ETH Price: $3,521.74 (+1.00%)
Gas: 2 Gwei

Contract

0xFB6BD0C00Bd348125A1F6eDc36e4B7ff5DbdDFBa
 

Overview

ETH Balance

0 ETH

Eth Value

$0.00

Multichain Info

1 address found via
Transaction Hash
Method
Block
From
To
Multi Send203105392024-07-15 7:52:115 days ago1721029931IN
0xFB6BD0C0...f5DbdDFBa
0 ETH0.000339265.06175144
Multi Send202417722024-07-05 17:23:1115 days ago1720200191IN
0xFB6BD0C0...f5DbdDFBa
0 ETH0.00062626.25929796
Multi Send202177132024-07-02 8:43:3518 days ago1719909815IN
0xFB6BD0C0...f5DbdDFBa
0 ETH0.029740632.89374057
Multi Send201680582024-06-25 10:19:4725 days ago1719310787IN
0xFB6BD0C0...f5DbdDFBa
0 ETH0.005940634.65181308
Multi Send201661472024-06-25 3:55:2325 days ago1719287723IN
0xFB6BD0C0...f5DbdDFBa
0.144 ETH0.001166254.0309763
Multi Send200692522024-06-11 14:42:1139 days ago1718116931IN
0xFB6BD0C0...f5DbdDFBa
0 ETH0.0005631122.52445215
Multi Send200538172024-06-09 10:57:3541 days ago1717930655IN
0xFB6BD0C0...f5DbdDFBa
0.0055 ETH0.000617693.80825141
Multi Send199950062024-06-01 5:53:3549 days ago1717221215IN
0xFB6BD0C0...f5DbdDFBa
0.096 ETH0.016886184.59440276
Multi Send199015732024-05-19 4:22:3562 days ago1716092555IN
0xFB6BD0C0...f5DbdDFBa
0.0002 ETH0.00015733.45705841
Multi Send198980222024-05-18 16:28:5963 days ago1716049739IN
0xFB6BD0C0...f5DbdDFBa
0.004824 ETH0.000619513.53488726
Multi Send198896842024-05-17 12:26:5964 days ago1715948819IN
0xFB6BD0C0...f5DbdDFBa
0.007 ETH0.0016518.0645982
Multi Send198895822024-05-17 12:06:2364 days ago1715947583IN
0xFB6BD0C0...f5DbdDFBa
0.0015 ETH0.000669747.78122098
Multi Send198894862024-05-17 11:46:5964 days ago1715946419IN
0xFB6BD0C0...f5DbdDFBa
0.0972 ETH0.020982466.76063298
Multi Send198892612024-05-17 11:01:5964 days ago1715943719IN
0xFB6BD0C0...f5DbdDFBa
0.01 ETH0.003471168.62421679
Multi Send198844462024-05-16 18:52:4765 days ago1715885567IN
0xFB6BD0C0...f5DbdDFBa
0.0008 ETH0.000215554.73720072
Multi Send198844262024-05-16 18:48:4765 days ago1715885327IN
0xFB6BD0C0...f5DbdDFBa
0.0008 ETH0.000232175.10260005
Multi Send198364632024-05-10 1:48:2371 days ago1715305703IN
0xFB6BD0C0...f5DbdDFBa
0.0006 ETH0.000138093.94921848
Multi Send198117512024-05-06 14:51:1175 days ago1715007071IN
0xFB6BD0C0...f5DbdDFBa
0 ETH0.0033782112.86878505
Multi Send198104382024-05-06 10:26:3575 days ago1714991195IN
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0.0144 ETH0.000996
Multi Send197919262024-05-03 20:18:4778 days ago1714767527IN
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0.0014 ETH0.000272635.98852565
Multi Send197535582024-04-28 11:36:2383 days ago1714304183IN
0xFB6BD0C0...f5DbdDFBa
0.005 ETH0.000591569.86463263
Multi Send196388412024-04-12 10:09:5999 days ago1712916599IN
0xFB6BD0C0...f5DbdDFBa
0 ETH0.0023089416.05722718
Multi Send194729872024-03-20 2:37:23122 days ago1710902243IN
0xFB6BD0C0...f5DbdDFBa
0.042 ETH0.0051734428.9656865
Multi Send194728442024-03-20 2:08:47122 days ago1710900527IN
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0.0384 ETH0.0134425631.37398961
Multi Send194029592024-03-10 6:38:59132 days ago1710052739IN
0xFB6BD0C0...f5DbdDFBa
0 ETH0.0514661448.88371583
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201661472024-06-25 3:55:2325 days ago1719287723
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0.016 ETH
201661472024-06-25 3:55:2325 days ago1719287723
0xFB6BD0C0...f5DbdDFBa
0.016 ETH
201661472024-06-25 3:55:2325 days ago1719287723
0xFB6BD0C0...f5DbdDFBa
0.016 ETH
201661472024-06-25 3:55:2325 days ago1719287723
0xFB6BD0C0...f5DbdDFBa
0.016 ETH
201661472024-06-25 3:55:2325 days ago1719287723
0xFB6BD0C0...f5DbdDFBa
0.016 ETH
201661472024-06-25 3:55:2325 days ago1719287723
0xFB6BD0C0...f5DbdDFBa
0.016 ETH
201661472024-06-25 3:55:2325 days ago1719287723
0xFB6BD0C0...f5DbdDFBa
0.016 ETH
201661472024-06-25 3:55:2325 days ago1719287723
0xFB6BD0C0...f5DbdDFBa
0.016 ETH
201661472024-06-25 3:55:2325 days ago1719287723
0xFB6BD0C0...f5DbdDFBa
0.016 ETH
200538172024-06-09 10:57:3541 days ago1717930655
0xFB6BD0C0...f5DbdDFBa
0.0011 ETH
200538172024-06-09 10:57:3541 days ago1717930655
0xFB6BD0C0...f5DbdDFBa
0.0011 ETH
200538172024-06-09 10:57:3541 days ago1717930655
0xFB6BD0C0...f5DbdDFBa
0.0011 ETH
200538172024-06-09 10:57:3541 days ago1717930655
0xFB6BD0C0...f5DbdDFBa
0.0011 ETH
200538172024-06-09 10:57:3541 days ago1717930655
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0.0011 ETH
199950062024-06-01 5:53:3549 days ago1717221215
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0.001 ETH
199950062024-06-01 5:53:3549 days ago1717221215
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0.001 ETH
199950062024-06-01 5:53:3549 days ago1717221215
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199950062024-06-01 5:53:3549 days ago1717221215
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0.001 ETH
199950062024-06-01 5:53:3549 days ago1717221215
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199950062024-06-01 5:53:3549 days ago1717221215
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199950062024-06-01 5:53:3549 days ago1717221215
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199950062024-06-01 5:53:3549 days ago1717221215
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199950062024-06-01 5:53:3549 days ago1717221215
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199950062024-06-01 5:53:3549 days ago1717221215
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199950062024-06-01 5:53:3549 days ago1717221215
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Contract Source Code Verified (Exact Match)

