{"status":"1","message":"OK","result":[{"SourceCode":"{{\"language\":\"Solidity\",\"sources\":{\"src/token/MOVETokenV2.sol\":{\"content\":\"// SPDX-License-Identifier: MIT\\npragma solidity ^0.8.26;\\n\\nimport {MOVEToken} from \\\"./MOVEToken.sol\\\";\\nimport {OFTUpgradeable, ERC20Upgradeable} from \\\"@layerzerolabs/oft-evm-upgradeable/contracts/oft/OFTUpgradeable.sol\\\";\\nimport {PausableUpgradeable} from \\\"@openzeppelin/contracts-upgradeable/utils/PausableUpgradeable.sol\\\";\\nimport { SendParam, MessagingFee, MessagingReceipt, OFTReceipt } from \\\"@layerzerolabs/oft-evm/contracts/interfaces/IOFT.sol\\\";\\n\\n\\ncontract MOVETokenV2 is MOVEToken, OFTUpgradeable, PausableUpgradeable {\\n\\n    bytes32 public constant PAUSER_ROLE = keccak256(\\\"PAUSER_ROLE\\\");\\n    bytes32 public constant UNPAUSER_ROLE = keccak256(\\\"UNPAUSER_ROLE\\\");\\n\\n    /**\\n     * @dev Disables potential implementation exploit\\n     */\\n    constructor(address _endpoint) OFTUpgradeable(_endpoint) {\\n        _disableInitializers();\\n    }\\n\\n    /**\\n     * @dev Initializes the contract with initial parameters.\\n     * @param _owner The address of the owner.\\n     * @param _revoke The address of the address to revoke role.\\n     * @param _burned Burns circulation supply on Ethereum.\\n     */\\n    function initialize(address _owner, address _revoke, address[] calldata _burned) external reinitializer(2) {\\n        __OFTCore_init(_owner);\\n        __Ownable_init_unchained(_owner);\\n        _grantRole(DEFAULT_ADMIN_ROLE, _owner);\\n        _grantRole(PAUSER_ROLE, _owner);\\n        _grantRole(UNPAUSER_ROLE, _owner);\\n        _revokeRole(DEFAULT_ADMIN_ROLE, _revoke);\\n        for (uint256 i = 0; i < _burned.length; i++) {\\n            _burn(_burned[i], balanceOf(_burned[i]));\\n        }\\n    }\\n\\n    /**\\n     * @dev Executes the send operation.\\n     * @param _sendParam The parameters for the send operation.\\n     * @param _fee The calculated fee for the send() operation.\\n     *      - nativeFee: The native fee.\\n     *      - lzTokenFee: The lzToken fee.\\n     * @param _refundAddress The address to receive any excess funds.\\n     * @return msgReceipt The receipt for the send operation.\\n     * @return oftReceipt The OFT receipt information.\\n     */\\n    function send(SendParam calldata _sendParam, MessagingFee calldata _fee, address _refundAddress)\\n        external\\n        payable\\n        override\\n        whenNotPaused\\n        returns (MessagingReceipt memory msgReceipt, OFTReceipt memory oftReceipt)\\n    {\\n        (uint256 amountSentLD, uint256 amountReceivedLD) = _debit(\\n            msg.sender,\\n            _sendParam.amountLD,\\n            _sendParam.minAmountLD,\\n            _sendParam.dstEid\\n        );\\n\\n        // @dev Builds the options and OFT message to quote in the endpoint.\\n        (bytes memory message, bytes memory options) = _buildMsgAndOptions(_sendParam, amountReceivedLD);\\n\\n        // @dev Sends the message to the LayerZero endpoint and returns the LayerZero msg receipt.\\n        msgReceipt = _lzSend(_sendParam.dstEid, message, options, _fee, _refundAddress);\\n        // @dev Formulate the OFT receipt.\\n        oftReceipt = OFTReceipt(amountSentLD, amountReceivedLD);\\n\\n        emit OFTSent(msgReceipt.guid, _sendParam.dstEid, msg.sender, amountSentLD, amountReceivedLD);\\n    }\\n\\n    /**\\n     * @dev Pauses all bridging.\\n     * Can only be called by an account with the PAUSER_ROLE.\\n     */\\n    function pause() external onlyRole(PAUSER_ROLE) {\\n        _pause();\\n    }\\n\\n    /**\\n     * @dev Unpauses all bridging.\\n     * Can only be called by an account with the UNPAUSER_ROLE.\\n     */\\n    function unpause() external onlyRole(UNPAUSER_ROLE) {\\n        _unpause();\\n    }\\n\\n    /**\\n     * @dev Returns the number of decimals\\n     * @notice decimals is set to 8, following the Movement network standard decimals\\n     */\\n    function decimals() public pure override(ERC20Upgradeable, MOVEToken) returns (uint8) {\\n        return 8;\\n    }\\n\\n    /**\\n     * @dev Returns the number of shared decimals\\n     * @notice shared decimals is set to 8, following the Movement network standard decimals\\n     */\\n    function sharedDecimals() public pure virtual override returns (uint8) {\\n        return 8;\\n    }\\n}\\n\"},\"src/token/MOVEToken.sol\":{\"content\":\"// SPDX-License-Identifier: MIT\\npragma solidity ^0.8.19;\\n\\nimport {ERC20PermitUpgradeable} from \\\"@openzeppelin/contracts-upgradeable/token/ERC20/extensions/ERC20PermitUpgradeable.sol\\\";\\nimport {AccessControlUpgradeable} from \\\"@openzeppelin/contracts-upgradeable/access/AccessControlUpgradeable.sol\\\";\\n\\ncontract MOVEToken is ERC20PermitUpgradeable, AccessControlUpgradeable {\\n\\n    /**\\n     * @dev Disables potential implementation exploit\\n     */\\n    constructor() {_disableInitializers();}\\n\\n    /**\\n     * @dev Initializes the contract with initial parameters.\\n     * @param _owner The address of the owner who receives default admin role.\\n     * @param _custody The address of the custody account.\\n     * @notice The ERC20 token is named \\\"Movement\\\" with symbol \\\"MOVE\\\".\\n     * @notice EIP712 domain version is set to \\\"1\\\" for signatures.\\n     * @notice The owner is granted the `DEFAULT_ADMIN_ROLE`.\\n     * @notice 10 billion MOVE tokens are minted to the owner's address.\\n     */\\n    function initialize(address _owner, address _custody) public initializer {\\n        require(_owner != address(0) && _custody != address(0));\\n        __ERC20_init(\\\"Movement\\\", \\\"MOVE\\\");\\n        __EIP712_init_unchained(\\\"Movement\\\", \\\"1\\\");\\n        _grantRole(DEFAULT_ADMIN_ROLE, _owner);\\n        _mint(_custody, 10000000000 * 10 ** decimals());\\n    }\\n\\n    /**\\n     * @dev Returns the number of decimals\\n     * @notice decimals is set to 8, following the Movement network standard decimals\\n     */\\n    function decimals() public pure virtual override returns (uint8) {\\n        return 8;\\n    }\\n}\"},\"lib/devtools/packages/oft-evm-upgradeable/contracts/oft/OFTUpgradeable.sol\":{\"content\":\"// SPDX-License-Identifier: MIT\\n\\npragma solidity ^0.8.20;\\n\\nimport { ERC20Upgradeable } from \\\"@openzeppelin/contracts-upgradeable/token/ERC20/ERC20Upgradeable.sol\\\";\\nimport { IOFT, OFTCoreUpgradeable } from \\\"./OFTCoreUpgradeable.sol\\\";\\n\\n/**\\n * @title OFT Contract\\n * @dev OFT is an ERC-20 token that extends the functionality of the OFTCore contract.\\n */\\nabstract contract OFTUpgradeable is OFTCoreUpgradeable, ERC20Upgradeable {\\n    /**\\n     * @dev Constructor for the OFT contract.\\n     * @param _lzEndpoint The LayerZero endpoint address.\\n     */\\n    constructor(address _lzEndpoint) OFTCoreUpgradeable(decimals(), _lzEndpoint) {}\\n\\n    /**\\n     * @dev Initializes the OFT with the provided name, symbol, and delegate.\\n     * @param _name The name of the OFT.\\n     * @param _symbol The symbol of the OFT.\\n     * @param _delegate The delegate capable of making OApp configurations inside of the endpoint.\\n     *\\n     * @dev The delegate typically should be set as the owner of the contract.\\n     * @dev Ownable is not initialized here on purpose. It should be initialized in the child contract to\\n     * accommodate the different version of Ownable.\\n     */\\n    function __OFT_init(string memory _name, string memory _symbol, address _delegate) internal onlyInitializing {\\n        __ERC20_init(_name, _symbol);\\n        __OFTCore_init(_delegate);\\n    }\\n\\n    function __OFT_init_unchained() internal onlyInitializing {}\\n\\n    /**\\n     * @dev Retrieves the address of the underlying ERC20 implementation.\\n     * @return The address of the OFT token.\\n     *\\n     * @dev In the case of OFT, address(this) and erc20 are the same contract.\\n     */\\n    function token() public view returns (address) {\\n        return address(this);\\n    }\\n\\n    /**\\n     * @notice Indicates whether the OFT contract requires approval of the 'token()' to send.\\n     * @return requiresApproval Needs approval of the underlying token implementation.\\n     *\\n     * @dev In the case of OFT where the contract IS the token, approval is NOT required.\\n     */\\n    function approvalRequired() external pure virtual returns (bool) {\\n        return false;\\n    }\\n\\n    /**\\n     * @dev Burns tokens from the sender's specified balance.\\n     * @param _from The address to debit the tokens from.\\n     * @param _amountLD The amount of tokens to send in local decimals.\\n     * @param _minAmountLD The minimum amount to send in local decimals.\\n     * @param _dstEid The destination chain ID.\\n     * @return amountSentLD The amount sent in local decimals.\\n     * @return amountReceivedLD The amount received in local decimals on the remote.\\n     */\\n    function _debit(\\n        address _from,\\n        uint256 _amountLD,\\n        uint256 _minAmountLD,\\n        uint32 _dstEid\\n    ) internal virtual override returns (uint256 amountSentLD, uint256 amountReceivedLD) {\\n        (amountSentLD, amountReceivedLD) = _debitView(_amountLD, _minAmountLD, _dstEid);\\n\\n        // @dev In NON-default OFT, amountSentLD could be 100, with a 10% fee, the amountReceivedLD amount is 90,\\n        // therefore amountSentLD CAN differ from amountReceivedLD.\\n\\n        // @dev Default OFT burns on src.\\n        _burn(_from, amountSentLD);\\n    }\\n\\n    /**\\n     * @dev Credits tokens to the specified address.\\n     * @param _to The address to credit the tokens to.\\n     * @param _amountLD The amount of tokens to credit in local decimals.\\n     * @dev _srcEid The source chain ID.\\n     * @return amountReceivedLD The amount of tokens ACTUALLY received in local decimals.\\n     */\\n    function _credit(\\n        address _to,\\n        uint256 _amountLD,\\n        uint32 /*_srcEid*/\\n    ) internal virtual override returns (uint256 amountReceivedLD) {\\n        if (_to == address(0x0)) _to = address(0xdead); // _mint(...) does not support address(0x0)\\n        // @dev Default OFT mints on dst.\\n        _mint(_to, _amountLD);\\n        // @dev In the case of NON-default OFT, the _amountLD MIGHT not be == amountReceivedLD.\\n        return _amountLD;\\n    }\\n}\\n\"},\"lib/openzeppelin-contracts-upgradeable/contracts/utils/PausableUpgradeable.sol\":{\"content\":\"// SPDX-License-Identifier: MIT\\n// OpenZeppelin Contracts (last updated v5.0.0) (utils/Pausable.sol)\\n\\npragma solidity ^0.8.20;\\n\\nimport {ContextUpgradeable} from \\\"../utils/ContextUpgradeable.sol\\\";\\nimport {Initializable} from \\\"../proxy/utils/Initializable.sol\\\";\\n\\n/**\\n * @dev Contract module which allows children to implement an emergency stop\\n * mechanism that can be triggered by an authorized account.\\n *\\n * This module is used through inheritance. It will make available the\\n * modifiers `whenNotPaused` and `whenPaused`, which can be applied to\\n * the functions of your contract. Note that they will not be pausable by\\n * simply including this module, only once the modifiers are put in place.\\n */\\nabstract contract PausableUpgradeable is Initializable, ContextUpgradeable {\\n    /// @custom:storage-location erc7201:openzeppelin.storage.Pausable\\n    struct PausableStorage {\\n        bool _paused;\\n    }\\n\\n    // keccak256(abi.encode(uint256(keccak256(\\\"openzeppelin.storage.Pausable\\\")) - 1)) & ~bytes32(uint256(0xff))\\n    bytes32 private constant PausableStorageLocation = 0xcd5ed15c6e187e77e9aee88184c21f4f2182ab5827cb3b7e07fbedcd63f03300;\\n\\n    function _getPausableStorage() private pure returns (PausableStorage storage $) {\\n        assembly {\\n            $.slot := PausableStorageLocation\\n        }\\n    }\\n\\n    /**\\n     * @dev Emitted when the pause is triggered by `account`.\\n     */\\n    event Paused(address account);\\n\\n    /**\\n     * @dev Emitted when the pause is lifted by `account`.\\n     */\\n    event Unpaused(address account);\\n\\n    /**\\n     * @dev The operation failed because the contract is paused.\\n     */\\n    error EnforcedPause();\\n\\n    /**\\n     * @dev The operation failed because the contract is not paused.\\n     */\\n    error ExpectedPause();\\n\\n    /**\\n     * @dev Initializes the contract in unpaused state.\\n     */\\n    function __Pausable_init() internal onlyInitializing {\\n        __Pausable_init_unchained();\\n    }\\n\\n    function __Pausable_init_unchained() internal onlyInitializing {\\n        PausableStorage storage $ = _getPausableStorage();\\n        $._paused = false;\\n    }\\n\\n    /**\\n     * @dev Modifier to make a function callable only when the contract is not paused.\\n     *\\n     * Requirements:\\n     *\\n     * - The contract must not be paused.\\n     */\\n    modifier whenNotPaused() {\\n        _requireNotPaused();\\n        _;\\n    }\\n\\n    /**\\n     * @dev Modifier to make a function callable only when the contract is paused.\\n     *\\n     * Requirements:\\n     *\\n     * - The contract must be paused.\\n     */\\n    modifier whenPaused() {\\n        _requirePaused();\\n        _;\\n    }\\n\\n    /**\\n     * @dev Returns true if the contract is paused, and false otherwise.\\n     */\\n    function paused() public view virtual returns (bool) {\\n        PausableStorage storage $ = _getPausableStorage();\\n        return $._paused;\\n    }\\n\\n    /**\\n     * @dev Throws if the contract is paused.\\n     */\\n    function _requireNotPaused() internal view virtual {\\n        if (paused()) {\\n            revert EnforcedPause();\\n        }\\n    }\\n\\n    /**\\n     * @dev Throws if the contract is not paused.\\n     */\\n    function _requirePaused() internal view virtual {\\n        if (!paused()) {\\n            revert ExpectedPause();\\n        }\\n    }\\n\\n    /**\\n     * @dev Triggers stopped state.\\n     *\\n     * Requirements:\\n     *\\n     * - The contract must not be paused.\\n     */\\n    function _pause() internal virtual whenNotPaused {\\n        PausableStorage storage $ = _getPausableStorage();\\n        $._paused = true;\\n        emit Paused(_msgSender());\\n    }\\n\\n    /**\\n     * @dev Returns to normal state.\\n     *\\n     * Requirements:\\n     *\\n     * - The contract must be paused.\\n     */\\n    function _unpause() internal virtual whenPaused {\\n        PausableStorage storage $ = _getPausableStorage();\\n        $._paused = false;\\n        emit Unpaused(_msgSender());\\n    }\\n}\\n\"},\"lib/devtools/packages/oft-evm/contracts/interfaces/IOFT.sol\":{\"content\":\"// SPDX-License-Identifier: MIT\\n\\npragma solidity ^0.8.20;\\n\\nimport { MessagingReceipt, MessagingFee } from \\\"@layerzerolabs/oapp-evm/contracts/oapp/OAppSender.sol\\\";\\n\\n/**\\n * @dev Struct representing token parameters for the OFT send() operation.\\n */\\nstruct SendParam {\\n    uint32 dstEid; // Destination endpoint ID.\\n    bytes32 to; // Recipient address.\\n    uint256 amountLD; // Amount to send in local decimals.\\n    uint256 minAmountLD; // Minimum amount to send in local decimals.\\n    bytes extraOptions; // Additional options supplied by the caller to be used in the LayerZero message.\\n    bytes composeMsg; // The composed message for the send() operation.\\n    bytes oftCmd; // The OFT command to be executed, unused in default OFT implementations.\\n}\\n\\n/**\\n * @dev Struct representing OFT limit information.\\n * @dev These amounts can change dynamically and are up the specific oft implementation.\\n */\\nstruct OFTLimit {\\n    uint256 minAmountLD; // Minimum amount in local decimals that can be sent to the recipient.\\n    uint256 maxAmountLD; // Maximum amount in local decimals that can be sent to the recipient.\\n}\\n\\n/**\\n * @dev Struct representing OFT receipt information.\\n */\\nstruct OFTReceipt {\\n    uint256 amountSentLD; // Amount of tokens ACTUALLY debited from the sender in local decimals.\\n    // @dev In non-default implementations, the amountReceivedLD COULD differ from this value.\\n    uint256 amountReceivedLD; // Amount of tokens to be received on the remote side.\\n}\\n\\n/**\\n * @dev Struct representing OFT fee details.\\n * @dev Future proof mechanism to provide a standardized way to communicate fees to things like a UI.\\n */\\nstruct OFTFeeDetail {\\n    int256 feeAmountLD; // Amount of the fee in local decimals.\\n    string description; // Description of the fee.\\n}\\n\\n/**\\n * @title IOFT\\n * @dev Interface for the OftChain (OFT) token.\\n * @dev Does not inherit ERC20 to accommodate usage by OFTAdapter as well.\\n * @dev This specific interface ID is '0x02e49c2c'.\\n */\\ninterface IOFT {\\n    // Custom error messages\\n    error InvalidLocalDecimals();\\n    error SlippageExceeded(uint256 amountLD, uint256 minAmountLD);\\n    error AmountSDOverflowed(uint256 amountSD);\\n\\n    // Events\\n    event OFTSent(\\n        bytes32 indexed guid, // GUID of the OFT message.\\n        uint32 dstEid, // Destination Endpoint ID.\\n        address indexed fromAddress, // Address of the sender on the src chain.\\n        uint256 amountSentLD, // Amount of tokens sent in local decimals.\\n        uint256 amountReceivedLD // Amount of tokens received in local decimals.\\n    );\\n    event OFTReceived(\\n        bytes32 indexed guid, // GUID of the OFT message.\\n        uint32 srcEid, // Source Endpoint ID.\\n        address indexed toAddress, // Address of the recipient on the dst chain.\\n        uint256 amountReceivedLD // Amount of tokens received in local decimals.\\n    );\\n\\n    /**\\n     * @notice Retrieves interfaceID and the version of the OFT.\\n     * @return interfaceId The interface ID.\\n     * @return version The version.\\n     *\\n     * @dev interfaceId: This specific interface ID is '0x02e49c2c'.\\n     * @dev version: Indicates a cross-chain compatible msg encoding with other OFTs.\\n     * @dev If a new feature is added to the OFT cross-chain msg encoding, the version will be incremented.\\n     * ie. localOFT version(x,1) CAN send messages to remoteOFT version(x,1)\\n     */\\n    function oftVersion() external view returns (bytes4 interfaceId, uint64 version);\\n\\n    /**\\n     * @notice Retrieves the address of the token associated with the OFT.\\n     * @return token The address of the ERC20 token implementation.\\n     */\\n    function token() external view returns (address);\\n\\n    /**\\n     * @notice Indicates whether the OFT contract requires approval of the 'token()' to send.\\n     * @return requiresApproval Needs approval of the underlying token implementation.\\n     *\\n     * @dev Allows things like wallet implementers to determine integration requirements,\\n     * without understanding the underlying token implementation.\\n     */\\n    function approvalRequired() external view returns (bool);\\n\\n    /**\\n     * @notice Retrieves the shared decimals of the OFT.\\n     * @return sharedDecimals The shared decimals of the OFT.\\n     */\\n    function sharedDecimals() external view returns (uint8);\\n\\n    /**\\n     * @notice Provides the fee breakdown and settings data for an OFT. Unused in the default implementation.\\n     * @param _sendParam The parameters for the send operation.\\n     * @return limit The OFT limit information.\\n     * @return oftFeeDetails The details of OFT fees.\\n     * @return receipt The OFT receipt information.\\n     */\\n    function quoteOFT(\\n        SendParam calldata _sendParam\\n    ) external view returns (OFTLimit memory, OFTFeeDetail[] memory oftFeeDetails, OFTReceipt memory);\\n\\n    /**\\n     * @notice Provides a quote for the send() operation.\\n     * @param _sendParam The parameters for the send() operation.\\n     * @param _payInLzToken Flag indicating whether the caller is paying in the LZ token.\\n     * @return fee The calculated LayerZero messaging fee from the send() operation.\\n     *\\n     * @dev MessagingFee: LayerZero msg fee\\n     *  - nativeFee: The native fee.\\n     *  - lzTokenFee: The lzToken fee.\\n     */\\n    function quoteSend(SendParam calldata _sendParam, bool _payInLzToken) external view returns (MessagingFee memory);\\n\\n    /**\\n     * @notice Executes the send() operation.\\n     * @param _sendParam The parameters for the send operation.\\n     * @param _fee The fee information supplied by the caller.\\n     *      - nativeFee: The native fee.\\n     *      - lzTokenFee: The lzToken fee.\\n     * @param _refundAddress The address to receive any excess funds from fees etc. on the src.\\n     * @return receipt The LayerZero messaging receipt from the send() operation.\\n     * @return oftReceipt The OFT receipt information.\\n     *\\n     * @dev MessagingReceipt: LayerZero msg receipt\\n     *  - guid: The unique identifier for the sent message.\\n     *  - nonce: The nonce of the sent message.\\n     *  - fee: The LayerZero fee incurred for the message.\\n     */\\n    function send(\\n        SendParam calldata _sendParam,\\n        MessagingFee calldata _fee,\\n        address _refundAddress\\n    ) external payable returns (MessagingReceipt memory, OFTReceipt memory);\\n}\\n\"},\"lib/openzeppelin-contracts-upgradeable/contracts/token/ERC20/extensions/ERC20PermitUpgradeable.sol\":{\"content\":\"// SPDX-License-Identifier: MIT\\n// OpenZeppelin Contracts (last updated v5.0.0) (token/ERC20/extensions/ERC20Permit.sol)\\n\\npragma solidity ^0.8.20;\\n\\nimport {IERC20Permit} from \\\"@openzeppelin/contracts/token/ERC20/extensions/IERC20Permit.sol\\\";\\nimport {ERC20Upgradeable} from \\\"../ERC20Upgradeable.sol\\\";\\nimport {ECDSA} from \\\"@openzeppelin/contracts/utils/cryptography/ECDSA.sol\\\";\\nimport {EIP712Upgradeable} from \\\"../../../utils/cryptography/EIP712Upgradeable.sol\\\";\\nimport {NoncesUpgradeable} from \\\"../../../utils/NoncesUpgradeable.sol\\\";\\nimport {Initializable} from \\\"../../../proxy/utils/Initializable.sol\\\";\\n\\n/**\\n * @dev Implementation of the ERC20 Permit extension allowing approvals to be made via signatures, as defined in\\n * https://eips.ethereum.org/EIPS/eip-2612[EIP-2612].\\n *\\n * Adds the {permit} method, which can be used to change an account's ERC20 allowance (see {IERC20-allowance}) by\\n * presenting a message signed by the account. By not relying on `{IERC20-approve}`, the token holder account doesn't\\n * need to send a transaction, and thus is not required to hold Ether at all.\\n */\\nabstract contract ERC20PermitUpgradeable is Initializable, ERC20Upgradeable, IERC20Permit, EIP712Upgradeable, NoncesUpgradeable {\\n    bytes32 private constant PERMIT_TYPEHASH =\\n        keccak256(\\\"Permit(address owner,address spender,uint256 value,uint256 nonce,uint256 deadline)\\\");\\n\\n    /**\\n     * @dev Permit deadline has expired.\\n     */\\n    error ERC2612ExpiredSignature(uint256 deadline);\\n\\n    /**\\n     * @dev Mismatched signature.\\n     */\\n    error ERC2612InvalidSigner(address signer, address owner);\\n\\n    /**\\n     * @dev Initializes the {EIP712} domain separator using the `name` parameter, and setting `version` to `\\\"1\\\"`.\\n     *\\n     * It's a good idea to use the same `name` that is defined as the ERC20 token name.\\n     */\\n    function __ERC20Permit_init(string memory name) internal onlyInitializing {\\n        __EIP712_init_unchained(name, \\\"1\\\");\\n    }\\n\\n    function __ERC20Permit_init_unchained(string memory) internal onlyInitializing {}\\n\\n    /**\\n     * @inheritdoc IERC20Permit\\n     */\\n    function permit(\\n        address owner,\\n        address spender,\\n        uint256 value,\\n        uint256 deadline,\\n        uint8 v,\\n        bytes32 r,\\n        bytes32 s\\n    ) public virtual {\\n        if (block.timestamp > deadline) {\\n            revert ERC2612ExpiredSignature(deadline);\\n        }\\n\\n        bytes32 structHash = keccak256(abi.encode(PERMIT_TYPEHASH, owner, spender, value, _useNonce(owner), deadline));\\n\\n        bytes32 hash = _hashTypedDataV4(structHash);\\n\\n        address signer = ECDSA.recover(hash, v, r, s);\\n        if (signer != owner) {\\n            revert ERC2612InvalidSigner(signer, owner);\\n        }\\n\\n        _approve(owner, spender, value);\\n    }\\n\\n    /**\\n     * @inheritdoc IERC20Permit\\n     */\\n    function nonces(address owner) public view virtual override(IERC20Permit, NoncesUpgradeable) returns (uint256) {\\n        return super.nonces(owner);\\n    }\\n\\n    /**\\n     * @inheritdoc IERC20Permit\\n     */\\n    // solhint-disable-next-line func-name-mixedcase\\n    function DOMAIN_SEPARATOR() external view virtual returns (bytes32) {\\n        return _domainSeparatorV4();\\n    }\\n}\\n\"},\"lib/openzeppelin-contracts-upgradeable/contracts/access/AccessControlUpgradeable.sol\":{\"content\":\"// SPDX-License-Identifier: MIT\\n// OpenZeppelin Contracts (last updated v5.0.0) (access/AccessControl.sol)\\n\\npragma solidity ^0.8.20;\\n\\nimport {IAccessControl} from \\\"@openzeppelin/contracts/access/IAccessControl.sol\\\";\\nimport {ContextUpgradeable} from \\\"../utils/ContextUpgradeable.sol\\\";\\nimport {ERC165Upgradeable} from \\\"../utils/introspection/ERC165Upgradeable.sol\\\";\\nimport {Initializable} from \\\"../proxy/utils/Initializable.sol\\\";\\n\\n/**\\n * @dev Contract module that allows children to implement role-based access\\n * control mechanisms. This is a lightweight version that doesn't allow enumerating role\\n * members except through off-chain means by accessing the contract event logs. Some\\n * applications may benefit from on-chain enumerability, for those cases see\\n * {AccessControlEnumerable}.\\n *\\n * Roles are referred to by their `bytes32` identifier. These should be exposed\\n * in the external API and be unique. The best way to achieve this is by\\n * using `public constant` hash digests:\\n *\\n * ```solidity\\n * bytes32 public constant MY_ROLE = keccak256(\\\"MY_ROLE\\\");\\n * ```\\n *\\n * Roles can be used to represent a set of permissions. To restrict access to a\\n * function call, use {hasRole}:\\n *\\n * ```solidity\\n * function foo() public {\\n *     require(hasRole(MY_ROLE, msg.sender));\\n *     ...\\n * }\\n * ```\\n *\\n * Roles can be granted and revoked dynamically via the {grantRole} and\\n * {revokeRole} functions. Each role has an associated admin role, and only\\n * accounts that have a role's admin role can call {grantRole} and {revokeRole}.\\n *\\n * By default, the admin role for all roles is `DEFAULT_ADMIN_ROLE`, which means\\n * that only accounts with this role will be able to grant or revoke other\\n * roles. More complex role relationships can be created by using\\n * {_setRoleAdmin}.\\n *\\n * WARNING: The `DEFAULT_ADMIN_ROLE` is also its own admin: it has permission to\\n * grant and revoke this role. Extra precautions should be taken to secure\\n * accounts that have been granted it. We recommend using {AccessControlDefaultAdminRules}\\n * to enforce additional security measures for this role.\\n */\\nabstract contract AccessControlUpgradeable is Initializable, ContextUpgradeable, IAccessControl, ERC165Upgradeable {\\n    struct RoleData {\\n        mapping(address account => bool) hasRole;\\n        bytes32 adminRole;\\n    }\\n\\n    bytes32 public constant DEFAULT_ADMIN_ROLE = 0x00;\\n\\n\\n    /// @custom:storage-location erc7201:openzeppelin.storage.AccessControl\\n    struct AccessControlStorage {\\n        mapping(bytes32 role => RoleData) _roles;\\n    }\\n\\n    // keccak256(abi.encode(uint256(keccak256(\\\"openzeppelin.storage.AccessControl\\\")) - 1)) & ~bytes32(uint256(0xff))\\n    bytes32 private constant AccessControlStorageLocation = 0x02dd7bc7dec4dceedda775e58dd541e08a116c6c53815c0bd028192f7b626800;\\n\\n    function _getAccessControlStorage() private pure returns (AccessControlStorage storage $) {\\n        assembly {\\n            $.slot := AccessControlStorageLocation\\n        }\\n    }\\n\\n    /**\\n     * @dev Modifier that checks that an account has a specific role. Reverts\\n     * with an {AccessControlUnauthorizedAccount} error including the required role.\\n     */\\n    modifier onlyRole(bytes32 role) {\\n        _checkRole(role);\\n        _;\\n    }\\n\\n    function __AccessControl_init() internal onlyInitializing {\\n    }\\n\\n    function __AccessControl_init_unchained() internal onlyInitializing {\\n    }\\n    /**\\n     * @dev See {IERC165-supportsInterface}.\\n     */\\n    function supportsInterface(bytes4 interfaceId) public view virtual override returns (bool) {\\n        return interfaceId == type(IAccessControl).interfaceId || super.supportsInterface(interfaceId);\\n    }\\n\\n    /**\\n     * @dev Returns `true` if `account` has been granted `role`.\\n     */\\n    function hasRole(bytes32 role, address account) public view virtual returns (bool) {\\n        AccessControlStorage storage $ = _getAccessControlStorage();\\n        return $._roles[role].hasRole[account];\\n    }\\n\\n    /**\\n     * @dev Reverts with an {AccessControlUnauthorizedAccount} error if `_msgSender()`\\n     * is missing `role`. Overriding this function changes the behavior of the {onlyRole} modifier.\\n     */\\n    function _checkRole(bytes32 role) internal view virtual {\\n        _checkRole(role, _msgSender());\\n    }\\n\\n    /**\\n     * @dev Reverts with an {AccessControlUnauthorizedAccount} error if `account`\\n     * is missing `role`.\\n     */\\n    function _checkRole(bytes32 role, address account) internal view virtual {\\n        if (!hasRole(role, account)) {\\n            revert AccessControlUnauthorizedAccount(account, role);\\n        }\\n    }\\n\\n    /**\\n     * @dev Returns the admin role that controls `role`. See {grantRole} and\\n     * {revokeRole}.\\n     *\\n     * To change a role's admin, use {_setRoleAdmin}.\\n     */\\n    function getRoleAdmin(bytes32 role) public view virtual returns (bytes32) {\\n        AccessControlStorage storage $ = _getAccessControlStorage();\\n        return $._roles[role].adminRole;\\n    }\\n\\n    /**\\n     * @dev Grants `role` to `account`.\\n     *\\n     * If `account` had not been already granted `role`, emits a {RoleGranted}\\n     * event.\\n     *\\n     * Requirements:\\n     *\\n     * - the caller must have ``role``'s admin role.\\n     *\\n     * May emit a {RoleGranted} event.\\n     */\\n    function grantRole(bytes32 role, address account) public virtual onlyRole(getRoleAdmin(role)) {\\n        _grantRole(role, account);\\n    }\\n\\n    /**\\n     * @dev Revokes `role` from `account`.\\n     *\\n     * If `account` had been granted `role`, emits a {RoleRevoked} event.\\n     *\\n     * Requirements:\\n     *\\n     * - the caller must have ``role``'s admin role.\\n     *\\n     * May emit a {RoleRevoked} event.\\n     */\\n    function revokeRole(bytes32 role, address account) public virtual onlyRole(getRoleAdmin(role)) {\\n        _revokeRole(role, account);\\n    }\\n\\n    /**\\n     * @dev Revokes `role` from the calling account.\\n     *\\n     * Roles are often managed via {grantRole} and {revokeRole}: this function's\\n     * purpose is to provide a mechanism for accounts to lose their privileges\\n     * if they are compromised (such as when a trusted device is misplaced).\\n     *\\n     * If the calling account had been revoked `role`, emits a {RoleRevoked}\\n     * event.\\n     *\\n     * Requirements:\\n     *\\n     * - the caller must be `callerConfirmation`.\\n     *\\n     * May emit a {RoleRevoked} event.\\n     */\\n    function renounceRole(bytes32 role, address callerConfirmation) public virtual {\\n        if (callerConfirmation != _msgSender()) {\\n            revert AccessControlBadConfirmation();\\n        }\\n\\n        _revokeRole(role, callerConfirmation);\\n    }\\n\\n    /**\\n     * @dev Sets `adminRole` as ``role``'s admin role.\\n     *\\n     * Emits a {RoleAdminChanged} event.\\n     */\\n    function _setRoleAdmin(bytes32 role, bytes32 adminRole) internal virtual {\\n        AccessControlStorage storage $ = _getAccessControlStorage();\\n        bytes32 previousAdminRole = getRoleAdmin(role);\\n        $._roles[role].adminRole = adminRole;\\n        emit RoleAdminChanged(role, previousAdminRole, adminRole);\\n    }\\n\\n    /**\\n     * @dev Attempts to grant `role` to `account` and returns a boolean indicating if `role` was granted.\\n     *\\n     * Internal function without access restriction.\\n     *\\n     * May emit a {RoleGranted} event.\\n     */\\n    function _grantRole(bytes32 role, address account) internal virtual returns (bool) {\\n        AccessControlStorage storage $ = _getAccessControlStorage();\\n        if (!hasRole(role, account)) {\\n            $._roles[role].hasRole[account] = true;\\n            emit RoleGranted(role, account, _msgSender());\\n            return true;\\n        } else {\\n            return false;\\n        }\\n    }\\n\\n    /**\\n     * @dev Attempts to revoke `role` to `account` and returns a boolean indicating if `role` was revoked.\\n     *\\n     * Internal function without access restriction.\\n     *\\n     * May emit a {RoleRevoked} event.\\n     */\\n    function _revokeRole(bytes32 role, address account) internal virtual returns (bool) {\\n        AccessControlStorage storage $ = _getAccessControlStorage();\\n        if (hasRole(role, account)) {\\n            $._roles[role].hasRole[account] = false;\\n            emit RoleRevoked(role, account, _msgSender());\\n            return true;\\n        } else {\\n            return false;\\n        }\\n    }\\n}\\n\"},\"lib/openzeppelin-contracts-upgradeable/contracts/token/ERC20/ERC20Upgradeable.sol\":{\"content\":\"// SPDX-License-Identifier: MIT\\n// OpenZeppelin Contracts (last updated v5.0.0) (token/ERC20/ERC20.sol)\\n\\npragma solidity ^0.8.20;\\n\\nimport {IERC20} from \\\"@openzeppelin/contracts/token/ERC20/IERC20.sol\\\";\\nimport {IERC20Metadata} from \\\"@openzeppelin/contracts/token/ERC20/extensions/IERC20Metadata.sol\\\";\\nimport {ContextUpgradeable} from \\\"../../utils/ContextUpgradeable.sol\\\";\\nimport {IERC20Errors} from \\\"@openzeppelin/contracts/interfaces/draft-IERC6093.sol\\\";\\nimport {Initializable} from \\\"../../proxy/utils/Initializable.sol\\\";\\n\\n/**\\n * @dev Implementation of the {IERC20} interface.\\n *\\n * This implementation is agnostic to the way tokens are created. This means\\n * that a supply mechanism has to be added in a derived contract using {_mint}.\\n *\\n * TIP: For a detailed writeup see our guide\\n * https://forum.openzeppelin.com/t/how-to-implement-erc20-supply-mechanisms/226[How\\n * to implement supply mechanisms].\\n *\\n * The default value of {decimals} is 18. To change this, you should override\\n * this function so it returns a different value.\\n *\\n * We have followed general OpenZeppelin Contracts guidelines: functions revert\\n * instead returning `false` on failure. This behavior is nonetheless\\n * conventional and does not conflict with the expectations of ERC20\\n * applications.\\n *\\n * Additionally, an {Approval} event is emitted on calls to {transferFrom}.\\n * This allows applications to reconstruct the allowance for all accounts just\\n * by listening to said events. Other implementations of the EIP may not emit\\n * these events, as it isn't required by the specification.\\n */\\nabstract contract ERC20Upgradeable is Initializable, ContextUpgradeable, IERC20, IERC20Metadata, IERC20Errors {\\n    /// @custom:storage-location erc7201:openzeppelin.storage.ERC20\\n    struct ERC20Storage {\\n        mapping(address account => uint256) _balances;\\n\\n        mapping(address account => mapping(address spender => uint256)) _allowances;\\n\\n        uint256 _totalSupply;\\n\\n        string _name;\\n        string _symbol;\\n    }\\n\\n    // keccak256(abi.encode(uint256(keccak256(\\\"openzeppelin.storage.ERC20\\\")) - 1)) & ~bytes32(uint256(0xff))\\n    bytes32 private constant ERC20StorageLocation = 0x52c63247e1f47db19d5ce0460030c497f067ca4cebf71ba98eeadabe20bace00;\\n\\n    function _getERC20Storage() private pure returns (ERC20Storage storage $) {\\n        assembly {\\n            $.slot := ERC20StorageLocation\\n        }\\n    }\\n\\n    /**\\n     * @dev Sets the values for {name} and {symbol}.\\n     *\\n     * All two of these values are immutable: they can only be set once during\\n     * construction.\\n     */\\n    function __ERC20_init(string memory name_, string memory symbol_) internal onlyInitializing {\\n        __ERC20_init_unchained(name_, symbol_);\\n    }\\n\\n    function __ERC20_init_unchained(string memory name_, string memory symbol_) internal onlyInitializing {\\n        ERC20Storage storage $ = _getERC20Storage();\\n        $._name = name_;\\n        $._symbol = symbol_;\\n    }\\n\\n    /**\\n     * @dev Returns the name of the token.\\n     */\\n    function name() public view virtual returns (string memory) {\\n        ERC20Storage storage $ = _getERC20Storage();\\n        return $._name;\\n    }\\n\\n    /**\\n     * @dev Returns the symbol of the token, usually a shorter version of the\\n     * name.\\n     */\\n    function symbol() public view virtual returns (string memory) {\\n        ERC20Storage storage $ = _getERC20Storage();\\n        return $._symbol;\\n    }\\n\\n    /**\\n     * @dev Returns the number of decimals used to get its user representation.\\n     * For example, if `decimals` equals `2`, a balance of `505` tokens should\\n     * be displayed to a user as `5.05` (`505 / 10 ** 2`).\\n     *\\n     * Tokens usually opt for a value of 18, imitating the relationship between\\n     * Ether and Wei. This is the default value returned by this function, unless\\n     * it's overridden.\\n     *\\n     * NOTE: This information is only used for _display_ purposes: it in\\n     * no way affects any of the arithmetic of the contract, including\\n     * {IERC20-balanceOf} and {IERC20-transfer}.\\n     */\\n    function decimals() public view virtual returns (uint8) {\\n        return 18;\\n    }\\n\\n    /**\\n     * @dev See {IERC20-totalSupply}.\\n     */\\n    function totalSupply() public view virtual returns (uint256) {\\n        ERC20Storage storage $ = _getERC20Storage();\\n        return $._totalSupply;\\n    }\\n\\n    /**\\n     * @dev See {IERC20-balanceOf}.\\n     */\\n    function balanceOf(address account) public view virtual returns (uint256) {\\n        ERC20Storage storage $ = _getERC20Storage();\\n        return $._balances[account];\\n    }\\n\\n    /**\\n     * @dev See {IERC20-transfer}.\\n     *\\n     * Requirements:\\n     *\\n     * - `to` cannot be the zero address.\\n     * - the caller must have a balance of at least `value`.\\n     */\\n    function transfer(address to, uint256 value) public virtual returns (bool) {\\n        address owner = _msgSender();\\n        _transfer(owner, to, value);\\n        return true;\\n    }\\n\\n    /**\\n     * @dev See {IERC20-allowance}.\\n     */\\n    function allowance(address owner, address spender) public view virtual returns (uint256) {\\n        ERC20Storage storage $ = _getERC20Storage();\\n        return $._allowances[owner][spender];\\n    }\\n\\n    /**\\n     * @dev See {IERC20-approve}.\\n     *\\n     * NOTE: If `value` is the maximum `uint256`, the allowance is not updated on\\n     * `transferFrom`. This is semantically equivalent to an infinite approval.\\n     *\\n     * Requirements:\\n     *\\n     * - `spender` cannot be the zero address.\\n     */\\n    function approve(address spender, uint256 value) public virtual returns (bool) {\\n        address owner = _msgSender();\\n        _approve(owner, spender, value);\\n        return true;\\n    }\\n\\n    /**\\n     * @dev See {IERC20-transferFrom}.\\n     *\\n     * Emits an {Approval} event indicating the updated allowance. This is not\\n     * required by the EIP. See the note at the beginning of {ERC20}.\\n     *\\n     * NOTE: Does not update the allowance if the current allowance\\n     * is the maximum `uint256`.\\n     *\\n     * Requirements:\\n     *\\n     * - `from` and `to` cannot be the zero address.\\n     * - `from` must have a balance of at least `value`.\\n     * - the caller must have allowance for ``from``'s tokens of at least\\n     * `value`.\\n     */\\n    function transferFrom(address from, address to, uint256 value) public virtual returns (bool) {\\n        address spender = _msgSender();\\n        _spendAllowance(from, spender, value);\\n        _transfer(from, to, value);\\n        return true;\\n    }\\n\\n    /**\\n     * @dev Moves a `value` amount of tokens from `from` to `to`.\\n     *\\n     * This internal function is equivalent to {transfer}, and can be used to\\n     * e.g. implement automatic token fees, slashing mechanisms, etc.\\n     *\\n     * Emits a {Transfer} event.\\n     *\\n     * NOTE: This function is not virtual, {_update} should be overridden instead.\\n     */\\n    function _transfer(address from, address to, uint256 value) internal {\\n        if (from == address(0)) {\\n            revert ERC20InvalidSender(address(0));\\n        }\\n        if (to == address(0)) {\\n            revert ERC20InvalidReceiver(address(0));\\n        }\\n        _update(from, to, value);\\n    }\\n\\n    /**\\n     * @dev Transfers a `value` amount of tokens from `from` to `to`, or alternatively mints (or burns) if `from`\\n     * (or `to`) is the zero address. All customizations to transfers, mints, and burns should be done by overriding\\n     * this function.\\n     *\\n     * Emits a {Transfer} event.\\n     */\\n    function _update(address from, address to, uint256 value) internal virtual {\\n        ERC20Storage storage $ = _getERC20Storage();\\n        if (from == address(0)) {\\n            // Overflow check required: The rest of the code assumes that totalSupply never overflows\\n            $._totalSupply += value;\\n        } else {\\n            uint256 fromBalance = $._balances[from];\\n            if (fromBalance < value) {\\n                revert ERC20InsufficientBalance(from, fromBalance, value);\\n            }\\n            unchecked {\\n                // Overflow not possible: value <= fromBalance <= totalSupply.