Contract 0x1f234b1b83e21cb5e2b99b4e498fe70ef2d6e3bf 2

DeFi  
 
 
Txn Hash
Method
Block
From
To
Value [Txn Fee]
0x985bec208cb6facae28f9a1395aff6c3b5f7612ef7371ba432dfcb541a119f6eTransfer Ownersh...352888242022-11-06 21:57:1186 days 8 hrs ago0x6c905b4108a87499ced1e0498721f2b831c6ab13 IN  ApeSwap: Mini Complex Rewarder Time0 MATIC0.00302505368 65.060514463
0xd8d6dbb96c60fa3a6419a74552e314d10b81f0589ec3f14aeb81d6d7255fcb36Set Reward Per S...258375762022-03-11 19:14:02326 days 11 hrs ago0x6c905b4108a87499ced1e0498721f2b831c6ab13 IN  ApeSwap: Mini Complex Rewarder Time0 MATIC0.001171878126 47.059598674
0x4b9af0ff0c2b5906fc87eb69e8c842fdd91275d6a087ea15060119c2dcf9a595Set Reward Per S...201432022021-10-12 16:25:06476 days 14 hrs ago0x6c905b4108a87499ced1e0498721f2b831c6ab13 IN  ApeSwap: Mini Complex Rewarder Time0 MATIC0.0013403745
0xb558f8da1421df0186178065d31db3e724e225aca2c99b2f552b076c9715c222Set Reward Per S...188317422021-09-07 2:34:00512 days 4 hrs ago0x6c905b4108a87499ced1e0498721f2b831c6ab13 IN  ApeSwap: Mini Complex Rewarder Time0 MATIC0.0000297861
0x2ab58ae4288b62943f1a8ae13f3ce54d2e0caccdd1139dfe17cfa252c5cfd1ebSet Reward Per S...159825932021-06-21 15:17:42589 days 15 hrs ago0x6c905b4108a87499ced1e0498721f2b831c6ab13 IN  ApeSwap: Mini Complex Rewarder Time0 MATIC0.0001787755726.002
0xac5abaff67d1643dde9675dca7ae33d9c34bfeba437e7853cac98227b69ee6abSet Reward Per S...158805372021-06-19 0:38:29592 days 6 hrs ago0x6c905b4108a87499ced1e0498721f2b831c6ab13 IN  ApeSwap: Mini Complex Rewarder Time0 MATIC0.0000809399243.002
0x783b6501d7c532406a9aa81f0551e9e11fe089295a75043d51111c0cf6ddfef8Add158803992021-06-19 0:33:45592 days 6 hrs ago0x6c905b4108a87499ced1e0498721f2b831c6ab13 IN  ApeSwap: Mini Complex Rewarder Time0 MATIC0.0002413728083.002
0x322ddd2b19a5d45545ba3bd10dc8dae644c7528250a1063548cf9bb6a5662158Add158790422021-06-18 23:41:48592 days 7 hrs ago0x6c905b4108a87499ced1e0498721f2b831c6ab13 IN  ApeSwap: Mini Complex Rewarder Time0 MATIC0.0003084993093.836865198
0xbcefb64d2319dafbfddedff8a743ff1be614046b95d9ee8ef07e7b5289ca0a7eAdd158787142021-06-18 23:28:20592 days 7 hrs ago0x6c905b4108a87499ced1e0498721f2b831c6ab13 IN  ApeSwap: Mini Complex Rewarder Time0 MATIC0.00024925243.1
0x105401c7732dede926ace5aa32a1af3d625fc63357e586603f04ebdd12fcb13dAdd158787052021-06-18 23:28:02592 days 7 hrs ago0x6c905b4108a87499ced1e0498721f2b831c6ab13 IN  ApeSwap: Mini Complex Rewarder Time0 MATIC0.00024925243.1
0x96d575f2f4656e087765aaeff3fffb3ee4373b88c4003a1589f94003881a9143Add158787002021-06-18 23:27:52592 days 7 hrs ago0x6c905b4108a87499ced1e0498721f2b831c6ab13 IN  ApeSwap: Mini Complex Rewarder Time0 MATIC0.00024925243.1
0x53d0d7b4115bef1f7b5364696b2077a36fdd2214c7226586279f65dc2e1f30c3Add158786932021-06-18 23:27:38592 days 7 hrs ago0x6c905b4108a87499ced1e0498721f2b831c6ab13 IN  ApeSwap: Mini Complex Rewarder Time0 MATIC0.00024925243.1
0x586be127a604b98563b49e4212b4fa27bf0d9604883279eadce1ad22e91a1547Set158786782021-06-18 23:27:08592 days 7 hrs ago0x6c905b4108a87499ced1e0498721f2b831c6ab13 IN  ApeSwap: Mini Complex Rewarder Time0 MATIC0.000187381695.221
0x9df5f34fafae94a537e7fac9e040839bc93b98a748ae88642c5b599641db4f56Set158786742021-06-18 23:27:00592 days 7 hrs ago0x6c905b4108a87499ced1e0498721f2b831c6ab13 IN  ApeSwap: Mini Complex Rewarder Time0 MATIC0.000151491694.221
0x300ddd41210facec951ecaf4f39fcb848e1b2d9bfd3490888acfa824c46fb483Set158786702021-06-18 23:26:52592 days 7 hrs ago0x6c905b4108a87499ced1e0498721f2b831c6ab13 IN  ApeSwap: Mini Complex Rewarder Time0 MATIC0.000115601693.221
0x59eb8ff9a420d7156351056a32bb3028b4067954ab5c89f47add442c942d3b95Add158786092021-06-18 23:24:46592 days 7 hrs ago0x6c905b4108a87499ced1e0498721f2b831c6ab13 IN  ApeSwap: Mini Complex Rewarder Time0 MATIC0.00024925243.1
0x29fa2e610ff8512e485c64d3d0f85c10f59b50d4611c14bb1cd8c917536c5354Add158786092021-06-18 23:24:46592 days 7 hrs ago0x6c905b4108a87499ced1e0498721f2b831c6ab13 IN  ApeSwap: Mini Complex Rewarder Time0 MATIC0.00024925243.1
0xc7f3ac6e53c3f29051c6cfc1a1c44d224da0b1b7cd190053de5212f01e758807Add158786092021-06-18 23:24:46592 days 7 hrs ago0x6c905b4108a87499ced1e0498721f2b831c6ab13 IN  ApeSwap: Mini Complex Rewarder Time0 MATIC0.00008844441.1
0x65287b723a5a7c30177c0bf3fb97d075154f7bc20bdca0c3f762b15c65c7b5cdSet158785622021-06-18 23:23:08592 days 7 hrs ago0x6c905b4108a87499ced1e0498721f2b831c6ab13 IN  ApeSwap: Mini Complex Rewarder Time0 MATIC0.0001112593.1
0x5cc260072a1d792dcb02a2f88c5e52f2e8af7ce139bb1d1ea88217d54dcf123aSet Reward Per S...158737742021-06-18 20:13:17592 days 10 hrs ago0x6c905b4108a87499ced1e0498721f2b831c6ab13 IN  ApeSwap: Mini Complex Rewarder Time0 MATIC0.00003273821.100000001
0xab5fb629b5d7c92bc34d27c062daa8b2203355ad1df29d3467cc44d327c3085cTransfer158733592021-06-18 19:59:03592 days 10 hrs ago0x6c905b4108a87499ced1e0498721f2b831c6ab13 IN  ApeSwap: Mini Complex Rewarder Time1 wei0.00002846131.3553
0xb4844eec9d0d8a251741e79795e763e4f6526c07df477ea8122ee5ea3726cc49Set Reward Per S...158733312021-06-18 19:57:39592 days 10 hrs ago0x6c905b4108a87499ced1e0498721f2b831c6ab13 IN  ApeSwap: Mini Complex Rewarder Time0 MATIC0.0000705305292.368863101
0x4f80833de2b0b77672712618b1bdf9c7000928a1fe327e47b8c535754ccbbd99Set Reward Per S...158450122021-06-18 2:27:38593 days 4 hrs ago0x6c905b4108a87499ced1e0498721f2b831c6ab13 IN  ApeSwap: Mini Complex Rewarder Time0 MATIC0.0000624752.1
0xed0f6d7b8ed781ebaf8b8a7174edccfec6e7c902e8885c551ae007d2d4cbeb5aAdd158449532021-06-18 2:24:20593 days 4 hrs ago0x6c905b4108a87499ced1e0498721f2b831c6ab13 IN  ApeSwap: Mini Complex Rewarder Time0 MATIC0.0000946921
0xf580a9d180f30f295bd539d1d0c01a5cd0e09c80c9e4a7d1fe4bd97082b9ee6aTransfer Ownersh...157993032021-06-16 22:56:16594 days 7 hrs ago0x876688c3df57953259d69de76b9f209bb3645e12 IN  ApeSwap: Mini Complex Rewarder Time0 MATIC0.00159920751
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OVERVIEW

