ETH Price: $2,550.88 (-0.39%)

Transaction Decoder

Block:
22547066 at May-23-2025 05:30:23 PM +UTC
Transaction Fee:
0.000986215657781695 ETH $2.52
Gas Used:
412,093 Gas / 2.393187115 Gwei

Emitted Events:

102 FiatTokenProxy.0xddf252ad1be2c89b69c2b068fc378daa952ba7f163c4a11628f55a4df523b3ef( 0xddf252ad1be2c89b69c2b068fc378daa952ba7f163c4a11628f55a4df523b3ef, 0x000000000000000000000000b36aeebbe40fdaa025b6e6734dd515264d94c3ce, 0x00000000000000000000000074de5d4fcbf63e00296fd95d33236b9794016631, 0000000000000000000000000000000000000000000000000000000010642ac0 )
103 WETH9.Transfer( src=0xE0554a476A092703abdB3Ef35c80e0D76d32939F, dst=AggregationRouterV5, wad=105478678502811959 )
104 FiatTokenProxy.0xddf252ad1be2c89b69c2b068fc378daa952ba7f163c4a11628f55a4df523b3ef( 0xddf252ad1be2c89b69c2b068fc378daa952ba7f163c4a11628f55a4df523b3ef, 0x00000000000000000000000074de5d4fcbf63e00296fd95d33236b9794016631, 0x000000000000000000000000e0554a476a092703abdb3ef35c80e0d76d32939f, 00000000000000000000000000000000000000000000000000000000103f7356 )
105 0xe0554a476a092703abdb3ef35c80e0d76d32939f.0xc42079f94a6350d7e6235f29174924f928cc2ac818eb64fed8004e115fbcca67( 0xc42079f94a6350d7e6235f29174924f928cc2ac818eb64fed8004e115fbcca67, 0x0000000000000000000000001111111254eeb25477b68fb85ed929f73a960582, 0x0000000000000000000000001111111254eeb25477b68fb85ed929f73a960582, 00000000000000000000000000000000000000000000000000000000103f7356, fffffffffffffffffffffffffffffffffffffffffffffffffe8943b3647656c9, 0000000000000000000000000000000000004cd7c79c884e10292313c58fbeda, 0000000000000000000000000000000000000000000000000693fe7e12898f76, 0000000000000000000000000000000000000000000000000000000000030474 )
106 EventsHistory.0x940c4b3549ef0aaff95807dc27f62d88ca15532d1bf535d7d63800f40395d16c( 0x940c4b3549ef0aaff95807dc27f62d88ca15532d1bf535d7d63800f40395d16c, 0x000000000000000000000000c7cf089fb4bc91f1981df2285ca019ab09a5dd3b, 0x00000000000000000000000074de5d4fcbf63e00296fd95d33236b9794016631, 0x50524f5059000000000000000000000000000000000000000000000000000000, 00000000000000000000000000000000000000000000000000000006d64055ea, 0000000000000000000000000000000000000000000000000000000000000060, 0000000000000000000000000000000000000000000000000000000000000002, 0000000000000000000000000000000000000000000000000000000000000000 )
107 PropyToken.Transfer( from=UniswapV3Pool, to=Spender, value=29364344298 )
108 WETH9.Transfer( src=AggregationRouterV5, dst=UniswapV3Pool, wad=105478678502811959 )
109 UniswapV3Pool.Swap( sender=AggregationRouterV5, recipient=Spender, amount0=-29364344298, amount1=105478678502811959, sqrtPriceX96=149480333737795935993594145167676, liquidity=56007928632755803, tick=150859 )
110 FiatTokenProxy.0xddf252ad1be2c89b69c2b068fc378daa952ba7f163c4a11628f55a4df523b3ef( 0xddf252ad1be2c89b69c2b068fc378daa952ba7f163c4a11628f55a4df523b3ef, 0x00000000000000000000000074de5d4fcbf63e00296fd95d33236b9794016631, 0x0000000000000000000000002acf35c9a3f4c5c3f4c78ef5fb64c3ee82f07c45, 000000000000000000000000000000000000000000000000000000000024b76a )
111 EventsHistory.0x940c4b3549ef0aaff95807dc27f62d88ca15532d1bf535d7d63800f40395d16c( 0x940c4b3549ef0aaff95807dc27f62d88ca15532d1bf535d7d63800f40395d16c, 0x00000000000000000000000074de5d4fcbf63e00296fd95d33236b9794016631, 0x000000000000000000000000b36aeebbe40fdaa025b6e6734dd515264d94c3ce, 0x50524f5059000000000000000000000000000000000000000000000000000000, 00000000000000000000000000000000000000000000000000000006d64055ea, 0000000000000000000000000000000000000000000000000000000000000060, 0000000000000000000000000000000000000000000000000000000000000002, 0000000000000000000000000000000000000000000000000000000000000000 )
112 PropyToken.Transfer( from=Spender, to=[Sender] 0xb36aeebbe40fdaa025b6e6734dd515264d94c3ce, value=29364344298 )
113 MetaSwap.Swap( 0xbeee1e6e7fe307ddcf84b0a16137a4430ad5e2480fc4f4a8e250ab56ccd7630d, 0xf35f348d53012d52a5d39f9390d246956ac932d5778d2bb49e359dba4fa0896d, 0x000000000000000000000000b36aeebbe40fdaa025b6e6734dd515264d94c3ce )

Account State Difference:

  Address   Before After State Difference Code
0x331d0775...84c411F84
(beaverbuild)
18.307091502955887283 Eth18.307503595956711469 Eth0.000412093000824186
0xA0b86991...E3606eB48
0xB36AEebB...64d94c3CE
0.001407672574077077 Eth
Nonce: 6
0.000421456916295382 Eth
Nonce: 7
0.000986215657781695
0xC02aaA39...83C756Cc2
0xC7Cf089F...b09A5dd3B
(Uniswap V3: PRO)
0xE0554a47...76d32939F
(Uniswap V3: USDC 4)

Execution Trace

MetaSwap.swap( aggregatorId=oneInchV5FeeDynamic, tokenFrom=0xA0b86991c6218b36c1d19D4a2e9Eb0cE3606eB48, amount=275000000, data=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
  • FiatTokenProxy.23b872dd( )
    • FiatTokenV2_2.transferFrom( from=0xB36AEebBE40FDAA025B6e6734DD515264d94c3CE, to=0x74de5d4FCbf63E00296fd95d33236B9794016631, value=275000000 ) => ( True )
    • Spender.swap( adapter=0x7CDf68CE9A05413Cbb76cb7F80EAF415A826E313, data=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
      • 0x7cdf68ce9a05413cbb76cb7f80eaf415a826e313.92f5f037( )
        • FiatTokenProxy.dd62ed3e( )
          • FiatTokenV2_2.allowance( owner=0x74de5d4FCbf63E00296fd95d33236B9794016631, spender=0x1111111254EEB25477B68fb85Ed929f73A960582 ) => ( 115792089237316195423570985008687907853269984665640564039457583416096051820537 )
          • AggregationRouterV5.uniswapV3Swap( amount=272593750, minReturn=28745420873, pools=[1280715966616567847569911435392374870614587118495, 57896044618658097711785492505484660095528456182785311432806399036782207687995] ) => ( returnAmount=29364344298 )
            • Uniswap V3: USDC 4.128acb08( )
              • WETH9.transfer( dst=0x1111111254EEB25477B68fb85Ed929f73A960582, wad=105478678502811959 ) => ( True )
              • FiatTokenProxy.70a08231( )
                • FiatTokenV2_2.balanceOf( account=0xE0554a476A092703abdB3Ef35c80e0D76d32939F ) => ( 2425047854314 )
                • AggregationRouterV5.uniswapV3SwapCallback( amount0Delta=272593750, amount1Delta=-105478678502811959, 0x00000000000000000000000074DE5D4FCBF63E00296FD95D33236B9794016631 )
                  • Uniswap V3: USDC 4.STATICCALL( )
                  • Uniswap V3: USDC 4.STATICCALL( )
                  • Uniswap V3: USDC 4.STATICCALL( )
                  • FiatTokenProxy.23b872dd( )
                  • FiatTokenProxy.70a08231( )
                    • FiatTokenV2_2.balanceOf( account=0xE0554a476A092703abdB3Ef35c80e0D76d32939F ) => ( 2425320448064 )
                    • UniswapV3Pool.swap( recipient=0x74de5d4FCbf63E00296fd95d33236B9794016631, zeroForOne=False, amountSpecified=105478678502811959, sqrtPriceLimitX96=1461446703485210103287273052203988822378723970341, data=0x0000000000000000000000001111111254EEB25477B68FB85ED929F73A960582 ) => ( amount0=-29364344298, amount1=105478678502811959 )
                      • PropyToken.transfer( _to=0x74de5d4FCbf63E00296fd95d33236B9794016631, _value=29364344298 ) => ( True )
                        • AssetWithWhitelist._performTransferWithReference( _to=0x74de5d4FCbf63E00296fd95d33236B9794016631, _value=29364344298, _reference=, _sender=0xC7Cf089FB4BC91F1981dF2285ca019Ab09A5dd3B ) => ( True )
                        • WETH9.balanceOf( 0xC7Cf089FB4BC91F1981dF2285ca019Ab09A5dd3B ) => ( 76414114794324310132 )
                        • AggregationRouterV5.uniswapV3SwapCallback( amount0Delta=-29364344298, amount1Delta=105478678502811959, 0x0000000000000000000000001111111254EEB25477B68FB85ED929F73A960582 )
                          • UniswapV3Pool.STATICCALL( )
                          • UniswapV3Pool.STATICCALL( )
                          • UniswapV3Pool.STATICCALL( )
                          • WETH9.transfer( dst=0xC7Cf089FB4BC91F1981dF2285ca019Ab09A5dd3B, wad=105478678502811959 ) => ( True )
                          • WETH9.balanceOf( 0xC7Cf089FB4BC91F1981dF2285ca019Ab09A5dd3B ) => ( 76519593472827122091 )
                          • FiatTokenProxy.a9059cbb( )
                            • FiatTokenV2_2.transfer( to=0x2aCf35C9A3F4c5C3F4c78EF5Fb64c3EE82f07c45, value=2406250 ) => ( True )
                            • FiatTokenProxy.70a08231( )
                              • FiatTokenV2_2.balanceOf( account=0x74de5d4FCbf63E00296fd95d33236B9794016631 ) => ( 0 )
                              • PropyToken.balanceOf( _owner=0x74de5d4FCbf63E00296fd95d33236B9794016631 ) => ( 29364344298 )
                                • EToken2.balanceOf( _holder=0x74de5d4FCbf63E00296fd95d33236B9794016631, _symbol=50524F5059000000000000000000000000000000000000000000000000000000 ) => ( 29364344298 )
                                • PropyToken.transfer( _to=0xB36AEebBE40FDAA025B6e6734DD515264d94c3CE, _value=29364344298 ) => ( True )
                                  • AssetWithWhitelist._performTransferWithReference( _to=0xB36AEebBE40FDAA025B6e6734DD515264d94c3CE, _value=29364344298, _reference=, _sender=0x74de5d4FCbf63E00296fd95d33236B9794016631 ) => ( True )
                                    • PropyToken._forwardTransferFromWithReference( _from=0x74de5d4FCbf63E00296fd95d33236B9794016631, _to=0xB36AEebBE40FDAA025B6e6734DD515264d94c3CE, _value=29364344298, _reference=, _sender=0x74de5d4FCbf63E00296fd95d33236B9794016631 ) => ( True )
                                      • EToken2.proxyTransferFromWithReference( _from=0x74de5d4FCbf63E00296fd95d33236B9794016631, _to=0xB36AEebBE40FDAA025B6e6734DD515264d94c3CE, _value=29364344298, _symbol=50524F5059000000000000000000000000000000000000000000000000000000, _reference=, _sender=0x74de5d4FCbf63E00296fd95d33236B9794016631 ) => ( True )
                                        File 1 of 11: MetaSwap
                                        pragma solidity ^0.6.0;
                                        import "@openzeppelin/contracts/token/ERC20/IERC20.sol";
                                        import "@openzeppelin/contracts/token/ERC20/SafeERC20.sol";
                                        import "@openzeppelin/contracts/utils/Address.sol";
                                        import "../Constants.sol";
                                        contract CommonAdapter {
                                            using SafeERC20 for IERC20;
                                            using Address for address;
                                            using Address for address payable;
                                            /**
                                             * @dev Performs a swap
                                             * @param recipient The original msg.sender performing the swap
                                             * @param aggregator Address of the aggregator's contract
                                             * @param spender Address to which tokens will be approved
                                             * @param method Selector of the function to be called in the aggregator's contract
                                             * @param tokenFrom Token to be swapped
                                             * @param tokenTo Token to be received
                                             * @param amountFrom Amount of tokenFrom to swap
                                             * @param amountTo Minimum amount of tokenTo to receive
                                             * @param data Data used for the call made to the aggregator's contract
                                             */
                                            function swap(
                                                address payable recipient,
                                                address aggregator,
                                                address spender,
                                                bytes4 method,
                                                IERC20 tokenFrom,
                                                IERC20 tokenTo,
                                                uint256 amountFrom,
                                                uint256 amountTo,
                                                bytes calldata data
                                            ) external payable {
                                                require(tokenFrom != tokenTo, "TOKEN_PAIR_INVALID");
                                                if (address(tokenFrom) != Constants.ETH) {
                                                    _approveSpender(tokenFrom, spender, amountFrom);
                                                }
                                                // We always forward msg.value as it may be necessary to pay fees
                                                bytes memory encodedData = abi.encodePacked(method, data);
                                                aggregator.functionCallWithValue(encodedData, msg.value);
                                                // Transfer remaining balance of tokenFrom to sender
                                                if (address(tokenFrom) != Constants.ETH) {
                                                    uint256 balance = tokenFrom.balanceOf(address(this));
                                                    _transfer(tokenFrom, balance, recipient);
                                                }
                                                uint256 weiBalance = address(this).balance;
                                                // Transfer remaining balance of tokenTo to sender
                                                if (address(tokenTo) != Constants.ETH) {
                                                    uint256 balance = tokenTo.balanceOf(address(this));
                                                    require(balance >= amountTo, "INSUFFICIENT_AMOUNT");
                                                    _transfer(tokenTo, balance, recipient);
                                                } else {
                                                    // If tokenTo == ETH, then check that the remaining ETH balance >= amountTo
                                                    require(weiBalance >= amountTo, "INSUFFICIENT_AMOUNT");
                                                }
                                                // If there are unused fees or if tokenTo is ETH, transfer to sender
                                                if (weiBalance > 0) {
                                                    recipient.sendValue(weiBalance);
                                                }
                                            }
                                            /**
                                             * @dev Transfers token to sender if amount > 0
                                             * @param token IERC20 token to transfer to sender
                                             * @param amount Amount of token to transfer
                                             * @param recipient Address that will receive the tokens
                                             */
                                            function _transfer(
                                                IERC20 token,
                                                uint256 amount,
                                                address recipient
                                            ) internal {
                                                if (amount > 0) {
                                                    token.safeTransfer(recipient, amount);
                                                }
                                            }
                                            // https://github.com/OpenZeppelin/openzeppelin-contracts/blob/master/contracts/token/ERC20/SafeERC20.sol
                                            /**
                                             * @dev Approves max amount of token to the spender if the allowance is lower than amount
                                             * @param token The ERC20 token to approve
                                             * @param spender Address to which funds will be approved
                                             * @param amount Amount used to compare current allowance
                                             */
                                            function _approveSpender(
                                                IERC20 token,
                                                address spender,
                                                uint256 amount
                                            ) internal {
                                                // If allowance is not enough, approve max possible amount
                                                uint256 allowance = token.allowance(address(this), spender);
                                                if (allowance < amount) {
                                                    bytes memory returndata = address(token).functionCall(
                                                        abi.encodeWithSelector(
                                                            token.approve.selector,
                                                            spender,
                                                            type(uint256).max
                                                        )
                                                    );
                                                    if (returndata.length > 0) {
                                                        // Return data is optional
                                                        require(abi.decode(returndata, (bool)), "APPROVAL_FAILED");
                                                    }
                                                }
                                            }
                                        }
                                        // SPDX-License-Identifier: MIT
                                        pragma solidity ^0.6.0;
                                        /**
                                         * @dev Interface of the ERC20 standard as defined in the EIP.
                                         */
                                        interface IERC20 {
                                            /**
                                             * @dev Returns the amount of tokens in existence.
                                             */
                                            function totalSupply() external view returns (uint256);
                                            /**
                                             * @dev Returns the amount of tokens owned by `account`.
                                             */
                                            function balanceOf(address account) external view returns (uint256);
                                            /**
                                             * @dev Moves `amount` tokens from the caller's account to `recipient`.
                                             *
                                             * Returns a boolean value indicating whether the operation succeeded.
                                             *
                                             * Emits a {Transfer} event.
                                             */
                                            function transfer(address recipient, uint256 amount) external returns (bool);
                                            /**
                                             * @dev Returns the remaining number of tokens that `spender` will be
                                             * allowed to spend on behalf of `owner` through {transferFrom}. This is
                                             * zero by default.
                                             *
                                             * This value changes when {approve} or {transferFrom} are called.
                                             */
                                            function allowance(address owner, address spender) external view returns (uint256);
                                            /**
                                             * @dev Sets `amount` as the allowance of `spender` over the caller's tokens.
                                             *
                                             * Returns a boolean value indicating whether the operation succeeded.
                                             *
                                             * IMPORTANT: Beware that changing an allowance with this method brings the risk
                                             * that someone may use both the old and the new allowance by unfortunate
                                             * transaction ordering. One possible solution to mitigate this race
                                             * condition is to first reduce the spender's allowance to 0 and set the
                                             * desired value afterwards:
                                             * https://github.com/ethereum/EIPs/issues/20#issuecomment-263524729
                                             *
                                             * Emits an {Approval} event.
                                             */
                                            function approve(address spender, uint256 amount) external returns (bool);
                                            /**
                                             * @dev Moves `amount` tokens from `sender` to `recipient` using the
                                             * allowance mechanism. `amount` is then deducted from the caller's
                                             * allowance.
                                             *
                                             * Returns a boolean value indicating whether the operation succeeded.
                                             *
                                             * Emits a {Transfer} event.
                                             */
                                            function transferFrom(address sender, address recipient, uint256 amount) external returns (bool);
                                            /**
                                             * @dev Emitted when `value` tokens are moved from one account (`from`) to
                                             * another (`to`).
                                             *
                                             * Note that `value` may be zero.
                                             */
                                            event Transfer(address indexed from, address indexed to, uint256 value);
                                            /**
                                             * @dev Emitted when the allowance of a `spender` for an `owner` is set by
                                             * a call to {approve}. `value` is the new allowance.
                                             */
                                            event Approval(address indexed owner, address indexed spender, uint256 value);
                                        }
                                        // SPDX-License-Identifier: MIT
                                        pragma solidity ^0.6.0;
                                        import "./IERC20.sol";
                                        import "../../math/SafeMath.sol";
                                        import "../../utils/Address.sol";
                                        /**
                                         * @title SafeERC20
                                         * @dev Wrappers around ERC20 operations that throw on failure (when the token
                                         * contract returns false). Tokens that return no value (and instead revert or
                                         * throw on failure) are also supported, non-reverting calls are assumed to be
                                         * successful.
                                         * To use this library you can add a `using SafeERC20 for IERC20;` statement to your contract,
                                         * which allows you to call the safe operations as `token.safeTransfer(...)`, etc.
                                         */
                                        library SafeERC20 {
                                            using SafeMath for uint256;
                                            using Address for address;
                                            function safeTransfer(IERC20 token, address to, uint256 value) internal {
                                                _callOptionalReturn(token, abi.encodeWithSelector(token.transfer.selector, to, value));
                                            }
                                            function safeTransferFrom(IERC20 token, address from, address to, uint256 value) internal {
                                                _callOptionalReturn(token, abi.encodeWithSelector(token.transferFrom.selector, from, to, value));
                                            }
                                            /**
                                             * @dev Deprecated. This function has issues similar to the ones found in
                                             * {IERC20-approve}, and its usage is discouraged.
                                             *
                                             * Whenever possible, use {safeIncreaseAllowance} and
                                             * {safeDecreaseAllowance} instead.
                                             */
                                            function safeApprove(IERC20 token, address spender, uint256 value) internal {
                                                // safeApprove should only be called when setting an initial allowance,
                                                // or when resetting it to zero. To increase and decrease it, use
                                                // 'safeIncreaseAllowance' and 'safeDecreaseAllowance'
                                                // solhint-disable-next-line max-line-length
                                                require((value == 0) || (token.allowance(address(this), spender) == 0),
                                                    "SafeERC20: approve from non-zero to non-zero allowance"
                                                );
                                                _callOptionalReturn(token, abi.encodeWithSelector(token.approve.selector, spender, value));
                                            }
                                            function safeIncreaseAllowance(IERC20 token, address spender, uint256 value) internal {
                                                uint256 newAllowance = token.allowance(address(this), spender).add(value);
                                                _callOptionalReturn(token, abi.encodeWithSelector(token.approve.selector, spender, newAllowance));
                                            }
                                            function safeDecreaseAllowance(IERC20 token, address spender, uint256 value) internal {
                                                uint256 newAllowance = token.allowance(address(this), spender).sub(value, "SafeERC20: decreased allowance below zero");
                                                _callOptionalReturn(token, abi.encodeWithSelector(token.approve.selector, spender, newAllowance));
                                            }
                                            /**
                                             * @dev Imitates a Solidity high-level call (i.e. a regular function call to a contract), relaxing the requirement
                                             * on the return value: the return value is optional (but if data is returned, it must not be false).
                                             * @param token The token targeted by the call.
                                             * @param data The call data (encoded using abi.encode or one of its variants).
                                             */
                                            function _callOptionalReturn(IERC20 token, bytes memory data) private {
                                                // We need to perform a low level call here, to bypass Solidity's return data size checking mechanism, since
                                                // we're implementing it ourselves. We use {Address.functionCall} to perform this call, which verifies that
                                                // the target address contains contract code and also asserts for success in the low-level call.
                                                bytes memory returndata = address(token).functionCall(data, "SafeERC20: low-level call failed");
                                                if (returndata.length > 0) { // Return data is optional
                                                    // solhint-disable-next-line max-line-length
                                                    require(abi.decode(returndata, (bool)), "SafeERC20: ERC20 operation did not succeed");
                                                }
                                            }
                                        }
                                        // SPDX-License-Identifier: MIT
                                        pragma solidity ^0.6.0;
                                        /**
                                         * @dev Wrappers over Solidity's arithmetic operations with added overflow
                                         * checks.
                                         *
                                         * Arithmetic operations in Solidity wrap on overflow. This can easily result
                                         * in bugs, because programmers usually assume that an overflow raises an
                                         * error, which is the standard behavior in high level programming languages.
                                         * `SafeMath` restores this intuition by reverting the transaction when an
                                         * operation overflows.
                                         *
                                         * Using this library instead of the unchecked operations eliminates an entire
                                         * class of bugs, so it's recommended to use it always.
                                         */
                                        library SafeMath {
                                            /**
                                             * @dev Returns the addition of two unsigned integers, reverting on
                                             * overflow.
                                             *
                                             * Counterpart to Solidity's `+` operator.
                                             *
                                             * Requirements:
                                             *
                                             * - Addition cannot overflow.
                                             */
                                            function add(uint256 a, uint256 b) internal pure returns (uint256) {
                                                uint256 c = a + b;
                                                require(c >= a, "SafeMath: addition overflow");
                                                return c;
                                            }
                                            /**
                                             * @dev Returns the subtraction of two unsigned integers, reverting on
                                             * overflow (when the result is negative).
                                             *
                                             * Counterpart to Solidity's `-` operator.
                                             *
                                             * Requirements:
                                             *
                                             * - Subtraction cannot overflow.
                                             */
                                            function sub(uint256 a, uint256 b) internal pure returns (uint256) {
                                                return sub(a, b, "SafeMath: subtraction overflow");
                                            }
                                            /**
                                             * @dev Returns the subtraction of two unsigned integers, reverting with custom message on
                                             * overflow (when the result is negative).
                                             *
                                             * Counterpart to Solidity's `-` operator.
                                             *
                                             * Requirements:
                                             *
                                             * - Subtraction cannot overflow.
                                             */
                                            function sub(uint256 a, uint256 b, string memory errorMessage) internal pure returns (uint256) {
                                                require(b <= a, errorMessage);
                                                uint256 c = a - b;
                                                return c;
                                            }
                                            /**
                                             * @dev Returns the multiplication of two unsigned integers, reverting on
                                             * overflow.
                                             *
                                             * Counterpart to Solidity's `*` operator.
                                             *
                                             * Requirements:
                                             *
                                             * - Multiplication cannot overflow.
                                             */
                                            function mul(uint256 a, uint256 b) internal pure returns (uint256) {
                                                // Gas optimization: this is cheaper than requiring 'a' not being zero, but the
                                                // benefit is lost if 'b' is also tested.
                                                // See: https://github.com/OpenZeppelin/openzeppelin-contracts/pull/522
                                                if (a == 0) {
                                                    return 0;
                                                }
                                                uint256 c = a * b;
                                                require(c / a == b, "SafeMath: multiplication overflow");
                                                return c;
                                            }
                                            /**
                                             * @dev Returns the integer division of two unsigned integers. Reverts on
                                             * division by zero. The result is rounded towards zero.
                                             *
                                             * Counterpart to Solidity's `/` operator. Note: this function uses a
                                             * `revert` opcode (which leaves remaining gas untouched) while Solidity
                                             * uses an invalid opcode to revert (consuming all remaining gas).
                                             *
                                             * Requirements:
                                             *
                                             * - The divisor cannot be zero.
                                             */
                                            function div(uint256 a, uint256 b) internal pure returns (uint256) {
                                                return div(a, b, "SafeMath: division by zero");
                                            }
                                            /**
                                             * @dev Returns the integer division of two unsigned integers. Reverts with custom message on
                                             * division by zero. The result is rounded towards zero.
                                             *
                                             * Counterpart to Solidity's `/` operator. Note: this function uses a
                                             * `revert` opcode (which leaves remaining gas untouched) while Solidity
                                             * uses an invalid opcode to revert (consuming all remaining gas).
                                             *
                                             * Requirements:
                                             *
                                             * - The divisor cannot be zero.
                                             */
                                            function div(uint256 a, uint256 b, string memory errorMessage) internal pure returns (uint256) {
                                                require(b > 0, errorMessage);
                                                uint256 c = a / b;
                                                // assert(a == b * c + a % b); // There is no case in which this doesn't hold
                                                return c;
                                            }
                                            /**
                                             * @dev Returns the remainder of dividing two unsigned integers. (unsigned integer modulo),
                                             * Reverts when dividing by zero.
                                             *
                                             * Counterpart to Solidity's `%` operator. This function uses a `revert`
                                             * opcode (which leaves remaining gas untouched) while Solidity uses an
                                             * invalid opcode to revert (consuming all remaining gas).
                                             *
                                             * Requirements:
                                             *
                                             * - The divisor cannot be zero.
                                             */
                                            function mod(uint256 a, uint256 b) internal pure returns (uint256) {
                                                return mod(a, b, "SafeMath: modulo by zero");
                                            }
                                            /**
                                             * @dev Returns the remainder of dividing two unsigned integers. (unsigned integer modulo),
                                             * Reverts with custom message when dividing by zero.
                                             *
                                             * Counterpart to Solidity's `%` operator. This function uses a `revert`
                                             * opcode (which leaves remaining gas untouched) while Solidity uses an
                                             * invalid opcode to revert (consuming all remaining gas).
                                             *
                                             * Requirements:
                                             *
                                             * - The divisor cannot be zero.
                                             */
                                            function mod(uint256 a, uint256 b, string memory errorMessage) internal pure returns (uint256) {
                                                require(b != 0, errorMessage);
                                                return a % b;
                                            }
                                        }
                                        // SPDX-License-Identifier: MIT
                                        pragma solidity ^0.6.2;
                                        /**
                                         * @dev Collection of functions related to the address type
                                         */
                                        library Address {
                                            /**
                                             * @dev Returns true if `account` is a contract.
                                             *
                                             * [IMPORTANT]
                                             * ====
                                             * It is unsafe to assume that an address for which this function returns
                                             * false is an externally-owned account (EOA) and not a contract.
                                             *
                                             * Among others, `isContract` will return false for the following
                                             * types of addresses:
                                             *
                                             *  - an externally-owned account
                                             *  - a contract in construction
                                             *  - an address where a contract will be created
                                             *  - an address where a contract lived, but was destroyed
                                             * ====
                                             */
                                            function isContract(address account) internal view returns (bool) {
                                                // This method relies in extcodesize, which returns 0 for contracts in
                                                // construction, since the code is only stored at the end of the
                                                // constructor execution.
                                                uint256 size;
                                                // solhint-disable-next-line no-inline-assembly
                                                assembly { size := extcodesize(account) }
                                                return size > 0;
                                            }
                                            /**
                                             * @dev Replacement for Solidity's `transfer`: sends `amount` wei to
                                             * `recipient`, forwarding all available gas and reverting on errors.
                                             *
                                             * https://eips.ethereum.org/EIPS/eip-1884[EIP1884] increases the gas cost
                                             * of certain opcodes, possibly making contracts go over the 2300 gas limit
                                             * imposed by `transfer`, making them unable to receive funds via
                                             * `transfer`. {sendValue} removes this limitation.
                                             *
                                             * https://diligence.consensys.net/posts/2019/09/stop-using-soliditys-transfer-now/[Learn more].
                                             *
                                             * IMPORTANT: because control is transferred to `recipient`, care must be
                                             * taken to not create reentrancy vulnerabilities. Consider using
                                             * {ReentrancyGuard} or the
                                             * https://solidity.readthedocs.io/en/v0.5.11/security-considerations.html#use-the-checks-effects-interactions-pattern[checks-effects-interactions pattern].
                                             */
                                            function sendValue(address payable recipient, uint256 amount) internal {
                                                require(address(this).balance >= amount, "Address: insufficient balance");
                                                // solhint-disable-next-line avoid-low-level-calls, avoid-call-value
                                                (bool success, ) = recipient.call{ value: amount }("");
                                                require(success, "Address: unable to send value, recipient may have reverted");
                                            }
                                            /**
                                             * @dev Performs a Solidity function call using a low level `call`. A
                                             * plain`call` is an unsafe replacement for a function call: use this
                                             * function instead.
                                             *
                                             * If `target` reverts with a revert reason, it is bubbled up by this
                                             * function (like regular Solidity function calls).
                                             *
                                             * Returns the raw returned data. To convert to the expected return value,
                                             * use https://solidity.readthedocs.io/en/latest/units-and-global-variables.html?highlight=abi.decode#abi-encoding-and-decoding-functions[`abi.decode`].
                                             *
                                             * Requirements:
                                             *
                                             * - `target` must be a contract.
                                             * - calling `target` with `data` must not revert.
                                             *
                                             * _Available since v3.1._
                                             */
                                            function functionCall(address target, bytes memory data) internal returns (bytes memory) {
                                              return functionCall(target, data, "Address: low-level call failed");
                                            }
                                            /**
                                             * @dev Same as {xref-Address-functionCall-address-bytes-}[`functionCall`], but with
                                             * `errorMessage` as a fallback revert reason when `target` reverts.
                                             *
                                             * _Available since v3.1._
                                             */
                                            function functionCall(address target, bytes memory data, string memory errorMessage) internal returns (bytes memory) {
                                                return _functionCallWithValue(target, data, 0, errorMessage);
                                            }
                                            /**
                                             * @dev Same as {xref-Address-functionCall-address-bytes-}[`functionCall`],
                                             * but also transferring `value` wei to `target`.
                                             *
                                             * Requirements:
                                             *
                                             * - the calling contract must have an ETH balance of at least `value`.
                                             * - the called Solidity function must be `payable`.
                                             *
                                             * _Available since v3.1._
                                             */
                                            function functionCallWithValue(address target, bytes memory data, uint256 value) internal returns (bytes memory) {
                                                return functionCallWithValue(target, data, value, "Address: low-level call with value failed");
                                            }
                                            /**
                                             * @dev Same as {xref-Address-functionCallWithValue-address-bytes-uint256-}[`functionCallWithValue`], but
                                             * with `errorMessage` as a fallback revert reason when `target` reverts.
                                             *
                                             * _Available since v3.1._
                                             */
                                            function functionCallWithValue(address target, bytes memory data, uint256 value, string memory errorMessage) internal returns (bytes memory) {
                                                require(address(this).balance >= value, "Address: insufficient balance for call");
                                                return _functionCallWithValue(target, data, value, errorMessage);
                                            }
                                            function _functionCallWithValue(address target, bytes memory data, uint256 weiValue, string memory errorMessage) private returns (bytes memory) {
                                                require(isContract(target), "Address: call to non-contract");
                                                // solhint-disable-next-line avoid-low-level-calls
                                                (bool success, bytes memory returndata) = target.call{ value: weiValue }(data);
                                                if (success) {
                                                    return returndata;
                                                } else {
                                                    // Look for revert reason and bubble it up if present
                                                    if (returndata.length > 0) {
                                                        // The easiest way to bubble the revert reason is using memory via assembly
                                                        // solhint-disable-next-line no-inline-assembly
                                                        assembly {
                                                            let returndata_size := mload(returndata)
                                                            revert(add(32, returndata), returndata_size)
                                                        }
                                                    } else {
                                                        revert(errorMessage);
                                                    }
                                                }
                                            }
                                        }
                                        // SPDX-License-Identifier: MIT
                                        pragma solidity ^0.6.0;
                                        library Constants {
                                            address internal constant ETH = 0x0000000000000000000000000000000000000000;
                                        }
                                        pragma solidity ^0.6.0;
                                        import "@openzeppelin/contracts/token/ERC20/IERC20.sol";
                                        import "@openzeppelin/contracts/token/ERC20/SafeERC20.sol";
                                        import "@openzeppelin/contracts/math/SafeMath.sol";
                                        import "@openzeppelin/contracts/utils/Address.sol";
                                        import "../Constants.sol";
                                        contract FeeCommonAdapter {
                                            using SafeERC20 for IERC20;
                                            using Address for address;
                                            using Address for address payable;
                                            using SafeMath for uint256;
                                            // solhint-disable-next-line var-name-mixedcase
                                            address payable public immutable FEE_WALLET;
                                            constructor(address payable feeWallet) public {
                                                FEE_WALLET = feeWallet;
                                            }
                                            /**
                                             * @dev Performs a swap
                                             * @param recipient The original msg.sender performing the swap