\\n                $._balances[from] = fromBalance - value;\\n            }\\n        }\\n\\n        if (to == address(0)) {\\n            unchecked {\\n                // Overflow not possible: value <= totalSupply or value <= fromBalance <= totalSupply.\\n                $._totalSupply -= value;\\n            }\\n        } else {\\n            unchecked {\\n                // Overflow not possible: balance + value is at most totalSupply, which we know fits into a uint256.\\n                $._balances[to] += value;\\n            }\\n        }\\n\\n        emit Transfer(from, to, value);\\n    }\\n\\n    /**\\n     * @dev Creates a `value` amount of tokens and assigns them to `account`, by transferring it from address(0).\\n     * Relies on the `_update` mechanism\\n     *\\n     * Emits a {Transfer} event with `from` set to the zero address.\\n     *\\n     * NOTE: This function is not virtual, {_update} should be overridden instead.\\n     */\\n    function _mint(address account, uint256 value) internal {\\n        if (account == address(0)) {\\n            revert ERC20InvalidReceiver(address(0));\\n        }\\n        _update(address(0), account, value);\\n    }\\n\\n    /**\\n     * @dev Destroys a `value` amount of tokens from `account`, lowering the total supply.\\n     * Relies on the `_update` mechanism.\\n     *\\n     * Emits a {Transfer} event with `to` set to the zero address.\\n     *\\n     * NOTE: This function is not virtual, {_update} should be overridden instead\\n     */\\n    function _burn(address account, uint256 value) internal {\\n        if (account == address(0)) {\\n            revert ERC20InvalidSender(address(0));\\n        }\\n        _update(account, address(0), value);\\n    }\\n\\n    /**\\n     * @dev Sets `value` as the allowance of `spender` over the `owner` s tokens.\\n     *\\n     * This internal function is equivalent to `approve`, and can be used to\\n     * e.g. set automatic allowances for certain subsystems, etc.\\n     *\\n     * Emits an {Approval} event.\\n     *\\n     * Requirements:\\n     *\\n     * - `owner` cannot be the zero address.\\n     * - `spender` cannot be the zero address.\\n     *\\n     * Overrides to this logic should be done to the variant with an additional `bool emitEvent` argument.\\n     */\\n    function _approve(address owner, address spender, uint256 value) internal {\\n        _approve(owner, spender, value, true);\\n    }\\n\\n    /**\\n     * @dev Variant of {_approve} with an optional flag to enable or disable the {Approval} event.\\n     *\\n     * By default (when calling {_approve}) the flag is set to true. On the other hand, approval changes made by\\n     * `_spendAllowance` during the `transferFrom` operation set the flag to false. This saves gas by not emitting any\\n     * `Approval` event during `transferFrom` operations.\\n     *\\n     * Anyone who wishes to continue emitting `Approval` events on the`transferFrom` operation can force the flag to\\n     * true using the following override:\\n     * ```\\n     * function _approve(address owner, address spender, uint256 value, bool) internal virtual override {\\n     *     super._approve(owner, spender, value, true);\\n     * }\\n     * ```\\n     *\\n     * Requirements are the same as {_approve}.\\n     */\\n    function _approve(address owner, address spender, uint256 value, bool emitEvent) internal virtual {\\n        ERC20Storage storage $ = _getERC20Storage();\\n        if (owner == address(0)) {\\n            revert ERC20InvalidApprover(address(0));\\n        }\\n        if (spender == address(0)) {\\n            revert ERC20InvalidSpender(address(0));\\n        }\\n        $._allowances[owner][spender] = value;\\n        if (emitEvent) {\\n            emit Approval(owner, spender, value);\\n        }\\n    }\\n\\n    /**\\n     * @dev Updates `owner` s allowance for `spender` based on spent `value`.\\n     *\\n     * Does not update the allowance value in case of infinite allowance.\\n     * Revert if not enough allowance is available.\\n     *\\n     * Does not emit an {Approval} event.\\n     */\\n    function _spendAllowance(address owner, address spender, uint256 value) internal virtual {\\n        uint256 currentAllowance = allowance(owner, spender);\\n        if (currentAllowance != type(uint256).max) {\\n            if (currentAllowance < value) {\\n                revert ERC20InsufficientAllowance(spender, currentAllowance, value);\\n            }\\n            unchecked {\\n                _approve(owner, spender, currentAllowance - value, false);\\n            }\\n        }\\n    }\\n}\\n\"},\"lib/devtools/packages/oft-evm-upgradeable/contracts/oft/OFTCoreUpgradeable.sol\":{\"content\":\"// SPDX-License-Identifier: MIT\\n\\npragma solidity ^0.8.20;\\n\\nimport { OAppUpgradeable, Origin } from \\\"@layerzerolabs/oapp-evm-upgradeable/contracts/oapp/OAppUpgradeable.sol\\\";\\nimport { OAppOptionsType3Upgradeable } from \\\"@layerzerolabs/oapp-evm-upgradeable/contracts/oapp/libs/OAppOptionsType3Upgradeable.sol\\\";\\nimport { IOAppMsgInspector } from \\\"@layerzerolabs/oapp-evm/contracts/oapp/interfaces/IOAppMsgInspector.sol\\\";\\n\\nimport { OAppPreCrimeSimulatorUpgradeable } from \\\"@layerzerolabs/oapp-evm-upgradeable/contracts/precrime/OAppPreCrimeSimulatorUpgradeable.sol\\\";\\n\\nimport { IOFT, SendParam, OFTLimit, OFTReceipt, OFTFeeDetail, MessagingReceipt, MessagingFee } from \\\"@layerzerolabs/oft-evm/contracts/interfaces/IOFT.sol\\\";\\nimport { OFTMsgCodec } from \\\"@layerzerolabs/oft-evm/contracts/libs/OFTMsgCodec.sol\\\";\\nimport { OFTComposeMsgCodec } from \\\"@layerzerolabs/oft-evm/contracts/libs/OFTComposeMsgCodec.sol\\\";\\n\\n/**\\n * @title OFTCore\\n * @dev Abstract contract for the OftChain (OFT) token.\\n */\\nabstract contract OFTCoreUpgradeable is\\n    IOFT,\\n    OAppUpgradeable,\\n    OAppPreCrimeSimulatorUpgradeable,\\n    OAppOptionsType3Upgradeable\\n{\\n    using OFTMsgCodec for bytes;\\n    using OFTMsgCodec for bytes32;\\n\\n    struct OFTCoreStorage {\\n        // Address of an optional contract to inspect both 'message' and 'options'\\n        address msgInspector;\\n    }\\n\\n    // keccak256(abi.encode(uint256(keccak256(\\\"layerzerov2.storage.oftcore\\\")) - 1)) & ~bytes32(uint256(0xff))\\n    bytes32 private constant OFT_CORE_STORAGE_LOCATION =\\n        0x41db8a78b0206aba5c54bcbfc2bda0d84082a84eb88e680379a57b9e9f653c00;\\n\\n    // @notice Provides a conversion rate when swapping between denominations of SD and LD\\n    //      - shareDecimals == SD == shared Decimals\\n    //      - localDecimals == LD == local decimals\\n    // @dev Considers that tokens have different decimal amounts on various chains.\\n    // @dev eg.\\n    //  For a token\\n    //      - locally with 4 decimals --> 1.2345 => uint(12345)\\n    //      - remotely with 2 decimals --> 1.23 => uint(123)\\n    //      - The conversion rate would be 10 ** (4 - 2) = 100\\n    //  @dev If you want to send 1.2345 -> (uint 12345), you CANNOT represent that value on the remote,\\n    //  you can only display 1.23 -> uint(123).\\n    //  @dev To preserve the dust that would otherwise be lost on that conversion,\\n    //  we need to unify a denomination that can be represented on ALL chains inside of the OFT mesh\\n    uint256 public immutable decimalConversionRate;\\n\\n    // @notice Msg types that are used to identify the various OFT operations.\\n    // @dev This can be extended in child contracts for non-default oft operations\\n    // @dev These values are used in things like combineOptions() in OAppOptionsType3.sol.\\n    uint16 public constant SEND = 1;\\n    uint16 public constant SEND_AND_CALL = 2;\\n\\n    event MsgInspectorSet(address inspector);\\n\\n    function _getOFTCoreStorage() internal pure returns (OFTCoreStorage storage $) {\\n        assembly {\\n            $.slot := OFT_CORE_STORAGE_LOCATION\\n        }\\n    }\\n\\n    /**\\n     * @dev Constructor.\\n     * @param _localDecimals The decimals of the token on the local chain (this chain).\\n     * @param _endpoint The address of the LayerZero endpoint.\\n     */\\n    constructor(uint8 _localDecimals, address _endpoint) OAppUpgradeable(_endpoint) {\\n        if (_localDecimals < sharedDecimals()) revert InvalidLocalDecimals();\\n        decimalConversionRate = 10 ** (_localDecimals - sharedDecimals());\\n    }\\n\\n    /**\\n     * @notice Retrieves interfaceID and the version of the OFT.\\n     * @return interfaceId The interface ID.\\n     * @return version The version.\\n     *\\n     * @dev interfaceId: This specific interface ID is '0x02e49c2c'.\\n     * @dev version: Indicates a cross-chain compatible msg encoding with other OFTs.\\n     * @dev If a new feature is added to the OFT cross-chain msg encoding, the version will be incremented.\\n     * ie. localOFT version(x,1) CAN send messages to remoteOFT version(x,1)\\n     */\\n    function oftVersion() external pure virtual returns (bytes4 interfaceId, uint64 version) {\\n        return (type(IOFT).interfaceId, 1);\\n    }\\n\\n    /**\\n     * @dev Initializes the OFTCore contract.\\n     * @param _delegate The delegate capable of making OApp configurations inside of the endpoint.\\n     *\\n     * @dev The delegate typically should be set as the owner of the contract.\\n     * @dev Ownable is not initialized here on purpose. It should be initialized in the child contract to\\n     * accommodate the different version of Ownable.\\n     */\\n    function __OFTCore_init(address _delegate) internal onlyInitializing {\\n        __OApp_init(_delegate);\\n        __OAppPreCrimeSimulator_init();\\n        __OAppOptionsType3_init();\\n    }\\n\\n    function __OFTCore_init_unchained() internal onlyInitializing {}\\n\\n    function msgInspector() public view returns (address) {\\n        OFTCoreStorage storage $ = _getOFTCoreStorage();\\n        return $.msgInspector;\\n    }\\n\\n    /**\\n     * @dev Retrieves the shared decimals of the OFT.\\n     * @return The shared decimals of the OFT.\\n     *\\n     * @dev Sets an implicit cap on the amount of tokens, over uint64.max() will need some sort of outbound cap / totalSupply cap\\n     * Lowest common decimal denominator between chains.\\n     * Defaults to 6 decimal places to provide up to 18,446,744,073,709.551615 units (max uint64).\\n     * For tokens exceeding this totalSupply(), they will need to override the sharedDecimals function with something smaller.\\n     * ie. 4 sharedDecimals would be 1,844,674,407,370,955.1615\\n     */\\n    function sharedDecimals() public pure virtual returns (uint8) {\\n        return 6;\\n    }\\n\\n    /**\\n     * @dev Sets the message inspector address for the OFT.\\n     * @param _msgInspector The address of the message inspector.\\n     *\\n     * @dev This is an optional contract that can be used to inspect both 'message' and 'options'.\\n     * @dev Set it to address(0) to disable it, or set it to a contract address to enable it.\\n     */\\n    function setMsgInspector(address _msgInspector) public virtual onlyOwner {\\n        OFTCoreStorage storage $ = _getOFTCoreStorage();\\n        $.msgInspector = _msgInspector;\\n        emit MsgInspectorSet(_msgInspector);\\n    }\\n\\n    /**\\n     * @notice Provides a quote for OFT-related operations.\\n     * @param _sendParam The parameters for the send operation.\\n     * @return oftLimit The OFT limit information.\\n     * @return oftFeeDetails The details of OFT fees.\\n     * @return oftReceipt The OFT receipt information.\\n     */\\n    function quoteOFT(\\n        SendParam calldata _sendParam\\n    )\\n        external\\n        view\\n        virtual\\n        returns (OFTLimit memory oftLimit, OFTFeeDetail[] memory oftFeeDetails, OFTReceipt memory oftReceipt)\\n    {\\n        uint256 minAmountLD = 0; // Unused in the default implementation.\\n        uint256 maxAmountLD = type(uint64).max; // Unused in the default implementation.\\n        oftLimit = OFTLimit(minAmountLD, maxAmountLD);\\n\\n        // Unused in the default implementation; reserved for future complex fee details.\\n        oftFeeDetails = new OFTFeeDetail[](0);\\n\\n        // @dev This is the same as the send() operation, but without the actual send.\\n        // - amountSentLD is the amount in local decimals that would be sent from the sender.\\n        // - amountReceivedLD is the amount in local decimals that will be credited to the recipient on the remote OFT instance.\\n        // @dev The amountSentLD MIGHT not equal the amount the user actually receives. HOWEVER, the default does.\\n        (uint256 amountSentLD, uint256 amountReceivedLD) = _debitView(\\n            _sendParam.amountLD,\\n            _sendParam.minAmountLD,\\n            _sendParam.dstEid\\n        );\\n        oftReceipt = OFTReceipt(amountSentLD, amountReceivedLD);\\n    }\\n\\n    /**\\n     * @notice Provides a quote for the send() operation.\\n     * @param _sendParam The parameters for the send() operation.\\n     * @param _payInLzToken Flag indicating whether the caller is paying in the LZ token.\\n     * @return msgFee The calculated LayerZero messaging fee from the send() operation.\\n     *\\n     * @dev MessagingFee: LayerZero msg fee\\n     *  - nativeFee: The native fee.\\n     *  - lzTokenFee: The lzToken fee.\\n     */\\n    function quoteSend(\\n        SendParam calldata _sendParam,\\n        bool _payInLzToken\\n    ) external view virtual returns (MessagingFee memory msgFee) {\\n        // @dev mock the amount to receive, this is the same operation used in the send().\\n        // The quote is as similar as possible to the actual send() operation.\\n        (, uint256 amountReceivedLD) = _debitView(_sendParam.amountLD, _sendParam.minAmountLD, _sendParam.dstEid);\\n\\n        // @dev Builds the options and OFT message to quote in the endpoint.\\n        (bytes memory message, bytes memory options) = _buildMsgAndOptions(_sendParam, amountReceivedLD);\\n\\n        // @dev Calculates the LayerZero fee for the send() operation.\\n        return _quote(_sendParam.dstEid, message, options, _payInLzToken);\\n    }\\n\\n    /**\\n     * @dev Executes the send operation.\\n     * @param _sendParam The parameters for the send operation.\\n     * @param _fee The calculated fee for the send() operation.\\n     *      - nativeFee: The native fee.\\n     *      - lzTokenFee: The lzToken fee.\\n     * @param _refundAddress The address to receive any excess funds.\\n     * @return msgReceipt The receipt for the send operation.\\n     * @return oftReceipt The OFT receipt information.\\n     *\\n     * @dev MessagingReceipt: LayerZero msg receipt\\n     *  - guid: The unique identifier for the sent message.\\n     *  - nonce: The nonce of the sent message.\\n     *  - fee: The LayerZero fee incurred for the message.\\n     */\\n    function send(\\n        SendParam calldata _sendParam,\\n        MessagingFee calldata _fee,\\n        address _refundAddress\\n    ) external payable virtual returns (MessagingReceipt memory msgReceipt, OFTReceipt memory oftReceipt) {\\n        // @dev Applies the token transfers regarding this send() operation.\\n        // - amountSentLD is the amount in local decimals that was ACTUALLY sent/debited from the sender.\\n        // - amountReceivedLD is the amount in local decimals that will be received/credited to the recipient on the remote OFT instance.\\n        (uint256 amountSentLD, uint256 amountReceivedLD) = _debit(\\n            msg.sender,\\n            _sendParam.amountLD,\\n            _sendParam.minAmountLD,\\n            _sendParam.dstEid\\n        );\\n\\n        // @dev Builds the options and OFT message to quote in the endpoint.\\n        (bytes memory message, bytes memory options) = _buildMsgAndOptions(_sendParam, amountReceivedLD);\\n\\n        // @dev Sends the message to the LayerZero endpoint and returns the LayerZero msg receipt.\\n        msgReceipt = _lzSend(_sendParam.dstEid, message, options, _fee, _refundAddress);\\n        // @dev Formulate the OFT receipt.\\n        oftReceipt = OFTReceipt(amountSentLD, amountReceivedLD);\\n\\n        emit OFTSent(msgReceipt.guid, _sendParam.dstEid, msg.sender, amountSentLD, amountReceivedLD);\\n    }\\n\\n    /**\\n     * @dev Internal function to build the message and options.\\n     * @param _sendParam The parameters for the send() operation.\\n     * @param _amountLD The amount in local decimals.\\n     * @return message The encoded message.\\n     * @return options The encoded options.\\n     */\\n    function _buildMsgAndOptions(\\n        SendParam calldata _sendParam,\\n        uint256 _amountLD\\n    ) internal view virtual returns (bytes memory message, bytes memory options) {\\n        bool hasCompose;\\n        // @dev This generated message has the msg.sender encoded into the payload so the remote knows who the caller is.\\n        (message, hasCompose) = OFTMsgCodec.encode(\\n            _sendParam.to,\\n            _toSD(_amountLD),\\n            // @dev Must be include a non empty bytes if you want to compose, EVEN if you dont need it on the remote.\\n            // EVEN if you dont require an arbitrary payload to be sent... eg. '0x01'\\n            _sendParam.composeMsg\\n        );\\n        // @dev Change the msg type depending if its composed or not.\\n        uint16 msgType = hasCompose ? SEND_AND_CALL : SEND;\\n        // @dev Combine the callers _extraOptions with the enforced options via the OAppOptionsType3.\\n        options = combineOptions(_sendParam.dstEid, msgType, _sendParam.extraOptions);\\n\\n        OFTCoreStorage storage $ = _getOFTCoreStorage();\\n\\n        // @dev Optionally inspect the message and options depending if the OApp owner has set a msg inspector.\\n        // @dev If it fails inspection, needs to revert in the implementation. ie. does not rely on return boolean\\n        address inspector = $.msgInspector; // caches the msgInspector to avoid potential double storage read\\n        if (inspector != address(0)) IOAppMsgInspector(inspector).inspect(message, options);\\n    }\\n\\n    /**\\n     * @dev Internal function to handle the receive on the LayerZero endpoint.\\n     * @param _origin The origin information.\\n     *  - srcEid: The source chain endpoint ID.\\n     *  - sender: The sender address from the src chain.\\n     *  - nonce: The nonce of the LayerZero message.\\n     * @param _guid The unique identifier for the received LayerZero message.\\n     * @param _message The encoded message.\\n     * @dev _executor The address of the executor.\\n     * @dev _extraData Additional data.\\n     */\\n    function _lzReceive(\\n        Origin calldata _origin,\\n        bytes32 _guid,\\n        bytes calldata _message,\\n        address /*_executor*/, // @dev unused in the default implementation.\\n        bytes calldata /*_extraData*/ // @dev unused in the default implementation.\\n    ) internal virtual override {\\n        // @dev The src sending chain doesnt know the address length on this chain (potentially non-evm)\\n        // Thus everything is bytes32() encoded in flight.\\n        address toAddress = _message.sendTo().bytes32ToAddress();\\n        // @dev Credit the amountLD to the recipient and return the ACTUAL amount the recipient received in local decimals\\n        uint256 amountReceivedLD = _credit(toAddress, _toLD(_message.amountSD()), _origin.srcEid);\\n\\n        if (_message.isComposed()) {\\n            // @dev Proprietary composeMsg format for the OFT.\\n            bytes memory composeMsg = OFTComposeMsgCodec.encode(\\n                _origin.nonce,\\n                _origin.srcEid,\\n                amountReceivedLD,\\n                _message.composeMsg()\\n            );\\n\\n            // @dev Stores the lzCompose payload that will be executed in a separate tx.\\n            // Standardizes functionality for executing arbitrary contract invocation on some non-evm chains.\\n            // @dev The off-chain executor will listen and process the msg based on the src-chain-callers compose options passed.\\n            // @dev The index is used when a OApp needs to compose multiple msgs on lzReceive.\\n            // For default OFT implementation there is only 1 compose msg per lzReceive, thus its always 0.\\n            endpoint.sendCompose(toAddress, _guid, 0 /* the index of the composed message*/, composeMsg);\\n        }\\n\\n        emit OFTReceived(_guid, _origin.srcEid, toAddress, amountReceivedLD);\\n    }\\n\\n    /**\\n     * @dev Internal function to handle the OAppPreCrimeSimulator simulated receive.\\n     * @param _origin The origin information.\\n     *  - srcEid: The source chain endpoint ID.\\n     *  - sender: The sender address from the src chain.\\n     *  - nonce: The nonce of the LayerZero message.\\n     * @param _guid The unique identifier for the received LayerZero message.\\n     * @param _message The LayerZero message.\\n     * @param _executor The address of the off-chain executor.\\n     * @param _extraData Arbitrary data passed by the msg executor.\\n     *\\n     * @dev Enables the preCrime simulator to mock sending lzReceive() messages,\\n     * routes the msg down from the OAppPreCrimeSimulator, and back up to the OAppReceiver.\\n     */\\n    function _lzReceiveSimulate(\\n        Origin calldata _origin,\\n        bytes32 _guid,\\n        bytes calldata _message,\\n        address _executor,\\n        bytes calldata _extraData\\n    ) internal virtual override {\\n        _lzReceive(_origin, _guid, _message, _executor, _extraData);\\n    }\\n\\n    /**\\n     * @dev Check if the peer is considered 'trusted' by the OApp.\\n     * @param _eid The endpoint ID to check.\\n     * @param _peer The peer to check.\\n     * @return Whether the peer passed is considered 'trusted' by the OApp.\\n     *\\n     * @dev Enables OAppPreCrimeSimulator to check whether a potential Inbound Packet is from a trusted source.\\n     */\\n    function isPeer(uint32 _eid, bytes32 _peer) public view virtual override returns (bool) {\\n        return peers(_eid) == _peer;\\n    }\\n\\n    /**\\n     * @dev Internal function to remove dust from the given local decimal amount.\\n     * @param _amountLD The amount in local decimals.\\n     * @return amountLD The amount after removing dust.\\n     *\\n     * @dev Prevents the loss of dust when moving amounts between chains with different decimals.\\n     * @dev eg. uint(123) with a conversion rate of 100 becomes uint(100).\\n     */\\n    function _removeDust(uint256 _amountLD) internal view virtual returns (uint256 amountLD) {\\n        return (_amountLD / decimalConversionRate) * decimalConversionRate;\\n    }\\n\\n    /**\\n     * @dev Internal function to convert an amount from shared decimals into local decimals.\\n     * @param _amountSD The amount in shared decimals.\\n     * @return amountLD The amount in local decimals.\\n     */\\n    function _toLD(uint64 _amountSD) internal view virtual returns (uint256 amountLD) {\\n        return _amountSD * decimalConversionRate;\\n    }\\n\\n    /**\\n     * @dev Internal function to convert an amount from local decimals into shared decimals.\\n     * @param _amountLD The amount in local decimals.\\n     * @return amountSD The amount in shared decimals.\\n     */\\n    function _toSD(uint256 _amountLD) internal view virtual returns (uint64 amountSD) {\\n        return uint64(_amountLD / decimalConversionRate);\\n    }\\n\\n    /**\\n     * @dev Internal function to mock the amount mutation from a OFT debit() operation.\\n     * @param _amountLD The amount to send in local decimals.\\n     * @param _minAmountLD The minimum amount to send in local decimals.\\n     * @dev _dstEid The destination endpoint ID.\\n     * @return amountSentLD The amount sent, in local decimals.\\n     * @return amountReceivedLD The amount to be received on the remote chain, in local decimals.\\n     *\\n     * @dev This is where things like fees would be calculated and deducted from the amount to be received on the remote.\\n     */\\n    function _debitView(\\n        uint256 _amountLD,\\n        uint256 _minAmountLD,\\n        uint32 /*_dstEid*/\\n    ) internal view virtual returns (uint256 amountSentLD, uint256 amountReceivedLD) {\\n        // @dev Remove the dust so nothing is lost on the conversion between chains with different decimals for the token.\\n        amountSentLD = _removeDust(_amountLD);\\n        // @dev The amount to send is the same as amount received in the default implementation.\\n        amountReceivedLD = amountSentLD;\\n\\n        // @dev Check for slippage.\\n        if (amountReceivedLD < _minAmountLD) {\\n            revert SlippageExceeded(amountReceivedLD, _minAmountLD);\\n        }\\n    }\\n\\n    /**\\n     * @dev Internal function to perform a debit operation.\\n     * @param _from The address to debit from.\\n     * @param _amountLD The amount to send in local decimals.\\n     * @param _minAmountLD The minimum amount to send in local decimals.\\n     * @param _dstEid The destination endpoint ID.\\n     * @return amountSentLD The amount sent in local decimals.\\n     * @return amountReceivedLD The amount received in local decimals on the remote.\\n     *\\n     * @dev Defined here but are intended to be overriden depending on the OFT implementation.\\n     * @dev Depending on OFT implementation the _amountLD could differ from the amountReceivedLD.\\n     */\\n    function _debit(\\n        address _from,\\n        uint256 _amountLD,\\n        uint256 _minAmountLD,\\n        uint32 _dstEid\\n    ) internal virtual returns (uint256 amountSentLD, uint256 amountReceivedLD);\\n\\n    /**\\n     * @dev Internal function to perform a credit operation.\\n     * @param _to The address to credit.\\n     * @param _amountLD The amount to credit in local decimals.\\n     * @param _srcEid The source endpoint ID.\\n     * @return amountReceivedLD The amount ACTUALLY received in local decimals.\\n     *\\n     * @dev Defined here but are intended to be overriden depending on the OFT implementation.\\n     * @dev Depending on OFT implementation the _amountLD could differ from the amountReceivedLD.\\n     */\\n    function _credit(\\n        address _to,\\n        uint256 _amountLD,\\n        uint32 _srcEid\\n    ) internal virtual returns (uint256 amountReceivedLD);\\n}\\n\"},\"lib/openzeppelin-contracts-upgradeable/contracts/utils/ContextUpgradeable.sol\":{\"content\":\"// SPDX-License-Identifier: MIT\\n// OpenZeppelin Contracts (last updated v5.0.1) (utils/Context.sol)\\n\\npragma solidity ^0.8.20;\\nimport {Initializable} from \\\"../proxy/utils/Initializable.sol\\\";\\n\\n/**\\n * @dev Provides information about the current execution context, including the\\n * sender of the transaction and its data. While these are generally available\\n * via msg.sender and msg.data, they should not be accessed in such a direct\\n * manner, since when dealing with meta-transactions the account sending and\\n * paying for execution may not be the actual sender (as far as an application\\n * is concerned).\\n *\\n * This contract is only required for intermediate, library-like contracts.\\n */\\nabstract contract ContextUpgradeable is Initializable {\\n    function __Context_init() internal onlyInitializing {\\n    }\\n\\n    function __Context_init_unchained() internal onlyInitializing {\\n    }\\n    function _msgSender() internal view virtual returns (address) {\\n        return msg.sender;\\n    }\\n\\n    function _msgData() internal view virtual returns (bytes calldata) {\\n        return msg.data;\\n    }\\n\\n    function _contextSuffixLength() internal view virtual returns (uint256) {\\n        return 0;\\n    }\\n}\\n\"},\"lib/openzeppelin-contracts-upgradeable/contracts/proxy/utils/Initializable.sol\":{\"content\":\"// SPDX-License-Identifier: MIT\\n// OpenZeppelin Contracts (last updated v5.0.0) (proxy/utils/Initializable.sol)\\n\\npragma solidity ^0.8.20;\\n\\n/**\\n * @dev This is a base contract to aid in writing upgradeable contracts, or any kind of contract that will be deployed\\n * behind a proxy. Since proxied contracts do not make use of a constructor, it's common to move constructor logic to an\\n * external initializer function, usually called `initialize`. It then becomes necessary to protect this initializer\\n * function so it can only be called once. The {initializer} modifier provided by this contract will have this effect.\\n *\\n * The initialization functions use a version number. Once a version number is used, it is consumed and cannot be\\n * reused. This mechanism prevents re-execution of each \\\"step\\\" but allows the creation of new initialization steps in\\n * case an upgrade adds a module that needs to be initialized.\\n *\\n * For example:\\n *\\n * [.hljs-theme-light.nopadding]\\n * ```solidity\\n * contract MyToken is ERC20Upgradeable {\\n *     function initialize() initializer public {\\n *         __ERC20_init(\\\"MyToken\\\", \\\"MTK\\\");\\n *     }\\n * }\\n *\\n * contract MyTokenV2 is MyToken, ERC20PermitUpgradeable {\\n *     function initializeV2() reinitializer(2) public {\\n *         __ERC20Permit_init(\\\"MyToken\\\");\\n *     }\\n * }\\n * ```\\n *\\n * TIP: To avoid leaving the proxy in an uninitialized state, the initializer function should be called as early as\\n * possible by providing the encoded function call as the `_data` argument to {ERC1967Proxy-constructor}.\\n *\\n * CAUTION: When used with inheritance, manual care must be taken to not invoke a parent initializer twice, or to ensure\\n * that all initializers are idempotent. This is not verified automatically as constructors are by Solidity.\\n *\\n * [CAUTION]\\n * ====\\n * Avoid leaving a contract uninitialized.\\n *\\n * An uninitialized contract can be taken over by an attacker. This applies to both a proxy and its implementation\\n * contract, which may impact the proxy. To prevent the implementation contract from being used, you should invoke\\n * the {_disableInitializers} function in the constructor to automatically lock it when it is deployed:\\n *\\n * [.hljs-theme-light.nopadding]\\n * ```\\n * /// @custom:oz-upgrades-unsafe-allow constructor\\n * constructor() {\\n *     _disableInitializers();\\n * }\\n * ```\\n * ====\\n */\\nabstract contract Initializable {\\n    /**\\n     * @dev Storage of the initializable contract.\\n     *\\n     * It's implemented on a custom ERC-7201 namespace to reduce the risk of storage collisions\\n     * when using with upgradeable contracts.\\n     *\\n     * @custom:storage-location erc7201:openzeppelin.storage.Initializable\\n     */\\n    struct InitializableStorage {\\n        /**\\n         * @dev Indicates that the contract has been initialized.\\n         */\\n        uint64 _initialized;\\n        /**\\n         * @dev Indicates that the contract is in the process of being initialized.\\n         */\\n        bool _initializing;\\n    }\\n\\n    // keccak256(abi.encode(uint256(keccak256(\\\"openzeppelin.storage.Initializable\\\")) - 1)) & ~bytes32(uint256(0xff))\\n    bytes32 private constant INITIALIZABLE_STORAGE = 0xf0c57e16840df040f15088dc2f81fe391c3923bec73e23a9662efc9c229c6a00;\\n\\n    /**\\n     * @dev The contract is already initialized.\\n     */\\n    error InvalidInitialization();\\n\\n    /**\\n     * @dev The contract is not initializing.\\n     */\\n    error NotInitializing();\\n\\n    /**\\n     * @dev Triggered when the contract has been initialized or reinitialized.\\n     */\\n    event Initialized(uint64 version);\\n\\n    /**\\n     * @dev A modifier that defines a protected initializer function that can be invoked at most once. In its scope,\\n     * `onlyInitializing` functions can be used to initialize parent contracts.\\n     *\\n     * Similar to `reinitializer(1)`, except that in the context of a constructor an `initializer` may be invoked any\\n     * number of times. This behavior in the constructor can be useful during testing and is not expected to be used in\\n     * production.\\n     *\\n     * Emits an {Initialized} event.\\n     */\\n    modifier initializer() {\\n        // solhint-disable-next-line var-name-mixedcase\\n        InitializableStorage storage $ = _getInitializableStorage();\\n\\n        // Cache values to avoid duplicated sloads\\n        bool isTopLevelCall = !$._initializing;\\n        uint64 initialized = $._initialized;\\n\\n        // Allowed calls:\\n        // - initialSetup: the contract is not in the initializing state and no previous version was\\n        //                 initialized\\n        // - construction: the contract is initialized at version 1 (no reininitialization) and the\\n        //                 current contract is just being deployed\\n        bool initialSetup = initialized == 0 && isTopLevelCall;\\n        bool construction = initialized == 1 && address(this).code.length == 0;\\n\\n        if (!initialSetup && !construction) {\\n            revert InvalidInitialization();\\n        }\\n        $._initialized = 1;\\n        if (isTopLevelCall) {\\n            $._initializing = true;\\n        }\\n        _;\\n        if (isTopLevelCall) {\\n            $._initializing = false;\\n            emit Initialized(1);\\n        }\\n    }\\n\\n    /**\\n     * @dev A modifier that defines a protected reinitializer function that can be invoked at most once, and only if the\\n     * contract hasn't been initialized to a greater version before. In its scope, `onlyInitializing` functions can be\\n     * used to initialize parent contracts.\\n     *\\n     * A reinitializer may be used after the original initialization step. This is essential to configure modules that\\n     * are added through upgrades and that require initialization.\\n     *\\n     * When `version` is 1, this modifier is similar to `initializer`, except that functions marked with `reinitializer`\\n     * cannot be nested. If one is invoked in the context of another, execution will revert.\\n     *\\n     * Note that versions can jump in increments greater than 1; this implies that if multiple reinitializers coexist in\\n     * a contract, executing them in the right order is up to the developer or operator.\\n     *\\n     * WARNING: Setting the version to 2**64 - 1 will prevent any future reinitialization.\\n     *\\n     * Emits an {Initialized} event.\\n     */\\n    modifier reinitializer(uint64 version) {\\n        // solhint-disable-next-line var-name-mixedcase\\n        InitializableStorage storage $ = _getInitializableStorage();\\n\\n        if ($._initializing || $._initialized >= version) {\\n            revert InvalidInitialization();\\n        }\\n        $._initialized = version;\\n        $._initializing = true;\\n        _;\\n        $._initializing = false;\\n        emit Initialized(version);\\n    }\\n\\n    /**\\n     * @dev Modifier to protect an initialization function so that it can only be invoked by functions with the\\n     * {initializer} and {reinitializer} modifiers, directly or indirectly.\\n     */\\n    modifier onlyInitializing() {\\n        _checkInitializing();\\n        _;\\n    }\\n\\n    /**\\n     * @dev Reverts if the contract is not in an initializing state. See {onlyInitializing}.\\n     */\\n    function _checkInitializing() internal view virtual {\\n        if (!_isInitializing()) {\\n            revert NotInitializing();\\n        }\\n    }\\n\\n    /**\\n     * @dev Locks the contract, preventing any future reinitialization. This cannot be part of an initializer call.\\n     * Calling this in the constructor of a contract will prevent that contract from being initialized or reinitialized\\n     * to any version. It is recommended to use this to lock implementation contracts that are designed to be called\\n     * through proxies.\\n     *\\n     * Emits an {Initialized} event the first time it is successfully executed.\\n     */\\n    function _disableInitializers() internal virtual {\\n        // solhint-disable-next-line var-name-mixedcase\\n        InitializableStorage storage $ = _getInitializableStorage();\\n\\n        if ($._initializing) {\\n            revert InvalidInitialization();\\n        }\\n        if ($._initialized != type(uint64).max) {\\n            $._initialized = type(uint64).max;\\n            emit Initialized(type(uint64).max);\\n        }\\n    }\\n\\n    /**\\n     * @dev Returns the highest version that has been initialized. See {reinitializer}.\\n     */\\n    function _getInitializedVersion() internal view returns (uint64) {\\n        return _getInitializableStorage()._initialized;\\n    }\\n\\n    /**\\n     * @dev Returns `true` if the contract is currently initializing. See {onlyInitializing}.\\n     */\\n    function _isInitializing() internal view returns (bool) {\\n        return _getInitializableStorage()._initializing;\\n    }\\n\\n    /**\\n     * @dev Returns a pointer to the storage namespace.\\n     */\\n    // solhint-disable-next-line var-name-mixedcase\\n    function _getInitializableStorage() private pure returns (InitializableStorage storage $) {\\n        assembly {\\n            $.slot := INITIALIZABLE_STORAGE\\n        }\\n    }\\n}\\n\"},\"lib/devtools/packages/oapp-evm/contracts/oapp/OAppSender.sol\":{\"content\":\"// SPDX-License-Identifier: MIT\\n\\npragma solidity ^0.8.20;\\n\\nimport { SafeERC20, IERC20 } from \\\"@openzeppelin/contracts/token/ERC20/utils/SafeERC20.sol\\\";\\nimport { MessagingParams, MessagingFee, MessagingReceipt } from \\\"@layerzerolabs/lz-evm-protocol-v2/contracts/interfaces/ILayerZeroEndpointV2.sol\\\";\\nimport { OAppCore } from \\\"./OAppCore.sol\\\";\\n\\n/**\\n * @title OAppSender\\n * @dev Abstract contract implementing the OAppSender functionality for sending messages to a LayerZero endpoint.\\n */\\nabstract contract OAppSender is OAppCore {\\n    using SafeERC20 for IERC20;\\n\\n    // Custom error messages\\n    error NotEnoughNative(uint256 msgValue);\\n    error LzTokenUnavailable();\\n\\n    // @dev The version of the OAppSender implementation.\\n    // @dev Version is bumped when changes are made to this contract.\\n    uint64 internal constant SENDER_VERSION = 1;\\n\\n    /**\\n     * @notice Retrieves the OApp version information.\\n     * @return senderVersion The version of the OAppSender.sol contract.\\n     * @return receiverVersion The version of the OAppReceiver.sol contract.\\n     *\\n     * @dev Providing 0 as the default for OAppReceiver version. Indicates that the OAppReceiver is not implemented.\\n     * ie. this is a SEND only OApp.\\n     * @dev If the OApp uses both OAppSender and OAppReceiver, then this needs to be override returning the correct versions\\n     */\\n    function oAppVersion() public view virtual returns (uint64 senderVersion, uint64 receiverVersion) {\\n        return (SENDER_VERSION, 0);\\n    }\\n\\n    /**\\n     * @dev Internal function to interact with the LayerZero EndpointV2.quote() for fee calculation.\\n     * @param _dstEid The destination endpoint ID.\\n     * @param _message The message payload.\\n     * @param _options Additional options for the message.\\n     * @param _payInLzToken Flag indicating whether to pay the fee in LZ tokens.\\n     * @return fee The calculated MessagingFee for the message.\\n     *      - nativeFee: The native fee for the message.\\n     *      - lzTokenFee: The LZ token fee for the message.\\n     */\\n    function _quote(\\n        uint32 _dstEid,\\n        bytes memory _message,\\n        bytes memory _options,\\n        bool _payInLzToken\\n    ) internal view virtual returns (MessagingFee memory fee) {\\n        return\\n            endpoint.quote(\\n                MessagingParams(_dstEid, _getPeerOrRevert(_dstEid), _message, _options, _payInLzToken),\\n                address(this)\\n            );\\n    }\\n\\n    /**\\n     * @dev Internal function to interact with the LayerZero EndpointV2.send() for sending a message.\\n     * @param _dstEid The destination endpoint ID.\\n     * @param _message The message payload.\\n     * @param _options Additional options for the message.\\n     * @param _fee The calculated LayerZero fee for the message.\\n     *      - nativeFee: The native fee.\\n     *      - lzTokenFee: The lzToken fee.\\n     * @param _refundAddress The address to receive any excess fee values sent to the endpoint.\\n     * @return receipt The receipt for the sent message.\\n     *      - guid: The unique identifier for the sent message.\\n     *      - nonce: The nonce of the sent message.\\n     *      - fee: The LayerZero fee incurred for the message.\\n     */\\n    function _lzSend(\\n        uint32 _dstEid,\\n        bytes memory _message,\\n        bytes memory _options,\\n        MessagingFee memory _fee,\\n        address _refundAddress\\n    ) internal virtual returns (MessagingReceipt memory receipt) {\\n        // @dev Push corresponding fees to the endpoint, any excess is sent back to the _refundAddress from the endpoint.\\n        uint256 messageValue = _payNative(_fee.nativeFee);\\n        if (_fee.lzTokenFee > 0) _payLzToken(_fee.lzTokenFee);\\n\\n        return\\n            // solhint-disable-next-line check-send-result\\n            endpoint.send{ value: messageValue }(\\n                MessagingParams(_dstEid, _getPeerOrRevert(_dstEid), _message, _options, _fee.lzTokenFee > 0),\\n                _refundAddress\\n            );\\n    }\\n\\n    /**\\n     * @dev Internal function to pay the native fee associated with the message.\\n     * @param _nativeFee The native fee to be paid.\\n     * @return nativeFee The amount of native currency paid.\\n     *\\n     * @dev If the OApp needs to initiate MULTIPLE LayerZero messages in a single transaction,\\n     * this will need to be overridden because msg.value would contain multiple lzFees.