This MiniComplexRewarderTime contract acts as a supplemental contract to the MiniApeV2 contract to handle multi-token rewards. This particular contract handles wMATIC rewards.

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Contract Source Code Verified (Exact Match)

Contract Name:
MiniComplexRewarderTime

Compiler Version
v0.6.12+commit.27d51765

Optimization Enabled:
Yes with 200 runs

Other Settings:
default evmVersion, MIT license

Contract Source Code (Solidity)

/**
 *Submitted for verification at polygonscan.com on 2021-06-16
*/

// Sources flattened with hardhat v2.3.0 https://hardhat.org

// File @boringcrypto/boring-solidity/contracts/interfaces/[email protected]

// SPDX-License-Identifier: MIT
pragma solidity 0.6.12;

interface IERC20 {
    function totalSupply() external view returns (uint256);
    function balanceOf(address account) external view returns (uint256);
    function allowance(address owner, address spender) external view returns (uint256);
    function approve(address spender, uint256 amount) external returns (bool);
    event Transfer(address indexed from, address indexed to, uint256 value);
    event Approval(address indexed owner, address indexed spender, uint256 value);

    // EIP 2612
    function permit(address owner, address spender, uint256 value, uint256 deadline, uint8 v, bytes32 r, bytes32 s) external;
}


// File @boringcrypto/boring-solidity/contracts/libraries/[email protected]

pragma solidity 0.6.12;
library BoringERC20 {
    function safeSymbol(IERC20 token) internal view returns(string memory) {
        (bool success, bytes memory data) = address(token).staticcall(abi.encodeWithSelector(0x95d89b41));
        return success && data.length > 0 ? abi.decode(data, (string)) : "???";
    }

    function safeName(IERC20 token) internal view returns(string memory) {
        (bool success, bytes memory data) = address(token).staticcall(abi.encodeWithSelector(0x06fdde03));
        return success && data.length > 0 ? abi.decode(data, (string)) : "???";
    }

    function safeDecimals(IERC20 token) internal view returns (uint8) {
        (bool success, bytes memory data) = address(token).staticcall(abi.encodeWithSelector(0x313ce567));
        return success && data.length == 32 ? abi.decode(data, (uint8)) : 18;
    }

    function safeTransfer(IERC20 token, address to, uint256 amount) internal {
        (bool success, bytes memory data) = address(token).call(abi.encodeWithSelector(0xa9059cbb, to, amount));
        require(success && (data.length == 0 || abi.decode(data, (bool))), "BoringERC20: Transfer failed");
    }

    function safeTransferFrom(IERC20 token, address from, address to, uint256 amount) internal {
        (bool success, bytes memory data) = address(token).call(abi.encodeWithSelector(0x23b872dd, from, to, amount));
        require(success && (data.length == 0 || abi.decode(data, (bool))), "BoringERC20: TransferFrom failed");
    }
}


// File contracts/interfaces/IRewarder.sol


pragma solidity 0.6.12;

interface IRewarder {
    using BoringERC20 for IERC20;
    function onBananaReward(uint256 pid, address user, address recipient, uint256 bananaAmount, uint256 newLpAmount) external;
    function pendingTokens(uint256 pid, address user, uint256 bananaAmount) external view returns (IERC20[] memory, uint256[] memory);
}


