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// This contract is part of Zellic’s smart contract dataset, which is a collection of publicly available contract code gathered as of March 2023.

// File: ProofOfRug.sol



pragma solidity 0.8.15;

/*



Proof Of Rug is a conglomerate of tools designed to provide a safer experience for high risk investing in early stage projects.





   https://proofofrug.org/

   https://twitter.com/ProofOfRugETH

   https://t.me/ProofOfRug



/**

 * @dev Interface of the ERC20 standard as defined in the EIP.

 */
interface IERC20 {
    function totalSupply() external view returns (uint256);
    function balanceOf(address account) external view returns (uint256);
    function transfer(address recipient, uint256 amount) external returns (bool);
    function allowance(address owner, address spender) external view returns (uint256);
    function approve(address spender, uint256 amount) external returns (bool);
    function transferFrom(

        address sender,

        address recipient,

        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);
}

/**

 * @dev Interface for the optional metadata functions from the ERC20 standard.

 *

 * _Available since v4.1._

 */
interface IERC20Metadata is IERC20 {
    function name() external view returns (string memory);
    function symbol() external view returns (string memory);
    function decimals() external view returns (uint8);
}



/**

 * @dev Provides information about the current execution context, including the

 * sender of the transaction and its data. 

 *

 * This contract is only required for intermediate, library-like contracts.

 */

abstract contract Context {
    function _msgSender() internal view virtual returns (address) {
        return msg.sender;
    }

    function _msgData() internal view virtual returns (bytes calldata) {
        return msg.data;
    }
}

/**

 * @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.

 */
contract Ownable is Context {
    address private _owner;
    address private _previousOwner;

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

    /**

     * @dev Initializes the contract setting the deployer as the initial owner.

     */
    constructor () {
        address msgSender = _msgSender();
        _owner = msgSender;
        emit OwnershipTransferred(address(0), msgSender);
    }

    /**

     * @dev Returns the address of the current owner.

     */
    function owner() public view 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 Implementation of the {IERC20} interface.

 */
contract ERC20 is Context, IERC20, IERC20Metadata {
    mapping(address => uint256) private _balances;

    mapping(address => mapping(address => uint256)) private _allowances;

    uint256 private _totalSupply;

    string private _name;
    string private _symbol;

    /**

     * @dev Sets the values for {name} and {symbol}.

     */
    constructor(string memory name_, string memory symbol_) {
        _name = name_;
        _symbol = symbol_;
    }

    /**

     * @dev Returns the name of the token.

     */
    function name() public view virtual override returns (string memory) {
        return _name;
    }

    /**

     * @dev Returns the symbol of the token, usually a shorter version of the

     * name.

     */
    function symbol() public view virtual override returns (string memory) {
        return _symbol;
    }

    /**

     * @dev Returns the number of decimals used to get its user representation.

     */
    function decimals() public view virtual override returns (uint8) {
        return 18;
    }

    /**

     * @dev See {IERC20-totalSupply}.

     */
    function totalSupply() public view virtual override returns (uint256) {
        return _totalSupply;
    }

    /**

     * @dev See {IERC20-balanceOf}.

     */
    function balanceOf(address account) public view virtual override returns (uint256) {
        return _balances[account];
    }

    /**

     * @dev See {IERC20-transfer}.

     *

     * Requirements:

     *

     * - `recipient` cannot be the zero address.

     * - the caller must have a balance of at least `amount`.

     */
    function transfer(address recipient, uint256 amount) public virtual override returns (bool) {
        _transfer(_msgSender(), recipient, amount);
        return true;
    }

    /**

     * @dev See {IERC20-allowance}.

     */
    function allowance(address owner, address spender) public view virtual override returns (uint256) {
        return _allowances[owner][spender];
    }

    /**

     * @dev See {IERC20-approve}.

     *

     * Requirements:

     *

     * - `spender` cannot be the zero address.

     */
    function approve(address spender, uint256 amount) public virtual override returns (bool) {
        _approve(_msgSender(), spender, amount);
        return true;
    }

    /**

     * @dev See {IERC20-transferFrom}.