Contract Name:
MultiSend

Compiler Version
v0.7.6+commit.7338295f

Optimization Enabled:
Yes with 780 runs

Other Settings:
default evmVersion
File 1 of 7 : MultiSend.sol
// Copyright (C) 2018 Alon Bukai This program is free software: you
// can redistribute it and/or modify it under the terms of the GNU General
// Public License as published by the Free Software Foundation, version.
// This program is distributed in the hope that it will be useful,
// but WITHOUT ANY WARRANTY; without even the implied warranty of MERCHANTABILITY
// or FITNESS FOR A PARTICULAR PURPOSE. See the GNU General Public License for
// more details. You should have received a copy of the GNU General Public
// License along with this program. If not, see http://www.gnu.org/licenses/
// Original ideas here https://github.com/Alonski/MultiSendEthereum/blob/master/contracts/MultiSend.sol

pragma solidity 0.7.6;
pragma abicoder v2;

import "@openzeppelin/contracts/math/SafeMath.sol";
import "@openzeppelin/contracts/token/ERC20/IERC20.sol";
import "@openzeppelin/contracts/token/ERC20/SafeERC20.sol";
import "@openzeppelin/contracts/access/Ownable.sol";

/// @notice `MultiSend` is a contract for sending multiple ETH/ERC20 Tokens to
///  multiple addresses. In addition this contract can call multiple contracts
///  with multiple amounts. There are also TightlyPacked functions which in
///  some situations allow for gas savings. TightlyPacked is cheaper if you
///  need to store input data and if amount is less than 12 bytes. Normal is
///  cheaper if you don't need to store input data or if amounts are greater
///  than 12 bytes. 12 bytes allows for sends of up to 2^96-1 units, 79 billion
///  ETH, so tightly packed functions will work for any ETH send but may not
///  work for token sends when the token has a high number of decimals or a
///  very large total supply. Supports deterministic deployment. As explained
///  here: https://github.com/ethereum/EIPs/issues/777#issuecomment-356103528
contract MultiSend is Ownable {
    address internal constant NATIVE_TOKEN = 0xEeeeeEeeeEeEeeEeEeEeeEEEeeeeEeeeeeeeEEeE;
    using SafeERC20 for IERC20;
    using SafeMath for uint256;

    struct Send {
        address token;
        address to;
        uint256 amount;
    }

    event Call(address indexed _from, address indexed _to, uint256 _amount);

    constructor() public {}

    function multiSend(Send[] calldata sends) external payable returns (bool) {
        uint256 sentAmount = 0;
        for (uint256 i = 0; i < sends.length; i++) {
            if (sends[i].token == NATIVE_TOKEN) {
                _safeCall(sends[i].to, sends[i].amount);
                sentAmount = sentAmount.add(sends[i].amount);
            } else {
                IERC20(sends[i].token).safeTransferFrom(msg.sender, sends[i].to, sends[i].amount);
            }
        }
        require(sentAmount == msg.value, "mismatch send amount");
        return true;
    }