\\n     * @dev Should be overridden in the event the LayerZero endpoint requires a different native currency.\\n     * @dev Some EVMs use an ERC20 as a method for paying transactions/gasFees.\\n     * @dev The endpoint is EITHER/OR, ie. it will NOT support both types of native payment at a time.\\n     */\\n    function _payNative(uint256 _nativeFee) internal virtual returns (uint256 nativeFee) {\\n        if (msg.value != _nativeFee) revert NotEnoughNative(msg.value);\\n        return _nativeFee;\\n    }\\n\\n    /**\\n     * @dev Internal function to pay the LZ token fee associated with the message.\\n     * @param _lzTokenFee The LZ token fee to be paid.\\n     *\\n     * @dev If the caller is trying to pay in the specified lzToken, then the lzTokenFee is passed to the endpoint.\\n     * @dev Any excess sent, is passed back to the specified _refundAddress in the _lzSend().\\n     */\\n    function _payLzToken(uint256 _lzTokenFee) internal virtual {\\n        // @dev Cannot cache the token because it is not immutable in the endpoint.\\n        address lzToken = endpoint.lzToken();\\n        if (lzToken == address(0)) revert LzTokenUnavailable();\\n\\n        // Pay LZ token fee by sending tokens to the endpoint.\\n        IERC20(lzToken).safeTransferFrom(msg.sender, address(endpoint), _lzTokenFee);\\n    }\\n}\\n\"},\"lib/openzeppelin-contracts/contracts/token/ERC20/extensions/IERC20Permit.sol\":{\"content\":\"// SPDX-License-Identifier: MIT\\n// OpenZeppelin Contracts (last updated v5.4.0) (token/ERC20/extensions/IERC20Permit.sol)\\n\\npragma solidity >=0.4.16;\\n\\n/**\\n * @dev Interface of the ERC-20 Permit extension allowing approvals to be made via signatures, as defined in\\n * https://eips.ethereum.org/EIPS/eip-2612[ERC-2612].\\n *\\n * Adds the {permit} method, which can be used to change an account's ERC-20 allowance (see {IERC20-allowance}) by\\n * presenting a message signed by the account. By not relying on {IERC20-approve}, the token holder account doesn't\\n * need to send a transaction, and thus is not required to hold Ether at all.\\n *\\n * ==== Security Considerations\\n *\\n * There are two important considerations concerning the use of `permit`. The first is that a valid permit signature\\n * expresses an allowance, and it should not be assumed to convey additional meaning. In particular, it should not be\\n * considered as an intention to spend the allowance in any specific way. The second is that because permits have\\n * built-in replay protection and can be submitted by anyone, they can be frontrun. A protocol that uses permits should\\n * take this into consideration and allow a `permit` call to fail. Combining these two aspects, a pattern that may be\\n * generally recommended is:\\n *\\n * ```solidity\\n * function doThingWithPermit(..., uint256 value, uint256 deadline, uint8 v, bytes32 r, bytes32 s) public {\\n *     try token.permit(msg.sender, address(this), value, deadline, v, r, s) {} catch {}\\n *     doThing(..., value);\\n * }\\n *\\n * function doThing(..., uint256 value) public {\\n *     token.safeTransferFrom(msg.sender, address(this), value);\\n *     ...\\n * }\\n * ```\\n *\\n * Observe that: 1) `msg.sender` is used as the owner, leaving no ambiguity as to the signer intent, and 2) the use of\\n * `try/catch` allows the permit to fail and makes the code tolerant to frontrunning. (See also\\n * {SafeERC20-safeTransferFrom}).\\n *\\n * Additionally, note that smart contract wallets (such as Argent or Safe) are not able to produce permit signatures, so\\n * contracts should have entry points that don't rely on permit.\\n */\\ninterface IERC20Permit {\\n    /**\\n     * @dev Sets `value` as the allowance of `spender` over ``owner``'s tokens,\\n     * given ``owner``'s signed approval.\\n     *\\n     * IMPORTANT: The same issues {IERC20-approve} has related to transaction\\n     * ordering also apply here.\\n     *\\n     * Emits an {Approval} event.\\n     *\\n     * Requirements:\\n     *\\n     * - `spender` cannot be the zero address.\\n     * - `deadline` must be a timestamp in the future.\\n     * - `v`, `r` and `s` must be a valid `secp256k1` signature from `owner`\\n     * over the EIP712-formatted function arguments.\\n     * - the signature must use ``owner``'s current nonce (see {nonces}).\\n     *\\n     * For more information on the signature format, see the\\n     * https://eips.ethereum.org/EIPS/eip-2612#specification[relevant EIP\\n     * section].\\n     *\\n     * CAUTION: See Security Considerations above.\\n     */\\n    function permit(\\n        address owner,\\n        address spender,\\n        uint256 value,\\n        uint256 deadline,\\n        uint8 v,\\n        bytes32 r,\\n        bytes32 s\\n    ) external;\\n\\n    /**\\n     * @dev Returns the current nonce for `owner`. This value must be\\n     * included whenever a signature is generated for {permit}.\\n     *\\n     * Every successful call to {permit} increases ``owner``'s nonce by one. This\\n     * prevents a signature from being used multiple times.\\n     */\\n    function nonces(address owner) external view returns (uint256);\\n\\n    /**\\n     * @dev Returns the domain separator used in the encoding of the signature for {permit}, as defined by {EIP712}.\\n     */\\n    // solhint-disable-next-line func-name-mixedcase\\n    function DOMAIN_SEPARATOR() external view returns (bytes32);\\n}\\n\"},\"lib/openzeppelin-contracts/contracts/utils/cryptography/ECDSA.sol\":{\"content\":\"// SPDX-License-Identifier: MIT\\n// OpenZeppelin Contracts (last updated v5.1.0) (utils/cryptography/ECDSA.sol)\\n\\npragma solidity ^0.8.20;\\n\\n/**\\n * @dev Elliptic Curve Digital Signature Algorithm (ECDSA) operations.\\n *\\n * These functions can be used to verify that a message was signed by the holder\\n * of the private keys of a given address.\\n */\\nlibrary ECDSA {\\n    enum RecoverError {\\n        NoError,\\n        InvalidSignature,\\n        InvalidSignatureLength,\\n        InvalidSignatureS\\n    }\\n\\n    /**\\n     * @dev The signature derives the `address(0)`.\\n     */\\n    error ECDSAInvalidSignature();\\n\\n    /**\\n     * @dev The signature has an invalid length.\\n     */\\n    error ECDSAInvalidSignatureLength(uint256 length);\\n\\n    /**\\n     * @dev The signature has an S value that is in the upper half order.\\n     */\\n    error ECDSAInvalidSignatureS(bytes32 s);\\n\\n    /**\\n     * @dev Returns the address that signed a hashed message (`hash`) with `signature` or an error. This will not\\n     * return address(0) without also returning an error description. Errors are documented using an enum (error type)\\n     * and a bytes32 providing additional information about the error.\\n     *\\n     * If no error is returned, then the address can be used for verification purposes.\\n     *\\n     * The `ecrecover` EVM precompile allows for malleable (non-unique) signatures:\\n     * this function rejects them by requiring the `s` value to be in the lower\\n     * half order, and the `v` value to be either 27 or 28.\\n     *\\n     * IMPORTANT: `hash` _must_ be the result of a hash operation for the\\n     * verification to be secure: it is possible to craft signatures that\\n     * recover to arbitrary addresses for non-hashed data. A safe way to ensure\\n     * this is by receiving a hash of the original message (which may otherwise\\n     * be too long), and then calling {MessageHashUtils-toEthSignedMessageHash} on it.\\n     *\\n     * Documentation for signature generation:\\n     * - with https://web3js.readthedocs.io/en/v1.3.4/web3-eth-accounts.html#sign[Web3.js]\\n     * - with https://docs.ethers.io/v5/api/signer/#Signer-signMessage[ethers]\\n     */\\n    function tryRecover(\\n        bytes32 hash,\\n        bytes memory signature\\n    ) internal pure returns (address recovered, RecoverError err, bytes32 errArg) {\\n        if (signature.length == 65) {\\n            bytes32 r;\\n            bytes32 s;\\n            uint8 v;\\n            // ecrecover takes the signature parameters, and the only way to get them\\n            // currently is to use assembly.\\n            assembly (\\\"memory-safe\\\") {\\n                r := mload(add(signature, 0x20))\\n                s := mload(add(signature, 0x40))\\n                v := byte(0, mload(add(signature, 0x60)))\\n            }\\n            return tryRecover(hash, v, r, s);\\n        } else {\\n            return (address(0), RecoverError.InvalidSignatureLength, bytes32(signature.length));\\n        }\\n    }\\n\\n    /**\\n     * @dev Returns the address that signed a hashed message (`hash`) with\\n     * `signature`. This address can then be used for verification purposes.\\n     *\\n     * The `ecrecover` EVM precompile allows for malleable (non-unique) signatures:\\n     * this function rejects them by requiring the `s` value to be in the lower\\n     * half order, and the `v` value to be either 27 or 28.\\n     *\\n     * IMPORTANT: `hash` _must_ be the result of a hash operation for the\\n     * verification to be secure: it is possible to craft signatures that\\n     * recover to arbitrary addresses for non-hashed data. A safe way to ensure\\n     * this is by receiving a hash of the original message (which may otherwise\\n     * be too long), and then calling {MessageHashUtils-toEthSignedMessageHash} on it.\\n     */\\n    function recover(bytes32 hash, bytes memory signature) internal pure returns (address) {\\n        (address recovered, RecoverError error, bytes32 errorArg) = tryRecover(hash, signature);\\n        _throwError(error, errorArg);\\n        return recovered;\\n    }\\n\\n    /**\\n     * @dev Overload of {ECDSA-tryRecover} that receives the `r` and `vs` short-signature fields separately.\\n     *\\n     * See https://eips.ethereum.org/EIPS/eip-2098[ERC-2098 short signatures]\\n     */\\n    function tryRecover(\\n        bytes32 hash,\\n        bytes32 r,\\n        bytes32 vs\\n    ) internal pure returns (address recovered, RecoverError err, bytes32 errArg) {\\n        unchecked {\\n            bytes32 s = vs & bytes32(0x7fffffffffffffffffffffffffffffffffffffffffffffffffffffffffffffff);\\n            // We do not check for an overflow here since the shift operation results in 0 or 1.\\n            uint8 v = uint8((uint256(vs) >> 255) + 27);\\n            return tryRecover(hash, v, r, s);\\n        }\\n    }\\n\\n    /**\\n     * @dev Overload of {ECDSA-recover} that receives the `r and `vs` short-signature fields separately.\\n     */\\n    function recover(bytes32 hash, bytes32 r, bytes32 vs) internal pure returns (address) {\\n        (address recovered, RecoverError error, bytes32 errorArg) = tryRecover(hash, r, vs);\\n        _throwError(error, errorArg);\\n        return recovered;\\n    }\\n\\n    /**\\n     * @dev Overload of {ECDSA-tryRecover} that receives the `v`,\\n     * `r` and `s` signature fields separately.\\n     */\\n    function tryRecover(\\n        bytes32 hash,\\n        uint8 v,\\n        bytes32 r,\\n        bytes32 s\\n    ) internal pure returns (address recovered, RecoverError err, bytes32 errArg) {\\n        // EIP-2 still allows signature malleability for ecrecover(). Remove this possibility and make the signature\\n        // unique. Appendix F in the Ethereum Yellow paper (https://ethereum.github.io/yellowpaper/paper.pdf), defines\\n        // the valid range for s in (301): 0 < s < secp256k1n ÷ 2 + 1, and for v in (302): v ∈ {27, 28}. Most\\n        // signatures from current libraries generate a unique signature with an s-value in the lower half order.\\n        //\\n        // If your library generates malleable signatures, such as s-values in the upper range, calculate a new s-value\\n        // with 0xFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFEBAAEDCE6AF48A03BBFD25E8CD0364141 - s1 and flip v from 27 to 28 or\\n        // vice versa. If your library also generates signatures with 0/1 for v instead 27/28, add 27 to v to accept\\n        // these malleable signatures as well.\\n        if (uint256(s) > 0x7FFFFFFFFFFFFFFFFFFFFFFFFFFFFFFF5D576E7357A4501DDFE92F46681B20A0) {\\n            return (address(0), RecoverError.InvalidSignatureS, s);\\n        }\\n\\n        // If the signature is valid (and not malleable), return the signer address\\n        address signer = ecrecover(hash, v, r, s);\\n        if (signer == address(0)) {\\n            return (address(0), RecoverError.InvalidSignature, bytes32(0));\\n        }\\n\\n        return (signer, RecoverError.NoError, bytes32(0));\\n    }\\n\\n    /**\\n     * @dev Overload of {ECDSA-recover} that receives the `v`,\\n     * `r` and `s` signature fields separately.\\n     */\\n    function recover(bytes32 hash, uint8 v, bytes32 r, bytes32 s) internal pure returns (address) {\\n        (address recovered, RecoverError error, bytes32 errorArg) = tryRecover(hash, v, r, s);\\n        _throwError(error, errorArg);\\n        return recovered;\\n    }\\n\\n    /**\\n     * @dev Optionally reverts with the corresponding custom error according to the `error` argument provided.\\n     */\\n    function _throwError(RecoverError error, bytes32 errorArg) private pure {\\n        if (error == RecoverError.NoError) {\\n            return; // no error: do nothing\\n        } else if (error == RecoverError.InvalidSignature) {\\n            revert ECDSAInvalidSignature();\\n        } else if (error == RecoverError.InvalidSignatureLength) {\\n            revert ECDSAInvalidSignatureLength(uint256(errorArg));\\n        } else if (error == RecoverError.InvalidSignatureS) {\\n            revert ECDSAInvalidSignatureS(errorArg);\\n        }\\n    }\\n}\\n\"},\"lib/openzeppelin-contracts-upgradeable/contracts/utils/cryptography/EIP712Upgradeable.sol\":{\"content\":\"// SPDX-License-Identifier: MIT\\n// OpenZeppelin Contracts (last updated v5.0.0) (utils/cryptography/EIP712.sol)\\n\\npragma solidity ^0.8.20;\\n\\nimport {MessageHashUtils} from \\\"@openzeppelin/contracts/utils/cryptography/MessageHashUtils.sol\\\";\\nimport {IERC5267} from \\\"@openzeppelin/contracts/interfaces/IERC5267.sol\\\";\\nimport {Initializable} from \\\"../../proxy/utils/Initializable.sol\\\";\\n\\n/**\\n * @dev https://eips.ethereum.org/EIPS/eip-712[EIP 712] is a standard for hashing and signing of typed structured data.\\n *\\n * The encoding scheme specified in the EIP requires a domain separator and a hash of the typed structured data, whose\\n * encoding is very generic and therefore its implementation in Solidity is not feasible, thus this contract\\n * does not implement the encoding itself. Protocols need to implement the type-specific encoding they need in order to\\n * produce the hash of their typed data using a combination of `abi.encode` and `keccak256`.\\n *\\n * This contract implements the EIP 712 domain separator ({_domainSeparatorV4}) that is used as part of the encoding\\n * scheme, and the final step of the encoding to obtain the message digest that is then signed via ECDSA\\n * ({_hashTypedDataV4}).\\n *\\n * The implementation of the domain separator was designed to be as efficient as possible while still properly updating\\n * the chain id to protect against replay attacks on an eventual fork of the chain.\\n *\\n * NOTE: This contract implements the version of the encoding known as \\\"v4\\\", as implemented by the JSON RPC method\\n * https://docs.metamask.io/guide/signing-data.html[`eth_signTypedDataV4` in MetaMask].\\n *\\n * NOTE: In the upgradeable version of this contract, the cached values will correspond to the address, and the domain\\n * separator of the implementation contract. This will cause the {_domainSeparatorV4} function to always rebuild the\\n * separator from the immutable values, which is cheaper than accessing a cached version in cold storage.\\n */\\nabstract contract EIP712Upgradeable is Initializable, IERC5267 {\\n    bytes32 private constant TYPE_HASH =\\n        keccak256(\\\"EIP712Domain(string name,string version,uint256 chainId,address verifyingContract)\\\");\\n\\n    /// @custom:storage-location erc7201:openzeppelin.storage.EIP712\\n    struct EIP712Storage {\\n        /// @custom:oz-renamed-from _HASHED_NAME\\n        bytes32 _hashedName;\\n        /// @custom:oz-renamed-from _HASHED_VERSION\\n        bytes32 _hashedVersion;\\n\\n        string _name;\\n        string _version;\\n    }\\n\\n    // keccak256(abi.encode(uint256(keccak256(\\\"openzeppelin.storage.EIP712\\\")) - 1)) & ~bytes32(uint256(0xff))\\n    bytes32 private constant EIP712StorageLocation = 0xa16a46d94261c7517cc8ff89f61c0ce93598e3c849801011dee649a6a557d100;\\n\\n    function _getEIP712Storage() private pure returns (EIP712Storage storage $) {\\n        assembly {\\n            $.slot := EIP712StorageLocation\\n        }\\n    }\\n\\n    /**\\n     * @dev Initializes the domain separator and parameter caches.\\n     *\\n     * The meaning of `name` and `version` is specified in\\n     * https://eips.ethereum.org/EIPS/eip-712#definition-of-domainseparator[EIP 712]:\\n     *\\n     * - `name`: the user readable name of the signing domain, i.e. the name of the DApp or the protocol.\\n     * - `version`: the current major version of the signing domain.\\n     *\\n     * NOTE: These parameters cannot be changed except through a xref:learn::upgrading-smart-contracts.adoc[smart\\n     * contract upgrade].\\n     */\\n    function __EIP712_init(string memory name, string memory version) internal onlyInitializing {\\n        __EIP712_init_unchained(name, version);\\n    }\\n\\n    function __EIP712_init_unchained(string memory name, string memory version) internal onlyInitializing {\\n        EIP712Storage storage $ = _getEIP712Storage();\\n        $._name = name;\\n        $._version = version;\\n\\n        // Reset prior values in storage if upgrading\\n        $._hashedName = 0;\\n        $._hashedVersion = 0;\\n    }\\n\\n    /**\\n     * @dev Returns the domain separator for the current chain.\\n     */\\n    function _domainSeparatorV4() internal view returns (bytes32) {\\n        return _buildDomainSeparator();\\n    }\\n\\n    function _buildDomainSeparator() private view returns (bytes32) {\\n        return keccak256(abi.encode(TYPE_HASH, _EIP712NameHash(), _EIP712VersionHash(), block.chainid, address(this)));\\n    }\\n\\n    /**\\n     * @dev Given an already https://eips.ethereum.org/EIPS/eip-712#definition-of-hashstruct[hashed struct], this\\n     * function returns the hash of the fully encoded EIP712 message for this domain.\\n     *\\n     * This hash can be used together with {ECDSA-recover} to obtain the signer of a message. For example:\\n     *\\n     * ```solidity\\n     * bytes32 digest = _hashTypedDataV4(keccak256(abi.encode(\\n     *     keccak256(\\\"Mail(address to,string contents)\\\"),\\n     *     mailTo,\\n     *     keccak256(bytes(mailContents))\\n     * )));\\n     * address signer = ECDSA.recover(digest, signature);\\n     * ```\\n     */\\n    function _hashTypedDataV4(bytes32 structHash) internal view virtual returns (bytes32) {\\n        return MessageHashUtils.toTypedDataHash(_domainSeparatorV4(), structHash);\\n    }\\n\\n    /**\\n     * @dev See {IERC-5267}.\\n     */\\n    function eip712Domain()\\n        public\\n        view\\n        virtual\\n        returns (\\n            bytes1 fields,\\n            string memory name,\\n            string memory version,\\n            uint256 chainId,\\n            address verifyingContract,\\n            bytes32 salt,\\n            uint256[] memory extensions\\n        )\\n    {\\n        EIP712Storage storage $ = _getEIP712Storage();\\n        // If the hashed name and version in storage are non-zero, the contract hasn't been properly initialized\\n        // and the EIP712 domain is not reliable, as it will be missing name and version.\\n        require($._hashedName == 0 && $._hashedVersion == 0, \\\"EIP712: Uninitialized\\\");\\n\\n        return (\\n            hex\\\"0f\\\", // 01111\\n            _EIP712Name(),\\n            _EIP712Version(),\\n            block.chainid,\\n            address(this),\\n            bytes32(0),\\n            new uint256[](0)\\n        );\\n    }\\n\\n    /**\\n     * @dev The name parameter for the EIP712 domain.\\n     *\\n     * NOTE: This function reads from storage by default, but can be redefined to return a constant value if gas costs\\n     * are a concern.\\n     */\\n    function _EIP712Name() internal view virtual returns (string memory) {\\n        EIP712Storage storage $ = _getEIP712Storage();\\n        return $._name;\\n    }\\n\\n    /**\\n     * @dev The version parameter for the EIP712 domain.\\n     *\\n     * NOTE: This function reads from storage by default, but can be redefined to return a constant value if gas costs\\n     * are a concern.\\n     */\\n    function _EIP712Version() internal view virtual returns (string memory) {\\n        EIP712Storage storage $ = _getEIP712Storage();\\n        return $._version;\\n    }\\n\\n    /**\\n     * @dev The hash of the name parameter for the EIP712 domain.\\n     *\\n     * NOTE: In previous versions this function was virtual. In this version you should override `_EIP712Name` instead.\\n     */\\n    function _EIP712NameHash() internal view returns (bytes32) {\\n        EIP712Storage storage $ = _getEIP712Storage();\\n        string memory name = _EIP712Name();\\n        if (bytes(name).length > 0) {\\n            return keccak256(bytes(name));\\n        } else {\\n            // If the name is empty, the contract may have been upgraded without initializing the new storage.\\n            // We return the name hash in storage if non-zero, otherwise we assume the name is empty by design.\\n            bytes32 hashedName = $._hashedName;\\n            if (hashedName != 0) {\\n                return hashedName;\\n            } else {\\n                return keccak256(\\\"\\\");\\n            }\\n        }\\n    }\\n\\n    /**\\n     * @dev The hash of the version parameter for the EIP712 domain.\\n     *\\n     * NOTE: In previous versions this function was virtual. In this version you should override `_EIP712Version` instead.\\n     */\\n    function _EIP712VersionHash() internal view returns (bytes32) {\\n        EIP712Storage storage $ = _getEIP712Storage();\\n        string memory version = _EIP712Version();\\n        if (bytes(version).length > 0) {\\n            return keccak256(bytes(version));\\n        } else {\\n            // If the version is empty, the contract may have been upgraded without initializing the new storage.\\n            // We return the version hash in storage if non-zero, otherwise we assume the version is empty by design.\\n            bytes32 hashedVersion = $._hashedVersion;\\n            if (hashedVersion != 0) {\\n                return hashedVersion;\\n            } else {\\n                return keccak256(\\\"\\\");\\n            }\\n        }\\n    }\\n}\\n\"},\"lib/openzeppelin-contracts-upgradeable/contracts/utils/NoncesUpgradeable.sol\":{\"content\":\"// SPDX-License-Identifier: MIT\\n// OpenZeppelin Contracts (last updated v5.0.0) (utils/Nonces.sol)\\npragma solidity ^0.8.20;\\nimport {Initializable} from \\\"../proxy/utils/Initializable.sol\\\";\\n\\n/**\\n * @dev Provides tracking nonces for addresses. Nonces will only increment.\\n */\\nabstract contract NoncesUpgradeable is Initializable {\\n    /**\\n     * @dev The nonce used for an `account` is not the expected current nonce.\\n     */\\n    error InvalidAccountNonce(address account, uint256 currentNonce);\\n\\n    /// @custom:storage-location erc7201:openzeppelin.storage.Nonces\\n    struct NoncesStorage {\\n        mapping(address account => uint256) _nonces;\\n    }\\n\\n    // keccak256(abi.encode(uint256(keccak256(\\\"openzeppelin.storage.Nonces\\\")) - 1)) & ~bytes32(uint256(0xff))\\n    bytes32 private constant NoncesStorageLocation = 0x5ab42ced628888259c08ac98db1eb0cf702fc1501344311d8b100cd1bfe4bb00;\\n\\n    function _getNoncesStorage() private pure returns (NoncesStorage storage $) {\\n        assembly {\\n            $.slot := NoncesStorageLocation\\n        }\\n    }\\n\\n    function __Nonces_init() internal onlyInitializing {\\n    }\\n\\n    function __Nonces_init_unchained() internal onlyInitializing {\\n    }\\n    /**\\n     * @dev Returns the next unused nonce for an address.\\n     */\\n    function nonces(address owner) public view virtual returns (uint256) {\\n        NoncesStorage storage $ = _getNoncesStorage();\\n        return $._nonces[owner];\\n    }\\n\\n    /**\\n     * @dev Consumes a nonce.\\n     *\\n     * Returns the current value and increments nonce.\\n     */\\n    function _useNonce(address owner) internal virtual returns (uint256) {\\n        NoncesStorage storage $ = _getNoncesStorage();\\n        // For each account, the nonce has an initial value of 0, can only be incremented by one, and cannot be\\n        // decremented or reset. This guarantees that the nonce never overflows.\\n        unchecked {\\n            // It is important to do x++ and not ++x here.\\n            return $._nonces[owner]++;\\n        }\\n    }\\n\\n    /**\\n     * @dev Same as {_useNonce} but checking that `nonce` is the next valid for `owner`.\\n     */\\n    function _useCheckedNonce(address owner, uint256 nonce) internal virtual {\\n        uint256 current = _useNonce(owner);\\n        if (nonce != current) {\\n            revert InvalidAccountNonce(owner, current);\\n        }\\n    }\\n}\\n\"},\"lib/openzeppelin-contracts/contracts/access/IAccessControl.sol\":{\"content\":\"// SPDX-License-Identifier: MIT\\n// OpenZeppelin Contracts (last updated v5.4.0) (access/IAccessControl.sol)\\n\\npragma solidity >=0.8.4;\\n\\n/**\\n * @dev External interface of AccessControl declared to support ERC-165 detection.\\n */\\ninterface IAccessControl {\\n    /**\\n     * @dev The `account` is missing a role.\\n     */\\n    error AccessControlUnauthorizedAccount(address account, bytes32 neededRole);\\n\\n    /**\\n     * @dev The caller of a function is not the expected one.\\n     *\\n     * NOTE: Don't confuse with {AccessControlUnauthorizedAccount}.\\n     */\\n    error AccessControlBadConfirmation();\\n\\n    /**\\n     * @dev Emitted when `newAdminRole` is set as ``role``'s admin role, replacing `previousAdminRole`\\n     *\\n     * `DEFAULT_ADMIN_ROLE` is the starting admin for all roles, despite\\n     * {RoleAdminChanged} not being emitted to signal this.\\n     */\\n    event RoleAdminChanged(bytes32 indexed role, bytes32 indexed previousAdminRole, bytes32 indexed newAdminRole);\\n\\n    /**\\n     * @dev Emitted when `account` is granted `role`.\\n     *\\n     * `sender` is the account that originated the contract call. This account bears the admin role (for the granted role).\\n     * Expected in cases where the role was granted using the internal {AccessControl-_grantRole}.\\n     */\\n    event RoleGranted(bytes32 indexed role, address indexed account, address indexed sender);\\n\\n    /**\\n     * @dev Emitted when `account` is revoked `role`.\\n     *\\n     * `sender` is the account that originated the contract call:\\n     *   - if using `revokeRole`, it is the admin role bearer\\n     *   - if using `renounceRole`, it is the role bearer (i.e. `account`)\\n     */\\n    event RoleRevoked(bytes32 indexed role, address indexed account, address indexed sender);\\n\\n    /**\\n     * @dev Returns `true` if `account` has been granted `role`.\\n     */\\n    function hasRole(bytes32 role, address account) external view returns (bool);\\n\\n    /**\\n     * @dev Returns the admin role that controls `role`. See {grantRole} and\\n     * {revokeRole}.\\n     *\\n     * To change a role's admin, use {AccessControl-_setRoleAdmin}.\\n     */\\n    function getRoleAdmin(bytes32 role) external view returns (bytes32);\\n\\n    /**\\n     * @dev Grants `role` to `account`.\\n     *\\n     * If `account` had not been already granted `role`, emits a {RoleGranted}\\n     * event.\\n     *\\n     * Requirements:\\n     *\\n     * - the caller must have ``role``'s admin role.\\n     */\\n    function grantRole(bytes32 role, address account) external;\\n\\n    /**\\n     * @dev Revokes `role` from `account`.\\n     *\\n     * If `account` had been granted `role`, emits a {RoleRevoked} event.\\n     *\\n     * Requirements:\\n     *\\n     * - the caller must have ``role``'s admin role.\\n     */\\n    function revokeRole(bytes32 role, address account) external;\\n\\n    /**\\n     * @dev Revokes `role` from the calling account.\\n     *\\n     * Roles are often managed via {grantRole} and {revokeRole}: this function's\\n     * purpose is to provide a mechanism for accounts to lose their privileges\\n     * if they are compromised (such as when a trusted device is misplaced).\\n     *\\n     * If the calling account had been granted `role`, emits a {RoleRevoked}\\n     * event.\\n     *\\n     * Requirements:\\n     *\\n     * - the caller must be `callerConfirmation`.\\n     */\\n    function renounceRole(bytes32 role, address callerConfirmation) external;\\n}\\n\"},\"lib/openzeppelin-contracts-upgradeable/contracts/utils/introspection/ERC165Upgradeable.sol\":{\"content\":\"// SPDX-License-Identifier: MIT\\n// OpenZeppelin Contracts (last updated v5.0.0) (utils/introspection/ERC165.sol)\\n\\npragma solidity ^0.8.20;\\n\\nimport {IERC165} from \\\"@openzeppelin/contracts/utils/introspection/IERC165.sol\\\";\\nimport {Initializable} from \\\"../../proxy/utils/Initializable.sol\\\";\\n\\n/**\\n * @dev Implementation of the {IERC165} interface.\\n *\\n * Contracts that want to implement ERC165 should inherit from this contract and override {supportsInterface} to check\\n * for the additional interface id that will be supported. For example:\\n *\\n * ```solidity\\n * function supportsInterface(bytes4 interfaceId) public view virtual override returns (bool) {\\n *     return interfaceId == type(MyInterface).interfaceId || super.supportsInterface(interfaceId);\\n * }\\n * ```\\n */\\nabstract contract ERC165Upgradeable is Initializable, IERC165 {\\n    function __ERC165_init() internal onlyInitializing {\\n    }\\n\\n    function __ERC165_init_unchained() internal onlyInitializing {\\n    }\\n    /**\\n     * @dev See {IERC165-supportsInterface}.\\n     */\\n    function supportsInterface(bytes4 interfaceId) public view virtual returns (bool) {\\n        return interfaceId == type(IERC165).interfaceId;\\n    }\\n}\\n\"},\"lib/openzeppelin-contracts/contracts/token/ERC20/IERC20.sol\":{\"content\":\"// SPDX-License-Identifier: MIT\\n// OpenZeppelin Contracts (last updated v5.4.0) (token/ERC20/IERC20.sol)\\n\\npragma solidity >=0.4.16;\\n\\n/**\\n * @dev Interface of the ERC-20 standard as defined in the ERC.\\n */\\ninterface IERC20 {\\n    /**\\n     * @dev Emitted when `value` tokens are moved from one account (`from`) to\\n     * another (`to`).\\n     *\\n     * Note that `value` may be zero.\\n     */\\n    event Transfer(address indexed from, address indexed to, uint256 value);\\n\\n    /**\\n     * @dev Emitted when the allowance of a `spender` for an `owner` is set by\\n     * a call to {approve}. `value` is the new allowance.\\n     */\\n    event Approval(address indexed owner, address indexed spender, uint256 value);\\n\\n    /**\\n     * @dev Returns the value of tokens in existence.\\n     */\\n    function totalSupply() external view returns (uint256);\\n\\n    /**\\n     * @dev Returns the value of tokens owned by `account`.\\n     */\\n    function balanceOf(address account) external view returns (uint256);\\n\\n    /**\\n     * @dev Moves a `value` amount of tokens from the caller's account to `to`.\\n     *\\n     * Returns a boolean value indicating whether the operation succeeded.\\n     *\\n     * Emits a {Transfer} event.\\n     */\\n    function transfer(address to, uint256 value) external returns (bool);\\n\\n    /**\\n     * @dev Returns the remaining number of tokens that `spender` will be\\n     * allowed to spend on behalf of `owner` through {transferFrom}. This is\\n     * zero by default.\\n     *\\n     * This value changes when {approve} or {transferFrom} are called.\\n     */\\n    function allowance(address owner, address spender) external view returns (uint256);\\n\\n    /**\\n     * @dev Sets a `value` amount of tokens as the allowance of `spender` over the\\n     * caller's tokens.\\n     *\\n     * Returns a boolean value indicating whether the operation succeeded.\\n     *\\n     * IMPORTANT: Beware that changing an allowance with this method brings the risk\\n     * that someone may use both the old and the new allowance by unfortunate\\n     * transaction ordering. One possible solution to mitigate this race\\n     * condition is to first reduce the spender's allowance to 0 and set the\\n     * desired value afterwards:\\n     * https://github.com/ethereum/EIPs/issues/20#issuecomment-263524729\\n     *\\n     * Emits an {Approval} event.\\n     */\\n    function approve(address spender, uint256 value) external returns (bool);\\n\\n    /**\\n     * @dev Moves a `value` amount of tokens from `from` to `to` using the\\n     * allowance mechanism. `value` is then deducted from the caller's\\n     * allowance.\\n     *\\n     * Returns a boolean value indicating whether the operation succeeded.\\n     *\\n     * Emits a {Transfer} event.\\n     */\\n    function transferFrom(address from, address to, uint256 value) external returns (bool);\\n}\\n\"},\"lib/openzeppelin-contracts/contracts/token/ERC20/extensions/IERC20Metadata.sol\":{\"content\":\"// SPDX-License-Identifier: MIT\\n// OpenZeppelin Contracts (last updated v5.4.0) (token/ERC20/extensions/IERC20Metadata.sol)\\n\\npragma solidity >=0.6.2;\\n\\nimport {IERC20} from \\\"../IERC20.sol\\\";\\n\\n/**\\n * @dev Interface for the optional metadata functions from the ERC-20 standard.\\n */\\ninterface IERC20Metadata is IERC20 {\\n    /**\\n     * @dev Returns the name of the token.\\n     */\\n    function name() external view returns (string memory);\\n\\n    /**\\n     * @dev Returns the symbol of the token.\\n     */\\n    function symbol() external view returns (string memory);\\n\\n    /**\\n     * @dev Returns the decimals places of the token.\\n     */\\n    function decimals() external view returns (uint8);\\n}\\n\"},\"lib/openzeppelin-contracts/contracts/interfaces/draft-IERC6093.sol\":{\"content\":\"// SPDX-License-Identifier: MIT\\n// OpenZeppelin Contracts (last updated v5.4.0) (interfaces/draft-IERC6093.sol)\\npragma solidity >=0.8.4;\\n\\n/**\\n * @dev Standard ERC-20 Errors\\n * Interface of the https://eips.ethereum.org/EIPS/eip-6093[ERC-6093] custom errors for ERC-20 tokens.\\n */\\ninterface IERC20Errors {\\n    /**\\n     * @dev Indicates an error related to the current `balance` of a `sender`. Used in transfers.\\n     * @param sender Address whose tokens are being transferred.\\n     * @param balance Current balance for the interacting account.\\n     * @param needed Minimum amount required to perform a transfer.\\n     */\\n    error ERC20InsufficientBalance(address sender, uint256 balance, uint256 needed);\\n\\n    /**\\n     * @dev Indicates a failure with the token `sender`. Used in transfers.\\n     * @param sender Address whose tokens are being transferred.\\n     */\\n    error ERC20InvalidSender(address sender);\\n\\n    /**\\n     * @dev Indicates a failure with the token `receiver`. Used in transfers.\\n     * @param receiver Address to which tokens are being transferred.\\n     */\\n    error ERC20InvalidReceiver(address receiver);\\n\\n    /**\\n     * @dev Indicates a failure with the `spender`’s `allowance`. Used in transfers.\\n     * @param spender Address that may be allowed to operate on tokens without being their owner.\\n     * @param allowance Amount of tokens a `spender` is allowed to operate with.\\n     * @param needed Minimum amount required to perform a transfer.\\n     */\\n    error ERC20InsufficientAllowance(address spender, uint256 allowance, uint256 needed);\\n\\n    /**\\n     * @dev Indicates a failure with the `approver` of a token to be approved. Used in approvals.\\n     * @param approver Address initiating an approval operation.\\n     */\\n    error ERC20InvalidApprover(address approver);\\n\\n    /**\\n     * @dev Indicates a failure with the `spender` to be approved. Used in approvals.\\n     * @param spender Address that may be allowed to operate on tokens without being their owner.\\n     */\\n    error ERC20InvalidSpender(address spender);\\n}\\n\\n/**\\n * @dev Standard ERC-721 Errors\\n * Interface of the https://eips.ethereum.org/EIPS/eip-6093[ERC-6093] custom errors for ERC-721 tokens.\\n */\\ninterface IERC721Errors {\\n    /**\\n     * @dev Indicates that an address can't be an owner. For example, `address(0)` is a forbidden owner in ERC-20.\\n     * Used in balance queries.\\n     * @param owner Address of the current owner of a token.\\n     */\\n    error ERC721InvalidOwner(address owner);\\n\\n    /**\\n     * @dev Indicates a `tokenId` whose `owner` is the zero address.\\n     * @param tokenId Identifier number of a token.\\n     */\\n    error ERC721NonexistentToken(uint256 tokenId);\\n\\n    /**\\n     * @dev Indicates an error related to the ownership over a particular token. Used in transfers.\\n     * @param sender Address whose tokens are being transferred.\\n     * @param tokenId Identifier number of a token.\\n     * @param owner Address of the current owner of a token.\\n     */\\n    error ERC721IncorrectOwner(address sender, uint256 tokenId, address owner);\\n\\n    /**\\n     * @dev Indicates a failure with the token `sender`. Used in transfers.\\n     * @param sender Address whose tokens are being transferred.\\n     */\\n    error ERC721InvalidSender(address sender);\\n\\n    /**\\n     * @dev Indicates a failure with the token `receiver`. Used in transfers.\\n     * @param receiver Address to which tokens are being transferred.\\n     */\\n    error ERC721InvalidReceiver(address receiver);\\n\\n    /**\\n     * @dev Indicates a failure with the `operator`’s approval. Used in transfers.\\n     * @param operator Address that may be allowed to operate on tokens without being their owner.\\n     * @param tokenId Identifier number of a token.\\n     */\\n    error ERC721InsufficientApproval(address operator, uint256 tokenId);\\n\\n    /**\\n     * @dev Indicates a failure with the `approver` of a token to be approved. Used in approvals.\\n     * @param approver Address initiating an approval operation.\\n     */\\n    error ERC721InvalidApprover(address approver);\\n\\n    /**\\n     * @dev Indicates a failure with the `operator` to be approved. Used in approvals.\\n     * @param operator Address that may be allowed to operate on tokens without being their owner.\\n     */\\n    error ERC721InvalidOperator(address operator);\\n}\\n\\n/**\\n * @dev Standard ERC-1155 Errors\\n * Interface of the https://eips.ethereum.org/EIPS/eip-6093[ERC-6093] custom errors for ERC-1155 tokens.\\n */\\ninterface IERC1155Errors {\\n    /**\\n     * @dev Indicates an error related to the current `balance` of a `sender`. Used in transfers.\\n     * @param sender Address whose tokens are being transferred.\\n     * @param balance Current balance for the interacting account.\\n     * @param needed Minimum amount required to perform a transfer.\\n     * @param tokenId Identifier number of a token.\\n     */\\n    error ERC1155InsufficientBalance(address sender, uint256 balance, uint256 needed, uint256 tokenId);\\n\\n    /**\\n     * @dev Indicates a failure with the token `sender`. Used in transfers.\\n     * @param sender Address whose tokens are being transferred.\\n     */\\n    error ERC1155InvalidSender(address sender);\\n\\n    /**\\n     * @dev Indicates a failure with the token `receiver`. Used in transfers.\\n     * @param receiver Address to which tokens are being transferred.\\n     */\\n    error ERC1155InvalidReceiver(address receiver);\\n\\n    /**\\n     * @dev Indicates a failure with the `operator`’s approval. Used in transfers.\\n     * @param operator Address that may be allowed to operate on tokens without being their owner.\\n     * @param owner Address of the current owner of a token.\\n     */\\n    error ERC1155MissingApprovalForAll(address operator, address owner);\\n\\n    /**\\n     * @dev Indicates a failure with the `approver` of a token to be approved. Used in approvals.\\n     * @param approver Address initiating an approval operation.\\n     */\\n    error ERC1155InvalidApprover(address approver);\\n\\n    /**\\n     * @dev Indicates a failure with the `operator` to be approved. Used in approvals.\\n     * @param operator Address that may be allowed to operate on tokens without being their owner.\\n     */\\n    error ERC1155InvalidOperator(address operator);\\n\\n    /**\\n     * @dev Indicates an array length mismatch between ids and values in a safeBatchTransferFrom operation.\\n     * Used in batch transfers.\\n     * @param idsLength Length of the array of token identifiers\\n     * @param valuesLength Length of the array of token amounts\\n     */\\n    error ERC1155InvalidArrayLength(uint256 idsLength, uint256 valuesLength);\\n}\\n\"},\"lib/devtools/packages/oapp-evm-upgradeable/contracts/oapp/OAppUpgradeable.sol\":{\"content\":\"// SPDX-License-Identifier: MIT\\n\\npragma solidity ^0.8.20;\\n\\n// @dev Import the 'MessagingFee' and 'MessagingReceipt' so it's exposed to OApp implementers\\n// solhint-disable-next-line no-unused-import\\nimport { OAppSenderUpgradeable, MessagingFee, MessagingReceipt } from \\\"./OAppSenderUpgradeable.sol\\\";\\n// @dev Import the 'Origin' so it's exposed to OApp implementers\\n// solhint-disable-next-line no-unused-import\\nimport { OAppReceiverUpgradeable, Origin } from \\\"./OAppReceiverUpgradeable.sol\\\";\\nimport { OAppCoreUpgradeable } from \\\"./OAppCoreUpgradeable.sol\\\";\\n\\n/**\\n * @title OApp\\n * @dev Abstract contract serving as the base for OApp implementation, combining OAppSender and OAppReceiver functionality.