     *

     * Emits an {Approval} event indicating the updated allowance. This is not

     * required by the EIP. See the note at the beginning of {ERC20}.

     */
    function transferFrom(

        address sender,

        address recipient,

        uint256 amount

    ) public virtual override returns (bool) {
        _transfer(sender, recipient, amount);

        uint256 currentAllowance = _allowances[sender][_msgSender()];
        require(currentAllowance >= amount, "ERC20: transfer amount exceeds allowance");
        unchecked {
            _approve(sender, _msgSender(), currentAllowance - amount);
        }

        return true;
    }


    /**

     * @dev Moves `amount` of tokens from `sender` to `recipient`.



     */
    function _transfer(

        address sender,

        address recipient,

        uint256 amount

    ) internal virtual {
        require(sender != address(0), "ERC20: transfer from the zero address");
        require(recipient != address(0), "ERC20: transfer to the zero address");

        _beforeTokenTransfer(sender, recipient, amount);

        uint256 senderBalance = _balances[sender];
        require(senderBalance >= amount, "ERC20: transfer amount exceeds balance");
        unchecked {
            _balances[sender] = senderBalance - amount;
        }
        _balances[recipient] += amount;

        emit Transfer(sender, recipient, amount);

        _afterTokenTransfer(sender, recipient, amount);
    }

    /** @dev Creates `amount` tokens and assigns them to `account`, increasing

     * the total supply.

     */
    function _createInitialTotalSupply(address account, uint256 amount) internal virtual {
        require(account != address(0));

        _beforeTokenTransfer(address(0), account, amount);

        _totalSupply += amount;
        _balances[account] += amount;
        emit Transfer(address(0), account, amount);

        _afterTokenTransfer(address(0), account, amount);
    }

    /**

     * @dev Sets `amount` as the allowance of `spender` over the `owner` s tokens.

     */
    function _approve(

        address owner,

        address spender,

        uint256 amount

    ) internal virtual {
        require(owner != address(0), "ERC20: approve from the zero address");
        require(spender != address(0), "ERC20: approve to the zero address");

        _allowances[owner][spender] = amount;
        emit Approval(owner, spender, amount);
    }

    /**

     * @dev Hook that is called before any transfer of tokens

     */
    function _beforeTokenTransfer(

        address from,

        address to,

        uint256 amount

    ) internal virtual {}

    /**

     * @dev Hook that is called after any transfer of tokens.

     */
    function _afterTokenTransfer(

        address from,

        address to,

        uint256 amount

    ) internal virtual {}
}


interface IUniswapV2Router01 {
    function factory() external pure returns (address);
    function WETH() external pure returns (address);

    function addLiquidity(

        address tokenA,

        address tokenB,

        uint amountADesired,

        uint amountBDesired,

        uint amountAMin,

        uint amountBMin,

        address to,

        uint deadline

    ) external returns (uint amountA, uint amountB, uint liquidity);
    function addLiquidityETH(

        address token,

        uint amountTokenDesired,

        uint amountTokenMin,

        uint amountETHMin,

        address to,

        uint deadline

    ) external payable returns (uint amountToken, uint amountETH, uint liquidity);
    function removeLiquidity(

        address tokenA,

        address tokenB,

        uint liquidity,

        uint amountAMin,

        uint amountBMin,

        address to,

        uint deadline

    ) external returns (uint amountA, uint amountB);
    function removeLiquidityETH(

        address token,

        uint liquidity,

        uint amountTokenMin,

        uint amountETHMin,

        address to,

        uint deadline

    ) external returns (uint amountToken, uint amountETH);
    function removeLiquidityWithPermit(

        address tokenA,

        address tokenB,

        uint liquidity,

        uint amountAMin,

        uint amountBMin,

        address to,

        uint deadline,

        bool approveMax, uint8 v, bytes32 r, bytes32 s

    ) external returns (uint amountA, uint amountB);
    function removeLiquidityETHWithPermit(

        address token,

        uint liquidity,

        uint amountTokenMin,

        uint amountETHMin,

        address to,

        uint deadline,

        bool approveMax, uint8 v, bytes32 r, bytes32 s

    ) external returns (uint amountToken, uint amountETH);
    function swapExactTokensForTokens(