                                             * @param aggregator Address of the aggregator's contract
                                             * @param spender Address to which tokens will be approved
                                             * @param method Selector of the function to be called in the aggregator's contract
                                             * @param tokenFrom Token to be swapped
                                             * @param tokenTo Token to be received
                                             * @param amountFrom Amount of tokenFrom to swap
                                             * @param amountTo Minimum amount of tokenTo to receive
                                             * @param data Data used for the call made to the aggregator's contract
                                             * @param fee Amount of tokenFrom sent to the fee wallet
                                             */
                                            function swap(
                                                address payable recipient,
                                                address aggregator,
                                                address spender,
                                                bytes4 method,
                                                IERC20 tokenFrom,
                                                IERC20 tokenTo,
                                                uint256 amountFrom,
                                                uint256 amountTo,
                                                bytes calldata data,
                                                uint256 fee
                                            ) external payable {
                                                require(tokenFrom != tokenTo, "TOKEN_PAIR_INVALID");
                                                if (address(tokenFrom) == Constants.ETH) {
                                                    FEE_WALLET.sendValue(fee);
                                                } else {
                                                    _transfer(tokenFrom, fee, FEE_WALLET);
                                                    _approveSpender(tokenFrom, spender, amountFrom);
                                                }
                                                // We always forward msg.value as it may be necessary to pay fees
                                                aggregator.functionCallWithValue(
                                                    abi.encodePacked(method, data),
                                                    address(this).balance
                                                );
                                                // Transfer remaining balance of tokenFrom to sender
                                                if (address(tokenFrom) != Constants.ETH) {
                                                    _transfer(tokenFrom, tokenFrom.balanceOf(address(this)), recipient);
                                                }
                                                uint256 weiBalance = address(this).balance;
                                                // Transfer remaining balance of tokenTo to sender
                                                if (address(tokenTo) != Constants.ETH) {
                                                    uint256 balance = tokenTo.balanceOf(address(this));
                                                    require(balance >= amountTo, "INSUFFICIENT_AMOUNT");
                                                    _transfer(tokenTo, balance, recipient);
                                                } else {
                                                    // If tokenTo == ETH, then check that the remaining ETH balance >= amountTo
                                                    require(weiBalance >= amountTo, "INSUFFICIENT_AMOUNT");
                                                }
                                                // If there are unused fees or if tokenTo is ETH, transfer to sender
                                                if (weiBalance > 0) {
                                                    recipient.sendValue(weiBalance);
                                                }
                                            }
                                            /**
                                             * @dev Transfers token to sender if amount > 0
                                             * @param token IERC20 token to transfer to sender
                                             * @param amount Amount of token to transfer
                                             * @param recipient Address that will receive the tokens
                                             */
                                            function _transfer(
                                                IERC20 token,
                                                uint256 amount,
                                                address recipient
                                            ) internal {
                                                if (amount > 0) {
                                                    token.safeTransfer(recipient, amount);
                                                }
                                            }
                                            // https://github.com/OpenZeppelin/openzeppelin-contracts/blob/master/contracts/token/ERC20/SafeERC20.sol
                                            /**
                                             * @dev Approves max amount of token to the spender if the allowance is lower than amount
                                             * @param token The ERC20 token to approve
                                             * @param spender Address to which funds will be approved
                                             * @param amount Amount used to compare current allowance
                                             */
                                            function _approveSpender(
                                                IERC20 token,
                                                address spender,
                                                uint256 amount
                                            ) internal {
                                                // If allowance is not enough, approve max possible amount
                                                uint256 allowance = token.allowance(address(this), spender);
                                                if (allowance < amount) {
                                                    bytes memory returndata = address(token).functionCall(
                                                        abi.encodeWithSelector(
                                                            token.approve.selector,
                                                            spender,
                                                            type(uint256).max
                                                        )
                                                    );
                                                    if (returndata.length > 0) {
                                                        // Return data is optional
                                                        require(abi.decode(returndata, (bool)), "APPROVAL_FAILED");
                                                    }
                                                }
                                            }
                                        }
                                        pragma solidity ^0.6.0;
                                        import "@openzeppelin/contracts/token/ERC20/IERC20.sol";
                                        import "@openzeppelin/contracts/token/ERC20/SafeERC20.sol";
                                        import "@openzeppelin/contracts/math/SafeMath.sol";
                                        import "@openzeppelin/contracts/utils/Address.sol";
                                        import "../Constants.sol";
                                        import "../IWETH.sol";
                                        contract FeeWethAdapter {
                                            using SafeERC20 for IERC20;
                                            using Address for address;
                                            using Address for address payable;
                                            using SafeMath for uint256;
                                            IWETH public immutable weth;
                                            // solhint-disable-next-line var-name-mixedcase
                                            address payable public immutable FEE_WALLET;
                                            constructor(IWETH _weth, address payable feeWallet) public {
                                                weth = _weth;
                                                FEE_WALLET = feeWallet;
                                            }
                                            /**
                                             * @dev Performs a swap
                                             * @param recipient The original msg.sender performing the swap
                                             * @param aggregator Address of the aggregator's contract
                                             * @param spender Address to which tokens will be approved
                                             * @param method Selector of the function to be called in the aggregator's contract
                                             * @param tokenFrom Token to be swapped
                                             * @param tokenTo Token to be received
                                             * @param amountFrom Amount of tokenFrom to swap
                                             * @param amountTo Minimum amount of tokenTo to receive
                                             * @param data Data used for the call made to the aggregator's contract
                                             * @param fee Amount of tokenFrom sent to the fee wallet
                                             */
                                            function swap(
                                                address payable recipient,
                                                address aggregator,
                                                address spender,
                                                bytes4 method,
                                                IERC20 tokenFrom,
                                                IERC20 tokenTo,
                                                uint256 amountFrom,
                                                uint256 amountTo,
                                                bytes calldata data,
                                                uint256 fee
                                            ) external payable {
                                                require(tokenFrom != tokenTo, "TOKEN_PAIR_INVALID");
                                                if (address(tokenFrom) == Constants.ETH) {
                                                    FEE_WALLET.sendValue(fee);
                                                    // If tokenFrom is ETH, msg.value = fee + amountFrom (total fee could be 0)
                                                    // Can't deal with ETH, convert to WETH, the remaining balance will be the fee
                                                    weth.deposit{value: amountFrom}();
                                                    _approveSpender(weth, spender, amountFrom);
                                                } else {
                                                    _transfer(tokenFrom, fee, FEE_WALLET);
                                                    // Otherwise capture tokens from sender
                                                    _approveSpender(tokenFrom, spender, amountFrom);
                                                }
                                                // Perform the swap
                                                aggregator.functionCallWithValue(
                                                    abi.encodePacked(method, data),
                                                    address(this).balance
                                                );
                                                // Transfer remaining balance of tokenFrom to sender
                                                if (address(tokenFrom) != Constants.ETH) {
                                                    _transfer(tokenFrom, tokenFrom.balanceOf(address(this)), recipient);
                                                } else {
                                                    // If using ETH, just unwrap any remaining WETH
                                                    // At the end of this function all ETH will be transferred to the sender
                                                    _unwrapWETH();
                                                }
                                                uint256 weiBalance = address(this).balance;
                                                // Transfer remaining balance of tokenTo to sender
                                                if (address(tokenTo) != Constants.ETH) {
                                                    uint256 balance = tokenTo.balanceOf(address(this));
                                                    require(balance >= amountTo, "INSUFFICIENT_AMOUNT");
                                                    _transfer(tokenTo, balance, recipient);
                                                } else {
                                                    // If tokenTo == ETH, unwrap received WETH and add it to the wei balance,
                                                    // then check that the remaining ETH balance >= amountTo
                                                    // It is safe to not use safeMath as no one can have enough Ether to overflow
                                                    weiBalance += _unwrapWETH();
                                                    require(weiBalance >= amountTo, "INSUFFICIENT_AMOUNT");
                                                }
                                                // If there are unused fees or if tokenTo is ETH, transfer to sender
                                                if (weiBalance > 0) {
                                                    recipient.sendValue(weiBalance);
                                                }
                                            }
                                            /**
                                             * @dev Unwraps all available WETH into ETH
                                             */
                                            function _unwrapWETH() internal returns (uint256) {
                                                uint256 balance = weth.balanceOf(address(this));
                                                weth.withdraw(balance);
                                                return balance;
                                            }
                                            /**
                                             * @dev Transfers token to sender if amount > 0
                                             * @param token IERC20 token to transfer to sender
                                             * @param amount Amount of token to transfer
                                             * @param recipient Address that will receive the tokens
                                             */
                                            function _transfer(
                                                IERC20 token,
                                                uint256 amount,
                                                address recipient
                                            ) internal {
                                                if (amount > 0) {
                                                    token.safeTransfer(recipient, amount);
                                                }
                                            }
                                            // https://github.com/OpenZeppelin/openzeppelin-contracts/blob/master/contracts/token/ERC20/SafeERC20.sol
                                            /**
                                             * @dev Approves max amount of token to the spender if the allowance is lower than amount
                                             * @param token The ERC20 token to approve
                                             * @param spender Address to which funds will be approved
                                             * @param amount Amount used to compare current allowance
                                             */
                                            function _approveSpender(
                                                IERC20 token,
                                                address spender,
                                                uint256 amount
                                            ) internal {
                                                // If allowance is not enough, approve max possible amount
                                                uint256 allowance = token.allowance(address(this), spender);
                                                if (allowance < amount) {
                                                    bytes memory returndata = address(token).functionCall(
                                                        abi.encodeWithSelector(
                                                            token.approve.selector,
                                                            spender,
                                                            type(uint256).max
                                                        )
                                                    );
                                                    if (returndata.length > 0) {
                                                        // Return data is optional
                                                        require(abi.decode(returndata, (bool)), "APPROVAL_FAILED");
                                                    }
                                                }
                                            }
                                        }
                                        pragma solidity ^0.6.0;
                                        import "@openzeppelin/contracts/token/ERC20/IERC20.sol";
                                        interface IWETH is IERC20 {
                                            function deposit() external payable;
                                            function withdraw(uint256) external;
                                        }
                                        pragma solidity ^0.6.0;
                                        import "@openzeppelin/contracts/token/ERC20/IERC20.sol";
                                        import "@openzeppelin/contracts/token/ERC20/SafeERC20.sol";
                                        import "@openzeppelin/contracts/math/SafeMath.sol";
                                        import "@openzeppelin/contracts/utils/Address.sol";
                                        import "@uniswap/v2-periphery/contracts/interfaces/IUniswapV2Router02.sol";
                                        import "../Constants.sol";
                                        contract UniswapAdapter {
                                            using SafeERC20 for IERC20;
                                            using Address for address;
                                            using Address for address payable;
                                            using SafeMath for uint256;
                                            // solhint-disable-next-line var-name-mixedcase
                                            IUniswapV2Router02 public immutable UNISWAP;
                                            // solhint-disable-next-line var-name-mixedcase
                                            address payable public immutable FEE_WALLET;
                                            constructor(address payable feeWallet, IUniswapV2Router02 uniswap) public {
                                                FEE_WALLET = feeWallet;
                                                UNISWAP = uniswap;
                                            }
                                            /**
                                             * @dev Performs a swap
                                             * @param recipient The original msg.sender performing the swap
                                             * @param tokenFrom Token to be swapped
                                             * @param tokenTo Token to be received
                                             * @param amountFrom Amount of tokenFrom to swap
                                             * @param amountTo Minimum amount of tokenTo to receive
                                             * @param path Used by Uniswap
                                             * @param deadline Timestamp at which the swap becomes invalid. Used by Uniswap
                                             * @param feeOnTransfer Use `supportingFeeOnTransfer` Uniswap methods
                                             * @param fee Amount of tokenFrom sent to the fee wallet
                                             */
                                            function swap(
                                                address payable recipient,
                                                IERC20 tokenFrom,
                                                IERC20 tokenTo,
                                                uint256 amountFrom,
                                                uint256 amountTo,
                                                address[] calldata path,
                                                uint256 deadline,
                                                bool feeOnTransfer,
                                                uint256 fee
                                            ) external payable {
                                                require(tokenFrom != tokenTo, "TOKEN_PAIR_INVALID");
                                                if (address(tokenFrom) == Constants.ETH) {
                                                    FEE_WALLET.sendValue(fee);
                                                } else {
                                                    _transfer(tokenFrom, fee, FEE_WALLET);
                                                }
                                                if (address(tokenFrom) == Constants.ETH) {
                                                    if (feeOnTransfer) {
                                                        UNISWAP.swapExactETHForTokensSupportingFeeOnTransferTokens{
                                                            value: address(this).balance
                                                        }(amountTo, path, address(this), deadline);
                                                    } else {
                                                        UNISWAP.swapExactETHForTokens{value: address(this).balance}(
                                                            amountTo,
                                                            path,
                                                            address(this),
                                                            deadline
                                                        );
                                                    }
                                                } else {
                                                    _approveSpender(tokenFrom, address(UNISWAP), amountFrom);
                                                    if (address(tokenTo) == Constants.ETH) {
                                                        if (feeOnTransfer) {
                                                            UNISWAP.swapExactTokensForETHSupportingFeeOnTransferTokens(
                                                                amountFrom,
                                                                amountTo,
                                                                path,
                                                                address(this),
                                                                deadline
                                                            );
                                                        } else {
                                                            UNISWAP.swapExactTokensForETH(
                                                                amountFrom,
                                                                amountTo,
                                                                path,
                                                                address(this),
                                                                deadline
                                                            );
                                                        }
                                                    } else {
                                                        if (feeOnTransfer) {
                                                            UNISWAP
                                                                .swapExactTokensForTokensSupportingFeeOnTransferTokens(
                                                                amountFrom,
                                                                amountTo,
                                                                path,
                                                                address(this),
                                                                deadline
                                                            );
                                                        } else {
                                                            UNISWAP.swapExactTokensForTokens(
                                                                amountFrom,
                                                                amountTo,
                                                                path,
                                                                address(this),
                                                                deadline
                                                            );
                                                        }
                                                    }
                                                }
                                                // Transfer remaining balance of tokenFrom to sender
                                                if (address(tokenFrom) != Constants.ETH) {
                                                    _transfer(tokenFrom, tokenFrom.balanceOf(address(this)), recipient);
                                                }
                                                uint256 weiBalance = address(this).balance;
                                                // Transfer remaining balance of tokenTo to sender
                                                if (address(tokenTo) != Constants.ETH) {
                                                    uint256 balance = tokenTo.balanceOf(address(this));
                                                    require(balance >= amountTo, "INSUFFICIENT_AMOUNT");
                                                    _transfer(tokenTo, balance, recipient);
                                                } else {
                                                    // If tokenTo == ETH, then check that the remaining ETH balance >= amountTo
                                                    require(weiBalance >= amountTo, "INSUFFICIENT_AMOUNT");
                                                }
                                                // If there are unused fees or if tokenTo is ETH, transfer to sender
                                                if (weiBalance > 0) {
                                                    recipient.sendValue(weiBalance);
                                                }
                                            }
                                            /**
                                             * @dev Transfers token to sender if amount > 0
                                             * @param token IERC20 token to transfer to sender
                                             * @param amount Amount of token to transfer
                                             * @param recipient Address that will receive the tokens
                                             */
                                            function _transfer(
                                                IERC20 token,
                                                uint256 amount,
                                                address recipient
                                            ) internal {
                                                if (amount > 0) {
                                                    token.safeTransfer(recipient, amount);
                                                }
                                            }
                                            // https://github.com/OpenZeppelin/openzeppelin-contracts/blob/master/contracts/token/ERC20/SafeERC20.sol
                                            /**
                                             * @dev Approves max amount of token to the spender if the allowance is lower than amount
                                             * @param token The ERC20 token to approve
                                             * @param spender Address to which funds will be approved
                                             * @param amount Amount used to compare current allowance
                                             */
                                            function _approveSpender(
                                                IERC20 token,
                                                address spender,
                                                uint256 amount
                                            ) internal {
                                                // If allowance is not enough, approve max possible amount
                                                uint256 allowance = token.allowance(address(this), spender);
                                                if (allowance < amount) {
                                                    bytes memory returndata = address(token).functionCall(
                                                        abi.encodeWithSelector(
                                                            token.approve.selector,
                                                            spender,
                                                            type(uint256).max
                                                        )
                                                    );
                                                    if (returndata.length > 0) {
                                                        // Return data is optional
                                                        require(abi.decode(returndata, (bool)), "APPROVAL_FAILED");
                                                    }
                                                }
                                            }
                                        }
                                        pragma solidity >=0.6.2;
                                        import './IUniswapV2Router01.sol';
                                        interface IUniswapV2Router02 is IUniswapV2Router01 {
                                            function removeLiquidityETHSupportingFeeOnTransferTokens(
                                                address token,
                                                uint liquidity,
                                                uint amountTokenMin,
                                                uint amountETHMin,
                                                address to,
                                                uint deadline
                                            ) external returns (uint amountETH);
                                            function removeLiquidityETHWithPermitSupportingFeeOnTransferTokens(
                                                address token,
                                                uint liquidity,
                                                uint amountTokenMin,
                                                uint amountETHMin,
                                                address to,
                                                uint deadline,
                                                bool approveMax, uint8 v, bytes32 r, bytes32 s
                                            ) external returns (uint amountETH);
                                            function swapExactTokensForTokensSupportingFeeOnTransferTokens(
                                                uint amountIn,
                                                uint amountOutMin,
                                                address[] calldata path,
                                                address to,
                                                uint deadline
                                            ) external;
                                            function swapExactETHForTokensSupportingFeeOnTransferTokens(
                                                uint amountOutMin,
                                                address[] calldata path,
                                                address to,
                                                uint deadline
                                            ) external payable;
                                            function swapExactTokensForETHSupportingFeeOnTransferTokens(
                                                uint amountIn,
                                                uint amountOutMin,
                                                address[] calldata path,
                                                address to,
                                                uint deadline
                                            ) external;
                                        }
                                        pragma solidity >=0.6.2;
                                        interface IUniswapV2Router01 {
                                            function factory() external pure returns (address);
                                            function WETH() external pure returns (address);
                                            function addLiquidity(
                                                address tokenA,
                                                address tokenB,
                                                uint amountADesired,
                                                uint amountBDesired,
                                                uint amountAMin,
                                                uint amountBMin,
                                                address to,
                                                uint deadline
                                            ) external returns (uint amountA, uint amountB, uint liquidity);
                                            function addLiquidityETH(
                                                address token,
                                                uint amountTokenDesired,
                                                uint amountTokenMin,
                                                uint amountETHMin,
                                                address to,
                                                uint deadline
                                            ) external payable returns (uint amountToken, uint amountETH, uint liquidity);
                                            function removeLiquidity(
                                                address tokenA,
                                                address tokenB,
                                                uint liquidity,
                                                uint amountAMin,
                                                uint amountBMin,
                                                address to,
                                                uint deadline
                                            ) external returns (uint amountA, uint amountB);
                                            function removeLiquidityETH(
                                                address token,
                                                uint liquidity,
                                                uint amountTokenMin,
                                                uint amountETHMin,
                                                address to,
                                                uint deadline
                                            ) external returns (uint amountToken, uint amountETH);
                                            function removeLiquidityWithPermit(
                                                address tokenA,
                                                address tokenB,
                                                uint liquidity,
                                                uint amountAMin,
                                                uint amountBMin,
                                                address to,
                                                uint deadline,
                                                bool approveMax, uint8 v, bytes32 r, bytes32 s
                                            ) external returns (uint amountA, uint amountB);
                                            function removeLiquidityETHWithPermit(
                                                address token,
                                                uint liquidity,
                                                uint amountTokenMin,
                                                uint amountETHMin,
                                                address to,
                                                uint deadline,
                                                bool approveMax, uint8 v, bytes32 r, bytes32 s
                                            ) external returns (uint amountToken, uint amountETH);
                                            function swapExactTokensForTokens(
                                                uint amountIn,
                                                uint amountOutMin,
                                                address[] calldata path,
                                                address to,
                                                uint deadline
                                            ) external returns (uint[] memory amounts);
                                            function swapTokensForExactTokens(
                                                uint amountOut,
                                                uint amountInMax,
                                                address[] calldata path,
                                                address to,
                                                uint deadline
                                            ) external returns (uint[] memory amounts);
                                            function swapExactETHForTokens(uint amountOutMin, address[] calldata path, address to, uint deadline)
                                                external
                                                payable
                                                returns (uint[] memory amounts);
                                            function swapTokensForExactETH(uint amountOut, uint amountInMax, address[] calldata path, address to, uint deadline)
                                                external
                                                returns (uint[] memory amounts);
                                            function swapExactTokensForETH(uint amountIn, uint amountOutMin, address[] calldata path, address to, uint deadline)
                                                external
                                                returns (uint[] memory amounts);
                                            function swapETHForExactTokens(uint amountOut, address[] calldata path, address to, uint deadline)
                                                external
                                                payable
                                                returns (uint[] memory amounts);
                                            function quote(uint amountA, uint reserveA, uint reserveB) external pure returns (uint amountB);
                                            function getAmountOut(uint amountIn, uint reserveIn, uint reserveOut) external pure returns (uint amountOut);
                                            function getAmountIn(uint amountOut, uint reserveIn, uint reserveOut) external pure returns (uint amountIn);
                                            function getAmountsOut(uint amountIn, address[] calldata path) external view returns (uint[] memory amounts);
                                            function getAmountsIn(uint amountOut, address[] calldata path) external view returns (uint[] memory amounts);
                                        }
                                        pragma solidity ^0.6.0;
                                        import "@openzeppelin/contracts/token/ERC20/IERC20.sol";
                                        import "@openzeppelin/contracts/token/ERC20/SafeERC20.sol";
                                        import "@openzeppelin/contracts/utils/Address.sol";
                                        import "../Constants.sol";
                                        import "../IWETH.sol";
                                        contract WethAdapter {
                                            using SafeERC20 for IERC20;
                                            using Address for address;
                                            using Address for address payable;
                                            IWETH public immutable weth;
                                            constructor(IWETH _weth) public {
                                                weth = _weth;
                                            }
                                            /**
                                             * @dev Performs a swap
                                             * @param recipient The original msg.sender performing the swap
                                             * @param aggregator Address of the aggregator's contract
                                             * @param spender Address to which tokens will be approved
                                             * @param method Selector of the function to be called in the aggregator's contract
                                             * @param tokenFrom Token to be swapped
                                             * @param tokenTo Token to be received
                                             * @param amountFrom Amount of tokenFrom to swap
                                             * @param amountTo Minimum amount of tokenTo to receive
                                             * @param data Data used for the call made to the aggregator's contract
                                             */
                                            function swap(
                                                address payable recipient,
                                                address aggregator,
                                                address spender,
                                                bytes4 method,
                                                IERC20 tokenFrom,
                                                IERC20 tokenTo,
                                                uint256 amountFrom,
                                                uint256 amountTo,
                                                bytes calldata data
                                            ) external payable {
                                                require(tokenFrom != tokenTo, "TOKEN_PAIR_INVALID");
                                                if (address(tokenFrom) == Constants.ETH) {
                                                    // If tokenFrom is ETH, msg.value = fee + amountFrom (total fee could be 0)
                                                    // Can't deal with ETH, convert to WETH, the remaining balance will be the fee
                                                    weth.deposit{value: amountFrom}();
                                                    _approveSpender(weth, spender, amountFrom);
                                                } else {
                                                    // Otherwise capture tokens from sender
                                                    _approveSpender(tokenFrom, spender, amountFrom);
                                                }
                                                // Perform the swap
                                                aggregator.functionCallWithValue(
                                                    abi.encodePacked(method, data),
                                                    address(this).balance
                                                );
                                                // Transfer remaining balance of tokenFrom to sender
                                                if (address(tokenFrom) != Constants.ETH) {
                                                    _transfer(tokenFrom, tokenFrom.balanceOf(address(this)), recipient);
                                                } else {
                                                    // If using ETH, just unwrap any remaining WETH
                                                    // At the end of this function all ETH will be transferred to the sender
                                                    _unwrapWETH();
                                                }
                                                uint256 weiBalance = address(this).balance;
                                                // Transfer remaining balance of tokenTo to sender
                                                if (address(tokenTo) != Constants.ETH) {
                                                    uint256 balance = tokenTo.balanceOf(address(this));
                                                    require(balance >= amountTo, "INSUFFICIENT_AMOUNT");
                                                    _transfer(tokenTo, balance, recipient);
                                                } else {
                                                    // If tokenTo == ETH, unwrap received WETH and add it to the wei balance,
                                                    // then check that the remaining ETH balance >= amountTo
                                                    // It is safe to not use safeMath as no one can have enough Ether to overflow
                                                    weiBalance += _unwrapWETH();
                                                    require(weiBalance >= amountTo, "INSUFFICIENT_AMOUNT");
                                                }
                                                // If there are unused fees or if tokenTo is ETH, transfer to sender
                                                if (weiBalance > 0) {
                                                    recipient.sendValue(weiBalance);
                                                }
                                            }
                                            /**
                                             * @dev Unwraps all available WETH into ETH
                                             */
                                            function _unwrapWETH() internal returns (uint256) {
                                                uint256 balance = weth.balanceOf(address(this));
                                                weth.withdraw(balance);
                                                return balance;
                                            }
                                            /**
                                             * @dev Transfers token to sender if amount > 0
                                             * @param token IERC20 token to transfer to sender
                                             * @param amount Amount of token to transfer
                                             * @param recipient Address that will receive the tokens
                                             */
                                            function _transfer(
                                                IERC20 token,
                                                uint256 amount,
                                                address recipient
                                            ) internal {
                                                if (amount > 0) {
                                                    token.safeTransfer(recipient, amount);
                                                }
                                            }
                                            // https://github.com/OpenZeppelin/openzeppelin-contracts/blob/master/contracts/token/ERC20/SafeERC20.sol
                                            /**
                                             * @dev Approves max amount of token to the spender if the allowance is lower than amount
                                             * @param token The ERC20 token to approve
                                             * @param spender Address to which funds will be approved
                                             * @param amount Amount used to compare current allowance
                                             */
                                            function _approveSpender(
                                                IERC20 token,
                                                address spender,
                                                uint256 amount
                                            ) internal {
                                                // If allowance is not enough, approve max possible amount
                                                uint256 allowance = token.allowance(address(this), spender);
                                                if (allowance < amount) {
                                                    bytes memory returndata = address(token).functionCall(
                                                        abi.encodeWithSelector(
                                                            token.approve.selector,
                                                            spender,
                                                            type(uint256).max
                                                        )
                                                    );
                                                    if (returndata.length > 0) {
                                                        // Return data is optional
                                                        require(abi.decode(returndata, (bool)), "APPROVAL_FAILED");
                                                    }
                                                }
                                            }
                                        }
                                        // SPDX-License-Identifier: MIT
                                        pragma solidity ^0.6.0;
                                        import "@openzeppelin/contracts/token/ERC20/IERC20.sol";
                                        interface ICHI is IERC20 {
                                            function freeUpTo(uint256 value) external returns (uint256);
                                            function freeFromUpTo(
                                                address from,
                                                uint256 value
                                            ) external returns (uint256);
                                            function mint(uint256 value) external;
                                        }
                                          