// File @boringcrypto/boring-solidity/contracts/libraries/[email protected]

pragma solidity 0.6.12;
// a library for performing overflow-safe math, updated with awesomeness from of DappHub (https://github.com/dapphub/ds-math)
library BoringMath {
    function add(uint256 a, uint256 b) internal pure returns (uint256 c) {require((c = a + b) >= b, "BoringMath: Add Overflow");}
    function sub(uint256 a, uint256 b) internal pure returns (uint256 c) {require((c = a - b) <= a, "BoringMath: Underflow");}
    function mul(uint256 a, uint256 b) internal pure returns (uint256 c) {require(b == 0 || (c = a * b)/b == a, "BoringMath: Mul Overflow");}
    function to128(uint256 a) internal pure returns (uint128 c) {
        require(a <= uint128(-1), "BoringMath: uint128 Overflow");
        c = uint128(a);
    }
    function to64(uint256 a) internal pure returns (uint64 c) {
        require(a <= uint64(-1), "BoringMath: uint64 Overflow");
        c = uint64(a);
    }
    function to32(uint256 a) internal pure returns (uint32 c) {
        require(a <= uint32(-1), "BoringMath: uint32 Overflow");
        c = uint32(a);
    }
}

library BoringMath128 {
    function add(uint128 a, uint128 b) internal pure returns (uint128 c) {require((c = a + b) >= b, "BoringMath: Add Overflow");}
    function sub(uint128 a, uint128 b) internal pure returns (uint128 c) {require((c = a - b) <= a, "BoringMath: Underflow");}
}

library BoringMath64 {
    function add(uint64 a, uint64 b) internal pure returns (uint64 c) {require((c = a + b) >= b, "BoringMath: Add Overflow");}
    function sub(uint64 a, uint64 b) internal pure returns (uint64 c) {require((c = a - b) <= a, "BoringMath: Underflow");}
}

library BoringMath32 {
    function add(uint32 a, uint32 b) internal pure returns (uint32 c) {require((c = a + b) >= b, "BoringMath: Add Overflow");}
    function sub(uint32 a, uint32 b) internal pure returns (uint32 c) {require((c = a - b) <= a, "BoringMath: Underflow");}
}


// File @boringcrypto/boring-solidity/contracts/[email protected]

// Audit on 5-Jan-2021 by Keno and BoringCrypto

// P1 - P3: OK
pragma solidity 0.6.12;

// Source: https://github.com/OpenZeppelin/openzeppelin-contracts/blob/master/contracts/access/Ownable.sol + Claimable.sol
// Edited by BoringCrypto

// T1 - T4: OK
contract BoringOwnableData {
    // V1 - V5: OK
    address public owner;
    // V1 - V5: OK
    address public pendingOwner;
}

// T1 - T4: OK
contract BoringOwnable is BoringOwnableData {
    // E1: OK
    event OwnershipTransferred(address indexed previousOwner, address indexed newOwner);

    constructor () public {
        owner = msg.sender;
        emit OwnershipTransferred(address(0), msg.sender);
    }

    // F1 - F9: OK
    // C1 - C21: OK
    function transferOwnership(address newOwner, bool direct, bool renounce) public onlyOwner {
        if (direct) {
            // Checks
            require(newOwner != address(0) || renounce, "Ownable: zero address");

            // Effects
            emit OwnershipTransferred(owner, newOwner);
            owner = newOwner;
            pendingOwner = address(0);
        } else {
            // Effects
            pendingOwner = newOwner;
        }
    }

    // F1 - F9: OK
    // C1 - C21: OK
    function claimOwnership() public {
        address _pendingOwner = pendingOwner;
        
        // Checks
        require(msg.sender == _pendingOwner, "Ownable: caller != pending owner");

        // Effects
        emit OwnershipTransferred(owner, _pendingOwner);
        owner = _pendingOwner;
        pendingOwner = address(0);
    }

    // M1 - M5: OK
    // C1 - C21: OK
    modifier onlyOwner() {
        require(msg.sender == owner, "Ownable: caller is not the owner");
        _;
    }
}


// File @boringcrypto/boring-solidity/contracts/[email protected]

// Audit on 5-Jan-2021 by Keno and BoringCrypto

// P1 - P3: OK
pragma solidity 0.6.12;
pragma experimental ABIEncoderV2;
// solhint-disable avoid-low-level-calls
// T1 - T4: OK
contract BaseBoringBatchable {
    function _getRevertMsg(bytes memory _returnData) internal pure returns (string memory) {
        // If the _res length is less than 68, then the transaction failed silently (without a revert message)
        if (_returnData.length < 68) return "Transaction reverted silently";

        assembly {
            // Slice the sighash.
            _returnData := add(_returnData, 0x04)
        }
        return abi.decode(_returnData, (string)); // All that remains is the revert string
    }    
    
    // F3 - F9: OK
    // F1: External is ok here because this is the batch function, adding it to a batch makes no sense
    // F2: Calls in the batch may be payable, delegatecall operates in the same context, so each call in the batch has access to msg.value
    // C1 - C21: OK
    // C3: The length of the loop is fully under user control, so can't be exploited
    // C7: Delegatecall is only used on the same contract, so it's safe
    function batch(bytes[] calldata calls, bool revertOnFail) external payable returns(bool[] memory successes, bytes[] memory results) {
        // Interactions
        successes = new bool[](calls.length);
        results = new bytes[](calls.length);
        for (uint256 i = 0; i < calls.length; i++) {
            (bool success, bytes memory result) = address(this).delegatecall(calls[i]);
            require(success || !revertOnFail, _getRevertMsg(result));
            successes[i] = success;
            results[i] = result;
        }
    }
}

// T1 - T4: OK
contract BoringBatchable is BaseBoringBatchable {
    // F1 - F9: OK
    // F6: Parameters can be used front-run the permit and the user's permit will fail (due to nonce or other revert)
    //     if part of a batch this could be used to grief once as the second call would not need the permit
    // C1 - C21: OK
    function permitToken(IERC20 token, address from, address to, uint256 amount, uint256 deadline, uint8 v, bytes32 r, bytes32 s) public {
        // Interactions
        // X1 - X5
        token.permit(from, to, amount, deadline, v, r, s);
    }
}


// File contracts/libraries/SignedSafeMath.sol


pragma solidity 0.6.12;

library SignedSafeMath {
    int256 constant private _INT256_MIN = -2**255;