    /// @notice Call to multiple contracts using a byte32 array which
    ///  includes the contract address and the amount.
    ///  Addresses and amounts are stored in a packed bytes32 array.
    ///  Address is stored in the 20 most significant bytes.
    ///  The address is retrieved by bitshifting 96 bits to the right
    ///  Amount is stored in the 12 least significant bytes.
    ///  The amount is retrieved by taking the 96 least significant bytes
    ///  and converting them into an unsigned integer.
    ///  Payable
    /// @param _addressesAndAmounts Bitwise packed array of contract
    ///  addresses and amounts
    function multiCallTightlyPacked(bytes32[] calldata _addressesAndAmounts)
        external
        payable
        returns (bool)
    {
        uint256 sentAmount = 0;
        for (uint256 i = 0; i < _addressesAndAmounts.length; i++) {
            address to = address(bytes20(_addressesAndAmounts[i]));
            uint256 amount = uint256(uint96(uint256(_addressesAndAmounts[i])));

            _safeCall(to, amount);
            sentAmount = sentAmount.add(amount);
        }
        require(sentAmount == msg.value, "mismatch send amount");
        return true;
    }

    /// @notice Call to multiple contracts using two arrays which
    ///  includes the contract address and the amount.
    /// @param _addresses Array of contract addresses to call
    /// @param _amounts Array of amounts to send
    function multiCall(address[] calldata _addresses, uint256[] calldata _amounts)
        external
        payable
        returns (bool)
    {
        uint256 sentAmount = 0;
        for (uint256 i = 0; i < _addresses.length; i++) {
            _safeCall(_addresses[i], _amounts[i]);
            sentAmount = sentAmount.add(_amounts[i]);
        }
        require(sentAmount == msg.value, "mismatch send amount");
        return true;
    }

    /// @notice Send ERC20 tokens to multiple contracts
    ///  using a byte32 array which includes the address and the amount.
    ///  Addresses and amounts are stored in a packed bytes32 array.
    ///  Address is stored in the 20 most significant bytes.
    ///  The address is retrieved by bitshifting 96 bits to the right
    ///  Amount is stored in the 12 least significant bytes.
    ///  The amount is retrieved by taking the 96 least significant bytes
    ///  and converting them into an unsigned integer.
    /// @param _token The token to send
    /// @param _addressesAndAmounts Bitwise packed array of addresses
    ///  and token amounts
    function multiERC20TransferTightlyPacked(
        address _token,
        bytes32[] calldata _addressesAndAmounts
    ) external {
        for (uint256 i = 0; i < _addressesAndAmounts.length; i++) {
            address to = address(bytes20(_addressesAndAmounts[i]));
            uint256 amount = uint256(uint96(uint256(_addressesAndAmounts[i])));
            IERC20(_token).safeTransferFrom(msg.sender, to, amount);
        }
    }

    /// @notice Send ERC20 tokens to multiple contracts
    ///  using two arrays which includes the address and the amount.
    /// @param _token The token to send
    /// @param _addresses Array of addresses to send to
    /// @param _amounts Array of token amounts to send
    function multiERC20Transfer(
        address _token,
        address[] calldata _addresses,
        uint256[] calldata _amounts
    ) external {
        for (uint256 i = 0; i < _addresses.length; i++) {
            IERC20(_token).safeTransferFrom(msg.sender, _addresses[i], _amounts[i]);
        }
    }

    function withdraw(
        address token,
        uint256 amount,
        address to
    ) external onlyOwner {
        if (token == NATIVE_TOKEN) {
            _safeCall(to, amount);
        } else {
            IERC20(token).safeTransfer(to, amount);
        }
    }

    receive() external payable {}

    function _safeCall(address to, uint256 amount) internal {
        (bool success, ) = to.call{value: amount}("");
        require(success, "transfer eth failed");
        emit Call(msg.sender, to, amount);
    }
}

File 2 of 7 : SafeMath.sol
// SPDX-License-Identifier: MIT

pragma solidity >=0.6.0 <0.8.0;

/**
 * @dev Wrappers over Solidity's arithmetic operations with added overflow
 * checks.
 *
 * Arithmetic operations in Solidity wrap on overflow. This can easily result
 * in bugs, because programmers usually assume that an overflow raises an
 * error, which is the standard behavior in high level programming languages.
 * `SafeMath` restores this intuition by reverting the transaction when an
 * operation overflows.
 *
 * Using this library instead of the unchecked operations eliminates an entire
 * class of bugs, so it's recommended to use it always.
 */
library SafeMath {
    /**
     * @dev Returns the addition of two unsigned integers, with an overflow flag.
     *
     * _Available since v3.4._
     */
    function tryAdd(uint256 a, uint256 b) internal pure returns (bool, uint256) {
        uint256 c = a + b;
        if (c < a) return (false, 0);
        return (true, c);
    }