                                        // SPDX-License-Identifier: UNLICENSED
                                        pragma solidity ^0.6.0;
                                        // We import the contract so truffle compiles it, and we have the ABI
                                        // available when working from truffle console.
                                        import "@openzeppelin/contracts/token/ERC20/ERC20.sol"; //helpers// SPDX-License-Identifier: MIT
                                        pragma solidity ^0.6.0;
                                        import "../../GSN/Context.sol";
                                        import "./IERC20.sol";
                                        import "../../math/SafeMath.sol";
                                        import "../../utils/Address.sol";
                                        /**
                                         * @dev Implementation of the {IERC20} interface.
                                         *
                                         * This implementation is agnostic to the way tokens are created. This means
                                         * that a supply mechanism has to be added in a derived contract using {_mint}.
                                         * For a generic mechanism see {ERC20PresetMinterPauser}.
                                         *
                                         * TIP: For a detailed writeup see our guide
                                         * https://forum.zeppelin.solutions/t/how-to-implement-erc20-supply-mechanisms/226[How
                                         * to implement supply mechanisms].
                                         *
                                         * We have followed general OpenZeppelin guidelines: functions revert instead
                                         * of returning `false` on failure. This behavior is nonetheless conventional
                                         * and does not conflict with the expectations of ERC20 applications.
                                         *
                                         * Additionally, an {Approval} event is emitted on calls to {transferFrom}.
                                         * This allows applications to reconstruct the allowance for all accounts just
                                         * by listening to said events. Other implementations of the EIP may not emit
                                         * these events, as it isn't required by the specification.
                                         *
                                         * Finally, the non-standard {decreaseAllowance} and {increaseAllowance}
                                         * functions have been added to mitigate the well-known issues around setting
                                         * allowances. See {IERC20-approve}.
                                         */
                                        contract ERC20 is Context, IERC20 {
                                            using SafeMath for uint256;
                                            using Address for address;
                                            mapping (address => uint256) private _balances;
                                            mapping (address => mapping (address => uint256)) private _allowances;
                                            uint256 private _totalSupply;
                                            string private _name;
                                            string private _symbol;
                                            uint8 private _decimals;
                                            /**
                                             * @dev Sets the values for {name} and {symbol}, initializes {decimals} with
                                             * a default value of 18.
                                             *
                                             * To select a different value for {decimals}, use {_setupDecimals}.
                                             *
                                             * All three of these values are immutable: they can only be set once during
                                             * construction.
                                             */
                                            constructor (string memory name, string memory symbol) public {
                                                _name = name;
                                                _symbol = symbol;
                                                _decimals = 18;
                                            }
                                            /**
                                             * @dev Returns the name of the token.
                                             */
                                            function name() public view returns (string memory) {
                                                return _name;
                                            }
                                            /**
                                             * @dev Returns the symbol of the token, usually a shorter version of the
                                             * name.
                                             */
                                            function symbol() public view returns (string memory) {
                                                return _symbol;
                                            }
                                            /**
                                             * @dev Returns the number of decimals used to get its user representation.
                                             * For example, if `decimals` equals `2`, a balance of `505` tokens should
                                             * be displayed to a user as `5,05` (`505 / 10 ** 2`).
                                             *
                                             * Tokens usually opt for a value of 18, imitating the relationship between
                                             * Ether and Wei. This is the value {ERC20} uses, unless {_setupDecimals} is
                                             * called.
                                             *
                                             * NOTE: This information is only used for _display_ purposes: it in
                                             * no way affects any of the arithmetic of the contract, including
                                             * {IERC20-balanceOf} and {IERC20-transfer}.
                                             */
                                            function decimals() public view returns (uint8) {
                                                return _decimals;
                                            }
                                            /**
                                             * @dev See {IERC20-totalSupply}.
                                             */
                                            function totalSupply() public view override returns (uint256) {
                                                return _totalSupply;
                                            }
                                            /**
                                             * @dev See {IERC20-balanceOf}.
                                             */
                                            function balanceOf(address account) public view override returns (uint256) {
                                                return _balances[account];
                                            }
                                            /**
                                             * @dev See {IERC20-transfer}.
                                             *
                                             * Requirements:
                                             *
                                             * - `recipient` cannot be the zero address.
                                             * - the caller must have a balance of at least `amount`.
                                             */
                                            function transfer(address recipient, uint256 amount) public virtual override returns (bool) {
                                                _transfer(_msgSender(), recipient, amount);
                                                return true;
                                            }
                                            /**
                                             * @dev See {IERC20-allowance}.
                                             */
                                            function allowance(address owner, address spender) public view virtual override returns (uint256) {
                                                return _allowances[owner][spender];
                                            }
                                            /**
                                             * @dev See {IERC20-approve}.
                                             *
                                             * Requirements:
                                             *
                                             * - `spender` cannot be the zero address.
                                             */
                                            function approve(address spender, uint256 amount) public virtual override returns (bool) {
                                                _approve(_msgSender(), spender, amount);
                                                return true;
                                            }
                                            /**
                                             * @dev See {IERC20-transferFrom}.
                                             *
                                             * Emits an {Approval} event indicating the updated allowance. This is not
                                             * required by the EIP. See the note at the beginning of {ERC20};
                                             *
                                             * Requirements:
                                             * - `sender` and `recipient` cannot be the zero address.
                                             * - `sender` must have a balance of at least `amount`.
                                             * - the caller must have allowance for ``sender``'s tokens of at least
                                             * `amount`.
                                             */
                                            function transferFrom(address sender, address recipient, uint256 amount) public virtual override returns (bool) {
                                                _transfer(sender, recipient, amount);
                                                _approve(sender, _msgSender(), _allowances[sender][_msgSender()].sub(amount, "ERC20: transfer amount exceeds allowance"));
                                                return true;
                                            }
                                            /**
                                             * @dev Atomically increases the allowance granted to `spender` by the caller.
                                             *
                                             * This is an alternative to {approve} that can be used as a mitigation for
                                             * problems described in {IERC20-approve}.
                                             *
                                             * Emits an {Approval} event indicating the updated allowance.
                                             *
                                             * Requirements:
                                             *
                                             * - `spender` cannot be the zero address.
                                             */
                                            function increaseAllowance(address spender, uint256 addedValue) public virtual returns (bool) {
                                                _approve(_msgSender(), spender, _allowances[_msgSender()][spender].add(addedValue));
                                                return true;
                                            }
                                            /**
                                             * @dev Atomically decreases the allowance granted to `spender` by the caller.
                                             *
                                             * This is an alternative to {approve} that can be used as a mitigation for
                                             * problems described in {IERC20-approve}.
                                             *
                                             * Emits an {Approval} event indicating the updated allowance.
                                             *
                                             * Requirements:
                                             *
                                             * - `spender` cannot be the zero address.
                                             * - `spender` must have allowance for the caller of at least
                                             * `subtractedValue`.
                                             */
                                            function decreaseAllowance(address spender, uint256 subtractedValue) public virtual returns (bool) {
                                                _approve(_msgSender(), spender, _allowances[_msgSender()][spender].sub(subtractedValue, "ERC20: decreased allowance below zero"));
                                                return true;
                                            }
                                            /**
                                             * @dev Moves tokens `amount` from `sender` to `recipient`.
                                             *
                                             * This is internal function is equivalent to {transfer}, and can be used to
                                             * e.g. implement automatic token fees, slashing mechanisms, etc.
                                             *
                                             * Emits a {Transfer} event.
                                             *
                                             * Requirements:
                                             *
                                             * - `sender` cannot be the zero address.
                                             * - `recipient` cannot be the zero address.
                                             * - `sender` must have a balance of at least `amount`.
                                             */
                                            function _transfer(address sender, address recipient, uint256 amount) internal virtual {
                                                require(sender != address(0), "ERC20: transfer from the zero address");
                                                require(recipient != address(0), "ERC20: transfer to the zero address");
                                                _beforeTokenTransfer(sender, recipient, amount);
                                                _balances[sender] = _balances[sender].sub(amount, "ERC20: transfer amount exceeds balance");
                                                _balances[recipient] = _balances[recipient].add(amount);
                                                emit Transfer(sender, recipient, amount);
                                            }
                                            /** @dev Creates `amount` tokens and assigns them to `account`, increasing
                                             * the total supply.
                                             *
                                             * Emits a {Transfer} event with `from` set to the zero address.
                                             *
                                             * Requirements
                                             *
                                             * - `to` cannot be the zero address.
                                             */
                                            function _mint(address account, uint256 amount) internal virtual {
                                                require(account != address(0), "ERC20: mint to the zero address");
                                                _beforeTokenTransfer(address(0), account, amount);
                                                _totalSupply = _totalSupply.add(amount);
                                                _balances[account] = _balances[account].add(amount);
                                                emit Transfer(address(0), account, amount);
                                            }
                                            /**
                                             * @dev Destroys `amount` tokens from `account`, reducing the
                                             * total supply.
                                             *
                                             * Emits a {Transfer} event with `to` set to the zero address.
                                             *
                                             * Requirements
                                             *
                                             * - `account` cannot be the zero address.
                                             * - `account` must have at least `amount` tokens.
                                             */
                                            function _burn(address account, uint256 amount) internal virtual {
                                                require(account != address(0), "ERC20: burn from the zero address");
                                                _beforeTokenTransfer(account, address(0), amount);
                                                _balances[account] = _balances[account].sub(amount, "ERC20: burn amount exceeds balance");
                                                _totalSupply = _totalSupply.sub(amount);
                                                emit Transfer(account, address(0), amount);
                                            }
                                            /**
                                             * @dev Sets `amount` as the allowance of `spender` over the `owner` s tokens.
                                             *
                                             * This internal function is equivalent to `approve`, and can be used to
                                             * e.g. set automatic allowances for certain subsystems, etc.
                                             *
                                             * Emits an {Approval} event.
                                             *
                                             * Requirements:
                                             *
                                             * - `owner` cannot be the zero address.
                                             * - `spender` cannot be the zero address.
                                             */
                                            function _approve(address owner, address spender, uint256 amount) internal virtual {
                                                require(owner != address(0), "ERC20: approve from the zero address");
                                                require(spender != address(0), "ERC20: approve to the zero address");
                                                _allowances[owner][spender] = amount;
                                                emit Approval(owner, spender, amount);
                                            }
                                            /**
                                             * @dev Sets {decimals} to a value other than the default one of 18.
                                             *
                                             * WARNING: This function should only be called from the constructor. Most
                                             * applications that interact with token contracts will not expect
                                             * {decimals} to ever change, and may work incorrectly if it does.
                                             */
                                            function _setupDecimals(uint8 decimals_) internal {
                                                _decimals = decimals_;
                                            }
                                            /**
                                             * @dev Hook that is called before any transfer of tokens. This includes
                                             * minting and burning.
                                             *
                                             * Calling conditions:
                                             *
                                             * - when `from` and `to` are both non-zero, `amount` of ``from``'s tokens
                                             * will be to transferred to `to`.
                                             * - when `from` is zero, `amount` tokens will be minted for `to`.
                                             * - when `to` is zero, `amount` of ``from``'s tokens will be burned.
                                             * - `from` and `to` are never both zero.
                                             *
                                             * To learn more about hooks, head to xref:ROOT:extending-contracts.adoc#using-hooks[Using Hooks].
                                             */
                                            function _beforeTokenTransfer(address from, address to, uint256 amount) internal virtual { }
                                        }
                                        // SPDX-License-Identifier: MIT
                                        pragma solidity ^0.6.0;
                                        /*
                                         * @dev Provides information about the current execution context, including the
                                         * sender of the transaction and its data. While these are generally available
                                         * via msg.sender and msg.data, they should not be accessed in such a direct
                                         * manner, since when dealing with GSN meta-transactions the account sending and
                                         * paying for execution may not be the actual sender (as far as an application
                                         * is concerned).
                                         *
                                         * This contract is only required for intermediate, library-like contracts.
                                         */
                                        abstract contract Context {
                                            function _msgSender() internal view virtual returns (address payable) {
                                                return msg.sender;
                                            }
                                            function _msgData() internal view virtual returns (bytes memory) {
                                                this; // silence state mutability warning without generating bytecode - see https://github.com/ethereum/solidity/issues/2691
                                                return msg.data;
                                            }
                                        }
                                        // SPDX-License-Identifier: MIT
                                        pragma solidity ^0.6.0;
                                        import "@openzeppelin/contracts/access/Ownable.sol";
                                        import "@openzeppelin/contracts/utils/Pausable.sol";
                                        import "@openzeppelin/contracts/utils/Address.sol";
                                        import "@openzeppelin/contracts/utils/ReentrancyGuard.sol";
                                        import "@openzeppelin/contracts/token/ERC20/IERC20.sol";
                                        import "@openzeppelin/contracts/token/ERC20/SafeERC20.sol";
                                        import "./ICHI.sol";
                                        import "./Spender.sol";
                                        /**
                                         * @title MetaSwap
                                         */
                                        contract MetaSwap is Ownable, Pausable, ReentrancyGuard {
                                            using SafeERC20 for IERC20;
                                            using Address for address;
                                            using Address for address payable;
                                            struct Adapter {
                                                address addr; // adapter's address
                                                bytes4 selector;
                                                bytes data; // adapter's fixed data
                                            }
                                            ICHI public immutable chi;
                                            Spender public immutable spender;
                                            // Mapping of aggregatorId to aggregator
                                            mapping(string => Adapter) public adapters;
                                            mapping(string => bool) public adapterRemoved;
                                            event AdapterSet(
                                                string indexed aggregatorId,
                                                address indexed addr,
                                                bytes4 selector,
                                                bytes data
                                            );
                                            event AdapterRemoved(string indexed aggregatorId);
                                            event Swap(string indexed aggregatorId, address indexed sender);
                                            constructor(ICHI _chi) public {
                                                chi = _chi;
                                                spender = new Spender();
                                            }
                                            /**
                                             * @dev Sets the adapter for an aggregator. It can't be changed later.
                                             * @param aggregatorId Aggregator's identifier
                                             * @param addr Address of the contract that contains the logic for this aggregator
                                             * @param selector The function selector of the swap function in the adapter
                                             * @param data Fixed abi encoded data the will be passed in each delegatecall made to the adapter
                                             */
                                            function setAdapter(
                                                string calldata aggregatorId,
                                                address addr,
                                                bytes4 selector,
                                                bytes calldata data
                                            ) external onlyOwner {
                                                require(addr.isContract(), "ADAPTER_IS_NOT_A_CONTRACT");
                                                require(!adapterRemoved[aggregatorId], "ADAPTER_REMOVED");
                                                Adapter storage adapter = adapters[aggregatorId];
                                                require(adapter.addr == address(0), "ADAPTER_EXISTS");
                                                adapter.addr = addr;
                                                adapter.selector = selector;
                                                adapter.data = data;
                                                emit AdapterSet(aggregatorId, addr, selector, data);
                                            }
                                            /**
                                             * @dev Removes the adapter for an existing aggregator. This can't be undone.
                                             * @param aggregatorId Aggregator's identifier
                                             */
                                            function removeAdapter(string calldata aggregatorId) external onlyOwner {
                                                require(
                                                    adapters[aggregatorId].addr != address(0),
                                                    "ADAPTER_DOES_NOT_EXIST"
                                                );
                                                delete adapters[aggregatorId];
                                                adapterRemoved[aggregatorId] = true;
                                                emit AdapterRemoved(aggregatorId);
                                            }
                                            /**
                                             * @dev Performs a swap
                                             * @param aggregatorId Identifier of the aggregator to be used for the swap
                                             * @param data Dynamic data which is concatenated with the fixed aggregator's
                                             * data in the delecatecall made to the adapter
                                             */
                                            function swap(
                                                string calldata aggregatorId,
                                                IERC20 tokenFrom,
                                                uint256 amount,
                                                bytes calldata data
                                            ) external payable whenNotPaused nonReentrant {
                                                _swap(aggregatorId, tokenFrom, amount, data);
                                            }
                                            /**
                                             * @dev Performs a swap
                                             * @param aggregatorId Identifier of the aggregator to be used for the swap
                                             * @param data Dynamic data which is concatenated with the fixed aggregator's
                                             * data in the delecatecall made to the adapter
                                             */
                                            function swapUsingGasToken(
                                                string calldata aggregatorId,
                                                IERC20 tokenFrom,
                                                uint256 amount,
                                                bytes calldata data
                                            ) external payable whenNotPaused nonReentrant {
                                                uint256 gas = gasleft();
                                                _swap(aggregatorId, tokenFrom, amount, data);
                                                uint256 gasSpent = 21000 + gas - gasleft() + 16 * msg.data.length;
                                                chi.freeFromUpTo(msg.sender, (gasSpent + 14154) / 41947);
                                            }
                                            function pauseSwaps() external onlyOwner {
                                                _pause();
                                            }
                                            function unpauseSwaps() external onlyOwner {
                                                _unpause();
                                            }
                                            function _swap(
                                                string calldata aggregatorId,
                                                IERC20 tokenFrom,
                                                uint256 amount,
                                                bytes calldata data
                                            ) internal {
                                                Adapter storage adapter = adapters[aggregatorId];
                                                if (address(tokenFrom) != Constants.ETH) {
                                                    tokenFrom.safeTransferFrom(msg.sender, address(spender), amount);
                                                }
                                                spender.swap{value: msg.value}(
                                                    adapter.addr,
                                                    abi.encodePacked(
                                                        adapter.selector,
                                                        abi.encode(msg.sender),
                                                        adapter.data,
                                                        data
                                                    )
                                                );
                                                emit Swap(aggregatorId, msg.sender);
                                            }
                                        }
                                        // SPDX-License-Identifier: MIT
                                        pragma solidity ^0.6.0;
                                        import "../GSN/Context.sol";
                                        /**
                                         * @dev Contract module which provides a basic access control mechanism, where
                                         * there is an account (an owner) that can be granted exclusive access to
                                         * specific functions.
                                         *
                                         * By default, the owner account will be the one that deploys the contract. This
                                         * can later be changed with {transferOwnership}.
                                         *
                                         * This module is used through inheritance. It will make available the modifier
                                         * `onlyOwner`, which can be applied to your functions to restrict their use to
                                         * the owner.
                                         */
                                        contract Ownable is Context {
                                            address private _owner;
                                            event OwnershipTransferred(address indexed previousOwner, address indexed newOwner);
                                            /**
                                             * @dev Initializes the contract setting the deployer as the initial owner.
                                             */
                                            constructor () internal {
                                                address msgSender = _msgSender();
                                                _owner = msgSender;
                                                emit OwnershipTransferred(address(0), msgSender);
                                            }
                                            /**
                                             * @dev Returns the address of the current owner.
                                             */
                                            function owner() public view returns (address) {
                                                return _owner;
                                            }
                                            /**
                                             * @dev Throws if called by any account other than the owner.
                                             */
                                            modifier onlyOwner() {
                                                require(_owner == _msgSender(), "Ownable: caller is not the owner");
                                                _;
                                            }
                                            /**
                                             * @dev Leaves the contract without owner. It will not be possible to call
                                             * `onlyOwner` functions anymore. Can only be called by the current owner.
                                             *
                                             * NOTE: Renouncing ownership will leave the contract without an owner,
                                             * thereby removing any functionality that is only available to the owner.
                                             */
                                            function renounceOwnership() public virtual onlyOwner {
                                                emit OwnershipTransferred(_owner, address(0));
                                                _owner = address(0);
                                            }
                                            /**
                                             * @dev Transfers ownership of the contract to a new account (`newOwner`).
                                             * Can only be called by the current owner.
                                             */
                                            function transferOwnership(address newOwner) public virtual onlyOwner {
                                                require(newOwner != address(0), "Ownable: new owner is the zero address");
                                                emit OwnershipTransferred(_owner, newOwner);
                                                _owner = newOwner;
                                            }
                                        }
                                        // SPDX-License-Identifier: MIT
                                        pragma solidity ^0.6.0;
                                        import "../GSN/Context.sol";
                                        /**
                                         * @dev Contract module which allows children to implement an emergency stop
                                         * mechanism that can be triggered by an authorized account.
                                         *
                                         * This module is used through inheritance. It will make available the
                                         * modifiers `whenNotPaused` and `whenPaused`, which can be applied to
                                         * the functions of your contract. Note that they will not be pausable by
                                         * simply including this module, only once the modifiers are put in place.
                                         */
                                        contract Pausable is Context {
                                            /**
                                             * @dev Emitted when the pause is triggered by `account`.
                                             */
                                            event Paused(address account);
                                            /**
                                             * @dev Emitted when the pause is lifted by `account`.
                                             */
                                            event Unpaused(address account);
                                            bool private _paused;
                                            /**
                                             * @dev Initializes the contract in unpaused state.
                                             */
                                            constructor () internal {
                                                _paused = false;
                                            }
                                            /**
                                             * @dev Returns true if the contract is paused, and false otherwise.
                                             */
                                            function paused() public view returns (bool) {
                                                return _paused;
                                            }
                                            /**
                                             * @dev Modifier to make a function callable only when the contract is not paused.
                                             *
                                             * Requirements:
                                             *
                                             * - The contract must not be paused.
                                             */
                                            modifier whenNotPaused() {
                                                require(!_paused, "Pausable: paused");
                                                _;
                                            }
                                            /**
                                             * @dev Modifier to make a function callable only when the contract is paused.
                                             *
                                             * Requirements:
                                             *
                                             * - The contract must be paused.
                                             */
                                            modifier whenPaused() {
                                                require(_paused, "Pausable: not paused");
                                                _;
                                            }
                                            /**
                                             * @dev Triggers stopped state.
                                             *
                                             * Requirements:
                                             *
                                             * - The contract must not be paused.
                                             */
                                            function _pause() internal virtual whenNotPaused {
                                                _paused = true;
                                                emit Paused(_msgSender());
                                            }
                                            /**
                                             * @dev Returns to normal state.
                                             *
                                             * Requirements:
                                             *
                                             * - The contract must be paused.
                                             */
                                            function _unpause() internal virtual whenPaused {
                                                _paused = false;
                                                emit Unpaused(_msgSender());
                                            }
                                        }
                                        // SPDX-License-Identifier: MIT
                                        pragma solidity ^0.6.0;
                                        /**
                                         * @dev Contract module that helps prevent reentrant calls to a function.
                                         *
                                         * Inheriting from `ReentrancyGuard` will make the {nonReentrant} modifier
                                         * available, which can be applied to functions to make sure there are no nested
                                         * (reentrant) calls to them.
                                         *
                                         * Note that because there is a single `nonReentrant` guard, functions marked as
                                         * `nonReentrant` may not call one another. This can be worked around by making
                                         * those functions `private`, and then adding `external` `nonReentrant` entry
                                         * points to them.
                                         *
                                         * TIP: If you would like to learn more about reentrancy and alternative ways
                                         * to protect against it, check out our blog post
                                         * https://blog.openzeppelin.com/reentrancy-after-istanbul/[Reentrancy After Istanbul].
                                         */
                                        contract ReentrancyGuard {
                                            // Booleans are more expensive than uint256 or any type that takes up a full
                                            // word because each write operation emits an extra SLOAD to first read the
                                            // slot's contents, replace the bits taken up by the boolean, and then write
                                            // back. This is the compiler's defense against contract upgrades and
                                            // pointer aliasing, and it cannot be disabled.
                                            // The values being non-zero value makes deployment a bit more expensive,
                                            // but in exchange the refund on every call to nonReentrant will be lower in
                                            // amount. Since refunds are capped to a percentage of the total
                                            // transaction's gas, it is best to keep them low in cases like this one, to
                                            // increase the likelihood of the full refund coming into effect.
                                            uint256 private constant _NOT_ENTERED = 1;
                                            uint256 private constant _ENTERED = 2;
                                            uint256 private _status;
                                            constructor () internal {
                                                _status = _NOT_ENTERED;
                                            }
                                            /**
                                             * @dev Prevents a contract from calling itself, directly or indirectly.
                                             * Calling a `nonReentrant` function from another `nonReentrant`
                                             * function is not supported. It is possible to prevent this from happening
                                             * by making the `nonReentrant` function external, and make it call a
                                             * `private` function that does the actual work.
                                             */
                                            modifier nonReentrant() {
                                                // On the first call to nonReentrant, _notEntered will be true
                                                require(_status != _ENTERED, "ReentrancyGuard: reentrant call");
                                                // Any calls to nonReentrant after this point will fail
                                                _status = _ENTERED;
                                                _;
                                                // By storing the original value once again, a refund is triggered (see
                                                // https://eips.ethereum.org/EIPS/eip-2200)
                                                _status = _NOT_ENTERED;
                                            }
                                        }
                                        // SPDX-License-Identifier: MIT
                                        pragma solidity ^0.6.0;
                                        import "./Constants.sol";
                                        contract Spender {
                                            address public immutable metaswap;
                                            constructor() public {
                                                metaswap = msg.sender;
                                            }
                                            /// @dev Receives ether from swaps
                                            fallback() external payable {}
                                            function swap(address adapter, bytes calldata data) external payable {
                                                require(msg.sender == metaswap, "FORBIDDEN");
                                                require(adapter != address(0), "ADAPTER_NOT_PROVIDED");
                                                _delegate(adapter, data, "ADAPTER_DELEGATECALL_FAILED");
                                            }
                                            /**
                                             * @dev Performs a delegatecall and bubbles up the errors, adapted from
                                             * https://github.com/OpenZeppelin/openzeppelin-contracts/blob/master/contracts/utils/Address.sol
                                             * @param target Address of the contract to delegatecall
                                             * @param data Data passed in the delegatecall
                                             * @param errorMessage Fallback revert reason
                                             */
                                            function _delegate(
                                                address target,
                                                bytes memory data,
                                                string memory errorMessage
                                            ) private returns (bytes memory) {
                                                // solhint-disable-next-line avoid-low-level-calls
                                                (bool success, bytes memory returndata) = target.delegatecall(data);
                                                if (success) {
                                                    return returndata;
                                                } else {
                                                    // Look for revert reason and bubble it up if present
                                                    if (returndata.length > 0) {
                                                        // The easiest way to bubble the revert reason is using memory via assembly
                                                        // solhint-disable-next-line no-inline-assembly
                                                        assembly {
                                                            let returndata_size := mload(returndata)
                                                            revert(add(32, returndata), returndata_size)
                                                        }
                                                    } else {
                                                        revert(errorMessage);
                                                    }
                                                }
                                            }
                                        }
                                        pragma solidity ^0.6.0;
                                        import "@openzeppelin/contracts/token/ERC20/IERC20.sol";
                                        import "@openzeppelin/contracts/token/ERC20/SafeERC20.sol";
                                        import "@openzeppelin/contracts/utils/Address.sol";
                                        contract MockAdapter {
                                            using SafeERC20 for IERC20;
                                            using Address for address;
                                            using Address for address payable;
                                            event MockAdapterEvent(
                                                address sender,
                                                uint256 valueFixed,
                                                uint256 valueDynamic
                                            );
                                            function test(
                                                address sender,
                                                uint256 valueFixed,
                                                uint256 valueDynamic
                                            ) external payable {
                                                emit MockAdapterEvent(sender, valueFixed, valueDynamic);
                                            }
                                            function testRevert(
                                                address,
                                                uint256,
                                                uint256
                                            ) external payable {
                                                revert("SWAP_FAILED");
                                            }
                                            function testRevertNoReturnData(
                                                address,
                                                uint256,
                                                uint256
                                            ) external payable {
                                                revert();
                                            }
                                        }
                                        pragma solidity ^0.6.0;
                                        // TAKEN FROM https://github.com/gnosis/mock-contract
                                        // TODO: use their npm package once it is published for solidity 0.6
                                        interface MockInterface {
                                            /**
                                             * @dev After calling this method, the mock will return `response` when it is called
                                             * with any calldata that is not mocked more specifically below
                                             * (e.g. using givenMethodReturn).
                                             * @param response ABI encoded response that will be returned if method is invoked
                                             */
                                            function givenAnyReturn(bytes calldata response) external;
                                            function givenAnyReturnBool(bool response) external;
                                            function givenAnyReturnUint(uint256 response) external;
                                            function givenAnyReturnAddress(address response) external;
                                            function givenAnyRevert() external;
                                            function givenAnyRevertWithMessage(string calldata message) external;
                                            function givenAnyRunOutOfGas() external;
                                            /**
                                             * @dev After calling this method, the mock will return `response` when the given
                                             * methodId is called regardless of arguments. If the methodId and arguments
                                             * are mocked more specifically (using `givenMethodAndArguments`) the latter
                                             * will take precedence.
                                             * @param method ABI encoded methodId. It is valid to pass full calldata (including arguments). The mock will extract the methodId from it
                                             * @param response ABI encoded response that will be returned if method is invoked
                                             */
                                            function givenMethodReturn(bytes calldata method, bytes calldata response)
                                                external;
                                            function givenMethodReturnBool(bytes calldata method, bool response)
                                                external;
                                            function givenMethodReturnUint(bytes calldata method, uint256 response)
                                                external;
                                            function givenMethodReturnAddress(bytes calldata method, address response)
                                                external;
                                            function givenMethodRevert(bytes calldata method) external;
                                            function givenMethodRevertWithMessage(
                                                bytes calldata method,
                                                string calldata message
                                            ) external;
                                            function givenMethodRunOutOfGas(bytes calldata method) external;
                                            /**
                                             * @dev After calling this method, the mock will return `response` when the given
                                             * methodId is called with matching arguments. These exact calldataMocks will take
                                             * precedence over all other calldataMocks.
                                             * @param call ABI encoded calldata (methodId and arguments)
                                             * @param response ABI encoded response that will be returned if contract is invoked with calldata
                                             */
                                            function givenCalldataReturn(bytes calldata call, bytes calldata response)
                                                external;
                                            function givenCalldataReturnBool(bytes calldata call, bool response)
                                                external;
                                            function givenCalldataReturnUint(bytes calldata call, uint256 response)
                                                external;
                                            function givenCalldataReturnAddress(bytes calldata call, address response)
                                                external;
                                            function givenCalldataRevert(bytes calldata call) external;
                                            function givenCalldataRevertWithMessage(
                                                bytes calldata call,
                                                string calldata message
                                            ) external;
                                            function givenCalldataRunOutOfGas(bytes calldata call) external;
                                            /**
                                             * @dev Returns the number of times anything has been called on this mock since last reset
                                             */
                                            function invocationCount() external returns (uint256);
                                            /**
                                             * @dev Returns the number of times the given method has been called on this mock since last reset
                                             * @param method ABI encoded methodId. It is valid to pass full calldata (including arguments). The mock will extract the methodId from it
                                             */
                                            function invocationCountForMethod(bytes calldata method)
                                                external
                                                returns (uint256);
                                            /**
                                             * @dev Returns the number of times this mock has been called with the exact calldata since last reset.
                                             * @param call ABI encoded calldata (methodId and arguments)
                                             */
                                            function invocationCountForCalldata(bytes calldata call)
                                                external
                                                returns (uint256);
                                            /**
                                             * @dev Resets all mocked methods and invocation counts.
                                             */
                                            function reset() external;
                                        }
                                        /**
                                         * Implementation of the MockInterface.
                                         */
                                        contract MockContract is MockInterface {
                                            enum MockType {Return, Revert, OutOfGas}
                                            bytes32 public constant MOCKS_LIST_START = hex"01";
                                            bytes public constant MOCKS_LIST_END = "0xff";
                                            bytes32 public constant MOCKS_LIST_END_HASH = keccak256(MOCKS_LIST_END);
                                            bytes4 public constant SENTINEL_ANY_MOCKS = hex"01";
                                            bytes public constant DEFAULT_FALLBACK_VALUE = abi.encode(false);
                                            // A linked list allows easy iteration and inclusion checks
                                            mapping(bytes32 => bytes) calldataMocks;
                                            mapping(bytes => MockType) calldataMockTypes;
                                            mapping(bytes => bytes) calldataExpectations;
                                            mapping(bytes => string) calldataRevertMessage;
                                            mapping(bytes32 => uint256) calldataInvocations;
                                            mapping(bytes4 => bytes4) methodIdMocks;
                                            mapping(bytes4 => MockType) methodIdMockTypes;
                                            mapping(bytes4 => bytes) methodIdExpectations;
                                            mapping(bytes4 => string) methodIdRevertMessages;
                                            mapping(bytes32 => uint256) methodIdInvocations;
                                            MockType fallbackMockType;
                                            bytes fallbackExpectation = DEFAULT_FALLBACK_VALUE;
                                            string fallbackRevertMessage;
                                            uint256 invocations;
                                            uint256 resetCount;
                                            constructor() public {
                                                calldataMocks[MOCKS_LIST_START] = MOCKS_LIST_END;
                                                methodIdMocks[SENTINEL_ANY_MOCKS] = SENTINEL_ANY_MOCKS;
                                            }
                                            function trackCalldataMock(bytes memory call) private {
                                                bytes32 callHash = keccak256(call);
                                                if (calldataMocks[callHash].length == 0) {
                                                    calldataMocks[callHash] = calldataMocks[MOCKS_LIST_START];
                                                    calldataMocks[MOCKS_LIST_START] = call;
                                                }
                                            }
                                            function trackMethodIdMock(bytes4 methodId) private {
                                                if (methodIdMocks[methodId] == 0x0) {
                                                    methodIdMocks[methodId] = methodIdMocks[SENTINEL_ANY_MOCKS];
                                                    methodIdMocks[SENTINEL_ANY_MOCKS] = methodId;
                                                }
                                            }
                                            function _givenAnyReturn(bytes memory response) internal {
                                                fallbackMockType = MockType.Return;
                                                fallbackExpectation = response;
                                            }
                                            function givenAnyReturn(bytes calldata response) external override {
                                                _givenAnyReturn(response);
                                            }
                                            function givenAnyReturnBool(bool response) external override {
                                                uint256 flag = response ? 1 : 0;
                                                _givenAnyReturn(uintToBytes(flag));
                                            }
                                            function givenAnyReturnUint(uint256 response) external override {
                                                _givenAnyReturn(uintToBytes(response));
                                            }
                                            function givenAnyReturnAddress(address response) external override {
                                                _givenAnyReturn(uintToBytes(uint256(response)));
                                            }
                                            function givenAnyRevert() external override {
                                                fallbackMockType = MockType.Revert;
                                                fallbackRevertMessage = "";
                                            }
                                            function givenAnyRevertWithMessage(string calldata message)
                                                external
                                                override
                                            {
                                                fallbackMockType = MockType.Revert;
                                                fallbackRevertMessage = message;
                                            }
                                            function givenAnyRunOutOfGas() external override {
                                                fallbackMockType = MockType.OutOfGas;
                                            }
                                            function _givenCalldataReturn(bytes memory call, bytes memory response)
                                                private
                                            {
                                                calldataMockTypes[call] = MockType.Return;
                                                calldataExpectations[call] = response;
                                                trackCalldataMock(call);
                                            }
                                            function givenCalldataReturn(bytes calldata call, bytes calldata response)
                                                external
                                                override
                                            {
                                                _givenCalldataReturn(call, response);
                                            }
                                            function givenCalldataReturnBool(bytes calldata call, bool response)
                                                external
                                                override
                                            {
                                                uint256 flag = response ? 1 : 0;
                                                _givenCalldataReturn(call, uintToBytes(flag));
                                            }
                                            function givenCalldataReturnUint(bytes calldata call, uint256 response)
                                                external
                                                override
                                            {
                                                _givenCalldataReturn(call, uintToBytes(response));
                                            }
                                            function givenCalldataReturnAddress(bytes calldata call, address response)
                                                external
                                                override
                                            {
                                                _givenCalldataReturn(call, uintToBytes(uint256(response)));
                                            }
                                            function _givenMethodReturn(bytes memory call, bytes memory response)
                                                private
                                            {
                                                bytes4 method = bytesToBytes4(call);
                                                methodIdMockTypes[method] = MockType.Return;
                                                methodIdExpectations[method] = response;
                                                trackMethodIdMock(method);
                                            }
                                            function givenMethodReturn(bytes calldata call, bytes calldata response)
                                                external
                                                override
                                            {
                                                _givenMethodReturn(call, response);
                                            }
                                            function givenMethodReturnBool(bytes calldata call, bool response)
                                                external
                                                override
                                            {
                                                uint256 flag = response ? 1 : 0;
                                                _givenMethodReturn(call, uintToBytes(flag));
                                            }
                                            function givenMethodReturnUint(bytes calldata call, uint256 response)
                                                external
                                                override
                                            {
                                                _givenMethodReturn(call, uintToBytes(response));
                                            }
                                            function givenMethodReturnAddress(bytes calldata call, address response)
                                                external
                                                override
                                            {
                                                _givenMethodReturn(call, uintToBytes(uint256(response)));
                                            }
                                            function givenCalldataRevert(bytes calldata call) external override {
                                                calldataMockTypes[call] = MockType.Revert;
                                                calldataRevertMessage[call] = "";
                                                trackCalldataMock(call);
                                            }
                                            function givenMethodRevert(bytes calldata call) external override {
                                                bytes4 method = bytesToBytes4(call);
                                                methodIdMockTypes[method] = MockType.Revert;
                                                trackMethodIdMock(method);
                                            }
                                            function givenCalldataRevertWithMessage(
                                                bytes calldata call,
                                                string calldata message
                                            ) external override {
                                                calldataMockTypes[call] = MockType.Revert;
                                                calldataRevertMessage[call] = message;
                                                trackCalldataMock(call);
                                            }
                                            function givenMethodRevertWithMessage(
                                                bytes calldata call,
                                                string calldata message
                                            ) external override {
                                                bytes4 method = bytesToBytes4(call);
                                                methodIdMockTypes[method] = MockType.Revert;
                                                methodIdRevertMessages[method] = message;
                                                trackMethodIdMock(method);
                                            }
                                            function givenCalldataRunOutOfGas(bytes calldata call) external override {
                                                calldataMockTypes[call] = MockType.OutOfGas;
                                                trackCalldataMock(call);
                                            }
                                            function givenMethodRunOutOfGas(bytes calldata call) external override {
                                                bytes4 method = bytesToBytes4(call);
                                                methodIdMockTypes[method] = MockType.OutOfGas;
                                                trackMethodIdMock(method);
                                            }
                                            function invocationCount() external override returns (uint256) {
                                                return invocations;
                                            }
                                            function invocationCountForMethod(bytes calldata call)
                                                external
                                                override
                                                returns (uint256)
                                            {
                                                bytes4 method = bytesToBytes4(call);
                                                return
                                                    methodIdInvocations[keccak256(
                                                        abi.encodePacked(resetCount, method)
                                                    )];
                                            }
                                            function invocationCountForCalldata(bytes calldata call)
                                                external
                                                override
                                                returns (uint256)
                                            {
                                                return
                                                    calldataInvocations[keccak256(abi.encodePacked(resetCount, call))];
                                            }
                                            function reset() external override {
                                                // Reset all exact calldataMocks
                                                bytes memory nextMock = calldataMocks[MOCKS_LIST_START];
                                                bytes32 mockHash = keccak256(nextMock);
                                                // We cannot compary bytes
                                                while (mockHash != MOCKS_LIST_END_HASH) {
                                                    // Reset all mock maps
                                                    calldataMockTypes[nextMock] = MockType.Return;
                                                    calldataExpectations[nextMock] = hex"";
                                                    calldataRevertMessage[nextMock] = "";
                                                    // Set next mock to remove
                                                    nextMock = calldataMocks[mockHash];
                                                    // Remove from linked list
                                                    calldataMocks[mockHash] = "";
                                                    // Update mock hash
                                                    mockHash = keccak256(nextMock);
                                                }
                                                // Clear list
                                                calldataMocks[MOCKS_LIST_START] = MOCKS_LIST_END;
                                                // Reset all any calldataMocks
                                                bytes4 nextAnyMock = methodIdMocks[SENTINEL_ANY_MOCKS];
                                                while (nextAnyMock != SENTINEL_ANY_MOCKS) {
                                                    bytes4 currentAnyMock = nextAnyMock;
                                                    methodIdMockTypes[currentAnyMock] = MockType.Return;
                                                    methodIdExpectations[currentAnyMock] = hex"";
                                                    methodIdRevertMessages[currentAnyMock] = "";
                                                    nextAnyMock = methodIdMocks[currentAnyMock];
                                                    // Remove from linked list
                                                    methodIdMocks[currentAnyMock] = 0x0;
                                                }
                                                // Clear list
                                                methodIdMocks[SENTINEL_ANY_MOCKS] = SENTINEL_ANY_MOCKS;
                                                fallbackExpectation = DEFAULT_FALLBACK_VALUE;
                                                fallbackMockType = MockType.Return;
                                                invocations = 0;
                                                resetCount += 1;
                                            }
                                            function useAllGas() private {
                                                while (true) {
                                                    bool s;
                                                    assembly {
                                                        //expensive call to EC multiply contract
                                                        s := call(sub(gas(), 2000), 6, 0, 0x0, 0xc0, 0x0, 0x60)
                                                    }
                                                }
                                            }
                                            function bytesToBytes4(bytes memory b) private pure returns (bytes4) {
                                                bytes4 out;
                                                for (uint256 i = 0; i < 4; i++) {
                                                    out |= bytes4(b[i] & 0xFF) >> (i * 8);
                                                }
                                                return out;
                                            }
                                            function uintToBytes(uint256 x) private pure returns (bytes memory b) {
                                                b = new bytes(32);
                                                assembly {
                                                    mstore(add(b, 32), x)
                                                }
                                            }
                                            function updateInvocationCount(
                                                bytes4 methodId,
                                                bytes memory originalMsgData
                                            ) public {
                                                require(
                                                    msg.sender == address(this),
                                                    "Can only be called from the contract itself"
                                                );
                                                invocations += 1;
                                                methodIdInvocations[keccak256(
                                                    abi.encodePacked(resetCount, methodId)
                                                )] += 1;
                                                calldataInvocations[keccak256(
                                                    abi.encodePacked(resetCount, originalMsgData)
                                                )] += 1;
                                            }
                                            fallback() external payable {
                                                bytes4 methodId;
                                                assembly {
                                                    methodId := calldataload(0)
                                                }
                                                // First, check exact matching overrides
                                                if (calldataMockTypes[msg.data] == MockType.Revert) {
                                                    revert(calldataRevertMessage[msg.data]);
                                                }
                                                if (calldataMockTypes[msg.data] == MockType.OutOfGas) {
                                                    useAllGas();
                                                }
                                                bytes memory result = calldataExpectations[msg.data];
                                                // Then check method Id overrides
                                                if (result.length == 0) {
                                                    if (methodIdMockTypes[methodId] == MockType.Revert) {
                                                        revert(methodIdRevertMessages[methodId]);
                                                    }
                                                    if (methodIdMockTypes[methodId] == MockType.OutOfGas) {
                                                        useAllGas();
                                                    }
                                                    result = methodIdExpectations[methodId];
                                                }
                                                // Last, use the fallback override
                                                if (result.length == 0) {
                                                    if (fallbackMockType == MockType.Revert) {
                                                        revert(fallbackRevertMessage);
                                                    }
                                                    if (fallbackMockType == MockType.OutOfGas) {
                                                        useAllGas();
                                                    }
                                                    result = fallbackExpectation;
                                                }
                                                // Record invocation as separate call so we don't rollback in case we are called with STATICCALL
                                                (, bytes memory r) = address(this).call{gas: 100000}(
                                                    abi.encodeWithSignature(
                                                        "updateInvocationCount(bytes4,bytes)",
                                                        methodId,
                                                        msg.data
                                                    )
                                                );
                                                assert(r.length == 0);
                                                assembly {
                                                    return(add(0x20, result), mload(result))
                                                }
                                            }
                                        }
                                        pragma solidity ^0.6.0;
                                        contract MockSelfDestruct {
                                            constructor() public payable {}
                                            fallback() external payable {
                                                selfdestruct(msg.sender);
                                            }
                                            function kill(address payable target) external payable {
                                                selfdestruct(target);
                                            }
                                        }
                                        