\\n */\\nabstract contract OAppUpgradeable is OAppSenderUpgradeable, OAppReceiverUpgradeable {\\n    /**\\n     * @dev Constructor to initialize the OApp with the provided endpoint and owner.\\n     * @param _endpoint The address of the LOCAL LayerZero endpoint.\\n     */\\n    constructor(address _endpoint) OAppCoreUpgradeable(_endpoint) {}\\n\\n    /**\\n     * @dev Initializes the OApp with the provided delegate.\\n     * @param _delegate The delegate capable of making OApp configurations inside of the endpoint.\\n     *\\n     * @dev The delegate typically should be set as the owner of the contract.\\n     * @dev Ownable is not initialized here on purpose. It should be initialized in the child contract to\\n     * accommodate the different version of Ownable.\\n     */\\n    function __OApp_init(address _delegate) internal onlyInitializing {\\n        __OAppCore_init(_delegate);\\n        __OAppReceiver_init_unchained();\\n        __OAppSender_init_unchained();\\n    }\\n\\n    function __OApp_init_unchained() internal onlyInitializing {}\\n\\n    /**\\n     * @notice Retrieves the OApp version information.\\n     * @return senderVersion The version of the OAppSender.sol implementation.\\n     * @return receiverVersion The version of the OAppReceiver.sol implementation.\\n     */\\n    function oAppVersion()\\n        public\\n        pure\\n        virtual\\n        override(OAppSenderUpgradeable, OAppReceiverUpgradeable)\\n        returns (uint64 senderVersion, uint64 receiverVersion)\\n    {\\n        return (SENDER_VERSION, RECEIVER_VERSION);\\n    }\\n}\\n\"},\"lib/devtools/packages/oapp-evm-upgradeable/contracts/oapp/libs/OAppOptionsType3Upgradeable.sol\":{\"content\":\"// SPDX-License-Identifier: MIT\\n\\npragma solidity ^0.8.20;\\n\\nimport { OwnableUpgradeable } from \\\"@openzeppelin/contracts-upgradeable/access/OwnableUpgradeable.sol\\\";\\nimport { IOAppOptionsType3, EnforcedOptionParam } from \\\"@layerzerolabs/oapp-evm/contracts/oapp/interfaces/IOAppOptionsType3.sol\\\";\\n\\n/**\\n * @title OAppOptionsType3\\n * @dev Abstract contract implementing the IOAppOptionsType3 interface with type 3 options.\\n */\\nabstract contract OAppOptionsType3Upgradeable is IOAppOptionsType3, OwnableUpgradeable {\\n    struct OAppOptionsType3Storage {\\n        // @dev The \\\"msgType\\\" should be defined in the child contract.\\n        mapping(uint32 => mapping(uint16 => bytes)) enforcedOptions;\\n    }\\n\\n    // keccak256(abi.encode(uint256(keccak256(\\\"layerzerov2.storage.oappoptionstype3\\\")) - 1)) & ~bytes32(uint256(0xff))\\n    bytes32 private constant OAPP_OPTIONS_TYPE_3_STORAGE_LOCATION =\\n        0x8d2bda5d9f6ffb5796910376005392955773acee5548d0fcdb10e7c264ea0000;\\n\\n    uint16 internal constant OPTION_TYPE_3 = 3;\\n\\n    function _getOAppOptionsType3Storage() internal pure returns (OAppOptionsType3Storage storage $) {\\n        assembly {\\n            $.slot := OAPP_OPTIONS_TYPE_3_STORAGE_LOCATION\\n        }\\n    }\\n\\n    /**\\n     * @dev Ownable is not initialized here on purpose. It should be initialized in the child contract to\\n     * accommodate the different version of Ownable.\\n     */\\n    function __OAppOptionsType3_init() internal onlyInitializing {}\\n\\n    function __OAppOptionsType3_init_unchained() internal onlyInitializing {}\\n\\n    function enforcedOptions(uint32 _eid, uint16 _msgType) public view returns (bytes memory) {\\n        OAppOptionsType3Storage storage $ = _getOAppOptionsType3Storage();\\n        return $.enforcedOptions[_eid][_msgType];\\n    }\\n\\n    /**\\n     * @dev Sets the enforced options for specific endpoint and message type combinations.\\n     * @param _enforcedOptions An array of EnforcedOptionParam structures specifying enforced options.\\n     *\\n     * @dev Only the owner/admin of the OApp can call this function.\\n     * @dev Provides a way for the OApp to enforce things like paying for PreCrime, AND/OR minimum dst lzReceive gas amounts etc.\\n     * @dev These enforced options can vary as the potential options/execution on the remote may differ as per the msgType.\\n     * eg. Amount of lzReceive() gas necessary to deliver a lzCompose() message adds overhead you dont want to pay\\n     * if you are only making a standard LayerZero message ie. lzReceive() WITHOUT sendCompose().\\n     */\\n    function setEnforcedOptions(EnforcedOptionParam[] calldata _enforcedOptions) public virtual onlyOwner {\\n        OAppOptionsType3Storage storage $ = _getOAppOptionsType3Storage();\\n        for (uint256 i = 0; i < _enforcedOptions.length; i++) {\\n            // @dev Enforced options are only available for optionType 3, as type 1 and 2 dont support combining.\\n            _assertOptionsType3(_enforcedOptions[i].options);\\n            $.enforcedOptions[_enforcedOptions[i].eid][_enforcedOptions[i].msgType] = _enforcedOptions[i].options;\\n        }\\n\\n        emit EnforcedOptionSet(_enforcedOptions);\\n    }\\n\\n    /**\\n     * @notice Combines options for a given endpoint and message type.\\n     * @param _eid The endpoint ID.\\n     * @param _msgType The OAPP message type.\\n     * @param _extraOptions Additional options passed by the caller.\\n     * @return options The combination of caller specified options AND enforced options.\\n     *\\n     * @dev If there is an enforced lzReceive option:\\n     * - {gasLimit: 200k, msg.value: 1 ether} AND a caller supplies a lzReceive option: {gasLimit: 100k, msg.value: 0.5 ether}\\n     * - The resulting options will be {gasLimit: 300k, msg.value: 1.5 ether} when the message is executed on the remote lzReceive() function.\\n     * @dev This presence of duplicated options is handled off-chain in the verifier/executor.\\n     */\\n    function combineOptions(\\n        uint32 _eid,\\n        uint16 _msgType,\\n        bytes calldata _extraOptions\\n    ) public view virtual returns (bytes memory) {\\n        OAppOptionsType3Storage storage $ = _getOAppOptionsType3Storage();\\n        bytes memory enforced = $.enforcedOptions[_eid][_msgType];\\n\\n        // No enforced options, pass whatever the caller supplied, even if it's empty or legacy type 1/2 options.\\n        if (enforced.length == 0) return _extraOptions;\\n\\n        // No caller options, return enforced\\n        if (_extraOptions.length == 0) return enforced;\\n\\n        // @dev If caller provided _extraOptions, must be type 3 as its the ONLY type that can be combined.\\n        if (_extraOptions.length >= 2) {\\n            _assertOptionsType3(_extraOptions);\\n            // @dev Remove the first 2 bytes containing the type from the _extraOptions and combine with enforced.\\n            return bytes.concat(enforced, _extraOptions[2:]);\\n        }\\n\\n        // No valid set of options was found.\\n        revert InvalidOptions(_extraOptions);\\n    }\\n\\n    /**\\n     * @dev Internal function to assert that options are of type 3.\\n     * @param _options The options to be checked.\\n     */\\n    function _assertOptionsType3(bytes calldata _options) internal pure virtual {\\n        uint16 optionsType = uint16(bytes2(_options[0:2]));\\n        if (optionsType != OPTION_TYPE_3) revert InvalidOptions(_options);\\n    }\\n}\\n\"},\"lib/devtools/packages/oapp-evm/contracts/oapp/interfaces/IOAppMsgInspector.sol\":{\"content\":\"// SPDX-License-Identifier: MIT\\n\\npragma solidity ^0.8.20;\\n\\n/**\\n * @title IOAppMsgInspector\\n * @dev Interface for the OApp Message Inspector, allowing examination of message and options contents.\\n */\\ninterface IOAppMsgInspector {\\n    // Custom error message for inspection failure\\n    error InspectionFailed(bytes message, bytes options);\\n\\n    /**\\n     * @notice Allows the inspector to examine LayerZero message contents and optionally throw a revert if invalid.\\n     * @param _message The message payload to be inspected.\\n     * @param _options Additional options or parameters for inspection.\\n     * @return valid A boolean indicating whether the inspection passed (true) or failed (false).\\n     *\\n     * @dev Optionally done as a revert, OR use the boolean provided to handle the failure.\\n     */\\n    function inspect(bytes calldata _message, bytes calldata _options) external view returns (bool valid);\\n}\\n\"},\"lib/devtools/packages/oapp-evm-upgradeable/contracts/precrime/OAppPreCrimeSimulatorUpgradeable.sol\":{\"content\":\"// SPDX-License-Identifier: MIT\\n\\npragma solidity ^0.8.20;\\n\\nimport { OwnableUpgradeable } from \\\"@openzeppelin/contracts-upgradeable/access/OwnableUpgradeable.sol\\\";\\nimport { IPreCrime } from \\\"@layerzerolabs/oapp-evm/contracts/precrime/interfaces/IPreCrime.sol\\\";\\nimport { IOAppPreCrimeSimulator, InboundPacket, Origin } from \\\"@layerzerolabs/oapp-evm/contracts/precrime/interfaces/IOAppPreCrimeSimulator.sol\\\";\\n\\n/**\\n * @title OAppPreCrimeSimulator\\n * @dev Abstract contract serving as the base for preCrime simulation functionality in an OApp.\\n */\\nabstract contract OAppPreCrimeSimulatorUpgradeable is IOAppPreCrimeSimulator, OwnableUpgradeable {\\n    struct OAppPreCrimeSimulatorStorage {\\n        // The address of the preCrime implementation.\\n        address preCrime;\\n    }\\n\\n    // keccak256(abi.encode(uint256(keccak256(\\\"layerzerov2.storage.oappprecrimesimulator\\\")) - 1)) & ~bytes32(uint256(0xff))\\n    bytes32 private constant OAPP_PRE_CRIME_SIMULATOR_STORAGE_LOCATION =\\n        0xefb041d771d6daaa55702fff6eb740d63ba559a75d2d1d3e151c78ff2480b600;\\n\\n    function _getOAppPreCrimeSimulatorStorage() internal pure returns (OAppPreCrimeSimulatorStorage storage $) {\\n        assembly {\\n            $.slot := OAPP_PRE_CRIME_SIMULATOR_STORAGE_LOCATION\\n        }\\n    }\\n\\n    /**\\n     * @dev Ownable is not initialized here on purpose. It should be initialized in the child contract to\\n     * accommodate the different version of Ownable.\\n     */\\n    function __OAppPreCrimeSimulator_init() internal onlyInitializing {}\\n\\n    function __OAppPreCrimeSimulator_init_unchained() internal onlyInitializing {}\\n\\n    function preCrime() external view override returns (address) {\\n        OAppPreCrimeSimulatorStorage storage $ = _getOAppPreCrimeSimulatorStorage();\\n        return $.preCrime;\\n    }\\n\\n    /**\\n     * @dev Retrieves the address of the OApp contract.\\n     * @return The address of the OApp contract.\\n     *\\n     * @dev The simulator contract is the base contract for the OApp by default.\\n     * @dev If the simulator is a separate contract, override this function.\\n     */\\n    function oApp() external view virtual returns (address) {\\n        return address(this);\\n    }\\n\\n    /**\\n     * @dev Sets the preCrime contract address.\\n     * @param _preCrime The address of the preCrime contract.\\n     */\\n    function setPreCrime(address _preCrime) public virtual onlyOwner {\\n        OAppPreCrimeSimulatorStorage storage $ = _getOAppPreCrimeSimulatorStorage();\\n        $.preCrime = _preCrime;\\n        emit PreCrimeSet(_preCrime);\\n    }\\n\\n    /**\\n     * @dev Interface for pre-crime simulations. Always reverts at the end with the simulation results.\\n     * @param _packets An array of InboundPacket objects representing received packets to be delivered.\\n     *\\n     * @dev WARNING: MUST revert at the end with the simulation results.\\n     * @dev Gives the preCrime implementation the ability to mock sending packets to the lzReceive function,\\n     * WITHOUT actually executing them.\\n     */\\n    function lzReceiveAndRevert(InboundPacket[] calldata _packets) public payable virtual {\\n        for (uint256 i = 0; i < _packets.length; i++) {\\n            InboundPacket calldata packet = _packets[i];\\n\\n            // Ignore packets that are not from trusted peers.\\n            if (!isPeer(packet.origin.srcEid, packet.origin.sender)) continue;\\n\\n            // @dev Because a verifier is calling this function, it doesnt have access to executor params:\\n            //  - address _executor\\n            //  - bytes calldata _extraData\\n            // preCrime will NOT work for OApps that rely on these two parameters inside of their _lzReceive().\\n            // They are instead stubbed to default values, address(0) and bytes(\\\"\\\")\\n            // @dev Calling this.lzReceiveSimulate removes ability for assembly return 0 callstack exit,\\n            // which would cause the revert to be ignored.\\n            this.lzReceiveSimulate{ value: packet.value }(\\n                packet.origin,\\n                packet.guid,\\n                packet.message,\\n                packet.executor,\\n                packet.extraData\\n            );\\n        }\\n\\n        // @dev Revert with the simulation results. msg.sender must implement IPreCrime.buildSimulationResult().\\n        revert SimulationResult(IPreCrime(msg.sender).buildSimulationResult());\\n    }\\n\\n    /**\\n     * @dev Is effectively an internal function because msg.sender must be address(this).\\n     * Allows resetting the call stack for 'internal' calls.\\n     * @param _origin The origin information containing the source endpoint and sender address.\\n     *  - srcEid: The source chain endpoint ID.\\n     *  - sender: The sender address on the src chain.\\n     *  - nonce: The nonce of the message.\\n     * @param _guid The unique identifier of the packet.\\n     * @param _message The message payload of the packet.\\n     * @param _executor The executor address for the packet.\\n     * @param _extraData Additional data for the packet.\\n     */\\n    function lzReceiveSimulate(\\n        Origin calldata _origin,\\n        bytes32 _guid,\\n        bytes calldata _message,\\n        address _executor,\\n        bytes calldata _extraData\\n    ) external payable virtual {\\n        // @dev Ensure ONLY can be called 'internally'.\\n        if (msg.sender != address(this)) revert OnlySelf();\\n        _lzReceiveSimulate(_origin, _guid, _message, _executor, _extraData);\\n    }\\n\\n    /**\\n     * @dev Internal function to handle the OAppPreCrimeSimulator simulated receive.\\n     * @param _origin The origin information.\\n     *  - srcEid: The source chain endpoint ID.\\n     *  - sender: The sender address from the src chain.\\n     *  - nonce: The nonce of the LayerZero message.\\n     * @param _guid The GUID of the LayerZero message.\\n     * @param _message The LayerZero message.\\n     * @param _executor The address of the off-chain executor.\\n     * @param _extraData Arbitrary data passed by the msg executor.\\n     *\\n     * @dev Enables the preCrime simulator to mock sending lzReceive() messages,\\n     * routes the msg down from the OAppPreCrimeSimulator, and back up to the OAppReceiver.\\n     */\\n    function _lzReceiveSimulate(\\n        Origin calldata _origin,\\n        bytes32 _guid,\\n        bytes calldata _message,\\n        address _executor,\\n        bytes calldata _extraData\\n    ) internal virtual;\\n\\n    /**\\n     * @dev checks if the specified peer is considered 'trusted' by the OApp.\\n     * @param _eid The endpoint Id to check.\\n     * @param _peer The peer to check.\\n     * @return Whether the peer passed is considered 'trusted' by the OApp.\\n     */\\n    function isPeer(uint32 _eid, bytes32 _peer) public view virtual returns (bool);\\n}\\n\"},\"lib/devtools/packages/oft-evm/contracts/libs/OFTMsgCodec.sol\":{\"content\":\"// SPDX-License-Identifier: MIT\\n\\npragma solidity ^0.8.20;\\n\\nlibrary OFTMsgCodec {\\n    // Offset constants for encoding and decoding OFT messages\\n    uint8 private constant SEND_TO_OFFSET = 32;\\n    uint8 private constant SEND_AMOUNT_SD_OFFSET = 40;\\n\\n    /**\\n     * @dev Encodes an OFT LayerZero message.\\n     * @param _sendTo The recipient address.\\n     * @param _amountShared The amount in shared decimals.\\n     * @param _composeMsg The composed message.\\n     * @return _msg The encoded message.\\n     * @return hasCompose A boolean indicating whether the message has a composed payload.\\n     */\\n    function encode(\\n        bytes32 _sendTo,\\n        uint64 _amountShared,\\n        bytes memory _composeMsg\\n    ) internal view returns (bytes memory _msg, bool hasCompose) {\\n        hasCompose = _composeMsg.length > 0;\\n        // @dev Remote chains will want to know the composed function caller ie. msg.sender on the src.\\n        _msg = hasCompose\\n            ? abi.encodePacked(_sendTo, _amountShared, addressToBytes32(msg.sender), _composeMsg)\\n            : abi.encodePacked(_sendTo, _amountShared);\\n    }\\n\\n    /**\\n     * @dev Checks if the OFT message is composed.\\n     * @param _msg The OFT message.\\n     * @return A boolean indicating whether the message is composed.\\n     */\\n    function isComposed(bytes calldata _msg) internal pure returns (bool) {\\n        return _msg.length > SEND_AMOUNT_SD_OFFSET;\\n    }\\n\\n    /**\\n     * @dev Retrieves the recipient address from the OFT message.\\n     * @param _msg The OFT message.\\n     * @return The recipient address.\\n     */\\n    function sendTo(bytes calldata _msg) internal pure returns (bytes32) {\\n        return bytes32(_msg[:SEND_TO_OFFSET]);\\n    }\\n\\n    /**\\n     * @dev Retrieves the amount in shared decimals from the OFT message.\\n     * @param _msg The OFT message.\\n     * @return The amount in shared decimals.\\n     */\\n    function amountSD(bytes calldata _msg) internal pure returns (uint64) {\\n        return uint64(bytes8(_msg[SEND_TO_OFFSET:SEND_AMOUNT_SD_OFFSET]));\\n    }\\n\\n    /**\\n     * @dev Retrieves the composed message from the OFT message.\\n     * @param _msg The OFT message.\\n     * @return The composed message.\\n     */\\n    function composeMsg(bytes calldata _msg) internal pure returns (bytes memory) {\\n        return _msg[SEND_AMOUNT_SD_OFFSET:];\\n    }\\n\\n    /**\\n     * @dev Converts an address to bytes32.\\n     * @param _addr The address to convert.\\n     * @return The bytes32 representation of the address.\\n     */\\n    function addressToBytes32(address _addr) internal pure returns (bytes32) {\\n        return bytes32(uint256(uint160(_addr)));\\n    }\\n\\n    /**\\n     * @dev Converts bytes32 to an address.\\n     * @param _b The bytes32 value to convert.\\n     * @return The address representation of bytes32.\\n     */\\n    function bytes32ToAddress(bytes32 _b) internal pure returns (address) {\\n        return address(uint160(uint256(_b)));\\n    }\\n}\\n\"},\"lib/devtools/packages/oft-evm/contracts/libs/OFTComposeMsgCodec.sol\":{\"content\":\"// SPDX-License-Identifier: MIT\\n\\npragma solidity ^0.8.20;\\n\\nlibrary OFTComposeMsgCodec {\\n    // Offset constants for decoding composed messages\\n    uint8 private constant NONCE_OFFSET = 8;\\n    uint8 private constant SRC_EID_OFFSET = 12;\\n    uint8 private constant AMOUNT_LD_OFFSET = 44;\\n    uint8 private constant COMPOSE_FROM_OFFSET = 76;\\n\\n    /**\\n     * @dev Encodes a OFT composed message.\\n     * @param _nonce The nonce value.\\n     * @param _srcEid The source endpoint ID.\\n     * @param _amountLD The amount in local decimals.\\n     * @param _composeMsg The composed message.\\n     * @return _msg The encoded Composed message.\\n     */\\n    function encode(\\n        uint64 _nonce,\\n        uint32 _srcEid,\\n        uint256 _amountLD,\\n        bytes memory _composeMsg // 0x[composeFrom][composeMsg]\\n    ) internal pure returns (bytes memory _msg) {\\n        _msg = abi.encodePacked(_nonce, _srcEid, _amountLD, _composeMsg);\\n    }\\n\\n    /**\\n     * @dev Retrieves the nonce for the composed message.\\n     * @param _msg The message.\\n     * @return The nonce value.\\n     */\\n    function nonce(bytes calldata _msg) internal pure returns (uint64) {\\n        return uint64(bytes8(_msg[:NONCE_OFFSET]));\\n    }\\n\\n    /**\\n     * @dev Retrieves the source endpoint ID for the composed message.\\n     * @param _msg The message.\\n     * @return The source endpoint ID.\\n     */\\n    function srcEid(bytes calldata _msg) internal pure returns (uint32) {\\n        return uint32(bytes4(_msg[NONCE_OFFSET:SRC_EID_OFFSET]));\\n    }\\n\\n    /**\\n     * @dev Retrieves the amount in local decimals from the composed message.\\n     * @param _msg The message.\\n     * @return The amount in local decimals.\\n     */\\n    function amountLD(bytes calldata _msg) internal pure returns (uint256) {\\n        return uint256(bytes32(_msg[SRC_EID_OFFSET:AMOUNT_LD_OFFSET]));\\n    }\\n\\n    /**\\n     * @dev Retrieves the composeFrom value from the composed message.\\n     * @param _msg The message.\\n     * @return The composeFrom value.\\n     */\\n    function composeFrom(bytes calldata _msg) internal pure returns (bytes32) {\\n        return bytes32(_msg[AMOUNT_LD_OFFSET:COMPOSE_FROM_OFFSET]);\\n    }\\n\\n    /**\\n     * @dev Retrieves the composed message.\\n     * @param _msg The message.\\n     * @return The composed message.\\n     */\\n    function composeMsg(bytes calldata _msg) internal pure returns (bytes memory) {\\n        return _msg[COMPOSE_FROM_OFFSET:];\\n    }\\n\\n    /**\\n     * @dev Converts an address to bytes32.\\n     * @param _addr The address to convert.\\n     * @return The bytes32 representation of the address.\\n     */\\n    function addressToBytes32(address _addr) internal pure returns (bytes32) {\\n        return bytes32(uint256(uint160(_addr)));\\n    }\\n\\n    /**\\n     * @dev Converts bytes32 to an address.\\n     * @param _b The bytes32 value to convert.\\n     * @return The address representation of bytes32.\\n     */\\n    function bytes32ToAddress(bytes32 _b) internal pure returns (address) {\\n        return address(uint160(uint256(_b)));\\n    }\\n}\\n\"},\"lib/openzeppelin-contracts/contracts/token/ERC20/utils/SafeERC20.sol\":{\"content\":\"// SPDX-License-Identifier: MIT\\n// OpenZeppelin Contracts (last updated v5.3.0) (token/ERC20/utils/SafeERC20.sol)\\n\\npragma solidity ^0.8.20;\\n\\nimport {IERC20} from \\\"../IERC20.sol\\\";\\nimport {IERC1363} from \\\"../../../interfaces/IERC1363.sol\\\";\\n\\n/**\\n * @title SafeERC20\\n * @dev Wrappers around ERC-20 operations that throw on failure (when the token\\n * contract returns false). Tokens that return no value (and instead revert or\\n * throw on failure) are also supported, non-reverting calls are assumed to be\\n * successful.\\n * To use this library you can add a `using SafeERC20 for IERC20;` statement to your contract,\\n * which allows you to call the safe operations as `token.safeTransfer(...)`, etc.\\n */\\nlibrary SafeERC20 {\\n    /**\\n     * @dev An operation with an ERC-20 token failed.\\n     */\\n    error SafeERC20FailedOperation(address token);\\n\\n    /**\\n     * @dev Indicates a failed `decreaseAllowance` request.\\n     */\\n    error SafeERC20FailedDecreaseAllowance(address spender, uint256 currentAllowance, uint256 requestedDecrease);\\n\\n    /**\\n     * @dev Transfer `value` amount of `token` from the calling contract to `to`. If `token` returns no value,\\n     * non-reverting calls are assumed to be successful.\\n     */\\n    function safeTransfer(IERC20 token, address to, uint256 value) internal {\\n        _callOptionalReturn(token, abi.encodeCall(token.transfer, (to, value)));\\n    }\\n\\n    /**\\n     * @dev Transfer `value` amount of `token` from `from` to `to`, spending the approval given by `from` to the\\n     * calling contract. If `token` returns no value, non-reverting calls are assumed to be successful.\\n     */\\n    function safeTransferFrom(IERC20 token, address from, address to, uint256 value) internal {\\n        _callOptionalReturn(token, abi.encodeCall(token.transferFrom, (from, to, value)));\\n    }\\n\\n    /**\\n     * @dev Variant of {safeTransfer} that returns a bool instead of reverting if the operation is not successful.\\n     */\\n    function trySafeTransfer(IERC20 token, address to, uint256 value) internal returns (bool) {\\n        return _callOptionalReturnBool(token, abi.encodeCall(token.transfer, (to, value)));\\n    }\\n\\n    /**\\n     * @dev Variant of {safeTransferFrom} that returns a bool instead of reverting if the operation is not successful.\\n     */\\n    function trySafeTransferFrom(IERC20 token, address from, address to, uint256 value) internal returns (bool) {\\n        return _callOptionalReturnBool(token, abi.encodeCall(token.transferFrom, (from, to, value)));\\n    }\\n\\n    /**\\n     * @dev Increase the calling contract's allowance toward `spender` by `value`. If `token` returns no value,\\n     * non-reverting calls are assumed to be successful.\\n     *\\n     * IMPORTANT: If the token implements ERC-7674 (ERC-20 with temporary allowance), and if the \\\"client\\\"\\n     * smart contract uses ERC-7674 to set temporary allowances, then the \\\"client\\\" smart contract should avoid using\\n     * this function. Performing a {safeIncreaseAllowance} or {safeDecreaseAllowance} operation on a token contract\\n     * that has a non-zero temporary allowance (for that particular owner-spender) will result in unexpected behavior.\\n     */\\n    function safeIncreaseAllowance(IERC20 token, address spender, uint256 value) internal {\\n        uint256 oldAllowance = token.allowance(address(this), spender);\\n        forceApprove(token, spender, oldAllowance + value);\\n    }\\n\\n    /**\\n     * @dev Decrease the calling contract's allowance toward `spender` by `requestedDecrease`. If `token` returns no\\n     * value, non-reverting calls are assumed to be successful.\\n     *\\n     * IMPORTANT: If the token implements ERC-7674 (ERC-20 with temporary allowance), and if the \\\"client\\\"\\n     * smart contract uses ERC-7674 to set temporary allowances, then the \\\"client\\\" smart contract should avoid using\\n     * this function. Performing a {safeIncreaseAllowance} or {safeDecreaseAllowance} operation on a token contract\\n     * that has a non-zero temporary allowance (for that particular owner-spender) will result in unexpected behavior.\\n     */\\n    function safeDecreaseAllowance(IERC20 token, address spender, uint256 requestedDecrease) internal {\\n        unchecked {\\n            uint256 currentAllowance = token.allowance(address(this), spender);\\n            if (currentAllowance < requestedDecrease) {\\n                revert SafeERC20FailedDecreaseAllowance(spender, currentAllowance, requestedDecrease);\\n            }\\n            forceApprove(token, spender, currentAllowance - requestedDecrease);\\n        }\\n    }\\n\\n    /**\\n     * @dev Set the calling contract's allowance toward `spender` to `value`. If `token` returns no value,\\n     * non-reverting calls are assumed to be successful. Meant to be used with tokens that require the approval\\n     * to be set to zero before setting it to a non-zero value, such as USDT.\\n     *\\n     * NOTE: If the token implements ERC-7674, this function will not modify any temporary allowance. This function\\n     * only sets the \\\"standard\\\" allowance. Any temporary allowance will remain active, in addition to the value being\\n     * set here.\\n     */\\n    function forceApprove(IERC20 token, address spender, uint256 value) internal {\\n        bytes memory approvalCall = abi.encodeCall(token.approve, (spender, value));\\n\\n        if (!_callOptionalReturnBool(token, approvalCall)) {\\n            _callOptionalReturn(token, abi.encodeCall(token.approve, (spender, 0)));\\n            _callOptionalReturn(token, approvalCall);\\n        }\\n    }\\n\\n    /**\\n     * @dev Performs an {ERC1363} transferAndCall, with a fallback to the simple {ERC20} transfer if the target has no\\n     * code. This can be used to implement an {ERC721}-like safe transfer that rely on {ERC1363} checks when\\n     * targeting contracts.\\n     *\\n     * Reverts if the returned value is other than `true`.\\n     */\\n    function transferAndCallRelaxed(IERC1363 token, address to, uint256 value, bytes memory data) internal {\\n        if (to.code.length == 0) {\\n            safeTransfer(token, to, value);\\n        } else if (!token.transferAndCall(to, value, data)) {\\n            revert SafeERC20FailedOperation(address(token));\\n        }\\n    }\\n\\n    /**\\n     * @dev Performs an {ERC1363} transferFromAndCall, with a fallback to the simple {ERC20} transferFrom if the target\\n     * has no code. This can be used to implement an {ERC721}-like safe transfer that rely on {ERC1363} checks when\\n     * targeting contracts.\\n     *\\n     * Reverts if the returned value is other than `true`.\\n     */\\n    function transferFromAndCallRelaxed(\\n        IERC1363 token,\\n        address from,\\n        address to,\\n        uint256 value,\\n        bytes memory data\\n    ) internal {\\n        if (to.code.length == 0) {\\n            safeTransferFrom(token, from, to, value);\\n        } else if (!token.transferFromAndCall(from, to, value, data)) {\\n            revert SafeERC20FailedOperation(address(token));\\n        }\\n    }\\n\\n    /**\\n     * @dev Performs an {ERC1363} approveAndCall, with a fallback to the simple {ERC20} approve if the target has no\\n     * code. This can be used to implement an {ERC721}-like safe transfer that rely on {ERC1363} checks when\\n     * targeting contracts.\\n     *\\n     * NOTE: When the recipient address (`to`) has no code (i.e. is an EOA), this function behaves as {forceApprove}.\\n     * Opposedly, when the recipient address (`to`) has code, this function only attempts to call {ERC1363-approveAndCall}\\n     * once without retrying, and relies on the returned value to be true.\\n     *\\n     * Reverts if the returned value is other than `true`.\\n     */\\n    function approveAndCallRelaxed(IERC1363 token, address to, uint256 value, bytes memory data) internal {\\n        if (to.code.length == 0) {\\n            forceApprove(token, to, value);\\n        } else if (!token.approveAndCall(to, value, data)) {\\n            revert SafeERC20FailedOperation(address(token));\\n        }\\n    }\\n\\n    /**\\n     * @dev Imitates a Solidity high-level call (i.e. a regular function call to a contract), relaxing the requirement\\n     * on the return value: the return value is optional (but if data is returned, it must not be false).\\n     * @param token The token targeted by the call.\\n     * @param data The call data (encoded using abi.encode or one of its variants).\\n     *\\n     * This is a variant of {_callOptionalReturnBool} that reverts if call fails to meet the requirements.\\n     */\\n    function _callOptionalReturn(IERC20 token, bytes memory data) private {\\n        uint256 returnSize;\\n        uint256 returnValue;\\n        assembly (\\\"memory-safe\\\") {\\n            let success := call(gas(), token, 0, add(data, 0x20), mload(data), 0, 0x20)\\n            // bubble errors\\n            if iszero(success) {\\n                let ptr := mload(0x40)\\n                returndatacopy(ptr, 0, returndatasize())\\n                revert(ptr, returndatasize())\\n            }\\n            returnSize := returndatasize()\\n            returnValue := mload(0)\\n        }\\n\\n        if (returnSize == 0 ? address(token).code.length == 0 : returnValue != 1) {\\n            revert SafeERC20FailedOperation(address(token));\\n        }\\n    }\\n\\n    /**\\n     * @dev Imitates a Solidity high-level call (i.e. a regular function call to a contract), relaxing the requirement\\n     * on the return value: the return value is optional (but if data is returned, it must not be false).\\n     * @param token The token targeted by the call.\\n     * @param data The call data (encoded using abi.encode or one of its variants).\\n     *\\n     * This is a variant of {_callOptionalReturn} that silently catches all reverts and returns a bool instead.\\n     */\\n    function _callOptionalReturnBool(IERC20 token, bytes memory data) private returns (bool) {\\n        bool success;\\n        uint256 returnSize;\\n        uint256 returnValue;\\n        assembly (\\\"memory-safe\\\") {\\n            success := call(gas(), token, 0, add(data, 0x20), mload(data), 0, 0x20)\\n            returnSize := returndatasize()\\n            returnValue := mload(0)\\n        }\\n        return success && (returnSize == 0 ? address(token).code.length > 0 : returnValue == 1);\\n    }\\n}\\n\"},\"lib/layerzero-v2/packages/layerzero-v2/evm/protocol/contracts/interfaces/ILayerZeroEndpointV2.sol\":{\"content\":\"// SPDX-License-Identifier: MIT\\n\\npragma solidity >=0.8.0;\\n\\nimport { IMessageLibManager } from \\\"./IMessageLibManager.sol\\\";\\nimport { IMessagingComposer } from \\\"./IMessagingComposer.sol\\\";\\nimport { IMessagingChannel } from \\\"./IMessagingChannel.sol\\\";\\nimport { IMessagingContext } from \\\"./IMessagingContext.sol\\\";\\n\\nstruct MessagingParams {\\n    uint32 dstEid;\\n    bytes32 receiver;\\n    bytes message;\\n    bytes options;\\n    bool payInLzToken;\\n}\\n\\nstruct MessagingReceipt {\\n    bytes32 guid;\\n    uint64 nonce;\\n    MessagingFee fee;\\n}\\n\\nstruct MessagingFee {\\n    uint256 nativeFee;\\n    uint256 lzTokenFee;\\n}\\n\\nstruct Origin {\\n    uint32 srcEid;\\n    bytes32 sender;\\n    uint64 nonce;\\n}\\n\\ninterface ILayerZeroEndpointV2 is IMessageLibManager, IMessagingComposer, IMessagingChannel, IMessagingContext {\\n    event PacketSent(bytes encodedPayload, bytes options, address sendLibrary);\\n\\n    event PacketVerified(Origin origin, address receiver, bytes32 payloadHash);\\n\\n    event PacketDelivered(Origin origin, address receiver);\\n\\n    event LzReceiveAlert(\\n        address indexed receiver,\\n        address indexed executor,\\n        Origin origin,\\n        bytes32 guid,\\n        uint256 gas,\\n        uint256 value,\\n        bytes message,\\n        bytes extraData,\\n        bytes reason\\n    );\\n\\n    event LzTokenSet(address token);\\n\\n    event DelegateSet(address sender, address delegate);\\n\\n    function quote(MessagingParams calldata _params, address _sender) external view returns (MessagingFee memory);\\n\\n    function send(\\n        MessagingParams calldata _params,\\n        address _refundAddress\\n    ) external payable returns (MessagingReceipt memory);\\n\\n    function verify(Origin calldata _origin, address _receiver, bytes32 _payloadHash) external;\\n\\n    function verifiable(Origin calldata _origin, address _receiver) external view returns (bool);\\n\\n    function initializable(Origin calldata _origin, address _receiver) external view returns (bool);\\n\\n    function lzReceive(\\n        Origin calldata _origin,\\n        address _receiver,\\n        bytes32 _guid,\\n        bytes calldata _message,\\n        bytes calldata _extraData\\n    ) external payable;\\n\\n    // oapp can burn messages partially by calling this function with its own business logic if messages are verified in order\\n    function clear(address _oapp, Origin calldata _origin, bytes32 _guid, bytes calldata _message) external;\\n\\n    function setLzToken(address _lzToken) external;\\n\\n    function lzToken() external view returns (address);\\n\\n    function nativeToken() external view returns (address);\\n\\n    function setDelegate(address _delegate) external;\\n}\\n\"},\"lib/devtools/packages/oapp-evm/contracts/oapp/OAppCore.sol\":{\"content\":\"// SPDX-License-Identifier: MIT\\n\\npragma solidity ^0.8.20;\\n\\nimport { Ownable } from \\\"@openzeppelin/contracts/access/Ownable.sol\\\";\\nimport { IOAppCore, ILayerZeroEndpointV2 } from \\\"./interfaces/IOAppCore.sol\\\";\\n\\n/**\\n * @title OAppCore\\n * @dev Abstract contract implementing the IOAppCore interface with basic OApp configurations.\\n */\\nabstract contract OAppCore is IOAppCore, Ownable {\\n    // The LayerZero endpoint associated with the given OApp\\n    ILayerZeroEndpointV2 public immutable endpoint;\\n\\n    // Mapping to store peers associated with corresponding endpoints\\n    mapping(uint32 eid => bytes32 peer) public peers;\\n\\n    /**\\n     * @dev Constructor to initialize the OAppCore with the provided endpoint and delegate.\\n     * @param _endpoint The address of the LOCAL Layer Zero endpoint.\\n     * @param _delegate The delegate capable of making OApp configurations inside of the endpoint.\\n     *\\n     * @dev The delegate typically should be set as the owner of the contract.\\n     */\\n    constructor(address _endpoint, address _delegate) {\\n        endpoint = ILayerZeroEndpointV2(_endpoint);\\n\\n        if (_delegate == address(0)) revert InvalidDelegate();\\n        endpoint.setDelegate(_delegate);\\n    }\\n\\n    /**\\n     * @notice Sets the peer address (OApp instance) for a corresponding endpoint.\\n     * @param _eid The endpoint ID.\\n     * @param _peer The address of the peer to be associated with the corresponding endpoint.\\n     *\\n     * @dev Only the owner/admin of the OApp can call this function.\\n     * @dev Indicates that the peer is trusted to send LayerZero messages to this OApp.\\n     * @dev Set this to bytes32(0) to remove the peer address.\\n     * @dev Peer is a bytes32 to accommodate non-evm chains.\\n     */\\n    function setPeer(uint32 _eid, bytes32 _peer) public virtual onlyOwner {\\n        _setPeer(_eid, _peer);\\n    }\\n\\n    /**\\n     * @notice Sets the peer address (OApp instance) for a corresponding endpoint.\\n     * @param _eid The endpoint ID.\\n     * @param _peer The address of the peer to be associated with the corresponding endpoint.\\n     *\\n     * @dev Indicates that the peer is trusted to send LayerZero messages to this OApp.\\n     * @dev Set this to bytes32(0) to remove the peer address.\\n     * @dev Peer is a bytes32 to accommodate non-evm chains.\\n     */\\n    function _setPeer(uint32 _eid, bytes32 _peer) internal virtual {\\n        peers[_eid] = _peer;\\n        emit PeerSet(_eid, _peer);\\n    }\\n\\n    /**\\n     * @notice Internal function to get the peer address associated with a specific endpoint; reverts if NOT set.\\n     * ie. the peer is set to bytes32(0).\\n     * @param _eid The endpoint ID.\\n     * @return peer The address of the peer associated with the specified endpoint.\\n     */\\n    function _getPeerOrRevert(uint32 _eid) internal view virtual returns (bytes32) {\\n        bytes32 peer = peers[_eid];\\n        if (peer == bytes32(0)) revert NoPeer(_eid);\\n        return peer;\\n    }\\n\\n    /**\\n     * @notice Sets the delegate address for the OApp.\\n     * @param _delegate The address of the delegate to be set.\\n     *\\n     * @dev Only the owner/admin of the OApp can call this function.\\n     * @dev Provides the ability for a delegate to set configs, on behalf of the OApp, directly on the Endpoint contract.\\n     */\\n    function setDelegate(address _delegate) public onlyOwner {\\n        endpoint.setDelegate(_delegate);\\n    }\\n}\\n\"},\"lib/openzeppelin-contracts/contracts/utils/cryptography/MessageHashUtils.sol\":{\"content\":\"// SPDX-License-Identifier: MIT\\n// OpenZeppelin Contracts (last updated v5.3.0) (utils/cryptography/MessageHashUtils.sol)\\n\\npragma solidity ^0.8.20;\\n\\nimport {Strings} from \\\"../Strings.sol\\\";\\n\\n/**\\n * @dev Signature message hash utilities for producing digests to be consumed by {ECDSA} recovery or signing.\\n *\\n * The library provides methods for generating a hash of a message that conforms to the\\n * https://eips.ethereum.org/EIPS/eip-191[ERC-191] and https://eips.ethereum.org/EIPS/eip-712[EIP 712]\\n * specifications.\\n */\\nlibrary MessageHashUtils {\\n    /**\\n     * @dev Returns the keccak256 digest of an ERC-191 signed data with version\\n     * `0x45` (`personal_sign` messages).\\n     *\\n     * The digest is calculated by prefixing a bytes32 `messageHash` with\\n     * `\\\"\\\\x19Ethereum Signed Message:\\\\n32\\\"` and hashing the result. It corresponds with the\\n     * hash signed when using the https://ethereum.org/en/developers/docs/apis/json-rpc/#eth_sign[`eth_sign`] JSON-RPC method.\\n     *\\n     * NOTE: The `messageHash` parameter is intended to be the result of hashing a raw message with\\n     * keccak256, although any bytes32 value can be safely used because the final digest will\\n     * be re-hashed.\\n     *\\n     * See {ECDSA-recover}.\\n     */\\n    function toEthSignedMessageHash(bytes32 messageHash) internal pure returns (bytes32 digest) {\\n        assembly (\\\"memory-safe\\\") {\\n            mstore(0x00, \\\"\\\\x19Ethereum Signed Message:\\\\n32\\\") // 32 is the bytes-length of messageHash\\n            mstore(0x1c, messageHash) // 0x1c (28) is the length of the prefix\\n            digest := keccak256(0x00, 0x3c) // 0x3c is the length of the prefix (0x1c) + messageHash (0x20)\\n        }\\n    }\\n\\n    /**\\n     * @dev Returns the keccak256 digest of an ERC-191 signed data with version\\n     * `0x45` (`personal_sign` messages).\\n     *\\n     * The digest is calculated by prefixing an arbitrary `message` with\\n     * `\\\"\\\\x19Ethereum Signed Message:\\\\n\\\" + len(message)` and hashing the result. It corresponds with the\\n     * hash signed when using the https://ethereum.org/en/developers/docs/apis/json-rpc/#eth_sign[`eth_sign`] JSON-RPC method.\\n     *\\n     * See {ECDSA-recover}.\\n     */\\n    function toEthSignedMessageHash(bytes memory message) internal pure returns (bytes32) {\\n        return\\n            keccak256(bytes.concat(\\\"\\\\x19Ethereum Signed Message:\\\\n\\\", bytes(Strings.toString(message.length)), message));\\n    }\\n\\n    /**\\n     * @dev Returns the keccak256 digest of an ERC-191 signed data with version\\n     * `0x00` (data with intended validator).\\n     *\\n     * The digest is calculated by prefixing an arbitrary `data` with `\\\"\\\\x19\\\\x00\\\"` and the intended\\n     * `validator` address. Then hashing the result.\\n     *\\n     * See {ECDSA-recover}.