    /**
     * @dev Returns the substraction of two unsigned integers, with an overflow flag.
     *
     * _Available since v3.4._
     */
    function trySub(uint256 a, uint256 b) internal pure returns (bool, uint256) {
        if (b > a) return (false, 0);
        return (true, a - b);
    }

    /**
     * @dev Returns the multiplication of two unsigned integers, with an overflow flag.
     *
     * _Available since v3.4._
     */
    function tryMul(uint256 a, uint256 b) internal pure returns (bool, uint256) {
        // Gas optimization: this is cheaper than requiring 'a' not being zero, but the
        // benefit is lost if 'b' is also tested.
        // See: https://github.com/OpenZeppelin/openzeppelin-contracts/pull/522
        if (a == 0) return (true, 0);
        uint256 c = a * b;
        if (c / a != b) return (false, 0);
        return (true, c);
    }

    /**
     * @dev Returns the division of two unsigned integers, with a division by zero flag.
     *
     * _Available since v3.4._
     */
    function tryDiv(uint256 a, uint256 b) internal pure returns (bool, uint256) {
        if (b == 0) return (false, 0);
        return (true, a / b);
    }

    /**
     * @dev Returns the remainder of dividing two unsigned integers, with a division by zero flag.
     *
     * _Available since v3.4._
     */
    function tryMod(uint256 a, uint256 b) internal pure returns (bool, uint256) {
        if (b == 0) return (false, 0);
        return (true, a % b);
    }

    /**
     * @dev Returns the addition of two unsigned integers, reverting on
     * overflow.
     *
     * Counterpart to Solidity's `+` operator.
     *
     * Requirements:
     *
     * - Addition cannot overflow.
     */
    function add(uint256 a, uint256 b) internal pure returns (uint256) {
        uint256 c = a + b;
        require(c >= a, "SafeMath: addition overflow");
        return c;
    }

    /**
     * @dev Returns the subtraction of two unsigned integers, reverting on
     * overflow (when the result is negative).
     *
     * Counterpart to Solidity's `-` operator.
     *
     * Requirements:
     *
     * - Subtraction cannot overflow.
     */
    function sub(uint256 a, uint256 b) internal pure returns (uint256) {
        require(b <= a, "SafeMath: subtraction overflow");
        return a - b;
    }

    /**
     * @dev Returns the multiplication of two unsigned integers, reverting on
     * overflow.
     *
     * Counterpart to Solidity's `*` operator.
     *
     * Requirements:
     *
     * - Multiplication cannot overflow.
     */
    function mul(uint256 a, uint256 b) internal pure returns (uint256) {
        if (a == 0) return 0;
        uint256 c = a * b;
        require(c / a == b, "SafeMath: multiplication overflow");
        return c;
    }

    /**
     * @dev Returns the integer division of two unsigned integers, reverting on
     * division by zero. The result is rounded towards zero.
     *
     * Counterpart to Solidity's `/` operator. Note: this function uses a
     * `revert` opcode (which leaves remaining gas untouched) while Solidity
     * uses an invalid opcode to revert (consuming all remaining gas).
     *
     * Requirements:
     *
     * - The divisor cannot be zero.
     */
    function div(uint256 a, uint256 b) internal pure returns (uint256) {
        require(b > 0, "SafeMath: division by zero");
        return a / b;
    }

    /**
     * @dev Returns the remainder of dividing two unsigned integers. (unsigned integer modulo),
     * reverting when dividing by zero.
     *
     * Counterpart to Solidity's `%` operator. This function uses a `revert`
     * opcode (which leaves remaining gas untouched) while Solidity uses an
     * invalid opcode to revert (consuming all remaining gas).
     *
     * Requirements:
     *
     * - The divisor cannot be zero.
     */
    function mod(uint256 a, uint256 b) internal pure returns (uint256) {
        require(b > 0, "SafeMath: modulo by zero");
        return a % b;
    }

    /**
     * @dev Returns the subtraction of two unsigned integers, reverting with custom message on
     * overflow (when the result is negative).
     *
     * CAUTION: This function is deprecated because it requires allocating memory for the error
     * message unnecessarily. For custom revert reasons use {trySub}.
     *
     * Counterpart to Solidity's `-` operator.
     *
     * Requirements:
     *
     * - Subtraction cannot overflow.
     */
    function sub(uint256 a, uint256 b, string memory errorMessage) internal pure returns (uint256) {
        require(b <= a, errorMessage);
        return a - b;
    }

    /**
     * @dev Returns the integer division of two unsigned integers, reverting with custom message on
     * division by zero. The result is rounded towards zero.
     *
     * CAUTION: This function is deprecated because it requires allocating memory for the error
     * message unnecessarily. For custom revert reasons use {tryDiv}.
     *
     * Counterpart to Solidity's `/` operator. Note: this function uses a
     * `revert` opcode (which leaves remaining gas untouched) while Solidity
     * uses an invalid opcode to revert (consuming all remaining gas).
     *
     * Requirements:
     *
     * - The divisor cannot be zero.
     */
    function div(uint256 a, uint256 b, string memory errorMessage) internal pure returns (uint256) {
        require(b > 0, errorMessage);
        return a / b;
    }