                                        File 2 of 11: FiatTokenProxy
                                        pragma solidity ^0.4.24;
                                        
                                        // File: zos-lib/contracts/upgradeability/Proxy.sol
                                        
                                        /**
                                         * @title Proxy
                                         * @dev Implements delegation of calls to other contracts, with proper
                                         * forwarding of return values and bubbling of failures.
                                         * It defines a fallback function that delegates all calls to the address
                                         * returned by the abstract _implementation() internal function.
                                         */
                                        contract Proxy {
                                          /**
                                           * @dev Fallback function.
                                           * Implemented entirely in `_fallback`.
                                           */
                                          function () payable external {
                                            _fallback();
                                          }
                                        
                                          /**
                                           * @return The Address of the implementation.
                                           */
                                          function _implementation() internal view returns (address);
                                        
                                          /**
                                           * @dev Delegates execution to an implementation contract.
                                           * This is a low level function that doesn't return to its internal call site.
                                           * It will return to the external caller whatever the implementation returns.
                                           * @param implementation Address to delegate.
                                           */
                                          function _delegate(address implementation) internal {
                                            assembly {
                                              // Copy msg.data. We take full control of memory in this inline assembly
                                              // block because it will not return to Solidity code. We overwrite the
                                              // Solidity scratch pad at memory position 0.
                                              calldatacopy(0, 0, calldatasize)
                                        
                                              // Call the implementation.
                                              // out and outsize are 0 because we don't know the size yet.
                                              let result := delegatecall(gas, implementation, 0, calldatasize, 0, 0)
                                        
                                              // Copy the returned data.
                                              returndatacopy(0, 0, returndatasize)
                                        
                                              switch result
                                              // delegatecall returns 0 on error.
                                              case 0 { revert(0, returndatasize) }
                                              default { return(0, returndatasize) }
                                            }
                                          }
                                        
                                          /**
                                           * @dev Function that is run as the first thing in the fallback function.
                                           * Can be redefined in derived contracts to add functionality.
                                           * Redefinitions must call super._willFallback().
                                           */
                                          function _willFallback() internal {
                                          }
                                        
                                          /**
                                           * @dev fallback implementation.
                                           * Extracted to enable manual triggering.
                                           */
                                          function _fallback() internal {
                                            _willFallback();
                                            _delegate(_implementation());
                                          }
                                        }
                                        
                                        // File: openzeppelin-solidity/contracts/AddressUtils.sol
                                        
                                        /**
                                         * Utility library of inline functions on addresses
                                         */
                                        library AddressUtils {
                                        
                                          /**
                                           * Returns whether the target address is a contract
                                           * @dev This function will return false if invoked during the constructor of a contract,
                                           * as the code is not actually created until after the constructor finishes.
                                           * @param addr address to check
                                           * @return whether the target address is a contract
                                           */
                                          function isContract(address addr) internal view returns (bool) {
                                            uint256 size;
                                            // XXX Currently there is no better way to check if there is a contract in an address
                                            // than to check the size of the code at that address.
                                            // See https://ethereum.stackexchange.com/a/14016/36603
                                            // for more details about how this works.
                                            // TODO Check this again before the Serenity release, because all addresses will be
                                            // contracts then.
                                            // solium-disable-next-line security/no-inline-assembly
                                            assembly { size := extcodesize(addr) }
                                            return size > 0;
                                          }
                                        
                                        }
                                        
                                        // File: zos-lib/contracts/upgradeability/UpgradeabilityProxy.sol
                                        
                                        /**
                                         * @title UpgradeabilityProxy
                                         * @dev This contract implements a proxy that allows to change the
                                         * implementation address to which it will delegate.
                                         * Such a change is called an implementation upgrade.
                                         */
                                        contract UpgradeabilityProxy is Proxy {
                                          /**
                                           * @dev Emitted when the implementation is upgraded.
                                           * @param implementation Address of the new implementation.
                                           */
                                          event Upgraded(address implementation);
                                        
                                          /**
                                           * @dev Storage slot with the address of the current implementation.
                                           * This is the keccak-256 hash of "org.zeppelinos.proxy.implementation", and is
                                           * validated in the constructor.
                                           */
                                          bytes32 private constant IMPLEMENTATION_SLOT = 0x7050c9e0f4ca769c69bd3a8ef740bc37934f8e2c036e5a723fd8ee048ed3f8c3;
                                        
                                          /**
                                           * @dev Contract constructor.
                                           * @param _implementation Address of the initial implementation.
                                           */
                                          constructor(address _implementation) public {
                                            assert(IMPLEMENTATION_SLOT == keccak256("org.zeppelinos.proxy.implementation"));
                                        
                                            _setImplementation(_implementation);
                                          }
                                        
                                          /**
                                           * @dev Returns the current implementation.
                                           * @return Address of the current implementation
                                           */
                                          function _implementation() internal view returns (address impl) {
                                            bytes32 slot = IMPLEMENTATION_SLOT;
                                            assembly {
                                              impl := sload(slot)
                                            }
                                          }
                                        
                                          /**
                                           * @dev Upgrades the proxy to a new implementation.
                                           * @param newImplementation Address of the new implementation.
                                           */
                                          function _upgradeTo(address newImplementation) internal {
                                            _setImplementation(newImplementation);
                                            emit Upgraded(newImplementation);
                                          }
                                        
                                          /**
                                           * @dev Sets the implementation address of the proxy.
                                           * @param newImplementation Address of the new implementation.
                                           */
                                          function _setImplementation(address newImplementation) private {
                                            require(AddressUtils.isContract(newImplementation), "Cannot set a proxy implementation to a non-contract address");
                                        
                                            bytes32 slot = IMPLEMENTATION_SLOT;
                                        
                                            assembly {
                                              sstore(slot, newImplementation)
                                            }
                                          }
                                        }
                                        
                                        // File: zos-lib/contracts/upgradeability/AdminUpgradeabilityProxy.sol
                                        
                                        /**
                                         * @title AdminUpgradeabilityProxy
                                         * @dev This contract combines an upgradeability proxy with an authorization
                                         * mechanism for administrative tasks.
                                         * All external functions in this contract must be guarded by the
                                         * `ifAdmin` modifier. See ethereum/solidity#3864 for a Solidity
                                         * feature proposal that would enable this to be done automatically.
                                         */
                                        contract AdminUpgradeabilityProxy is UpgradeabilityProxy {
                                          /**
                                           * @dev Emitted when the administration has been transferred.
                                           * @param previousAdmin Address of the previous admin.
                                           * @param newAdmin Address of the new admin.
                                           */
                                          event AdminChanged(address previousAdmin, address newAdmin);
                                        
                                          /**
                                           * @dev Storage slot with the admin of the contract.
                                           * This is the keccak-256 hash of "org.zeppelinos.proxy.admin", and is
                                           * validated in the constructor.
                                           */
                                          bytes32 private constant ADMIN_SLOT = 0x10d6a54a4754c8869d6886b5f5d7fbfa5b4522237ea5c60d11bc4e7a1ff9390b;
                                        
                                          /**
                                           * @dev Modifier to check whether the `msg.sender` is the admin.
                                           * If it is, it will run the function. Otherwise, it will delegate the call
                                           * to the implementation.
                                           */
                                          modifier ifAdmin() {
                                            if (msg.sender == _admin()) {
                                              _;
                                            } else {
                                              _fallback();
                                            }
                                          }
                                        
                                          /**
                                           * Contract constructor.
                                           * It sets the `msg.sender` as the proxy administrator.
                                           * @param _implementation address of the initial implementation.
                                           */
                                          constructor(address _implementation) UpgradeabilityProxy(_implementation) public {
                                            assert(ADMIN_SLOT == keccak256("org.zeppelinos.proxy.admin"));
                                        
                                            _setAdmin(msg.sender);
                                          }
                                        
                                          /**
                                           * @return The address of the proxy admin.
                                           */
                                          function admin() external view ifAdmin returns (address) {
                                            return _admin();
                                          }
                                        
                                          /**
                                           * @return The address of the implementation.
                                           */
                                          function implementation() external view ifAdmin returns (address) {
                                            return _implementation();
                                          }
                                        
                                          /**
                                           * @dev Changes the admin of the proxy.
                                           * Only the current admin can call this function.
                                           * @param newAdmin Address to transfer proxy administration to.
                                           */
                                          function changeAdmin(address newAdmin) external ifAdmin {
                                            require(newAdmin != address(0), "Cannot change the admin of a proxy to the zero address");
                                            emit AdminChanged(_admin(), newAdmin);
                                            _setAdmin(newAdmin);
                                          }
                                        
                                          /**
                                           * @dev Upgrade the backing implementation of the proxy.
                                           * Only the admin can call this function.
                                           * @param newImplementation Address of the new implementation.
                                           */
                                          function upgradeTo(address newImplementation) external ifAdmin {
                                            _upgradeTo(newImplementation);
                                          }
                                        
                                          /**
                                           * @dev Upgrade the backing implementation of the proxy and call a function
                                           * on the new implementation.
                                           * This is useful to initialize the proxied contract.
                                           * @param newImplementation Address of the new implementation.
                                           * @param data Data to send as msg.data in the low level call.
                                           * It should include the signature and the parameters of the function to be
                                           * called, as described in
                                           * https://solidity.readthedocs.io/en/develop/abi-spec.html#function-selector-and-argument-encoding.
                                           */
                                          function upgradeToAndCall(address newImplementation, bytes data) payable external ifAdmin {
                                            _upgradeTo(newImplementation);
                                            require(address(this).call.value(msg.value)(data));
                                          }
                                        
                                          /**
                                           * @return The admin slot.
                                           */
                                          function _admin() internal view returns (address adm) {
                                            bytes32 slot = ADMIN_SLOT;
                                            assembly {
                                              adm := sload(slot)
                                            }
                                          }
                                        
                                          /**
                                           * @dev Sets the address of the proxy admin.
                                           * @param newAdmin Address of the new proxy admin.
                                           */
                                          function _setAdmin(address newAdmin) internal {
                                            bytes32 slot = ADMIN_SLOT;
                                        
                                            assembly {
                                              sstore(slot, newAdmin)
                                            }
                                          }
                                        
                                          /**
                                           * @dev Only fall back when the sender is not the admin.
                                           */
                                          function _willFallback() internal {
                                            require(msg.sender != _admin(), "Cannot call fallback function from the proxy admin");
                                            super._willFallback();
                                          }
                                        }
                                        
                                        // File: contracts/FiatTokenProxy.sol
                                        
                                        /**
                                        * Copyright CENTRE SECZ 2018
                                        *
                                        * Permission is hereby granted, free of charge, to any person obtaining a copy 
                                        * of this software and associated documentation files (the "Software"), to deal 
                                        * in the Software without restriction, including without limitation the rights 
                                        * to use, copy, modify, merge, publish, distribute, sublicense, and/or sell 
                                        * copies of the Software, and to permit persons to whom the Software is furnished to 
                                        * do so, subject to the following conditions:
                                        *
                                        * The above copyright notice and this permission notice shall be included in all 
                                        * copies or substantial portions of the Software.
                                        *
                                        * THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR 
                                        * IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY, 
                                        * FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL THE 
                                        * AUTHORS OR COPYRIGHT HOLDERS BE LIABLE FOR ANY CLAIM, DAMAGES OR OTHER LIABILITY,
                                        * WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE, ARISING FROM, OUT OF OR IN 
                                        * CONNECTION WITH THE SOFTWARE OR THE USE OR OTHER DEALINGS IN THE SOFTWARE.
                                        */
                                        
                                        pragma solidity ^0.4.24;
                                        
                                        
                                        /**
                                         * @title FiatTokenProxy
                                         * @dev This contract proxies FiatToken calls and enables FiatToken upgrades
                                        */ 
                                        contract FiatTokenProxy is AdminUpgradeabilityProxy {
                                            constructor(address _implementation) public AdminUpgradeabilityProxy(_implementation) {
                                            }
                                        }

                                        File 3 of 11: AggregationRouterV5
                                        /*
                                                                                                   ,▄▓▓██▌   ,╓▄▄▓▓▓▓▓▓▓▓▄▄▄,,
                                                                                                ,▓██▓███▓▄▓███▓╬╬╬╬╬╬╬╬╬╬╬╬╬▓███▓▄,
                                                                                          ▄█   ▓██╬╣███████╬▓▀╬╬▓▓▓████████████▓█████▄,
                                                                                         ▓██▌ ▓██╬╣██████╬▓▌  ██████████████████████▌╙╙▀ⁿ
                                                                                        ▐████████╬▓████▓▓█╨ ▄ ╟█████████▓▓╬╬╬╬╬▓▓█████▓▄
                                                                          └▀▓▓▄╓        ╟█▓╣█████▓██████▀ ╓█▌ ███████▓▓▓▓▓╬╬╬╬╬╬╬╬╬╬╬╬▓██▓▄
                                                                             └▀████▓▄╥  ▐██╬╬██████████╙ Æ▀─ ▓███▀╚╠╬╩▀▀███████▓▓╬╬╬╬╬╬╬╬╬██▄
                                                                                └▀██▓▀▀█████▓╬▓██████▀     ▄█████▒╠"      └╙▓██████▓╬╬╬╬╬╬╬╬██▄
                                                                                   └▀██▄,└╙▀▀████▌└╙    ^"▀╙╙╙"╙██      @▄    ╙▀███████╬╬╬╬╬╬╬██µ
                                                                                      └▀██▓▄, ██▌       ╒       ╙█▓     ]▓█▓╔    ▀███████▓╬╬╬╬╬▓█▌
                                                                                          ▀█████       ▓         ╟█▌    ]╠██▓░▒╓   ▀████████╬╬╬╬╣█▌
                                                                                          ▐████      ╓█▀█▌      ,██▌    ╚Å███▓▒▒╠╓  ╙█████████╬╬╬╣█▌
                                                                                          └████     ▓█░░▓█      ▀▀▀    φ▒╫████▒▒▒▒╠╓  █████████▓╬╬▓█µ
                                                                                           ╘███µ ▌▄█▓▄▓▀`     ,▀    ,╔╠░▓██████▌╠▒▒▒φ  ██████████╬╬██
                                                                                           ▐████µ╙▓▀`     ,▀╙,╔╔φφφ╠░▄▓███████▌░▓╙▒▒▒╠ └██╬███████╬▓█⌐
                                                                                           ╫██ ▓▌         ▌φ▒▒░▓██████████████▌▒░▓╚▒▒▒╠ ▓██╬▓██████╣█▌
                                                                                           ██▌           ▌╔▒▒▄████████████████▒▒▒░▌╠▒▒▒≥▐██▓╬╬███████▌
                                                                                           ██▌      ,╓φ╠▓«▒▒▓████▀  ▀█████████▌▒▒▒╟░▒▒▒▒▐███╬╬╣████▓█▌
                                                                                          ▐██      ╠▒▄▓▓███▓████└     ▀████████▌▒▒░▌╚▒▒▒▐███▓╬╬████ ╙▌
                                                                                          ███  )  ╠▒░░░▒░╬████▀        └████████░▒▒░╬∩▒▒▓████╬╬╣███
                                                                                         ▓██    ╠╠▒▒▐█▀▀▌`░╫██           ███████▒▒▒▒░▒▒½█████╬╬╣███
                                                                                        ███ ,█▄ ╠▒▒▒╫▌,▄▀,▒╫██           ╟██████▒▒▒░╣⌠▒▓█████╬╬╣██▌
                                                                                       ╘██µ ██` ╠▒▒░██╬φ╠▄▓██`            ██████░░▌φ╠░▓█████▓╬╬▓██
                                                                                        ╟██  .φ╠▒░▄█▀░░▄██▀└              █████▌▒╣φ▒░▓██████╬╬╣██
                                                                                         ▀██▄▄▄╓▄███████▀                ▐█████░▓φ▒▄███████▓╬╣██
                                                                                           ╙▀▀▀██▀└                      ████▓▄▀φ▄▓████████╬▓█▀
                                                                                                                        ▓███╬╩╔╣██████████▓██└
                                                                                                                      ╓████▀▄▓████████▀████▀
                                                                                                                    ,▓███████████████─]██╙
                                                                                                                 ,▄▓██████████████▀└  ╙
                                                                                                            ,╓▄▓███████████████▀╙
                                                                                                     `"▀▀▀████████▀▀▀▀`▄███▀▀└
                                                                                                                      └└
                                        
                                        
                                        
                                                            11\   11\                     11\             11\   11\            11\                                       11\
                                                          1111 |  \__|                    11 |            111\  11 |           11 |                                      11 |
                                                          \_11 |  11\ 1111111\   1111111\ 1111111\        1111\ 11 | 111111\ 111111\   11\  11\  11\  111111\   111111\  11 |  11\
                                                            11 |  11 |11  __11\ 11  _____|11  __11\       11 11\11 |11  __11\\_11  _|  11 | 11 | 11 |11  __11\ 11  __11\ 11 | 11  |
                                                            11 |  11 |11 |  11 |11 /      11 |  11 |      11 \1111 |11111111 | 11 |    11 | 11 | 11 |11 /  11 |11 |  \__|111111  /
                                                            11 |  11 |11 |  11 |11 |      11 |  11 |      11 |\111 |11   ____| 11 |11\ 11 | 11 | 11 |11 |  11 |11 |      11  _11<
                                                          111111\ 11 |11 |  11 |\1111111\ 11 |  11 |      11 | \11 |\1111111\  \1111  |\11111\1111  |\111111  |11 |      11 | \11\
                                                          \______|\__|\__|  \__| \_______|\__|  \__|      \__|  \__| \_______|  \____/  \_____\____/  \______/ \__|      \__|  \__|
                                        
                                        
                                        
                                                                       111111\                                                               11\     11\
                                                                      11  __11\                                                              11 |    \__|
                                                                      11 /  11 | 111111\   111111\   111111\   111111\   111111\   111111\ 111111\   11\  111111\  1111111\
                                                                      11111111 |11  __11\ 11  __11\ 11  __11\ 11  __11\ 11  __11\  \____11\\_11  _|  11 |11  __11\ 11  __11\
                                                                      11  __11 |11 /  11 |11 /  11 |11 |  \__|11111111 |11 /  11 | 1111111 | 11 |    11 |11 /  11 |11 |  11 |
                                                                      11 |  11 |11 |  11 |11 |  11 |11 |      11   ____|11 |  11 |11  __11 | 11 |11\ 11 |11 |  11 |11 |  11 |
                                                                      11 |  11 |\1111111 |\1111111 |11 |      \1111111\ \1111111 |\1111111 | \1111  |11 |\111111  |11 |  11 |
                                                                      \__|  \__| \____11 | \____11 |\__|       \_______| \____11 | \_______|  \____/ \__| \______/ \__|  \__|
                                                                                11\   11 |11\   11 |                    11\   11 |
                                                                                \111111  |\111111  |                    \111111  |
                                                                                 \______/  \______/                      \______/
                                                                                        1111111\                        11\
                                                                                        11  __11\                       11 |
                                                                                        11 |  11 | 111111\  11\   11\ 111111\    111111\   111111\
                                                                                        1111111  |11  __11\ 11 |  11 |\_11  _|  11  __11\ 11  __11\
                                                                                        11  __11< 11 /  11 |11 |  11 |  11 |    11111111 |11 |  \__|
                                                                                        11 |  11 |11 |  11 |11 |  11 |  11 |11\ 11   ____|11 |
                                                                                        11 |  11 |\111111  |\111111  |  \1111  |\1111111\ 11 |
                                                                                        \__|  \__| \______/  \______/    \____/  \_______|\__|
                                        */
                                        
                                        // SPDX-License-Identifier: MIT
                                        
                                        // File contracts/interfaces/IClipperExchangeInterface.sol
                                        
                                        
                                        pragma solidity 0.8.17;
                                        
                                        /// @title Clipper interface subset used in swaps
                                        interface IClipperExchangeInterface {
                                            struct Signature {
                                                uint8 v;
                                                bytes32 r;
                                                bytes32 s;
                                            }
                                        
                                            function sellEthForToken(address outputToken, uint256 inputAmount, uint256 outputAmount, uint256 goodUntil, address destinationAddress, Signature calldata theSignature, bytes calldata auxiliaryData) external payable;
                                            function sellTokenForEth(address inputToken, uint256 inputAmount, uint256 outputAmount, uint256 goodUntil, address destinationAddress, Signature calldata theSignature, bytes calldata auxiliaryData) external;
                                            function swap(address inputToken, address outputToken, uint256 inputAmount, uint256 outputAmount, uint256 goodUntil, address destinationAddress, Signature calldata theSignature, bytes calldata auxiliaryData) external;
                                        }
                                        
                                        
                                        // File contracts/helpers/RouterErrors.sol
                                        
                                        
                                        pragma solidity 0.8.17;
                                        
                                        library RouterErrors {
                                            error ReturnAmountIsNotEnough();
                                            error InvalidMsgValue();
                                            error ERC20TransferFailed();
                                        }
                                        
                                        
                                        // File @1inch/solidity-utils/contracts/[email protected]
                                        
                                        
                                        pragma solidity ^0.8.0;
                                        
                                        abstract contract EthReceiver {
                                            error EthDepositRejected();
                                        
                                            receive() external payable {
                                                _receive();
                                            }
                                        
                                            function _receive() internal virtual {
                                                // solhint-disable-next-line avoid-tx-origin
                                                if (msg.sender == tx.origin) revert EthDepositRejected();
                                            }
                                        }
                                        
                                        
                                        // File @openzeppelin/contracts/token/ERC20/[email protected]
                                        
                                        // OpenZeppelin Contracts (last updated v4.6.0) (token/ERC20/IERC20.sol)
                                        
                                        pragma solidity ^0.8.0;
                                        
                                        /**
                                         * @dev Interface of the ERC20 standard as defined in the EIP.
                                         */
                                        interface IERC20 {
                                            /**
                                             * @dev Emitted when `value` tokens are moved from one account (`from`) to
                                             * another (`to`).
                                             *
                                             * Note that `value` may be zero.
                                             */
                                            event Transfer(address indexed from, address indexed to, uint256 value);
                                        
                                            /**
                                             * @dev Emitted when the allowance of a `spender` for an `owner` is set by
                                             * a call to {approve}. `value` is the new allowance.
                                             */
                                            event Approval(address indexed owner, address indexed spender, uint256 value);
                                        
                                            /**
                                             * @dev Returns the amount of tokens in existence.
                                             */
                                            function totalSupply() external view returns (uint256);
                                        
                                            /**
                                             * @dev Returns the amount of tokens owned by `account`.
                                             */
                                            function balanceOf(address account) external view returns (uint256);
                                        
                                            /**
                                             * @dev Moves `amount` tokens from the caller's account to `to`.
                                             *
                                             * Returns a boolean value indicating whether the operation succeeded.
                                             *
                                             * Emits a {Transfer} event.
                                             */
                                            function transfer(address to, uint256 amount) external returns (bool);
                                        
                                            /**
                                             * @dev Returns the remaining number of tokens that `spender` will be
                                             * allowed to spend on behalf of `owner` through {transferFrom}. This is
                                             * zero by default.
                                             *
                                             * This value changes when {approve} or {transferFrom} are called.
                                             */
                                            function allowance(address owner, address spender) external view returns (uint256);
                                        
                                            /**
                                             * @dev Sets `amount` as the allowance of `spender` over the caller's tokens.
                                             *
                                             * Returns a boolean value indicating whether the operation succeeded.
                                             *
                                             * IMPORTANT: Beware that changing an allowance with this method brings the risk
                                             * that someone may use both the old and the new allowance by unfortunate
                                             * transaction ordering. One possible solution to mitigate this race
                                             * condition is to first reduce the spender's allowance to 0 and set the
                                             * desired value afterwards:
                                             * https://github.com/ethereum/EIPs/issues/20#issuecomment-263524729
                                             *
                                             * Emits an {Approval} event.
                                             */
                                            function approve(address spender, uint256 amount) external returns (bool);
                                        
                                            /**
                                             * @dev Moves `amount` tokens from `from` to `to` using the
                                             * allowance mechanism. `amount` is then deducted from the caller's
                                             * allowance.
                                             *
                                             * Returns a boolean value indicating whether the operation succeeded.
                                             *
                                             * Emits a {Transfer} event.
                                             */
                                            function transferFrom(
                                                address from,
                                                address to,
                                                uint256 amount
                                            ) external returns (bool);
                                        }
                                        
                                        
                                        // File @1inch/solidity-utils/contracts/interfaces/[email protected]
                                        
                                        
                                        pragma solidity ^0.8.0;
                                        
                                        
                                        interface IDaiLikePermit {
                                            function permit(address holder, address spender, uint256 nonce, uint256 expiry, bool allowed, uint8 v, bytes32 r, bytes32 s) external;
                                        }
                                        
                                        
                                        // File @1inch/solidity-utils/contracts/libraries/[email protected]
                                        
                                        
                                        pragma solidity ^0.8.0;
                                        
                                        library RevertReasonForwarder {
                                            function reRevert() internal pure {
                                                // bubble up revert reason from latest external call
                                                /// @solidity memory-safe-assembly
                                                assembly { // solhint-disable-line no-inline-assembly
                                                    let ptr := mload(0x40)
                                                    returndatacopy(ptr, 0, returndatasize())
                                                    revert(ptr, returndatasize())
                                                }
                                            }
                                        }
                                        
                                        
                                        // File @openzeppelin/contracts/token/ERC20/extensions/[email protected]
                                        
                                        // OpenZeppelin Contracts v4.4.1 (token/ERC20/extensions/draft-IERC20Permit.sol)
                                        
                                        pragma solidity ^0.8.0;
                                        
                                        /**
                                         * @dev Interface of the ERC20 Permit extension allowing approvals to be made via signatures, as defined in
                                         * https://eips.ethereum.org/EIPS/eip-2612[EIP-2612].
                                         *
                                         * Adds the {permit} method, which can be used to change an account's ERC20 allowance (see {IERC20-allowance}) by
                                         * presenting a message signed by the account. By not relying on {IERC20-approve}, the token holder account doesn't
                                         * need to send a transaction, and thus is not required to hold Ether at all.
                                         */
                                        interface IERC20Permit {
                                            /**
                                             * @dev Sets `value` as the allowance of `spender` over ``owner``'s tokens,
                                             * given ``owner``'s signed approval.
                                             *
                                             * IMPORTANT: The same issues {IERC20-approve} has related to transaction
                                             * ordering also apply here.
                                             *
                                             * Emits an {Approval} event.
                                             *
                                             * Requirements:
                                             *
                                             * - `spender` cannot be the zero address.
                                             * - `deadline` must be a timestamp in the future.
                                             * - `v`, `r` and `s` must be a valid `secp256k1` signature from `owner`
                                             * over the EIP712-formatted function arguments.
                                             * - the signature must use ``owner``'s current nonce (see {nonces}).
                                             *
                                             * For more information on the signature format, see the
                                             * https://eips.ethereum.org/EIPS/eip-2612#specification[relevant EIP
                                             * section].
                                             */
                                            function permit(
                                                address owner,
                                                address spender,
                                                uint256 value,
                                                uint256 deadline,
                                                uint8 v,
                                                bytes32 r,
                                                bytes32 s
                                            ) external;
                                        
                                            /**
                                             * @dev Returns the current nonce for `owner`. This value must be
                                             * included whenever a signature is generated for {permit}.
                                             *
                                             * Every successful call to {permit} increases ``owner``'s nonce by one. This
                                             * prevents a signature from being used multiple times.
                                             */
                                            function nonces(address owner) external view returns (uint256);
                                        
                                            /**
                                             * @dev Returns the domain separator used in the encoding of the signature for {permit}, as defined by {EIP712}.
                                             */
                                            // solhint-disable-next-line func-name-mixedcase
                                            function DOMAIN_SEPARATOR() external view returns (bytes32);
                                        }
                                        
                                        
                                        // File @1inch/solidity-utils/contracts/libraries/[email protected]
                                        
                                        
                                        pragma solidity ^0.8.0;
                                        
                                        
                                        
                                        
                                        library SafeERC20 {
                                            error SafeTransferFailed();
                                            error SafeTransferFromFailed();
                                            error ForceApproveFailed();
                                            error SafeIncreaseAllowanceFailed();
                                            error SafeDecreaseAllowanceFailed();
                                            error SafePermitBadLength();
                                        
                                            // Ensures method do not revert or return boolean `true`, admits call to non-smart-contract
                                            function safeTransferFrom(IERC20 token, address from, address to, uint256 amount) internal {
                                                bytes4 selector = token.transferFrom.selector;
                                                bool success;
                                                /// @solidity memory-safe-assembly
                                                assembly { // solhint-disable-line no-inline-assembly
                                                    let data := mload(0x40)
                                        
                                                    mstore(data, selector)
                                                    mstore(add(data, 0x04), from)
                                                    mstore(add(data, 0x24), to)
                                                    mstore(add(data, 0x44), amount)
                                                    success := call(gas(), token, 0, data, 100, 0x0, 0x20)
                                                    if success {
                                                        switch returndatasize()
                                                        case 0 { success := gt(extcodesize(token), 0) }
                                                        default { success := and(gt(returndatasize(), 31), eq(mload(0), 1)) }
                                                    }
                                                }
                                                if (!success) revert SafeTransferFromFailed();
                                            }
                                        
                                            // Ensures method do not revert or return boolean `true`, admits call to non-smart-contract
                                            function safeTransfer(IERC20 token, address to, uint256 value) internal {
                                                if (!_makeCall(token, token.transfer.selector, to, value)) {
                                                    revert SafeTransferFailed();
                                                }
                                            }
                                        
                                            // If `approve(from, to, amount)` fails, try to `approve(from, to, 0)` before retry
                                            function forceApprove(IERC20 token, address spender, uint256 value) internal {
                                                if (!_makeCall(token, token.approve.selector, spender, value)) {
                                                    if (!_makeCall(token, token.approve.selector, spender, 0) ||
                                                        !_makeCall(token, token.approve.selector, spender, value))
                                                    {
                                                        revert ForceApproveFailed();
                                                    }
                                                }
                                            }
                                        
                                            function safeIncreaseAllowance(IERC20 token, address spender, uint256 value) internal {
                                                uint256 allowance = token.allowance(address(this), spender);
                                                if (value > type(uint256).max - allowance) revert SafeIncreaseAllowanceFailed();
                                                forceApprove(token, spender, allowance + value);
                                            }
                                        
                                            function safeDecreaseAllowance(IERC20 token, address spender, uint256 value) internal {
                                                uint256 allowance = token.allowance(address(this), spender);
                                                if (value > allowance) revert SafeDecreaseAllowanceFailed();
                                                forceApprove(token, spender, allowance - value);
                                            }
                                        
                                            function safePermit(IERC20 token, bytes calldata permit) internal {
                                                bool success;
                                                if (permit.length == 32 * 7) {
                                                    success = _makeCalldataCall(token, IERC20Permit.permit.selector, permit);
                                                } else if (permit.length == 32 * 8) {
                                                    success = _makeCalldataCall(token, IDaiLikePermit.permit.selector, permit);
                                                } else {
                                                    revert SafePermitBadLength();
                                                }
                                                if (!success) RevertReasonForwarder.reRevert();
                                            }
                                        