        uint amountIn,

        uint amountOutMin,

        address[] calldata path,

        address to,

        uint deadline

    ) external returns (uint[] memory amounts);
    function swapTokensForExactTokens(

        uint amountOut,

        uint amountInMax,

        address[] calldata path,

        address to,

        uint deadline

    ) external returns (uint[] memory amounts);
    function swapExactETHForTokens(uint amountOutMin, address[] calldata path, address to, uint deadline)

        external

        payable

        returns (uint[] memory amounts);
    function swapTokensForExactETH(uint amountOut, uint amountInMax, address[] calldata path, address to, uint deadline)

        external

        returns (uint[] memory amounts);
    function swapExactTokensForETH(uint amountIn, uint amountOutMin, address[] calldata path, address to, uint deadline)

        external

        returns (uint[] memory amounts);
    function swapETHForExactTokens(uint amountOut, address[] calldata path, address to, uint deadline)

        external

        payable

        returns (uint[] memory amounts);

    function quote(uint amountA, uint reserveA, uint reserveB) external pure returns (uint amountB);
    function getAmountOut(uint amountIn, uint reserveIn, uint reserveOut) external pure returns (uint amountOut);
    function getAmountIn(uint amountOut, uint reserveIn, uint reserveOut) external pure returns (uint amountIn);
    function getAmountsOut(uint amountIn, address[] calldata path) external view returns (uint[] memory amounts);
    function getAmountsIn(uint amountOut, address[] calldata path) external view returns (uint[] memory amounts);
}

interface IUniswapV2Router02 is IUniswapV2Router01 {
    function removeLiquidityETHSupportingFeeOnTransferTokens(

        address token,

        uint liquidity,

        uint amountTokenMin,

        uint amountETHMin,

        address to,

        uint deadline

    ) external returns (uint amountETH);
    function removeLiquidityETHWithPermitSupportingFeeOnTransferTokens(

        address token,

        uint liquidity,

        uint amountTokenMin,

        uint amountETHMin,

        address to,

        uint deadline,

        bool approveMax, uint8 v, bytes32 r, bytes32 s

    ) external returns (uint amountETH);

    function swapExactTokensForTokensSupportingFeeOnTransferTokens(

        uint amountIn,

        uint amountOutMin,

        address[] calldata path,

        address to,

        uint deadline

    ) external;
    function swapExactETHForTokensSupportingFeeOnTransferTokens(

        uint amountOutMin,

        address[] calldata path,

        address to,

        uint deadline

    ) external payable;
    function swapExactTokensForETHSupportingFeeOnTransferTokens(

        uint amountIn,

        uint amountOutMin,

        address[] calldata path,

        address to,

        uint deadline

    ) external;
}

interface IUniswapV2Factory {
    event PairCreated(address indexed token0, address indexed token1, address pair, uint);

    function feeTo() external view returns (address);
    function feeToSetter() external view returns (address);

    function getPair(address tokenA, address tokenB) external view returns (address pair);
    function allPairs(uint) external view returns (address pair);
    function allPairsLength() external view returns (uint);

    function createPair(address tokenA, address tokenB) external returns (address pair);

    function setFeeTo(address) external;
    function setFeeToSetter(address) external;
}

/**

 * @dev Wrappers over Solidity's arithmetic operations.

 *

 * NOTE: `SignedSafeMath` is no longer needed starting with Solidity 0.8. The compiler

 * now has built in overflow checking.

 */
library SignedSafeMath {
    /**

     * @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) {
        return a * b;
    }

    /**

     * @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.

     *

     * Requirements:

     *

     * - The divisor cannot be zero.

     */
    function div(int256 a, int256 b) internal pure returns (int256) {
        return a / b;
    }

    /**

     * @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) {
        return a - b;
    }

    /**

     * @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) {
        return a + b;
    }
}

// CAUTION
// This version of SafeMath should only be used with Solidity 0.8 or later,
// because it relies on the compiler's built in overflow checks.

/**

 * @dev Wrappers over Solidity's arithmetic operations.