    /**
     * @dev Returns the remainder of dividing two unsigned integers. (unsigned integer modulo),
     * reverting with custom message when dividing by zero.
     *
     * CAUTION: This function is deprecated because it requires allocating memory for the error
     * message unnecessarily. For custom revert reasons use {tryMod}.
     *
     * Counterpart to Solidity's `%` operator. This function uses a `revert`
     * opcode (which leaves remaining gas untouched) while Solidity uses an
     * invalid opcode to revert (consuming all remaining gas).
     *
     * Requirements:
     *
     * - The divisor cannot be zero.
     */
    function mod(uint256 a, uint256 b, string memory errorMessage) internal pure returns (uint256) {
        require(b > 0, errorMessage);
        return a % b;
    }
}

File 3 of 7 : IERC20.sol
// SPDX-License-Identifier: MIT

pragma solidity >=0.6.0 <0.8.0;

/**
 * @dev Interface of the ERC20 standard as defined in the EIP.
 */
interface IERC20 {
    /**
     * @dev Returns the amount of tokens in existence.
     */
    function totalSupply() external view returns (uint256);

    /**
     * @dev Returns the amount of tokens owned by `account`.
     */
    function balanceOf(address account) external view returns (uint256);

    /**
     * @dev Moves `amount` tokens from the caller's account to `recipient`.
     *
     * Returns a boolean value indicating whether the operation succeeded.
     *
     * Emits a {Transfer} event.
     */
    function transfer(address recipient, uint256 amount) external returns (bool);

    /**
     * @dev Returns the remaining number of tokens that `spender` will be
     * allowed to spend on behalf of `owner` through {transferFrom}. This is
     * zero by default.
     *
     * This value changes when {approve} or {transferFrom} are called.
     */
    function allowance(address owner, address spender) external view returns (uint256);

    /**
     * @dev Sets `amount` as the allowance of `spender` over the caller's tokens.
     *
     * Returns a boolean value indicating whether the operation succeeded.
     *
     * IMPORTANT: Beware that changing an allowance with this method brings the risk
     * that someone may use both the old and the new allowance by unfortunate
     * transaction ordering. One possible solution to mitigate this race
     * condition is to first reduce the spender's allowance to 0 and set the
     * desired value afterwards:
     * https://github.com/ethereum/EIPs/issues/20#issuecomment-263524729
     *
     * Emits an {Approval} event.
     */
    function approve(address spender, uint256 amount) external returns (bool);

    /**
     * @dev Moves `amount` tokens from `sender` to `recipient` using the
     * allowance mechanism. `amount` is then deducted from the caller's
     * allowance.
     *
     * Returns a boolean value indicating whether the operation succeeded.
     *
     * Emits a {Transfer} event.
     */
    function transferFrom(address sender, address recipient, uint256 amount) external returns (bool);

    /**
     * @dev Emitted when `value` tokens are moved from one account (`from`) to
     * another (`to`).
     *
     * Note that `value` may be zero.
     */
    event Transfer(address indexed from, address indexed to, uint256 value);

    /**
     * @dev Emitted when the allowance of a `spender` for an `owner` is set by
     * a call to {approve}. `value` is the new allowance.
     */
    event Approval(address indexed owner, address indexed spender, uint256 value);
}

File 4 of 7 : SafeERC20.sol
// SPDX-License-Identifier: MIT

pragma solidity >=0.6.0 <0.8.0;

import "./IERC20.sol";
import "../../math/SafeMath.sol";
import "../../utils/Address.sol";

/**
 * @title SafeERC20
 * @dev Wrappers around ERC20 operations that throw on failure (when the token
 * contract returns false). Tokens that return no value (and instead revert or
 * throw on failure) are also supported, non-reverting calls are assumed to be
 * successful.
 * To use this library you can add a `using SafeERC20 for IERC20;` statement to your contract,
 * which allows you to call the safe operations as `token.safeTransfer(...)`, etc.
 */
library SafeERC20 {
    using SafeMath for uint256;
    using Address for address;

    function safeTransfer(IERC20 token, address to, uint256 value) internal {
        _callOptionalReturn(token, abi.encodeWithSelector(token.transfer.selector, to, value));
    }

    function safeTransferFrom(IERC20 token, address from, address to, uint256 value) internal {
        _callOptionalReturn(token, abi.encodeWithSelector(token.transferFrom.selector, from, to, value));
    }

