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Contract

0xD95a6aa3e20397211E487b231211e16790A21Ac9
 

Multichain Info

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Transaction Hash
Method
Block
From
To
Transfer59495952018-07-12 7:56:322422 days ago1531382192IN
0xD95a6aa3...790A21Ac9
1 wei0.0002924713
Execute59495222018-07-12 7:38:352422 days ago1531381115IN
0xD95a6aa3...790A21Ac9
1 wei0.0003001512
Execute59486502018-07-12 4:08:402422 days ago1531368520IN
0xD95a6aa3...790A21Ac9
0 ETH0.0002500710
Execute59425952018-07-11 3:43:492423 days ago1531280629IN
0xD95a6aa3...790A21Ac9
1 wei0.000151616
Execute59414682018-07-10 22:59:102423 days ago1531263550IN
0xD95a6aa3...790A21Ac9
1 wei0.00012735
Execute59414182018-07-10 22:47:262423 days ago1531262846IN
0xD95a6aa3...790A21Ac9
1 wei0.00014485.6875
Execute59414162018-07-10 22:46:192423 days ago1531262779IN
0xD95a6aa3...790A21Ac9
0 ETH0.000125035
Execute59413952018-07-10 22:39:042423 days ago1531262344IN
0xD95a6aa3...790A21Ac9
0 ETH0.000125035
Init Wallet55155862018-04-27 15:48:042497 days ago1524844084IN
0xD95a6aa3...790A21Ac9
0 ETH0.000104644.00999999
Init Wallet55155382018-04-27 15:35:562497 days ago1524843356IN
0xD95a6aa3...790A21Ac9
0 ETH0.000106174
Execute45077302017-11-07 13:46:372668 days ago1510062397IN
0xD95a6aa3...790A21Ac9
0 ETH0.000099494
Execute45029782017-11-06 19:21:432669 days ago1509996103IN
0xD95a6aa3...790A21Ac9
0 ETH0.000123725
Execute45028772017-11-06 18:59:142669 days ago1509994754IN
0xD95a6aa3...790A21Ac9
0 ETH0.000024741
Execute45028732017-11-06 18:58:192669 days ago1509994699IN
0xD95a6aa3...790A21Ac9
0 ETH0.000002480.1
Execute45021402017-11-06 16:04:442669 days ago1509984284IN
0xD95a6aa3...790A21Ac9
0 ETH0.0002500710
Confirm44879992017-11-04 9:43:012671 days ago1509788581IN
0xD95a6aa3...790A21Ac9
0 ETH0.00015414
Execute44878072017-11-04 8:58:372672 days ago1509785917IN
0xD95a6aa3...790A21Ac9
0 ETH0.000747014
Confirm44699362017-11-01 11:21:302674 days ago1509535290IN
0xD95a6aa3...790A21Ac9
0 ETH0.0004623112
Confirm44699352017-11-01 11:20:162674 days ago1509535216IN
0xD95a6aa3...790A21Ac9
0 ETH0.0004623112
Confirm44699342017-11-01 11:20:012674 days ago1509535201IN
0xD95a6aa3...790A21Ac9
0 ETH0.0004623112
Confirm44699342017-11-01 11:20:012674 days ago1509535201IN
0xD95a6aa3...790A21Ac9
0 ETH0.0004619212
Confirm44699332017-11-01 11:19:512674 days ago1509535191IN
0xD95a6aa3...790A21Ac9
0 ETH0.0004623112
Confirm44699022017-11-01 11:13:112674 days ago1509534791IN
0xD95a6aa3...790A21Ac9
0 ETH0.0004623112
Confirm44699012017-11-01 11:13:052674 days ago1509534785IN
0xD95a6aa3...790A21Ac9
0 ETH0.0004619212
Confirm44699002017-11-01 11:12:282674 days ago1509534748IN
0xD95a6aa3...790A21Ac9
0 ETH0.0004623112
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Latest 25 internal transactions (View All)