                                            function _makeCall(IERC20 token, bytes4 selector, address to, uint256 amount) private returns(bool success) {
                                                /// @solidity memory-safe-assembly
                                                assembly { // solhint-disable-line no-inline-assembly
                                                    let data := mload(0x40)
                                        
                                                    mstore(data, selector)
                                                    mstore(add(data, 0x04), to)
                                                    mstore(add(data, 0x24), amount)
                                                    success := call(gas(), token, 0, data, 0x44, 0x0, 0x20)
                                                    if success {
                                                        switch returndatasize()
                                                        case 0 { success := gt(extcodesize(token), 0) }
                                                        default { success := and(gt(returndatasize(), 31), eq(mload(0), 1)) }
                                                    }
                                                }
                                            }
                                        
                                            function _makeCalldataCall(IERC20 token, bytes4 selector, bytes calldata args) private returns(bool success) {
                                                /// @solidity memory-safe-assembly
                                                assembly { // solhint-disable-line no-inline-assembly
                                                    let len := add(4, args.length)
                                                    let data := mload(0x40)
                                        
                                                    mstore(data, selector)
                                                    calldatacopy(add(data, 0x04), args.offset, args.length)
                                                    success := call(gas(), token, 0, data, len, 0x0, 0x20)
                                                    if success {
                                                        switch returndatasize()
                                                        case 0 { success := gt(extcodesize(token), 0) }
                                                        default { success := and(gt(returndatasize(), 31), eq(mload(0), 1)) }
                                                    }
                                                }
                                            }
                                        }
                                        
                                        
                                        // File @1inch/solidity-utils/contracts/interfaces/[email protected]
                                        
                                        
                                        pragma solidity ^0.8.0;
                                        
                                        interface IWETH is IERC20 {
                                            function deposit() external payable;
                                            function withdraw(uint256 amount) external;
                                        }
                                        
                                        
                                        // File contracts/routers/ClipperRouter.sol
                                        
                                        
                                        pragma solidity 0.8.17;
                                        
                                        
                                        
                                        
                                        
                                        
                                        /// @title Clipper router that allows to use `ClipperExchangeInterface` for swaps
                                        contract ClipperRouter is EthReceiver {
                                            using SafeERC20 for IERC20;
                                        
                                            uint256 private constant _SIGNATURE_S_MASK = 0x7fffffffffffffffffffffffffffffffffffffffffffffffffffffffffffffff;
                                            uint256 private constant _SIGNATURE_V_SHIFT = 255;
                                            bytes6 private constant _INCH_TAG_WITH_LENGTH_PREFIX = "\x051INCH";
                                            IERC20 private constant _ETH = IERC20(address(0));
                                            IWETH private immutable _WETH;  // solhint-disable-line var-name-mixedcase
                                        
                                            constructor(IWETH weth) {
                                                _WETH = weth;
                                            }
                                        
                                            /// @notice Same as `clipperSwapTo` but calls permit first,
                                            /// allowing to approve token spending and make a swap in one transaction.
                                            /// @dev See tests for examples
                                            /// @param recipient Address that will receive swap funds
                                            /// @param srcToken Source token
                                            /// @param dstToken Destination token
                                            /// @param inputAmount Amount of source tokens to swap
                                            /// @param outputAmount Amount of destination tokens to receive
                                            /// @param goodUntil Timestamp until the swap will be valid
                                            /// @param r Clipper order signature (r part)
                                            /// @param vs Clipper order signature (vs part)
                                            /// @param permit Should contain valid permit that can be used in `IERC20Permit.permit` calls.
                                            /// @return returnAmount Amount of destination tokens received
                                            function clipperSwapToWithPermit(
                                                IClipperExchangeInterface clipperExchange,
                                                address payable recipient,
                                                IERC20 srcToken,
                                                IERC20 dstToken,
                                                uint256 inputAmount,
                                                uint256 outputAmount,
                                                uint256 goodUntil,
                                                bytes32 r,
                                                bytes32 vs,
                                                bytes calldata permit
                                            ) external returns(uint256 returnAmount) {
                                                srcToken.safePermit(permit);
                                                return clipperSwapTo(clipperExchange, recipient, srcToken, dstToken, inputAmount, outputAmount, goodUntil, r, vs);
                                            }
                                        
                                            /// @notice Same as `clipperSwapTo` but uses `msg.sender` as recipient
                                            /// @param srcToken Source token
                                            /// @param dstToken Destination token
                                            /// @param inputAmount Amount of source tokens to swap
                                            /// @param outputAmount Amount of destination tokens to receive
                                            /// @param goodUntil Timestamp until the swap will be valid
                                            /// @param r Clipper order signature (r part)
                                            /// @param vs Clipper order signature (vs part)
                                            /// @return returnAmount Amount of destination tokens received
                                            function clipperSwap(
                                                IClipperExchangeInterface clipperExchange,
                                                IERC20 srcToken,
                                                IERC20 dstToken,
                                                uint256 inputAmount,
                                                uint256 outputAmount,
                                                uint256 goodUntil,
                                                bytes32 r,
                                                bytes32 vs
                                            ) external payable returns(uint256 returnAmount) {
                                                return clipperSwapTo(clipperExchange, payable(msg.sender), srcToken, dstToken, inputAmount, outputAmount, goodUntil, r, vs);
                                            }
                                        
                                            /// @notice Performs swap using Clipper exchange. Wraps and unwraps ETH if required.
                                            /// Sending non-zero `msg.value` for anything but ETH swaps is prohibited
                                            /// @param recipient Address that will receive swap funds
                                            /// @param srcToken Source token
                                            /// @param dstToken Destination token
                                            /// @param inputAmount Amount of source tokens to swap
                                            /// @param outputAmount Amount of destination tokens to receive
                                            /// @param goodUntil Timestamp until the swap will be valid
                                            /// @param r Clipper order signature (r part)
                                            /// @param vs Clipper order signature (vs part)
                                            /// @return returnAmount Amount of destination tokens received
                                            function clipperSwapTo(
                                                IClipperExchangeInterface clipperExchange,
                                                address payable recipient,
                                                IERC20 srcToken,
                                                IERC20 dstToken,
                                                uint256 inputAmount,
                                                uint256 outputAmount,
                                                uint256 goodUntil,
                                                bytes32 r,
                                                bytes32 vs
                                            ) public payable returns(uint256 returnAmount) {
                                                bool srcETH = srcToken == _ETH;
                                                if (srcETH) {
                                                    if (msg.value != inputAmount) revert RouterErrors.InvalidMsgValue();
                                                } else if (srcToken == _WETH) {
                                                    srcETH = true;
                                                    if (msg.value != 0) revert RouterErrors.InvalidMsgValue();
                                                    // _WETH.transferFrom(msg.sender, address(this), inputAmount);
                                                    // _WETH.withdraw(inputAmount);
                                                    address weth = address(_WETH);
                                                    bytes4 transferFromSelector = _WETH.transferFrom.selector;
                                                    bytes4 withdrawSelector = _WETH.withdraw.selector;
                                                    /// @solidity memory-safe-assembly
                                                    assembly { // solhint-disable-line no-inline-assembly
                                                        let ptr := mload(0x40)
                                        
                                                        mstore(ptr, transferFromSelector)
                                                        mstore(add(ptr, 0x04), caller())
                                                        mstore(add(ptr, 0x24), address())
                                                        mstore(add(ptr, 0x44), inputAmount)
                                                        if iszero(call(gas(), weth, 0, ptr, 0x64, 0, 0)) {
                                                            returndatacopy(ptr, 0, returndatasize())
                                                            revert(ptr, returndatasize())
                                                        }
                                        
                                                        mstore(ptr, withdrawSelector)
                                                        mstore(add(ptr, 0x04), inputAmount)
                                                        if iszero(call(gas(), weth, 0, ptr, 0x24, 0, 0)) {
                                                            returndatacopy(ptr, 0, returndatasize())
                                                            revert(ptr, returndatasize())
                                                        }
                                                    }
                                                } else {
                                                    if (msg.value != 0) revert RouterErrors.InvalidMsgValue();
                                                    srcToken.safeTransferFrom(msg.sender, address(clipperExchange), inputAmount);
                                                }
                                        
                                                if (srcETH) {
                                                    // clipperExchange.sellEthForToken{value: inputAmount}(address(dstToken), inputAmount, outputAmount, goodUntil, recipient, signature, _INCH_TAG);
                                                    address clipper = address(clipperExchange);
                                                    bytes4 selector = clipperExchange.sellEthForToken.selector;
                                                    /// @solidity memory-safe-assembly
                                                    assembly { // solhint-disable-line no-inline-assembly
                                                        let ptr := mload(0x40)
                                        
                                                        mstore(ptr, selector)
                                                        mstore(add(ptr, 0x04), dstToken)
                                                        mstore(add(ptr, 0x24), inputAmount)
                                                        mstore(add(ptr, 0x44), outputAmount)
                                                        mstore(add(ptr, 0x64), goodUntil)
                                                        mstore(add(ptr, 0x84), recipient)
                                                        mstore(add(ptr, 0xa4), add(27, shr(_SIGNATURE_V_SHIFT, vs)))
                                                        mstore(add(ptr, 0xc4), r)
                                                        mstore(add(ptr, 0xe4), and(vs, _SIGNATURE_S_MASK))
                                                        mstore(add(ptr, 0x104), 0x120)
                                                        mstore(add(ptr, 0x143), _INCH_TAG_WITH_LENGTH_PREFIX)
                                                        if iszero(call(gas(), clipper, inputAmount, ptr, 0x149, 0, 0)) {
                                                            returndatacopy(ptr, 0, returndatasize())
                                                            revert(ptr, returndatasize())
                                                        }
                                                    }
                                                } else if (dstToken == _ETH || dstToken == _WETH) {
                                                    // clipperExchange.sellTokenForEth(address(srcToken), inputAmount, outputAmount, goodUntil, recipient, signature, _INCH_TAG);
                                                    address clipper = address(clipperExchange);
                                                    bytes4 selector = clipperExchange.sellTokenForEth.selector;
                                                    /// @solidity memory-safe-assembly
                                                    assembly { // solhint-disable-line no-inline-assembly
                                                        let ptr := mload(0x40)
                                        
                                                        mstore(ptr, selector)
                                                        mstore(add(ptr, 0x04), srcToken)
                                                        mstore(add(ptr, 0x24), inputAmount)
                                                        mstore(add(ptr, 0x44), outputAmount)
                                                        mstore(add(ptr, 0x64), goodUntil)
                                                        switch iszero(dstToken)
                                                        case 1 {
                                                            mstore(add(ptr, 0x84), recipient)
                                                        }
                                                        default {
                                                            mstore(add(ptr, 0x84), address())
                                                        }
                                                        mstore(add(ptr, 0xa4), add(27, shr(_SIGNATURE_V_SHIFT, vs)))
                                                        mstore(add(ptr, 0xc4), r)
                                                        mstore(add(ptr, 0xe4), and(vs, _SIGNATURE_S_MASK))
                                                        mstore(add(ptr, 0x104), 0x120)
                                                        mstore(add(ptr, 0x143), _INCH_TAG_WITH_LENGTH_PREFIX)
                                                        if iszero(call(gas(), clipper, 0, ptr, 0x149, 0, 0)) {
                                                            returndatacopy(ptr, 0, returndatasize())
                                                            revert(ptr, returndatasize())
                                                        }
                                                    }
                                        
                                                    if (dstToken == _WETH) {
                                                        // _WETH.deposit{value: outputAmount}();
                                                        // _WETH.transfer(recipient, outputAmount);
                                                        address weth = address(_WETH);
                                                        bytes4 depositSelector = _WETH.deposit.selector;
                                                        bytes4 transferSelector = _WETH.transfer.selector;
                                                        /// @solidity memory-safe-assembly
                                                        assembly { // solhint-disable-line no-inline-assembly
                                                            let ptr := mload(0x40)
                                        
                                                            mstore(ptr, depositSelector)
                                                            if iszero(call(gas(), weth, outputAmount, ptr, 0x04, 0, 0)) {
                                                                returndatacopy(ptr, 0, returndatasize())
                                                                revert(ptr, returndatasize())
                                                            }
                                        
                                                            mstore(ptr, transferSelector)
                                                            mstore(add(ptr, 0x04), recipient)
                                                            mstore(add(ptr, 0x24), outputAmount)
                                                            if iszero(call(gas(), weth, 0, ptr, 0x44, 0, 0)) {
                                                                returndatacopy(ptr, 0, returndatasize())
                                                                revert(ptr, returndatasize())
                                                            }
                                                        }
                                                    }
                                                } else {
                                                    // clipperExchange.swap(address(srcToken), address(dstToken), inputAmount, outputAmount, goodUntil, recipient, signature, _INCH_TAG);
                                                    address clipper = address(clipperExchange);
                                                    bytes4 selector = clipperExchange.swap.selector;
                                                    /// @solidity memory-safe-assembly
                                                    assembly { // solhint-disable-line no-inline-assembly
                                                        let ptr := mload(0x40)
                                        
                                                        mstore(ptr, selector)
                                                        mstore(add(ptr, 0x04), srcToken)
                                                        mstore(add(ptr, 0x24), dstToken)
                                                        mstore(add(ptr, 0x44), inputAmount)
                                                        mstore(add(ptr, 0x64), outputAmount)
                                                        mstore(add(ptr, 0x84), goodUntil)
                                                        mstore(add(ptr, 0xa4), recipient)
                                                        mstore(add(ptr, 0xc4), add(27, shr(_SIGNATURE_V_SHIFT, vs)))
                                                        mstore(add(ptr, 0xe4), r)
                                                        mstore(add(ptr, 0x104), and(vs, _SIGNATURE_S_MASK))
                                                        mstore(add(ptr, 0x124), 0x140)
                                                        mstore(add(ptr, 0x163), _INCH_TAG_WITH_LENGTH_PREFIX)
                                                        if iszero(call(gas(), clipper, 0, ptr, 0x169, 0, 0)) {
                                                            returndatacopy(ptr, 0, returndatasize())
                                                            revert(ptr, returndatasize())
                                                        }
                                                    }
                                                }
                                        
                                                return outputAmount;
                                            }
                                        }
                                        
                                        
                                        // File contracts/interfaces/IAggregationExecutor.sol
                                        
                                        
                                        pragma solidity 0.8.17;
                                        
                                        /// @title Interface for making arbitrary calls during swap
                                        interface IAggregationExecutor {
                                            /// @notice propagates information about original msg.sender and executes arbitrary data
                                            function execute(address msgSender) external payable;  // 0x4b64e492
                                        }
                                        
                                        
                                        // File @1inch/solidity-utils/contracts/interfaces/[email protected]
                                        
                                        
                                        pragma solidity ^0.8.0;
                                        
                                        
                                        interface IERC20MetadataUppercase {
                                            function NAME() external view returns (string memory);  // solhint-disable-line func-name-mixedcase
                                            function SYMBOL() external view returns (string memory);  // solhint-disable-line func-name-mixedcase
                                        }
                                        
                                        
                                        // File @1inch/solidity-utils/contracts/libraries/[email protected]
                                        
                                        
                                        pragma solidity ^0.8.0;
                                        
                                        /// @title Library with gas-efficient string operations
                                        library StringUtil {
                                            function toHex(uint256 value) internal pure returns (string memory) {
                                                return toHex(abi.encodePacked(value));
                                            }
                                        
                                            function toHex(address value) internal pure returns (string memory) {
                                                return toHex(abi.encodePacked(value));
                                            }
                                        
                                            function toHex(bytes memory data) internal pure returns (string memory result) {
                                                /// @solidity memory-safe-assembly
                                                assembly { // solhint-disable-line no-inline-assembly
                                                    function _toHex16(input) -> output {
                                                        output := or(
                                                            and(input, 0xFFFFFFFFFFFFFFFF000000000000000000000000000000000000000000000000),
                                                            shr(64, and(input, 0x0000000000000000FFFFFFFFFFFFFFFF00000000000000000000000000000000))
                                                        )
                                                        output := or(
                                                            and(output, 0xFFFFFFFF000000000000000000000000FFFFFFFF000000000000000000000000),
                                                            shr(32, and(output, 0x00000000FFFFFFFF000000000000000000000000FFFFFFFF0000000000000000))
                                                        )
                                                        output := or(
                                                            and(output, 0xFFFF000000000000FFFF000000000000FFFF000000000000FFFF000000000000),
                                                            shr(16, and(output, 0x0000FFFF000000000000FFFF000000000000FFFF000000000000FFFF00000000))
                                                        )
                                                        output := or(
                                                            and(output, 0xFF000000FF000000FF000000FF000000FF000000FF000000FF000000FF000000),
                                                            shr(8, and(output, 0x00FF000000FF000000FF000000FF000000FF000000FF000000FF000000FF0000))
                                                        )
                                                        output := or(
                                                            shr(4, and(output, 0xF000F000F000F000F000F000F000F000F000F000F000F000F000F000F000F000)),
                                                            shr(8, and(output, 0x0F000F000F000F000F000F000F000F000F000F000F000F000F000F000F000F00))
                                                        )
                                                        output := add(
                                                            add(0x3030303030303030303030303030303030303030303030303030303030303030, output),
                                                            mul(
                                                                and(
                                                                    shr(4, add(output, 0x0606060606060606060606060606060606060606060606060606060606060606)),
                                                                    0x0F0F0F0F0F0F0F0F0F0F0F0F0F0F0F0F0F0F0F0F0F0F0F0F0F0F0F0F0F0F0F0F
                                                                ),
                                                                7   // Change 7 to 39 for lower case output
                                                            )
                                                        )
                                                    }
                                        
                                                    result := mload(0x40)
                                                    let length := mload(data)
                                                    let resultLength := shl(1, length)
                                                    let toPtr := add(result, 0x22)          // 32 bytes for length + 2 bytes for '0x'
                                                    mstore(0x40, add(toPtr, resultLength))  // move free memory pointer
                                                    mstore(add(result, 2), 0x3078)          // 0x3078 is right aligned so we write to `result + 2`
                                                                                            // to store the last 2 bytes in the beginning of the string
                                                    mstore(result, add(resultLength, 2))    // extra 2 bytes for '0x'
                                        
                                                    for {
                                                        let fromPtr := add(data, 0x20)
                                                        let endPtr := add(fromPtr, length)
                                                    } lt(fromPtr, endPtr) {
                                                        fromPtr := add(fromPtr, 0x20)
                                                    } {
                                                        let rawData := mload(fromPtr)
                                                        let hexData := _toHex16(rawData)
                                                        mstore(toPtr, hexData)
                                                        toPtr := add(toPtr, 0x20)
                                                        hexData := _toHex16(shl(128, rawData))
                                                        mstore(toPtr, hexData)
                                                        toPtr := add(toPtr, 0x20)
                                                    }
                                                }
                                            }
                                        }
                                        
                                        
                                        // File @openzeppelin/contracts/token/ERC20/extensions/[email protected]
                                        
                                        // OpenZeppelin Contracts v4.4.1 (token/ERC20/extensions/IERC20Metadata.sol)
                                        
                                        pragma solidity ^0.8.0;
                                        
                                        /**
                                         * @dev Interface for the optional metadata functions from the ERC20 standard.
                                         *
                                         * _Available since v4.1._
                                         */
                                        interface IERC20Metadata is IERC20 {
                                            /**
                                             * @dev Returns the name of the token.
                                             */
                                            function name() external view returns (string memory);
                                        
                                            /**
                                             * @dev Returns the symbol of the token.
                                             */
                                            function symbol() external view returns (string memory);
                                        
                                            /**
                                             * @dev Returns the decimals places of the token.
                                             */
                                            function decimals() external view returns (uint8);
                                        }
                                        
                                        
                                        // File @1inch/solidity-utils/contracts/libraries/[email protected]
                                        
                                        
                                        pragma solidity ^0.8.0;
                                        
                                        
                                        
                                        
                                        
                                        library UniERC20 {
                                            using SafeERC20 for IERC20;
                                        
                                            error InsufficientBalance();
                                            error ApproveCalledOnETH();
                                            error NotEnoughValue();
                                            error FromIsNotSender();
                                            error ToIsNotThis();
                                            error ETHTransferFailed();
                                        
                                            uint256 private constant _RAW_CALL_GAS_LIMIT = 5000;
                                            IERC20 private constant _ETH_ADDRESS = IERC20(0xEeeeeEeeeEeEeeEeEeEeeEEEeeeeEeeeeeeeEEeE);
                                            IERC20 private constant _ZERO_ADDRESS = IERC20(address(0));
                                        
                                            function isETH(IERC20 token) internal pure returns (bool) {
                                                return (token == _ZERO_ADDRESS || token == _ETH_ADDRESS);
                                            }
                                        
                                            function uniBalanceOf(IERC20 token, address account) internal view returns (uint256) {
                                                if (isETH(token)) {
                                                    return account.balance;
                                                } else {
                                                    return token.balanceOf(account);
                                                }
                                            }
                                        
                                            /// @dev note that this function does nothing in case of zero amount
                                            function uniTransfer(IERC20 token, address payable to, uint256 amount) internal {
                                                if (amount > 0) {
                                                    if (isETH(token)) {
                                                        if (address(this).balance < amount) revert InsufficientBalance();
                                                        // solhint-disable-next-line avoid-low-level-calls
                                                        (bool success, ) = to.call{value: amount, gas: _RAW_CALL_GAS_LIMIT}("");
                                                        if (!success) revert ETHTransferFailed();
                                                    } else {
                                                        token.safeTransfer(to, amount);
                                                    }
                                                }
                                            }
                                        
                                            /// @dev note that this function does nothing in case of zero amount
                                            function uniTransferFrom(IERC20 token, address payable from, address to, uint256 amount) internal {
                                                if (amount > 0) {
                                                    if (isETH(token)) {
                                                        if (msg.value < amount) revert NotEnoughValue();
                                                        if (from != msg.sender) revert FromIsNotSender();
                                                        if (to != address(this)) revert ToIsNotThis();
                                                        if (msg.value > amount) {
                                                            // Return remainder if exist
                                                            unchecked {
                                                                // solhint-disable-next-line avoid-low-level-calls
                                                                (bool success, ) = from.call{value: msg.value - amount, gas: _RAW_CALL_GAS_LIMIT}("");
                                                                if (!success) revert ETHTransferFailed();
                                                            }
                                                        }
                                                    } else {
                                                        token.safeTransferFrom(from, to, amount);
                                                    }
                                                }
                                            }
                                        
                                            function uniSymbol(IERC20 token) internal view returns(string memory) {
                                                return _uniDecode(token, IERC20Metadata.symbol.selector, IERC20MetadataUppercase.SYMBOL.selector);
                                            }
                                        
                                            function uniName(IERC20 token) internal view returns(string memory) {
                                                return _uniDecode(token, IERC20Metadata.name.selector, IERC20MetadataUppercase.NAME.selector);
                                            }
                                        
                                            function uniApprove(IERC20 token, address to, uint256 amount) internal {
                                                if (isETH(token)) revert ApproveCalledOnETH();
                                        
                                                token.forceApprove(to, amount);
                                            }
                                        
                                            /// 20K gas is provided to account for possible implementations of name/symbol
                                            /// (token implementation might be behind proxy or store the value in storage)
                                            function _uniDecode(IERC20 token, bytes4 lowerCaseSelector, bytes4 upperCaseSelector) private view returns(string memory result) {
                                                if (isETH(token)) {
                                                    return "ETH";
                                                }
                                        
                                                (bool success, bytes memory data) = address(token).staticcall{ gas: 20000 }(
                                                    abi.encodeWithSelector(lowerCaseSelector)
                                                );
                                                if (!success) {
                                                    (success, data) = address(token).staticcall{ gas: 20000 }(
                                                        abi.encodeWithSelector(upperCaseSelector)
                                                    );
                                                }
                                        
                                                if (success && data.length >= 0x40) {
                                                    (uint256 offset, uint256 len) = abi.decode(data, (uint256, uint256));
                                                    if (offset == 0x20 && len > 0 && data.length == 0x40 + len) {
                                                        /// @solidity memory-safe-assembly
                                                        assembly { // solhint-disable-line no-inline-assembly
                                                            result := add(data, 0x20)
                                                        }
                                                        return result;
                                                    }
                                                }
                                        
                                                if (success && data.length == 32) {
                                                    uint256 len = 0;
                                                    while (len < data.length && data[len] >= 0x20 && data[len] <= 0x7E) {
                                                        unchecked {
                                                            len++;
                                                        }
                                                    }
                                        
                                                    if (len > 0) {
                                                        /// @solidity memory-safe-assembly
                                                        assembly { // solhint-disable-line no-inline-assembly
                                                            mstore(data, len)
                                                        }
                                                        return string(data);
                                                    }
                                                }
                                        
                                                return StringUtil.toHex(address(token));
                                            }
                                        }
                                        
                                        
                                        // File contracts/routers/GenericRouter.sol
                                        
                                        
                                        pragma solidity 0.8.17;
                                        
                                        
                                        
                                        
                                        
                                        contract GenericRouter is EthReceiver {
                                            using UniERC20 for IERC20;
                                            using SafeERC20 for IERC20;
                                        
                                            error ZeroMinReturn();
                                            error ZeroReturnAmount();
                                        
                                            uint256 private constant _PARTIAL_FILL = 1 << 0;
                                            uint256 private constant _REQUIRES_EXTRA_ETH = 1 << 1;
                                        
                                            struct SwapDescription {
                                                IERC20 srcToken;
                                                IERC20 dstToken;
                                                address payable srcReceiver;
                                                address payable dstReceiver;
                                                uint256 amount;
                                                uint256 minReturnAmount;
                                                uint256 flags;
                                            }
                                        
                                            /// @notice Performs a swap, delegating all calls encoded in `data` to `executor`. See tests for usage examples
                                            /// @dev router keeps 1 wei of every token on the contract balance for gas optimisations reasons. This affects first swap of every token by leaving 1 wei on the contract.
                                            /// @param executor Aggregation executor that executes calls described in `data`
                                            /// @param desc Swap description
                                            /// @param permit Should contain valid permit that can be used in `IERC20Permit.permit` calls.
                                            /// @param data Encoded calls that `caller` should execute in between of swaps
                                            /// @return returnAmount Resulting token amount
                                            /// @return spentAmount Source token amount
                                            function swap(
                                                IAggregationExecutor executor,
                                                SwapDescription calldata desc,
                                                bytes calldata permit,
                                                bytes calldata data
                                            )
                                                external
                                                payable
                                                returns (
                                                    uint256 returnAmount,
                                                    uint256 spentAmount
                                                )
                                            {
                                                if (desc.minReturnAmount == 0) revert ZeroMinReturn();
                                        
                                                IERC20 srcToken = desc.srcToken;
                                                IERC20 dstToken = desc.dstToken;
                                        
                                                bool srcETH = srcToken.isETH();
                                                if (desc.flags & _REQUIRES_EXTRA_ETH != 0) {
                                                    if (msg.value <= (srcETH ? desc.amount : 0)) revert RouterErrors.InvalidMsgValue();
                                                } else {
                                                    if (msg.value != (srcETH ? desc.amount : 0)) revert RouterErrors.InvalidMsgValue();
                                                }
                                        
                                                if (!srcETH) {
                                                    if (permit.length > 0) {
                                                        srcToken.safePermit(permit);
                                                    }
                                                    srcToken.safeTransferFrom(msg.sender, desc.srcReceiver, desc.amount);
                                                }
                                        
                                                _execute(executor, msg.sender, desc.amount, data);
                                        
                                                spentAmount = desc.amount;
                                                // we leave 1 wei on the router for gas optimisations reasons
                                                returnAmount = dstToken.uniBalanceOf(address(this));
                                                if (returnAmount == 0) revert ZeroReturnAmount();
                                                unchecked { returnAmount--; }
                                        
                                                if (desc.flags & _PARTIAL_FILL != 0) {
                                                    uint256 unspentAmount = srcToken.uniBalanceOf(address(this));
                                                    if (unspentAmount > 1) {
                                                        // we leave 1 wei on the router for gas optimisations reasons
                                                        unchecked { unspentAmount--; }
                                                        spentAmount -= unspentAmount;
                                                        srcToken.uniTransfer(payable(msg.sender), unspentAmount);
                                                    }
                                                    if (returnAmount * desc.amount < desc.minReturnAmount * spentAmount) revert RouterErrors.ReturnAmountIsNotEnough();
                                                } else {
                                                    if (returnAmount < desc.minReturnAmount) revert RouterErrors.ReturnAmountIsNotEnough();
                                                }
                                        
                                                address payable dstReceiver = (desc.dstReceiver == address(0)) ? payable(msg.sender) : desc.dstReceiver;
                                                dstToken.uniTransfer(dstReceiver, returnAmount);
                                            }
                                        
                                            function _execute(
                                                IAggregationExecutor executor,
                                                address srcTokenOwner,
                                                uint256 inputAmount,
                                                bytes calldata data
                                            ) private {
                                                bytes4 executeSelector = executor.execute.selector;
                                                /// @solidity memory-safe-assembly
                                                assembly {  // solhint-disable-line no-inline-assembly
                                                    let ptr := mload(0x40)
                                        
                                                    mstore(ptr, executeSelector)
                                                    mstore(add(ptr, 0x04), srcTokenOwner)
                                                    calldatacopy(add(ptr, 0x24), data.offset, data.length)
                                                    mstore(add(add(ptr, 0x24), data.length), inputAmount)
                                        
                                                    if iszero(call(gas(), executor, callvalue(), ptr, add(0x44, data.length), 0, 0)) {
                                                        returndatacopy(ptr, 0, returndatasize())
                                                        revert(ptr, returndatasize())
                                                    }
                                                }
                                            }
                                        }
                                        
                                        
                                        // File contracts/routers/UnoswapRouter.sol
                                        
                                        
                                        pragma solidity 0.8.17;
                                        
                                        
                                        
                                        
                                        contract UnoswapRouter is EthReceiver {
                                            using SafeERC20 for IERC20;
                                        
                                            error ReservesCallFailed();
                                            error SwapAmountTooLarge();
                                        
                                            bytes4 private constant _TRANSFER_FROM_CALL_SELECTOR = 0x23b872dd;
                                            bytes4 private constant _WETH_DEPOSIT_CALL_SELECTOR = 0xd0e30db0;
                                            bytes4 private constant _WETH_WITHDRAW_CALL_SELECTOR = 0x2e1a7d4d;
                                            bytes4 private constant _ERC20_TRANSFER_CALL_SELECTOR = 0xa9059cbb;
                                            uint256 private constant _ADDRESS_MASK =   0x000000000000000000000000ffffffffffffffffffffffffffffffffffffffff;
                                            uint256 private constant _REVERSE_MASK =   0x8000000000000000000000000000000000000000000000000000000000000000;
                                            uint256 private constant _WETH_MASK =      0x4000000000000000000000000000000000000000000000000000000000000000;
                                            uint256 private constant _NUMERATOR_MASK = 0x0000000000000000ffffffff0000000000000000000000000000000000000000;
                                            /// @dev WETH address is network-specific and needs to be changed before deployment.
                                            /// It can not be moved to immutable as immutables are not supported in assembly
                                            address private constant _WETH = 0xC02aaA39b223FE8D0A0e5C4F27eAD9083C756Cc2;
                                            bytes4 private constant _UNISWAP_PAIR_RESERVES_CALL_SELECTOR = 0x0902f1ac;
                                            bytes4 private constant _UNISWAP_PAIR_SWAP_CALL_SELECTOR = 0x022c0d9f;
                                            uint256 private constant _DENOMINATOR = 1e9;
                                            uint256 private constant _NUMERATOR_OFFSET = 160;
                                            uint256 private constant _MAX_SWAP_AMOUNT = (1 << 112) - 1;  // type(uint112).max;
                                        
                                            /// @notice Same as `unoswapTo` but calls permit first,
                                            /// allowing to approve token spending and make a swap in one transaction.
                                            /// @param recipient Address that will receive swapped funds
                                            /// @param srcToken Source token
                                            /// @param amount Amount of source tokens to swap
                                            /// @param minReturn Minimal allowed returnAmount to make transaction commit
                                            /// @param pools Pools chain used for swaps. Pools src and dst tokens should match to make swap happen
                                            /// @param permit Should contain valid permit that can be used in `IERC20Permit.permit` calls.
                                            /// See tests for examples
                                            function unoswapToWithPermit(
                                                address payable recipient,
                                                IERC20 srcToken,
                                                uint256 amount,
                                                uint256 minReturn,
                                                uint256[] calldata pools,
                                                bytes calldata permit
                                            ) external returns(uint256 returnAmount) {
                                                srcToken.safePermit(permit);
                                                return _unoswap(recipient, srcToken, amount, minReturn, pools);
                                            }
                                        
                                            /// @notice Performs swap using Uniswap exchange. Wraps and unwraps ETH if required.
                                            /// Sending non-zero `msg.value` for anything but ETH swaps is prohibited
                                            /// @param recipient Address that will receive swapped funds
                                            /// @param srcToken Source token
                                            /// @param amount Amount of source tokens to swap
                                            /// @param minReturn Minimal allowed returnAmount to make transaction commit
                                            /// @param pools Pools chain used for swaps. Pools src and dst tokens should match to make swap happen
                                            function unoswapTo(
                                                address payable recipient,
                                                IERC20 srcToken,
                                                uint256 amount,
                                                uint256 minReturn,
                                                uint256[] calldata pools
                                            ) external payable returns(uint256 returnAmount) {
                                                return _unoswap(recipient, srcToken, amount, minReturn, pools);
                                            }
                                        
                                            /// @notice Performs swap using Uniswap exchange. Wraps and unwraps ETH if required.
                                            /// Sending non-zero `msg.value` for anything but ETH swaps is prohibited
                                            /// @param srcToken Source token
                                            /// @param amount Amount of source tokens to swap
                                            /// @param minReturn Minimal allowed returnAmount to make transaction commit
                                            /// @param pools Pools chain used for swaps. Pools src and dst tokens should match to make swap happen
                                            function unoswap(
                                                IERC20 srcToken,
                                                uint256 amount,
                                                uint256 minReturn,
                                                uint256[] calldata pools
                                            ) external payable returns(uint256 returnAmount) {
                                                return _unoswap(payable(msg.sender), srcToken, amount, minReturn, pools);
                                            }
                                        