    /**
     * @dev Returns the multiplication of two signed integers, reverting on
     * overflow.
     *
     * Counterpart to Solidity's `*` operator.
     *
     * Requirements:
     *
     * - Multiplication cannot overflow.
     */
    function mul(int256 a, int256 b) internal pure returns (int256) {
        // 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 0;
        }

        require(!(a == -1 && b == _INT256_MIN), "SignedSafeMath: multiplication overflow");

        int256 c = a * b;
        require(c / a == b, "SignedSafeMath: multiplication overflow");

        return c;
    }

    /**
     * @dev Returns the integer division of two signed integers. Reverts 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(int256 a, int256 b) internal pure returns (int256) {
        require(b != 0, "SignedSafeMath: division by zero");
        require(!(b == -1 && a == _INT256_MIN), "SignedSafeMath: division overflow");

        int256 c = a / b;

        return c;
    }

    /**
     * @dev Returns the subtraction of two signed integers, reverting on
     * overflow.
     *
     * Counterpart to Solidity's `-` operator.
     *
     * Requirements:
     *
     * - Subtraction cannot overflow.
     */
    function sub(int256 a, int256 b) internal pure returns (int256) {
        int256 c = a - b;
        require((b >= 0 && c <= a) || (b < 0 && c > a), "SignedSafeMath: subtraction overflow");

        return c;
    }

    /**
     * @dev Returns the addition of two signed integers, reverting on
     * overflow.
     *
     * Counterpart to Solidity's `+` operator.
     *
     * Requirements:
     *
     * - Addition cannot overflow.
     */
    function add(int256 a, int256 b) internal pure returns (int256) {
        int256 c = a + b;
        require((b >= 0 && c >= a) || (b < 0 && c < a), "SignedSafeMath: addition overflow");

        return c;
    }

    function toUInt256(int256 a) internal pure returns (uint256) {
        require(a >= 0, "Integer < 0");
        return uint256(a);
    }
}


// File contracts/interfaces/IMasterApeV2.sol

pragma solidity 0.6.12;

interface IMasterApeV2 {
    using BoringERC20 for IERC20;
    struct UserInfo {
        uint256 amount;     // How many LP tokens the user has provided.
        uint256 rewardDebt; // Reward debt. See explanation below.
    }

    struct PoolInfo {
        IERC20 lpToken;           // Address of LP token contract.
        uint256 allocPoint;       // How many allocation points assigned to this pool. BANANA to distribute per block.
        uint256 lastRewardBlock;  // Last block number that BANANA distribution occurs.
        uint256 accBananaPerShare; // Accumulated BANANA per share, times 1e12. See below.
    }

    function poolInfo(uint256 pid) external view returns (IMasterApeV2.PoolInfo memory);
    function totalAllocPoint() external view returns (uint256);
    function deposit(uint256 _pid, uint256 _amount) external;
}


// File contracts/MasterApeV2Auxiliary.sol


pragma solidity 0.6.12;






/// @notice The (older) MasterApe contract gives out a constant number of BANANA tokens per block.
/// It is the only address with minting rights for BANANA.
/// The idea for this MasterApe V2 (MCV2) contract is therefore to be the owner of a dummy token
/// that is deposited into the MasterApe V1 (MCV1) contract.
/// The allocation point for this pool on MCV1 is the total allocation point for all pools that receive double incentives.
contract MasterApeV2Auxiliary is BoringOwnable, BoringBatchable {
    using BoringMath for uint256;
    using BoringMath128 for uint128;
    using BoringERC20 for IERC20;
    using SignedSafeMath for int256;

    /// @notice Info of each MCV2 user.
    /// `amount` LP token amount the user has provided.
    /// `rewardDebt` The amount of BANANA entitled to the user.
    struct UserInfo {
        uint256 amount;
        int256 rewardDebt;
    }

    /// @notice Info of each MCV2 pool.
    /// `allocPoint` The amount of allocation points assigned to the pool.
    /// Also known as the amount of BANANA to distribute per block.
    struct PoolInfo {
        uint128 accBananaPerShare;
        uint64 lastRewardBlock;
        uint64 allocPoint;
    }

    /// @notice Address of MCV1 contract.
    IMasterApeV2 public immutable MASTER_APE;
    /// @notice Address of BANANA contract.
    IERC20 public immutable BANANA;
    /// @notice The index of MCV2 master pool in MCV1.
    uint256 public immutable MASTER_PID;

    /// @notice Info of each MCV2 pool.
    PoolInfo[] public poolInfo;
    /// @notice Address of the LP token for each MCV2 pool.
    IERC20[] public lpToken;
    /// @notice Address of each `IRewarder` contract in MCV2.
    IRewarder[] public rewarder;

    /// @notice Info of each user that stakes LP tokens.
    mapping (uint256 => mapping (address => UserInfo)) public userInfo;
    /// @dev Total allocation points. Must be the sum of all allocation points in all pools.
    uint256 public totalAllocPoint;

    uint256 private constant MASTERAPE_BANANA_PER_BLOCK = 1e20;
    uint256 private constant ACC_BANANA_PRECISION = 1e12;

    event Deposit(address indexed user, uint256 indexed pid, uint256 amount, address indexed to);
    event Withdraw(address indexed user, uint256 indexed pid, uint256 amount, address indexed to);
    event EmergencyWithdraw(address indexed user, uint256 indexed pid, uint256 amount, address indexed to);
    event Harvest(address indexed user, uint256 indexed pid, uint256 amount);
    event LogPoolAddition(uint256 indexed pid, uint256 allocPoint, IERC20 indexed lpToken, IRewarder indexed rewarder);
    event LogSetPool(uint256 indexed pid, uint256 allocPoint, IRewarder indexed rewarder, bool overwrite);
    event LogUpdatePool(uint256 indexed pid, uint64 lastRewardBlock, uint256 lpSupply, uint256 accBananaPerShare);
    event LogInit();

    /// @param _MASTER_APE The ApeSwap MCV1 contract address.
    /// @param _banana The BANANA token contract address.
    /// @param _MASTER_PID The pool ID of the dummy token on the base MCV1 contract.
    constructor(IMasterApeV2 _MASTER_APE, IERC20 _banana, uint256 _MASTER_PID) public {
        MASTER_APE = _MASTER_APE;
        BANANA = _banana;
        MASTER_PID = _MASTER_PID;
    }

    /// @notice Deposits a dummy token to `MASTER_APE` MCV1. This is required because MCV1 holds the minting rights for BANANA.
    /// Any balance of transaction sender in `dummyToken` is transferred.
    /// The allocation point for the pool on MCV1 is the total allocation point for all pools that receive double incentives.
    /// @param dummyToken The address of the ERC-20 token to deposit into MCV1.
    function init(IERC20 dummyToken) external {
        uint256 balance = dummyToken.balanceOf(msg.sender);
        require(balance != 0, "MasterApeV2: Balance must exceed 0");
        dummyToken.safeTransferFrom(msg.sender, address(this), balance);
        dummyToken.approve(address(MASTER_APE), balance);
        MASTER_APE.deposit(MASTER_PID, balance);
        emit LogInit();
    }

    /// @notice Returns the number of MCV2 pools.
    function poolLength() public view returns (uint256 pools) {
        pools = poolInfo.length;
    }