\\n     */\\n    function toDataWithIntendedValidatorHash(address validator, bytes memory data) internal pure returns (bytes32) {\\n        return keccak256(abi.encodePacked(hex\\\"19_00\\\", validator, data));\\n    }\\n\\n    /**\\n     * @dev Variant of {toDataWithIntendedValidatorHash-address-bytes} optimized for cases where `data` is a bytes32.\\n     */\\n    function toDataWithIntendedValidatorHash(\\n        address validator,\\n        bytes32 messageHash\\n    ) internal pure returns (bytes32 digest) {\\n        assembly (\\\"memory-safe\\\") {\\n            mstore(0x00, hex\\\"19_00\\\")\\n            mstore(0x02, shl(96, validator))\\n            mstore(0x16, messageHash)\\n            digest := keccak256(0x00, 0x36)\\n        }\\n    }\\n\\n    /**\\n     * @dev Returns the keccak256 digest of an EIP-712 typed data (ERC-191 version `0x01`).\\n     *\\n     * The digest is calculated from a `domainSeparator` and a `structHash`, by prefixing them with\\n     * `\\\\x19\\\\x01` and hashing the result. It corresponds to the hash signed by the\\n     * https://eips.ethereum.org/EIPS/eip-712[`eth_signTypedData`] JSON-RPC method as part of EIP-712.\\n     *\\n     * See {ECDSA-recover}.\\n     */\\n    function toTypedDataHash(bytes32 domainSeparator, bytes32 structHash) internal pure returns (bytes32 digest) {\\n        assembly (\\\"memory-safe\\\") {\\n            let ptr := mload(0x40)\\n            mstore(ptr, hex\\\"19_01\\\")\\n            mstore(add(ptr, 0x02), domainSeparator)\\n            mstore(add(ptr, 0x22), structHash)\\n            digest := keccak256(ptr, 0x42)\\n        }\\n    }\\n}\\n\"},\"lib/openzeppelin-contracts/contracts/interfaces/IERC5267.sol\":{\"content\":\"// SPDX-License-Identifier: MIT\\n// OpenZeppelin Contracts (last updated v5.4.0) (interfaces/IERC5267.sol)\\n\\npragma solidity >=0.4.16;\\n\\ninterface IERC5267 {\\n    /**\\n     * @dev MAY be emitted to signal that the domain could have changed.\\n     */\\n    event EIP712DomainChanged();\\n\\n    /**\\n     * @dev returns the fields and values that describe the domain separator used by this contract for EIP-712\\n     * signature.\\n     */\\n    function eip712Domain()\\n        external\\n        view\\n        returns (\\n            bytes1 fields,\\n            string memory name,\\n            string memory version,\\n            uint256 chainId,\\n            address verifyingContract,\\n            bytes32 salt,\\n            uint256[] memory extensions\\n        );\\n}\\n\"},\"lib/openzeppelin-contracts/contracts/utils/introspection/IERC165.sol\":{\"content\":\"// SPDX-License-Identifier: MIT\\n// OpenZeppelin Contracts (last updated v5.4.0) (utils/introspection/IERC165.sol)\\n\\npragma solidity >=0.4.16;\\n\\n/**\\n * @dev Interface of the ERC-165 standard, as defined in the\\n * https://eips.ethereum.org/EIPS/eip-165[ERC].\\n *\\n * Implementers can declare support of contract interfaces, which can then be\\n * queried by others ({ERC165Checker}).\\n *\\n * For an implementation, see {ERC165}.\\n */\\ninterface IERC165 {\\n    /**\\n     * @dev Returns true if this contract implements the interface defined by\\n     * `interfaceId`. See the corresponding\\n     * https://eips.ethereum.org/EIPS/eip-165#how-interfaces-are-identified[ERC section]\\n     * to learn more about how these ids are created.\\n     *\\n     * This function call must use less than 30 000 gas.\\n     */\\n    function supportsInterface(bytes4 interfaceId) external view returns (bool);\\n}\\n\"},\"lib/devtools/packages/oapp-evm-upgradeable/contracts/oapp/OAppSenderUpgradeable.sol\":{\"content\":\"// SPDX-License-Identifier: MIT\\n\\npragma solidity ^0.8.20;\\n\\nimport { SafeERC20, IERC20 } from \\\"@openzeppelin/contracts/token/ERC20/utils/SafeERC20.sol\\\";\\nimport { MessagingParams, MessagingFee, MessagingReceipt } from \\\"@layerzerolabs/lz-evm-protocol-v2/contracts/interfaces/ILayerZeroEndpointV2.sol\\\";\\nimport { OAppCoreUpgradeable } from \\\"./OAppCoreUpgradeable.sol\\\";\\n\\n/**\\n * @title OAppSender\\n * @dev Abstract contract implementing the OAppSender functionality for sending messages to a LayerZero endpoint.\\n */\\nabstract contract OAppSenderUpgradeable is OAppCoreUpgradeable {\\n    using SafeERC20 for IERC20;\\n\\n    // Custom error messages\\n    error NotEnoughNative(uint256 msgValue);\\n    error LzTokenUnavailable();\\n\\n    // @dev The version of the OAppSender implementation.\\n    // @dev Version is bumped when changes are made to this contract.\\n    uint64 internal constant SENDER_VERSION = 1;\\n\\n    /**\\n     * @param _delegate The delegate capable of making OApp configurations inside of the endpoint.\\n     * @dev Ownable is not initialized here on purpose. It should be initialized in the child contract to\\n     * accommodate the different version of Ownable.\\n     */\\n    function __OAppSender_init(address _delegate) internal onlyInitializing {\\n        __OAppCore_init(_delegate);\\n    }\\n\\n    function __OAppSender_init_unchained() internal onlyInitializing {}\\n\\n    /**\\n     * @notice Retrieves the OApp version information.\\n     * @return senderVersion The version of the OAppSender.sol contract.\\n     * @return receiverVersion The version of the OAppReceiver.sol contract.\\n     *\\n     * @dev Providing 0 as the default for OAppReceiver version. Indicates that the OAppReceiver is not implemented.\\n     * ie. this is a SEND only OApp.\\n     * @dev If the OApp uses both OAppSender and OAppReceiver, then this needs to be override returning the correct versions\\n     */\\n    function oAppVersion() public view virtual returns (uint64 senderVersion, uint64 receiverVersion) {\\n        return (SENDER_VERSION, 0);\\n    }\\n\\n    /**\\n     * @dev Internal function to interact with the LayerZero EndpointV2.quote() for fee calculation.\\n     * @param _dstEid The destination endpoint ID.\\n     * @param _message The message payload.\\n     * @param _options Additional options for the message.\\n     * @param _payInLzToken Flag indicating whether to pay the fee in LZ tokens.\\n     * @return fee The calculated MessagingFee for the message.\\n     *      - nativeFee: The native fee for the message.\\n     *      - lzTokenFee: The LZ token fee for the message.\\n     */\\n    function _quote(\\n        uint32 _dstEid,\\n        bytes memory _message,\\n        bytes memory _options,\\n        bool _payInLzToken\\n    ) internal view virtual returns (MessagingFee memory fee) {\\n        return\\n            endpoint.quote(\\n                MessagingParams(_dstEid, _getPeerOrRevert(_dstEid), _message, _options, _payInLzToken),\\n                address(this)\\n            );\\n    }\\n\\n    /**\\n     * @dev Internal function to interact with the LayerZero EndpointV2.send() for sending a message.\\n     * @param _dstEid The destination endpoint ID.\\n     * @param _message The message payload.\\n     * @param _options Additional options for the message.\\n     * @param _fee The calculated LayerZero fee for the message.\\n     *      - nativeFee: The native fee.\\n     *      - lzTokenFee: The lzToken fee.\\n     * @param _refundAddress The address to receive any excess fee values sent to the endpoint.\\n     * @return receipt The receipt for the sent message.\\n     *      - guid: The unique identifier for the sent message.\\n     *      - nonce: The nonce of the sent message.\\n     *      - fee: The LayerZero fee incurred for the message.\\n     */\\n    function _lzSend(\\n        uint32 _dstEid,\\n        bytes memory _message,\\n        bytes memory _options,\\n        MessagingFee memory _fee,\\n        address _refundAddress\\n    ) internal virtual returns (MessagingReceipt memory receipt) {\\n        // @dev Push corresponding fees to the endpoint, any excess is sent back to the _refundAddress from the endpoint.\\n        uint256 messageValue = _payNative(_fee.nativeFee);\\n        if (_fee.lzTokenFee > 0) _payLzToken(_fee.lzTokenFee);\\n\\n        return\\n            // solhint-disable-next-line check-send-result\\n            endpoint.send{ value: messageValue }(\\n                MessagingParams(_dstEid, _getPeerOrRevert(_dstEid), _message, _options, _fee.lzTokenFee > 0),\\n                _refundAddress\\n            );\\n    }\\n\\n    /**\\n     * @dev Internal function to pay the native fee associated with the message.\\n     * @param _nativeFee The native fee to be paid.\\n     * @return nativeFee The amount of native currency paid.\\n     *\\n     * @dev If the OApp needs to initiate MULTIPLE LayerZero messages in a single transaction,\\n     * this will need to be overridden because msg.value would contain multiple lzFees.\\n     * @dev Should be overridden in the event the LayerZero endpoint requires a different native currency.\\n     * @dev Some EVMs use an ERC20 as a method for paying transactions/gasFees.\\n     * @dev The endpoint is EITHER/OR, ie. it will NOT support both types of native payment at a time.\\n     */\\n    function _payNative(uint256 _nativeFee) internal virtual returns (uint256 nativeFee) {\\n        if (msg.value != _nativeFee) revert NotEnoughNative(msg.value);\\n        return _nativeFee;\\n    }\\n\\n    /**\\n     * @dev Internal function to pay the LZ token fee associated with the message.\\n     * @param _lzTokenFee The LZ token fee to be paid.\\n     *\\n     * @dev If the caller is trying to pay in the specified lzToken, then the lzTokenFee is passed to the endpoint.\\n     * @dev Any excess sent, is passed back to the specified _refundAddress in the _lzSend().\\n     */\\n    function _payLzToken(uint256 _lzTokenFee) internal virtual {\\n        // @dev Cannot cache the token because it is not immutable in the endpoint.\\n        address lzToken = endpoint.lzToken();\\n        if (lzToken == address(0)) revert LzTokenUnavailable();\\n\\n        // Pay LZ token fee by sending tokens to the endpoint.\\n        IERC20(lzToken).safeTransferFrom(msg.sender, address(endpoint), _lzTokenFee);\\n    }\\n}\\n\"},\"lib/devtools/packages/oapp-evm-upgradeable/contracts/oapp/OAppReceiverUpgradeable.sol\":{\"content\":\"// SPDX-License-Identifier: MIT\\n\\npragma solidity ^0.8.20;\\n\\nimport { IOAppReceiver, Origin } from \\\"@layerzerolabs/oapp-evm/contracts/oapp/interfaces/IOAppReceiver.sol\\\";\\nimport { OAppCoreUpgradeable } from \\\"./OAppCoreUpgradeable.sol\\\";\\n\\n/**\\n * @title OAppReceiver\\n * @dev Abstract contract implementing the ILayerZeroReceiver interface and extending OAppCore for OApp receivers.\\n */\\nabstract contract OAppReceiverUpgradeable is IOAppReceiver, OAppCoreUpgradeable {\\n    // Custom error message for when the caller is not the registered endpoint/\\n    error OnlyEndpoint(address addr);\\n\\n    // @dev The version of the OAppReceiver implementation.\\n    // @dev Version is bumped when changes are made to this contract.\\n    uint64 internal constant RECEIVER_VERSION = 2;\\n\\n    /**\\n     * @param _delegate The delegate capable of making OApp configurations inside of the endpoint.\\n     * @dev Ownable is not initialized here on purpose. It should be initialized in the child contract to\\n     * accommodate the different version of Ownable.\\n     */\\n    function __OAppReceiver_init(address _delegate) internal onlyInitializing {\\n        __OAppCore_init(_delegate);\\n    }\\n\\n    function __OAppReceiver_init_unchained() internal onlyInitializing {}\\n\\n    /**\\n     * @notice Retrieves the OApp version information.\\n     * @return senderVersion The version of the OAppSender.sol contract.\\n     * @return receiverVersion The version of the OAppReceiver.sol contract.\\n     *\\n     * @dev Providing 0 as the default for OAppSender version. Indicates that the OAppSender is not implemented.\\n     * ie. this is a RECEIVE only OApp.\\n     * @dev If the OApp uses both OAppSender and OAppReceiver, then this needs to be override returning the correct versions.\\n     */\\n    function oAppVersion() public view virtual returns (uint64 senderVersion, uint64 receiverVersion) {\\n        return (0, RECEIVER_VERSION);\\n    }\\n\\n    /**\\n     * @notice Indicates whether an address is an approved composeMsg sender to the Endpoint.\\n     * @dev _origin The origin information containing the source endpoint and sender address.\\n     *  - srcEid: The source chain endpoint ID.\\n     *  - sender: The sender address on the src chain.\\n     *  - nonce: The nonce of the message.\\n     * @dev _message The lzReceive payload.\\n     * @param _sender The sender address.\\n     * @return isSender Is a valid sender.\\n     *\\n     * @dev Applications can optionally choose to implement separate composeMsg senders that are NOT the bridging layer.\\n     * @dev The default sender IS the OAppReceiver implementer.\\n     */\\n    function isComposeMsgSender(\\n        Origin calldata /*_origin*/,\\n        bytes calldata /*_message*/,\\n        address _sender\\n    ) public view virtual returns (bool) {\\n        return _sender == address(this);\\n    }\\n\\n    /**\\n     * @notice Checks if the path initialization is allowed based on the provided origin.\\n     * @param origin The origin information containing the source endpoint and sender address.\\n     * @return Whether the path has been initialized.\\n     *\\n     * @dev This indicates to the endpoint that the OApp has enabled msgs for this particular path to be received.\\n     * @dev This defaults to assuming if a peer has been set, its initialized.\\n     * Can be overridden by the OApp if there is other logic to determine this.\\n     */\\n    function allowInitializePath(Origin calldata origin) public view virtual returns (bool) {\\n        return peers(origin.srcEid) == origin.sender;\\n    }\\n\\n    /**\\n     * @notice Retrieves the next nonce for a given source endpoint and sender address.\\n     * @dev _srcEid The source endpoint ID.\\n     * @dev _sender The sender address.\\n     * @return nonce The next nonce.\\n     *\\n     * @dev The path nonce starts from 1. If 0 is returned it means that there is NO nonce ordered enforcement.\\n     * @dev Is required by the off-chain executor to determine the OApp expects msg execution is ordered.\\n     * @dev This is also enforced by the OApp.\\n     * @dev By default this is NOT enabled. ie. nextNonce is hardcoded to return 0.\\n     */\\n    function nextNonce(uint32, /*_srcEid*/ bytes32 /*_sender*/) public view virtual returns (uint64 nonce) {\\n        return 0;\\n    }\\n\\n    /**\\n     * @dev Entry point for receiving messages or packets from the endpoint.\\n     * @param _origin The origin information containing the source endpoint and sender address.\\n     *  - srcEid: The source chain endpoint ID.\\n     *  - sender: The sender address on the src chain.\\n     *  - nonce: The nonce of the message.\\n     * @param _guid The unique identifier for the received LayerZero message.\\n     * @param _message The payload of the received message.\\n     * @param _executor The address of the executor for the received message.\\n     * @param _extraData Additional arbitrary data provided by the corresponding executor.\\n     *\\n     * @dev Entry point for receiving msg/packet from the LayerZero endpoint.\\n     */\\n    function lzReceive(\\n        Origin calldata _origin,\\n        bytes32 _guid,\\n        bytes calldata _message,\\n        address _executor,\\n        bytes calldata _extraData\\n    ) public payable virtual {\\n        // Ensures that only the endpoint can attempt to lzReceive() messages to this OApp.\\n        if (address(endpoint) != msg.sender) revert OnlyEndpoint(msg.sender);\\n\\n        // Ensure that the sender matches the expected peer for the source endpoint.\\n        if (_getPeerOrRevert(_origin.srcEid) != _origin.sender) revert OnlyPeer(_origin.srcEid, _origin.sender);\\n\\n        // Call the internal OApp implementation of lzReceive.\\n        _lzReceive(_origin, _guid, _message, _executor, _extraData);\\n    }\\n\\n    /**\\n     * @dev Internal function to implement lzReceive logic without needing to copy the basic parameter validation.\\n     */\\n    function _lzReceive(\\n        Origin calldata _origin,\\n        bytes32 _guid,\\n        bytes calldata _message,\\n        address _executor,\\n        bytes calldata _extraData\\n    ) internal virtual;\\n}\\n\"},\"lib/devtools/packages/oapp-evm-upgradeable/contracts/oapp/OAppCoreUpgradeable.sol\":{\"content\":\"// SPDX-License-Identifier: MIT\\n\\npragma solidity ^0.8.20;\\n\\nimport { OwnableUpgradeable } from \\\"@openzeppelin/contracts-upgradeable/access/OwnableUpgradeable.sol\\\";\\nimport { IOAppCore, ILayerZeroEndpointV2 } from \\\"@layerzerolabs/oapp-evm/contracts/oapp/interfaces/IOAppCore.sol\\\";\\n\\n/**\\n * @title OAppCore\\n * @dev Abstract contract implementing the IOAppCore interface with basic OApp configurations.\\n */\\nabstract contract OAppCoreUpgradeable is IOAppCore, OwnableUpgradeable {\\n    struct OAppCoreStorage {\\n        mapping(uint32 => bytes32) peers;\\n    }\\n\\n    // keccak256(abi.encode(uint256(keccak256(\\\"layerzerov2.storage.oappcore\\\")) - 1)) & ~bytes32(uint256(0xff))\\n    bytes32 private constant OAPP_CORE_STORAGE_LOCATION =\\n        0x72ab1bc1039b79dc4724ffca13de82c96834302d3c7e0d4252232d4b2dd8f900;\\n\\n    function _getOAppCoreStorage() internal pure returns (OAppCoreStorage storage $) {\\n        assembly {\\n            $.slot := OAPP_CORE_STORAGE_LOCATION\\n        }\\n    }\\n\\n    // The LayerZero endpoint associated with the given OApp\\n    ILayerZeroEndpointV2 public immutable endpoint;\\n\\n    /**\\n     * @dev Constructor to initialize the OAppCore with the provided endpoint and delegate.\\n     * @param _endpoint The address of the LOCAL Layer Zero endpoint.\\n     */\\n    constructor(address _endpoint) {\\n        endpoint = ILayerZeroEndpointV2(_endpoint);\\n    }\\n\\n    /**\\n     * @dev Initializes the OAppCore with the provided delegate.\\n     * @param _delegate The delegate capable of making OApp configurations inside of the endpoint.\\n     *\\n     * @dev The delegate typically should be set as the owner of the contract.\\n     * @dev Ownable is not initialized here on purpose. It should be initialized in the child contract to\\n     * accommodate the different version of Ownable.\\n     */\\n    function __OAppCore_init(address _delegate) internal onlyInitializing {\\n        __OAppCore_init_unchained(_delegate);\\n    }\\n\\n    function __OAppCore_init_unchained(address _delegate) internal onlyInitializing {\\n        if (_delegate == address(0)) revert InvalidDelegate();\\n        endpoint.setDelegate(_delegate);\\n    }\\n\\n    /**\\n     * @notice Returns the peer address (OApp instance) associated with a specific endpoint.\\n     * @param _eid The endpoint ID.\\n     * @return peer The address of the peer associated with the specified endpoint.\\n     */\\n    function peers(uint32 _eid) public view override returns (bytes32) {\\n        OAppCoreStorage storage $ = _getOAppCoreStorage();\\n        return $.peers[_eid];\\n    }\\n\\n    /**\\n     * @notice Sets the peer address (OApp instance) for a corresponding endpoint.\\n     * @param _eid The endpoint ID.\\n     * @param _peer The address of the peer to be associated with the corresponding endpoint.\\n     *\\n     * @dev Only the owner/admin of the OApp can call this function.\\n     * @dev Indicates that the peer is trusted to send LayerZero messages to this OApp.\\n     * @dev Set this to bytes32(0) to remove the peer address.\\n     * @dev Peer is a bytes32 to accommodate non-evm chains.\\n     */\\n    function setPeer(uint32 _eid, bytes32 _peer) public virtual onlyOwner {\\n        OAppCoreStorage storage $ = _getOAppCoreStorage();\\n        $.peers[_eid] = _peer;\\n        emit PeerSet(_eid, _peer);\\n    }\\n\\n    /**\\n     * @notice Internal function to get the peer address associated with a specific endpoint; reverts if NOT set.\\n     * ie. the peer is set to bytes32(0).\\n     * @param _eid The endpoint ID.\\n     * @return peer The address of the peer associated with the specified endpoint.\\n     */\\n    function _getPeerOrRevert(uint32 _eid) internal view virtual returns (bytes32) {\\n        OAppCoreStorage storage $ = _getOAppCoreStorage();\\n        bytes32 peer = $.peers[_eid];\\n        if (peer == bytes32(0)) revert NoPeer(_eid);\\n        return peer;\\n    }\\n\\n    /**\\n     * @notice Sets the delegate address for the OApp.\\n     * @param _delegate The address of the delegate to be set.\\n     *\\n     * @dev Only the owner/admin of the OApp can call this function.\\n     * @dev Provides the ability for a delegate to set configs, on behalf of the OApp, directly on the Endpoint contract.\\n     */\\n    function setDelegate(address _delegate) public onlyOwner {\\n        endpoint.setDelegate(_delegate);\\n    }\\n}\\n\"},\"lib/openzeppelin-contracts-upgradeable/contracts/access/OwnableUpgradeable.sol\":{\"content\":\"// SPDX-License-Identifier: MIT\\n// OpenZeppelin Contracts (last updated v5.0.0) (access/Ownable.sol)\\n\\npragma solidity ^0.8.20;\\n\\nimport {ContextUpgradeable} from \\\"../utils/ContextUpgradeable.sol\\\";\\nimport {Initializable} from \\\"../proxy/utils/Initializable.sol\\\";\\n\\n/**\\n * @dev Contract module which provides a basic access control mechanism, where\\n * there is an account (an owner) that can be granted exclusive access to\\n * specific functions.\\n *\\n * The initial owner is set to the address provided by the deployer. This can\\n * later be changed with {transferOwnership}.\\n *\\n * This module is used through inheritance. It will make available the modifier\\n * `onlyOwner`, which can be applied to your functions to restrict their use to\\n * the owner.\\n */\\nabstract contract OwnableUpgradeable is Initializable, ContextUpgradeable {\\n    /// @custom:storage-location erc7201:openzeppelin.storage.Ownable\\n    struct OwnableStorage {\\n        address _owner;\\n    }\\n\\n    // keccak256(abi.encode(uint256(keccak256(\\\"openzeppelin.storage.Ownable\\\")) - 1)) & ~bytes32(uint256(0xff))\\n    bytes32 private constant OwnableStorageLocation = 0x9016d09d72d40fdae2fd8ceac6b6234c7706214fd39c1cd1e609a0528c199300;\\n\\n    function _getOwnableStorage() private pure returns (OwnableStorage storage $) {\\n        assembly {\\n            $.slot := OwnableStorageLocation\\n        }\\n    }\\n\\n    /**\\n     * @dev The caller account is not authorized to perform an operation.\\n     */\\n    error OwnableUnauthorizedAccount(address account);\\n\\n    /**\\n     * @dev The owner is not a valid owner account. (eg. `address(0)`)\\n     */\\n    error OwnableInvalidOwner(address owner);\\n\\n    event OwnershipTransferred(address indexed previousOwner, address indexed newOwner);\\n\\n    /**\\n     * @dev Initializes the contract setting the address provided by the deployer as the initial owner.\\n     */\\n    function __Ownable_init(address initialOwner) internal onlyInitializing {\\n        __Ownable_init_unchained(initialOwner);\\n    }\\n\\n    function __Ownable_init_unchained(address initialOwner) internal onlyInitializing {\\n        if (initialOwner == address(0)) {\\n            revert OwnableInvalidOwner(address(0));\\n        }\\n        _transferOwnership(initialOwner);\\n    }\\n\\n    /**\\n     * @dev Throws if called by any account other than the owner.\\n     */\\n    modifier onlyOwner() {\\n        _checkOwner();\\n        _;\\n    }\\n\\n    /**\\n     * @dev Returns the address of the current owner.\\n     */\\n    function owner() public view virtual returns (address) {\\n        OwnableStorage storage $ = _getOwnableStorage();\\n        return $._owner;\\n    }\\n\\n    /**\\n     * @dev Throws if the sender is not the owner.\\n     */\\n    function _checkOwner() internal view virtual {\\n        if (owner() != _msgSender()) {\\n            revert OwnableUnauthorizedAccount(_msgSender());\\n        }\\n    }\\n\\n    /**\\n     * @dev Leaves the contract without owner. It will not be possible to call\\n     * `onlyOwner` functions. Can only be called by the current owner.\\n     *\\n     * NOTE: Renouncing ownership will leave the contract without an owner,\\n     * thereby disabling any functionality that is only available to the owner.\\n     */\\n    function renounceOwnership() public virtual onlyOwner {\\n        _transferOwnership(address(0));\\n    }\\n\\n    /**\\n     * @dev Transfers ownership of the contract to a new account (`newOwner`).\\n     * Can only be called by the current owner.\\n     */\\n    function transferOwnership(address newOwner) public virtual onlyOwner {\\n        if (newOwner == address(0)) {\\n            revert OwnableInvalidOwner(address(0));\\n        }\\n        _transferOwnership(newOwner);\\n    }\\n\\n    /**\\n     * @dev Transfers ownership of the contract to a new account (`newOwner`).\\n     * Internal function without access restriction.\\n     */\\n    function _transferOwnership(address newOwner) internal virtual {\\n        OwnableStorage storage $ = _getOwnableStorage();\\n        address oldOwner = $._owner;\\n        $._owner = newOwner;\\n        emit OwnershipTransferred(oldOwner, newOwner);\\n    }\\n}\\n\"},\"lib/devtools/packages/oapp-evm/contracts/oapp/interfaces/IOAppOptionsType3.sol\":{\"content\":\"// SPDX-License-Identifier: MIT\\n\\npragma solidity ^0.8.20;\\n\\n/**\\n * @dev Struct representing enforced option parameters.\\n */\\nstruct EnforcedOptionParam {\\n    uint32 eid; // Endpoint ID\\n    uint16 msgType; // Message Type\\n    bytes options; // Additional options\\n}\\n\\n/**\\n * @title IOAppOptionsType3\\n * @dev Interface for the OApp with Type 3 Options, allowing the setting and combining of enforced options.\\n */\\ninterface IOAppOptionsType3 {\\n    // Custom error message for invalid options\\n    error InvalidOptions(bytes options);\\n\\n    // Event emitted when enforced options are set\\n    event EnforcedOptionSet(EnforcedOptionParam[] _enforcedOptions);\\n\\n    /**\\n     * @notice Sets enforced options for specific endpoint and message type combinations.\\n     * @param _enforcedOptions An array of EnforcedOptionParam structures specifying enforced options.\\n     */\\n    function setEnforcedOptions(EnforcedOptionParam[] calldata _enforcedOptions) external;\\n\\n    /**\\n     * @notice Combines options for a given endpoint and message type.\\n     * @param _eid The endpoint ID.\\n     * @param _msgType The OApp message type.\\n     * @param _extraOptions Additional options passed by the caller.\\n     * @return options The combination of caller specified options AND enforced options.\\n     */\\n    function combineOptions(\\n        uint32 _eid,\\n        uint16 _msgType,\\n        bytes calldata _extraOptions\\n    ) external view returns (bytes memory options);\\n}\\n\"},\"lib/devtools/packages/oapp-evm/contracts/precrime/interfaces/IPreCrime.sol\":{\"content\":\"// SPDX-License-Identifier: MIT\\n\\npragma solidity ^0.8.20;\\nstruct PreCrimePeer {\\n    uint32 eid;\\n    bytes32 preCrime;\\n    bytes32 oApp;\\n}\\n\\n// TODO not done yet\\ninterface IPreCrime {\\n    error OnlyOffChain();\\n\\n    // for simulate()\\n    error PacketOversize(uint256 max, uint256 actual);\\n    error PacketUnsorted();\\n    error SimulationFailed(bytes reason);\\n\\n    // for preCrime()\\n    error SimulationResultNotFound(uint32 eid);\\n    error InvalidSimulationResult(uint32 eid, bytes reason);\\n    error CrimeFound(bytes crime);\\n\\n    function getConfig(bytes[] calldata _packets, uint256[] calldata _packetMsgValues) external returns (bytes memory);\\n\\n    function simulate(\\n        bytes[] calldata _packets,\\n        uint256[] calldata _packetMsgValues\\n    ) external payable returns (bytes memory);\\n\\n    function buildSimulationResult() external view returns (bytes memory);\\n\\n    function preCrime(\\n        bytes[] calldata _packets,\\n        uint256[] calldata _packetMsgValues,\\n        bytes[] calldata _simulations\\n    ) external;\\n\\n    function version() external view returns (uint64 major, uint8 minor);\\n}\\n\"},\"lib/devtools/packages/oapp-evm/contracts/precrime/interfaces/IOAppPreCrimeSimulator.sol\":{\"content\":\"// SPDX-License-Identifier: MIT\\n\\npragma solidity ^0.8.20;\\n\\n// @dev Import the Origin so it's exposed to OAppPreCrimeSimulator implementers.\\n// solhint-disable-next-line no-unused-import\\nimport { InboundPacket, Origin } from \\\"../libs/Packet.sol\\\";\\n\\n/**\\n * @title IOAppPreCrimeSimulator Interface\\n * @dev Interface for the preCrime simulation functionality in an OApp.\\n */\\ninterface IOAppPreCrimeSimulator {\\n    // @dev simulation result used in PreCrime implementation\\n    error SimulationResult(bytes result);\\n    error OnlySelf();\\n\\n    /**\\n     * @dev Emitted when the preCrime contract address is set.\\n     * @param preCrimeAddress The address of the preCrime contract.\\n     */\\n    event PreCrimeSet(address preCrimeAddress);\\n\\n    /**\\n     * @dev Retrieves the address of the preCrime contract implementation.\\n     * @return The address of the preCrime contract.\\n     */\\n    function preCrime() external view returns (address);\\n\\n    /**\\n     * @dev Retrieves the address of the OApp contract.\\n     * @return The address of the OApp contract.\\n     */\\n    function oApp() external view returns (address);\\n\\n    /**\\n     * @dev Sets the preCrime contract address.\\n     * @param _preCrime The address of the preCrime contract.\\n     */\\n    function setPreCrime(address _preCrime) external;\\n\\n    /**\\n     * @dev Mocks receiving a packet, then reverts with a series of data to infer the state/result.\\n     * @param _packets An array of LayerZero InboundPacket objects representing received packets.\\n     */\\n    function lzReceiveAndRevert(InboundPacket[] calldata _packets) external payable;\\n\\n    /**\\n     * @dev checks if the specified peer is considered 'trusted' by the OApp.\\n     * @param _eid The endpoint Id to check.\\n     * @param _peer The peer to check.\\n     * @return Whether the peer passed is considered 'trusted' by the OApp.\\n     */\\n    function isPeer(uint32 _eid, bytes32 _peer) external view returns (bool);\\n}\\n\"},\"lib/openzeppelin-contracts/contracts/interfaces/IERC1363.sol\":{\"content\":\"// SPDX-License-Identifier: MIT\\n// OpenZeppelin Contracts (last updated v5.4.0) (interfaces/IERC1363.sol)\\n\\npragma solidity >=0.6.2;\\n\\nimport {IERC20} from \\\"./IERC20.sol\\\";\\nimport {IERC165} from \\\"./IERC165.sol\\\";\\n\\n/**\\n * @title IERC1363\\n * @dev Interface of the ERC-1363 standard as defined in the https://eips.ethereum.org/EIPS/eip-1363[ERC-1363].\\n *\\n * Defines an extension interface for ERC-20 tokens that supports executing code on a recipient contract\\n * after `transfer` or `transferFrom`, or code on a spender contract after `approve`, in a single transaction.\\n */\\ninterface IERC1363 is IERC20, IERC165 {\\n    /*\\n     * Note: the ERC-165 identifier for this interface is 0xb0202a11.\\n     * 0xb0202a11 ===\\n     *   bytes4(keccak256('transferAndCall(address,uint256)')) ^\\n     *   bytes4(keccak256('transferAndCall(address,uint256,bytes)')) ^\\n     *   bytes4(keccak256('transferFromAndCall(address,address,uint256)')) ^\\n     *   bytes4(keccak256('transferFromAndCall(address,address,uint256,bytes)')) ^\\n     *   bytes4(keccak256('approveAndCall(address,uint256)')) ^\\n     *   bytes4(keccak256('approveAndCall(address,uint256,bytes)'))\\n     */\\n\\n    /**\\n     * @dev Moves a `value` amount of tokens from the caller's account to `to`\\n     * and then calls {IERC1363Receiver-onTransferReceived} on `to`.\\n     * @param to The address which you want to transfer to.\\n     * @param value The amount of tokens to be transferred.\\n     * @return A boolean value indicating whether the operation succeeded unless throwing.\\n     */\\n    function transferAndCall(address to, uint256 value) external returns (bool);\\n\\n    /**\\n     * @dev Moves a `value` amount of tokens from the caller's account to `to`\\n     * and then calls {IERC1363Receiver-onTransferReceived} on `to`.\\n     * @param to The address which you want to transfer to.\\n     * @param value The amount of tokens to be transferred.\\n     * @param data Additional data with no specified format, sent in call to `to`.\\n     * @return A boolean value indicating whether the operation succeeded unless throwing.\\n     */\\n    function transferAndCall(address to, uint256 value, bytes calldata data) external returns (bool);\\n\\n    /**\\n     * @dev Moves a `value` amount of tokens from `from` to `to` using the allowance mechanism\\n     * and then calls {IERC1363Receiver-onTransferReceived} on `to`.\\n     * @param from The address which you want to send tokens from.\\n     * @param to The address which you want to transfer to.\\n     * @param value The amount of tokens to be transferred.\\n     * @return A boolean value indicating whether the operation succeeded unless throwing.\\n     */\\n    function transferFromAndCall(address from, address to, uint256 value) external returns (bool);\\n\\n    /**\\n     * @dev Moves a `value` amount of tokens from `from` to `to` using the allowance mechanism\\n     * and then calls {IERC1363Receiver-onTransferReceived} on `to`.\\n     * @param from The address which you want to send tokens from.\\n     * @param to The address which you want to transfer to.\\n     * @param value The amount of tokens to be transferred.\\n     * @param data Additional data with no specified format, sent in call to `to`.\\n     * @return A boolean value indicating whether the operation succeeded unless throwing.\\n     */\\n    function transferFromAndCall(address from, address to, uint256 value, bytes calldata data) external returns (bool);\\n\\n    /**\\n     * @dev Sets a `value` amount of tokens as the allowance of `spender` over the\\n     * caller's tokens and then calls {IERC1363Spender-onApprovalReceived} on `spender`.\\n     * @param spender The address which will spend the funds.\\n     * @param value The amount of tokens to be spent.\\n     * @return A boolean value indicating whether the operation succeeded unless throwing.\\n     */\\n    function approveAndCall(address spender, uint256 value) external returns (bool);\\n\\n    /**\\n     * @dev Sets a `value` amount of tokens as the allowance of `spender` over the\\n     * caller's tokens and then calls {IERC1363Spender-onApprovalReceived} on `spender`.\\n     * @param spender The address which will spend the funds.\\n     * @param value The amount of tokens to be spent.\\n     * @param data Additional data with no specified format, sent in call to `spender`.\\n     * @return A boolean value indicating whether the operation succeeded unless throwing.\\n     */\\n    function approveAndCall(address spender, uint256 value, bytes calldata data) external returns (bool);\\n}\\n\"},\"lib/layerzero-v2/packages/layerzero-v2/evm/protocol/contracts/interfaces/IMessageLibManager.sol\":{\"content\":\"// SPDX-License-Identifier: MIT\\n\\npragma solidity >=0.8.0;\\n\\nstruct SetConfigParam {\\n    uint32 eid;\\n    uint32 configType;\\n    bytes config;\\n}\\n\\ninterface IMessageLibManager {\\n    struct Timeout {\\n        address lib;\\n        uint256 expiry;\\n    }\\n\\n    event LibraryRegistered(address newLib);\\n    event DefaultSendLibrarySet(uint32 eid, address newLib);\\n    event DefaultReceiveLibrarySet(uint32 eid, address newLib);\\n    event DefaultReceiveLibraryTimeoutSet(uint32 eid, address oldLib, uint256 expiry);\\n    event SendLibrarySet(address sender, uint32 eid, address newLib);\\n    event ReceiveLibrarySet(address receiver, uint32 eid, address newLib);\\n    event ReceiveLibraryTimeoutSet(address receiver, uint32 eid, address oldLib, uint256 timeout);\\n\\n    function registerLibrary(address _lib) external;\\n\\n    function isRegisteredLibrary(address _lib) external view returns (bool);\\n\\n    function getRegisteredLibraries() external view returns (address[] memory);\\n\\n    function setDefaultSendLibrary(uint32 _eid, address _newLib) external;\\n\\n    function defaultSendLibrary(uint32 _eid) external view returns (address);\\n\\n    function setDefaultReceiveLibrary(uint32 _eid, address _newLib, uint256 _timeout) external;\\n\\n    function defaultReceiveLibrary(uint32 _eid) external view returns (address);\\n\\n    function setDefaultReceiveLibraryTimeout(uint32 _eid, address _lib, uint256 _expiry) external;\\n\\n    function defaultReceiveLibraryTimeout(uint32 _eid) external view returns (address lib, uint256 expiry);\\n\\n    function isSupportedEid(uint32 _eid) external view returns (bool);\\n\\n    function isValidReceiveLibrary(address _receiver, uint32 _eid, address _lib) external view returns (bool);\\n\\n    /// ------------------- OApp interfaces -------------------\\n    function setSendLibrary(address _oapp, uint32 _eid, address _newLib) external;\\n\\n    function getSendLibrary(address _sender, uint32 _eid) external view returns (address lib);\\n\\n    function isDefaultSendLibrary(address _sender, uint32 _eid) external view returns (bool);\\n\\n    function setReceiveLibrary(address _oapp, uint32 _eid, address _newLib, uint256 _gracePeriod) external;\\n\\n    function getReceiveLibrary(address _receiver, uint32 _eid) external view returns (address lib, bool isDefault);\\n\\n    function setReceiveLibraryTimeout(address _oapp, uint32 _eid, address _lib, uint256 _gracePeriod) external;\\n\\n    function receiveLibraryTimeout(address _receiver, uint32 _eid) external view returns (address lib, uint256 expiry);\\n\\n    function setConfig(address _oapp, address _lib, SetConfigParam[] calldata _params) external;\\n\\n    function getConfig(\\n        address _oapp,\\n        address _lib,\\n        uint32 _eid,\\n        uint32 _configType\\n    ) external view returns (bytes memory config);\\n}\\n\"},\"lib/layerzero-v2/packages/layerzero-v2/evm/protocol/contracts/interfaces/IMessagingComposer.sol\":{\"content\":\"// SPDX-License-Identifier: MIT\\n\\npragma solidity >=0.8.0;\\n\\ninterface IMessagingComposer {\\n    event ComposeSent(address from, address to, bytes32 guid, uint16 index, bytes message);\\n    event ComposeDelivered(address from, address to, bytes32 guid, uint16 index);\\n    event LzComposeAlert(\\n        address indexed from,\\n        address indexed to,\\n        address indexed executor,\\n        bytes32 guid,\\n        uint16 index,\\n        uint256 gas,\\n        uint256 value,\\n        bytes message,\\n        bytes extraData,\\n        bytes reason\\n    );\\n\\n    function composeQueue(\\n        address _from,\\n        address _to,\\n        bytes32 _guid,\\n        uint16 _index\\n    ) external view returns (bytes32 messageHash);\\n\\n    function sendCompose(address _to, bytes32 _guid, uint16 _index, bytes calldata _message) external;\\n\\n    function lzCompose(\\n        address _from,\\n        address _to,\\n        bytes32 _guid,\\n        uint16 _index,\\n        bytes calldata _message,\\n        bytes calldata _extraData\\n    ) external payable;\\n}\\n\"},\"lib/layerzero-v2/packages/layerzero-v2/evm/protocol/contracts/interfaces/IMessagingChannel.sol\":{\"content\":\"// SPDX-License-Identifier: MIT\\n\\npragma solidity >=0.8.0;\\n\\ninterface IMessagingChannel {\\n    event InboundNonceSkipped(uint32 srcEid, bytes32 sender, address receiver, uint64 nonce);\\n    event PacketNilified(uint32 srcEid, bytes32 sender, address receiver, uint64 nonce, bytes32 payloadHash);\\n    event PacketBurnt(uint32 srcEid, bytes32 sender, address receiver, uint64 nonce, bytes32 payloadHash);\\n\\n    function eid() external view returns (uint32);\\n\\n    // this is an emergency function if a message cannot be verified for some reasons\\n    // required to provide _nextNonce to avoid race condition\\n    function skip(address _oapp, uint32 _srcEid, bytes32 _sender, uint64 _nonce) external;\\n\\n    function nilify(address _oapp, uint32 _srcEid, bytes32 _sender, uint64 _nonce, bytes32 _payloadHash) external;\\n\\n    function burn(address _oapp, uint32 _srcEid, bytes32 _sender, uint64 _nonce, bytes32 _payloadHash) external;\\n\\n    function nextGuid(address _sender, uint32 _dstEid, bytes32 _receiver) external view returns (bytes32);\\n\\n    function inboundNonce(address _receiver, uint32 _srcEid, bytes32 _sender) external view returns (uint64);\\n\\n    function outboundNonce(address _sender, uint32 _dstEid, bytes32 _receiver) external view returns (uint64);\\n\\n    function inboundPayloadHash(\\n        address _receiver,\\n        uint32 _srcEid,\\n        bytes32 _sender,\\n        uint64 _nonce\\n    ) external view returns (bytes32);\\n\\n    function lazyInboundNonce(address _receiver, uint32 _srcEid, bytes32 _sender) external view returns (uint64);\\n}\\n\"},\"lib/layerzero-v2/packages/layerzero-v2/evm/protocol/contracts/interfaces/IMessagingContext.sol\":{\"content\":\"// SPDX-License-Identifier: MIT\\n\\npragma solidity >=0.8.0;\\n\\ninterface IMessagingContext {\\n    function isSendingMessage() external view returns (bool);\\n\\n    function getSendContext() external view returns (uint32 dstEid, address sender);\\n}\\n\"},\"lib/openzeppelin-contracts/contracts/access/Ownable.sol\":{\"content\":\"// SPDX-License-Identifier: MIT\\n// OpenZeppelin Contracts (last updated v5.0.0) (access/Ownable.sol)\\n\\npragma solidity ^0.8.20;\\n\\nimport {Context} from \\\"../utils/Context.sol\\\";\\n\\n/**\\n * @dev Contract module which provides a basic access control mechanism, where\\n * there is an account (an owner) that can be granted exclusive access to\\n * specific functions.\\n *\\n * The initial owner is set to the address provided by the deployer. This can\\n * later be changed with {transferOwnership}.