarderDeposited(msg.sender, value, msg.data);
  }
}

File 4 of 4: TransferHelper.sol
// SPDX-License-Identifier: Apache-2.0

pragma solidity >=0.7.5;

// helper methods for interacting with ERC20 tokens and sending ETH that do not consistently return true/false
library TransferHelper {
    function safeApprove(
        address token,
        address to,
        uint256 value
    ) internal {
        // bytes4(keccak256(bytes('approve(address,uint256)')));
        (bool success, bytes memory data) = token.call(abi.encodeWithSelector(0x095ea7b3, to, value));
        require(
            success && (data.length == 0 || abi.decode(data, (bool))),
            'TransferHelper::safeApprove: approve failed'
        );
    }

    function safeTransfer(
        address token,
        address to,
        uint256 value
    ) internal {
        // bytes4(keccak256(bytes('transfer(address,uint256)')));
        (bool success, bytes memory data) = token.call(abi.encodeWithSelector(0xa9059cbb, to, value));
        require(
            success && (data.length == 0 || abi.decode(data, (bool))),
            'TransferHelper::safeTransfer: transfer failed'
        );
    }

    function safeTransferFrom(
        address token,
        address from,
        address to,
        uint256 value
    ) internal {
        // bytes4(keccak256(bytes('transferFrom(address,address,uint256)')));
        (bool success, bytes memory data) = token.call(abi.encodeWithSelector(0x23b872dd, from, to, value));
        require(
            success && (data.length == 0 || abi.decode(data, (bool))),
            'TransferHelper::transferFrom: transferFrom failed'
        );
    }

    function safeTransferETH(address to, uint256 value) internal {
        (bool success, ) = to.call{value: value}(new bytes(0));
        require(success, 'TransferHelper::safeTransferETH: ETH transfer failed');
    }
}

Contract ABI

API
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