    /**
     * @dev Deprecated. This function has issues similar to the ones found in
     * {IERC20-approve}, and its usage is discouraged.
     *
     * Whenever possible, use {safeIncreaseAllowance} and
     * {safeDecreaseAllowance} instead.
     */
    function safeApprove(IERC20 token, address spender, uint256 value) internal {
        // safeApprove should only be called when setting an initial allowance,
        // or when resetting it to zero. To increase and decrease it, use
        // 'safeIncreaseAllowance' and 'safeDecreaseAllowance'
        // solhint-disable-next-line max-line-length
        require((value == 0) || (token.allowance(address(this), spender) == 0),
            "SafeERC20: approve from non-zero to non-zero allowance"
        );
        _callOptionalReturn(token, abi.encodeWithSelector(token.approve.selector, spender, value));
    }

    function safeIncreaseAllowance(IERC20 token, address spender, uint256 value) internal {
        uint256 newAllowance = token.allowance(address(this), spender).add(value);
        _callOptionalReturn(token, abi.encodeWithSelector(token.approve.selector, spender, newAllowance));
    }

    function safeDecreaseAllowance(IERC20 token, address spender, uint256 value) internal {
        uint256 newAllowance = token.allowance(address(this), spender).sub(value, "SafeERC20: decreased allowance below zero");
        _callOptionalReturn(token, abi.encodeWithSelector(token.approve.selector, spender, newAllowance));
    }

    /**
     * @dev Imitates a Solidity high-level call (i.e. a regular function call to a contract), relaxing the requirement
     * on the return value: the return value is optional (but if data is returned, it must not be false).
     * @param token The token targeted by the call.
     * @param data The call data (encoded using abi.encode or one of its variants).
     */
    function _callOptionalReturn(IERC20 token, bytes memory data) private {
        // We need to perform a low level call here, to bypass Solidity's return data size checking mechanism, since
        // we're implementing it ourselves. We use {Address.functionCall} to perform this call, which verifies that
        // the target address contains contract code and also asserts for success in the low-level call.

        bytes memory returndata = address(token).functionCall(data, "SafeERC20: low-level call failed");
        if (returndata.length > 0) { // Return data is optional
            // solhint-disable-next-line max-line-length
            require(abi.decode(returndata, (bool)), "SafeERC20: ERC20 operation did not succeed");
        }
    }
}

File 5 of 7 : Ownable.sol
// SPDX-License-Identifier: MIT

pragma solidity >=0.6.0 <0.8.0;

import "../utils/Context.sol";
/**
 * @dev Contract module which provides a basic access control mechanism, where
 * there is an account (an owner) that can be granted exclusive access to
 * specific functions.
 *
 * By default, the owner account will be the one that deploys the contract. This
 * can later be changed with {transferOwnership}.
 *
 * This module is used through inheritance. It will make available the modifier
 * `onlyOwner`, which can be applied to your functions to restrict their use to
 * the owner.
 */
abstract contract Ownable is Context {
    address private _owner;

    event OwnershipTransferred(address indexed previousOwner, address indexed newOwner);

    /**
     * @dev Initializes the contract setting the deployer as the initial owner.
     */
    constructor () internal {
        address msgSender = _msgSender();
        _owner = msgSender;
        emit OwnershipTransferred(address(0), msgSender);
    }

    /**
     * @dev Returns the address of the current owner.
     */
    function owner() public view virtual returns (address) {
        return _owner;
    }

    /**
     * @dev Throws if called by any account other than the owner.
     */
    modifier onlyOwner() {
        require(owner() == _msgSender(), "Ownable: caller is not the owner");
        _;
    }

    /**
     * @dev Leaves the contract without owner. It will not be possible to call
     * `onlyOwner` functions anymore. Can only be called by the current owner.
     *
     * NOTE: Renouncing ownership will leave the contract without an owner,
     * thereby removing any functionality that is only available to the owner.
     */
    function renounceOwnership() public virtual onlyOwner {
        emit OwnershipTransferred(_owner, address(0));
        _owner = address(0);
    }

    /**
     * @dev Transfers ownership of the contract to a new account (`newOwner`).
     * Can only be called by the current owner.
     */
    function transferOwnership(address newOwner) public virtual onlyOwner {
        require(newOwner != address(0), "Ownable: new owner is the zero address");
        emit OwnershipTransferred(_owner, newOwner);
        _owner = newOwner;
    }
}

File 6 of 7 : Address.sol
// SPDX-License-Identifier: MIT

pragma solidity >=0.6.2 <0.8.0;

/**
 * @dev Collection of functions related to the address type
 */
library Address {
    /**
     * @dev Returns true if `account` is a contract.
     *
     * [IMPORTANT]
     * ====
     * It is unsafe to assume that an address for which this function returns
     * false is an externally-owned account (EOA) and not a contract.
     *
     * Among others, `isContract` will return false for the following
     * types of addresses:
     *
     *  - an externally-owned account
     *  - a contract in construction
     *  - an address where a contract will be created
     *  - an address where a contract lived, but was destroyed
     * ====
     */
    function isContract(address account) internal view returns (bool) {
        // This method relies on extcodesize, which returns 0 for contracts in
        // construction, since the code is only stored at the end of the
        // constructor execution.

        uint256 size;
        // solhint-disable-next-line no-inline-assembly
        assembly { size := extcodesize(account) }
        return size > 0;
    }