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From
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44879992017-11-04 9:43:012671 days ago1509788581
0xD95a6aa3...790A21Ac9
4.49371 ETH
44699362017-11-01 11:21:302674 days ago1509535290
0xD95a6aa3...790A21Ac9
2.01 ETH
44699352017-11-01 11:20:162674 days ago1509535216
0xD95a6aa3...790A21Ac9
9.6315 ETH
44699342017-11-01 11:20:012674 days ago1509535201
0xD95a6aa3...790A21Ac9
16.75 ETH
44699342017-11-01 11:20:012674 days ago1509535201
0xD95a6aa3...790A21Ac9
4.02 ETH
44699332017-11-01 11:19:512674 days ago1509535191
0xD95a6aa3...790A21Ac9
4.745 ETH
44699022017-11-01 11:13:112674 days ago1509534791
0xD95a6aa3...790A21Ac9
4.02 ETH
44699012017-11-01 11:13:052674 days ago1509534785
0xD95a6aa3...790A21Ac9
10.888 ETH
44699002017-11-01 11:12:282674 days ago1509534748
0xD95a6aa3...790A21Ac9
16.75 ETH
44698922017-11-01 11:11:182674 days ago1509534678
0xD95a6aa3...790A21Ac9
6.5 ETH
44698882017-11-01 11:10:292674 days ago1509534629
0xD95a6aa3...790A21Ac9
12 ETH
44273662017-10-25 14:32:332681 days ago1508941953
0xD95a6aa3...790A21Ac9
3.82653 ETH
44273482017-10-25 14:29:202681 days ago1508941760
0xD95a6aa3...790A21Ac9
0.17007 ETH
44030262017-10-21 16:58:272685 days ago1508605107
0xD95a6aa3...790A21Ac9
4.71006004 ETH
44030262017-10-21 16:58:272685 days ago1508605107
0xD95a6aa3...790A21Ac9
4.38312 ETH
43943602017-10-20 7:38:192687 days ago1508485099
0xD95a6aa3...790A21Ac9
15.67398 ETH
43781852017-10-17 17:09:362689 days ago1508260176
0xD95a6aa3...790A21Ac9
10.18809 ETH
43781842017-10-17 17:08:452689 days ago1508260125
0xD95a6aa3...790A21Ac9
4.44044 ETH
43781822017-10-17 17:08:262689 days ago1508260106
0xD95a6aa3...790A21Ac9
3.76176 ETH
43781802017-10-17 17:08:042689 days ago1508260084
0xD95a6aa3...790A21Ac9
1.88088 ETH
43781772017-10-17 17:07:302689 days ago1508260050
0xD95a6aa3...790A21Ac9
15.67398 ETH
43781772017-10-17 17:07:302689 days ago1508260050
0xD95a6aa3...790A21Ac9
6.07367 ETH
43781762017-10-17 17:06:572689 days ago1508260017
0xD95a6aa3...790A21Ac9
9.01254 ETH
43781732017-10-17 17:06:002689 days ago1508259960
0xD95a6aa3...790A21Ac9
3.76176 ETH
43780902017-10-17 16:45:462689 days ago1508258746
0xD95a6aa3...790A21Ac9
0.2 ETH
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Similar Match Source Code
This contract matches the deployed Bytecode of the Source Code for Contract 0xC16ba0Bf...8E2E59471
The constructor portion of the code might be different and could alter the actual behaviour of the contract

Contract Name:
Wallet

Compiler Version
v0.4.10+commit.f0d539ae

Optimization Enabled:
Yes with 200 runs

Other Settings:
default evmVersion

Contract Source Code (Solidity)

/**
 *Submitted for verification at Etherscan.io on 2017-07-20
*/

//sol Wallet
// Multi-sig, daily-limited account proxy/wallet.
// @authors:
// Gav Wood <[email protected]>
// inheritable "property" contract that enables methods to be protected by requiring the acquiescence of either a
// single, or, crucially, each of a number of, designated owners.
// usage:
// use modifiers onlyowner (just own owned) or onlymanyowners(hash), whereby the same hash must be provided by
// some number (specified in constructor) of the set of owners (specified in the constructor, modifiable) before the
// interior is executed.