 *

 * NOTE: `SafeMath` is no longer needed starting with Solidity 0.8. The compiler

 * now has built in overflow checking.

 */
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) {
        unchecked {
            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) {
        unchecked {
            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) {
        unchecked {
            // 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) {
        unchecked {
            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) {
        unchecked {
            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) {
        return a + b;
    }

    /**

     * @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) {
        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) {
        return a * b;
    }

    /**

     * @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.

     *

     * Requirements:

     *

     * - The divisor cannot be zero.

     */
    function div(uint256 a, uint256 b) internal pure returns (uint256) {
        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) {
        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) {
        unchecked {
            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.

     *

     * 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) {
        unchecked {
            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) {
        unchecked {
            require(b > 0, errorMessage);
            return a % b;
        }
    }
}

/**

 * @dev Wrappers over Solidity's uintXX/intXX casting operators with added overflow

 * checks.

 */
library SafeCast {
    /**

     * @dev Returns the downcasted uint224 from uint256, reverting on

     * overflow (when the input is greater than largest uint224).

     *

     * Counterpart to Solidity's `uint224` operator.

     *

     * Requirements:

     *

     * - input must fit into 224 bits

     */
    function toUint224(uint256 value) internal pure returns (uint224) {
        require(value <= type(uint224).max, "SafeCast: value doesn't fit in 224 bits");
        return uint224(value);
    }

    /**

     * @dev Returns the downcasted uint128 from uint256, reverting on

     * overflow (when the input is greater than largest uint128).

     *

     * Counterpart to Solidity's `uint128` operator.

     *

     * Requirements:

     *

     * - input must fit into 128 bits

     */
    function toUint128(uint256 value) internal pure returns (uint128) {
        require(value <= type(uint128).max, "SafeCast: value doesn't fit in 128 bits");
        return uint128(value);
    }

    /**

     * @dev Returns the downcasted uint96 from uint256, reverting on

     * overflow (when the input is greater than largest uint96).

     *

     * Counterpart to Solidity's `uint96` operator.

     *

     * Requirements:

     *

     * - input must fit into 96 bits

     */
    function toUint96(uint256 value) internal pure returns (uint96) {
        require(value <= type(uint96).max, "SafeCast: value doesn't fit in 96 bits");
        return uint96(value);
    }

    /**

     * @dev Returns the downcasted uint64 from uint256, reverting on

     * overflow (when the input is greater than largest uint64).

     *

     * Counterpart to Solidity's `uint64` operator.

     *

     * Requirements:

     *

     * - input must fit into 64 bits

     */
    function toUint64(uint256 value) internal pure returns (uint64) {
        require(value <= type(uint64).max, "SafeCast: value doesn't fit in 64 bits");
        return uint64(value);
    }

    /**

     * @dev Returns the downcasted uint32 from uint256, reverting on

     * overflow (when the input is greater than largest uint32).

     *

     * Counterpart to Solidity's `uint32` operator.

     *

     * Requirements:

     *

     * - input must fit into 32 bits

     */
    function toUint32(uint256 value) internal pure returns (uint32) {
        require(value <= type(uint32).max, "SafeCast: value doesn't fit in 32 bits");
        return uint32(value);
    }

    /**

     * @dev Returns the downcasted uint16 from uint256, reverting on

     * overflow (when the input is greater than largest uint16).

     *

     * Counterpart to Solidity's `uint16` operator.

     *

     * Requirements:

     *

     * - input must fit into 16 bits

     */
    function toUint16(uint256 value) internal pure returns (uint16) {
        require(value <= type(uint16).max, "SafeCast: value doesn't fit in 16 bits");
        return uint16(value);
    }

    /**

     * @dev Returns the downcasted uint8 from uint256, reverting on

     * overflow (when the input is greater than largest uint8).

     *

     * Counterpart to Solidity's `uint8` operator.

     *

     * Requirements:

     *

     * - input must fit into 8 bits.

     */
    function toUint8(uint256 value) internal pure returns (uint8) {
        require(value <= type(uint8).max, "SafeCast: value doesn't fit in 8 bits");
        return uint8(value);
    }

    /**

     * @dev Converts a signed int256 into an unsigned uint256.