    /**
     * @dev Replacement for Solidity's `transfer`: sends `amount` wei to
     * `recipient`, forwarding all available gas and reverting on errors.
     *
     * https://eips.ethereum.org/EIPS/eip-1884[EIP1884] increases the gas cost
     * of certain opcodes, possibly making contracts go over the 2300 gas limit
     * imposed by `transfer`, making them unable to receive funds via
     * `transfer`. {sendValue} removes this limitation.
     *
     * https://diligence.consensys.net/posts/2019/09/stop-using-soliditys-transfer-now/[Learn more].
     *
     * IMPORTANT: because control is transferred to `recipient`, care must be
     * taken to not create reentrancy vulnerabilities. Consider using
     * {ReentrancyGuard} or the
     * https://solidity.readthedocs.io/en/v0.5.11/security-considerations.html#use-the-checks-effects-interactions-pattern[checks-effects-interactions pattern].
     */
    function sendValue(address payable recipient, uint256 amount) internal {
        require(address(this).balance >= amount, "Address: insufficient balance");

        // solhint-disable-next-line avoid-low-level-calls, avoid-call-value
        (bool success, ) = recipient.call{ value: amount }("");
        require(success, "Address: unable to send value, recipient may have reverted");
    }

    /**
     * @dev Performs a Solidity function call using a low level `call`. A
     * plain`call` is an unsafe replacement for a function call: use this
     * function instead.
     *
     * If `target` reverts with a revert reason, it is bubbled up by this
     * function (like regular Solidity function calls).
     *
     * Returns the raw returned data. To convert to the expected return value,
     * use https://solidity.readthedocs.io/en/latest/units-and-global-variables.html?highlight=abi.decode#abi-encoding-and-decoding-functions[`abi.decode`].
     *
     * Requirements:
     *
     * - `target` must be a contract.
     * - calling `target` with `data` must not revert.
     *
     * _Available since v3.1._
     */
    function functionCall(address target, bytes memory data) internal returns (bytes memory) {
      return functionCall(target, data, "Address: low-level call failed");
    }

    /**
     * @dev Same as {xref-Address-functionCall-address-bytes-}[`functionCall`], but with
     * `errorMessage` as a fallback revert reason when `target` reverts.
     *
     * _Available since v3.1._
     */
    function functionCall(address target, bytes memory data, string memory errorMessage) internal returns (bytes memory) {
        return functionCallWithValue(target, data, 0, errorMessage);
    }

    /**
     * @dev Same as {xref-Address-functionCall-address-bytes-}[`functionCall`],
     * but also transferring `value` wei to `target`.
     *
     * Requirements:
     *
     * - the calling contract must have an ETH balance of at least `value`.
     * - the called Solidity function must be `payable`.
     *
     * _Available since v3.1._
     */
    function functionCallWithValue(address target, bytes memory data, uint256 value) internal returns (bytes memory) {
        return functionCallWithValue(target, data, value, "Address: low-level call with value failed");
    }

    /**
     * @dev Same as {xref-Address-functionCallWithValue-address-bytes-uint256-}[`functionCallWithValue`], but
     * with `errorMessage` as a fallback revert reason when `target` reverts.
     *
     * _Available since v3.1._
     */
    function functionCallWithValue(address target, bytes memory data, uint256 value, string memory errorMessage) internal returns (bytes memory) {
        require(address(this).balance >= value, "Address: insufficient balance for call");
        require(isContract(target), "Address: call to non-contract");

        // solhint-disable-next-line avoid-low-level-calls
        (bool success, bytes memory returndata) = target.call{ value: value }(data);
        return _verifyCallResult(success, returndata, errorMessage);
    }

    /**
     * @dev Same as {xref-Address-functionCall-address-bytes-}[`functionCall`],
     * but performing a static call.
     *
     * _Available since v3.3._
     */
    function functionStaticCall(address target, bytes memory data) internal view returns (bytes memory) {
        return functionStaticCall(target, data, "Address: low-level static call failed");
    }

    /**
     * @dev Same as {xref-Address-functionCall-address-bytes-string-}[`functionCall`],
     * but performing a static call.
     *
     * _Available since v3.3._
     */
    function functionStaticCall(address target, bytes memory data, string memory errorMessage) internal view returns (bytes memory) {
        require(isContract(target), "Address: static call to non-contract");

        // solhint-disable-next-line avoid-low-level-calls
        (bool success, bytes memory returndata) = target.staticcall(data);
        return _verifyCallResult(success, returndata, errorMessage);
    }

    /**
     * @dev Same as {xref-Address-functionCall-address-bytes-}[`functionCall`],
     * but performing a delegate call.
     *
     * _Available since v3.4._
     */
    function functionDelegateCall(address target, bytes memory data) internal returns (bytes memory) {
        return functionDelegateCall(target, data, "Address: low-level delegate call failed");
    }

    /**
     * @dev Same as {xref-Address-functionCall-address-bytes-string-}[`functionCall`],
     * but performing a delegate call.
     *
     * _Available since v3.4._
     */
    function functionDelegateCall(address target, bytes memory data, string memory errorMessage) internal returns (bytes memory) {
        require(isContract(target), "Address: delegate call to non-contract");