pragma solidity ^0.4.9;

contract WalletEvents {
  // EVENTS

  // this contract only has six types of events: it can accept a confirmation, in which case
  // we record owner and operation (hash) alongside it.
  event Confirmation(address owner, bytes32 operation);
  event Revoke(address owner, bytes32 operation);

  // some others are in the case of an owner changing.
  event OwnerChanged(address oldOwner, address newOwner);
  event OwnerAdded(address newOwner);
  event OwnerRemoved(address oldOwner);

  // the last one is emitted if the required signatures change
  event RequirementChanged(uint newRequirement);

  // Funds has arrived into the wallet (record how much).
  event Deposit(address _from, uint value);
  // Single transaction going out of the wallet (record who signed for it, how much, and to whom it's going).
  event SingleTransact(address owner, uint value, address to, bytes data, address created);
  // Multi-sig transaction going out of the wallet (record who signed for it last, the operation hash, how much, and to whom it's going).
  event MultiTransact(address owner, bytes32 operation, uint value, address to, bytes data, address created);
  // Confirmation still needed for a transaction.
  event ConfirmationNeeded(bytes32 operation, address initiator, uint value, address to, bytes data);
}

contract WalletAbi {
  // Revokes a prior confirmation of the given operation
  function revoke(bytes32 _operation) external;

  // Replaces an owner `_from` with another `_to`.
  function changeOwner(address _from, address _to) external;

  function addOwner(address _owner) external;

  function removeOwner(address _owner) external;

  function changeRequirement(uint _newRequired) external;

  function isOwner(address _addr) constant returns (bool);

  function hasConfirmed(bytes32 _operation, address _owner) external constant returns (bool);

  // (re)sets the daily limit. needs many of the owners to confirm. doesn't alter the amount already spent today.
  function setDailyLimit(uint _newLimit) external;

  function execute(address _to, uint _value, bytes _data) external returns (bytes32 o_hash);
  function confirm(bytes32 _h) returns (bool o_success);
}

contract WalletLibrary is WalletEvents {
  // TYPES

  // struct for the status of a pending operation.
  struct PendingState {
    uint yetNeeded;
    uint ownersDone;
    uint index;
  }

  // Transaction structure to remember details of transaction lest it need be saved for a later call.
  struct Transaction {
    address to;
    uint value;
    bytes data;
  }

  // MODIFIERS

  // simple single-sig function modifier.
  modifier onlyowner {
    if (isOwner(msg.sender))
      _;
  }
  // multi-sig function modifier: the operation must have an intrinsic hash in order
  // that later attempts can be realised as the same underlying operation and
  // thus count as confirmations.
  modifier onlymanyowners(bytes32 _operation) {
    if (confirmAndCheck(_operation))
      _;
  }

  // METHODS

  // gets called when no other function matches
  function() payable {
    // just being sent some cash?
    if (msg.value > 0)
      Deposit(msg.sender, msg.value);
  }

  // constructor is given number of sigs required to do protected "onlymanyowners" transactions
  // as well as the selection of addresses capable of confirming them.
  function initMultiowned(address[] _owners, uint _required) only_uninitialized {
    m_numOwners = _owners.length + 1;
    m_owners[1] = uint(msg.sender);
    m_ownerIndex[uint(msg.sender)] = 1;
    for (uint i = 0; i < _owners.length; ++i)
    {
      m_owners[2 + i] = uint(_owners[i]);
      m_ownerIndex[uint(_owners[i])] = 2 + i;
    }
    m_required = _required;
  }

  // Revokes a prior confirmation of the given operation
  function revoke(bytes32 _operation) external {
    uint ownerIndex = m_ownerIndex[uint(msg.sender)];
    // make sure they're an owner
    if (ownerIndex == 0) return;
    uint ownerIndexBit = 2**ownerIndex;
    var pending = m_pending[_operation];
    if (pending.ownersDone & ownerIndexBit > 0) {
      pending.yetNeeded++;
      pending.ownersDone -= ownerIndexBit;
      Revoke(msg.sender, _operation);
    }
  }