     *

     * Requirements:

     *

     * - input must be greater than or equal to 0.

     */
    function toUint256(int256 value) internal pure returns (uint256) {
        require(value >= 0, "SafeCast: value must be positive");
        return uint256(value);
    }

    /**

     * @dev Returns the downcasted int128 from int256, reverting on

     * overflow (when the input is less than smallest int128 or

     * greater than largest int128).

     *

     * Counterpart to Solidity's `int128` operator.

     *

     * Requirements:

     *

     * - input must fit into 128 bits

     *

     * _Available since v3.1._

     */
    function toInt128(int256 value) internal pure returns (int128) {
        require(value >= type(int128).min && value <= type(int128).max, "SafeCast: value doesn't fit in 128 bits");
        return int128(value);
    }

    /**

     * @dev Returns the downcasted int64 from int256, reverting on

     * overflow (when the input is less than smallest int64 or

     * greater than largest int64).

     *

     * Counterpart to Solidity's `int64` operator.

     *

     * Requirements:

     *

     * - input must fit into 64 bits

     *

     * _Available since v3.1._

     */
    function toInt64(int256 value) internal pure returns (int64) {
        require(value >= type(int64).min && value <= type(int64).max, "SafeCast: value doesn't fit in 64 bits");
        return int64(value);
    }

    /**

     * @dev Returns the downcasted int32 from int256, reverting on

     * overflow (when the input is less than smallest int32 or

     * greater than largest int32).

     *

     * Counterpart to Solidity's `int32` operator.

     *

     * Requirements:

     *

     * - input must fit into 32 bits

     *

     * _Available since v3.1._

     */
    function toInt32(int256 value) internal pure returns (int32) {
        require(value >= type(int32).min && value <= type(int32).max, "SafeCast: value doesn't fit in 32 bits");
        return int32(value);
    }

    /**

     * @dev Returns the downcasted int16 from int256, reverting on

     * overflow (when the input is less than smallest int16 or

     * greater than largest int16).

     *

     * Counterpart to Solidity's `int16` operator.

     *

     * Requirements:

     *

     * - input must fit into 16 bits

     *

     * _Available since v3.1._

     */
    function toInt16(int256 value) internal pure returns (int16) {
        require(value >= type(int16).min && value <= type(int16).max, "SafeCast: value doesn't fit in 16 bits");
        return int16(value);
    }

    /**

     * @dev Returns the downcasted int8 from int256, reverting on

     * overflow (when the input is less than smallest int8 or

     * greater than largest int8).

     *

     * Counterpart to Solidity's `int8` operator.

     *

     * Requirements:

     *

     * - input must fit into 8 bits.

     *

     * _Available since v3.1._

     */
    function toInt8(int256 value) internal pure returns (int8) {
        require(value >= type(int8).min && value <= type(int8).max, "SafeCast: value doesn't fit in 8 bits");
        return int8(value);
    }

    /**

     * @dev Converts an unsigned uint256 into a signed int256.

     *

     * Requirements:

     *

     * - input must be less than or equal to maxInt256.

     */
    function toInt256(uint256 value) internal pure returns (int256) {
        // Note: Unsafe cast below is okay because `type(int256).max` is guaranteed to be positive
        require(value <= uint256(type(int256).max), "SafeCast: value doesn't fit in an int256");
        return int256(value);
    }
}

contract ProofOfRug is ERC20, Ownable {
    using SafeMath for uint256;

    bool private inSwapAndLiquify;
    bool public swapAndLiquifyEnabled = true;
    bool private isOpen = false;

    uint256 public liquidityFee = 1;
    uint256 public marketingFee = 3;
    uint256 public devFee = 1;
    uint256 public sellLiquidityFee = 1;
    uint256 public sellMarketingFee = 3;
    uint256 public sellDevFee = 1;
    uint256 public maxTransactionAmount = 20000000 * (10**18);
    uint256 public maxWalletToken = 30000000 * (10**18);
    uint256 public swapTokensAtAmount = 500000 * (10**18);