    /// @notice Add a new LP to the pool. Can only be called by the owner.
    /// DO NOT add the same LP token more than once. Rewards will be messed up if you do.
    /// @param allocPoint AP of the new pool.
    /// @param _lpToken Address of the LP ERC-20 token.
    /// @param _rewarder Address of the rewarder delegate.
    function add(uint256 allocPoint, IERC20 _lpToken, IRewarder _rewarder) public onlyOwner {
        uint256 lastRewardBlock = block.number;
        totalAllocPoint = totalAllocPoint.add(allocPoint);
        lpToken.push(_lpToken);
        rewarder.push(_rewarder);

        poolInfo.push(PoolInfo({
            allocPoint: allocPoint.to64(),
            lastRewardBlock: lastRewardBlock.to64(),
            accBananaPerShare: 0
        }));
        emit LogPoolAddition(lpToken.length.sub(1), allocPoint, _lpToken, _rewarder);
    }

    /// @notice Update the given pool's BANANA allocation point and `IRewarder` contract. Can only be called by the owner.
    /// @param _pid The index of the pool. See `poolInfo`.
    /// @param _allocPoint New AP of the pool.
    /// @param _rewarder Address of the rewarder delegate.
    /// @param overwrite True if _rewarder should be `set`. Otherwise `_rewarder` is ignored.
    function set(uint256 _pid, uint256 _allocPoint, IRewarder _rewarder, bool overwrite) public onlyOwner {
        totalAllocPoint = totalAllocPoint.sub(poolInfo[_pid].allocPoint).add(_allocPoint);
        poolInfo[_pid].allocPoint = _allocPoint.to64();
        if (overwrite) { rewarder[_pid] = _rewarder; }
        emit LogSetPool(_pid, _allocPoint, overwrite ? _rewarder : rewarder[_pid], overwrite);
    }

    /// @notice View function to see pending BANANA on frontend.
    /// @param _pid The index of the pool. See `poolInfo`.
    /// @param _user Address of user.
    /// @return pending BANANA reward for a given user.
    function pendingBanana(uint256 _pid, address _user) external view returns (uint256 pending) {
        PoolInfo memory pool = poolInfo[_pid];
        UserInfo storage user = userInfo[_pid][_user];
        uint256 accBananaPerShare = pool.accBananaPerShare;
        uint256 lpSupply = lpToken[_pid].balanceOf(address(this));
        if (block.number > pool.lastRewardBlock && lpSupply != 0) {
            uint256 blocks = block.number.sub(pool.lastRewardBlock);
            uint256 bananaReward = blocks.mul(bananaPerBlock()).mul(pool.allocPoint) / totalAllocPoint;
            accBananaPerShare = accBananaPerShare.add(bananaReward.mul(ACC_BANANA_PRECISION) / lpSupply);
        }
        pending = int256(user.amount.mul(accBananaPerShare) / ACC_BANANA_PRECISION).sub(user.rewardDebt).toUInt256();
    }

    /// @notice Update reward variables for all pools. Be careful of gas spending!
    /// @param pids Pool IDs of all to be updated. Make sure to update all active pools.
    function massUpdatePools(uint256[] calldata pids) external {
        uint256 len = pids.length;
        for (uint256 i = 0; i < len; ++i) {
            updatePool(pids[i]);
        }
    }

    /// @notice Calculates and returns the `amount` of BANANA per block.
    function bananaPerBlock() public view returns (uint256 amount) {
        amount = uint256(MASTERAPE_BANANA_PER_BLOCK)
            .mul(MASTER_APE.poolInfo(MASTER_PID).allocPoint) / MASTER_APE.totalAllocPoint();
    }

    /// @notice Update reward variables of the given pool.
    /// @param pid The index of the pool. See `poolInfo`.
    /// @return pool Returns the pool that was updated.
    function updatePool(uint256 pid) public returns (PoolInfo memory pool) {
        pool = poolInfo[pid];
        if (block.number > pool.lastRewardBlock) {
            uint256 lpSupply = lpToken[pid].balanceOf(address(this));
            if (lpSupply > 0) {
                uint256 blocks = block.number.sub(pool.lastRewardBlock);
                uint256 bananaReward = blocks.mul(bananaPerBlock()).mul(pool.allocPoint) / totalAllocPoint;
                pool.accBananaPerShare = pool.accBananaPerShare.add((bananaReward.mul(ACC_BANANA_PRECISION) / lpSupply).to128());
            }
            pool.lastRewardBlock = block.number.to64();
            poolInfo[pid] = pool;
            emit LogUpdatePool(pid, pool.lastRewardBlock, lpSupply, pool.accBananaPerShare);
        }
    }

    /// @notice Deposit LP tokens to MCV2 for BANANA allocation.
    /// @param pid The index of the pool. See `poolInfo`.
    /// @param amount LP token amount to deposit.
    /// @param to The receiver of `amount` deposit benefit.
    function deposit(uint256 pid, uint256 amount, address to) public {
        PoolInfo memory pool = updatePool(pid);
        UserInfo storage user = userInfo[pid][to];

        // Effects
        user.amount = user.amount.add(amount);
        user.rewardDebt = user.rewardDebt.add(int256(amount.mul(pool.accBananaPerShare) / ACC_BANANA_PRECISION));

        // Interactions
        IRewarder _rewarder = rewarder[pid];
        if (address(_rewarder) != address(0)) {
            _rewarder.onBananaReward(pid, to, to, 0, user.amount);
        }

        lpToken[pid].safeTransferFrom(msg.sender, address(this), amount);

        emit Deposit(msg.sender, pid, amount, to);
    }

    /// @notice Withdraw LP tokens from MCV2.
    /// @param pid The index of the pool. See `poolInfo`.
    /// @param amount LP token amount to withdraw.
    /// @param to Receiver of the LP tokens.
    function withdraw(uint256 pid, uint256 amount, address to) public {
        PoolInfo memory pool = updatePool(pid);
        UserInfo storage user = userInfo[pid][msg.sender];

        // Effects
        user.rewardDebt = user.rewardDebt.sub(int256(amount.mul(pool.accBananaPerShare) / ACC_BANANA_PRECISION));
        user.amount = user.amount.sub(amount);