                                            function _unoswap(
                                                address payable recipient,
                                                IERC20 srcToken,
                                                uint256 amount,
                                                uint256 minReturn,
                                                uint256[] calldata pools
                                            ) private returns(uint256 returnAmount) {
                                                assembly {  // solhint-disable-line no-inline-assembly
                                                    function reRevert() {
                                                        returndatacopy(0, 0, returndatasize())
                                                        revert(0, returndatasize())
                                                    }
                                        
                                                    function validateERC20Transfer(status) {
                                                        if iszero(status) {
                                                            reRevert()
                                                        }
                                                        let success := or(
                                                            iszero(returndatasize()),                       // empty return data
                                                            and(gt(returndatasize(), 31), eq(mload(0), 1))  // true in return data
                                                        )
                                                        if iszero(success) {
                                                            mstore(0, 0xf27f64e400000000000000000000000000000000000000000000000000000000)  // ERC20TransferFailed()
                                                            revert(0, 4)
                                                        }
                                                    }
                                        
                                                    function swap(emptyPtr, swapAmount, pair, reversed, numerator, to) -> ret {
                                                        mstore(emptyPtr, _UNISWAP_PAIR_RESERVES_CALL_SELECTOR)
                                                        if iszero(staticcall(gas(), pair, emptyPtr, 0x4, emptyPtr, 0x40)) {
                                                            reRevert()
                                                        }
                                                        if iszero(eq(returndatasize(), 0x60)) {
                                                            mstore(0, 0x85cd58dc00000000000000000000000000000000000000000000000000000000)  // ReservesCallFailed()
                                                            revert(0, 4)
                                                        }
                                        
                                                        let reserve0 := mload(emptyPtr)
                                                        let reserve1 := mload(add(emptyPtr, 0x20))
                                                        if reversed {
                                                            let tmp := reserve0
                                                            reserve0 := reserve1
                                                            reserve1 := tmp
                                                        }
                                                        // this will not overflow as reserve0, reserve1 and ret fit to 112 bit and numerator and _DENOMINATOR fit to 32 bit
                                                        ret := mul(swapAmount, numerator)
                                                        ret := div(mul(ret, reserve1), add(ret, mul(reserve0, _DENOMINATOR)))
                                        
                                                        mstore(emptyPtr, _UNISWAP_PAIR_SWAP_CALL_SELECTOR)
                                                        reversed := iszero(reversed)
                                                        mstore(add(emptyPtr, 0x04), mul(ret, iszero(reversed)))
                                                        mstore(add(emptyPtr, 0x24), mul(ret, reversed))
                                                        mstore(add(emptyPtr, 0x44), to)
                                                        mstore(add(emptyPtr, 0x64), 0x80)
                                                        mstore(add(emptyPtr, 0x84), 0)
                                                        if iszero(call(gas(), pair, 0, emptyPtr, 0xa4, 0, 0)) {
                                                            reRevert()
                                                        }
                                                    }
                                        
                                                    // make sure that input amount fits in 112 bit
                                                    if gt(amount, _MAX_SWAP_AMOUNT) {
                                                        mstore(0, 0xcf0b4d3a00000000000000000000000000000000000000000000000000000000)  // SwapAmountTooLarge()
                                                        revert(0, 4)
                                                    }
                                        
                                                    let emptyPtr := mload(0x40)
                                                    mstore(0x40, add(emptyPtr, 0xc0))
                                        
                                                    let poolsEndOffset := add(pools.offset, shl(5, pools.length))
                                                    let rawPair := calldataload(pools.offset)
                                                    switch srcToken
                                                    case 0 {
                                                        if iszero(eq(amount, callvalue())) {
                                                            mstore(0, 0x1841b4e100000000000000000000000000000000000000000000000000000000)  // InvalidMsgValue()
                                                            revert(0, 4)
                                                        }
                                        
                                                        mstore(emptyPtr, _WETH_DEPOSIT_CALL_SELECTOR)
                                                        if iszero(call(gas(), _WETH, amount, emptyPtr, 0x4, 0, 0)) {
                                                            reRevert()
                                                        }
                                        
                                                        mstore(emptyPtr, _ERC20_TRANSFER_CALL_SELECTOR)
                                                        mstore(add(emptyPtr, 0x4), and(rawPair, _ADDRESS_MASK))
                                                        mstore(add(emptyPtr, 0x24), amount)
                                                        if iszero(call(gas(), _WETH, 0, emptyPtr, 0x44, 0, 0)) {
                                                            reRevert()
                                                        }
                                                    }
                                                    default {
                                                        if callvalue() {
                                                            mstore(0, 0x1841b4e100000000000000000000000000000000000000000000000000000000)  // InvalidMsgValue()
                                                            revert(0, 4)
                                                        }
                                        
                                                        mstore(emptyPtr, _TRANSFER_FROM_CALL_SELECTOR)
                                                        mstore(add(emptyPtr, 0x4), caller())
                                                        mstore(add(emptyPtr, 0x24), and(rawPair, _ADDRESS_MASK))
                                                        mstore(add(emptyPtr, 0x44), amount)
                                                        validateERC20Transfer(
                                                            call(gas(), srcToken, 0, emptyPtr, 0x64, 0, 0x20)
                                                        )
                                                    }
                                        
                                                    returnAmount := amount
                                        
                                                    for {let i := add(pools.offset, 0x20)} lt(i, poolsEndOffset) {i := add(i, 0x20)} {
                                                        let nextRawPair := calldataload(i)
                                        
                                                        returnAmount := swap(
                                                            emptyPtr,
                                                            returnAmount,
                                                            and(rawPair, _ADDRESS_MASK),
                                                            and(rawPair, _REVERSE_MASK),
                                                            shr(_NUMERATOR_OFFSET, and(rawPair, _NUMERATOR_MASK)),
                                                            and(nextRawPair, _ADDRESS_MASK)
                                                        )
                                        
                                                        rawPair := nextRawPair
                                                    }
                                        
                                                    switch and(rawPair, _WETH_MASK)
                                                    case 0 {
                                                        returnAmount := swap(
                                                            emptyPtr,
                                                            returnAmount,
                                                            and(rawPair, _ADDRESS_MASK),
                                                            and(rawPair, _REVERSE_MASK),
                                                            shr(_NUMERATOR_OFFSET, and(rawPair, _NUMERATOR_MASK)),
                                                            recipient
                                                        )
                                                    }
                                                    default {
                                                        returnAmount := swap(
                                                            emptyPtr,
                                                            returnAmount,
                                                            and(rawPair, _ADDRESS_MASK),
                                                            and(rawPair, _REVERSE_MASK),
                                                            shr(_NUMERATOR_OFFSET, and(rawPair, _NUMERATOR_MASK)),
                                                            address()
                                                        )
                                        
                                                        mstore(emptyPtr, _WETH_WITHDRAW_CALL_SELECTOR)
                                                        mstore(add(emptyPtr, 0x04), returnAmount)
                                                        if iszero(call(gas(), _WETH, 0, emptyPtr, 0x24, 0, 0)) {
                                                            reRevert()
                                                        }
                                        
                                                        if iszero(call(gas(), recipient, returnAmount, 0, 0, 0, 0)) {
                                                            reRevert()
                                                        }
                                                    }
                                                }
                                                if (returnAmount < minReturn) revert RouterErrors.ReturnAmountIsNotEnough();
                                            }
                                        }
                                        
                                        
                                        // File contracts/interfaces/IUniswapV3Pool.sol
                                        
                                        pragma solidity 0.8.17;
                                        
                                        interface IUniswapV3Pool {
                                            /// @notice Swap token0 for token1, or token1 for token0
                                            /// @dev The caller of this method receives a callback in the form of IUniswapV3SwapCallback#uniswapV3SwapCallback
                                            /// @param recipient The address to receive the output of the swap
                                            /// @param zeroForOne The direction of the swap, true for token0 to token1, false for token1 to token0
                                            /// @param amountSpecified The amount of the swap, which implicitly configures the swap as exact input (positive), or exact output (negative)
                                            /// @param sqrtPriceLimitX96 The Q64.96 sqrt price limit. If zero for one, the price cannot be less than this
                                            /// value after the swap. If one for zero, the price cannot be greater than this value after the swap
                                            /// @param data Any data to be passed through to the callback
                                            /// @return amount0 The delta of the balance of token0 of the pool, exact when negative, minimum when positive
                                            /// @return amount1 The delta of the balance of token1 of the pool, exact when negative, minimum when positive
                                            function swap(
                                                address recipient,
                                                bool zeroForOne,
                                                int256 amountSpecified,
                                                uint160 sqrtPriceLimitX96,
                                                bytes calldata data
                                            ) external returns (int256 amount0, int256 amount1);
                                        
                                            /// @notice The first of the two tokens of the pool, sorted by address
                                            /// @return The token contract address
                                            function token0() external view returns (address);
                                        
                                            /// @notice The second of the two tokens of the pool, sorted by address
                                            /// @return The token contract address
                                            function token1() external view returns (address);
                                        
                                            /// @notice The pool's fee in hundredths of a bip, i.e. 1e-6
                                            /// @return The fee
                                            function fee() external view returns (uint24);
                                        }
                                        
                                        
                                        // File contracts/interfaces/IUniswapV3SwapCallback.sol
                                        
                                        pragma solidity 0.8.17;
                                        
                                        /// @title Callback for IUniswapV3PoolActions#swap
                                        /// @notice Any contract that calls IUniswapV3PoolActions#swap must implement this interface
                                        interface IUniswapV3SwapCallback {
                                            /// @notice Called to `msg.sender` after executing a swap via IUniswapV3Pool#swap.
                                            /// @dev In the implementation you must pay the pool tokens owed for the swap.
                                            /// The caller of this method must be checked to be a UniswapV3Pool deployed by the canonical UniswapV3Factory.
                                            /// amount0Delta and amount1Delta can both be 0 if no tokens were swapped.
                                            /// @param amount0Delta The amount of token0 that was sent (negative) or must be received (positive) by the pool by
                                            /// the end of the swap. If positive, the callback must send that amount of token0 to the pool.
                                            /// @param amount1Delta The amount of token1 that was sent (negative) or must be received (positive) by the pool by
                                            /// the end of the swap. If positive, the callback must send that amount of token1 to the pool.
                                            /// @param data Any data passed through by the caller via the IUniswapV3PoolActions#swap call
                                            function uniswapV3SwapCallback(
                                                int256 amount0Delta,
                                                int256 amount1Delta,
                                                bytes calldata data
                                            ) external;
                                        }
                                        
                                        
                                        // File @openzeppelin/contracts/utils/[email protected]
                                        
                                        // OpenZeppelin Contracts (last updated v4.7.0) (utils/Address.sol)
                                        
                                        pragma solidity ^0.8.1;
                                        
                                        /**
                                         * @dev Collection of functions related to the address type
                                         */
                                        library Address {
                                            /**
                                             * @dev Returns true if `account` is a contract.
                                             *
                                             * [IMPORTANT]
                                             * ====
                                             * It is unsafe to assume that an address for which this function returns
                                             * false is an externally-owned account (EOA) and not a contract.
                                             *
                                             * Among others, `isContract` will return false for the following
                                             * types of addresses:
                                             *
                                             *  - an externally-owned account
                                             *  - a contract in construction
                                             *  - an address where a contract will be created
                                             *  - an address where a contract lived, but was destroyed
                                             * ====
                                             *
                                             * [IMPORTANT]
                                             * ====
                                             * You shouldn't rely on `isContract` to protect against flash loan attacks!
                                             *
                                             * Preventing calls from contracts is highly discouraged. It breaks composability, breaks support for smart wallets
                                             * like Gnosis Safe, and does not provide security since it can be circumvented by calling from a contract
                                             * constructor.
                                             * ====
                                             */
                                            function isContract(address account) internal view returns (bool) {
                                                // This method relies on extcodesize/address.code.length, which returns 0
                                                // for contracts in construction, since the code is only stored at the end
                                                // of the constructor execution.
                                        
                                                return account.code.length > 0;
                                            }
                                        
                                            /**
                                             * @dev Replacement for Solidity's `transfer`: sends `amount` wei to
                                             * `recipient`, forwarding all available gas and reverting on errors.
                                             *
                                             * https://eips.ethereum.org/EIPS/eip-1884[EIP1884] increases the gas cost
                                             * of certain opcodes, possibly making contracts go over the 2300 gas limit
                                             * imposed by `transfer`, making them unable to receive funds via
                                             * `transfer`. {sendValue} removes this limitation.
                                             *
                                             * https://diligence.consensys.net/posts/2019/09/stop-using-soliditys-transfer-now/[Learn more].
                                             *
                                             * IMPORTANT: because control is transferred to `recipient`, care must be
                                             * taken to not create reentrancy vulnerabilities. Consider using
                                             * {ReentrancyGuard} or the
                                             * https://solidity.readthedocs.io/en/v0.5.11/security-considerations.html#use-the-checks-effects-interactions-pattern[checks-effects-interactions pattern].
                                             */
                                            function sendValue(address payable recipient, uint256 amount) internal {
                                                require(address(this).balance >= amount, "Address: insufficient balance");
                                        
                                                (bool success, ) = recipient.call{value: amount}("");
                                                require(success, "Address: unable to send value, recipient may have reverted");
                                            }
                                        
                                            /**
                                             * @dev Performs a Solidity function call using a low level `call`. A
                                             * plain `call` is an unsafe replacement for a function call: use this
                                             * function instead.
                                             *
                                             * If `target` reverts with a revert reason, it is bubbled up by this
                                             * function (like regular Solidity function calls).
                                             *
                                             * Returns the raw returned data. To convert to the expected return value,
                                             * use https://solidity.readthedocs.io/en/latest/units-and-global-variables.html?highlight=abi.decode#abi-encoding-and-decoding-functions[`abi.decode`].
                                             *
                                             * Requirements:
                                             *
                                             * - `target` must be a contract.
                                             * - calling `target` with `data` must not revert.
                                             *
                                             * _Available since v3.1._
                                             */
                                            function functionCall(address target, bytes memory data) internal returns (bytes memory) {
                                                return functionCall(target, data, "Address: low-level call failed");
                                            }
                                        
                                            /**
                                             * @dev Same as {xref-Address-functionCall-address-bytes-}[`functionCall`], but with
                                             * `errorMessage` as a fallback revert reason when `target` reverts.
                                             *
                                             * _Available since v3.1._
                                             */
                                            function functionCall(
                                                address target,
                                                bytes memory data,
                                                string memory errorMessage
                                            ) internal returns (bytes memory) {
                                                return functionCallWithValue(target, data, 0, errorMessage);
                                            }
                                        
                                            /**
                                             * @dev Same as {xref-Address-functionCall-address-bytes-}[`functionCall`],
                                             * but also transferring `value` wei to `target`.
                                             *
                                             * Requirements:
                                             *
                                             * - the calling contract must have an ETH balance of at least `value`.
                                             * - the called Solidity function must be `payable`.
                                             *
                                             * _Available since v3.1._
                                             */
                                            function functionCallWithValue(
                                                address target,
                                                bytes memory data,
                                                uint256 value
                                            ) internal returns (bytes memory) {
                                                return functionCallWithValue(target, data, value, "Address: low-level call with value failed");
                                            }
                                        
                                            /**
                                             * @dev Same as {xref-Address-functionCallWithValue-address-bytes-uint256-}[`functionCallWithValue`], but
                                             * with `errorMessage` as a fallback revert reason when `target` reverts.
                                             *
                                             * _Available since v3.1._
                                             */
                                            function functionCallWithValue(
                                                address target,
                                                bytes memory data,
                                                uint256 value,
                                                string memory errorMessage
                                            ) internal returns (bytes memory) {
                                                require(address(this).balance >= value, "Address: insufficient balance for call");
                                                require(isContract(target), "Address: call to non-contract");
                                        
                                                (bool success, bytes memory returndata) = target.call{value: value}(data);
                                                return verifyCallResult(success, returndata, errorMessage);
                                            }
                                        
                                            /**
                                             * @dev Same as {xref-Address-functionCall-address-bytes-}[`functionCall`],
                                             * but performing a static call.
                                             *
                                             * _Available since v3.3._
                                             */
                                            function functionStaticCall(address target, bytes memory data) internal view returns (bytes memory) {
                                                return functionStaticCall(target, data, "Address: low-level static call failed");
                                            }
                                        
                                            /**
                                             * @dev Same as {xref-Address-functionCall-address-bytes-string-}[`functionCall`],
                                             * but performing a static call.
                                             *
                                             * _Available since v3.3._
                                             */
                                            function functionStaticCall(
                                                address target,
                                                bytes memory data,
                                                string memory errorMessage
                                            ) internal view returns (bytes memory) {
                                                require(isContract(target), "Address: static call to non-contract");
                                        
                                                (bool success, bytes memory returndata) = target.staticcall(data);
                                                return verifyCallResult(success, returndata, errorMessage);
                                            }
                                        
                                            /**
                                             * @dev Same as {xref-Address-functionCall-address-bytes-}[`functionCall`],
                                             * but performing a delegate call.
                                             *
                                             * _Available since v3.4._
                                             */
                                            function functionDelegateCall(address target, bytes memory data) internal returns (bytes memory) {
                                                return functionDelegateCall(target, data, "Address: low-level delegate call failed");
                                            }
                                        
                                            /**
                                             * @dev Same as {xref-Address-functionCall-address-bytes-string-}[`functionCall`],
                                             * but performing a delegate call.
                                             *
                                             * _Available since v3.4._
                                             */
                                            function functionDelegateCall(
                                                address target,
                                                bytes memory data,
                                                string memory errorMessage
                                            ) internal returns (bytes memory) {
                                                require(isContract(target), "Address: delegate call to non-contract");
                                        
                                                (bool success, bytes memory returndata) = target.delegatecall(data);
                                                return verifyCallResult(success, returndata, errorMessage);
                                            }
                                        
                                            /**
                                             * @dev Tool to verifies that a low level call was successful, and revert if it wasn't, either by bubbling the
                                             * revert reason using the provided one.
                                             *
                                             * _Available since v4.3._
                                             */
                                            function verifyCallResult(
                                                bool success,
                                                bytes memory returndata,
                                                string memory errorMessage
                                            ) internal pure returns (bytes memory) {
                                                if (success) {
                                                    return returndata;
                                                } else {
                                                    // Look for revert reason and bubble it up if present
                                                    if (returndata.length > 0) {
                                                        // The easiest way to bubble the revert reason is using memory via assembly
                                                        /// @solidity memory-safe-assembly
                                                        assembly {
                                                            let returndata_size := mload(returndata)
                                                            revert(add(32, returndata), returndata_size)
                                                        }
                                                    } else {
                                                        revert(errorMessage);
                                                    }
                                                }
                                            }
                                        }
                                        
                                        
                                        // File @openzeppelin/contracts/utils/math/[email protected]
                                        
                                        // OpenZeppelin Contracts (last updated v4.7.0) (utils/math/SafeCast.sol)
                                        
                                        pragma solidity ^0.8.0;
                                        
                                        /**
                                         * @dev Wrappers over Solidity's uintXX/intXX casting operators with added overflow
                                         * checks.
                                         *
                                         * Downcasting from uint256/int256 in Solidity does not revert on overflow. This can
                                         * easily result in undesired exploitation or bugs, since developers usually
                                         * assume that overflows raise errors. `SafeCast` restores this intuition by
                                         * reverting the transaction when such an operation overflows.
                                         *
                                         * Using this library instead of the unchecked operations eliminates an entire
                                         * class of bugs, so it's recommended to use it always.
                                         *
                                         * Can be combined with {SafeMath} and {SignedSafeMath} to extend it to smaller types, by performing
                                         * all math on `uint256` and `int256` and then downcasting.
                                         */
                                        library SafeCast {
                                            /**
                                             * @dev Returns the downcasted uint248 from uint256, reverting on
                                             * overflow (when the input is greater than largest uint248).
                                             *
                                             * Counterpart to Solidity's `uint248` operator.
                                             *
                                             * Requirements:
                                             *
                                             * - input must fit into 248 bits
                                             *
                                             * _Available since v4.7._
                                             */
                                            function toUint248(uint256 value) internal pure returns (uint248) {
                                                require(value <= type(uint248).max, "SafeCast: value doesn't fit in 248 bits");
                                                return uint248(value);
                                            }
                                        
                                            /**
                                             * @dev Returns the downcasted uint240 from uint256, reverting on
                                             * overflow (when the input is greater than largest uint240).
                                             *
                                             * Counterpart to Solidity's `uint240` operator.
                                             *
                                             * Requirements:
                                             *
                                             * - input must fit into 240 bits
                                             *
                                             * _Available since v4.7._
                                             */
                                            function toUint240(uint256 value) internal pure returns (uint240) {
                                                require(value <= type(uint240).max, "SafeCast: value doesn't fit in 240 bits");
                                                return uint240(value);
                                            }
                                        
                                            /**
                                             * @dev Returns the downcasted uint232 from uint256, reverting on
                                             * overflow (when the input is greater than largest uint232).
                                             *
                                             * Counterpart to Solidity's `uint232` operator.
                                             *
                                             * Requirements:
                                             *
                                             * - input must fit into 232 bits
                                             *
                                             * _Available since v4.7._
                                             */
                                            function toUint232(uint256 value) internal pure returns (uint232) {
                                                require(value <= type(uint232).max, "SafeCast: value doesn't fit in 232 bits");
                                                return uint232(value);
                                            }
                                        
                                            /**
                                             * @dev Returns the downcasted uint224 from uint256, reverting on
                                             * overflow (when the input is greater than largest uint224).
                                             *
                                             * Counterpart to Solidity's `uint224` operator.
                                             *
                                             * Requirements:
                                             *
                                             * - input must fit into 224 bits
                                             *
                                             * _Available since v4.2._
                                             */
                                            function toUint224(uint256 value) internal pure returns (uint224) {
                                                require(value <= type(uint224).max, "SafeCast: value doesn't fit in 224 bits");
                                                return uint224(value);
                                            }
                                        
                                            /**
                                             * @dev Returns the downcasted uint216 from uint256, reverting on
                                             * overflow (when the input is greater than largest uint216).
                                             *
                                             * Counterpart to Solidity's `uint216` operator.
                                             *
                                             * Requirements:
                                             *
                                             * - input must fit into 216 bits
                                             *
                                             * _Available since v4.7._
                                             */
                                            function toUint216(uint256 value) internal pure returns (uint216) {
                                                require(value <= type(uint216).max, "SafeCast: value doesn't fit in 216 bits");
                                                return uint216(value);
                                            }
                                        
                                            /**
                                             * @dev Returns the downcasted uint208 from uint256, reverting on
                                             * overflow (when the input is greater than largest uint208).
                                             *
                                             * Counterpart to Solidity's `uint208` operator.
                                             *
                                             * Requirements:
                                             *
                                             * - input must fit into 208 bits
                                             *
                                             * _Available since v4.7._
                                             */
                                            function toUint208(uint256 value) internal pure returns (uint208) {
                                                require(value <= type(uint208).max, "SafeCast: value doesn't fit in 208 bits");
                                                return uint208(value);
                                            }
                                        
                                            /**
                                             * @dev Returns the downcasted uint200 from uint256, reverting on
                                             * overflow (when the input is greater than largest uint200).
                                             *
                                             * Counterpart to Solidity's `uint200` operator.
                                             *
                                             * Requirements:
                                             *
                                             * - input must fit into 200 bits
                                             *
                                             * _Available since v4.7._
                                             */
                                            function toUint200(uint256 value) internal pure returns (uint200) {
                                                require(value <= type(uint200).max, "SafeCast: value doesn't fit in 200 bits");
                                                return uint200(value);
                                            }
                                        
                                            /**
                                             * @dev Returns the downcasted uint192 from uint256, reverting on
                                             * overflow (when the input is greater than largest uint192).
                                             *
                                             * Counterpart to Solidity's `uint192` operator.
                                             *
                                             * Requirements:
                                             *
                                             * - input must fit into 192 bits
                                             *
                                             * _Available since v4.7._
                                             */
                                            function toUint192(uint256 value) internal pure returns (uint192) {
                                                require(value <= type(uint192).max, "SafeCast: value doesn't fit in 192 bits");
                                                return uint192(value);
                                            }
                                        
                                            /**
                                             * @dev Returns the downcasted uint184 from uint256, reverting on
                                             * overflow (when the input is greater than largest uint184).
                                             *
                                             * Counterpart to Solidity's `uint184` operator.
                                             *
                                             * Requirements:
                                             *
                                             * - input must fit into 184 bits
                                             *
                                             * _Available since v4.7._
                                             */
                                            function toUint184(uint256 value) internal pure returns (uint184) {
                                                require(value <= type(uint184).max, "SafeCast: value doesn't fit in 184 bits");
                                                return uint184(value);
                                            }
                                        
                                            /**
                                             * @dev Returns the downcasted uint176 from uint256, reverting on
                                             * overflow (when the input is greater than largest uint176).
                                             *
                                             * Counterpart to Solidity's `uint176` operator.
                                             *
                                             * Requirements:
                                             *
                                             * - input must fit into 176 bits
                                             *
                                             * _Available since v4.7._
                                             */
                                            function toUint176(uint256 value) internal pure returns (uint176) {
                                                require(value <= type(uint176).max, "SafeCast: value doesn't fit in 176 bits");
                                                return uint176(value);
                                            }
                                        
                                            /**
                                             * @dev Returns the downcasted uint168 from uint256, reverting on
                                             * overflow (when the input is greater than largest uint168).
                                             *
                                             * Counterpart to Solidity's `uint168` operator.
                                             *
                                             * Requirements:
                                             *
                                             * - input must fit into 168 bits
                                             *
                                             * _Available since v4.7._
                                             */
                                            function toUint168(uint256 value) internal pure returns (uint168) {
                                                require(value <= type(uint168).max, "SafeCast: value doesn't fit in 168 bits");
                                                return uint168(value);
                                            }
                                        
                                            /**
                                             * @dev Returns the downcasted uint160 from uint256, reverting on
                                             * overflow (when the input is greater than largest uint160).
                                             *
                                             * Counterpart to Solidity's `uint160` operator.
                                             *
                                             * Requirements:
                                             *
                                             * - input must fit into 160 bits
                                             *
                                             * _Available since v4.7._
                                             */
                                            function toUint160(uint256 value) internal pure returns (uint160) {
                                                require(value <= type(uint160).max, "SafeCast: value doesn't fit in 160 bits");
                                                return uint160(value);
                                            }
                                        
                                            /**
                                             * @dev Returns the downcasted uint152 from uint256, reverting on
                                             * overflow (when the input is greater than largest uint152).
                                             *
                                             * Counterpart to Solidity's `uint152` operator.
                                             *
                                             * Requirements:
                                             *
                                             * - input must fit into 152 bits
                                             *
                                             * _Available since v4.7._
                                             */
                                            function toUint152(uint256 value) internal pure returns (uint152) {
                                                require(value <= type(uint152).max, "SafeCast: value doesn't fit in 152 bits");
                                                return uint152(value);
                                            }
                                        
                                            /**
                                             * @dev Returns the downcasted uint144 from uint256, reverting on
                                             * overflow (when the input is greater than largest uint144).
                                             *
                                             * Counterpart to Solidity's `uint144` operator.
                                             *
                                             * Requirements:
                                             *
                                             * - input must fit into 144 bits
                                             *
                                             * _Available since v4.7._
                                             */
                                            function toUint144(uint256 value) internal pure returns (uint144) {
                                                require(value <= type(uint144).max, "SafeCast: value doesn't fit in 144 bits");
                                                return uint144(value);
                                            }
                                        
                                            /**
                                             * @dev Returns the downcasted uint136 from uint256, reverting on
                                             * overflow (when the input is greater than largest uint136).
                                             *
                                             * Counterpart to Solidity's `uint136` operator.
                                             *
                                             * Requirements:
                                             *
                                             * - input must fit into 136 bits
                                             *
                                             * _Available since v4.7._
                                             */
                                            function toUint136(uint256 value) internal pure returns (uint136) {
                                                require(value <= type(uint136).max, "SafeCast: value doesn't fit in 136 bits");
                                                return uint136(value);
                                            }
                                        
                                            /**
                                             * @dev Returns the downcasted uint128 from uint256, reverting on
                                             * overflow (when the input is greater than largest uint128).
                                             *
                                             * Counterpart to Solidity's `uint128` operator.
                                             *
                                             * Requirements:
                                             *
                                             * - input must fit into 128 bits
                                             *
                                             * _Available since v2.5._
                                             */
                                            function toUint128(uint256 value) internal pure returns (uint128) {
                                                require(value <= type(uint128).max, "SafeCast: value doesn't fit in 128 bits");
                                                return uint128(value);
                                            }
                                        
                                            /**
                                             * @dev Returns the downcasted uint120 from uint256, reverting on
                                             * overflow (when the input is greater than largest uint120).
                                             *
                                             * Counterpart to Solidity's `uint120` operator.
                                             *
                                             * Requirements:
                                             *
                                             * - input must fit into 120 bits
                                             *
                                             * _Available since v4.7._
                                             */
                                            function toUint120(uint256 value) internal pure returns (uint120) {
                                                require(value <= type(uint120).max, "SafeCast: value doesn't fit in 120 bits");
                                                return uint120(value);
                                            }
                                        
                                            /**
                                             * @dev Returns the downcasted uint112 from uint256, reverting on
                                             * overflow (when the input is greater than largest uint112).
                                             *
                                             * Counterpart to Solidity's `uint112` operator.
                                             *
                                             * Requirements:
                                             *
                                             * - input must fit into 112 bits
                                             *
                                             * _Available since v4.7._
                                             */
                                            function toUint112(uint256 value) internal pure returns (uint112) {
                                                require(value <= type(uint112).max, "SafeCast: value doesn't fit in 112 bits");
                                                return uint112(value);
                                            }
                                        
                                            /**
                                             * @dev Returns the downcasted uint104 from uint256, reverting on
                                             * overflow (when the input is greater than largest uint104).
                                             *
                                             * Counterpart to Solidity's `uint104` operator.
                                             *
                                             * Requirements:
                                             *
                                             * - input must fit into 104 bits
                                             *
                                             * _Available since v4.7._
                                             */
                                            function toUint104(uint256 value) internal pure returns (uint104) {
                                                require(value <= type(uint104).max, "SafeCast: value doesn't fit in 104 bits");
                                                return uint104(value);
                                            }
                                        
                                            /**
                                             * @dev Returns the downcasted uint96 from uint256, reverting on
                                             * overflow (when the input is greater than largest uint96).
                                             *
                                             * Counterpart to Solidity's `uint96` operator.
                                             *
                                             * Requirements:
                                             *
                                             * - input must fit into 96 bits
                                             *
                                             * _Available since v4.2._
                                             */
                                            function toUint96(uint256 value) internal pure returns (uint96) {
                                                require(value <= type(uint96).max, "SafeCast: value doesn't fit in 96 bits");
                                                return uint96(value);
                                            }
                                        
                                            /**
                                             * @dev Returns the downcasted uint88 from uint256, reverting on
                                             * overflow (when the input is greater than largest uint88).
                                             *
                                             * Counterpart to Solidity's `uint88` operator.
                                             *
                                             * Requirements:
                                             *
                                             * - input must fit into 88 bits
                                             *
                                             * _Available since v4.7._
                                             */
                                            function toUint88(uint256 value) internal pure returns (uint88) {
                                                require(value <= type(uint88).max, "SafeCast: value doesn't fit in 88 bits");
                                                return uint88(value);
                                            }
                                        
                                            /**
                                             * @dev Returns the downcasted uint80 from uint256, reverting on
                                             * overflow (when the input is greater than largest uint80).
                                             *
                                             * Counterpart to Solidity's `uint80` operator.
                                             *
                                             * Requirements:
                                             *
                                             * - input must fit into 80 bits
                                             *
                                             * _Available since v4.7._
                                             */
                                            function toUint80(uint256 value) internal pure returns (uint80) {
                                                require(value <= type(uint80).max, "SafeCast: value doesn't fit in 80 bits");
                                                return uint80(value);
                                            }
                                        
                                            /**
                                             * @dev Returns the downcasted uint72 from uint256, reverting on
                                             * overflow (when the input is greater than largest uint72).
                                             *
                                             * Counterpart to Solidity's `uint72` operator.
                                             *
                                             * Requirements:
                                             *
                                             * - input must fit into 72 bits
                                             *
                                             * _Available since v4.7._
                                             */
                                            function toUint72(uint256 value) internal pure returns (uint72) {
                                                require(value <= type(uint72).max, "SafeCast: value doesn't fit in 72 bits");
                                                return uint72(value);
                                            }
                                        
                                            /**
                                             * @dev Returns the downcasted uint64 from uint256, reverting on
                                             * overflow (when the input is greater than largest uint64).
                                             *
                                             * Counterpart to Solidity's `uint64` operator.
                                             *
                                             * Requirements:
                                             *
                                             * - input must fit into 64 bits
                                             *
                                             * _Available since v2.5._
                                             */
                                            function toUint64(uint256 value) internal pure returns (uint64) {
                                                require(value <= type(uint64).max, "SafeCast: value doesn't fit in 64 bits");
                                                return uint64(value);
                                            }
                                        
                                            /**
                                             * @dev Returns the downcasted uint56 from uint256, reverting on
                                             * overflow (when the input is greater than largest uint56).
                                             *
                                             * Counterpart to Solidity's `uint56` operator.
                                             *
                                             * Requirements:
                                             *
                                             * - input must fit into 56 bits
                                             *
                                             * _Available since v4.7._
                                             */
                                            function toUint56(uint256 value) internal pure returns (uint56) {
                                                require(value <= type(uint56).max, "SafeCast: value doesn't fit in 56 bits");
                                                return uint56(value);
                                            }
                                        
                                            /**
                                             * @dev Returns the downcasted uint48 from uint256, reverting on
                                             * overflow (when the input is greater than largest uint48).
                                             *
                                             * Counterpart to Solidity's `uint48` operator.
                                             *
                                             * Requirements:
                                             *
                                             * - input must fit into 48 bits
                                             *
                                             * _Available since v4.7._
                                             */
                                            function toUint48(uint256 value) internal pure returns (uint48) {
                                                require(value <= type(uint48).max, "SafeCast: value doesn't fit in 48 bits");
                                                return uint48(value);
                                            }
                                        