  // Replaces an owner `_from` with another `_to`.
  function changeOwner(address _from, address _to) onlymanyowners(sha3(msg.data)) external {
    if (isOwner(_to)) return;
    uint ownerIndex = m_ownerIndex[uint(_from)];
    if (ownerIndex == 0) return;

    clearPending();
    m_owners[ownerIndex] = uint(_to);
    m_ownerIndex[uint(_from)] = 0;
    m_ownerIndex[uint(_to)] = ownerIndex;
    OwnerChanged(_from, _to);
  }

  function addOwner(address _owner) onlymanyowners(sha3(msg.data)) external {
    if (isOwner(_owner)) return;

    clearPending();
    if (m_numOwners >= c_maxOwners)
      reorganizeOwners();
    if (m_numOwners >= c_maxOwners)
      return;
    m_numOwners++;
    m_owners[m_numOwners] = uint(_owner);
    m_ownerIndex[uint(_owner)] = m_numOwners;
    OwnerAdded(_owner);
  }

  function removeOwner(address _owner) onlymanyowners(sha3(msg.data)) external {
    uint ownerIndex = m_ownerIndex[uint(_owner)];
    if (ownerIndex == 0) return;
    if (m_required > m_numOwners - 1) return;

    m_owners[ownerIndex] = 0;
    m_ownerIndex[uint(_owner)] = 0;
    clearPending();
    reorganizeOwners(); //make sure m_numOwner is equal to the number of owners and always points to the optimal free slot
    OwnerRemoved(_owner);
  }

  function changeRequirement(uint _newRequired) onlymanyowners(sha3(msg.data)) external {
    if (_newRequired > m_numOwners) return;
    m_required = _newRequired;
    clearPending();
    RequirementChanged(_newRequired);
  }

  // Gets an owner by 0-indexed position (using numOwners as the count)
  function getOwner(uint ownerIndex) external constant returns (address) {
    return address(m_owners[ownerIndex + 1]);
  }

  function isOwner(address _addr) constant returns (bool) {
    return m_ownerIndex[uint(_addr)] > 0;
  }

  function hasConfirmed(bytes32 _operation, address _owner) external constant returns (bool) {
    var pending = m_pending[_operation];
    uint ownerIndex = m_ownerIndex[uint(_owner)];

    // make sure they're an owner
    if (ownerIndex == 0) return false;

    // determine the bit to set for this owner.
    uint ownerIndexBit = 2**ownerIndex;
    return !(pending.ownersDone & ownerIndexBit == 0);
  }

  // constructor - stores initial daily limit and records the present day's index.
  function initDaylimit(uint _limit) only_uninitialized {
    m_dailyLimit = _limit;
    m_lastDay = today();
  }
  // (re)sets the daily limit. needs many of the owners to confirm. doesn't alter the amount already spent today.
  function setDailyLimit(uint _newLimit) onlymanyowners(sha3(msg.data)) external {
    m_dailyLimit = _newLimit;
  }
  // resets the amount already spent today. needs many of the owners to confirm.
  function resetSpentToday() onlymanyowners(sha3(msg.data)) external {
    m_spentToday = 0;
  }

  // throw unless the contract is not yet initialized.
  modifier only_uninitialized { if (m_numOwners > 0) throw; _; }

  // constructor - just pass on the owner array to the multiowned and
  // the limit to daylimit
  function initWallet(address[] _owners, uint _required, uint _daylimit) only_uninitialized {
    initDaylimit(_daylimit);
    initMultiowned(_owners, _required);
  }

  // kills the contract sending everything to `_to`.
  function kill(address _to) onlymanyowners(sha3(msg.data)) external {
    suicide(_to);
  }

