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0x30173bc4FB2D36C786A3f1aAa923c168a3Af94aC
 

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115168262020-12-24 14:24:041437 days ago1608819844
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110690312020-10-16 20:15:151506 days ago1602879315
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0.00734381 ETH
104288642020-07-10 1:42:261605 days ago1594345346
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103609792020-06-29 13:20:511615 days ago1593436851
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101627862020-05-29 20:20:471646 days ago1590783647
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97363892020-03-24 21:05:321712 days ago1585083932
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96068832020-03-04 20:30:391732 days ago1583353839
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95915712020-03-02 12:08:241734 days ago1583150904
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95868812020-03-01 18:49:511735 days ago1583088591
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94402252020-02-08 5:36:501757 days ago1581140210
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94399102020-02-08 4:24:221757 days ago1581135862
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93768702020-01-29 11:54:501767 days ago1580298890
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93401632020-01-23 20:32:591773 days ago1579811579
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92788502020-01-14 11:09:171782 days ago1579000157
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91922142019-12-31 18:57:311796 days ago1577818651
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91521072019-12-23 19:12:361804 days ago1577128356
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91451352019-12-22 10:01:051805 days ago1577008865
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91318112019-12-19 18:13:191808 days ago1576779199
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90615852019-12-06 17:09:421821 days ago1575652182
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87989422019-10-23 21:00:411865 days ago1571864441
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87595422019-10-17 16:18:571871 days ago1571329137
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86800242019-10-05 4:43:461883 days ago1570250626
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86547432019-10-01 5:52:281887 days ago1569909148
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86545802019-10-01 5:16:101887 days ago1569906970
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86545032019-10-01 4:58:101887 days ago1569905890
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Similar Match Source Code
This contract matches the deployed Bytecode of the Source Code for Contract 0xA46d6689...A10CbBce7
The constructor portion of the code might be different and could alter the actual behaviour of the contract

Contract Name:
TeambrellaWallet

Compiler Version
v0.4.24+commit.e67f0147

Optimization Enabled:
Yes with 200 runs

Other Settings:
default evmVersion
/**
 *Submitted for verification at Etherscan.io on 2018-08-22
*/

pragma solidity ^0.4.24;

interface IRescue {
    function canRescue(address _addr) external returns (bool);
}

contract TeambrellaWallet {
    
    uint public m_opNum;
    uint public m_teamId;
    address public m_owner;
    address[] public m_cosigners;
    address[] public m_cosignersApprovedDisband;    

    address m_rescuer;
    
    modifier orderedOps(uint opNum) {
        require(opNum >= m_opNum);
        _; 
    }

    modifier onlyOwner {
        require(msg.sender == m_owner);
        _; 
    }
    
    function() public payable { }


    // Duplicate Solidity's ecrecover, but catching the CALL return value
    function safer_ecrecover(bytes32 hash, uint8 v, bytes32 r, bytes32 s) internal returns (bool, address) {
        // We do our own memory management here. Solidity uses memory offset
        // 0x40 to store the current end of memory. We write past it (as
        // writes are memory extensions), but don't update the offset so
        // Solidity will reuse it. The memory used here is only needed for
        // this context.

        bool ret;
        address addr;

        assembly {
            let size := mload(0x40)
            mstore(size, hash)
            mstore(add(size, 32), v)
            mstore(add(size, 64), r)
            mstore(add(size, 96), s)

            // NOTE: we can reuse the request memory because we deal with
            //       the return code
            ret := call(3000, 1, 0, size, 128, size, 32)
            addr := mload(size)
        }

        return (ret, addr);
    }

    function ecrecovery(bytes32 hash, bytes sig) private returns (bool, address) {
        bytes32 r;
        bytes32 s;
        uint8 v;

        // The signature format is a compact form of:
        //   {bytes32 r}{bytes32 s}{uint8 v}
        // Compact means, uint8 is not padded to 32 bytes.
        assembly {
            r := mload(add(sig, 32))
            s := mload(add(sig, 64))

            // Here we are loading the last 32 bytes. We exploit the fact that
            // 'mload' will pad with zeroes if we overread.
            // There is no 'mload8' to do this, but that would be nicer.
            v := byte(0, mload(add(sig, 96)))

            // Alternative solution:
            // 'byte' is not working due to the Solidity parser, so lets
            // use the second best option, 'and'
            // v := and(mload(add(sig, 65)), 255)
        }

        return safer_ecrecover(hash, v, r, s);
    }

    function ecverify(bytes32 hash, bytes sig, address signer) private returns (bool) {
        bool ret;
        address addr;