        // solhint-disable-next-line avoid-low-level-calls
        (bool success, bytes memory returndata) = target.delegatecall(data);
        return _verifyCallResult(success, returndata, errorMessage);
    }

    function _verifyCallResult(bool success, bytes memory returndata, string memory errorMessage) private pure returns(bytes memory) {
        if (success) {
            return returndata;
        } else {
            // Look for revert reason and bubble it up if present
            if (returndata.length > 0) {
                // The easiest way to bubble the revert reason is using memory via assembly

                // solhint-disable-next-line no-inline-assembly
                assembly {
                    let returndata_size := mload(returndata)
                    revert(add(32, returndata), returndata_size)
                }
            } else {
                revert(errorMessage);
            }
        }
    }
}

File 7 of 7 : Context.sol
// SPDX-License-Identifier: MIT

pragma solidity >=0.6.0 <0.8.0;

/*
 * @dev Provides information about the current execution context, including the
 * sender of the transaction and its data. While these are generally available
 * via msg.sender and msg.data, they should not be accessed in such a direct
 * manner, since when dealing with GSN meta-transactions the account sending and
 * paying for execution may not be the actual sender (as far as an application
 * is concerned).
 *
 * This contract is only required for intermediate, library-like contracts.
 */
abstract contract Context {
    function _msgSender() internal view virtual returns (address payable) {
        return msg.sender;
    }

    function _msgData() internal view virtual returns (bytes memory) {
        this; // silence state mutability warning without generating bytecode - see https://github.com/ethereum/solidity/issues/2691
        return msg.data;
    }
}

Settings
{
  "optimizer": {
    "enabled": true,
    "runs": 780
  },
  "metadata": {
    "bytecodeHash": "none"
  },
  "outputSelection": {
    "*": {
      "*": [
        "evm.bytecode",
        "evm.deployedBytecode",
        "devdoc",
        "userdoc",
        "metadata",
        "abi"
      ]
    }
  },
  "libraries": {}
}

Contract Security Audit

Contract ABI

[{"inputs":[],"stateMutability":"nonpayable","type":"constructor"},{"anonymous":false,"inputs":[{"indexed":true,"internalType":"address","name":"_from","type":"address"},{"indexed":true,"internalType":"address","name":"_to","type":"address"},{"indexed":false,"internalType":"uint256","name":"_amount","type":"uint256"}],"name":"Call","type":"event"},{"anonymous":false,"inputs":[{"indexed":true,"internalType":"address","name":"previousOwner","type":"address"},{"indexed":true,"internalType":"address","name":"newOwner","type":"address"}],"name":"OwnershipTransferred","type":"event"},{"inputs":[{"internalType":"address[]","name":"_addresses","type":"address[]"},{"internalType":"uint256[]","name":"_amounts","type":"uint256[]"}],"name":"multiCall","outputs":[{"internalType":"bool","name":"","type":"bool"}],"stateMutability":"payable","type":"function"},{"inputs":[{"internalType":"bytes32[]","name":"_addressesAndAmounts","type":"bytes32[]"}],"name":"multiCallTightlyPacked","outputs":[{"internalType":"bool","name":"","type":"bool"}],"stateMutability":"payable","type":"function"},{"inputs":[{"internalType":"address","name":"_token","type":"address"},{"internalType":"address[]","name":"_addresses","type":"address[]"},{"internalType":"uint256[]","name":"_amounts","type":"uint256[]"}],"name":"multiERC20Transfer","outputs":[],"stateMutability":"nonpayable","type":"function"},{"inputs":[{"internalType":"address","name":"_token","type":"address"},{"internalType":"bytes32[]","name":"_addressesAndAmounts","type":"bytes32[]"}],"name":"multiERC20TransferTightlyPacked","outputs":[],"stateMutability":"nonpayable","type":"function"},{"inputs":[{"components":[{"internalType":"address","name":"token","type":"address"},{"internalType":"address","name":"to","type":"address"},{"internalType":"uint256","name":"amount","type":"uint256"}],"internalType":"struct MultiSend.Send[]","name":"sends","type":"tuple[]"}],"name":"multiSend","outputs":[{"internalType":"bool","name":"","type":"bool"}],"stateMutability":"payable","type":"function"},{"inputs":[],"name":"owner","outputs":[{"internalType":"address","name":"","type":"address"}],"stateMutability":"view","type":"function"},{"inputs":[],"name":"renounceOwnership","outputs":[],"stateMutability":"nonpayable","type":"function"},{"inputs":[{"internalType":"address","name":"newOwner","type":"address"}],"name":"transferOwnership","outputs":[],"stateMutability":"nonpayable","type":"function"},{"inputs":[{"internalType":"address","name":"token","type":"address"},{"internalType":"uint256","name":"amount","type":"uint256"},{"internalType":"address","name":"to","type":"address"}],"name":"withdraw","outputs":[],"stateMutability":"nonpayable","type":"function"},{"stateMutability":"payable","type":"receive"}]

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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.