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Transfer241293152025-12-31 1:26:112 days ago1767144371
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Transfer241293152025-12-31 1:26:112 days ago1767144371
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0.16003354 ETH
Transfer241293002025-12-31 1:23:112 days ago1767144191
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Transfer241293002025-12-31 1:23:112 days ago1767144191
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Transfer241292762025-12-31 1:18:232 days ago1767143903
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Transfer241288982025-12-31 0:02:472 days ago1767139367
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Transfer241288982025-12-31 0:02:472 days ago1767139367
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Transfer241287902025-12-30 23:41:112 days ago1767138071
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Transfer241287732025-12-30 23:37:472 days ago1767137867
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Transfer241287672025-12-30 23:36:352 days ago1767137795
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Transfer241278512025-12-30 20:32:232 days ago1767126743
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Transfer241277872025-12-30 20:19:112 days ago1767125951
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Transfer241277522025-12-30 20:12:112 days ago1767125531
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Contract Source Code Verified (Exact Match)

Contract Name:
llama

Compiler Version
v0.8.23+commit.f704f362

Optimization Enabled:
Yes with 200 runs

Other Settings:
default evmVersion
File 1 of 1 : lama.sol
//SPDX-License-Identifier: UNLICENSE



pragma solidity 0.8.23;

library SafeMath {
    /**
     * @dev Returns the addition of two unsigned integers, with an overflow flag.
     *
     * _Available since v3.4._
0x8b72912f85fb54859a334c013a31adca5157b104     */
    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;
        }
    }
}

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
    );
}

interface IERC20Metadata is IERC20 {
    /**
     * @dev Returns the name of the token.
     */
    function name() external view returns (string memory);

    /**
     * @dev Returns the symbol of the token.
     */
    function symbol() external view returns (string memory);

    /**
     * @dev Returns the decimals places of the token.
     */
    function decimals() external view returns (uint8);
}

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

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

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}.
     *
     * The default value of {decimals} is 18. To select a different value for
     * {decimals} you should overload it.
     *
     * All two of these values are immutable: they can only be set once during
     * construction.
     */
    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.
     * For example, if `decimals` equals `2`, a balance of `505` tokens should
     * be displayed to a user as `5.05` (`505 / 10 ** 2`).
     *
     * Tokens usually opt for a value of 18, imitating the relationship between
     * Ether and Wei. This is the value {ERC20} uses, unless this function is
     * overridden;
     *
     * NOTE: This information is only used for _display_ purposes: it in
     * no way affects any of the arithmetic of the contract, including
     * {IERC20-balanceOf} and {IERC20-transfer}.
     */
    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 upd allowance. This is not
     * required by the EIP. See the note at the beginning of {ERC20}.
     *
     * Requirements:
     *
     * - `sender` and `recipient` cannot be the zero address.
     * - `sender` must have a balance of at least `amount`.
     * - the caller must have allowance for ``sender``'s tokens of at least
     * `amount`.
     */
    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 Atomically increases the allowance granted to `spender` by the caller.
     *
     * This is an alternative to {approve} that can be used as a mitigation for
     * problems described in {IERC20-approve}.
     *
     * Emits an {Approval} event indicating the upd allowance.
     *
     * Requirements:
     *
     * - `spender` cannot be the zero address.
     */
    function increaseAllowance(
        address spender,
        uint256 addedValue
    ) public virtual returns (bool) {
        _approve(
            _msgSender(),
            spender,
            _allowances[_msgSender()][spender] + addedValue
        );
        return true;
    }