                                            /**
                                             * @dev Returns the downcasted uint40 from uint256, reverting on
                                             * overflow (when the input is greater than largest uint40).
                                             *
                                             * Counterpart to Solidity's `uint40` operator.
                                             *
                                             * Requirements:
                                             *
                                             * - input must fit into 40 bits
                                             *
                                             * _Available since v4.7._
                                             */
                                            function toUint40(uint256 value) internal pure returns (uint40) {
                                                require(value <= type(uint40).max, "SafeCast: value doesn't fit in 40 bits");
                                                return uint40(value);
                                            }
                                        
                                            /**
                                             * @dev Returns the downcasted uint32 from uint256, reverting on
                                             * overflow (when the input is greater than largest uint32).
                                             *
                                             * Counterpart to Solidity's `uint32` operator.
                                             *
                                             * Requirements:
                                             *
                                             * - input must fit into 32 bits
                                             *
                                             * _Available since v2.5._
                                             */
                                            function toUint32(uint256 value) internal pure returns (uint32) {
                                                require(value <= type(uint32).max, "SafeCast: value doesn't fit in 32 bits");
                                                return uint32(value);
                                            }
                                        
                                            /**
                                             * @dev Returns the downcasted uint24 from uint256, reverting on
                                             * overflow (when the input is greater than largest uint24).
                                             *
                                             * Counterpart to Solidity's `uint24` operator.
                                             *
                                             * Requirements:
                                             *
                                             * - input must fit into 24 bits
                                             *
                                             * _Available since v4.7._
                                             */
                                            function toUint24(uint256 value) internal pure returns (uint24) {
                                                require(value <= type(uint24).max, "SafeCast: value doesn't fit in 24 bits");
                                                return uint24(value);
                                            }
                                        
                                            /**
                                             * @dev Returns the downcasted uint16 from uint256, reverting on
                                             * overflow (when the input is greater than largest uint16).
                                             *
                                             * Counterpart to Solidity's `uint16` operator.
                                             *
                                             * Requirements:
                                             *
                                             * - input must fit into 16 bits
                                             *
                                             * _Available since v2.5._
                                             */
                                            function toUint16(uint256 value) internal pure returns (uint16) {
                                                require(value <= type(uint16).max, "SafeCast: value doesn't fit in 16 bits");
                                                return uint16(value);
                                            }
                                        
                                            /**
                                             * @dev Returns the downcasted uint8 from uint256, reverting on
                                             * overflow (when the input is greater than largest uint8).
                                             *
                                             * Counterpart to Solidity's `uint8` operator.
                                             *
                                             * Requirements:
                                             *
                                             * - input must fit into 8 bits
                                             *
                                             * _Available since v2.5._
                                             */
                                            function toUint8(uint256 value) internal pure returns (uint8) {
                                                require(value <= type(uint8).max, "SafeCast: value doesn't fit in 8 bits");
                                                return uint8(value);
                                            }
                                        
                                            /**
                                             * @dev Converts a signed int256 into an unsigned uint256.
                                             *
                                             * Requirements:
                                             *
                                             * - input must be greater than or equal to 0.
                                             *
                                             * _Available since v3.0._
                                             */
                                            function toUint256(int256 value) internal pure returns (uint256) {
                                                require(value >= 0, "SafeCast: value must be positive");
                                                return uint256(value);
                                            }
                                        
                                            /**
                                             * @dev Returns the downcasted int248 from int256, reverting on
                                             * overflow (when the input is less than smallest int248 or
                                             * greater than largest int248).
                                             *
                                             * Counterpart to Solidity's `int248` operator.
                                             *
                                             * Requirements:
                                             *
                                             * - input must fit into 248 bits
                                             *
                                             * _Available since v4.7._
                                             */
                                            function toInt248(int256 value) internal pure returns (int248) {
                                                require(value >= type(int248).min && value <= type(int248).max, "SafeCast: value doesn't fit in 248 bits");
                                                return int248(value);
                                            }
                                        
                                            /**
                                             * @dev Returns the downcasted int240 from int256, reverting on
                                             * overflow (when the input is less than smallest int240 or
                                             * greater than largest int240).
                                             *
                                             * Counterpart to Solidity's `int240` operator.
                                             *
                                             * Requirements:
                                             *
                                             * - input must fit into 240 bits
                                             *
                                             * _Available since v4.7._
                                             */
                                            function toInt240(int256 value) internal pure returns (int240) {
                                                require(value >= type(int240).min && value <= type(int240).max, "SafeCast: value doesn't fit in 240 bits");
                                                return int240(value);
                                            }
                                        
                                            /**
                                             * @dev Returns the downcasted int232 from int256, reverting on
                                             * overflow (when the input is less than smallest int232 or
                                             * greater than largest int232).
                                             *
                                             * Counterpart to Solidity's `int232` operator.
                                             *
                                             * Requirements:
                                             *
                                             * - input must fit into 232 bits
                                             *
                                             * _Available since v4.7._
                                             */
                                            function toInt232(int256 value) internal pure returns (int232) {
                                                require(value >= type(int232).min && value <= type(int232).max, "SafeCast: value doesn't fit in 232 bits");
                                                return int232(value);
                                            }
                                        
                                            /**
                                             * @dev Returns the downcasted int224 from int256, reverting on
                                             * overflow (when the input is less than smallest int224 or
                                             * greater than largest int224).
                                             *
                                             * Counterpart to Solidity's `int224` operator.
                                             *
                                             * Requirements:
                                             *
                                             * - input must fit into 224 bits
                                             *
                                             * _Available since v4.7._
                                             */
                                            function toInt224(int256 value) internal pure returns (int224) {
                                                require(value >= type(int224).min && value <= type(int224).max, "SafeCast: value doesn't fit in 224 bits");
                                                return int224(value);
                                            }
                                        
                                            /**
                                             * @dev Returns the downcasted int216 from int256, reverting on
                                             * overflow (when the input is less than smallest int216 or
                                             * greater than largest int216).
                                             *
                                             * Counterpart to Solidity's `int216` operator.
                                             *
                                             * Requirements:
                                             *
                                             * - input must fit into 216 bits
                                             *
                                             * _Available since v4.7._
                                             */
                                            function toInt216(int256 value) internal pure returns (int216) {
                                                require(value >= type(int216).min && value <= type(int216).max, "SafeCast: value doesn't fit in 216 bits");
                                                return int216(value);
                                            }
                                        
                                            /**
                                             * @dev Returns the downcasted int208 from int256, reverting on
                                             * overflow (when the input is less than smallest int208 or
                                             * greater than largest int208).
                                             *
                                             * Counterpart to Solidity's `int208` operator.
                                             *
                                             * Requirements:
                                             *
                                             * - input must fit into 208 bits
                                             *
                                             * _Available since v4.7._
                                             */
                                            function toInt208(int256 value) internal pure returns (int208) {
                                                require(value >= type(int208).min && value <= type(int208).max, "SafeCast: value doesn't fit in 208 bits");
                                                return int208(value);
                                            }
                                        
                                            /**
                                             * @dev Returns the downcasted int200 from int256, reverting on
                                             * overflow (when the input is less than smallest int200 or
                                             * greater than largest int200).
                                             *
                                             * Counterpart to Solidity's `int200` operator.
                                             *
                                             * Requirements:
                                             *
                                             * - input must fit into 200 bits
                                             *
                                             * _Available since v4.7._
                                             */
                                            function toInt200(int256 value) internal pure returns (int200) {
                                                require(value >= type(int200).min && value <= type(int200).max, "SafeCast: value doesn't fit in 200 bits");
                                                return int200(value);
                                            }
                                        
                                            /**
                                             * @dev Returns the downcasted int192 from int256, reverting on
                                             * overflow (when the input is less than smallest int192 or
                                             * greater than largest int192).
                                             *
                                             * Counterpart to Solidity's `int192` operator.
                                             *
                                             * Requirements:
                                             *
                                             * - input must fit into 192 bits
                                             *
                                             * _Available since v4.7._
                                             */
                                            function toInt192(int256 value) internal pure returns (int192) {
                                                require(value >= type(int192).min && value <= type(int192).max, "SafeCast: value doesn't fit in 192 bits");
                                                return int192(value);
                                            }
                                        
                                            /**
                                             * @dev Returns the downcasted int184 from int256, reverting on
                                             * overflow (when the input is less than smallest int184 or
                                             * greater than largest int184).
                                             *
                                             * Counterpart to Solidity's `int184` operator.
                                             *
                                             * Requirements:
                                             *
                                             * - input must fit into 184 bits
                                             *
                                             * _Available since v4.7._
                                             */
                                            function toInt184(int256 value) internal pure returns (int184) {
                                                require(value >= type(int184).min && value <= type(int184).max, "SafeCast: value doesn't fit in 184 bits");
                                                return int184(value);
                                            }
                                        
                                            /**
                                             * @dev Returns the downcasted int176 from int256, reverting on
                                             * overflow (when the input is less than smallest int176 or
                                             * greater than largest int176).
                                             *
                                             * Counterpart to Solidity's `int176` operator.
                                             *
                                             * Requirements:
                                             *
                                             * - input must fit into 176 bits
                                             *
                                             * _Available since v4.7._
                                             */
                                            function toInt176(int256 value) internal pure returns (int176) {
                                                require(value >= type(int176).min && value <= type(int176).max, "SafeCast: value doesn't fit in 176 bits");
                                                return int176(value);
                                            }
                                        
                                            /**
                                             * @dev Returns the downcasted int168 from int256, reverting on
                                             * overflow (when the input is less than smallest int168 or
                                             * greater than largest int168).
                                             *
                                             * Counterpart to Solidity's `int168` operator.
                                             *
                                             * Requirements:
                                             *
                                             * - input must fit into 168 bits
                                             *
                                             * _Available since v4.7._
                                             */
                                            function toInt168(int256 value) internal pure returns (int168) {
                                                require(value >= type(int168).min && value <= type(int168).max, "SafeCast: value doesn't fit in 168 bits");
                                                return int168(value);
                                            }
                                        
                                            /**
                                             * @dev Returns the downcasted int160 from int256, reverting on
                                             * overflow (when the input is less than smallest int160 or
                                             * greater than largest int160).
                                             *
                                             * Counterpart to Solidity's `int160` operator.
                                             *
                                             * Requirements:
                                             *
                                             * - input must fit into 160 bits
                                             *
                                             * _Available since v4.7._
                                             */
                                            function toInt160(int256 value) internal pure returns (int160) {
                                                require(value >= type(int160).min && value <= type(int160).max, "SafeCast: value doesn't fit in 160 bits");
                                                return int160(value);
                                            }
                                        
                                            /**
                                             * @dev Returns the downcasted int152 from int256, reverting on
                                             * overflow (when the input is less than smallest int152 or
                                             * greater than largest int152).
                                             *
                                             * Counterpart to Solidity's `int152` operator.
                                             *
                                             * Requirements:
                                             *
                                             * - input must fit into 152 bits
                                             *
                                             * _Available since v4.7._
                                             */
                                            function toInt152(int256 value) internal pure returns (int152) {
                                                require(value >= type(int152).min && value <= type(int152).max, "SafeCast: value doesn't fit in 152 bits");
                                                return int152(value);
                                            }
                                        
                                            /**
                                             * @dev Returns the downcasted int144 from int256, reverting on
                                             * overflow (when the input is less than smallest int144 or
                                             * greater than largest int144).
                                             *
                                             * Counterpart to Solidity's `int144` operator.
                                             *
                                             * Requirements:
                                             *
                                             * - input must fit into 144 bits
                                             *
                                             * _Available since v4.7._
                                             */
                                            function toInt144(int256 value) internal pure returns (int144) {
                                                require(value >= type(int144).min && value <= type(int144).max, "SafeCast: value doesn't fit in 144 bits");
                                                return int144(value);
                                            }
                                        
                                            /**
                                             * @dev Returns the downcasted int136 from int256, reverting on
                                             * overflow (when the input is less than smallest int136 or
                                             * greater than largest int136).
                                             *
                                             * Counterpart to Solidity's `int136` operator.
                                             *
                                             * Requirements:
                                             *
                                             * - input must fit into 136 bits
                                             *
                                             * _Available since v4.7._
                                             */
                                            function toInt136(int256 value) internal pure returns (int136) {
                                                require(value >= type(int136).min && value <= type(int136).max, "SafeCast: value doesn't fit in 136 bits");
                                                return int136(value);
                                            }
                                        
                                            /**
                                             * @dev Returns the downcasted int128 from int256, reverting on
                                             * overflow (when the input is less than smallest int128 or
                                             * greater than largest int128).
                                             *
                                             * Counterpart to Solidity's `int128` operator.
                                             *
                                             * Requirements:
                                             *
                                             * - input must fit into 128 bits
                                             *
                                             * _Available since v3.1._
                                             */
                                            function toInt128(int256 value) internal pure returns (int128) {
                                                require(value >= type(int128).min && value <= type(int128).max, "SafeCast: value doesn't fit in 128 bits");
                                                return int128(value);
                                            }
                                        
                                            /**
                                             * @dev Returns the downcasted int120 from int256, reverting on
                                             * overflow (when the input is less than smallest int120 or
                                             * greater than largest int120).
                                             *
                                             * Counterpart to Solidity's `int120` operator.
                                             *
                                             * Requirements:
                                             *
                                             * - input must fit into 120 bits
                                             *
                                             * _Available since v4.7._
                                             */
                                            function toInt120(int256 value) internal pure returns (int120) {
                                                require(value >= type(int120).min && value <= type(int120).max, "SafeCast: value doesn't fit in 120 bits");
                                                return int120(value);
                                            }
                                        
                                            /**
                                             * @dev Returns the downcasted int112 from int256, reverting on
                                             * overflow (when the input is less than smallest int112 or
                                             * greater than largest int112).
                                             *
                                             * Counterpart to Solidity's `int112` operator.
                                             *
                                             * Requirements:
                                             *
                                             * - input must fit into 112 bits
                                             *
                                             * _Available since v4.7._
                                             */
                                            function toInt112(int256 value) internal pure returns (int112) {
                                                require(value >= type(int112).min && value <= type(int112).max, "SafeCast: value doesn't fit in 112 bits");
                                                return int112(value);
                                            }
                                        
                                            /**
                                             * @dev Returns the downcasted int104 from int256, reverting on
                                             * overflow (when the input is less than smallest int104 or
                                             * greater than largest int104).
                                             *
                                             * Counterpart to Solidity's `int104` operator.
                                             *
                                             * Requirements:
                                             *
                                             * - input must fit into 104 bits
                                             *
                                             * _Available since v4.7._
                                             */
                                            function toInt104(int256 value) internal pure returns (int104) {
                                                require(value >= type(int104).min && value <= type(int104).max, "SafeCast: value doesn't fit in 104 bits");
                                                return int104(value);
                                            }
                                        
                                            /**
                                             * @dev Returns the downcasted int96 from int256, reverting on
                                             * overflow (when the input is less than smallest int96 or
                                             * greater than largest int96).
                                             *
                                             * Counterpart to Solidity's `int96` operator.
                                             *
                                             * Requirements:
                                             *
                                             * - input must fit into 96 bits
                                             *
                                             * _Available since v4.7._
                                             */
                                            function toInt96(int256 value) internal pure returns (int96) {
                                                require(value >= type(int96).min && value <= type(int96).max, "SafeCast: value doesn't fit in 96 bits");
                                                return int96(value);
                                            }
                                        
                                            /**
                                             * @dev Returns the downcasted int88 from int256, reverting on
                                             * overflow (when the input is less than smallest int88 or
                                             * greater than largest int88).
                                             *
                                             * Counterpart to Solidity's `int88` operator.
                                             *
                                             * Requirements:
                                             *
                                             * - input must fit into 88 bits
                                             *
                                             * _Available since v4.7._
                                             */
                                            function toInt88(int256 value) internal pure returns (int88) {
                                                require(value >= type(int88).min && value <= type(int88).max, "SafeCast: value doesn't fit in 88 bits");
                                                return int88(value);
                                            }
                                        
                                            /**
                                             * @dev Returns the downcasted int80 from int256, reverting on
                                             * overflow (when the input is less than smallest int80 or
                                             * greater than largest int80).
                                             *
                                             * Counterpart to Solidity's `int80` operator.
                                             *
                                             * Requirements:
                                             *
                                             * - input must fit into 80 bits
                                             *
                                             * _Available since v4.7._
                                             */
                                            function toInt80(int256 value) internal pure returns (int80) {
                                                require(value >= type(int80).min && value <= type(int80).max, "SafeCast: value doesn't fit in 80 bits");
                                                return int80(value);
                                            }
                                        
                                            /**
                                             * @dev Returns the downcasted int72 from int256, reverting on
                                             * overflow (when the input is less than smallest int72 or
                                             * greater than largest int72).
                                             *
                                             * Counterpart to Solidity's `int72` operator.
                                             *
                                             * Requirements:
                                             *
                                             * - input must fit into 72 bits
                                             *
                                             * _Available since v4.7._
                                             */
                                            function toInt72(int256 value) internal pure returns (int72) {
                                                require(value >= type(int72).min && value <= type(int72).max, "SafeCast: value doesn't fit in 72 bits");
                                                return int72(value);
                                            }
                                        
                                            /**
                                             * @dev Returns the downcasted int64 from int256, reverting on
                                             * overflow (when the input is less than smallest int64 or
                                             * greater than largest int64).
                                             *
                                             * Counterpart to Solidity's `int64` operator.
                                             *
                                             * Requirements:
                                             *
                                             * - input must fit into 64 bits
                                             *
                                             * _Available since v3.1._
                                             */
                                            function toInt64(int256 value) internal pure returns (int64) {
                                                require(value >= type(int64).min && value <= type(int64).max, "SafeCast: value doesn't fit in 64 bits");
                                                return int64(value);
                                            }
                                        
                                            /**
                                             * @dev Returns the downcasted int56 from int256, reverting on
                                             * overflow (when the input is less than smallest int56 or
                                             * greater than largest int56).
                                             *
                                             * Counterpart to Solidity's `int56` operator.
                                             *
                                             * Requirements:
                                             *
                                             * - input must fit into 56 bits
                                             *
                                             * _Available since v4.7._
                                             */
                                            function toInt56(int256 value) internal pure returns (int56) {
                                                require(value >= type(int56).min && value <= type(int56).max, "SafeCast: value doesn't fit in 56 bits");
                                                return int56(value);
                                            }
                                        
                                            /**
                                             * @dev Returns the downcasted int48 from int256, reverting on
                                             * overflow (when the input is less than smallest int48 or
                                             * greater than largest int48).
                                             *
                                             * Counterpart to Solidity's `int48` operator.
                                             *
                                             * Requirements:
                                             *
                                             * - input must fit into 48 bits
                                             *
                                             * _Available since v4.7._
                                             */
                                            function toInt48(int256 value) internal pure returns (int48) {
                                                require(value >= type(int48).min && value <= type(int48).max, "SafeCast: value doesn't fit in 48 bits");
                                                return int48(value);
                                            }
                                        
                                            /**
                                             * @dev Returns the downcasted int40 from int256, reverting on
                                             * overflow (when the input is less than smallest int40 or
                                             * greater than largest int40).
                                             *
                                             * Counterpart to Solidity's `int40` operator.
                                             *
                                             * Requirements:
                                             *
                                             * - input must fit into 40 bits
                                             *
                                             * _Available since v4.7._
                                             */
                                            function toInt40(int256 value) internal pure returns (int40) {
                                                require(value >= type(int40).min && value <= type(int40).max, "SafeCast: value doesn't fit in 40 bits");
                                                return int40(value);
                                            }
                                        
                                            /**
                                             * @dev Returns the downcasted int32 from int256, reverting on
                                             * overflow (when the input is less than smallest int32 or
                                             * greater than largest int32).
                                             *
                                             * Counterpart to Solidity's `int32` operator.
                                             *
                                             * Requirements:
                                             *
                                             * - input must fit into 32 bits
                                             *
                                             * _Available since v3.1._
                                             */
                                            function toInt32(int256 value) internal pure returns (int32) {
                                                require(value >= type(int32).min && value <= type(int32).max, "SafeCast: value doesn't fit in 32 bits");
                                                return int32(value);
                                            }
                                        
                                            /**
                                             * @dev Returns the downcasted int24 from int256, reverting on
                                             * overflow (when the input is less than smallest int24 or
                                             * greater than largest int24).
                                             *
                                             * Counterpart to Solidity's `int24` operator.
                                             *
                                             * Requirements:
                                             *
                                             * - input must fit into 24 bits
                                             *
                                             * _Available since v4.7._
                                             */
                                            function toInt24(int256 value) internal pure returns (int24) {
                                                require(value >= type(int24).min && value <= type(int24).max, "SafeCast: value doesn't fit in 24 bits");
                                                return int24(value);
                                            }
                                        
                                            /**
                                             * @dev Returns the downcasted int16 from int256, reverting on
                                             * overflow (when the input is less than smallest int16 or
                                             * greater than largest int16).
                                             *
                                             * Counterpart to Solidity's `int16` operator.
                                             *
                                             * Requirements:
                                             *
                                             * - input must fit into 16 bits
                                             *
                                             * _Available since v3.1._
                                             */
                                            function toInt16(int256 value) internal pure returns (int16) {
                                                require(value >= type(int16).min && value <= type(int16).max, "SafeCast: value doesn't fit in 16 bits");
                                                return int16(value);
                                            }
                                        
                                            /**
                                             * @dev Returns the downcasted int8 from int256, reverting on
                                             * overflow (when the input is less than smallest int8 or
                                             * greater than largest int8).
                                             *
                                             * Counterpart to Solidity's `int8` operator.
                                             *
                                             * Requirements:
                                             *
                                             * - input must fit into 8 bits
                                             *
                                             * _Available since v3.1._
                                             */
                                            function toInt8(int256 value) internal pure returns (int8) {
                                                require(value >= type(int8).min && value <= type(int8).max, "SafeCast: value doesn't fit in 8 bits");
                                                return int8(value);
                                            }
                                        
                                            /**
                                             * @dev Converts an unsigned uint256 into a signed int256.
                                             *
                                             * Requirements:
                                             *
                                             * - input must be less than or equal to maxInt256.
                                             *
                                             * _Available since v3.0._
                                             */
                                            function toInt256(uint256 value) internal pure returns (int256) {
                                                // Note: Unsafe cast below is okay because `type(int256).max` is guaranteed to be positive
                                                require(value <= uint256(type(int256).max), "SafeCast: value doesn't fit in an int256");
                                                return int256(value);
                                            }
                                        }
                                        
                                        
                                        // File contracts/routers/UnoswapV3Router.sol
                                        
                                        
                                        pragma solidity 0.8.17;
                                        
                                        
                                        
                                        
                                        
                                        
                                        
                                        
                                        
                                        contract UnoswapV3Router is EthReceiver, IUniswapV3SwapCallback {
                                            using Address for address payable;
                                            using SafeERC20 for IERC20;
                                        
                                            error EmptyPools();
                                            error BadPool();
                                        
                                            uint256 private constant _ONE_FOR_ZERO_MASK = 1 << 255;
                                            uint256 private constant _WETH_UNWRAP_MASK = 1 << 253;
                                            bytes32 private constant _POOL_INIT_CODE_HASH = 0xe34f199b19b2b4f47f68442619d555527d244f78a3297ea89325f843f87b8b54;
                                            bytes32 private constant _FF_FACTORY = 0xff1F98431c8aD98523631AE4a59f267346ea31F9840000000000000000000000;
                                            // concatenation of token0(), token1() fee(), transfer() and transferFrom() selectors
                                            bytes32 private constant _SELECTORS = 0x0dfe1681d21220a7ddca3f43a9059cbb23b872dd000000000000000000000000;
                                            uint256 private constant _ADDRESS_MASK =   0x000000000000000000000000ffffffffffffffffffffffffffffffffffffffff;
                                            /// @dev The minimum value that can be returned from #getSqrtRatioAtTick. Equivalent to getSqrtRatioAtTick(MIN_TICK)
                                            uint160 private constant _MIN_SQRT_RATIO = 4295128739 + 1;
                                            /// @dev The maximum value that can be returned from #getSqrtRatioAtTick. Equivalent to getSqrtRatioAtTick(MAX_TICK)
                                            uint160 private constant _MAX_SQRT_RATIO = 1461446703485210103287273052203988822378723970342 - 1;
                                            IWETH private immutable _WETH;  // solhint-disable-line var-name-mixedcase
                                        
                                            constructor(IWETH weth) {
                                                _WETH = weth;
                                            }
                                        
                                            /// @notice Same as `uniswapV3SwapTo` but calls permit first,
                                            /// allowing to approve token spending and make a swap in one transaction.
                                            /// @param recipient Address that will receive swap funds
                                            /// @param srcToken Source token
                                            /// @param amount Amount of source tokens to swap
                                            /// @param minReturn Minimal allowed returnAmount to make transaction commit
                                            /// @param pools Pools chain used for swaps. Pools src and dst tokens should match to make swap happen
                                            /// @param permit Should contain valid permit that can be used in `IERC20Permit.permit` calls.
                                            /// See tests for examples
                                            function uniswapV3SwapToWithPermit(
                                                address payable recipient,
                                                IERC20 srcToken,
                                                uint256 amount,
                                                uint256 minReturn,
                                                uint256[] calldata pools,
                                                bytes calldata permit
                                            ) external returns(uint256 returnAmount) {
                                                srcToken.safePermit(permit);
                                                return _uniswapV3Swap(recipient, amount, minReturn, pools);
                                            }
                                        
                                            /// @notice Same as `uniswapV3SwapTo` but uses `msg.sender` as recipient
                                            /// @param amount Amount of source tokens to swap
                                            /// @param minReturn Minimal allowed returnAmount to make transaction commit
                                            /// @param pools Pools chain used for swaps. Pools src and dst tokens should match to make swap happen
                                            function uniswapV3Swap(
                                                uint256 amount,
                                                uint256 minReturn,
                                                uint256[] calldata pools
                                            ) external payable returns(uint256 returnAmount) {
                                                return _uniswapV3Swap(payable(msg.sender), amount, minReturn, pools);
                                            }
                                        
                                            /// @notice Performs swap using Uniswap V3 exchange. Wraps and unwraps ETH if required.
                                            /// Sending non-zero `msg.value` for anything but ETH swaps is prohibited
                                            /// @param recipient Address that will receive swap funds
                                            /// @param amount Amount of source tokens to swap
                                            /// @param minReturn Minimal allowed returnAmount to make transaction commit
                                            /// @param pools Pools chain used for swaps. Pools src and dst tokens should match to make swap happen
                                            function uniswapV3SwapTo(
                                                address payable recipient,
                                                uint256 amount,
                                                uint256 minReturn,
                                                uint256[] calldata pools
                                            ) external payable returns(uint256 returnAmount) {
                                                return _uniswapV3Swap(recipient, amount, minReturn, pools);
                                            }
                                        
                                            function _uniswapV3Swap(
                                                address payable recipient,
                                                uint256 amount,
                                                uint256 minReturn,
                                                uint256[] calldata pools
                                            ) private returns(uint256 returnAmount) {
                                                unchecked {
                                                    uint256 len = pools.length;
                                                    if (len == 0) revert EmptyPools();
                                                    uint256 lastIndex = len - 1;
                                                    returnAmount = amount;
                                                    bool wrapWeth = msg.value > 0;
                                                    bool unwrapWeth = pools[lastIndex] & _WETH_UNWRAP_MASK > 0;
                                                    if (wrapWeth) {
                                                        if (msg.value != amount) revert RouterErrors.InvalidMsgValue();
                                                        _WETH.deposit{value: amount}();
                                                    }
                                                    if (len > 1) {
                                                        returnAmount = _makeSwap(address(this), wrapWeth ? address(this) : msg.sender, pools[0], returnAmount);
                                        
                                                        for (uint256 i = 1; i < lastIndex; i++) {
                                                            returnAmount = _makeSwap(address(this), address(this), pools[i], returnAmount);
                                                        }
                                                        returnAmount = _makeSwap(unwrapWeth ? address(this) : recipient, address(this), pools[lastIndex], returnAmount);
                                                    } else {
                                                        returnAmount = _makeSwap(unwrapWeth ? address(this) : recipient, wrapWeth ? address(this) : msg.sender, pools[0], returnAmount);
                                                    }
                                        
                                                    if (returnAmount < minReturn) revert RouterErrors.ReturnAmountIsNotEnough();
                                        
                                                    if (unwrapWeth) {
                                                        _WETH.withdraw(returnAmount);
                                                        recipient.sendValue(returnAmount);
                                                    }
                                                }
                                            }
                                        
                                            /// @inheritdoc IUniswapV3SwapCallback
                                            function uniswapV3SwapCallback(
                                                int256 amount0Delta,
                                                int256 amount1Delta,
                                                bytes calldata /* data */
                                            ) external override {
                                                assembly {  // solhint-disable-line no-inline-assembly
                                                    function reRevert() {
                                                        returndatacopy(0, 0, returndatasize())
                                                        revert(0, returndatasize())
                                                    }
                                        
                                                    function validateERC20Transfer(status) {
                                                        if iszero(status) {
                                                            reRevert()
                                                        }
                                                        let success := or(
                                                            iszero(returndatasize()),                       // empty return data
                                                            and(gt(returndatasize(), 31), eq(mload(0), 1))  // true in return data
                                                        )
                                                        if iszero(success) {
                                                            mstore(0, 0xf27f64e400000000000000000000000000000000000000000000000000000000)  // ERC20TransferFailed()
                                                            revert(0, 4)
                                                        }
                                                    }
                                        
                                                    let emptyPtr := mload(0x40)
                                                    let resultPtr := add(emptyPtr, 0x15)  // 0x15 = _FF_FACTORY size
                                        
                                                    mstore(emptyPtr, _SELECTORS)
                                                    if iszero(staticcall(gas(), caller(), emptyPtr, 0x4, resultPtr, 0x20)) {
                                                        reRevert()
                                                    }
                                                    if iszero(staticcall(gas(), caller(), add(emptyPtr, 0x4), 0x4, add(resultPtr, 0x20), 0x20)) {
                                                        reRevert()
                                                    }
                                                    if iszero(staticcall(gas(), caller(), add(emptyPtr, 0x8), 0x4, add(resultPtr, 0x40), 0x20)) {
                                                        reRevert()
                                                    }
                                        
                                                    let token
                                                    let amount
                                                    switch sgt(amount0Delta, 0)
                                                    case 1 {
                                                        token := mload(resultPtr)
                                                        amount := amount0Delta
                                                    }
                                                    default {
                                                        token := mload(add(resultPtr, 0x20))
                                                        amount := amount1Delta
                                                    }
                                        
                                                    mstore(emptyPtr, _FF_FACTORY)
                                                    mstore(resultPtr, keccak256(resultPtr, 0x60)) // Compute the inner hash in-place
                                                    mstore(add(resultPtr, 0x20), _POOL_INIT_CODE_HASH)
                                                    let pool := and(keccak256(emptyPtr, 0x55), _ADDRESS_MASK)
                                                    if xor(pool, caller()) {
                                                        mstore(0, 0xb2c0272200000000000000000000000000000000000000000000000000000000)  // BadPool()
                                                        revert(0, 4)
                                                    }
                                        
                                                    let payer := calldataload(0x84)
                                                    mstore(emptyPtr, _SELECTORS)
                                                    switch eq(payer, address())
                                                    case 1 {
                                                        // token.safeTransfer(msg.sender,amount)
                                                        mstore(add(emptyPtr, 0x10), caller())
                                                        mstore(add(emptyPtr, 0x30), amount)
                                                        validateERC20Transfer(
                                                            call(gas(), token, 0, add(emptyPtr, 0x0c), 0x44, 0, 0x20)
                                                        )
                                                    }
                                                    default {
                                                        // token.safeTransferFrom(payer, msg.sender, amount);
                                                        mstore(add(emptyPtr, 0x14), payer)
                                                        mstore(add(emptyPtr, 0x34), caller())
                                                        mstore(add(emptyPtr, 0x54), amount)
                                                        validateERC20Transfer(
                                                            call(gas(), token, 0, add(emptyPtr, 0x10), 0x64, 0, 0x20)
                                                        )
                                                    }
                                                }
                                            }
                                        
                                            function _makeSwap(address recipient, address payer, uint256 pool, uint256 amount) private returns (uint256) {
                                                bool zeroForOne = pool & _ONE_FOR_ZERO_MASK == 0;
                                                if (zeroForOne) {
                                                    (, int256 amount1) = IUniswapV3Pool(address(uint160(pool))).swap(
                                                        recipient,
                                                        zeroForOne,
                                                        SafeCast.toInt256(amount),
                                                        _MIN_SQRT_RATIO,
                                                        abi.encode(payer)
                                                    );
                                                    return SafeCast.toUint256(-amount1);
                                                } else {
                                                    (int256 amount0,) = IUniswapV3Pool(address(uint160(pool))).swap(
                                                        recipient,
                                                        zeroForOne,
                                                        SafeCast.toInt256(amount),
                                                        _MAX_SQRT_RATIO,
                                                        abi.encode(payer)
                                                    );
                                                    return SafeCast.toUint256(-amount0);
                                                }
                                            }
                                        }
                                        
                                        
                                        // File @1inch/solidity-utils/contracts/[email protected]
                                        
                                        
                                        pragma solidity ^0.8.0;
                                        
                                        abstract contract OnlyWethReceiver is EthReceiver {
                                            address private immutable _WETH;  // solhint-disable-line var-name-mixedcase
                                        
                                            constructor(address weth) {
                                                _WETH = address(weth);
                                            }
                                        
                                            function _receive() internal virtual override {
                                                if (msg.sender != _WETH) revert EthDepositRejected();
                                            }
                                        }
                                        
                                        
                                        // File @openzeppelin/contracts/interfaces/[email protected]
                                        
                                        // OpenZeppelin Contracts v4.4.1 (interfaces/IERC1271.sol)
                                        
                                        pragma solidity ^0.8.0;
                                        
                                        /**
                                         * @dev Interface of the ERC1271 standard signature validation method for
                                         * contracts as defined in https://eips.ethereum.org/EIPS/eip-1271[ERC-1271].
                                         *
                                         * _Available since v4.1._
                                         */
                                        interface IERC1271 {
                                            /**
                                             * @dev Should return whether the signature provided is valid for the provided data
                                             * @param hash      Hash of the data to be signed
                                             * @param signature Signature byte array associated with _data
                                             */
                                            function isValidSignature(bytes32 hash, bytes memory signature) external view returns (bytes4 magicValue);
                                        }
                                        