        // Interactions
        IRewarder _rewarder = rewarder[pid];
        if (address(_rewarder) != address(0)) {
            _rewarder.onBananaReward(pid, msg.sender, to, 0, user.amount);
        }
        
        lpToken[pid].safeTransfer(to, amount);

        emit Withdraw(msg.sender, pid, amount, to);
    }

    /// @notice Harvest proceeds for transaction sender to `to`.
    /// @param pid The index of the pool. See `poolInfo`.
    /// @param to Receiver of BANANA rewards.
    function harvest(uint256 pid, address to) public {
        PoolInfo memory pool = updatePool(pid);
        UserInfo storage user = userInfo[pid][msg.sender];
        int256 accumulatedBanana = int256(user.amount.mul(pool.accBananaPerShare) / ACC_BANANA_PRECISION);
        uint256 _pendingBanana = accumulatedBanana.sub(user.rewardDebt).toUInt256();

        // Effects
        user.rewardDebt = accumulatedBanana;

        // Interactions
        if (_pendingBanana != 0) {
            BANANA.safeTransfer(to, _pendingBanana);
        }
        
        IRewarder _rewarder = rewarder[pid];
        if (address(_rewarder) != address(0)) {
            _rewarder.onBananaReward( pid, msg.sender, to, _pendingBanana, user.amount);
        }

        emit Harvest(msg.sender, pid, _pendingBanana);
    }
    
    /// @notice Withdraw LP tokens from MCV2 and harvest proceeds for transaction sender to `to`.
    /// @param pid The index of the pool. See `poolInfo`.
    /// @param amount LP token amount to withdraw.
    /// @param to Receiver of the LP tokens and BANANA rewards.
    function withdrawAndHarvest(uint256 pid, uint256 amount, address to) public {
        PoolInfo memory pool = updatePool(pid);
        UserInfo storage user = userInfo[pid][msg.sender];
        int256 accumulatedBanana = int256(user.amount.mul(pool.accBananaPerShare) / ACC_BANANA_PRECISION);
        uint256 _pendingBanana = accumulatedBanana.sub(user.rewardDebt).toUInt256();

        // Effects
        user.rewardDebt = accumulatedBanana.sub(int256(amount.mul(pool.accBananaPerShare) / ACC_BANANA_PRECISION));
        user.amount = user.amount.sub(amount);
        
        // Interactions
        BANANA.safeTransfer(to, _pendingBanana);

        IRewarder _rewarder = rewarder[pid];
        if (address(_rewarder) != address(0)) {
            _rewarder.onBananaReward(pid, msg.sender, to, _pendingBanana, user.amount);
        }

        lpToken[pid].safeTransfer(to, amount);

        emit Withdraw(msg.sender, pid, amount, to);
        emit Harvest(msg.sender, pid, _pendingBanana);
    }

    /// @notice Harvests BANANA from `MASTER_APE` MCV1 and pool `MASTER_PID` to this MCV2 contract.
    function harvestFromMasterApeV2() public {
        MASTER_APE.deposit(MASTER_PID, 0);
    }

    /// @notice Withdraw without caring about rewards. EMERGENCY ONLY.
    /// @param pid The index of the pool. See `poolInfo`.
    /// @param to Receiver of the LP tokens.
    function emergencyWithdraw(uint256 pid, address to) public {
        UserInfo storage user = userInfo[pid][msg.sender];
        uint256 amount = user.amount;
        user.amount = 0;
        user.rewardDebt = 0;

        IRewarder _rewarder = rewarder[pid];
        if (address(_rewarder) != address(0)) {
            _rewarder.onBananaReward(pid, msg.sender, to, 0, 0);
        }

        // Note: transfer can fail or succeed if `amount` is zero.
        lpToken[pid].safeTransfer(to, amount);
        emit EmergencyWithdraw(msg.sender, pid, amount, to);
    }
}


// File contracts/mocks/MiniComplexRewarderTime.sol


pragma solidity 0.6.12;





/// @author @0xKeno
contract MiniComplexRewarderTime is IRewarder,  BoringOwnable{
    using BoringMath for uint256;
    using BoringMath128 for uint128;
    using BoringERC20 for IERC20;

    IERC20 public immutable rewardToken;

    /// @notice Info of each MCV2 user.
    /// `amount` LP token amount the user has provided.
    /// `rewardDebt` The amount of BANANA entitled to the user.
    struct UserInfo {
        uint256 amount;
        uint256 rewardDebt;
    }

    /// @notice Info of each MCV2 pool.
    /// `allocPoint` The amount of allocation points assigned to the pool.
    /// Also known as the amount of BANANA to distribute per block.
    struct PoolInfo {
        uint128 accBananaPerShare;
        uint64 lastRewardTime;
        uint64 allocPoint;
    }

    /// @notice Info of each pool.
    mapping (uint256 => PoolInfo) public poolInfo;

    uint256[] public poolIds;

    /// @notice Info of each user that stakes LP tokens.
    mapping (uint256 => mapping (address => UserInfo)) public userInfo;
    /// @dev Total allocation points. Must be the sum of all allocation points in all pools.
    uint256 totalAllocPoint;

    uint256 public rewardPerSecond;
    uint256 private constant ACC_TOKEN_PRECISION = 1e12;

    address public immutable MINIAPE_V2;

    event LogOnReward(address indexed user, uint256 indexed pid, uint256 amount, address indexed to);
    event LogPoolAddition(uint256 indexed pid, uint256 allocPoint);
    event LogSetPool(uint256 indexed pid, uint256 allocPoint);
    event LogUpdatePool(uint256 indexed pid, uint64 lastRewardTime, uint256 lpSupply, uint256 accBananaPerShare);
    event LogRewardPerSecond(uint256 rewardPerSecond);
    event LogInit();

    constructor (IERC20 _rewardToken, uint256 _rewardPerSecond, address _MINIAPE_V2) public {
        rewardToken = _rewardToken;
        rewardPerSecond = _rewardPerSecond;
        MINIAPE_V2 = _MINIAPE_V2;
    }


    function onBananaReward (uint256 pid, address _user, address to, uint256, uint256 lpToken) onlyMAV2 override external {
        PoolInfo memory pool = updatePool(pid);
        UserInfo storage user = userInfo[pid][_user];
        uint256 pending;
        if (user.amount > 0) {
            pending =
                (user.amount.mul(pool.accBananaPerShare) / ACC_TOKEN_PRECISION).sub(
                    user.rewardDebt
                );
            rewardToken.safeTransfer(to, pending);
        }
        user.amount = lpToken;
        user.rewardDebt = lpToken.mul(pool.accBananaPerShare) / ACC_TOKEN_PRECISION;
        emit LogOnReward(_user, pid, pending, to);
    }
    
    function pendingTokens(uint256 pid, address user, uint256) override external view returns (IERC20[] memory rewardTokens, uint256[] memory rewardAmounts) {
        IERC20[] memory _rewardTokens = new IERC20[](1);
        _rewardTokens[0] = (rewardToken);
        uint256[] memory _rewardAmounts = new uint256[](1);
        _rewardAmounts[0] = pendingToken(pid, user);
        return (_rewardTokens, _rewardAmounts);
    }