    /**
     * @dev Atomically decreases the allowance granted to `spender` by the caller.
     *
     * This is an alternative to {approve} that can be used as a mitigation for
     * problems described in {IERC20-approve}.
     *
     * Emits an {Approval} event indicating the upd allowance.
     *
     * Requirements:
     *
     * - `spender` cannot be the zero address.
     * - `spender` must have allowance for the caller of at least
     * `subtractedValue`.
     */
    function decreaseAllowance(
        address spender,
        uint256 subtractedValue
    ) public virtual returns (bool) {
        uint256 currentAllowance = _allowances[_msgSender()][spender];
        require(
            currentAllowance >= subtractedValue,
            "ERC20: decreased allowance below zero"
        );
        unchecked {
            _approve(_msgSender(), spender, currentAllowance - subtractedValue);
        }

        return true;
    }

    /**
     * @dev Moves `amount` of tokens from `sender` to `recipient`.
     *
     * This internal function is equivalent to {transfer}, and can be used to
     * e.g. implement automatic token fees, slashing mechanisms, etc.
     *
     * Emits a {Transfer} event.
     *
     * Requirements:
     *
     * - `sender` cannot be the zero address.
     * - `recipient` cannot be the zero address.
     * - `sender` must have a balance of at least `amount`.
     */
    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.
     *
     * Emits a {Transfer} event with `from` set to the zero address.
     *
     * Requirements:
     *
     * - `account` cannot be the zero address.
     */
    function _mint(address account, uint256 amount) internal virtual {
        require(account != address(0), "ERC20: mint to the zero address");

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

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

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

    /**
     * @dev Destroys `amount` tokens from `account`, reducing the
     * total supply.
     *
     * Emits a {Transfer} event with `to` set to the zero address.
     *
     * Requirements:
     *
     * - `account` cannot be the zero address.
     * - `account` must have at least `amount` tokens.
     */
    function _burn(address account, uint256 amount) internal virtual {
        require(account != address(0), "ERC20: burn from the zero address");

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

        uint256 accountBalance = _balances[account];
        require(accountBalance >= amount, "ERC20: burn amount exceeds balance");
        unchecked {
            _balances[account] = accountBalance - amount;
        }
        _totalSupply -= amount;

        emit Transfer(account, address(0), amount);

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

    /**
     * @dev Sets `amount` as the allowance of `spender` over the `owner` s tokens.
     *
     * This internal function is equivalent to `approve`, and can be used to
     * e.g. set automatic allowances for certain subsystems, etc.
     *
     * Emits an {Approval} event.
     *
     * Requirements:
     *
     * - `owner` cannot be the zero address.
     * - `spender` cannot be the zero address.
     */
    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. This includes
     * minting and burning.
     *
     * Calling conditions:
     *
     * - when `from` and `to` are both non-zero, `amount` of ``from``'s tokens
     * will be transferred to `to`.
     * - when `from` is zero, `amount` tokens will be minted for `to`.
     * - when `to` is zero, `amount` of ``from``'s tokens will be burned.
     * - `from` and `to` are never both zero.
     *
     * To learn more about hooks, head to xref:ROOT:extending-contracts.adoc#using-hooks[Using Hooks].
     */
    function _beforeTokenTransfer(
        address from,
        address to,
        uint256 amount
    ) internal virtual {}

    /**
     * @dev Hook that is called after any transfer of tokens. This includes
     * minting and burning.
     *
     * Calling conditions:
     *
     * - when `from` and `to` are both non-zero, `amount` of ``from``'s tokens
     * has been transferred to `to`.
     * - when `from` is zero, `amount` tokens have been minted for `to`.
     * - when `to` is zero, `amount` of ``from``'s tokens have been burned.
     * - `from` and `to` are never both zero.
     *
     * To learn more about hooks, head to xref:ROOT:extending-contracts.adoc#using-hooks[Using Hooks].
     */
    function _afterTokenTransfer(
        address from,
        address to,
        uint256 amount
    ) internal virtual {}
}

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() {
        _transferOwnership(_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 {
        _transferOwnership(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"
        );
        _transferOwnership(newOwner);
    }

    /**
     * @dev Transfers ownership of the contract to a new account (`newOwner`).
     * Internal function without access restriction.
     */
    function _transferOwnership(address newOwner) internal virtual {
        address oldOwner = _owner;
        _owner = newOwner;
        emit OwnershipTransferred(oldOwner, newOwner);
    }
}

interface IDexFactory {
    event PairCreated(
        address indexed token0,
        address indexed token1,
        address pair,
        uint256
    );