  // Outside-visible transact entry point. Executes transaction immediately if below daily spend limit.
  // If not, goes into multisig process. We provide a hash on return to allow the sender to provide
  // shortcuts for the other confirmations (allowing them to avoid replicating the _to, _value
  // and _data arguments). They still get the option of using them if they want, anyways.
  function execute(address _to, uint _value, bytes _data) external onlyowner returns (bytes32 o_hash) {
    // first, take the opportunity to check that we're under the daily limit.
    if ((_data.length == 0 && underLimit(_value)) || m_required == 1) {
      // yes - just execute the call.
      address created;
      if (_to == 0) {
        created = create(_value, _data);
      } else {
        if (!_to.call.value(_value)(_data))
          throw;
      }
      SingleTransact(msg.sender, _value, _to, _data, created);
    } else {
      // determine our operation hash.
      o_hash = sha3(msg.data, block.number);
      // store if it's new
      if (m_txs[o_hash].to == 0 && m_txs[o_hash].value == 0 && m_txs[o_hash].data.length == 0) {
        m_txs[o_hash].to = _to;
        m_txs[o_hash].value = _value;
        m_txs[o_hash].data = _data;
      }
      if (!confirm(o_hash)) {
        ConfirmationNeeded(o_hash, msg.sender, _value, _to, _data);
      }
    }
  }

  function create(uint _value, bytes _code) internal returns (address o_addr) {
    assembly {
      o_addr := create(_value, add(_code, 0x20), mload(_code))
      jumpi(invalidJumpLabel, iszero(extcodesize(o_addr)))
    }
  }

  // confirm a transaction through just the hash. we use the previous transactions map, m_txs, in order
  // to determine the body of the transaction from the hash provided.
  function confirm(bytes32 _h) onlymanyowners(_h) returns (bool o_success) {
    if (m_txs[_h].to != 0 || m_txs[_h].value != 0 || m_txs[_h].data.length != 0) {
      address created;
      if (m_txs[_h].to == 0) {
        created = create(m_txs[_h].value, m_txs[_h].data);
      } else {
        if (!m_txs[_h].to.call.value(m_txs[_h].value)(m_txs[_h].data))
          throw;
      }

      MultiTransact(msg.sender, _h, m_txs[_h].value, m_txs[_h].to, m_txs[_h].data, created);
      delete m_txs[_h];
      return true;
    }
  }

  // INTERNAL METHODS

  function confirmAndCheck(bytes32 _operation) internal returns (bool) {
    // determine what index the present sender is:
    uint ownerIndex = m_ownerIndex[uint(msg.sender)];
    // make sure they're an owner
    if (ownerIndex == 0) return;

    var pending = m_pending[_operation];
    // if we're not yet working on this operation, switch over and reset the confirmation status.
    if (pending.yetNeeded == 0) {
      // reset count of confirmations needed.
      pending.yetNeeded = m_required;
      // reset which owners have confirmed (none) - set our bitmap to 0.
      pending.ownersDone = 0;
      pending.index = m_pendingIndex.length++;
      m_pendingIndex[pending.index] = _operation;
    }
    // determine the bit to set for this owner.
    uint ownerIndexBit = 2**ownerIndex;
    // make sure we (the message sender) haven't confirmed this operation previously.
    if (pending.ownersDone & ownerIndexBit == 0) {
      Confirmation(msg.sender, _operation);
      // ok - check if count is enough to go ahead.
      if (pending.yetNeeded <= 1) {
        // enough confirmations: reset and run interior.
        delete m_pendingIndex[m_pending[_operation].index];
        delete m_pending[_operation];
        return true;
      }
      else
      {
        // not enough: record that this owner in particular confirmed.
        pending.yetNeeded--;
        pending.ownersDone |= ownerIndexBit;
      }
    }
  }

  function reorganizeOwners() private {
    uint free = 1;
    while (free < m_numOwners)
    {
      while (free < m_numOwners && m_owners[free] != 0) free++;
      while (m_numOwners > 1 && m_owners[m_numOwners] == 0) m_numOwners--;
      if (free < m_numOwners && m_owners[m_numOwners] != 0 && m_owners[free] == 0)
      {
        m_owners[free] = m_owners[m_numOwners];
        m_ownerIndex[m_owners[free]] = free;
        m_owners[m_numOwners] = 0;
      }
    }
  }