\\n *\\n * This module is used through inheritance. It will make available the modifier\\n * `onlyOwner`, which can be applied to your functions to restrict their use to\\n * the owner.\\n */\\nabstract contract Ownable is Context {\\n    address private _owner;\\n\\n    /**\\n     * @dev The caller account is not authorized to perform an operation.\\n     */\\n    error OwnableUnauthorizedAccount(address account);\\n\\n    /**\\n     * @dev The owner is not a valid owner account. (eg. `address(0)`)\\n     */\\n    error OwnableInvalidOwner(address owner);\\n\\n    event OwnershipTransferred(address indexed previousOwner, address indexed newOwner);\\n\\n    /**\\n     * @dev Initializes the contract setting the address provided by the deployer as the initial owner.\\n     */\\n    constructor(address initialOwner) {\\n        if (initialOwner == address(0)) {\\n            revert OwnableInvalidOwner(address(0));\\n        }\\n        _transferOwnership(initialOwner);\\n    }\\n\\n    /**\\n     * @dev Throws if called by any account other than the owner.\\n     */\\n    modifier onlyOwner() {\\n        _checkOwner();\\n        _;\\n    }\\n\\n    /**\\n     * @dev Returns the address of the current owner.\\n     */\\n    function owner() public view virtual returns (address) {\\n        return _owner;\\n    }\\n\\n    /**\\n     * @dev Throws if the sender is not the owner.\\n     */\\n    function _checkOwner() internal view virtual {\\n        if (owner() != _msgSender()) {\\n            revert OwnableUnauthorizedAccount(_msgSender());\\n        }\\n    }\\n\\n    /**\\n     * @dev Leaves the contract without owner. It will not be possible to call\\n     * `onlyOwner` functions. Can only be called by the current owner.\\n     *\\n     * NOTE: Renouncing ownership will leave the contract without an owner,\\n     * thereby disabling any functionality that is only available to the owner.\\n     */\\n    function renounceOwnership() public virtual onlyOwner {\\n        _transferOwnership(address(0));\\n    }\\n\\n    /**\\n     * @dev Transfers ownership of the contract to a new account (`newOwner`).\\n     * Can only be called by the current owner.\\n     */\\n    function transferOwnership(address newOwner) public virtual onlyOwner {\\n        if (newOwner == address(0)) {\\n            revert OwnableInvalidOwner(address(0));\\n        }\\n        _transferOwnership(newOwner);\\n    }\\n\\n    /**\\n     * @dev Transfers ownership of the contract to a new account (`newOwner`).\\n     * Internal function without access restriction.\\n     */\\n    function _transferOwnership(address newOwner) internal virtual {\\n        address oldOwner = _owner;\\n        _owner = newOwner;\\n        emit OwnershipTransferred(oldOwner, newOwner);\\n    }\\n}\\n\"},\"lib/devtools/packages/oapp-evm/contracts/oapp/interfaces/IOAppCore.sol\":{\"content\":\"// SPDX-License-Identifier: MIT\\n\\npragma solidity ^0.8.20;\\n\\nimport { ILayerZeroEndpointV2 } from \\\"@layerzerolabs/lz-evm-protocol-v2/contracts/interfaces/ILayerZeroEndpointV2.sol\\\";\\n\\n/**\\n * @title IOAppCore\\n */\\ninterface IOAppCore {\\n    // Custom error messages\\n    error OnlyPeer(uint32 eid, bytes32 sender);\\n    error NoPeer(uint32 eid);\\n    error InvalidEndpointCall();\\n    error InvalidDelegate();\\n\\n    // Event emitted when a peer (OApp) is set for a corresponding endpoint\\n    event PeerSet(uint32 eid, bytes32 peer);\\n\\n    /**\\n     * @notice Retrieves the OApp version information.\\n     * @return senderVersion The version of the OAppSender.sol contract.\\n     * @return receiverVersion The version of the OAppReceiver.sol contract.\\n     */\\n    function oAppVersion() external view returns (uint64 senderVersion, uint64 receiverVersion);\\n\\n    /**\\n     * @notice Retrieves the LayerZero endpoint associated with the OApp.\\n     * @return iEndpoint The LayerZero endpoint as an interface.\\n     */\\n    function endpoint() external view returns (ILayerZeroEndpointV2 iEndpoint);\\n\\n    /**\\n     * @notice Retrieves the peer (OApp) associated with a corresponding endpoint.\\n     * @param _eid The endpoint ID.\\n     * @return peer The peer address (OApp instance) associated with the corresponding endpoint.\\n     */\\n    function peers(uint32 _eid) external view returns (bytes32 peer);\\n\\n    /**\\n     * @notice Sets the peer address (OApp instance) for a corresponding endpoint.\\n     * @param _eid The endpoint ID.\\n     * @param _peer The address of the peer to be associated with the corresponding endpoint.\\n     */\\n    function setPeer(uint32 _eid, bytes32 _peer) external;\\n\\n    /**\\n     * @notice Sets the delegate address for the OApp Core.\\n     * @param _delegate The address of the delegate to be set.\\n     */\\n    function setDelegate(address _delegate) external;\\n}\\n\"},\"lib/openzeppelin-contracts/contracts/utils/Strings.sol\":{\"content\":\"// SPDX-License-Identifier: MIT\\n// OpenZeppelin Contracts (last updated v5.4.0) (utils/Strings.sol)\\n\\npragma solidity ^0.8.20;\\n\\nimport {Math} from \\\"./math/Math.sol\\\";\\nimport {SafeCast} from \\\"./math/SafeCast.sol\\\";\\nimport {SignedMath} from \\\"./math/SignedMath.sol\\\";\\n\\n/**\\n * @dev String operations.\\n */\\nlibrary Strings {\\n    using SafeCast for *;\\n\\n    bytes16 private constant HEX_DIGITS = \\\"0123456789abcdef\\\";\\n    uint8 private constant ADDRESS_LENGTH = 20;\\n    uint256 private constant SPECIAL_CHARS_LOOKUP =\\n        (1 << 0x08) | // backspace\\n            (1 << 0x09) | // tab\\n            (1 << 0x0a) | // newline\\n            (1 << 0x0c) | // form feed\\n            (1 << 0x0d) | // carriage return\\n            (1 << 0x22) | // double quote\\n            (1 << 0x5c); // backslash\\n\\n    /**\\n     * @dev The `value` string doesn't fit in the specified `length`.\\n     */\\n    error StringsInsufficientHexLength(uint256 value, uint256 length);\\n\\n    /**\\n     * @dev The string being parsed contains characters that are not in scope of the given base.\\n     */\\n    error StringsInvalidChar();\\n\\n    /**\\n     * @dev The string being parsed is not a properly formatted address.\\n     */\\n    error StringsInvalidAddressFormat();\\n\\n    /**\\n     * @dev Converts a `uint256` to its ASCII `string` decimal representation.\\n     */\\n    function toString(uint256 value) internal pure returns (string memory) {\\n        unchecked {\\n            uint256 length = Math.log10(value) + 1;\\n            string memory buffer = new string(length);\\n            uint256 ptr;\\n            assembly (\\\"memory-safe\\\") {\\n                ptr := add(add(buffer, 0x20), length)\\n            }\\n            while (true) {\\n                ptr--;\\n                assembly (\\\"memory-safe\\\") {\\n                    mstore8(ptr, byte(mod(value, 10), HEX_DIGITS))\\n                }\\n                value /= 10;\\n                if (value == 0) break;\\n            }\\n            return buffer;\\n        }\\n    }\\n\\n    /**\\n     * @dev Converts a `int256` to its ASCII `string` decimal representation.\\n     */\\n    function toStringSigned(int256 value) internal pure returns (string memory) {\\n        return string.concat(value < 0 ? \\\"-\\\" : \\\"\\\", toString(SignedMath.abs(value)));\\n    }\\n\\n    /**\\n     * @dev Converts a `uint256` to its ASCII `string` hexadecimal representation.\\n     */\\n    function toHexString(uint256 value) internal pure returns (string memory) {\\n        unchecked {\\n            return toHexString(value, Math.log256(value) + 1);\\n        }\\n    }\\n\\n    /**\\n     * @dev Converts a `uint256` to its ASCII `string` hexadecimal representation with fixed length.\\n     */\\n    function toHexString(uint256 value, uint256 length) internal pure returns (string memory) {\\n        uint256 localValue = value;\\n        bytes memory buffer = new bytes(2 * length + 2);\\n        buffer[0] = \\\"0\\\";\\n        buffer[1] = \\\"x\\\";\\n        for (uint256 i = 2 * length + 1; i > 1; --i) {\\n            buffer[i] = HEX_DIGITS[localValue & 0xf];\\n            localValue >>= 4;\\n        }\\n        if (localValue != 0) {\\n            revert StringsInsufficientHexLength(value, length);\\n        }\\n        return string(buffer);\\n    }\\n\\n    /**\\n     * @dev Converts an `address` with fixed length of 20 bytes to its not checksummed ASCII `string` hexadecimal\\n     * representation.\\n     */\\n    function toHexString(address addr) internal pure returns (string memory) {\\n        return toHexString(uint256(uint160(addr)), ADDRESS_LENGTH);\\n    }\\n\\n    /**\\n     * @dev Converts an `address` with fixed length of 20 bytes to its checksummed ASCII `string` hexadecimal\\n     * representation, according to EIP-55.\\n     */\\n    function toChecksumHexString(address addr) internal pure returns (string memory) {\\n        bytes memory buffer = bytes(toHexString(addr));\\n\\n        // hash the hex part of buffer (skip length + 2 bytes, length 40)\\n        uint256 hashValue;\\n        assembly (\\\"memory-safe\\\") {\\n            hashValue := shr(96, keccak256(add(buffer, 0x22), 40))\\n        }\\n\\n        for (uint256 i = 41; i > 1; --i) {\\n            // possible values for buffer[i] are 48 (0) to 57 (9) and 97 (a) to 102 (f)\\n            if (hashValue & 0xf > 7 && uint8(buffer[i]) > 96) {\\n                // case shift by xoring with 0x20\\n                buffer[i] ^= 0x20;\\n            }\\n            hashValue >>= 4;\\n        }\\n        return string(buffer);\\n    }\\n\\n    /**\\n     * @dev Returns true if the two strings are equal.\\n     */\\n    function equal(string memory a, string memory b) internal pure returns (bool) {\\n        return bytes(a).length == bytes(b).length && keccak256(bytes(a)) == keccak256(bytes(b));\\n    }\\n\\n    /**\\n     * @dev Parse a decimal string and returns the value as a `uint256`.\\n     *\\n     * Requirements:\\n     * - The string must be formatted as `[0-9]*`\\n     * - The result must fit into an `uint256` type\\n     */\\n    function parseUint(string memory input) internal pure returns (uint256) {\\n        return parseUint(input, 0, bytes(input).length);\\n    }\\n\\n    /**\\n     * @dev Variant of {parseUint-string} that parses a substring of `input` located between position `begin` (included) and\\n     * `end` (excluded).\\n     *\\n     * Requirements:\\n     * - The substring must be formatted as `[0-9]*`\\n     * - The result must fit into an `uint256` type\\n     */\\n    function parseUint(string memory input, uint256 begin, uint256 end) internal pure returns (uint256) {\\n        (bool success, uint256 value) = tryParseUint(input, begin, end);\\n        if (!success) revert StringsInvalidChar();\\n        return value;\\n    }\\n\\n    /**\\n     * @dev Variant of {parseUint-string} that returns false if the parsing fails because of an invalid character.\\n     *\\n     * NOTE: This function will revert if the result does not fit in a `uint256`.\\n     */\\n    function tryParseUint(string memory input) internal pure returns (bool success, uint256 value) {\\n        return _tryParseUintUncheckedBounds(input, 0, bytes(input).length);\\n    }\\n\\n    /**\\n     * @dev Variant of {parseUint-string-uint256-uint256} that returns false if the parsing fails because of an invalid\\n     * character.\\n     *\\n     * NOTE: This function will revert if the result does not fit in a `uint256`.\\n     */\\n    function tryParseUint(\\n        string memory input,\\n        uint256 begin,\\n        uint256 end\\n    ) internal pure returns (bool success, uint256 value) {\\n        if (end > bytes(input).length || begin > end) return (false, 0);\\n        return _tryParseUintUncheckedBounds(input, begin, end);\\n    }\\n\\n    /**\\n     * @dev Implementation of {tryParseUint-string-uint256-uint256} that does not check bounds. Caller should make sure that\\n     * `begin <= end <= input.length`. Other inputs would result in undefined behavior.\\n     */\\n    function _tryParseUintUncheckedBounds(\\n        string memory input,\\n        uint256 begin,\\n        uint256 end\\n    ) private pure returns (bool success, uint256 value) {\\n        bytes memory buffer = bytes(input);\\n\\n        uint256 result = 0;\\n        for (uint256 i = begin; i < end; ++i) {\\n            uint8 chr = _tryParseChr(bytes1(_unsafeReadBytesOffset(buffer, i)));\\n            if (chr > 9) return (false, 0);\\n            result *= 10;\\n            result += chr;\\n        }\\n        return (true, result);\\n    }\\n\\n    /**\\n     * @dev Parse a decimal string and returns the value as a `int256`.\\n     *\\n     * Requirements:\\n     * - The string must be formatted as `[-+]?[0-9]*`\\n     * - The result must fit in an `int256` type.\\n     */\\n    function parseInt(string memory input) internal pure returns (int256) {\\n        return parseInt(input, 0, bytes(input).length);\\n    }\\n\\n    /**\\n     * @dev Variant of {parseInt-string} that parses a substring of `input` located between position `begin` (included) and\\n     * `end` (excluded).\\n     *\\n     * Requirements:\\n     * - The substring must be formatted as `[-+]?[0-9]*`\\n     * - The result must fit in an `int256` type.\\n     */\\n    function parseInt(string memory input, uint256 begin, uint256 end) internal pure returns (int256) {\\n        (bool success, int256 value) = tryParseInt(input, begin, end);\\n        if (!success) revert StringsInvalidChar();\\n        return value;\\n    }\\n\\n    /**\\n     * @dev Variant of {parseInt-string} that returns false if the parsing fails because of an invalid character or if\\n     * the result does not fit in a `int256`.\\n     *\\n     * NOTE: This function will revert if the absolute value of the result does not fit in a `uint256`.\\n     */\\n    function tryParseInt(string memory input) internal pure returns (bool success, int256 value) {\\n        return _tryParseIntUncheckedBounds(input, 0, bytes(input).length);\\n    }\\n\\n    uint256 private constant ABS_MIN_INT256 = 2 ** 255;\\n\\n    /**\\n     * @dev Variant of {parseInt-string-uint256-uint256} that returns false if the parsing fails because of an invalid\\n     * character or if the result does not fit in a `int256`.\\n     *\\n     * NOTE: This function will revert if the absolute value of the result does not fit in a `uint256`.\\n     */\\n    function tryParseInt(\\n        string memory input,\\n        uint256 begin,\\n        uint256 end\\n    ) internal pure returns (bool success, int256 value) {\\n        if (end > bytes(input).length || begin > end) return (false, 0);\\n        return _tryParseIntUncheckedBounds(input, begin, end);\\n    }\\n\\n    /**\\n     * @dev Implementation of {tryParseInt-string-uint256-uint256} that does not check bounds. Caller should make sure that\\n     * `begin <= end <= input.length`. Other inputs would result in undefined behavior.\\n     */\\n    function _tryParseIntUncheckedBounds(\\n        string memory input,\\n        uint256 begin,\\n        uint256 end\\n    ) private pure returns (bool success, int256 value) {\\n        bytes memory buffer = bytes(input);\\n\\n        // Check presence of a negative sign.\\n        bytes1 sign = begin == end ? bytes1(0) : bytes1(_unsafeReadBytesOffset(buffer, begin)); // don't do out-of-bound (possibly unsafe) read if sub-string is empty\\n        bool positiveSign = sign == bytes1(\\\"+\\\");\\n        bool negativeSign = sign == bytes1(\\\"-\\\");\\n        uint256 offset = (positiveSign || negativeSign).toUint();\\n\\n        (bool absSuccess, uint256 absValue) = tryParseUint(input, begin + offset, end);\\n\\n        if (absSuccess && absValue < ABS_MIN_INT256) {\\n            return (true, negativeSign ? -int256(absValue) : int256(absValue));\\n        } else if (absSuccess && negativeSign && absValue == ABS_MIN_INT256) {\\n            return (true, type(int256).min);\\n        } else return (false, 0);\\n    }\\n\\n    /**\\n     * @dev Parse a hexadecimal string (with or without \\\"0x\\\" prefix), and returns the value as a `uint256`.\\n     *\\n     * Requirements:\\n     * - The string must be formatted as `(0x)?[0-9a-fA-F]*`\\n     * - The result must fit in an `uint256` type.\\n     */\\n    function parseHexUint(string memory input) internal pure returns (uint256) {\\n        return parseHexUint(input, 0, bytes(input).length);\\n    }\\n\\n    /**\\n     * @dev Variant of {parseHexUint-string} that parses a substring of `input` located between position `begin` (included) and\\n     * `end` (excluded).\\n     *\\n     * Requirements:\\n     * - The substring must be formatted as `(0x)?[0-9a-fA-F]*`\\n     * - The result must fit in an `uint256` type.\\n     */\\n    function parseHexUint(string memory input, uint256 begin, uint256 end) internal pure returns (uint256) {\\n        (bool success, uint256 value) = tryParseHexUint(input, begin, end);\\n        if (!success) revert StringsInvalidChar();\\n        return value;\\n    }\\n\\n    /**\\n     * @dev Variant of {parseHexUint-string} that returns false if the parsing fails because of an invalid character.\\n     *\\n     * NOTE: This function will revert if the result does not fit in a `uint256`.\\n     */\\n    function tryParseHexUint(string memory input) internal pure returns (bool success, uint256 value) {\\n        return _tryParseHexUintUncheckedBounds(input, 0, bytes(input).length);\\n    }\\n\\n    /**\\n     * @dev Variant of {parseHexUint-string-uint256-uint256} that returns false if the parsing fails because of an\\n     * invalid character.\\n     *\\n     * NOTE: This function will revert if the result does not fit in a `uint256`.\\n     */\\n    function tryParseHexUint(\\n        string memory input,\\n        uint256 begin,\\n        uint256 end\\n    ) internal pure returns (bool success, uint256 value) {\\n        if (end > bytes(input).length || begin > end) return (false, 0);\\n        return _tryParseHexUintUncheckedBounds(input, begin, end);\\n    }\\n\\n    /**\\n     * @dev Implementation of {tryParseHexUint-string-uint256-uint256} that does not check bounds. Caller should make sure that\\n     * `begin <= end <= input.length`. Other inputs would result in undefined behavior.\\n     */\\n    function _tryParseHexUintUncheckedBounds(\\n        string memory input,\\n        uint256 begin,\\n        uint256 end\\n    ) private pure returns (bool success, uint256 value) {\\n        bytes memory buffer = bytes(input);\\n\\n        // skip 0x prefix if present\\n        bool hasPrefix = (end > begin + 1) && bytes2(_unsafeReadBytesOffset(buffer, begin)) == bytes2(\\\"0x\\\"); // don't do out-of-bound (possibly unsafe) read if sub-string is empty\\n        uint256 offset = hasPrefix.toUint() * 2;\\n\\n        uint256 result = 0;\\n        for (uint256 i = begin + offset; i < end; ++i) {\\n            uint8 chr = _tryParseChr(bytes1(_unsafeReadBytesOffset(buffer, i)));\\n            if (chr > 15) return (false, 0);\\n            result *= 16;\\n            unchecked {\\n                // Multiplying by 16 is equivalent to a shift of 4 bits (with additional overflow check).\\n                // This guarantees that adding a value < 16 will not cause an overflow, hence the unchecked.\\n                result += chr;\\n            }\\n        }\\n        return (true, result);\\n    }\\n\\n    /**\\n     * @dev Parse a hexadecimal string (with or without \\\"0x\\\" prefix), and returns the value as an `address`.\\n     *\\n     * Requirements:\\n     * - The string must be formatted as `(0x)?[0-9a-fA-F]{40}`\\n     */\\n    function parseAddress(string memory input) internal pure returns (address) {\\n        return parseAddress(input, 0, bytes(input).length);\\n    }\\n\\n    /**\\n     * @dev Variant of {parseAddress-string} that parses a substring of `input` located between position `begin` (included) and\\n     * `end` (excluded).\\n     *\\n     * Requirements:\\n     * - The substring must be formatted as `(0x)?[0-9a-fA-F]{40}`\\n     */\\n    function parseAddress(string memory input, uint256 begin, uint256 end) internal pure returns (address) {\\n        (bool success, address value) = tryParseAddress(input, begin, end);\\n        if (!success) revert StringsInvalidAddressFormat();\\n        return value;\\n    }\\n\\n    /**\\n     * @dev Variant of {parseAddress-string} that returns false if the parsing fails because the input is not a properly\\n     * formatted address. See {parseAddress-string} requirements.\\n     */\\n    function tryParseAddress(string memory input) internal pure returns (bool success, address value) {\\n        return tryParseAddress(input, 0, bytes(input).length);\\n    }\\n\\n    /**\\n     * @dev Variant of {parseAddress-string-uint256-uint256} that returns false if the parsing fails because input is not a properly\\n     * formatted address. See {parseAddress-string-uint256-uint256} requirements.\\n     */\\n    function tryParseAddress(\\n        string memory input,\\n        uint256 begin,\\n        uint256 end\\n    ) internal pure returns (bool success, address value) {\\n        if (end > bytes(input).length || begin > end) return (false, address(0));\\n\\n        bool hasPrefix = (end > begin + 1) && bytes2(_unsafeReadBytesOffset(bytes(input), begin)) == bytes2(\\\"0x\\\"); // don't do out-of-bound (possibly unsafe) read if sub-string is empty\\n        uint256 expectedLength = 40 + hasPrefix.toUint() * 2;\\n\\n        // check that input is the correct length\\n        if (end - begin == expectedLength) {\\n            // length guarantees that this does not overflow, and value is at most type(uint160).max\\n            (bool s, uint256 v) = _tryParseHexUintUncheckedBounds(input, begin, end);\\n            return (s, address(uint160(v)));\\n        } else {\\n            return (false, address(0));\\n        }\\n    }\\n\\n    function _tryParseChr(bytes1 chr) private pure returns (uint8) {\\n        uint8 value = uint8(chr);\\n\\n        // Try to parse `chr`:\\n        // - Case 1: [0-9]\\n        // - Case 2: [a-f]\\n        // - Case 3: [A-F]\\n        // - otherwise not supported\\n        unchecked {\\n            if (value > 47 && value < 58) value -= 48;\\n            else if (value > 96 && value < 103) value -= 87;\\n            else if (value > 64 && value < 71) value -= 55;\\n            else return type(uint8).max;\\n        }\\n\\n        return value;\\n    }\\n\\n    /**\\n     * @dev Escape special characters in JSON strings. This can be useful to prevent JSON injection in NFT metadata.\\n     *\\n     * WARNING: This function should only be used in double quoted JSON strings. Single quotes are not escaped.\\n     *\\n     * NOTE: This function escapes all unicode characters, and not just the ones in ranges defined in section 2.5 of\\n     * RFC-4627 (U+0000 to U+001F, U+0022 and U+005C). ECMAScript's `JSON.parse` does recover escaped unicode\\n     * characters that are not in this range, but other tooling may provide different results.\\n     */\\n    function escapeJSON(string memory input) internal pure returns (string memory) {\\n        bytes memory buffer = bytes(input);\\n        bytes memory output = new bytes(2 * buffer.length); // worst case scenario\\n        uint256 outputLength = 0;\\n\\n        for (uint256 i; i < buffer.length; ++i) {\\n            bytes1 char = bytes1(_unsafeReadBytesOffset(buffer, i));\\n            if (((SPECIAL_CHARS_LOOKUP & (1 << uint8(char))) != 0)) {\\n                output[outputLength++] = \\\"\\\\\\\\\\\";\\n                if (char == 0x08) output[outputLength++] = \\\"b\\\";\\n                else if (char == 0x09) output[outputLength++] = \\\"t\\\";\\n                else if (char == 0x0a) output[outputLength++] = \\\"n\\\";\\n                else if (char == 0x0c) output[outputLength++] = \\\"f\\\";\\n                else if (char == 0x0d) output[outputLength++] = \\\"r\\\";\\n                else if (char == 0x5c) output[outputLength++] = \\\"\\\\\\\\\\\";\\n                else if (char == 0x22) {\\n                    // solhint-disable-next-line quotes\\n                    output[outputLength++] = '\\\"';\\n                }\\n            } else {\\n                output[outputLength++] = char;\\n            }\\n        }\\n        // write the actual length and deallocate unused memory\\n        assembly (\\\"memory-safe\\\") {\\n            mstore(output, outputLength)\\n            mstore(0x40, add(output, shl(5, shr(5, add(outputLength, 63)))))\\n        }\\n\\n        return string(output);\\n    }\\n\\n    /**\\n     * @dev Reads a bytes32 from a bytes array without bounds checking.\\n     *\\n     * NOTE: making this function internal would mean it could be used with memory unsafe offset, and marking the\\n     * assembly block as such would prevent some optimizations.\\n     */\\n    function _unsafeReadBytesOffset(bytes memory buffer, uint256 offset) private pure returns (bytes32 value) {\\n        // This is not memory safe in the general case, but all calls to this private function are within bounds.\\n        assembly (\\\"memory-safe\\\") {\\n            value := mload(add(add(buffer, 0x20), offset))\\n        }\\n    }\\n}\\n\"},\"lib/devtools/packages/oapp-evm/contracts/oapp/interfaces/IOAppReceiver.sol\":{\"content\":\"// SPDX-License-Identifier: MIT\\npragma solidity ^0.8.20;\\n\\nimport { ILayerZeroReceiver, Origin } from \\\"@layerzerolabs/lz-evm-protocol-v2/contracts/interfaces/ILayerZeroReceiver.sol\\\";\\n\\ninterface IOAppReceiver is ILayerZeroReceiver {\\n    /**\\n     * @notice Indicates whether an address is an approved composeMsg sender to the Endpoint.\\n     * @param _origin The origin information containing the source endpoint and sender address.\\n     *  - srcEid: The source chain endpoint ID.\\n     *  - sender: The sender address on the src chain.\\n     *  - nonce: The nonce of the message.\\n     * @param _message The lzReceive payload.\\n     * @param _sender The sender address.\\n     * @return isSender Is a valid sender.\\n     *\\n     * @dev Applications can optionally choose to implement a separate composeMsg sender that is NOT the bridging layer.\\n     * @dev The default sender IS the OAppReceiver implementer.\\n     */\\n    function isComposeMsgSender(\\n        Origin calldata _origin,\\n        bytes calldata _message,\\n        address _sender\\n    ) external view returns (bool isSender);\\n}\\n\"},\"lib/devtools/packages/oapp-evm/contracts/precrime/libs/Packet.sol\":{\"content\":\"// SPDX-License-Identifier: MIT\\n\\npragma solidity ^0.8.20;\\n\\nimport { Origin } from \\\"@layerzerolabs/lz-evm-protocol-v2/contracts/interfaces/ILayerZeroEndpointV2.sol\\\";\\nimport { PacketV1Codec } from \\\"@layerzerolabs/lz-evm-protocol-v2/contracts/messagelib/libs/PacketV1Codec.sol\\\";\\n\\n/**\\n * @title InboundPacket\\n * @dev Structure representing an inbound packet received by the contract.\\n */\\nstruct InboundPacket {\\n    Origin origin; // Origin information of the packet.\\n    uint32 dstEid; // Destination endpointId of the packet.\\n    address receiver; // Receiver address for the packet.\\n    bytes32 guid; // Unique identifier of the packet.\\n    uint256 value; // msg.value of the packet.\\n    address executor; // Executor address for the packet.\\n    bytes message; // Message payload of the packet.\\n    bytes extraData; // Additional arbitrary data for the packet.\\n}\\n\\n/**\\n * @title PacketDecoder\\n * @dev Library for decoding LayerZero packets.\\n */\\nlibrary PacketDecoder {\\n    using PacketV1Codec for bytes;\\n\\n    /**\\n     * @dev Decode an inbound packet from the given packet data.\\n     * @param _packet The packet data to decode.\\n     * @return packet An InboundPacket struct representing the decoded packet.\\n     */\\n    function decode(bytes calldata _packet) internal pure returns (InboundPacket memory packet) {\\n        packet.origin = Origin(_packet.srcEid(), _packet.sender(), _packet.nonce());\\n        packet.dstEid = _packet.dstEid();\\n        packet.receiver = _packet.receiverB20();\\n        packet.guid = _packet.guid();\\n        packet.message = _packet.message();\\n    }\\n\\n    /**\\n     * @dev Decode multiple inbound packets from the given packet data and associated message values.\\n     * @param _packets An array of packet data to decode.\\n     * @param _packetMsgValues An array of associated message values for each packet.\\n     * @return packets An array of InboundPacket structs representing the decoded packets.\\n     */\\n    function decode(\\n        bytes[] calldata _packets,\\n        uint256[] memory _packetMsgValues\\n    ) internal pure returns (InboundPacket[] memory packets) {\\n        packets = new InboundPacket[](_packets.length);\\n        for (uint256 i = 0; i < _packets.length; i++) {\\n            bytes calldata packet = _packets[i];\\n            packets[i] = PacketDecoder.decode(packet);\\n            // @dev Allows the verifier to specify the msg.value that gets passed in lzReceive.\\n            packets[i].value = _packetMsgValues[i];\\n        }\\n    }\\n}\\n\"},\"lib/openzeppelin-contracts/contracts/interfaces/IERC20.sol\":{\"content\":\"// SPDX-License-Identifier: MIT\\n// OpenZeppelin Contracts (last updated v5.4.0) (interfaces/IERC20.sol)\\n\\npragma solidity >=0.4.16;\\n\\nimport {IERC20} from \\\"../token/ERC20/IERC20.sol\\\";\\n\"},\"lib/openzeppelin-contracts/contracts/interfaces/IERC165.sol\":{\"content\":\"// SPDX-License-Identifier: MIT\\n// OpenZeppelin Contracts (last updated v5.4.0) (interfaces/IERC165.sol)\\n\\npragma solidity >=0.4.16;\\n\\nimport {IERC165} from \\\"../utils/introspection/IERC165.sol\\\";\\n\"},\"lib/openzeppelin-contracts/contracts/utils/Context.sol\":{\"content\":\"// SPDX-License-Identifier: MIT\\n// OpenZeppelin Contracts (last updated v5.0.1) (utils/Context.sol)\\n\\npragma solidity ^0.8.20;\\n\\n/**\\n * @dev Provides information about the current execution context, including the\\n * sender of the transaction and its data. While these are generally available\\n * via msg.sender and msg.data, they should not be accessed in such a direct\\n * manner, since when dealing with meta-transactions the account sending and\\n * paying for execution may not be the actual sender (as far as an application\\n * is concerned).\\n *\\n * This contract is only required for intermediate, library-like contracts.\\n */\\nabstract contract Context {\\n    function _msgSender() internal view virtual returns (address) {\\n        return msg.sender;\\n    }\\n\\n    function _msgData() internal view virtual returns (bytes calldata) {\\n        return msg.data;\\n    }\\n\\n    function _contextSuffixLength() internal view virtual returns (uint256) {\\n        return 0;\\n    }\\n}\\n\"},\"lib/openzeppelin-contracts/contracts/utils/math/Math.sol\":{\"content\":\"// SPDX-License-Identifier: MIT\\n// OpenZeppelin Contracts (last updated v5.3.0) (utils/math/Math.sol)\\n\\npragma solidity ^0.8.20;\\n\\nimport {Panic} from \\\"../Panic.sol\\\";\\nimport {SafeCast} from \\\"./SafeCast.sol\\\";\\n\\n/**\\n * @dev Standard math utilities missing in the Solidity language.\\n */\\nlibrary Math {\\n    enum Rounding {\\n        Floor, // Toward negative infinity\\n        Ceil, // Toward positive infinity\\n        Trunc, // Toward zero\\n        Expand // Away from zero\\n    }\\n\\n    /**\\n     * @dev Return the 512-bit addition of two uint256.\\n     *\\n     * The result is stored in two 256 variables such that sum = high * 2²⁵⁶ + low.\\n     */\\n    function add512(uint256 a, uint256 b) internal pure returns (uint256 high, uint256 low) {\\n        assembly (\\\"memory-safe\\\") {\\n            low := add(a, b)\\n            high := lt(low, a)\\n        }\\n    }\\n\\n    /**\\n     * @dev Return the 512-bit multiplication of two uint256.\\n     *\\n     * The result is stored in two 256 variables such that product = high * 2²⁵⁶ + low.\\n     */\\n    function mul512(uint256 a, uint256 b) internal pure returns (uint256 high, uint256 low) {\\n        // 512-bit multiply [high low] = x * y. Compute the product mod 2²⁵⁶ and mod 2²⁵⁶ - 1, then use\\n        // the Chinese Remainder Theorem to reconstruct the 512 bit result. The result is stored in two 256\\n        // variables such that product = high * 2²⁵⁶ + low.\\n        assembly (\\\"memory-safe\\\") {\\n            let mm := mulmod(a, b, not(0))\\n            low := mul(a, b)\\n            high := sub(sub(mm, low), lt(mm, low))\\n        }\\n    }\\n\\n    /**\\n     * @dev Returns the addition of two unsigned integers, with a success flag (no overflow).\\n     */\\n    function tryAdd(uint256 a, uint256 b) internal pure returns (bool success, uint256 result) {\\n        unchecked {\\n            uint256 c = a + b;\\n            success = c >= a;\\n            result = c * SafeCast.toUint(success);\\n        }\\n    }\\n\\n    /**\\n     * @dev Returns the subtraction of two unsigned integers, with a success flag (no overflow).\\n     */\\n    function trySub(uint256 a, uint256 b) internal pure returns (bool success, uint256 result) {\\n        unchecked {\\n            uint256 c = a - b;\\n            success = c <= a;\\n            result = c * SafeCast.toUint(success);\\n        }\\n    }\\n\\n    /**\\n     * @dev Returns the multiplication of two unsigned integers, with a success flag (no overflow).\\n     */\\n    function tryMul(uint256 a, uint256 b) internal pure returns (bool success, uint256 result) {\\n        unchecked {\\n            uint256 c = a * b;\\n            assembly (\\\"memory-safe\\\") {\\n                // Only true when the multiplication doesn't overflow\\n                // (c / a == b) || (a == 0)\\n                success := or(eq(div(c, a), b), iszero(a))\\n            }\\n            // equivalent to: success ? c : 0\\n            result = c * SafeCast.toUint(success);\\n        }\\n    }\\n\\n    /**\\n     * @dev Returns the division of two unsigned integers, with a success flag (no division by zero).\\n     */\\n    function tryDiv(uint256 a, uint256 b) internal pure returns (bool success, uint256 result) {\\n        unchecked {\\n            success = b > 0;\\n            assembly (\\\"memory-safe\\\") {\\n                // The `DIV` opcode returns zero when the denominator is 0.\\n                result := div(a, b)\\n            }\\n        }\\n    }\\n\\n    /**\\n     * @dev Returns the remainder of dividing two unsigned integers, with a success flag (no division by zero).\\n     */\\n    function tryMod(uint256 a, uint256 b) internal pure returns (bool success, uint256 result) {\\n        unchecked {\\n            success = b > 0;\\n            assembly (\\\"memory-safe\\\") {\\n                // The `MOD` opcode returns zero when the denominator is 0.\\n                result := mod(a, b)\\n            }\\n        }\\n    }\\n\\n    /**\\n     * @dev Unsigned saturating addition, bounds to `2²⁵⁶ - 1` instead of overflowing.\\n     */\\n    function saturatingAdd(uint256 a, uint256 b) internal pure returns (uint256) {\\n        (bool success, uint256 result) = tryAdd(a, b);\\n        return ternary(success, result, type(uint256).max);\\n    }\\n\\n    /**\\n     * @dev Unsigned saturating subtraction, bounds to zero instead of overflowing.\\n     */\\n    function saturatingSub(uint256 a, uint256 b) internal pure returns (uint256) {\\n        (, uint256 result) = trySub(a, b);\\n        return result;\\n    }\\n\\n    /**\\n     * @dev Unsigned saturating multiplication, bounds to `2²⁵⁶ - 1` instead of overflowing.\\n     */\\n    function saturatingMul(uint256 a, uint256 b) internal pure returns (uint256) {\\n        (bool success, uint256 result) = tryMul(a, b);\\n        return ternary(success, result, type(uint256).max);\\n    }\\n\\n    /**\\n     * @dev Branchless ternary evaluation for `a ? b : c`. Gas costs are constant.\\n     *\\n     * IMPORTANT: This function may reduce bytecode size and consume less gas when used standalone.\\n     * However, the compiler may optimize Solidity ternary operations (i.e. `a ? b : c`) to only compute\\n     * one branch when needed, making this function more expensive.\\n     */\\n    function ternary(bool condition, uint256 a, uint256 b) internal pure returns (uint256) {\\n        unchecked {\\n            // branchless ternary works because:\\n            // b ^ (a ^ b) == a\\n            // b ^ 0 == b\\n            return b ^ ((a ^ b) * SafeCast.toUint(condition));\\n        }\\n    }\\n\\n    /**\\n     * @dev Returns the largest of two numbers.\\n     */\\n    function max(uint256 a, uint256 b) internal pure returns (uint256) {\\n        return ternary(a > b, a, b);\\n    }\\n\\n    /**\\n     * @dev Returns the smallest of two numbers.\\n     */\\n    function min(uint256 a, uint256 b) internal pure returns (uint256) {\\n        return ternary(a < b, a, b);\\n    }\\n\\n    /**\\n     * @dev Returns the average of two numbers. The result is rounded towards\\n     * zero.\\n     */\\n    function average(uint256 a, uint256 b) internal pure returns (uint256) {\\n        // (a + b) / 2 can overflow.\\n        return (a & b) + (a ^ b) / 2;\\n    }\\n\\n    /**\\n     * @dev Returns the ceiling of the division of two numbers.\\n     *\\n     * This differs from standard division with `/` in that it rounds towards infinity instead\\n     * of rounding towards zero.\\n     */\\n    function ceilDiv(uint256 a, uint256 b) internal pure returns (uint256) {\\n        if (b == 0) {\\n            // Guarantee the same behavior as in a regular Solidity division.\\n            Panic.panic(Panic.DIVISION_BY_ZERO);\\n        }\\n\\n        // The following calculation ensures accurate ceiling division without overflow.\\n        // Since a is non-zero, (a - 1) / b will not overflow.\\n        // The largest possible result occurs when (a - 1) / b is type(uint256).max,\\n        // but the largest value we can obtain is type(uint256).max - 1, which happens\\n        // when a = type(uint256).max and b = 1.\\n        unchecked {\\n            return SafeCast.toUint(a > 0) * ((a - 1) / b + 1);\\n        }\\n    }\\n\\n    /**\\n     * @dev Calculates floor(x * y / denominator) with full precision. Throws if result overflows a uint256 or\\n     * denominator == 0.\\n     *\\n     * Original credit to Remco Bloemen under MIT license (https://xn--2-umb.com/21/muldiv) with further edits by\\n     * Uniswap Labs also under MIT license.\\n     */\\n    function mulDiv(uint256 x, uint256 y, uint256 denominator) internal pure returns (uint256 result) {\\n        unchecked {\\n            (uint256 high, uint256 low) = mul512(x, y);\\n\\n            // Handle non-overflow cases, 256 by 256 division.\\n            if (high == 0) {\\n                // Solidity will revert if denominator == 0, unlike the div opcode on its own.\\n                // The surrounding unchecked block does not change this fact.\\n                // See https://docs.soliditylang.org/en/latest/control-structures.html#checked-or-unchecked-arithmetic.\\n                return low / denominator;\\n            }\\n\\n            // Make sure the result is less than 2²⁵⁶. Also prevents denominator == 0.\\n            if (denominator <= high) {\\n                Panic.panic(ternary(denominator == 0, Panic.DIVISION_BY_ZERO, Panic.UNDER_OVERFLOW));\\n            }\\n\\n            ///////////////////////////////////////////////\\n            // 512 by 256 division.\\n            ///////////////////////////////////////////////\\n\\n            // Make division exact by subtracting the remainder from [high low].\\n            uint256 remainder;\\n            assembly (\\\"memory-safe\\\") {\\n                // Compute remainder using mulmod.\\n                remainder := mulmod(x, y, denominator)\\n\\n                // Subtract 256 bit number from 512 bit number.\\n                high := sub(high, gt(remainder, low))\\n                low := sub(low, remainder)\\n            }\\n\\n            // Factor powers of two out of denominator and compute largest power of two divisor of denominator.\\n            // Always >= 1. See https://cs.stackexchange.com/q/138556/92363.\\n\\n            uint256 twos = denominator & (0 - denominator);\\n            assembly (\\\"memory-safe\\\") {\\n                // Divide denominator by twos.\\n                denominator := div(denominator, twos)\\n\\n                // Divide [high low] by twos.\\n                low := div(low, twos)\\n\\n                // Flip twos such that it is 2²⁵⁶ / twos. If twos is zero, then it becomes one.\\n                twos := add(div(sub(0, twos), twos), 1)\\n            }\\n\\n            // Shift in bits from high into low.\\n            low |= high * twos;\\n\\n            // Invert denominator mod 2²⁵⁶. Now that denominator is an odd number, it has an inverse modulo 2²⁵⁶ such\\n            // that denominator * inv ≡ 1 mod 2²⁵⁶. Compute the inverse by starting with a seed that is correct for\\n            // four bits. That is, denominator * inv ≡ 1 mod 2⁴.\\n            uint256 inverse = (3 * denominator) ^ 2;\\n\\n            // Use the Newton-Raphson iteration to improve the precision. Thanks to Hensel's lifting lemma, this also\\n            // works in modular arithmetic, doubling the correct bits in each step.\\n            inverse *= 2 - denominator * inverse; // inverse mod 2⁸\\n            inverse *= 2 - denominator * inverse; // inverse mod 2¹⁶\\n            inverse *= 2 - denominator * inverse; // inverse mod 2³²\\n            inverse *= 2 - denominator * inverse; // inverse mod 2⁶⁴\\n            inverse *= 2 - denominator * inverse; // inverse mod 2¹²⁸\\n            inverse *= 2 - denominator * inverse; // inverse mod 2²⁵⁶\\n\\n            // Because the division is now exact we can divide by multiplying with the modular inverse of denominator.