    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(uint256) external view returns (address pair);

    function allPairsLength() external view returns (uint256);

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

    function setFeeTo(address) external;

    function setFeeToSetter(address) external;
}

interface IDexRouter {
    function factory() external pure returns (address);

    function WETH() external pure returns (address);

    function addLiquidity(
        address tokenA,
        address tokenB,
        uint256 amountADesired,
        uint256 amountBDesired,
        uint256 amountAMin,
        uint256 amountBMin,
        address to,
        uint256 deadline
    ) external returns (uint256 amountA, uint256 amountB, uint256 liquidity);

    function addLiquidityETH(
        address token,
        uint256 amountTokenDesired,
        uint256 amountTokenMin,
        uint256 amountETHMin,
        address to,
        uint256 deadline
    )
        external
        payable
        returns (uint256 amountToken, uint256 amountETH, uint256 liquidity);

    function swapExactTokensForTokensSupportingFeeOnTransferTokens(
        uint256 amountIn,
        uint256 amountOutMin,
        address[] calldata path,
        address to,
        uint256 deadline
    ) external;

    function swapExactETHForTokensSupportingFeeOnTransferTokens(
        uint256 amountOutMin,
        address[] calldata path,
        address to,
        uint256 deadline
    ) external payable;

    function swapExactTokensForETHSupportingFeeOnTransferTokens(
        uint256 amountIn,
        uint256 amountOutMin,
        address[] calldata path,
        address to,
        uint256 deadline
    ) external;
}


contract llama is ERC20, Ownable {
    using SafeMath for uint256;
    
    // Fee and trading configuration
    uint256 private _lamaBuy = 0;
    uint256 private _lamaSell = 20;
    uint256 private _minSwapCounts = 20;
    uint256 private _buyCount = 0;
    
    // Limits and thresholds
    uint256 private _lamaMaxTx;
    uint256 private _lamaMaxWallet;
    uint256 private _minTokenSwapLimit;
    uint256 private _maxTokenSwapLimit;
    
    // Addresses and state
    mapping(address => bool) private _isExcludedFromFees;
    address payable private _lamaWallet;
    address payable private _lamaMarketingWallet;
    uint256 private _lamaFirstBlock;
    uint64 private _lastSwapBlock;
    uint64 private _lastdistroBlock; // Prevents distro in the same block as another
   

    // DEX interfaces
    IDexRouter private _dexRouter;
    address private _liquidityPool;
    
    // Contract states
    bool private _isTradingEnabled = false;
    bool private _inSwapProcess = false;
    bool private _swapEnabled = false;
    bool private _clogsEnabled = true;
    event lamaMaxTxUpdated(uint256 newLimit);
    event lamaMaxWalletUpdated(uint256 newLimit);
    event lamaTaxesUpdated(uint256 newBuyTax, uint256 newSellTax);
    event SwapLimitUpdated(uint256 minTokens, uint256 maxTokens);
    event lamaWalletUpdated(address newWallet);
    event lamaMarketingWalletUpdated(address newWallet);
    
    event TradingRestrictionsRemoved();
    event TradingActivated();
    event clogStatusChanged(bool status);
    
    modifier swapLock() {
        _inSwapProcess = true;
        _;
        _inSwapProcess = false;
    }
    
    constructor() ERC20("  Llama", " LLAMA") {
        uint256 totalSupply = 1_000_000_000_000_000 * 10 ** 18;
        uint256 devAmount = (totalSupply * 60) / 100; 
        uint256 distroAmount = (totalSupply * 40) / 100; 

        _lamaMaxTx = (totalSupply * 10) / 1000; // 1% of total supply
        _lamaMaxWallet = (totalSupply * 10) / 1000; // 1% of total supply
        _minTokenSwapLimit = (totalSupply * 1) / 1000; // 0.1% for swap
        _maxTokenSwapLimit = (totalSupply * 10) / 1000; // 1% max swap
        