    /// @notice Sets the banana per second to be distributed. Can only be called by the owner.
    /// @param _rewardPerSecond The amount of Banana to be distributed per second.
    function setRewardPerSecond(uint256 _rewardPerSecond) public onlyOwner {
        rewardPerSecond = _rewardPerSecond;
        emit LogRewardPerSecond(_rewardPerSecond);
    }

    modifier onlyMAV2 {
        require(
            msg.sender == MINIAPE_V2,
            "Only MAV2 can call this function."
        );
        _;
    }

    /// @notice Returns the number of MCV2 pools.
    function poolLength() public view returns (uint256 pools) {
        pools = poolIds.length;
    }

    /// @notice Add a new LP to the pool. Can only be called by the owner.
    /// DO NOT add the same LP token more than once. Rewards will be messed up if you do.
    /// @param allocPoint AP of the new pool.
    /// @param _pid Pid on MCV2
    function add(uint256 allocPoint, uint256 _pid) public onlyOwner {
        require(poolInfo[_pid].lastRewardTime == 0, "Pool already exists");
        uint256 lastRewardTime = block.timestamp;
        totalAllocPoint = totalAllocPoint.add(allocPoint);

        poolInfo[_pid] = PoolInfo({
            allocPoint: allocPoint.to64(),
            lastRewardTime: lastRewardTime.to64(),
            accBananaPerShare: 0
        });
        poolIds.push(_pid);
        emit LogPoolAddition(_pid, allocPoint);
    }

    /// @notice Update the given pool's BANANA allocation point and `IRewarder` contract. Can only be called by the owner.
    /// @param _pid The index of the pool. See `poolInfo`.
    /// @param _allocPoint New AP of the pool.
    function set(uint256 _pid, uint256 _allocPoint) public onlyOwner {
        totalAllocPoint = totalAllocPoint.sub(poolInfo[_pid].allocPoint).add(_allocPoint);
        poolInfo[_pid].allocPoint = _allocPoint.to64();
        emit LogSetPool(_pid, _allocPoint);
    }

    /// @notice View function to see pending Token
    /// @param _pid The index of the pool. See `poolInfo`.
    /// @param _user Address of user.
    /// @return pending BANANA reward for a given user.
    function pendingToken(uint256 _pid, address _user) public view returns (uint256 pending) {
        PoolInfo memory pool = poolInfo[_pid];
        UserInfo storage user = userInfo[_pid][_user];
        uint256 accBananaPerShare = pool.accBananaPerShare;
        uint256 lpSupply = MasterApeV2Auxiliary(MINIAPE_V2).lpToken(_pid).balanceOf(MINIAPE_V2);
        if (block.timestamp > pool.lastRewardTime && lpSupply != 0) {
            uint256 time = block.timestamp.sub(pool.lastRewardTime);
            uint256 bananaReward = time.mul(rewardPerSecond).mul(pool.allocPoint) / totalAllocPoint;
            accBananaPerShare = accBananaPerShare.add(bananaReward.mul(ACC_TOKEN_PRECISION) / lpSupply);
        }
        pending = (user.amount.mul(accBananaPerShare) / ACC_TOKEN_PRECISION).sub(user.rewardDebt);
    }

    /// @notice Update reward variables for all pools. Be careful of gas spending!
    /// @param pids Pool IDs of all to be updated. Make sure to update all active pools.
    function massUpdatePools(uint256[] calldata pids) external {
        uint256 len = pids.length;
        for (uint256 i = 0; i < len; ++i) {
            updatePool(pids[i]);
        }
    }

    /// @notice Update reward variables of the given pool.
    /// @param pid The index of the pool. See `poolInfo`.
    /// @return pool Returns the pool that was updated.
    function updatePool(uint256 pid) public returns (PoolInfo memory pool) {
        pool = poolInfo[pid];
        if (block.timestamp > pool.lastRewardTime) {
            uint256 lpSupply = MasterApeV2Auxiliary(MINIAPE_V2).lpToken(pid).balanceOf(MINIAPE_V2);

            if (lpSupply > 0) {
                uint256 time = block.timestamp.sub(pool.lastRewardTime);
                uint256 bananaReward = time.mul(rewardPerSecond).mul(pool.allocPoint) / totalAllocPoint;
                pool.accBananaPerShare = pool.accBananaPerShare.add((bananaReward.mul(ACC_TOKEN_PRECISION) / lpSupply).to128());
            }
            pool.lastRewardTime = block.timestamp.to64();
            poolInfo[pid] = pool;
            emit LogUpdatePool(pid, pool.lastRewardTime, lpSupply, pool.accBananaPerShare);
        }
    }