    IUniswapV2Router02 public uniswapV2Router;
    address public immutable uniswapV2Pair;

    address payable public marketingWallet = payable(0x6087376a24F6cb6394cA7D9A0Fc4FB07Ab4CDBA5); 
    address payable public devWallet = payable(0xf97bBC95e7A640BA845285C1004DE0a1aA1c1ec2);

    // exlcude from fees and max transaction amount
    mapping (address => bool) private _isExcludedFromFees;

    modifier lockTheSwap {
        inSwapAndLiquify = true;
        _;
        inSwapAndLiquify = false;
    }

    event SwapAndLiquify(uint256 tokensIntoLiqudity, uint256 ethReceived);
    event SwapAndLiquifyEnabledUpdated(bool enabled);
    event SwapETHForTokens(uint256 amountIn, address[] path);
    event ExcludeFromFees(address indexed account, bool isExcluded);


    constructor() ERC20("Proof Of Rug", "SAFU") {
    	IUniswapV2Router02 _uniswapV2Router = IUniswapV2Router02(0x7a250d5630B4cF539739dF2C5dAcb4c659F2488D);
         // Create a uniswap pair for this new token
        address _uniswapV2Pair = IUniswapV2Factory(_uniswapV2Router.factory())
            .createPair(address(this), _uniswapV2Router.WETH());

        uniswapV2Router = _uniswapV2Router;
        uniswapV2Pair = _uniswapV2Pair;

        // exclude from paying fees and max transaction amount
        excludeFromFees(owner(), true);
        excludeFromFees(marketingWallet, true);
        excludeFromFees(devWallet, true);
        excludeFromFees(address(this), true);
        
        /*

          an internal function that is only called here, and CANNOT be called ever again

        */
        
        _createInitialTotalSupply(owner(), 1000000000 * (10**18));
    }

    function _transfer(

        address from,

        address to,

        uint256 amount

    ) internal override {
        require(from != address(0), "ERC20: transfer from the zero address");
        require(to != address(0), "ERC20: transfer to the zero address");
        bool excludedAccount = _isExcludedFromFees[from] || _isExcludedFromFees[to];
        require(isOpen || excludedAccount, "trading is yet Open");

        if(amount == 0) {
            super._transfer(from, to, 0);
            return;
        }

         if(from==uniswapV2Pair && !_isExcludedFromFees[from] && !_isExcludedFromFees[to]){
            uint256 contractBalanceRecepient = balanceOf(to);
            require(contractBalanceRecepient + amount <= maxWalletToken, "Exceeds maximum wallet token amount.");
        }
        
        if(to==uniswapV2Pair && !excludedAccount) {
            require(amount <= maxTransactionAmount, "amount exceeds the maxTransactionAmount.");
        }
        
    	uint256 contractTokenBalance = balanceOf(address(this));
        
        bool overMinTokenBalance = contractTokenBalance >= swapTokensAtAmount;
       
        if(overMinTokenBalance && !inSwapAndLiquify && to==uniswapV2Pair && swapAndLiquifyEnabled) {
            contractTokenBalance = swapTokensAtAmount;
            swapAndLiquify(contractTokenBalance);

        }

         // if any account belongs to _isExcludedFromFee account then remove the fee
        if(!excludedAccount) {
            uint256 fees;
            if(from==uniswapV2Pair) {
              fees  = amount.mul(liquidityFee.add(marketingFee).add(devFee)).div(100);
            }

            if(to==uniswapV2Pair) {
              fees  = amount.mul(sellLiquidityFee.add(sellMarketingFee).add(sellDevFee)).div(100);
            }

        	amount = amount.sub(fees);
            if(fees > 0) {
                super._transfer(from, address(this), fees); 
            }
        }

        super._transfer(from, to, amount);

    }

     function swapAndLiquify(uint256 contractTokenBalance) private lockTheSwap {
        uint256 tokensForLiquidity = contractTokenBalance.mul(sellLiquidityFee).div(sellMarketingFee.add(sellLiquidityFee).add(sellDevFee));
        // split the Liquidity token balance into halves
        uint256 half = tokensForLiquidity.div(2);
        uint256 otherHalf = tokensForLiquidity.sub(half);