\\n            // This will give us the correct result modulo 2²⁵⁶. Since the preconditions guarantee that the outcome is\\n            // less than 2²⁵⁶, this is the final result. We don't need to compute the high bits of the result and high\\n            // is no longer required.\\n            result = low * inverse;\\n            return result;\\n        }\\n    }\\n\\n    /**\\n     * @dev Calculates x * y / denominator with full precision, following the selected rounding direction.\\n     */\\n    function mulDiv(uint256 x, uint256 y, uint256 denominator, Rounding rounding) internal pure returns (uint256) {\\n        return mulDiv(x, y, denominator) + SafeCast.toUint(unsignedRoundsUp(rounding) && mulmod(x, y, denominator) > 0);\\n    }\\n\\n    /**\\n     * @dev Calculates floor(x * y >> n) with full precision. Throws if result overflows a uint256.\\n     */\\n    function mulShr(uint256 x, uint256 y, uint8 n) internal pure returns (uint256 result) {\\n        unchecked {\\n            (uint256 high, uint256 low) = mul512(x, y);\\n            if (high >= 1 << n) {\\n                Panic.panic(Panic.UNDER_OVERFLOW);\\n            }\\n            return (high << (256 - n)) | (low >> n);\\n        }\\n    }\\n\\n    /**\\n     * @dev Calculates x * y >> n with full precision, following the selected rounding direction.\\n     */\\n    function mulShr(uint256 x, uint256 y, uint8 n, Rounding rounding) internal pure returns (uint256) {\\n        return mulShr(x, y, n) + SafeCast.toUint(unsignedRoundsUp(rounding) && mulmod(x, y, 1 << n) > 0);\\n    }\\n\\n    /**\\n     * @dev Calculate the modular multiplicative inverse of a number in Z/nZ.\\n     *\\n     * If n is a prime, then Z/nZ is a field. In that case all elements are inversible, except 0.\\n     * If n is not a prime, then Z/nZ is not a field, and some elements might not be inversible.\\n     *\\n     * If the input value is not inversible, 0 is returned.\\n     *\\n     * NOTE: If you know for sure that n is (big) a prime, it may be cheaper to use Fermat's little theorem and get the\\n     * inverse using `Math.modExp(a, n - 2, n)`. See {invModPrime}.\\n     */\\n    function invMod(uint256 a, uint256 n) internal pure returns (uint256) {\\n        unchecked {\\n            if (n == 0) return 0;\\n\\n            // The inverse modulo is calculated using the Extended Euclidean Algorithm (iterative version)\\n            // Used to compute integers x and y such that: ax + ny = gcd(a, n).\\n            // When the gcd is 1, then the inverse of a modulo n exists and it's x.\\n            // ax + ny = 1\\n            // ax = 1 + (-y)n\\n            // ax ≡ 1 (mod n) # x is the inverse of a modulo n\\n\\n            // If the remainder is 0 the gcd is n right away.\\n            uint256 remainder = a % n;\\n            uint256 gcd = n;\\n\\n            // Therefore the initial coefficients are:\\n            // ax + ny = gcd(a, n) = n\\n            // 0a + 1n = n\\n            int256 x = 0;\\n            int256 y = 1;\\n\\n            while (remainder != 0) {\\n                uint256 quotient = gcd / remainder;\\n\\n                (gcd, remainder) = (\\n                    // The old remainder is the next gcd to try.\\n                    remainder,\\n                    // Compute the next remainder.\\n                    // Can't overflow given that (a % gcd) * (gcd // (a % gcd)) <= gcd\\n                    // where gcd is at most n (capped to type(uint256).max)\\n                    gcd - remainder * quotient\\n                );\\n\\n                (x, y) = (\\n                    // Increment the coefficient of a.\\n                    y,\\n                    // Decrement the coefficient of n.\\n                    // Can overflow, but the result is casted to uint256 so that the\\n                    // next value of y is \\\"wrapped around\\\" to a value between 0 and n - 1.\\n                    x - y * int256(quotient)\\n                );\\n            }\\n\\n            if (gcd != 1) return 0; // No inverse exists.\\n            return ternary(x < 0, n - uint256(-x), uint256(x)); // Wrap the result if it's negative.\\n        }\\n    }\\n\\n    /**\\n     * @dev Variant of {invMod}. More efficient, but only works if `p` is known to be a prime greater than `2`.\\n     *\\n     * From https://en.wikipedia.org/wiki/Fermat%27s_little_theorem[Fermat's little theorem], we know that if p is\\n     * prime, then `a**(p-1) ≡ 1 mod p`. As a consequence, we have `a * a**(p-2) ≡ 1 mod p`, which means that\\n     * `a**(p-2)` is the modular multiplicative inverse of a in Fp.\\n     *\\n     * NOTE: this function does NOT check that `p` is a prime greater than `2`.\\n     */\\n    function invModPrime(uint256 a, uint256 p) internal view returns (uint256) {\\n        unchecked {\\n            return Math.modExp(a, p - 2, p);\\n        }\\n    }\\n\\n    /**\\n     * @dev Returns the modular exponentiation of the specified base, exponent and modulus (b ** e % m)\\n     *\\n     * Requirements:\\n     * - modulus can't be zero\\n     * - underlying staticcall to precompile must succeed\\n     *\\n     * IMPORTANT: The result is only valid if the underlying call succeeds. When using this function, make\\n     * sure the chain you're using it on supports the precompiled contract for modular exponentiation\\n     * at address 0x05 as specified in https://eips.ethereum.org/EIPS/eip-198[EIP-198]. Otherwise,\\n     * the underlying function will succeed given the lack of a revert, but the result may be incorrectly\\n     * interpreted as 0.\\n     */\\n    function modExp(uint256 b, uint256 e, uint256 m) internal view returns (uint256) {\\n        (bool success, uint256 result) = tryModExp(b, e, m);\\n        if (!success) {\\n            Panic.panic(Panic.DIVISION_BY_ZERO);\\n        }\\n        return result;\\n    }\\n\\n    /**\\n     * @dev Returns the modular exponentiation of the specified base, exponent and modulus (b ** e % m).\\n     * It includes a success flag indicating if the operation succeeded. Operation will be marked as failed if trying\\n     * to operate modulo 0 or if the underlying precompile reverted.\\n     *\\n     * IMPORTANT: The result is only valid if the success flag is true. When using this function, make sure the chain\\n     * you're using it on supports the precompiled contract for modular exponentiation at address 0x05 as specified in\\n     * https://eips.ethereum.org/EIPS/eip-198[EIP-198]. Otherwise, the underlying function will succeed given the lack\\n     * of a revert, but the result may be incorrectly interpreted as 0.\\n     */\\n    function tryModExp(uint256 b, uint256 e, uint256 m) internal view returns (bool success, uint256 result) {\\n        if (m == 0) return (false, 0);\\n        assembly (\\\"memory-safe\\\") {\\n            let ptr := mload(0x40)\\n            // | Offset    | Content    | Content (Hex)                                                      |\\n            // |-----------|------------|--------------------------------------------------------------------|\\n            // | 0x00:0x1f | size of b  | 0x0000000000000000000000000000000000000000000000000000000000000020 |\\n            // | 0x20:0x3f | size of e  | 0x0000000000000000000000000000000000000000000000000000000000000020 |\\n            // | 0x40:0x5f | size of m  | 0x0000000000000000000000000000000000000000000000000000000000000020 |\\n            // | 0x60:0x7f | value of b | 0x<.............................................................b> |\\n            // | 0x80:0x9f | value of e | 0x<.............................................................e> |\\n            // | 0xa0:0xbf | value of m | 0x<.............................................................m> |\\n            mstore(ptr, 0x20)\\n            mstore(add(ptr, 0x20), 0x20)\\n            mstore(add(ptr, 0x40), 0x20)\\n            mstore(add(ptr, 0x60), b)\\n            mstore(add(ptr, 0x80), e)\\n            mstore(add(ptr, 0xa0), m)\\n\\n            // Given the result < m, it's guaranteed to fit in 32 bytes,\\n            // so we can use the memory scratch space located at offset 0.\\n            success := staticcall(gas(), 0x05, ptr, 0xc0, 0x00, 0x20)\\n            result := mload(0x00)\\n        }\\n    }\\n\\n    /**\\n     * @dev Variant of {modExp} that supports inputs of arbitrary length.\\n     */\\n    function modExp(bytes memory b, bytes memory e, bytes memory m) internal view returns (bytes memory) {\\n        (bool success, bytes memory result) = tryModExp(b, e, m);\\n        if (!success) {\\n            Panic.panic(Panic.DIVISION_BY_ZERO);\\n        }\\n        return result;\\n    }\\n\\n    /**\\n     * @dev Variant of {tryModExp} that supports inputs of arbitrary length.\\n     */\\n    function tryModExp(\\n        bytes memory b,\\n        bytes memory e,\\n        bytes memory m\\n    ) internal view returns (bool success, bytes memory result) {\\n        if (_zeroBytes(m)) return (false, new bytes(0));\\n\\n        uint256 mLen = m.length;\\n\\n        // Encode call args in result and move the free memory pointer\\n        result = abi.encodePacked(b.length, e.length, mLen, b, e, m);\\n\\n        assembly (\\\"memory-safe\\\") {\\n            let dataPtr := add(result, 0x20)\\n            // Write result on top of args to avoid allocating extra memory.\\n            success := staticcall(gas(), 0x05, dataPtr, mload(result), dataPtr, mLen)\\n            // Overwrite the length.\\n            // result.length > returndatasize() is guaranteed because returndatasize() == m.length\\n            mstore(result, mLen)\\n            // Set the memory pointer after the returned data.\\n            mstore(0x40, add(dataPtr, mLen))\\n        }\\n    }\\n\\n    /**\\n     * @dev Returns whether the provided byte array is zero.\\n     */\\n    function _zeroBytes(bytes memory byteArray) private pure returns (bool) {\\n        for (uint256 i = 0; i < byteArray.length; ++i) {\\n            if (byteArray[i] != 0) {\\n                return false;\\n            }\\n        }\\n        return true;\\n    }\\n\\n    /**\\n     * @dev Returns the square root of a number. If the number is not a perfect square, the value is rounded\\n     * towards zero.\\n     *\\n     * This method is based on Newton's method for computing square roots; the algorithm is restricted to only\\n     * using integer operations.\\n     */\\n    function sqrt(uint256 a) internal pure returns (uint256) {\\n        unchecked {\\n            // Take care of easy edge cases when a == 0 or a == 1\\n            if (a <= 1) {\\n                return a;\\n            }\\n\\n            // In this function, we use Newton's method to get a root of `f(x) := x² - a`. It involves building a\\n            // sequence x_n that converges toward sqrt(a). For each iteration x_n, we also define the error between\\n            // the current value as `ε_n = | x_n - sqrt(a) |`.\\n            //\\n            // For our first estimation, we consider `e` the smallest power of 2 which is bigger than the square root\\n            // of the target. (i.e. `2**(e-1) ≤ sqrt(a) < 2**e`). We know that `e ≤ 128` because `(2¹²⁸)² = 2²⁵⁶` is\\n            // bigger than any uint256.\\n            //\\n            // By noticing that\\n            // `2**(e-1) ≤ sqrt(a) < 2**e → (2**(e-1))² ≤ a < (2**e)² → 2**(2*e-2) ≤ a < 2**(2*e)`\\n            // we can deduce that `e - 1` is `log2(a) / 2`. We can thus compute `x_n = 2**(e-1)` using a method similar\\n            // to the msb function.\\n            uint256 aa = a;\\n            uint256 xn = 1;\\n\\n            if (aa >= (1 << 128)) {\\n                aa >>= 128;\\n                xn <<= 64;\\n            }\\n            if (aa >= (1 << 64)) {\\n                aa >>= 64;\\n                xn <<= 32;\\n            }\\n            if (aa >= (1 << 32)) {\\n                aa >>= 32;\\n                xn <<= 16;\\n            }\\n            if (aa >= (1 << 16)) {\\n                aa >>= 16;\\n                xn <<= 8;\\n            }\\n            if (aa >= (1 << 8)) {\\n                aa >>= 8;\\n                xn <<= 4;\\n            }\\n            if (aa >= (1 << 4)) {\\n                aa >>= 4;\\n                xn <<= 2;\\n            }\\n            if (aa >= (1 << 2)) {\\n                xn <<= 1;\\n            }\\n\\n            // We now have x_n such that `x_n = 2**(e-1) ≤ sqrt(a) < 2**e = 2 * x_n`. This implies ε_n ≤ 2**(e-1).\\n            //\\n            // We can refine our estimation by noticing that the middle of that interval minimizes the error.\\n            // If we move x_n to equal 2**(e-1) + 2**(e-2), then we reduce the error to ε_n ≤ 2**(e-2).\\n            // This is going to be our x_0 (and ε_0)\\n            xn = (3 * xn) >> 1; // ε_0 := | x_0 - sqrt(a) | ≤ 2**(e-2)\\n\\n            // From here, Newton's method give us:\\n            // x_{n+1} = (x_n + a / x_n) / 2\\n            //\\n            // One should note that:\\n            // x_{n+1}² - a = ((x_n + a / x_n) / 2)² - a\\n            //              = ((x_n² + a) / (2 * x_n))² - a\\n            //              = (x_n⁴ + 2 * a * x_n² + a²) / (4 * x_n²) - a\\n            //              = (x_n⁴ + 2 * a * x_n² + a² - 4 * a * x_n²) / (4 * x_n²)\\n            //              = (x_n⁴ - 2 * a * x_n² + a²) / (4 * x_n²)\\n            //              = (x_n² - a)² / (2 * x_n)²\\n            //              = ((x_n² - a) / (2 * x_n))²\\n            //              ≥ 0\\n            // Which proves that for all n ≥ 1, sqrt(a) ≤ x_n\\n            //\\n            // This gives us the proof of quadratic convergence of the sequence:\\n            // ε_{n+1} = | x_{n+1} - sqrt(a) |\\n            //         = | (x_n + a / x_n) / 2 - sqrt(a) |\\n            //         = | (x_n² + a - 2*x_n*sqrt(a)) / (2 * x_n) |\\n            //         = | (x_n - sqrt(a))² / (2 * x_n) |\\n            //         = | ε_n² / (2 * x_n) |\\n            //         = ε_n² / | (2 * x_n) |\\n            //\\n            // For the first iteration, we have a special case where x_0 is known:\\n            // ε_1 = ε_0² / | (2 * x_0) |\\n            //     ≤ (2**(e-2))² / (2 * (2**(e-1) + 2**(e-2)))\\n            //     ≤ 2**(2*e-4) / (3 * 2**(e-1))\\n            //     ≤ 2**(e-3) / 3\\n            //     ≤ 2**(e-3-log2(3))\\n            //     ≤ 2**(e-4.5)\\n            //\\n            // For the following iterations, we use the fact that, 2**(e-1) ≤ sqrt(a) ≤ x_n:\\n            // ε_{n+1} = ε_n² / | (2 * x_n) |\\n            //         ≤ (2**(e-k))² / (2 * 2**(e-1))\\n            //         ≤ 2**(2*e-2*k) / 2**e\\n            //         ≤ 2**(e-2*k)\\n            xn = (xn + a / xn) >> 1; // ε_1 := | x_1 - sqrt(a) | ≤ 2**(e-4.5)  -- special case, see above\\n            xn = (xn + a / xn) >> 1; // ε_2 := | x_2 - sqrt(a) | ≤ 2**(e-9)    -- general case with k = 4.5\\n            xn = (xn + a / xn) >> 1; // ε_3 := | x_3 - sqrt(a) | ≤ 2**(e-18)   -- general case with k = 9\\n            xn = (xn + a / xn) >> 1; // ε_4 := | x_4 - sqrt(a) | ≤ 2**(e-36)   -- general case with k = 18\\n            xn = (xn + a / xn) >> 1; // ε_5 := | x_5 - sqrt(a) | ≤ 2**(e-72)   -- general case with k = 36\\n            xn = (xn + a / xn) >> 1; // ε_6 := | x_6 - sqrt(a) | ≤ 2**(e-144)  -- general case with k = 72\\n\\n            // Because e ≤ 128 (as discussed during the first estimation phase), we know have reached a precision\\n            // ε_6 ≤ 2**(e-144) < 1. Given we're operating on integers, then we can ensure that xn is now either\\n            // sqrt(a) or sqrt(a) + 1.\\n            return xn - SafeCast.toUint(xn > a / xn);\\n        }\\n    }\\n\\n    /**\\n     * @dev Calculates sqrt(a), following the selected rounding direction.\\n     */\\n    function sqrt(uint256 a, Rounding rounding) internal pure returns (uint256) {\\n        unchecked {\\n            uint256 result = sqrt(a);\\n            return result + SafeCast.toUint(unsignedRoundsUp(rounding) && result * result < a);\\n        }\\n    }\\n\\n    /**\\n     * @dev Return the log in base 2 of a positive value rounded towards zero.\\n     * Returns 0 if given 0.\\n     */\\n    function log2(uint256 x) internal pure returns (uint256 r) {\\n        // If value has upper 128 bits set, log2 result is at least 128\\n        r = SafeCast.toUint(x > 0xffffffffffffffffffffffffffffffff) << 7;\\n        // If upper 64 bits of 128-bit half set, add 64 to result\\n        r |= SafeCast.toUint((x >> r) > 0xffffffffffffffff) << 6;\\n        // If upper 32 bits of 64-bit half set, add 32 to result\\n        r |= SafeCast.toUint((x >> r) > 0xffffffff) << 5;\\n        // If upper 16 bits of 32-bit half set, add 16 to result\\n        r |= SafeCast.toUint((x >> r) > 0xffff) << 4;\\n        // If upper 8 bits of 16-bit half set, add 8 to result\\n        r |= SafeCast.toUint((x >> r) > 0xff) << 3;\\n        // If upper 4 bits of 8-bit half set, add 4 to result\\n        r |= SafeCast.toUint((x >> r) > 0xf) << 2;\\n\\n        // Shifts value right by the current result and use it as an index into this lookup table:\\n        //\\n        // | x (4 bits) |  index  | table[index] = MSB position |\\n        // |------------|---------|-----------------------------|\\n        // |    0000    |    0    |        table[0] = 0         |\\n        // |    0001    |    1    |        table[1] = 0         |\\n        // |    0010    |    2    |        table[2] = 1         |\\n        // |    0011    |    3    |        table[3] = 1         |\\n        // |    0100    |    4    |        table[4] = 2         |\\n        // |    0101    |    5    |        table[5] = 2         |\\n        // |    0110    |    6    |        table[6] = 2         |\\n        // |    0111    |    7    |        table[7] = 2         |\\n        // |    1000    |    8    |        table[8] = 3         |\\n        // |    1001    |    9    |        table[9] = 3         |\\n        // |    1010    |   10    |        table[10] = 3        |\\n        // |    1011    |   11    |        table[11] = 3        |\\n        // |    1100    |   12    |        table[12] = 3        |\\n        // |    1101    |   13    |        table[13] = 3        |\\n        // |    1110    |   14    |        table[14] = 3        |\\n        // |    1111    |   15    |        table[15] = 3        |\\n        //\\n        // The lookup table is represented as a 32-byte value with the MSB positions for 0-15 in the last 16 bytes.\\n        assembly (\\\"memory-safe\\\") {\\n            r := or(r, byte(shr(r, x), 0x0000010102020202030303030303030300000000000000000000000000000000))\\n        }\\n    }\\n\\n    /**\\n     * @dev Return the log in base 2, following the selected rounding direction, of a positive value.\\n     * Returns 0 if given 0.\\n     */\\n    function log2(uint256 value, Rounding rounding) internal pure returns (uint256) {\\n        unchecked {\\n            uint256 result = log2(value);\\n            return result + SafeCast.toUint(unsignedRoundsUp(rounding) && 1 << result < value);\\n        }\\n    }\\n\\n    /**\\n     * @dev Return the log in base 10 of a positive value rounded towards zero.\\n     * Returns 0 if given 0.\\n     */\\n    function log10(uint256 value) internal pure returns (uint256) {\\n        uint256 result = 0;\\n        unchecked {\\n            if (value >= 10 ** 64) {\\n                value /= 10 ** 64;\\n                result += 64;\\n            }\\n            if (value >= 10 ** 32) {\\n                value /= 10 ** 32;\\n                result += 32;\\n            }\\n            if (value >= 10 ** 16) {\\n                value /= 10 ** 16;\\n                result += 16;\\n            }\\n            if (value >= 10 ** 8) {\\n                value /= 10 ** 8;\\n                result += 8;\\n            }\\n            if (value >= 10 ** 4) {\\n                value /= 10 ** 4;\\n                result += 4;\\n            }\\n            if (value >= 10 ** 2) {\\n                value /= 10 ** 2;\\n                result += 2;\\n            }\\n            if (value >= 10 ** 1) {\\n                result += 1;\\n            }\\n        }\\n        return result;\\n    }\\n\\n    /**\\n     * @dev Return the log in base 10, following the selected rounding direction, of a positive value.\\n     * Returns 0 if given 0.\\n     */\\n    function log10(uint256 value, Rounding rounding) internal pure returns (uint256) {\\n        unchecked {\\n            uint256 result = log10(value);\\n            return result + SafeCast.toUint(unsignedRoundsUp(rounding) && 10 ** result < value);\\n        }\\n    }\\n\\n    /**\\n     * @dev Return the log in base 256 of a positive value rounded towards zero.\\n     * Returns 0 if given 0.\\n     *\\n     * Adding one to the result gives the number of pairs of hex symbols needed to represent `value` as a hex string.\\n     */\\n    function log256(uint256 x) internal pure returns (uint256 r) {\\n        // If value has upper 128 bits set, log2 result is at least 128\\n        r = SafeCast.toUint(x > 0xffffffffffffffffffffffffffffffff) << 7;\\n        // If upper 64 bits of 128-bit half set, add 64 to result\\n        r |= SafeCast.toUint((x >> r) > 0xffffffffffffffff) << 6;\\n        // If upper 32 bits of 64-bit half set, add 32 to result\\n        r |= SafeCast.toUint((x >> r) > 0xffffffff) << 5;\\n        // If upper 16 bits of 32-bit half set, add 16 to result\\n        r |= SafeCast.toUint((x >> r) > 0xffff) << 4;\\n        // Add 1 if upper 8 bits of 16-bit half set, and divide accumulated result by 8\\n        return (r >> 3) | SafeCast.toUint((x >> r) > 0xff);\\n    }\\n\\n    /**\\n     * @dev Return the log in base 256, following the selected rounding direction, of a positive value.\\n     * Returns 0 if given 0.\\n     */\\n    function log256(uint256 value, Rounding rounding) internal pure returns (uint256) {\\n        unchecked {\\n            uint256 result = log256(value);\\n            return result + SafeCast.toUint(unsignedRoundsUp(rounding) && 1 << (result << 3) < value);\\n        }\\n    }\\n\\n    /**\\n     * @dev Returns whether a provided rounding mode is considered rounding up for unsigned integers.\\n     */\\n    function unsignedRoundsUp(Rounding rounding) internal pure returns (bool) {\\n        return uint8(rounding) % 2 == 1;\\n    }\\n}\\n\"},\"lib/openzeppelin-contracts/contracts/utils/math/SafeCast.sol\":{\"content\":\"// SPDX-License-Identifier: MIT\\n// OpenZeppelin Contracts (last updated v5.1.0) (utils/math/SafeCast.sol)\\n// This file was procedurally generated from scripts/generate/templates/SafeCast.js.\\n\\npragma solidity ^0.8.20;\\n\\n/**\\n * @dev Wrappers over Solidity's uintXX/intXX/bool casting operators with added overflow\\n * checks.\\n *\\n * Downcasting from uint256/int256 in Solidity does not revert on overflow. This can\\n * easily result in undesired exploitation or bugs, since developers usually\\n * assume that overflows raise errors. `SafeCast` restores this intuition by\\n * reverting the transaction when such an operation overflows.\\n *\\n * Using this library instead of the unchecked operations eliminates an entire\\n * class of bugs, so it's recommended to use it always.\\n */\\nlibrary SafeCast {\\n    /**\\n     * @dev Value doesn't fit in an uint of `bits` size.\\n     */\\n    error SafeCastOverflowedUintDowncast(uint8 bits, uint256 value);\\n\\n    /**\\n     * @dev An int value doesn't fit in an uint of `bits` size.\\n     */\\n    error SafeCastOverflowedIntToUint(int256 value);\\n\\n    /**\\n     * @dev Value doesn't fit in an int of `bits` size.\\n     */\\n    error SafeCastOverflowedIntDowncast(uint8 bits, int256 value);\\n\\n    /**\\n     * @dev An uint value doesn't fit in an int of `bits` size.\\n     */\\n    error SafeCastOverflowedUintToInt(uint256 value);\\n\\n    /**\\n     * @dev Returns the downcasted uint248 from uint256, reverting on\\n     * overflow (when the input is greater than largest uint248).\\n     *\\n     * Counterpart to Solidity's `uint248` operator.\\n     *\\n     * Requirements:\\n     *\\n     * - input must fit into 248 bits\\n     */\\n    function toUint248(uint256 value) internal pure returns (uint248) {\\n        if (value > type(uint248).max) {\\n            revert SafeCastOverflowedUintDowncast(248, value);\\n        }\\n        return uint248(value);\\n    }\\n\\n    /**\\n     * @dev Returns the downcasted uint240 from uint256, reverting on\\n     * overflow (when the input is greater than largest uint240).\\n     *\\n     * Counterpart to Solidity's `uint240` operator.\\n     *\\n     * Requirements:\\n     *\\n     * - input must fit into 240 bits\\n     */\\n    function toUint240(uint256 value) internal pure returns (uint240) {\\n        if (value > type(uint240).max) {\\n            revert SafeCastOverflowedUintDowncast(240, value);\\n        }\\n        return uint240(value);\\n    }\\n\\n    /**\\n     * @dev Returns the downcasted uint232 from uint256, reverting on\\n     * overflow (when the input is greater than largest uint232).\\n     *\\n     * Counterpart to Solidity's `uint232` operator.\\n     *\\n     * Requirements:\\n     *\\n     * - input must fit into 232 bits\\n     */\\n    function toUint232(uint256 value) internal pure returns (uint232) {\\n        if (value > type(uint232).max) {\\n            revert SafeCastOverflowedUintDowncast(232, value);\\n        }\\n        return uint232(value);\\n    }\\n\\n    /**\\n     * @dev Returns the downcasted uint224 from uint256, reverting on\\n     * overflow (when the input is greater than largest uint224).\\n     *\\n     * Counterpart to Solidity's `uint224` operator.\\n     *\\n     * Requirements:\\n     *\\n     * - input must fit into 224 bits\\n     */\\n    function toUint224(uint256 value) internal pure returns (uint224) {\\n        if (value > type(uint224).max) {\\n            revert SafeCastOverflowedUintDowncast(224, value);\\n        }\\n        return uint224(value);\\n    }\\n\\n    /**\\n     * @dev Returns the downcasted uint216 from uint256, reverting on\\n     * overflow (when the input is greater than largest uint216).\\n     *\\n     * Counterpart to Solidity's `uint216` operator.\\n     *\\n     * Requirements:\\n     *\\n     * - input must fit into 216 bits\\n     */\\n    function toUint216(uint256 value) internal pure returns (uint216) {\\n        if (value > type(uint216).max) {\\n            revert SafeCastOverflowedUintDowncast(216, value);\\n        }\\n        return uint216(value);\\n    }\\n\\n    /**\\n     * @dev Returns the downcasted uint208 from uint256, reverting on\\n     * overflow (when the input is greater than largest uint208).\\n     *\\n     * Counterpart to Solidity's `uint208` operator.\\n     *\\n     * Requirements:\\n     *\\n     * - input must fit into 208 bits\\n     */\\n    function toUint208(uint256 value) internal pure returns (uint208) {\\n        if (value > type(uint208).max) {\\n            revert SafeCastOverflowedUintDowncast(208, value);\\n        }\\n        return uint208(value);\\n    }\\n\\n    /**\\n     * @dev Returns the downcasted uint200 from uint256, reverting on\\n     * overflow (when the input is greater than largest uint200).\\n     *\\n     * Counterpart to Solidity's `uint200` operator.\\n     *\\n     * Requirements:\\n     *\\n     * - input must fit into 200 bits\\n     */\\n    function toUint200(uint256 value) internal pure returns (uint200) {\\n        if (value > type(uint200).max) {\\n            revert SafeCastOverflowedUintDowncast(200, value);\\n        }\\n        return uint200(value);\\n    }\\n\\n    /**\\n     * @dev Returns the downcasted uint192 from uint256, reverting on\\n     * overflow (when the input is greater than largest uint192).\\n     *\\n     * Counterpart to Solidity's `uint192` operator.\\n     *\\n     * Requirements:\\n     *\\n     * - input must fit into 192 bits\\n     */\\n    function toUint192(uint256 value) internal pure returns (uint192) {\\n        if (value > type(uint192).max) {\\n            revert SafeCastOverflowedUintDowncast(192, value);\\n        }\\n        return uint192(value);\\n    }\\n\\n    /**\\n     * @dev Returns the downcasted uint184 from uint256, reverting on\\n     * overflow (when the input is greater than largest uint184).\\n     *\\n     * Counterpart to Solidity's `uint184` operator.\\n     *\\n     * Requirements:\\n     *\\n     * - input must fit into 184 bits\\n     */\\n    function toUint184(uint256 value) internal pure returns (uint184) {\\n        if (value > type(uint184).max) {\\n            revert SafeCastOverflowedUintDowncast(184, value);\\n        }\\n        return uint184(value);\\n    }\\n\\n    /**\\n     * @dev Returns the downcasted uint176 from uint256, reverting on\\n     * overflow (when the input is greater than largest uint176).\\n     *\\n     * Counterpart to Solidity's `uint176` operator.\\n     *\\n     * Requirements:\\n     *\\n     * - input must fit into 176 bits\\n     */\\n    function toUint176(uint256 value) internal pure returns (uint176) {\\n        if (value > type(uint176).max) {\\n            revert SafeCastOverflowedUintDowncast(176, value);\\n        }\\n        return uint176(value);\\n    }\\n\\n    /**\\n     * @dev Returns the downcasted uint168 from uint256, reverting on\\n     * overflow (when the input is greater than largest uint168).\\n     *\\n     * Counterpart to Solidity's `uint168` operator.\\n     *\\n     * Requirements:\\n     *\\n     * - input must fit into 168 bits\\n     */\\n    function toUint168(uint256 value) internal pure returns (uint168) {\\n        if (value > type(uint168).max) {\\n            revert SafeCastOverflowedUintDowncast(168, value);\\n        }\\n        return uint168(value);\\n    }\\n\\n    /**\\n     * @dev Returns the downcasted uint160 from uint256, reverting on\\n     * overflow (when the input is greater than largest uint160).\\n     *\\n     * Counterpart to Solidity's `uint160` operator.\\n     *\\n     * Requirements:\\n     *\\n     * - input must fit into 160 bits\\n     */\\n    function toUint160(uint256 value) internal pure returns (uint160) {\\n        if (value > type(uint160).max) {\\n            revert SafeCastOverflowedUintDowncast(160, value);\\n        }\\n        return uint160(value);\\n    }\\n\\n    /**\\n     * @dev Returns the downcasted uint152 from uint256, reverting on\\n     * overflow (when the input is greater than largest uint152).\\n     *\\n     * Counterpart to Solidity's `uint152` operator.\\n     *\\n     * Requirements:\\n     *\\n     * - input must fit into 152 bits\\n     */\\n    function toUint152(uint256 value) internal pure returns (uint152) {\\n        if (value > type(uint152).max) {\\n            revert SafeCastOverflowedUintDowncast(152, value);\\n        }\\n        return uint152(value);\\n    }\\n\\n    /**\\n     * @dev Returns the downcasted uint144 from uint256, reverting on\\n     * overflow (when the input is greater than largest uint144).\\n     *\\n     * Counterpart to Solidity's `uint144` operator.\\n     *\\n     * Requirements:\\n     *\\n     * - input must fit into 144 bits\\n     */\\n    function toUint144(uint256 value) internal pure returns (uint144) {\\n        if (value > type(uint144).max) {\\n            revert SafeCastOverflowedUintDowncast(144, value);\\n        }\\n        return uint144(value);\\n    }\\n\\n    /**\\n     * @dev Returns the downcasted uint136 from uint256, reverting on\\n     * overflow (when the input is greater than largest uint136).\\n     *\\n     * Counterpart to Solidity's `uint136` operator.\\n     *\\n     * Requirements:\\n     *\\n     * - input must fit into 136 bits\\n     */\\n    function toUint136(uint256 value) internal pure returns (uint136) {\\n        if (value > type(uint136).max) {\\n            revert SafeCastOverflowedUintDowncast(136, value);\\n        }\\n        return uint136(value);\\n    }\\n\\n    /**\\n     * @dev Returns the downcasted uint128 from uint256, reverting on\\n     * overflow (when the input is greater than largest uint128).\\n     *\\n     * Counterpart to Solidity's `uint128` operator.\\n     *\\n     * Requirements:\\n     *\\n     * - input must fit into 128 bits\\n     */\\n    function toUint128(uint256 value) internal pure returns (uint128) {\\n        if (value > type(uint128).max) {\\n            revert SafeCastOverflowedUintDowncast(128, value);\\n        }\\n        return uint128(value);\\n    }\\n\\n    /**\\n     * @dev Returns the downcasted uint120 from uint256, reverting on\\n     * overflow (when the input is greater than largest uint120).\\n     *\\n     * Counterpart to Solidity's `uint120` operator.\\n     *\\n     * Requirements:\\n     *\\n     * - input must fit into 120 bits\\n     */\\n    function toUint120(uint256 value) internal pure returns (uint120) {\\n        if (value > type(uint120).max) {\\n            revert SafeCastOverflowedUintDowncast(120, value);\\n        }\\n        return uint120(value);\\n    }\\n\\n    /**\\n     * @dev Returns the downcasted uint112 from uint256, reverting on\\n     * overflow (when the input is greater than largest uint112).\\n     *\\n     * Counterpart to Solidity's `uint112` operator.\\n     *\\n     * Requirements:\\n     *\\n     * - input must fit into 112 bits\\n     */\\n    function toUint112(uint256 value) internal pure returns (uint112) {\\n        if (value > type(uint112).max) {\\n            revert SafeCastOverflowedUintDowncast(112, value);\\n        }\\n        return uint112(value);\\n    }\\n\\n    /**\\n     * @dev Returns the downcasted uint104 from uint256, reverting on\\n     * overflow (when the input is greater than largest uint104).\\n     *\\n     * Counterpart to Solidity's `uint104` operator.\\n     *\\n     * Requirements:\\n     *\\n     * - input must fit into 104 bits\\n     */\\n    function toUint104(uint256 value) internal pure returns (uint104) {\\n        if (value > type(uint104).max) {\\n            revert SafeCastOverflowedUintDowncast(104, value);\\n        }\\n        return uint104(value);\\n    }\\n\\n    /**\\n     * @dev Returns the downcasted uint96 from uint256, reverting on\\n     * overflow (when the input is greater than largest uint96).\\n     *\\n     * Counterpart to Solidity's `uint96` operator.\\n     *\\n     * Requirements:\\n     *\\n     * - input must fit into 96 bits\\n     */\\n    function toUint96(uint256 value) internal pure returns (uint96) {\\n        if (value > type(uint96).max) {\\n            revert SafeCastOverflowedUintDowncast(96, value);\\n        }\\n        return uint96(value);\\n    }\\n\\n    /**\\n     * @dev Returns the downcasted uint88 from uint256, reverting on\\n     * overflow (when the input is greater than largest uint88).\\n     *\\n     * Counterpart to Solidity's `uint88` operator.\\n     *\\n     * Requirements:\\n     *\\n     * - input must fit into 88 bits\\n     */\\n    function toUint88(uint256 value) internal pure returns (uint88) {\\n        if (value > type(uint88).max) {\\n            revert SafeCastOverflowedUintDowncast(88, value);\\n        }\\n        return uint88(value);\\n    }\\n\\n    /**\\n     * @dev Returns the downcasted uint80 from uint256, reverting on\\n     * overflow (when the input is greater than largest uint80).\\n     *\\n     * Counterpart to Solidity's `uint80` operator.\\n     *\\n     * Requirements:\\n     *\\n     * - input must fit into 80 bits\\n     */\\n    function toUint80(uint256 value) internal pure returns (uint80) {\\n        if (value > type(uint80).max) {\\n            revert SafeCastOverflowedUintDowncast(80, value);\\n        }\\n        return uint80(value);\\n    }\\n\\n    /**\\n     * @dev Returns the downcasted uint72 from uint256, reverting on\\n     * overflow (when the input is greater than largest uint72).\\n     *\\n     * Counterpart to Solidity's `uint72` operator.\\n     *\\n     * Requirements:\\n     *\\n     * - input must fit into 72 bits\\n     */\\n    function toUint72(uint256 value) internal pure returns (uint72) {\\n        if (value > type(uint72).max) {\\n            revert SafeCastOverflowedUintDowncast(72, value);\\n        }\\n        return uint72(value);\\n    }\\n\\n    /**\\n     * @dev Returns the downcasted uint64 from uint256, reverting on\\n     * overflow (when the input is greater than largest uint64).\\n     *\\n     * Counterpart to Solidity's `uint64` operator.\\n     *\\n     * Requirements:\\n     *\\n     * - input must fit into 64 bits\\n     */\\n    function toUint64(uint256 value) internal pure returns (uint64) {\\n        if (value > type(uint64).max) {\\n            revert SafeCastOverflowedUintDowncast(64, value);\\n        }\\n        return uint64(value);\\n    }\\n\\n    /**\\n     * @dev Returns the downcasted uint56 from uint256, reverting on\\n     * overflow (when the input is greater than largest uint56).\\n     *\\n     * Counterpart to Solidity's `uint56` operator.\\n     *\\n     * Requirements:\\n     *\\n     * - input must fit into 56 bits\\n     */\\n    function toUint56(uint256 value) internal pure returns (uint56) {\\n        if (value > type(uint56).max) {\\n            revert SafeCastOverflowedUintDowncast(56, value);\\n        }\\n        return uint56(value);\\n    }\\n\\n    /**\\n     * @dev Returns the downcasted uint48 from uint256, reverting on\\n     * overflow (when the input is greater than largest uint48).\\n     *\\n     * Counterpart to Solidity's `uint48` operator.\\n     *\\n     * Requirements:\\n     *\\n     * - input must fit into 48 bits\\n     */\\n    function toUint48(uint256 value) internal pure returns (uint48) {\\n        if (value > type(uint48).max) {\\n            revert SafeCastOverflowedUintDowncast(48, value);\\n        }\\n        return uint48(value);\\n    }\\n\\n    /**\\n     * @dev Returns the downcasted uint40 from uint256, reverting on\\n     * overflow (when the input is greater than largest uint40).\\n     *\\n     * Counterpart to Solidity's `uint40` operator.\\n     *\\n     * Requirements:\\n     *\\n     * - input must fit into 40 bits\\n     */\\n    function toUint40(uint256 value) internal pure returns (uint40) {\\n        if (value > type(uint40).max) {\\n            revert SafeCastOverflowedUintDowncast(40, value);\\n        }\\n        return uint40(value);\\n    }\\n\\n    /**\\n     * @dev Returns the downcasted uint32 from uint256, reverting on\\n     * overflow (when the input is greater than largest uint32).\\n     *\\n     * Counterpart to Solidity's `uint32` operator.\\n     *\\n     * Requirements:\\n     *\\n     * - input must fit into 32 bits\\n     */\\n    function toUint32(uint256 value) internal pure returns (uint32) {\\n        if (value > type(uint32).max) {\\n            revert SafeCastOverflowedUintDowncast(32, value);\\n        }\\n        return uint32(value);\\n    }\\n\\n    /**\\n     * @dev Returns the downcasted uint24 from uint256, reverting on\\n     * overflow (when the input is greater than largest uint24).\\n     *\\n     * Counterpart to Solidity's `uint24` operator.\\n     *\\n     * Requirements:\\n     *\\n     * - input must fit into 24 bits\\n     */\\n    function toUint24(uint256 value) internal pure returns (uint24) {\\n        if (value > type(uint24).max) {\\n            revert SafeCastOverflowedUintDowncast(24, value);\\n        }\\n        return uint24(value);\\n    }\\n\\n    /**\\n     * @dev Returns the downcasted uint16 from uint256, reverting on\\n     * overflow (when the input is greater than largest uint16).\\n     *\\n     * Counterpart to Solidity's `uint16` operator.\\n     *\\n     * Requirements:\\n     *\\n     * - input must fit into 16 bits\\n     */\\n    function toUint16(uint256 value) internal pure returns (uint16) {\\n        if (value > type(uint16).max) {\\n            revert SafeCastOverflowedUintDowncast(16, value);\\n        }\\n        return uint16(value);\\n    }\\n\\n    /**\\n     * @dev Returns the downcasted uint8 from uint256, reverting on\\n     * overflow (when the input is greater than largest uint8).\\n     *\\n     * Counterpart to Solidity's `uint8` operator.\\n     *\\n     * Requirements:\\n     *\\n     * - input must fit into 8 bits\\n     */\\n    function toUint8(uint256 value) internal pure returns (uint8) {\\n        if (value > type(uint8).max) {\\n            revert SafeCastOverflowedUintDowncast(8, value);\\n        }\\n        return uint8(value);\\n    }\\n\\n    /**\\n     * @dev Converts a signed int256 into an unsigned uint256.\\n     *\\n     * Requirements:\\n     *\\n     * - input must be greater than or equal to 0.\\n     */\\n    function toUint256(int256 value) internal pure returns (uint256) {\\n        if (value < 0) {\\n            revert SafeCastOverflowedIntToUint(value);\\n        }\\n        return uint256(value);\\n    }\\n\\n    /**\\n     * @dev Returns the downcasted int248 from int256, reverting on\\n     * overflow (when the input is less than smallest int248 or\\n     * greater than largest int248).\\n     *\\n     * Counterpart to Solidity's `int248` operator.\\n     *\\n     * Requirements:\\n     *\\n     * - input must fit into 248 bits\\n     */\\n    function toInt248(int256 value) internal pure returns (int248 downcasted) {\\n        downcasted = int248(value);\\n        if (downcasted != value) {\\n            revert SafeCastOverflowedIntDowncast(248, value);\\n        }\\n    }\\n\\n    /**\\n     * @dev Returns the downcasted int240 from int256, reverting on\\n     * overflow (when the input is less than smallest int240 or\\n     * greater than largest int240).\\n     *\\n     * Counterpart to Solidity's `int240` operator.\\n     *\\n     * Requirements:\\n     *\\n     * - input must fit into 240 bits\\n     */\\n    function toInt240(int256 value) internal pure returns (int240 downcasted) {\\n        downcasted = int240(value);\\n        if (downcasted != value) {\\n            revert SafeCastOverflowedIntDowncast(240, value);\\n        }\\n    }\\n\\n    /**\\n     * @dev Returns the downcasted int232 from int256, reverting on\\n     * overflow (when the input is less than smallest int232 or\\n     * greater than largest int232).