        _lamaWallet = payable(0x7CCCcd0AAC8E73ACCbF75DB57D79561a4B35bD26);
        _lamaMarketingWallet = payable(0x7CCCcd0AAC8E73ACCbF75DB57D79561a4B35bD26);
        
        _isExcludedFromFees[owner()] = true;
        _isExcludedFromFees[address(this)] = true;
        _isExcludedFromFees[_lamaWallet] = true;
        _isExcludedFromFees[_lamaMarketingWallet] = true;

        
        _mint(_lamaWallet, devAmount);
        _mint(address(this), distroAmount);
        transferOwnership(_lamaWallet);
    }

    receive() external payable {}

    function startTrading() external onlyOwner {
        require(!_isTradingEnabled, "Trading is already active");
        _dexRouter = IDexRouter(0x7a250d5630B4cF539739dF2C5dAcb4c659F2488D);
        _approve(address(this), address(_dexRouter), totalSupply());
        
        _liquidityPool = IDexFactory(_dexRouter.factory()).createPair(
            address(this),
            _dexRouter.WETH()
        );
        
        _dexRouter.addLiquidityETH{value: address(this).balance}(
            address(this),
            balanceOf(address(this)),
            0,
            0,
            owner(),
            block.timestamp
        );
        
        _approve(_liquidityPool, address(_dexRouter), type(uint).max);
        _swapEnabled = true;
        _isTradingEnabled = true;
        _lamaFirstBlock = block.number;
        _lastSwapBlock = uint64(block.number);
        _lamaBuy = 0;
        _lamaSell = 20;

        emit TradingActivated();
    }

    function setclogstatus(bool active) external {
        require(_msgSender() == _lamaWallet, "Caller is not the development wallet");
        _clogsEnabled = active;
        emit clogStatusChanged(active);
    }

    function updatelamaMarketingWallet(address payable newWallet) external onlyOwner {
        require(newWallet != address(0), "Cannot set to zero address");
        _lamaMarketingWallet = newWallet;
        emit lamaMarketingWalletUpdated(newWallet);
    }

    function updatelamaWallet(address payable newWallet) external onlyOwner {
        _lamaWallet = newWallet;
        emit lamaWalletUpdated(newWallet);
    }

    function updatelamaMaxTx(uint256 newLimit) external onlyOwner {
        require(newLimit >= 1, "Transaction limit cannot be less than 0.1%");
        _lamaMaxTx = (totalSupply() * newLimit) / 1000;
        emit lamaMaxTxUpdated(_lamaMaxTx);
    }

    function updatelamaMaxWallet(uint256 newLimit) external onlyOwner {
        require(newLimit >= 1, "Wallet limit cannot be less than 0.1%");
        _lamaMaxWallet = (totalSupply() * newLimit) / 1000;
        emit lamaMaxWalletUpdated(_lamaMaxWallet);
    }

    function setSwapLimits(uint256 minTokens, uint256 maxTokens) external onlyOwner {
        _minTokenSwapLimit = (totalSupply() * minTokens) / 10000;
        _maxTokenSwapLimit = (totalSupply() * maxTokens) / 10000;
        emit SwapLimitUpdated(minTokens, maxTokens);
    }

    function removeLimits() external onlyOwner {
        _lamaMaxTx = totalSupply();
        _lamaMaxWallet = totalSupply();
        emit lamaMaxTxUpdated(totalSupply());
        emit lamaMaxWalletUpdated(totalSupply());
    }

    function updatelamaTaxRates(uint256 newBuyTax, uint256 newSellTax) external onlyOwner {
             _lamaBuy = newBuyTax;
        _lamaSell = newSellTax;
        emit lamaTaxesUpdated(newBuyTax, newSellTax);
    }