        (ret, addr) = ecrecovery(hash, sig);

        return ret == true && addr == signer;
    }

    function checkSignatures(
        bytes32 hash,
        uint[3] cosignersPos,
        bytes sigCosigner0,
        bytes sigCosigner1,
        bytes sigCosigner2
        ) private returns(bool) {

        uint cosignersNum = m_cosigners.length;
        bool signed = ecverify(hash, sigCosigner0, m_cosigners[cosignersPos[0]]);
        if (cosignersNum > 3) {
            signed = signed && ecverify(hash, sigCosigner1, m_cosigners[cosignersPos[1]]);
        }
        if (cosignersNum > 6) {
            signed = signed && ecverify(hash, sigCosigner2, m_cosigners[cosignersPos[2]]);
        }

        return signed;
    }
    
    function checkSignatures2(
        bytes32 hash,
        bytes sigCosigner0,
        bytes sigCosigner1,
        bytes sigCosigner2
        ) private returns(bool) {

        uint cosignersNum = m_cosigners.length;
        uint pos = uint(sigCosigner0[65]);
        bool signed = ecverify(hash, sigCosigner0, m_cosigners[pos]);
        if (cosignersNum > 3) {
            pos = uint(sigCosigner1[65]);
            signed = signed && ecverify(hash, sigCosigner1, m_cosigners[pos]);
        }
        if (cosignersNum > 6) {
            pos = uint(sigCosigner2[65]);
            signed = signed && ecverify(hash, sigCosigner2, m_cosigners[pos]);
        }
        return signed;
    }

    function toBytes(uint256[] x) private pure returns (bytes b) {
        b = new bytes(32 * x.length);
        for (uint j = 0; j < x.length; j++) {
            for (uint i = 0; i < 32; i++) {
                b[j*32 + i] = byte(uint8(x[j] / (2**(8*(31 - i))))); 
            }
        }
    }

    function toBytes(address[] x) private pure returns (bytes b) {

        b = new bytes(20 * x.length);
        for (uint j = 0; j < x.length; j++) {
            for (uint i = 0; i < 20; i++) {
                b[j*20 + i] = byte(uint8(uint160(x[j]) / (2**(8*(19 - i))))); 
            }
        }
    }

    constructor() public payable {
        m_opNum = 1;
		m_owner = msg.sender;
		m_rescuer = 0x127c4605cFe96C4649A58ff6db7B216440C9EFa2; // mainnet
    }
    
     function assignOwner(address[] cosigners, uint teamId, address newOwner) onlyOwner external {
		if (m_cosigners.length == 0)
		{
			m_cosigners = cosigners;
			m_teamId = teamId;
			m_owner = newOwner;
		}
    }
       
    function changeAllCosigners(
        uint opNum,
        address[] newCosigners,
        uint[3] cosignersPos,
        bytes sigCosigner0, 
        bytes sigCosigner1,
        bytes sigCosigner2 
        ) onlyOwner orderedOps(opNum) external {

        bytes32 hash = keccak256("NS", m_teamId, opNum, toBytes(newCosigners));
        require(checkSignatures(hash, cosignersPos, sigCosigner0, sigCosigner1, sigCosigner2));
        m_opNum = opNum + 1;
        m_cosignersApprovedDisband.length = 0;
        m_cosigners = newCosigners;
    }

    function changeAllCosigners2(
        uint opNum,
        address[] newCosigners,
        bytes sigCosigner0, 
        bytes sigCosigner1,
        bytes sigCosigner2,
        bytes sigOwner 
        ) orderedOps(opNum) external {

        bytes32 hash = keccak256("NS", m_teamId, opNum, toBytes(newCosigners));
        require(checkSignatures2(hash, sigCosigner0, sigCosigner1, sigCosigner2));
        require(ecverify(hash, sigOwner, m_owner));
        m_opNum = opNum + 1;
        m_cosignersApprovedDisband.length = 0;
        m_cosigners = newCosigners;
    }
        
    function getsum(uint[] values) private pure returns (uint s) {
        s = 0;

        for (uint j = 0; j < values.length; j++) {
            s += values[j];
        }

        return s;    
    }
        
    function transfer(
        uint opNum,
        address[] tos, 
        uint[] values,
        uint[3] cosignersPos,
        bytes sigCosigner0, 
        bytes sigCosigner1, 
        bytes sigCosigner2
        ) onlyOwner orderedOps(opNum) external {

        require (getsum(values) <= address(this).balance);
        bytes32 hash = keccak256("TR", m_teamId, opNum, toBytes(tos), toBytes(values));
        require (checkSignatures(hash, cosignersPos, sigCosigner0, sigCosigner1, sigCosigner2));
        m_opNum = opNum + 1;
        realtransfer(tos, values);
    }

    function transfer2(
        uint opNum,
        address[] tos, 
        uint[] values,
        bytes sigCosigner0,
        bytes sigCosigner1,
        bytes sigCosigner2,
        bytes sigOwner
        ) external {
        require(opNum >= m_opNum);
        require (getsum(values) <= address(this).balance);
        bytes32 hash = keccak256("TR", m_teamId, opNum, toBytes(tos), toBytes(values));
        require(checkSignatures2(hash, sigCosigner0, sigCosigner1, sigCosigner2));
        require(ecverify(hash, sigOwner, m_owner));
        m_opNum = opNum + 1;
        realtransfer(tos, values);
    }    