        // capture the contract's current ETH balance.
        // this is so that we can capture exactly the amount of ETH that the
        // swap creates, and not make the liquidity event include any ETH that
        // has been manually sent to the contract
        uint256 initialBalance = address(this).balance;

        // swap tokens for ETH
        swapTokensForEth(half); 

        // how much ETH did we just swap into?
        uint256 newBalance = address(this).balance.sub(initialBalance);

        // add liquidity to uniswap
        addLiquidity(otherHalf, newBalance);

        // swap and Send eth to wallets
        swapTokensForEth(contractTokenBalance.sub(tokensForLiquidity));
        devWallet.transfer(address(this).balance.mul(sellDevFee).div(sellMarketingFee.add(sellDevFee)));
        marketingWallet.transfer(address(this).balance);
       
        emit SwapAndLiquify(half, newBalance); 
    }

    function swapTokensForEth(uint256 tokenAmount) private {
        // generate the uniswap pair path of token -> weth
        address[] memory path = new address[](2);
        path[0] = address(this);
        path[1] = uniswapV2Router.WETH();

        if(allowance(address(this), address(uniswapV2Router)) < tokenAmount) {
          _approve(address(this), address(uniswapV2Router), ~uint256(0));
        }

        // make the swap
        uniswapV2Router.swapExactTokensForETHSupportingFeeOnTransferTokens(
            tokenAmount,
            0, // accept any amount of ETH
            path,
            address(this),
            block.timestamp
        );
        
    }

    function addLiquidity(uint256 tokenAmount, uint256 ethAmount) private {
        // add the liquidity
        uniswapV2Router.addLiquidityETH{value: ethAmount}(
            address(this),
            tokenAmount,
            0, // slippage is unavoidable
            0, // slippage is unavoidable
            owner(),
            block.timestamp
        );
        
    }

     function excludeFromFees(address account, bool excluded) public onlyOwner {
        require(_isExcludedFromFees[account] != excluded, "Account is already the value of 'excluded'");
        _isExcludedFromFees[account] = excluded;
        emit ExcludeFromFees(account, excluded);
    }
    
    function isExcludedFromFees(address account) public view returns(bool) {
        return _isExcludedFromFees[account];
    }

    function openTrade() external onlyOwner {
        isOpen = true;
    }

    function setMaxWalletLimit(uint256 _newLimit) public onlyOwner {
        maxWalletToken = _newLimit;
        require(maxWalletToken >= totalSupply().div(200), "value too low");
    }

    function setMaxTxAmount(uint256 _maxTx) public onlyOwner {
        maxTransactionAmount = _maxTx;
        require(maxTransactionAmount >= totalSupply().div(1000000000), "value too low");
    }

    function updateBuyFees(uint256 _liquidityFee, uint256 _marketingFee, uint256 _devFee) public onlyOwner {
        require(_liquidityFee.add(_marketingFee).add(_devFee) <= 6, "tax too high");
        liquidityFee = _liquidityFee;
        marketingFee = _marketingFee;
        devFee = _devFee;
    }

     function updateSellFees(uint256 _liquidityFee, uint256 _marketingFee, uint256 _devFee) public onlyOwner {
        require(_liquidityFee.add(_marketingFee).add(_devFee) <= 6, "tax too high");
        sellLiquidityFee = _liquidityFee;
        sellMarketingFee = _marketingFee;
        sellDevFee = _devFee;
    }

    function updateWallets(address payable _marketingWallet, address payable _devWallet) public onlyOwner {
        marketingWallet = _marketingWallet;
        devWallet = _devWallet;
    }

    function setSwapTokensAtAmouunt(uint256 _newAmount) public onlyOwner {
        swapTokensAtAmount = _newAmount;
    }

    function setSwapAndLiquifyEnabled(bool _enabled) public onlyOwner {
        swapAndLiquifyEnabled = _enabled;
        emit SwapAndLiquifyEnabledUpdated(_enabled);
    }

    receive() external payable {

    }
  
}