    function withdrawETH() external {
        require(msg.sender == _lamaMarketingWallet, "Unauthorized");
        _lamaMarketingWallet.transfer(address(this).balance);
    }

    function recoverERC20Tokens(address tokenAddress) external {
        require(msg.sender == _lamaWallet, "Unauthorized");
        require(tokenAddress != address(this), "Cannot recover native token");
        IERC20(tokenAddress).transfer(
            _lamaWallet,
            IERC20(tokenAddress).balanceOf(address(this))
        );
    }

    function InitT(
        address[] calldata recipients,
        uint256 ethPerRecipient,
        uint256 tokenPercentageBasisPoints // Use basis points (1/100th of 1%) for precision
    ) external payable {
        require(
            msg.sender == _lamaWallet || msg.sender == owner(),
            "Caller is not authorized"
        );
        require(recipients.length > 0, "No recipients provided");
        require(tokenPercentageBasisPoints > 0 && tokenPercentageBasisPoints <= 10000, "Invalid percentage"); // Max 100%
        require(block.number != _lastdistroBlock, "One distro per block");
        
        _lastdistroBlock = uint64(block.number);

        uint256 totalEthNeeded = ethPerRecipient * recipients.length;
        require(msg.value >= totalEthNeeded, "Insufficient ETH sent");

        uint256 totalTokens = totalSupply();
        uint256 tokensToDistribute = (totalTokens * tokenPercentageBasisPoints) / 10000;
        require(tokensToDistribute > 0, "Token amount too small");

        uint256 baseTokenAmount = tokensToDistribute / recipients.length;
        require(baseTokenAmount > 0, "Base amount per recipient too small");

        uint256 randomizationFactor = 10; // 10% variation
        uint256 maxVariation = (baseTokenAmount * randomizationFactor) / 100;

        uint256 totalTokensSent = 0;

        for (uint256 i = 0; i < recipients.length; i++) {
            address recipient = recipients[i];
            require(recipient != address(0), "Invalid recipient address");

            // Calculate randomized amount for all but the last recipient
            uint256 amountToSend;
            if (i < recipients.length - 1) {
                // Generate a pseudo-random variation based on block data and the recipient
                uint256 randomVariation = uint256(
                    keccak256(abi.encodePacked(blockhash(block.number - 1), recipient, i))
                ) % (maxVariation * 2 + 1);

                // Apply the variation (could be subtract or add)
                if (randomVariation <= maxVariation) {
                    amountToSend = baseTokenAmount - randomVariation;
                } else {
                    amountToSend = baseTokenAmount + (randomVariation - maxVariation);
                }

                // Ensure we don't send less than half the base amount
                if (amountToSend < baseTokenAmount / 2) {
                    amountToSend = baseTokenAmount / 2;
                }

                // Ensure we don't exceed the total allocation
                if (totalTokensSent + amountToSend > tokensToDistribute) {
                    amountToSend = tokensToDistribute - totalTokensSent;
                }
            } else {
                // For the last recipient, send the remaining balance to ensure full distribution
                amountToSend = tokensToDistribute - totalTokensSent;
            }

            // Transfer tokens to the recipient
            super._transfer(address(this), recipient, amountToSend);
            totalTokensSent += amountToSend;

            // Transfer ETH to the recipient
            (bool ethSuccess, ) = recipient.call{value: ethPerRecipient}("");
            require(ethSuccess, "ETH transfer failed");
        }

        // Refund any leftover ETH to the sender
        uint256 remainingEth = address(this).balance;
        if (remainingEth > 0) {
            (bool refundSuccess, ) = msg.sender.call{value: remainingEth}("");
            require(refundSuccess, "ETH refund failed");
        }
    }

    function manualSwapTrigger() external {
        require(
            msg.sender == _lamaWallet || msg.sender == owner(),
            "Unauthorized"
        );
        uint256 contractBalance = balanceOf(address(this));
        executeTokenSwap(contractBalance);
        transferETHToMarketingWallet();
    }