    function realtransfer(address[] tos, uint[] values) private {

        for (uint i = 0; i < values.length; i++) {
            tos[i].transfer(values[i]);
        }
    }

    function approveDisband() external {

        for (uint pos=0; pos<m_cosignersApprovedDisband.length; pos++) {
            if (m_cosignersApprovedDisband[pos] == msg.sender) {
                return;
            }
        }
        for (pos=0; pos<m_cosigners.length; pos++) {
            if (m_cosigners[pos] == msg.sender) {
                m_cosignersApprovedDisband.push(msg.sender);
            }
        }
    }

    function disbandTo(address to) onlyOwner external {

        uint cosignersNum = m_cosigners.length;
        uint approved = m_cosignersApprovedDisband.length;
        if (cosignersNum > 6) {
            require(approved > 2);
        }
        if (cosignersNum > 3) {
            require(approved > 1);
        }
        require(approved > 0);

        to.transfer(address(this).balance);
    }
    
    function rescue(
        address _to 
        ) onlyOwner external {

        IRescue rescuer = IRescue(m_rescuer);
        require(rescuer.canRescue(msg.sender));
        
        _to.transfer(address(this).balance);
    }
}

Contract Security Audit

Contract ABI

[{"constant":true,"inputs":[{"name":"","type":"uint256"}],"name":"m_cosignersApprovedDisband","outputs":[{"name":"","type":"address"}],"payable":false,"stateMutability":"view","type":"function"},{"constant":false,"inputs":[{"name":"opNum","type":"uint256"},{"name":"newCosigners","type":"address[]"},{"name":"sigCosigner0","type":"bytes"},{"name":"sigCosigner1","type":"bytes"},{"name":"sigCosigner2","type":"bytes"},{"name":"sigOwner","type":"bytes"}],"name":"changeAllCosigners2","outputs":[],"payable":false,"stateMutability":"nonpayable","type":"function"},{"constant":true,"inputs":[{"name":"","type":"uint256"}],"name":"m_cosigners","outputs":[{"name":"","type":"address"}],"payable":false,"stateMutability":"view","type":"function"},{"constant":false,"inputs":[],"name":"approveDisband","outputs":[],"payable":false,"stateMutability":"nonpayable","type":"function"},{"constant":false,"inputs":[{"name":"_to","type":"address"}],"name":"rescue","outputs":[],"payable":false,"stateMutability":"nonpayable","type":"function"},{"constant":true,"inputs":[],"name":"m_teamId","outputs":[{"name":"","type":"uint256"}],"payable":false,"stateMutability":"view","type":"function"},{"constant":false,"inputs":[{"name":"opNum","type":"uint256"},{"name":"tos","type":"address[]"},{"name":"values","type":"uint256[]"},{"name":"sigCosigner0","type":"bytes"},{"name":"sigCosigner1","type":"bytes"},{"name":"sigCosigner2","type":"bytes"},{"name":"sigOwner","type":"bytes"}],"name":"transfer2","outputs":[],"payable":false,"stateMutability":"nonpayable","type":"function"},{"constant":false,"inputs":[{"name":"opNum","type":"uint256"},{"name":"tos","type":"address[]"},{"name":"values","type":"uint256[]"},{"name":"cosignersPos","type":"uint256[3]"},{"name":"sigCosigner0","type":"bytes"},{"name":"sigCosigner1","type":"bytes"},{"name":"sigCosigner2","type":"bytes"}],"name":"transfer","outputs":[],"payable":false,"stateMutability":"nonpayable","type":"function"},{"constant":false,"inputs":[{"name":"opNum","type":"uint256"},{"name":"newCosigners","type":"address[]"},{"name":"cosignersPos","type":"uint256[3]"},{"name":"sigCosigner0","type":"bytes"},{"name":"sigCosigner1","type":"bytes"},{"name":"sigCosigner2","type":"bytes"}],"name":"changeAllCosigners","outputs":[],"payable":false,"stateMutability":"nonpayable","type":"function"},{"constant":false,"inputs":[{"name":"to","type":"address"}],"name":"disbandTo","outputs":[],"payable":false,"stateMutability":"nonpayable","type":"function"},{"constant":false,"inputs":[{"name":"cosigners","type":"address[]"},{"name":"teamId","type":"uint256"},{"name":"newOwner","type":"address"}],"name":"assignOwner","outputs":[],"payable":false,"stateMutability":"nonpayable","type":"function"},{"constant":true,"inputs":[],"name":"m_owner","outputs":[{"name":"","type":"address"}],"payable":false,"stateMutability":"view","type":"function"},{"constant":true,"inputs":[],"name":"m_opNum","outputs":[{"name":"","type":"uint256"}],"payable":false,"stateMutability":"view","type":"function"},{"inputs":[],"payable":true,"stateMutability":"payable","type":"constructor"},{"payable":true,"stateMutability":"payable","type":"fallback"}]

Deployed Bytecode

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bzzr://6e4e4e3318778c8638fd37f03a5de2b524b8873f0bcaaf9585dfa57ff4cabbe3

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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.