}

Contract Security Audit

Contract ABI

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IERC20","name":"_rewardToken","type":"address"},{"internalType":"uint256","name":"_rewardPerSecond","type":"uint256"},{"internalType":"address","name":"_MINIAPE_V2","type":"address"}],"stateMutability":"nonpayable","type":"constructor"},{"anonymous":false,"inputs":[],"name":"LogInit","type":"event"},{"anonymous":false,"inputs":[{"indexed":true,"internalType":"address","name":"user","type":"address"},{"indexed":true,"internalType":"uint256","name":"pid","type":"uint256"},{"indexed":false,"internalType":"uint256","name":"amount","type":"uint256"},{"indexed":true,"internalType":"address","name":"to","type":"address"}],"name":"LogOnReward","type":"event"},{"anonymous":false,"inputs":[{"indexed":true,"internalType":"uint256","name":"pid","type":"uint256"},{"indexed":false,"internalType":"uint256","name":"allocPoint","type":"uint256"}],"name":"LogPoolAddition","type":"event"},{"anonymous":false,"inputs":[{"indexed":false,"internalType":"uint256","name":"rewardPerSecond","type":"uint256"}],"name":"LogRewardPerSecond","type":"event"},{"anonymous":false,"inputs":[{"indexed":true,"internalType":"uint256","name":"pid","type":"uint256"},{"indexed":false,"internalType":"uint256","name":"allocPoint","type":"uint256"}],"name":"LogSetPool","type":"event"},{"anonymous":false,"inputs":[{"indexed":true,"internalType":"uint256","name":"pid","type":"uint256"},{"indexed":false,"internalType":"uint64","name":"lastRewardTime","type":"uint64"},{"indexed":false,"internalType":"uint256","name":"lpSupply","type":"uint256"},{"indexed":false,"internalType":"uint256","name":"accBananaPerShare","type":"uint256"}],"name":"LogUpdatePool","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":[],"name":"MINIAPE_V2","outputs":[{"internalType":"address","name":"","type":"address"}],"stateMutability":"view","type":"function"},{"inputs":[{"internalType":"uint256","name":"allocPoint","type":"uint256"},{"internalType":"uint256","name":"_pid","type":"uint256"}],"name":"add","outputs":[],"stateMutability":"nonpayable","type":"function"},{"inputs":[],"name":"claimOwnership","outputs":[],"stateMutability":"nonpayable","type":"function"},{"inputs":[{"internalType":"uint256[]","name":"pids","type":"uint256[]"}],"name":"massUpdatePools","outputs":[],"stateMutability":"nonpayable","type":"function"},{"inputs":[{"internalType":"uint256","name":"pid","type":"uint256"},{"internalType":"address","name":"_user","type":"address"},{"internalType":"address","name":"to","type":"address"},{"internalType":"uint256","name":"","type":"uint256"},{"internalType":"uint256","name":"lpToken","type":"uint256"}],"name":"onBananaReward","outputs":[],"stateMutability":"nonpayable","type":"function"},{"inputs":[],"name":"owner","outputs":[{"internalType":"address","name":"","type":"address"}],"stateMutability":"view","type":"function"},{"inputs":[],"name":"pendingOwner","outputs":[{"internalType":"address","name":"","type":"address"}],"stateMutability":"view","type":"function"},{"inputs":[{"internalType":"uint256","name":"_pid","type":"uint256"},{"internalType":"address","name":"_user","type":"address"}],"name":"pendingToken","outputs":[{"internalType":"uint256","name":"pending","type":"uint256"}],"stateMutability":"view","type":"function"},{"inputs":[{"internalType":"uint256","name":"pid","type":"uint256"},{"internalType":"address","name":"user","type":"address"},{"internalType":"uint256","name":"","type":"uint256"}],"name":"pendingTokens","outputs":[{"internalType":"contract IERC20[]","name":"rewardTokens","type":"address[]"},{"internalType":"uint256[]","name":"rewardAmounts","type":"uint256[]"}],"stateMutability":"view","type":"function"},{"inputs":[{"internalType":"uint256","name":"","type":"uint256"}],"name":"poolIds","outputs":[{"internalType":"uint256","name":"","type":"uint256"}],"stateMutability":"view","type":"function"},{"inputs":[{"internalType":"uint256","name":"","type":"uint256"}],"name":"poolInfo","outputs":[{"internalType":"uint128","name":"accBananaPerShare","type":"uint128"},{"internalType":"uint64","name":"lastRewardTime","type":"uint64"},{"internalType":"uint64","name":"allocPoint","type":"uint64"}],"stateMutability":"view","type":"function"},{"inputs":[],"name":"poolLength","outputs":[{"internalType":"uint256","name":"pools","type":"uint256"}],"stateMutability":"view","type":"function"},{"inputs":[],"name":"rewardPerSecond","outputs":[{"internalType":"uint256","name":"","type":"uint256"}],"stateMutability":"view","type":"function"},{"inputs":[],"name":"rewardToken","outputs":[{"internalType":"contract IERC20","name":"","type":"address"}],"stateMutability":"view","type":"function"},{"inputs":[{"internalType":"uint256","name":"_pid","type":"uint256"},{"internalType":"uint256","name":"_allocPoint","type":"uint256"}],"name":"set","outputs":[],"stateMutability":"nonpayable","type":"function"},{"inputs":[{"internalType":"uint256","name":"_rewardPerSecond","type":"uint256"}],"name":"setRewardPerSecond","outputs":[],"stateMutability":"nonpayable","type":"function"},{"inputs":[{"internalType":"address","name":"newOwner","type":"address"},{"internalType":"bool","name":"direct","type":"bool"},{"internalType":"bool","name":"renounce","type":"bool"}],"name":"transferOwnership","outputs":[],"stateMutability":"nonpayable","type":"function"},{"inputs":[{"internalType":"uint256","name":"pid","type":"uint256"}],"name":"updatePool","outputs":[{"components":[{"internalType":"uint128","name":"accBananaPerShare","type":"uint128"},{"internalType":"uint64","name":"lastRewardTime","type":"uint64"},{"internalType":"uint64","name":"allocPoint","type":"uint64"}],"internalType":"struct MiniComplexRewarderTime.PoolInfo","name":"pool","type":"tuple"}],"stateMutability":"nonpayable","type":"function"},{"inputs":[{"internalType":"uint256","name":"","type":"uint256"},{"internalType":"address","name":"","type":"address"}],"name":"userInfo","outputs":[{"internalType":"uint256","name":"amount","type":"uint256"},{"internalType":"uint256","name":"rewardDebt","type":"uint256"}],"stateMutability":"view","type":"function"}]

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Constructor Arguments (ABI-Encoded and is the last bytes of the Contract Creation Code above)

0000000000000000000000000d500b1d8e8ef31e21c99d1db9a6444d3adf127000000000000000000000000000000000000000000000000000005af3107a400000000000000000000000000054aff400858dcac39797a81894d9920f16972d1d

-----Decoded View---------------
Arg [0] : _rewardToken (address): 0x0d500b1d8e8ef31e21c99d1db9a6444d3adf1270
Arg [1] : _rewardPerSecond (uint256): 100000000000000
Arg [2] : _MINIAPE_V2 (address): 0x54aff400858dcac39797a81894d9920f16972d1d

-----Encoded View---------------
3 Constructor Arguments found :
Arg [0] : 0000000000000000000000000d500b1d8e8ef31e21c99d1db9a6444d3adf1270
Arg [1] : 00000000000000000000000000000000000000000000000000005af3107a4000
Arg [2] : 00000000000000000000000054aff400858dcac39797a81894d9920f16972d1d


Deployed ByteCode Sourcemap

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Swarm Source

ipfs://73ce3b93b4c1a843ec8df36150439513fa6cad741b7cdb71e316cce16e2fcbf7
Block Transaction Gas Used Reward
Age Block Fee Address BC Fee Address Voting Power Jailed Incoming
Block Uncle Number Difficulty Gas Used Reward
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