  // checks to see if there is at least `_value` left from the daily limit today. if there is, subtracts it and
  // returns true. otherwise just returns false.
  function underLimit(uint _value) internal onlyowner returns (bool) {
    // reset the spend limit if we're on a different day to last time.
    if (today() > m_lastDay) {
      m_spentToday = 0;
      m_lastDay = today();
    }
    // check to see if there's enough left - if so, subtract and return true.
    // overflow protection                    // dailyLimit check
    if (m_spentToday + _value >= m_spentToday && m_spentToday + _value <= m_dailyLimit) {
      m_spentToday += _value;
      return true;
    }
    return false;
  }

  // determines today's index.
  function today() private constant returns (uint) { return now / 1 days; }

  function clearPending() internal {
    uint length = m_pendingIndex.length;

    for (uint i = 0; i < length; ++i) {
      delete m_txs[m_pendingIndex[i]];

      if (m_pendingIndex[i] != 0)
        delete m_pending[m_pendingIndex[i]];
    }

    delete m_pendingIndex;
  }

  // FIELDS
  address constant _walletLibrary = 0xcafecafecafecafecafecafecafecafecafecafe;

  // the number of owners that must confirm the same operation before it is run.
  uint public m_required;
  // pointer used to find a free slot in m_owners
  uint public m_numOwners;

  uint public m_dailyLimit;
  uint public m_spentToday;
  uint public m_lastDay;

  // list of owners
  uint[256] m_owners;

  uint constant c_maxOwners = 250;
  // index on the list of owners to allow reverse lookup
  mapping(uint => uint) m_ownerIndex;
  // the ongoing operations.
  mapping(bytes32 => PendingState) m_pending;
  bytes32[] m_pendingIndex;

  // pending transactions we have at present.
  mapping (bytes32 => Transaction) m_txs;
}

contract Wallet is WalletEvents {

  // WALLET CONSTRUCTOR
  //   calls the `initWallet` method of the Library in this context
  function Wallet(address[] _owners, uint _required, uint _daylimit) {
    // Signature of the Wallet Library's init function
    bytes4 sig = bytes4(sha3("initWallet(address[],uint256,uint256)"));
    address target = _walletLibrary;

    // Compute the size of the call data : arrays has 2
    // 32bytes for offset and length, plus 32bytes per element ;
    // plus 2 32bytes for each uint
    uint argarraysize = (2 + _owners.length);
    uint argsize = (2 + argarraysize) * 32;

    assembly {
      // Add the signature first to memory
      mstore(0x0, sig)
      // Add the call data, which is at the end of the
      // code
      codecopy(0x4,  sub(codesize, argsize), argsize)
      // Delegate call to the library
      delegatecall(sub(gas, 10000), target, 0x0, add(argsize, 0x4), 0x0, 0x0)
    }
  }

  // METHODS

  // gets called when no other function matches
  function() payable {
    // just being sent some cash?
    if (msg.value > 0)
      Deposit(msg.sender, msg.value);
    else if (msg.data.length > 0)
      _walletLibrary.delegatecall(msg.data);
  }

  // Gets an owner by 0-indexed position (using numOwners as the count)
  function getOwner(uint ownerIndex) constant returns (address) {
    return address(m_owners[ownerIndex + 1]);
  }

  // As return statement unavailable in fallback, explicit the method here

  function hasConfirmed(bytes32 _operation, address _owner) external constant returns (bool) {
    return _walletLibrary.delegatecall(msg.data);
  }

  function isOwner(address _addr) constant returns (bool) {
    return _walletLibrary.delegatecall(msg.data);
  }

  // FIELDS
  address constant _walletLibrary = 0x863df6bfa4469f3ead0be8f9f2aae51c91a907b4;

  // the number of owners that must confirm the same operation before it is run.
  uint public m_required;
  // pointer used to find a free slot in m_owners
  uint public m_numOwners;

  uint public m_dailyLimit;
  uint public m_spentToday;
  uint public m_lastDay;

  // list of owners
  uint[256] m_owners;
}

Contract Security Audit

Contract ABI

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Deployed Bytecode

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Swarm Source

bzzr://c20a8475c42598c198f6629bada37e1b234da85ac2c0cbac3d96089030b18040

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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.