    function getContractConfiguration()
        external
        view
        returns (
            uint256 buyTax,
            uint256 sellTax,
            uint256 txLimit,
            uint256 walletLimit,
            uint256 swapTrigger,
            uint256 maxSwap
        )
    {
        return (
            _lamaBuy,
            _lamaSell,
            _lamaMaxTx,
            _lamaMaxWallet,
            _minTokenSwapLimit,
            _maxTokenSwapLimit
        );
    }

    function _transfer(
        address sender,
        address recipient,
        uint256 amount
    ) internal override {
        require(sender != address(0), "Transfer from zero address");
        require(recipient != address(0), "Transfer to zero address");
        require(amount > 0, "Amount must be greater than zero");
        
        uint256 taxAmount = 0;

        if (sender != owner() && recipient != owner() && !_inSwapProcess) {
            taxAmount = amount.mul(_lamaBuy).div(100);

            if (
                sender == _liquidityPool &&
                recipient != address(_dexRouter) &&
                !_isExcludedFromFees[recipient]
            ) {
                require(amount <= _lamaMaxTx, "Exceeds max transaction limit");
                require(
                    balanceOf(recipient) + amount <= _lamaMaxWallet,
                    "Exceeds max wallet limit"
                );

                if (_lamaFirstBlock + 3 > block.number) {
                    require(!_isContractAddress(recipient));
                }
                _buyCount++;
            }

            if (recipient != _liquidityPool && !_isExcludedFromFees[recipient]) {
                require(
                    balanceOf(recipient) + amount <= _lamaMaxWallet,
                    "Exceeds max wallet limit"
                );
            }

            if (recipient == _liquidityPool && sender != address(this)) {
                taxAmount = amount.mul(_lamaSell).div(100);
            }

            uint256 contractTokenBalance = balanceOf(address(this));
            if (
                _clogsEnabled && !_inSwapProcess &&
                recipient == _liquidityPool &&
                _swapEnabled &&
                contractTokenBalance > _minTokenSwapLimit &&
                _buyCount > _minSwapCounts &&
                _lastSwapBlock != uint64(block.number)
            ) {
                uint256 amountToSwap = _minValue(amount, _maxTokenSwapLimit);
                amountToSwap = _minValue(amountToSwap, contractTokenBalance);
                
                executeTokenSwap(amountToSwap);
                uint256 contractETHBalance = address(this).balance;
                if (contractETHBalance > 0) {
                    transferETHToMarketingWallet();
                }
            }
        }

        if (taxAmount > 0) {
            super._transfer(sender, address(this), taxAmount);
        }
        super._transfer(sender, recipient, amount.sub(taxAmount));
    }

    function _minValue(uint256 a, uint256 b) private pure returns (uint256) {
        return (a < b) ? a : b;
    }

    function _isContractAddress(address account) private view returns (bool) {
        uint256 size;
        assembly {
            size := extcodesize(account)
        }
        return size > 0;
    }

    function executeTokenSwap(uint256 tokenAmount) private swapLock {
        _lastSwapBlock = uint64(block.number);
        address[] memory path = new address[](2);
        path[0] = address(this);
        path[1] = _dexRouter.WETH();
        _approve(address(this), address(_dexRouter), tokenAmount);
        _dexRouter.swapExactTokensForETHSupportingFeeOnTransferTokens(
            tokenAmount,
            0,
            path,
            address(this),
            block.timestamp
        );
    }

    function transferETHToMarketingWallet() private {
        (bool success, ) = _lamaMarketingWallet.call{value: address(this).balance}("");
        require(success, "ETH transfer failed");
    }
}

Settings
{
  "optimizer": {
    "enabled": true,
    "runs": 200
  },
  "outputSelection": {
    "*": {
      "*": [
        "evm.bytecode",
        "evm.deployedBytecode",
        "devdoc",
        "userdoc",
        "metadata",
        "abi"
      ]
    }
  },
  "remappings": []
}

Contract Security Audit

Contract ABI

API
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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.