\\n     *\\n     * Counterpart to Solidity's `int232` operator.\\n     *\\n     * Requirements:\\n     *\\n     * - input must fit into 232 bits\\n     */\\n    function toInt232(int256 value) internal pure returns (int232 downcasted) {\\n        downcasted = int232(value);\\n        if (downcasted != value) {\\n            revert SafeCastOverflowedIntDowncast(232, value);\\n        }\\n    }\\n\\n    /**\\n     * @dev Returns the downcasted int224 from int256, reverting on\\n     * overflow (when the input is less than smallest int224 or\\n     * greater than largest int224).\\n     *\\n     * Counterpart to Solidity's `int224` operator.\\n     *\\n     * Requirements:\\n     *\\n     * - input must fit into 224 bits\\n     */\\n    function toInt224(int256 value) internal pure returns (int224 downcasted) {\\n        downcasted = int224(value);\\n        if (downcasted != value) {\\n            revert SafeCastOverflowedIntDowncast(224, value);\\n        }\\n    }\\n\\n    /**\\n     * @dev Returns the downcasted int216 from int256, reverting on\\n     * overflow (when the input is less than smallest int216 or\\n     * greater than largest int216).\\n     *\\n     * Counterpart to Solidity's `int216` operator.\\n     *\\n     * Requirements:\\n     *\\n     * - input must fit into 216 bits\\n     */\\n    function toInt216(int256 value) internal pure returns (int216 downcasted) {\\n        downcasted = int216(value);\\n        if (downcasted != value) {\\n            revert SafeCastOverflowedIntDowncast(216, value);\\n        }\\n    }\\n\\n    /**\\n     * @dev Returns the downcasted int208 from int256, reverting on\\n     * overflow (when the input is less than smallest int208 or\\n     * greater than largest int208).\\n     *\\n     * Counterpart to Solidity's `int208` operator.\\n     *\\n     * Requirements:\\n     *\\n     * - input must fit into 208 bits\\n     */\\n    function toInt208(int256 value) internal pure returns (int208 downcasted) {\\n        downcasted = int208(value);\\n        if (downcasted != value) {\\n            revert SafeCastOverflowedIntDowncast(208, value);\\n        }\\n    }\\n\\n    /**\\n     * @dev Returns the downcasted int200 from int256, reverting on\\n     * overflow (when the input is less than smallest int200 or\\n     * greater than largest int200).\\n     *\\n     * Counterpart to Solidity's `int200` operator.\\n     *\\n     * Requirements:\\n     *\\n     * - input must fit into 200 bits\\n     */\\n    function toInt200(int256 value) internal pure returns (int200 downcasted) {\\n        downcasted = int200(value);\\n        if (downcasted != value) {\\n            revert SafeCastOverflowedIntDowncast(200, value);\\n        }\\n    }\\n\\n    /**\\n     * @dev Returns the downcasted int192 from int256, reverting on\\n     * overflow (when the input is less than smallest int192 or\\n     * greater than largest int192).\\n     *\\n     * Counterpart to Solidity's `int192` operator.\\n     *\\n     * Requirements:\\n     *\\n     * - input must fit into 192 bits\\n     */\\n    function toInt192(int256 value) internal pure returns (int192 downcasted) {\\n        downcasted = int192(value);\\n        if (downcasted != value) {\\n            revert SafeCastOverflowedIntDowncast(192, value);\\n        }\\n    }\\n\\n    /**\\n     * @dev Returns the downcasted int184 from int256, reverting on\\n     * overflow (when the input is less than smallest int184 or\\n     * greater than largest int184).\\n     *\\n     * Counterpart to Solidity's `int184` operator.\\n     *\\n     * Requirements:\\n     *\\n     * - input must fit into 184 bits\\n     */\\n    function toInt184(int256 value) internal pure returns (int184 downcasted) {\\n        downcasted = int184(value);\\n        if (downcasted != value) {\\n            revert SafeCastOverflowedIntDowncast(184, value);\\n        }\\n    }\\n\\n    /**\\n     * @dev Returns the downcasted int176 from int256, reverting on\\n     * overflow (when the input is less than smallest int176 or\\n     * greater than largest int176).\\n     *\\n     * Counterpart to Solidity's `int176` operator.\\n     *\\n     * Requirements:\\n     *\\n     * - input must fit into 176 bits\\n     */\\n    function toInt176(int256 value) internal pure returns (int176 downcasted) {\\n        downcasted = int176(value);\\n        if (downcasted != value) {\\n            revert SafeCastOverflowedIntDowncast(176, value);\\n        }\\n    }\\n\\n    /**\\n     * @dev Returns the downcasted int168 from int256, reverting on\\n     * overflow (when the input is less than smallest int168 or\\n     * greater than largest int168).\\n     *\\n     * Counterpart to Solidity's `int168` operator.\\n     *\\n     * Requirements:\\n     *\\n     * - input must fit into 168 bits\\n     */\\n    function toInt168(int256 value) internal pure returns (int168 downcasted) {\\n        downcasted = int168(value);\\n        if (downcasted != value) {\\n            revert SafeCastOverflowedIntDowncast(168, value);\\n        }\\n    }\\n\\n    /**\\n     * @dev Returns the downcasted int160 from int256, reverting on\\n     * overflow (when the input is less than smallest int160 or\\n     * greater than largest int160).\\n     *\\n     * Counterpart to Solidity's `int160` operator.\\n     *\\n     * Requirements:\\n     *\\n     * - input must fit into 160 bits\\n     */\\n    function toInt160(int256 value) internal pure returns (int160 downcasted) {\\n        downcasted = int160(value);\\n        if (downcasted != value) {\\n            revert SafeCastOverflowedIntDowncast(160, value);\\n        }\\n    }\\n\\n    /**\\n     * @dev Returns the downcasted int152 from int256, reverting on\\n     * overflow (when the input is less than smallest int152 or\\n     * greater than largest int152).\\n     *\\n     * Counterpart to Solidity's `int152` operator.\\n     *\\n     * Requirements:\\n     *\\n     * - input must fit into 152 bits\\n     */\\n    function toInt152(int256 value) internal pure returns (int152 downcasted) {\\n        downcasted = int152(value);\\n        if (downcasted != value) {\\n            revert SafeCastOverflowedIntDowncast(152, value);\\n        }\\n    }\\n\\n    /**\\n     * @dev Returns the downcasted int144 from int256, reverting on\\n     * overflow (when the input is less than smallest int144 or\\n     * greater than largest int144).\\n     *\\n     * Counterpart to Solidity's `int144` operator.\\n     *\\n     * Requirements:\\n     *\\n     * - input must fit into 144 bits\\n     */\\n    function toInt144(int256 value) internal pure returns (int144 downcasted) {\\n        downcasted = int144(value);\\n        if (downcasted != value) {\\n            revert SafeCastOverflowedIntDowncast(144, value);\\n        }\\n    }\\n\\n    /**\\n     * @dev Returns the downcasted int136 from int256, reverting on\\n     * overflow (when the input is less than smallest int136 or\\n     * greater than largest int136).\\n     *\\n     * Counterpart to Solidity's `int136` operator.\\n     *\\n     * Requirements:\\n     *\\n     * - input must fit into 136 bits\\n     */\\n    function toInt136(int256 value) internal pure returns (int136 downcasted) {\\n        downcasted = int136(value);\\n        if (downcasted != value) {\\n            revert SafeCastOverflowedIntDowncast(136, value);\\n        }\\n    }\\n\\n    /**\\n     * @dev Returns the downcasted int128 from int256, reverting on\\n     * overflow (when the input is less than smallest int128 or\\n     * greater than largest int128).\\n     *\\n     * Counterpart to Solidity's `int128` operator.\\n     *\\n     * Requirements:\\n     *\\n     * - input must fit into 128 bits\\n     */\\n    function toInt128(int256 value) internal pure returns (int128 downcasted) {\\n        downcasted = int128(value);\\n        if (downcasted != value) {\\n            revert SafeCastOverflowedIntDowncast(128, value);\\n        }\\n    }\\n\\n    /**\\n     * @dev Returns the downcasted int120 from int256, reverting on\\n     * overflow (when the input is less than smallest int120 or\\n     * greater than largest int120).\\n     *\\n     * Counterpart to Solidity's `int120` operator.\\n     *\\n     * Requirements:\\n     *\\n     * - input must fit into 120 bits\\n     */\\n    function toInt120(int256 value) internal pure returns (int120 downcasted) {\\n        downcasted = int120(value);\\n        if (downcasted != value) {\\n            revert SafeCastOverflowedIntDowncast(120, value);\\n        }\\n    }\\n\\n    /**\\n     * @dev Returns the downcasted int112 from int256, reverting on\\n     * overflow (when the input is less than smallest int112 or\\n     * greater than largest int112).\\n     *\\n     * Counterpart to Solidity's `int112` operator.\\n     *\\n     * Requirements:\\n     *\\n     * - input must fit into 112 bits\\n     */\\n    function toInt112(int256 value) internal pure returns (int112 downcasted) {\\n        downcasted = int112(value);\\n        if (downcasted != value) {\\n            revert SafeCastOverflowedIntDowncast(112, value);\\n        }\\n    }\\n\\n    /**\\n     * @dev Returns the downcasted int104 from int256, reverting on\\n     * overflow (when the input is less than smallest int104 or\\n     * greater than largest int104).\\n     *\\n     * Counterpart to Solidity's `int104` operator.\\n     *\\n     * Requirements:\\n     *\\n     * - input must fit into 104 bits\\n     */\\n    function toInt104(int256 value) internal pure returns (int104 downcasted) {\\n        downcasted = int104(value);\\n        if (downcasted != value) {\\n            revert SafeCastOverflowedIntDowncast(104, value);\\n        }\\n    }\\n\\n    /**\\n     * @dev Returns the downcasted int96 from int256, reverting on\\n     * overflow (when the input is less than smallest int96 or\\n     * greater than largest int96).\\n     *\\n     * Counterpart to Solidity's `int96` operator.\\n     *\\n     * Requirements:\\n     *\\n     * - input must fit into 96 bits\\n     */\\n    function toInt96(int256 value) internal pure returns (int96 downcasted) {\\n        downcasted = int96(value);\\n        if (downcasted != value) {\\n            revert SafeCastOverflowedIntDowncast(96, value);\\n        }\\n    }\\n\\n    /**\\n     * @dev Returns the downcasted int88 from int256, reverting on\\n     * overflow (when the input is less than smallest int88 or\\n     * greater than largest int88).\\n     *\\n     * Counterpart to Solidity's `int88` operator.\\n     *\\n     * Requirements:\\n     *\\n     * - input must fit into 88 bits\\n     */\\n    function toInt88(int256 value) internal pure returns (int88 downcasted) {\\n        downcasted = int88(value);\\n        if (downcasted != value) {\\n            revert SafeCastOverflowedIntDowncast(88, value);\\n        }\\n    }\\n\\n    /**\\n     * @dev Returns the downcasted int80 from int256, reverting on\\n     * overflow (when the input is less than smallest int80 or\\n     * greater than largest int80).\\n     *\\n     * Counterpart to Solidity's `int80` operator.\\n     *\\n     * Requirements:\\n     *\\n     * - input must fit into 80 bits\\n     */\\n    function toInt80(int256 value) internal pure returns (int80 downcasted) {\\n        downcasted = int80(value);\\n        if (downcasted != value) {\\n            revert SafeCastOverflowedIntDowncast(80, value);\\n        }\\n    }\\n\\n    /**\\n     * @dev Returns the downcasted int72 from int256, reverting on\\n     * overflow (when the input is less than smallest int72 or\\n     * greater than largest int72).\\n     *\\n     * Counterpart to Solidity's `int72` operator.\\n     *\\n     * Requirements:\\n     *\\n     * - input must fit into 72 bits\\n     */\\n    function toInt72(int256 value) internal pure returns (int72 downcasted) {\\n        downcasted = int72(value);\\n        if (downcasted != value) {\\n            revert SafeCastOverflowedIntDowncast(72, value);\\n        }\\n    }\\n\\n    /**\\n     * @dev Returns the downcasted int64 from int256, reverting on\\n     * overflow (when the input is less than smallest int64 or\\n     * greater than largest int64).\\n     *\\n     * Counterpart to Solidity's `int64` operator.\\n     *\\n     * Requirements:\\n     *\\n     * - input must fit into 64 bits\\n     */\\n    function toInt64(int256 value) internal pure returns (int64 downcasted) {\\n        downcasted = int64(value);\\n        if (downcasted != value) {\\n            revert SafeCastOverflowedIntDowncast(64, value);\\n        }\\n    }\\n\\n    /**\\n     * @dev Returns the downcasted int56 from int256, reverting on\\n     * overflow (when the input is less than smallest int56 or\\n     * greater than largest int56).\\n     *\\n     * Counterpart to Solidity's `int56` operator.\\n     *\\n     * Requirements:\\n     *\\n     * - input must fit into 56 bits\\n     */\\n    function toInt56(int256 value) internal pure returns (int56 downcasted) {\\n        downcasted = int56(value);\\n        if (downcasted != value) {\\n            revert SafeCastOverflowedIntDowncast(56, value);\\n        }\\n    }\\n\\n    /**\\n     * @dev Returns the downcasted int48 from int256, reverting on\\n     * overflow (when the input is less than smallest int48 or\\n     * greater than largest int48).\\n     *\\n     * Counterpart to Solidity's `int48` operator.\\n     *\\n     * Requirements:\\n     *\\n     * - input must fit into 48 bits\\n     */\\n    function toInt48(int256 value) internal pure returns (int48 downcasted) {\\n        downcasted = int48(value);\\n        if (downcasted != value) {\\n            revert SafeCastOverflowedIntDowncast(48, value);\\n        }\\n    }\\n\\n    /**\\n     * @dev Returns the downcasted int40 from int256, reverting on\\n     * overflow (when the input is less than smallest int40 or\\n     * greater than largest int40).\\n     *\\n     * Counterpart to Solidity's `int40` operator.\\n     *\\n     * Requirements:\\n     *\\n     * - input must fit into 40 bits\\n     */\\n    function toInt40(int256 value) internal pure returns (int40 downcasted) {\\n        downcasted = int40(value);\\n        if (downcasted != value) {\\n            revert SafeCastOverflowedIntDowncast(40, value);\\n        }\\n    }\\n\\n    /**\\n     * @dev Returns the downcasted int32 from int256, reverting on\\n     * overflow (when the input is less than smallest int32 or\\n     * greater than largest int32).\\n     *\\n     * Counterpart to Solidity's `int32` operator.\\n     *\\n     * Requirements:\\n     *\\n     * - input must fit into 32 bits\\n     */\\n    function toInt32(int256 value) internal pure returns (int32 downcasted) {\\n        downcasted = int32(value);\\n        if (downcasted != value) {\\n            revert SafeCastOverflowedIntDowncast(32, value);\\n        }\\n    }\\n\\n    /**\\n     * @dev Returns the downcasted int24 from int256, reverting on\\n     * overflow (when the input is less than smallest int24 or\\n     * greater than largest int24).\\n     *\\n     * Counterpart to Solidity's `int24` operator.\\n     *\\n     * Requirements:\\n     *\\n     * - input must fit into 24 bits\\n     */\\n    function toInt24(int256 value) internal pure returns (int24 downcasted) {\\n        downcasted = int24(value);\\n        if (downcasted != value) {\\n            revert SafeCastOverflowedIntDowncast(24, value);\\n        }\\n    }\\n\\n    /**\\n     * @dev Returns the downcasted int16 from int256, reverting on\\n     * overflow (when the input is less than smallest int16 or\\n     * greater than largest int16).\\n     *\\n     * Counterpart to Solidity's `int16` operator.\\n     *\\n     * Requirements:\\n     *\\n     * - input must fit into 16 bits\\n     */\\n    function toInt16(int256 value) internal pure returns (int16 downcasted) {\\n        downcasted = int16(value);\\n        if (downcasted != value) {\\n            revert SafeCastOverflowedIntDowncast(16, value);\\n        }\\n    }\\n\\n    /**\\n     * @dev Returns the downcasted int8 from int256, reverting on\\n     * overflow (when the input is less than smallest int8 or\\n     * greater than largest int8).\\n     *\\n     * Counterpart to Solidity's `int8` operator.\\n     *\\n     * Requirements:\\n     *\\n     * - input must fit into 8 bits\\n     */\\n    function toInt8(int256 value) internal pure returns (int8 downcasted) {\\n        downcasted = int8(value);\\n        if (downcasted != value) {\\n            revert SafeCastOverflowedIntDowncast(8, value);\\n        }\\n    }\\n\\n    /**\\n     * @dev Converts an unsigned uint256 into a signed int256.\\n     *\\n     * Requirements:\\n     *\\n     * - input must be less than or equal to maxInt256.\\n     */\\n    function toInt256(uint256 value) internal pure returns (int256) {\\n        // Note: Unsafe cast below is okay because `type(int256).max` is guaranteed to be positive\\n        if (value > uint256(type(int256).max)) {\\n            revert SafeCastOverflowedUintToInt(value);\\n        }\\n        return int256(value);\\n    }\\n\\n    /**\\n     * @dev Cast a boolean (false or true) to a uint256 (0 or 1) with no jump.\\n     */\\n    function toUint(bool b) internal pure returns (uint256 u) {\\n        assembly (\\\"memory-safe\\\") {\\n            u := iszero(iszero(b))\\n        }\\n    }\\n}\\n\"},\"lib/openzeppelin-contracts/contracts/utils/math/SignedMath.sol\":{\"content\":\"// SPDX-License-Identifier: MIT\\n// OpenZeppelin Contracts (last updated v5.1.0) (utils/math/SignedMath.sol)\\n\\npragma solidity ^0.8.20;\\n\\nimport {SafeCast} from \\\"./SafeCast.sol\\\";\\n\\n/**\\n * @dev Standard signed math utilities missing in the Solidity language.\\n */\\nlibrary SignedMath {\\n    /**\\n     * @dev Branchless ternary evaluation for `a ? b : c`. Gas costs are constant.\\n     *\\n     * IMPORTANT: This function may reduce bytecode size and consume less gas when used standalone.\\n     * However, the compiler may optimize Solidity ternary operations (i.e. `a ? b : c`) to only compute\\n     * one branch when needed, making this function more expensive.\\n     */\\n    function ternary(bool condition, int256 a, int256 b) internal pure returns (int256) {\\n        unchecked {\\n            // branchless ternary works because:\\n            // b ^ (a ^ b) == a\\n            // b ^ 0 == b\\n            return b ^ ((a ^ b) * int256(SafeCast.toUint(condition)));\\n        }\\n    }\\n\\n    /**\\n     * @dev Returns the largest of two signed numbers.\\n     */\\n    function max(int256 a, int256 b) internal pure returns (int256) {\\n        return ternary(a > b, a, b);\\n    }\\n\\n    /**\\n     * @dev Returns the smallest of two signed numbers.\\n     */\\n    function min(int256 a, int256 b) internal pure returns (int256) {\\n        return ternary(a < b, a, b);\\n    }\\n\\n    /**\\n     * @dev Returns the average of two signed numbers without overflow.\\n     * The result is rounded towards zero.\\n     */\\n    function average(int256 a, int256 b) internal pure returns (int256) {\\n        // Formula from the book \\\"Hacker's Delight\\\"\\n        int256 x = (a & b) + ((a ^ b) >> 1);\\n        return x + (int256(uint256(x) >> 255) & (a ^ b));\\n    }\\n\\n    /**\\n     * @dev Returns the absolute unsigned value of a signed value.\\n     */\\n    function abs(int256 n) internal pure returns (uint256) {\\n        unchecked {\\n            // Formula from the \\\"Bit Twiddling Hacks\\\" by Sean Eron Anderson.\\n            // Since `n` is a signed integer, the generated bytecode will use the SAR opcode to perform the right shift,\\n            // taking advantage of the most significant (or \\\"sign\\\" bit) in two's complement representation.\\n            // This opcode adds new most significant bits set to the value of the previous most significant bit. As a result,\\n            // the mask will either be `bytes32(0)` (if n is positive) or `~bytes32(0)` (if n is negative).\\n            int256 mask = n >> 255;\\n\\n            // A `bytes32(0)` mask leaves the input unchanged, while a `~bytes32(0)` mask complements it.\\n            return uint256((n + mask) ^ mask);\\n        }\\n    }\\n}\\n\"},\"lib/layerzero-v2/packages/layerzero-v2/evm/protocol/contracts/interfaces/ILayerZeroReceiver.sol\":{\"content\":\"// SPDX-License-Identifier: MIT\\n\\npragma solidity >=0.8.0;\\n\\nimport { Origin } from \\\"./ILayerZeroEndpointV2.sol\\\";\\n\\ninterface ILayerZeroReceiver {\\n    function allowInitializePath(Origin calldata _origin) external view returns (bool);\\n\\n    function nextNonce(uint32 _eid, bytes32 _sender) external view returns (uint64);\\n\\n    function lzReceive(\\n        Origin calldata _origin,\\n        bytes32 _guid,\\n        bytes calldata _message,\\n        address _executor,\\n        bytes calldata _extraData\\n    ) external payable;\\n}\\n\"},\"lib/layerzero-v2/packages/layerzero-v2/evm/protocol/contracts/messagelib/libs/PacketV1Codec.sol\":{\"content\":\"// SPDX-License-Identifier: LZBL-1.2\\n\\npragma solidity ^0.8.20;\\n\\nimport { Packet } from \\\"../../interfaces/ISendLib.sol\\\";\\nimport { AddressCast } from \\\"../../libs/AddressCast.sol\\\";\\n\\nlibrary PacketV1Codec {\\n    using AddressCast for address;\\n    using AddressCast for bytes32;\\n\\n    uint8 internal constant PACKET_VERSION = 1;\\n\\n    // header (version + nonce + path)\\n    // version\\n    uint256 private constant PACKET_VERSION_OFFSET = 0;\\n    //    nonce\\n    uint256 private constant NONCE_OFFSET = 1;\\n    //    path\\n    uint256 private constant SRC_EID_OFFSET = 9;\\n    uint256 private constant SENDER_OFFSET = 13;\\n    uint256 private constant DST_EID_OFFSET = 45;\\n    uint256 private constant RECEIVER_OFFSET = 49;\\n    // payload (guid + message)\\n    uint256 private constant GUID_OFFSET = 81; // keccak256(nonce + path)\\n    uint256 private constant MESSAGE_OFFSET = 113;\\n\\n    function encode(Packet memory _packet) internal pure returns (bytes memory encodedPacket) {\\n        encodedPacket = abi.encodePacked(\\n            PACKET_VERSION,\\n            _packet.nonce,\\n            _packet.srcEid,\\n            _packet.sender.toBytes32(),\\n            _packet.dstEid,\\n            _packet.receiver,\\n            _packet.guid,\\n            _packet.message\\n        );\\n    }\\n\\n    function encodePacketHeader(Packet memory _packet) internal pure returns (bytes memory) {\\n        return\\n            abi.encodePacked(\\n                PACKET_VERSION,\\n                _packet.nonce,\\n                _packet.srcEid,\\n                _packet.sender.toBytes32(),\\n                _packet.dstEid,\\n                _packet.receiver\\n            );\\n    }\\n\\n    function encodePayload(Packet memory _packet) internal pure returns (bytes memory) {\\n        return abi.encodePacked(_packet.guid, _packet.message);\\n    }\\n\\n    function header(bytes calldata _packet) internal pure returns (bytes calldata) {\\n        return _packet[0:GUID_OFFSET];\\n    }\\n\\n    function version(bytes calldata _packet) internal pure returns (uint8) {\\n        return uint8(bytes1(_packet[PACKET_VERSION_OFFSET:NONCE_OFFSET]));\\n    }\\n\\n    function nonce(bytes calldata _packet) internal pure returns (uint64) {\\n        return uint64(bytes8(_packet[NONCE_OFFSET:SRC_EID_OFFSET]));\\n    }\\n\\n    function srcEid(bytes calldata _packet) internal pure returns (uint32) {\\n        return uint32(bytes4(_packet[SRC_EID_OFFSET:SENDER_OFFSET]));\\n    }\\n\\n    function sender(bytes calldata _packet) internal pure returns (bytes32) {\\n        return bytes32(_packet[SENDER_OFFSET:DST_EID_OFFSET]);\\n    }\\n\\n    function senderAddressB20(bytes calldata _packet) internal pure returns (address) {\\n        return sender(_packet).toAddress();\\n    }\\n\\n    function dstEid(bytes calldata _packet) internal pure returns (uint32) {\\n        return uint32(bytes4(_packet[DST_EID_OFFSET:RECEIVER_OFFSET]));\\n    }\\n\\n    function receiver(bytes calldata _packet) internal pure returns (bytes32) {\\n        return bytes32(_packet[RECEIVER_OFFSET:GUID_OFFSET]);\\n    }\\n\\n    function receiverB20(bytes calldata _packet) internal pure returns (address) {\\n        return receiver(_packet).toAddress();\\n    }\\n\\n    function guid(bytes calldata _packet) internal pure returns (bytes32) {\\n        return bytes32(_packet[GUID_OFFSET:MESSAGE_OFFSET]);\\n    }\\n\\n    function message(bytes calldata _packet) internal pure returns (bytes calldata) {\\n        return bytes(_packet[MESSAGE_OFFSET:]);\\n    }\\n\\n    function payload(bytes calldata _packet) internal pure returns (bytes calldata) {\\n        return bytes(_packet[GUID_OFFSET:]);\\n    }\\n\\n    function payloadHash(bytes calldata _packet) internal pure returns (bytes32) {\\n        return keccak256(payload(_packet));\\n    }\\n}\\n\"},\"lib/openzeppelin-contracts/contracts/utils/Panic.sol\":{\"content\":\"// SPDX-License-Identifier: MIT\\n// OpenZeppelin Contracts (last updated v5.1.0) (utils/Panic.sol)\\n\\npragma solidity ^0.8.20;\\n\\n/**\\n * @dev Helper library for emitting standardized panic codes.\\n *\\n * ```solidity\\n * contract Example {\\n *      using Panic for uint256;\\n *\\n *      // Use any of the declared internal constants\\n *      function foo() { Panic.GENERIC.panic(); }\\n *\\n *      // Alternatively\\n *      function foo() { Panic.panic(Panic.GENERIC); }\\n * }\\n * ```\\n *\\n * Follows the list from https://github.com/ethereum/solidity/blob/v0.8.24/libsolutil/ErrorCodes.h[libsolutil].\\n *\\n * _Available since v5.1._\\n */\\n// slither-disable-next-line unused-state\\nlibrary Panic {\\n    /// @dev generic / unspecified error\\n    uint256 internal constant GENERIC = 0x00;\\n    /// @dev used by the assert() builtin\\n    uint256 internal constant ASSERT = 0x01;\\n    /// @dev arithmetic underflow or overflow\\n    uint256 internal constant UNDER_OVERFLOW = 0x11;\\n    /// @dev division or modulo by zero\\n    uint256 internal constant DIVISION_BY_ZERO = 0x12;\\n    /// @dev enum conversion error\\n    uint256 internal constant ENUM_CONVERSION_ERROR = 0x21;\\n    /// @dev invalid encoding in storage\\n    uint256 internal constant STORAGE_ENCODING_ERROR = 0x22;\\n    /// @dev empty array pop\\n    uint256 internal constant EMPTY_ARRAY_POP = 0x31;\\n    /// @dev array out of bounds access\\n    uint256 internal constant ARRAY_OUT_OF_BOUNDS = 0x32;\\n    /// @dev resource error (too large allocation or too large array)\\n    uint256 internal constant RESOURCE_ERROR = 0x41;\\n    /// @dev calling invalid internal function\\n    uint256 internal constant INVALID_INTERNAL_FUNCTION = 0x51;\\n\\n    /// @dev Reverts with a panic code. Recommended to use with\\n    /// the internal constants with predefined codes.\\n    function panic(uint256 code) internal pure {\\n        assembly (\\\"memory-safe\\\") {\\n            mstore(0x00, 0x4e487b71)\\n            mstore(0x20, code)\\n            revert(0x1c, 0x24)\\n        }\\n    }\\n}\\n\"},\"lib/layerzero-v2/packages/layerzero-v2/evm/protocol/contracts/interfaces/ISendLib.sol\":{\"content\":\"// SPDX-License-Identifier: MIT\\n\\npragma solidity >=0.8.0;\\n\\nimport { MessagingFee } from \\\"./ILayerZeroEndpointV2.sol\\\";\\nimport { IMessageLib } from \\\"./IMessageLib.sol\\\";\\n\\nstruct Packet {\\n    uint64 nonce;\\n    uint32 srcEid;\\n    address sender;\\n    uint32 dstEid;\\n    bytes32 receiver;\\n    bytes32 guid;\\n    bytes message;\\n}\\n\\ninterface ISendLib is IMessageLib {\\n    function send(\\n        Packet calldata _packet,\\n        bytes calldata _options,\\n        bool _payInLzToken\\n    ) external returns (MessagingFee memory, bytes memory encodedPacket);\\n\\n    function quote(\\n        Packet calldata _packet,\\n        bytes calldata _options,\\n        bool _payInLzToken\\n    ) external view returns (MessagingFee memory);\\n\\n    function setTreasury(address _treasury) external;\\n\\n    function withdrawFee(address _to, uint256 _amount) external;\\n\\n    function withdrawLzTokenFee(address _lzToken, address _to, uint256 _amount) external;\\n}\\n\"},\"lib/layerzero-v2/packages/layerzero-v2/evm/protocol/contracts/libs/AddressCast.sol\":{\"content\":\"// SPDX-License-Identifier: LZBL-1.2\\n\\npragma solidity ^0.8.20;\\n\\nlibrary AddressCast {\\n    error AddressCast_InvalidSizeForAddress();\\n    error AddressCast_InvalidAddress();\\n\\n    function toBytes32(bytes calldata _addressBytes) internal pure returns (bytes32 result) {\\n        if (_addressBytes.length > 32) revert AddressCast_InvalidAddress();\\n        result = bytes32(_addressBytes);\\n        unchecked {\\n            uint256 offset = 32 - _addressBytes.length;\\n            result = result >> (offset * 8);\\n        }\\n    }\\n\\n    function toBytes32(address _address) internal pure returns (bytes32 result) {\\n        result = bytes32(uint256(uint160(_address)));\\n    }\\n\\n    function toBytes(bytes32 _addressBytes32, uint256 _size) internal pure returns (bytes memory result) {\\n        if (_size == 0 || _size > 32) revert AddressCast_InvalidSizeForAddress();\\n        result = new bytes(_size);\\n        unchecked {\\n            uint256 offset = 256 - _size * 8;\\n            assembly {\\n                mstore(add(result, 32), shl(offset, _addressBytes32))\\n            }\\n        }\\n    }\\n\\n    function toAddress(bytes32 _addressBytes32) internal pure returns (address result) {\\n        result = address(uint160(uint256(_addressBytes32)));\\n    }\\n\\n    function toAddress(bytes calldata _addressBytes) internal pure returns (address result) {\\n        if (_addressBytes.length != 20) revert AddressCast_InvalidAddress();\\n        result = address(bytes20(_addressBytes));\\n    }\\n}\\n\"},\"lib/layerzero-v2/packages/layerzero-v2/evm/protocol/contracts/interfaces/IMessageLib.sol\":{\"content\":\"// SPDX-License-Identifier: MIT\\n\\npragma solidity >=0.8.0;\\n\\nimport { IERC165 } from \\\"@openzeppelin/contracts/utils/introspection/IERC165.sol\\\";\\n\\nimport { SetConfigParam } from \\\"./IMessageLibManager.sol\\\";\\n\\nenum MessageLibType {\\n    Send,\\n    Receive,\\n    SendAndReceive\\n}\\n\\ninterface IMessageLib is IERC165 {\\n    function setConfig(address _oapp, SetConfigParam[] calldata _config) external;\\n\\n    function getConfig(uint32 _eid, address _oapp, uint32 _configType) external view returns (bytes memory config);\\n\\n    function isSupportedEid(uint32 _eid) external view returns (bool);\\n\\n    // message libs of same major version are compatible\\n    function version() external view returns (uint64 major, uint8 minor, uint8 endpointVersion);\\n\\n    function messageLibType() external view returns (MessageLibType);\\n}\\n\"}},\"settings\":{\"remappings\":[\"@openzeppelin/contracts-upgradeable/=lib/openzeppelin-contracts-upgradeable/contracts/\",\"@openzeppelin/contracts/=lib/openzeppelin-contracts/contracts/\",\"@createx/=lib/createx/src/\",\"ds-test/=lib/openzeppelin-contracts-upgradeable/lib/forge-std/lib/ds-test/src/\",\"erc4626-tests/=lib/openzeppelin-contracts-upgradeable/lib/erc4626-tests/\",\"forge-std/=lib/forge-std/src/\",\"murky/=lib/murky/\",\"openzeppelin-contracts-upgradeable/=lib/openzeppelin-contracts-upgradeable/\",\"openzeppelin-contracts/=lib/openzeppelin-contracts/\",\"openzeppelin-foundry-upgrades/=lib/openzeppelin-foundry-upgrades/src/\",\"openzeppelin/=lib/createx/lib/openzeppelin-contracts/contracts/\",\"@safe-smart-account/=lib/safe-smart-account/\",\"solady/=lib/createx/lib/solady/\",\"solidity-stringutils/=lib/openzeppelin-foundry-upgrades/lib/solidity-stringutils/\",\"@layerzerolabs/oft-evm/=lib/devtools/packages/oft-evm/\",\"@layerzerolabs/oapp-evm/=lib/devtools/packages/oapp-evm/\",\"@layerzerolabs/oapp-evm-upgradeable/=lib/devtools/packages/oapp-evm-upgradeable/\",\"@layerzerolabs/oft-evm-upgradeable/=lib/devtools/packages/oft-evm-upgradeable/\",\"@layerzerolabs/test-devtools-evm-foundry/=lib/devtools/packages/test-devtools-evm-foundry/\",\"@layerzerolabs/lz-evm-protocol-v2/=lib/layerzero-v2/packages/layerzero-v2/evm/protocol/\",\"@layerzerolabs/lz-evm-messagelib-v2/=lib/layerzero-v2/packages/layerzero-v2/evm/messagelib/\",\"solidity-bytes-utils/=lib/solidity-bytes-utils/\",\"LayerZero-v2/=lib/LayerZero-v2/\",\"devtools/=lib/devtools/packages/toolbox-foundry/src/\",\"halmos-cheatcodes/=lib/openzeppelin-contracts/lib/halmos-cheatcodes/src/\",\"safe-smart-account/=lib/safe-smart-account/\",\"solmate/=lib/solmate/src/\",\"v2-periphery/=lib/v2-periphery/contracts/\"],\"optimizer\":{\"enabled\":true,\"runs\":200},\"metadata\":{\"useLiteralContent\":false,\"bytecodeHash\":\"ipfs\",\"appendCBOR\":true},\"outputSelection\":{\"src/token/MOVETokenV2.sol\":{\"MOVETokenV2\":[\"*\"]}},\"evmVersion\":\"cancun\",\"viaIR\":false}}}","ABI":"[{\"inputs\":[{\"internalType\":\"address\",\"name\":\"_endpoint\",\"type\":\"address\"}],\"stateMutability\":\"nonpayable\",\"type\":\"constructor\"},{\"inputs\":[],\"name\":\"AccessControlBadConfirmation\",\"type\":\"error\"},{\"inputs\":[{\"internalType\":\"address\",\"name\":\"account\",\"type\":\"address\"},{\"internalType\":\"bytes32\",\"name\":\"neededRole\",\"type\":\"bytes32\"}],\"name\":\"AccessControlUnauthorizedAccount\",\"type\":\"error\"},{\"inputs\":[{\"internalType\":\"uint256\",\"name\":\"amountSD\",\"type\":\"uint256\"}],\"name\":\"AmountSDOverflowed\",\"type\":\"error\"},{\"inputs\":[],\"name\":\"ECDSAInvalidSignature\",\"type\":\"error\"},{\"inputs\":[{\"internalType\":\"uint256\",\"name\":\"length\",\"type\":\"uint256\"}],\"name\":\"ECDSAInvalidSignatureLength\",\"type\":\"error\"},{\"inputs\":[{\"internalType\":\"bytes32\",\"name\":\"s\",\"type\":\"bytes32\"}],\"name\":\"ECDSAInvalidSignatureS\",\"type\":\"error\"},{\"inputs\":[{\"internalType\":\"address\",\"name\":\"spender\",\"type\":\"address\"},{\"internalType\":\"uint256\",\"name\":\"allowance\",\"type\":\"uint256\"},{\"internalType\":\"uint256\",\"name\":\"needed\",\"type\":\"uint256\"}],\"name\":\"ERC20InsufficientAllowance\",\"type\":\"error\"},{\"inputs\":[{\"internalType\":\"address\",\"name\":\"sender\",\"type\":\"address\"},{\"internalType\":\"uint256\",\"name\":\"balance\",\"type\":\"uint256\"},{\"internalType\":\"uint256\",\"name\":\"needed\",\"type\":\"uint256\"}],\"name\":\"ERC20InsufficientBalance\",\"type\":\"error\"},{\"inputs\":[{\"internalType\":\"address\",\"name\":\"approver\",\"type\":\"address\"}],\"name\":\"ERC20InvalidApprover\",\"type\":\"error\"},{\"inputs\":[{\"internalType\":\"address\",\"name\":\"receiver\",\"type\":\"address\"}],\"name\":\"ERC20InvalidReceiver\",\"type\":\"error\"},{\"inputs\":[{\"internalType\":\"address\",\"name\":\"sender\",\"type\":\"address\"}],\"name\":\"ERC20InvalidSender\",\"type\":\"error\"},{\"inputs\":[{\"internalType\":\"address\",\"name\":\"spender\",\"type\":\"address\"}],\"name\":\"ERC20InvalidSpender\",\"type\":\"error\"},{\"inputs\":[{\"internalType\":\"uint256\",\"name\":\"deadline\",\"type\":\"uint256\"}],\"name\":\"ERC2612ExpiredSignature\",\"type\":\"error\"},{\"inputs\":[{\"internalType\":\"address\",\"name\":\"signer\",\"type\":\"address\"},{\"internalType\":\"address\",\"name\":\"owner\",\"type\":\"address\"}],\"name\":\"ERC2612InvalidSigner\",\"type\":\"error\"},{\"inputs\":[],\"name\":\"EnforcedPause\",\"type\":\"error\"},{\"inputs\":[],\"name\":\"ExpectedPause\",\"type\":\"error\"},{\"inputs\":[{\"internalType\":\"address\",\"name\":\"account\",\"type\":\"address\"},{\"internalType\":\"uint256\",\"name\":\"currentNonce\",\"type\":\"uint256\"}],\"name\":\"InvalidAccountNonce\",\"type\":\"error\"},{\"inputs\":[],\"name\":\"InvalidDelegate\",\"type\":\"error\"},{\"inputs\":[],\"name\":\"InvalidEndpointCall\",\"type\":\"error\"},{\"inputs\":[],\"name\":\"InvalidInitialization\",\"type\":\"error\"},{\"inputs\":[],\"name\":\"InvalidLocalDecimals\",\"type\":\"error\"},{\"inputs\":[{\"internalType\":\"bytes\",\"name\":\"options\",\"type\":\"bytes\"}],\"name\":\"InvalidOptions\",\"type\":\"error\"},{\"inputs\":[],\"name\":\"LzTokenUnavailable\",\"type\":\"error\"},{\"inputs\":[{\"internalType\":\"uint32\",\"name\":\"eid\",\"type\":\"uint32\"}],\"name\":\"NoPeer\",\"type\":\"error\"},{\"inputs\":[{\"internalType\":\"uint256\",\"name\":\"msgValue\",\"type\":\"uint256\"}],\"name\":\"NotEnoughNative\",\"type\":\"error\"},{\"inputs\":[],\"name\":\"NotInitializing\",\"type\":\"error\"},{\"inputs\":[{\"internalType\":\"address\",\"name\":\"addr\",\"type\":\"address\"}],\"name\":\"OnlyEndpoint\",\"type\":\"error\"},{\"inputs\":[{\"internalType\":\"uint32\",\"name\":\"eid\",\"type\":\"uint32\"},{\"internalType\":\"bytes32\",\"name\":\"sender\",\"type\":\"bytes32\"}],\"name\":\"OnlyPeer\",\"type\":\"error\"},{\"inputs\":[],\"name\":\"OnlySelf\",\"type\":\"error\"},{\"inputs\":[{\"internalType\":\"address\",\"name\":\"owner\",\"type\":\"address\"}],\"name\":\"OwnableInvalidOwner\",\"type\":\"error\"},{\"inputs\":[{\"internalType\":\"address\",\"name\":\"account\",\"type\":\"address\"}],\"name\":\"OwnableUnauthorizedAccount\",\"type\":\"error\"},{\"inputs\":[{\"internalType\":\"address\",\"name\":\"token\",\"type\":\"address\"}],\"name\":\"SafeERC20FailedOperation\",\"type\":\"error\"},{\"inputs\":[{\"internalType\":\"bytes\",\"name\":\"result\",\"type\":\"bytes\"}],\"name\":\"SimulationResult\",\"type\":\"error\"},{\"inputs\":[{\"internalType\":\"uint256\",\"name\":\"amountLD\",\"type\":\"uint256\"},{\"internalType\":\"uint256\",\"name\":\"minAmountLD\",\"type\":\"uint256\"}],\"name\":\"SlippageExceeded\",\"type\":\"error\"},{\"anonymous\":false,\"inputs\":[{\"indexed\":true,\"internalType\":\"address\",\"name\":\"owner\",\"type\":\"address\"},{\"indexed\":true,\"internalType\":\"address\",\"name\":\"spender\",\"type\":\"address\"},{\"indexed\":false,\"internalType\":\"uint256\",\"name\":\"value\",\"type\":\"uint256\"}],\"name\":\"Approval\",\"type\":\"event\"},{\"anonymous\":false,\"inputs\":[],\"name\":\"EIP712DomainChanged\",\"type\":\"event\"},{\"anonymous\":false,\"inputs\":[{\"components\":[{\"internalType\":\"uint32\",\"name\":\"eid\",\"type\":\"uint32\"},{\"internalType\":\"uint16\",\"name\":\"msgType\",\"type\":\"uint16\"},{\"internalType\":\"bytes\",\"name\":\"options\",\"type\":\"bytes\"}],\"indexed\":false,\"internalType\":\"struct 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\"type\":\"uint32\"},{\"internalType\":\"bytes32\",\"name\":\"sender\",\"type\":\"bytes32\"},{\"internalType\":\"uint64\",\"name\":\"nonce\",\"type\":\"uint64\"}],\"internalType\":\"struct Origin\",\"name\":\"origin\",\"type\":\"tuple\"}],\"name\":\"allowInitializePath\",\"outputs\":[{\"internalType\":\"bool\",\"name\":\"\",\"type\":\"bool\"}],\"stateMutability\":\"view\",\"type\":\"function\"},{\"inputs\":[{\"internalType\":\"address\",\"name\":\"owner\",\"type\":\"address\"},{\"internalType\":\"address\",\"name\":\"spender\",\"type\":\"address\"}],\"name\":\"allowance\",\"outputs\":[{\"internalType\":\"uint256\",\"name\":\"\",\"type\":\"uint256\"}],\"stateMutability\":\"view\",\"type\":\"function\"},{\"inputs\":[],\"name\":\"approvalRequired\",\"outputs\":[{\"internalType\":\"bool\",\"name\":\"\",\"type\":\"bool\"}],\"stateMutability\":\"pure\",\"type\":\"function\"},{\"inputs\":[{\"internalType\":\"address\",\"name\":\"spender\",\"type\":\"address\"},{\"internalType\":\"uint256\",\"name\":\"value\",\"type\":\"uint256\"}],\"name\":\"approve\",\"outputs\":[{\"internalType\":\"bool\",\"name\":\"\",\"type\":\"bool\"}],\"stateMutability\":\"nonpayable\",\"type\":\"function\"},{\"inputs\":[{\"internalType\":\"address\",\"name\":\"account\",\"type\":\"address\"}],\"name\":\"balanceOf\",\"outputs\":[{\"internalType\":\"uint256\",\"name\":\"\",\"type\":\"uint256\"}],\"stateMutability\":\"view\",\"type\":\"function\"},{\"inputs\":[{\"internalType\":\"uint32\",\"name\":\"_eid\",\"type\":\"uint32\"},{\"internalType\":\"uint16\",\"name\":\"_msgType\",\"type\":\"uint16\"},{\"internalType\":\"bytes\",\"name\":\"_extraOptions\",\"type\":\"bytes\"}],\"name\":\"combineOptions\",\"outputs\":[{\"internalType\":\"bytes\",\"name\":\"\",\"type\":\"bytes\"}],\"stateMutability\":\"view\",\"type\":\"function\"},{\"inputs\":[],\"name\":\"decimalConversionRate\",\"outputs\":[{\"internalType\":\"uint256\",\"name\":\"\",\"type\":\"uint256\"}],\"stateMutability\":\"view\",\"type\":\"function\"},{\"inputs\":[],\"name\":\"decimals\",\"outputs\":[{\"internalType\":\"uint8\",\"name\":\"\",\"type\":\"uint8\"}],\"stateMutability\":\"pure\",\"type\":\"function\"},{\"inputs\":[],\"name\":\"eip712Domain\",\"outputs\":[{\"internalType\":\"bytes1\",\"name\":\"fields\",\"type\":\"bytes1\"},{\"internalType\":\"string\",\"name\":\"name\",\"type\":\"string\"},{\"internalType\":\"string\",\"name\":\"version\",\"type\":\"string\"},{\"internalType\":\"uint256\",\"name\":\"chainId\",\"type\":\"uint256\"},{\"internalType\":\"address\",\"name\":\"verifyingContract\",\"type\":\"address\"},{\"internalType\":\"bytes32\",\"name\":\"salt\",\"type\":\"bytes32\"},{\"internalType\":\"uint256[]\",\"name\":\"extensions\",\"type\":\"uint256[]\"}],\"stateMutability\":\"view\",\"type\":\"function\"},{\"inputs\":[],\"name\":\"endpoint\",\"outputs\":[{\"internalType\":\"contract 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Origin\",\"name\":\"origin\",\"type\":\"tuple\"},{\"internalType\":\"uint32\",\"name\":\"dstEid\",\"type\":\"uint32\"},{\"internalType\":\"address\",\"name\":\"receiver\",\"type\":\"address\"},{\"internalType\":\"bytes32\",\"name\":\"guid\",\"type\":\"bytes32\"},{\"internalType\":\"uint256\",\"name\":\"value\",\"type\":\"uint256\"},{\"internalType\":\"address\",\"name\":\"executor\",\"type\":\"address\"},{\"internalType\":\"bytes\",\"name\":\"message\",\"type\":\"bytes\"},{\"internalType\":\"bytes\",\"name\":\"extraData\",\"type\":\"bytes\"}],\"internalType\":\"struct 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