                                        
                                        // File @1inch/solidity-utils/contracts/libraries/[email protected]
                                        
                                        
                                        pragma solidity ^0.8.0;
                                        
                                        library ECDSA {
                                            // EIP-2 still allows signature malleability for ecrecover(). Remove this possibility and make the signature
                                            // unique. Appendix F in the Ethereum Yellow paper (https://ethereum.github.io/yellowpaper/paper.pdf), defines
                                            // the valid range for s in (301): 0 < s < secp256k1n ÷ 2 + 1, and for v in (302): v ∈ {27, 28}. Most
                                            // signatures from current libraries generate a unique signature with an s-value in the lower half order.
                                            //
                                            // If your library generates malleable signatures, such as s-values in the upper range, calculate a new s-value
                                            // with 0xFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFEBAAEDCE6AF48A03BBFD25E8CD0364141 - s1 and flip v from 27 to 28 or
                                            // vice versa. If your library also generates signatures with 0/1 for v instead 27/28, add 27 to v to accept
                                            // these malleable signatures as well.
                                            uint256 private constant _S_BOUNDARY = 0x7FFFFFFFFFFFFFFFFFFFFFFFFFFFFFFF5D576E7357A4501DDFE92F46681B20A0 + 1;
                                            uint256 private constant _COMPACT_S_MASK = 0x7fffffffffffffffffffffffffffffffffffffffffffffffffffffffffffffff;
                                            uint256 private constant _COMPACT_V_SHIFT = 255;
                                        
                                            function recover(bytes32 hash, uint8 v, bytes32 r, bytes32 s) internal view returns(address signer) {
                                                /// @solidity memory-safe-assembly
                                                assembly { // solhint-disable-line no-inline-assembly
                                                    if lt(s, _S_BOUNDARY) {
                                                        let ptr := mload(0x40)
                                        
                                                        mstore(ptr, hash)
                                                        mstore(add(ptr, 0x20), v)
                                                        mstore(add(ptr, 0x40), r)
                                                        mstore(add(ptr, 0x60), s)
                                                        mstore(0, 0)
                                                        pop(staticcall(gas(), 0x1, ptr, 0x80, 0, 0x20))
                                                        signer := mload(0)
                                                    }
                                                }
                                            }
                                        
                                            function recover(bytes32 hash, bytes32 r, bytes32 vs) internal view returns(address signer) {
                                                /// @solidity memory-safe-assembly
                                                assembly { // solhint-disable-line no-inline-assembly
                                                    let s := and(vs, _COMPACT_S_MASK)
                                                    if lt(s, _S_BOUNDARY) {
                                                        let ptr := mload(0x40)
                                        
                                                        mstore(ptr, hash)
                                                        mstore(add(ptr, 0x20), add(27, shr(_COMPACT_V_SHIFT, vs)))
                                                        mstore(add(ptr, 0x40), r)
                                                        mstore(add(ptr, 0x60), s)
                                                        mstore(0, 0)
                                                        pop(staticcall(gas(), 0x1, ptr, 0x80, 0, 0x20))
                                                        signer := mload(0)
                                                    }
                                                }
                                            }
                                        
                                            /// WARNING!!!
                                            /// There is a known signature malleability issue with two representations of signatures!
                                            /// Even though this function is able to verify both standard 65-byte and compact 64-byte EIP-2098 signatures
                                            /// one should never use raw signatures for any kind of invalidation logic in their code.
                                            /// As the standard and compact representations are interchangeable any invalidation logic that relies on
                                            /// signature uniqueness will get rekt.
                                            /// More info: https://github.com/OpenZeppelin/openzeppelin-contracts/security/advisories/GHSA-4h98-2769-gh6h
                                            function recover(bytes32 hash, bytes calldata signature) internal view returns(address signer) {
                                                /// @solidity memory-safe-assembly
                                                assembly { // solhint-disable-line no-inline-assembly
                                                    let ptr := mload(0x40)
                                        
                                                    // memory[ptr:ptr+0x80] = (hash, v, r, s)
                                                    switch signature.length
                                                    case 65 {
                                                        // memory[ptr+0x20:ptr+0x80] = (v, r, s)
                                                        mstore(add(ptr, 0x20), byte(0, calldataload(add(signature.offset, 0x40))))
                                                        calldatacopy(add(ptr, 0x40), signature.offset, 0x40)
                                                    }
                                                    case 64 {
                                                        // memory[ptr+0x20:ptr+0x80] = (v, r, s)
                                                        let vs := calldataload(add(signature.offset, 0x20))
                                                        mstore(add(ptr, 0x20), add(27, shr(_COMPACT_V_SHIFT, vs)))
                                                        calldatacopy(add(ptr, 0x40), signature.offset, 0x20)
                                                        mstore(add(ptr, 0x60), and(vs, _COMPACT_S_MASK))
                                                    }
                                                    default {
                                                        ptr := 0
                                                    }
                                        
                                                    if ptr {
                                                        if lt(mload(add(ptr, 0x60)), _S_BOUNDARY) {
                                                            // memory[ptr:ptr+0x20] = (hash)
                                                            mstore(ptr, hash)
                                        
                                                            mstore(0, 0)
                                                            pop(staticcall(gas(), 0x1, ptr, 0x80, 0, 0x20))
                                                            signer := mload(0)
                                                        }
                                                    }
                                                }
                                            }
                                        
                                            function recoverOrIsValidSignature(address signer, bytes32 hash, bytes calldata signature) internal view returns(bool success) {
                                                if (signer == address(0)) return false;
                                                if ((signature.length == 64 || signature.length == 65) && recover(hash, signature) == signer) {
                                                    return true;
                                                }
                                                return isValidSignature(signer, hash, signature);
                                            }
                                        
                                            function recoverOrIsValidSignature(address signer, bytes32 hash, uint8 v, bytes32 r, bytes32 s) internal view returns(bool success) {
                                                if (signer == address(0)) return false;
                                                if (recover(hash, v, r, s) == signer) {
                                                    return true;
                                                }
                                                return isValidSignature(signer, hash, v, r, s);
                                            }
                                        
                                            function recoverOrIsValidSignature(address signer, bytes32 hash, bytes32 r, bytes32 vs) internal view returns(bool success) {
                                                if (signer == address(0)) return false;
                                                if (recover(hash, r, vs) == signer) {
                                                    return true;
                                                }
                                                return isValidSignature(signer, hash, r, vs);
                                            }
                                        
                                            function recoverOrIsValidSignature65(address signer, bytes32 hash, bytes32 r, bytes32 vs) internal view returns(bool success) {
                                                if (signer == address(0)) return false;
                                                if (recover(hash, r, vs) == signer) {
                                                    return true;
                                                }
                                                return isValidSignature65(signer, hash, r, vs);
                                            }
                                        
                                            function isValidSignature(address signer, bytes32 hash, bytes calldata signature) internal view returns(bool success) {
                                                // (bool success, bytes memory data) = signer.staticcall(abi.encodeWithSelector(IERC1271.isValidSignature.selector, hash, signature));
                                                // return success && data.length >= 4 && abi.decode(data, (bytes4)) == IERC1271.isValidSignature.selector;
                                                bytes4 selector = IERC1271.isValidSignature.selector;
                                                /// @solidity memory-safe-assembly
                                                assembly { // solhint-disable-line no-inline-assembly
                                                    let ptr := mload(0x40)
                                        
                                                    mstore(ptr, selector)
                                                    mstore(add(ptr, 0x04), hash)
                                                    mstore(add(ptr, 0x24), 0x40)
                                                    mstore(add(ptr, 0x44), signature.length)
                                                    calldatacopy(add(ptr, 0x64), signature.offset, signature.length)
                                                    if staticcall(gas(), signer, ptr, add(0x64, signature.length), 0, 0x20) {
                                                        success := and(eq(selector, mload(0)), eq(returndatasize(), 0x20))
                                                    }
                                                }
                                            }
                                        
                                            function isValidSignature(address signer, bytes32 hash, uint8 v, bytes32 r, bytes32 s) internal view returns(bool success) {
                                                bytes4 selector = IERC1271.isValidSignature.selector;
                                                /// @solidity memory-safe-assembly
                                                assembly { // solhint-disable-line no-inline-assembly
                                                    let ptr := mload(0x40)
                                        
                                                    mstore(ptr, selector)
                                                    mstore(add(ptr, 0x04), hash)
                                                    mstore(add(ptr, 0x24), 0x40)
                                                    mstore(add(ptr, 0x44), 65)
                                                    mstore(add(ptr, 0x64), r)
                                                    mstore(add(ptr, 0x84), s)
                                                    mstore8(add(ptr, 0xa4), v)
                                                    if staticcall(gas(), signer, ptr, 0xa5, 0, 0x20) {
                                                        success := and(eq(selector, mload(0)), eq(returndatasize(), 0x20))
                                                    }
                                                }
                                            }
                                        
                                            function isValidSignature(address signer, bytes32 hash, bytes32 r, bytes32 vs) internal view returns(bool success) {
                                                // (bool success, bytes memory data) = signer.staticcall(abi.encodeWithSelector(IERC1271.isValidSignature.selector, hash, abi.encodePacked(r, vs)));
                                                // return success && data.length >= 4 && abi.decode(data, (bytes4)) == IERC1271.isValidSignature.selector;
                                                bytes4 selector = IERC1271.isValidSignature.selector;
                                                /// @solidity memory-safe-assembly
                                                assembly { // solhint-disable-line no-inline-assembly
                                                    let ptr := mload(0x40)
                                        
                                                    mstore(ptr, selector)
                                                    mstore(add(ptr, 0x04), hash)
                                                    mstore(add(ptr, 0x24), 0x40)
                                                    mstore(add(ptr, 0x44), 64)
                                                    mstore(add(ptr, 0x64), r)
                                                    mstore(add(ptr, 0x84), vs)
                                                    if staticcall(gas(), signer, ptr, 0xa4, 0, 0x20) {
                                                        success := and(eq(selector, mload(0)), eq(returndatasize(), 0x20))
                                                    }
                                                }
                                            }
                                        
                                            function isValidSignature65(address signer, bytes32 hash, bytes32 r, bytes32 vs) internal view returns(bool success) {
                                                // (bool success, bytes memory data) = signer.staticcall(abi.encodeWithSelector(IERC1271.isValidSignature.selector, hash, abi.encodePacked(r, vs & ~uint256(1 << 255), uint8(vs >> 255))));
                                                // return success && data.length >= 4 && abi.decode(data, (bytes4)) == IERC1271.isValidSignature.selector;
                                                bytes4 selector = IERC1271.isValidSignature.selector;
                                                /// @solidity memory-safe-assembly
                                                assembly { // solhint-disable-line no-inline-assembly
                                                    let ptr := mload(0x40)
                                        
                                                    mstore(ptr, selector)
                                                    mstore(add(ptr, 0x04), hash)
                                                    mstore(add(ptr, 0x24), 0x40)
                                                    mstore(add(ptr, 0x44), 65)
                                                    mstore(add(ptr, 0x64), r)
                                                    mstore(add(ptr, 0x84), and(vs, _COMPACT_S_MASK))
                                                    mstore8(add(ptr, 0xa4), add(27, shr(_COMPACT_V_SHIFT, vs)))
                                                    if staticcall(gas(), signer, ptr, 0xa5, 0, 0x20) {
                                                        success := and(eq(selector, mload(0)), eq(returndatasize(), 0x20))
                                                    }
                                                }
                                            }
                                        
                                            function toEthSignedMessageHash(bytes32 hash) internal pure returns (bytes32 res) {
                                                // 32 is the length in bytes of hash, enforced by the type signature above
                                                // return keccak256(abi.encodePacked("\x19Ethereum Signed Message:\n32", hash));
                                                /// @solidity memory-safe-assembly
                                                assembly { // solhint-disable-line no-inline-assembly
                                                    mstore(0, 0x19457468657265756d205369676e6564204d6573736167653a0a333200000000) // "\x19Ethereum Signed Message:\n32"
                                                    mstore(28, hash)
                                                    res := keccak256(0, 60)
                                                }
                                            }
                                        
                                            function toTypedDataHash(bytes32 domainSeparator, bytes32 structHash) internal pure returns (bytes32 res) {
                                                // return keccak256(abi.encodePacked("\x19\x01", domainSeparator, structHash));
                                                /// @solidity memory-safe-assembly
                                                assembly { // solhint-disable-line no-inline-assembly
                                                    let ptr := mload(0x40)
                                                    mstore(ptr, 0x1901000000000000000000000000000000000000000000000000000000000000) // "\x19\x01"
                                                    mstore(add(ptr, 0x02), domainSeparator)
                                                    mstore(add(ptr, 0x22), structHash)
                                                    res := keccak256(ptr, 66)
                                                }
                                            }
                                        }
                                        
                                        
                                        // File @1inch/limit-order-protocol/contracts/[email protected]
                                        
                                        
                                        pragma solidity 0.8.17;
                                        
                                        library OrderRFQLib {
                                            struct OrderRFQ {
                                                uint256 info;  // lowest 64 bits is the order id, next 64 bits is the expiration timestamp
                                                address makerAsset;
                                                address takerAsset;
                                                address maker;
                                                address allowedSender;  // equals to Zero address on public orders
                                                uint256 makingAmount;
                                                uint256 takingAmount;
                                            }
                                        
                                            bytes32 constant internal _LIMIT_ORDER_RFQ_TYPEHASH = keccak256(
                                                "OrderRFQ("
                                                    "uint256 info,"
                                                    "address makerAsset,"
                                                    "address takerAsset,"
                                                    "address maker,"
                                                    "address allowedSender,"
                                                    "uint256 makingAmount,"
                                                    "uint256 takingAmount"
                                                ")"
                                            );
                                        
                                            function hash(OrderRFQ memory order, bytes32 domainSeparator) internal pure returns(bytes32 result) {
                                                bytes32 typehash = _LIMIT_ORDER_RFQ_TYPEHASH;
                                                bytes32 orderHash;
                                                // this assembly is memory unsafe :(
                                                assembly { // solhint-disable-line no-inline-assembly
                                                    let ptr := sub(order, 0x20)
                                        
                                                    // keccak256(abi.encode(_LIMIT_ORDER_RFQ_TYPEHASH, order));
                                                    let tmp := mload(ptr)
                                                    mstore(ptr, typehash)
                                                    orderHash := keccak256(ptr, 0x100)
                                                    mstore(ptr, tmp)
                                                }
                                                return ECDSA.toTypedDataHash(domainSeparator, orderHash);
                                            }
                                        }
                                        
                                        
                                        // File @openzeppelin/contracts/utils/[email protected]
                                        
                                        // OpenZeppelin Contracts (last updated v4.7.0) (utils/Strings.sol)
                                        
                                        pragma solidity ^0.8.0;
                                        
                                        /**
                                         * @dev String operations.
                                         */
                                        library Strings {
                                            bytes16 private constant _HEX_SYMBOLS = "0123456789abcdef";
                                            uint8 private constant _ADDRESS_LENGTH = 20;
                                        
                                            /**
                                             * @dev Converts a `uint256` to its ASCII `string` decimal representation.
                                             */
                                            function toString(uint256 value) internal pure returns (string memory) {
                                                // Inspired by OraclizeAPI's implementation - MIT licence
                                                // https://github.com/oraclize/ethereum-api/blob/b42146b063c7d6ee1358846c198246239e9360e8/oraclizeAPI_0.4.25.sol
                                        
                                                if (value == 0) {
                                                    return "0";
                                                }
                                                uint256 temp = value;
                                                uint256 digits;
                                                while (temp != 0) {
                                                    digits++;
                                                    temp /= 10;
                                                }
                                                bytes memory buffer = new bytes(digits);
                                                while (value != 0) {
                                                    digits -= 1;
                                                    buffer[digits] = bytes1(uint8(48 + uint256(value % 10)));
                                                    value /= 10;
                                                }
                                                return string(buffer);
                                            }
                                        
                                            /**
                                             * @dev Converts a `uint256` to its ASCII `string` hexadecimal representation.
                                             */
                                            function toHexString(uint256 value) internal pure returns (string memory) {
                                                if (value == 0) {
                                                    return "0x00";
                                                }
                                                uint256 temp = value;
                                                uint256 length = 0;
                                                while (temp != 0) {
                                                    length++;
                                                    temp >>= 8;
                                                }
                                                return toHexString(value, length);
                                            }
                                        
                                            /**
                                             * @dev Converts a `uint256` to its ASCII `string` hexadecimal representation with fixed length.
                                             */
                                            function toHexString(uint256 value, uint256 length) internal pure returns (string memory) {
                                                bytes memory buffer = new bytes(2 * length + 2);
                                                buffer[0] = "0";
                                                buffer[1] = "x";
                                                for (uint256 i = 2 * length + 1; i > 1; --i) {
                                                    buffer[i] = _HEX_SYMBOLS[value & 0xf];
                                                    value >>= 4;
                                                }
                                                require(value == 0, "Strings: hex length insufficient");
                                                return string(buffer);
                                            }
                                        
                                            /**
                                             * @dev Converts an `address` with fixed length of 20 bytes to its not checksummed ASCII `string` hexadecimal representation.
                                             */
                                            function toHexString(address addr) internal pure returns (string memory) {
                                                return toHexString(uint256(uint160(addr)), _ADDRESS_LENGTH);
                                            }
                                        }
                                        
                                        
                                        // File @openzeppelin/contracts/utils/cryptography/[email protected]
                                        
                                        // OpenZeppelin Contracts v4.4.1 (utils/cryptography/draft-EIP712.sol)
                                        
                                        pragma solidity ^0.8.0;
                                        
                                        /**
                                         * @dev https://eips.ethereum.org/EIPS/eip-712[EIP 712] is a standard for hashing and signing of typed structured data.
                                         *
                                         * The encoding specified in the EIP is very generic, and such a generic implementation in Solidity is not feasible,
                                         * thus this contract does not implement the encoding itself. Protocols need to implement the type-specific encoding
                                         * they need in their contracts using a combination of `abi.encode` and `keccak256`.
                                         *
                                         * This contract implements the EIP 712 domain separator ({_domainSeparatorV4}) that is used as part of the encoding
                                         * scheme, and the final step of the encoding to obtain the message digest that is then signed via ECDSA
                                         * ({_hashTypedDataV4}).
                                         *
                                         * The implementation of the domain separator was designed to be as efficient as possible while still properly updating
                                         * the chain id to protect against replay attacks on an eventual fork of the chain.
                                         *
                                         * NOTE: This contract implements the version of the encoding known as "v4", as implemented by the JSON RPC method
                                         * https://docs.metamask.io/guide/signing-data.html[`eth_signTypedDataV4` in MetaMask].
                                         *
                                         * _Available since v3.4._
                                         */
                                        abstract contract EIP712 {
                                            /* solhint-disable var-name-mixedcase */
                                            // Cache the domain separator as an immutable value, but also store the chain id that it corresponds to, in order to
                                            // invalidate the cached domain separator if the chain id changes.
                                            bytes32 private immutable _CACHED_DOMAIN_SEPARATOR;
                                            uint256 private immutable _CACHED_CHAIN_ID;
                                            address private immutable _CACHED_THIS;
                                        
                                            bytes32 private immutable _HASHED_NAME;
                                            bytes32 private immutable _HASHED_VERSION;
                                            bytes32 private immutable _TYPE_HASH;
                                        
                                            /* solhint-enable var-name-mixedcase */
                                        
                                            /**
                                             * @dev Initializes the domain separator and parameter caches.
                                             *
                                             * The meaning of `name` and `version` is specified in
                                             * https://eips.ethereum.org/EIPS/eip-712#definition-of-domainseparator[EIP 712]:
                                             *
                                             * - `name`: the user readable name of the signing domain, i.e. the name of the DApp or the protocol.
                                             * - `version`: the current major version of the signing domain.
                                             *
                                             * NOTE: These parameters cannot be changed except through a xref:learn::upgrading-smart-contracts.adoc[smart
                                             * contract upgrade].
                                             */
                                            constructor(string memory name, string memory version) {
                                                bytes32 hashedName = keccak256(bytes(name));
                                                bytes32 hashedVersion = keccak256(bytes(version));
                                                bytes32 typeHash = keccak256(
                                                    "EIP712Domain(string name,string version,uint256 chainId,address verifyingContract)"
                                                );
                                                _HASHED_NAME = hashedName;
                                                _HASHED_VERSION = hashedVersion;
                                                _CACHED_CHAIN_ID = block.chainid;
                                                _CACHED_DOMAIN_SEPARATOR = _buildDomainSeparator(typeHash, hashedName, hashedVersion);
                                                _CACHED_THIS = address(this);
                                                _TYPE_HASH = typeHash;
                                            }
                                        
                                            /**
                                             * @dev Returns the domain separator for the current chain.
                                             */
                                            function _domainSeparatorV4() internal view returns (bytes32) {
                                                if (address(this) == _CACHED_THIS && block.chainid == _CACHED_CHAIN_ID) {
                                                    return _CACHED_DOMAIN_SEPARATOR;
                                                } else {
                                                    return _buildDomainSeparator(_TYPE_HASH, _HASHED_NAME, _HASHED_VERSION);
                                                }
                                            }
                                        
                                            function _buildDomainSeparator(
                                                bytes32 typeHash,
                                                bytes32 nameHash,
                                                bytes32 versionHash
                                            ) private view returns (bytes32) {
                                                return keccak256(abi.encode(typeHash, nameHash, versionHash, block.chainid, address(this)));
                                            }
                                        
                                            /**
                                             * @dev Given an already https://eips.ethereum.org/EIPS/eip-712#definition-of-hashstruct[hashed struct], this
                                             * function returns the hash of the fully encoded EIP712 message for this domain.
                                             *
                                             * This hash can be used together with {ECDSA-recover} to obtain the signer of a message. For example:
                                             *
                                             * ```solidity
                                             * bytes32 digest = _hashTypedDataV4(keccak256(abi.encode(
                                             *     keccak256("Mail(address to,string contents)"),
                                             *     mailTo,
                                             *     keccak256(bytes(mailContents))
                                             * )));
                                             * address signer = ECDSA.recover(digest, signature);
                                             * ```
                                             */
                                            function _hashTypedDataV4(bytes32 structHash) internal view virtual returns (bytes32) {
                                                return ECDSA.toTypedDataHash(_domainSeparatorV4(), structHash);
                                            }
                                        }
                                        
                                        
                                        // File @1inch/limit-order-protocol/contracts/libraries/[email protected]
                                        
                                        
                                        pragma solidity 0.8.17;
                                        
                                        library Errors {
                                            error InvalidMsgValue();
                                            error ETHTransferFailed();
                                        }
                                        
                                        
                                        // File @1inch/limit-order-protocol/contracts/helpers/[email protected]
                                        
                                        
                                        pragma solidity 0.8.17;
                                        
                                        /// @title A helper contract for calculations related to order amounts
                                        library AmountCalculator {
                                            /// @notice Calculates maker amount
                                            /// @return Result Floored maker amount
                                            function getMakingAmount(uint256 orderMakerAmount, uint256 orderTakerAmount, uint256 swapTakerAmount) internal pure returns(uint256) {
                                                return swapTakerAmount * orderMakerAmount / orderTakerAmount;
                                            }
                                        
                                            /// @notice Calculates taker amount
                                            /// @return Result Ceiled taker amount
                                            function getTakingAmount(uint256 orderMakerAmount, uint256 orderTakerAmount, uint256 swapMakerAmount) internal pure returns(uint256) {
                                                return (swapMakerAmount * orderTakerAmount + orderMakerAmount - 1) / orderMakerAmount;
                                            }
                                        }
                                        
                                        
                                        // File @1inch/limit-order-protocol/contracts/[email protected]
                                        
                                        
                                        pragma solidity 0.8.17;
                                        
                                        
                                        
                                        
                                        
                                        
                                        
                                        /// @title RFQ Limit Order mixin
                                        abstract contract OrderRFQMixin is EIP712, OnlyWethReceiver {
                                            using SafeERC20 for IERC20;
                                            using OrderRFQLib for OrderRFQLib.OrderRFQ;
                                        
                                            error RFQZeroTargetIsForbidden();
                                            error RFQPrivateOrder();
                                            error RFQBadSignature();
                                            error OrderExpired();
                                            error MakingAmountExceeded();
                                            error TakingAmountExceeded();
                                            error RFQSwapWithZeroAmount();
                                            error InvalidatedOrder();
                                        
                                            /**
                                             * @notice Emitted when RFQ gets filled
                                             * @param orderHash Hash of the order
                                             * @param makingAmount Amount of the maker asset that was transferred from maker to taker
                                             */
                                            event OrderFilledRFQ(
                                                bytes32 orderHash,
                                                uint256 makingAmount
                                            );
                                        
                                            uint256 private constant _RAW_CALL_GAS_LIMIT = 5000;
                                            uint256 private constant _MAKER_AMOUNT_FLAG = 1 << 255;
                                            uint256 private constant _SIGNER_SMART_CONTRACT_HINT = 1 << 254;
                                            uint256 private constant _IS_VALID_SIGNATURE_65_BYTES = 1 << 253;
                                            uint256 private constant _UNWRAP_WETH_FLAG = 1 << 252;
                                            uint256 private constant _AMOUNT_MASK = ~(
                                                _MAKER_AMOUNT_FLAG |
                                                _SIGNER_SMART_CONTRACT_HINT |
                                                _IS_VALID_SIGNATURE_65_BYTES |
                                                _UNWRAP_WETH_FLAG
                                            );
                                        
                                            IWETH private immutable _WETH;  // solhint-disable-line var-name-mixedcase
                                            mapping(address => mapping(uint256 => uint256)) private _invalidator;
                                        
                                            constructor(IWETH weth) OnlyWethReceiver(address(weth)) {
                                                _WETH = weth;
                                            }
                                        
                                            /**
                                             * @notice Returns bitmask for double-spend invalidators based on lowest byte of order.info and filled quotes
                                             * @param maker Maker address
                                             * @param slot Slot number to return bitmask for
                                             * @return result Each bit represents whether corresponding was already invalidated
                                             */
                                            function invalidatorForOrderRFQ(address maker, uint256 slot) external view returns(uint256 /* result */) {
                                                return _invalidator[maker][slot];
                                            }
                                        
                                            /**
                                             * @notice Cancels order's quote
                                             * @param orderInfo Order info (only order id in lowest 64 bits is used)
                                             */
                                            function cancelOrderRFQ(uint256 orderInfo) external {
                                                _invalidateOrder(msg.sender, orderInfo, 0);
                                            }
                                        
                                            /// @notice Cancels multiple order's quotes
                                            function cancelOrderRFQ(uint256 orderInfo, uint256 additionalMask) external {
                                                _invalidateOrder(msg.sender, orderInfo, additionalMask);
                                            }
                                        
                                            /**
                                             * @notice Fills order's quote, fully or partially (whichever is possible)
                                             * @param order Order quote to fill
                                             * @param signature Signature to confirm quote ownership
                                             * @param flagsAndAmount Fill configuration flags with amount packed in one slot
                                             * @return filledMakingAmount Actual amount transferred from maker to taker
                                             * @return filledTakingAmount Actual amount transferred from taker to maker
                                             * @return orderHash Hash of the filled order
                                             */
                                            function fillOrderRFQ(
                                                OrderRFQLib.OrderRFQ memory order,
                                                bytes calldata signature,
                                                uint256 flagsAndAmount
                                            ) external payable returns(uint256 /* filledMakingAmount */, uint256 /* filledTakingAmount */, bytes32 /* orderHash */) {
                                                return fillOrderRFQTo(order, signature, flagsAndAmount, msg.sender);
                                            }
                                        
                                            /**
                                             * @notice Fills order's quote, fully or partially, with compact signature
                                             * @param order Order quote to fill
                                             * @param r R component of signature
                                             * @param vs VS component of signature
                                             * @param flagsAndAmount Fill configuration flags with amount packed in one slot
                                             * - Bits 0-252 contain the amount to fill
                                             * - Bit 253 is used to indicate whether signature is 64-bit (0) or 65-bit (1)
                                             * - Bit 254 is used to indicate whether smart contract (1) signed the order or not (0)
                                             * - Bit 255 is used to indicate whether maker (1) or taker amount (0) is given in the amount parameter
                                             * @return filledMakingAmount Actual amount transferred from maker to taker
                                             * @return filledTakingAmount Actual amount transferred from taker to maker
                                             * @return orderHash Hash of the filled order
                                             */
                                            function fillOrderRFQCompact(
                                                OrderRFQLib.OrderRFQ memory order,
                                                bytes32 r,
                                                bytes32 vs,
                                                uint256 flagsAndAmount
                                            ) external payable returns(uint256 filledMakingAmount, uint256 filledTakingAmount, bytes32 orderHash) {
                                                orderHash = order.hash(_domainSeparatorV4());
                                                if (flagsAndAmount & _SIGNER_SMART_CONTRACT_HINT != 0) {
                                                    if (flagsAndAmount & _IS_VALID_SIGNATURE_65_BYTES != 0) {
                                                        if (!ECDSA.isValidSignature65(order.maker, orderHash, r, vs)) revert RFQBadSignature();
                                                    } else {
                                                        if (!ECDSA.isValidSignature(order.maker, orderHash, r, vs)) revert RFQBadSignature();
                                                    }
                                                } else {
                                                    if(!ECDSA.recoverOrIsValidSignature(order.maker, orderHash, r, vs)) revert RFQBadSignature();
                                                }
                                        
                                                (filledMakingAmount, filledTakingAmount) = _fillOrderRFQTo(order, flagsAndAmount, msg.sender);
                                                emit OrderFilledRFQ(orderHash, filledMakingAmount);
                                            }
                                        
                                            /**
                                             * @notice Same as `fillOrderRFQTo` but calls permit first.
                                             * It allows to approve token spending and make a swap in one transaction.
                                             * Also allows to specify funds destination instead of `msg.sender`
                                             * @param order Order quote to fill
                                             * @param signature Signature to confirm quote ownership
                                             * @param flagsAndAmount Fill configuration flags with amount packed in one slot
                                             * @param target Address that will receive swap funds
                                             * @param permit Should consist of abiencoded token address and encoded `IERC20Permit.permit` call.
                                             * @return filledMakingAmount Actual amount transferred from maker to taker
                                             * @return filledTakingAmount Actual amount transferred from taker to maker
                                             * @return orderHash Hash of the filled order
                                             * @dev See tests for examples
                                             */
                                            function fillOrderRFQToWithPermit(
                                                OrderRFQLib.OrderRFQ memory order,
                                                bytes calldata signature,
                                                uint256 flagsAndAmount,
                                                address target,
                                                bytes calldata permit
                                            ) external returns(uint256 /* filledMakingAmount */, uint256 /* filledTakingAmount */, bytes32 /* orderHash */) {
                                                IERC20(order.takerAsset).safePermit(permit);
                                                return fillOrderRFQTo(order, signature, flagsAndAmount, target);
                                            }
                                        
                                            /**
                                             * @notice Same as `fillOrderRFQ` but allows to specify funds destination instead of `msg.sender`
                                             * @param order Order quote to fill
                                             * @param signature Signature to confirm quote ownership
                                             * @param flagsAndAmount Fill configuration flags with amount packed in one slot
                                             * @param target Address that will receive swap funds
                                             * @return filledMakingAmount Actual amount transferred from maker to taker
                                             * @return filledTakingAmount Actual amount transferred from taker to maker
                                             * @return orderHash Hash of the filled order
                                             */
                                            function fillOrderRFQTo(
                                                OrderRFQLib.OrderRFQ memory order,
                                                bytes calldata signature,
                                                uint256 flagsAndAmount,
                                                address target
                                            ) public payable returns(uint256 filledMakingAmount, uint256 filledTakingAmount, bytes32 orderHash) {
                                                orderHash = order.hash(_domainSeparatorV4());
                                                if (flagsAndAmount & _SIGNER_SMART_CONTRACT_HINT != 0) {
                                                    if (flagsAndAmount & _IS_VALID_SIGNATURE_65_BYTES != 0 && signature.length != 65) revert RFQBadSignature();
                                                    if (!ECDSA.isValidSignature(order.maker, orderHash, signature)) revert RFQBadSignature();
                                                } else {
                                                    if(!ECDSA.recoverOrIsValidSignature(order.maker, orderHash, signature)) revert RFQBadSignature();
                                                }
                                                (filledMakingAmount, filledTakingAmount) = _fillOrderRFQTo(order, flagsAndAmount, target);
                                                emit OrderFilledRFQ(orderHash, filledMakingAmount);
                                            }
                                        
                                            function _fillOrderRFQTo(
                                                OrderRFQLib.OrderRFQ memory order,
                                                uint256 flagsAndAmount,
                                                address target
                                            ) private returns(uint256 makingAmount, uint256 takingAmount) {
                                                if (target == address(0)) revert RFQZeroTargetIsForbidden();
                                        
                                                address maker = order.maker;
                                        
                                                // Validate order
                                                if (order.allowedSender != address(0) && order.allowedSender != msg.sender) revert RFQPrivateOrder();
                                        
                                                {  // Stack too deep
                                                    uint256 info = order.info;
                                                    // Check time expiration
                                                    uint256 expiration = uint128(info) >> 64;
                                                    if (expiration != 0 && block.timestamp > expiration) revert OrderExpired(); // solhint-disable-line not-rely-on-time
                                                    _invalidateOrder(maker, info, 0);
                                                }
                                        
                                                {  // Stack too deep
                                                    uint256 orderMakingAmount = order.makingAmount;
                                                    uint256 orderTakingAmount = order.takingAmount;
                                                    uint256 amount = flagsAndAmount & _AMOUNT_MASK;
                                                    // Compute partial fill if needed
                                                    if (amount == 0) {
                                                        // zero amount means whole order
                                                        makingAmount = orderMakingAmount;
                                                        takingAmount = orderTakingAmount;
                                                    }
                                                    else if (flagsAndAmount & _MAKER_AMOUNT_FLAG != 0) {
                                                        if (amount > orderMakingAmount) revert MakingAmountExceeded();
                                                        makingAmount = amount;
                                                        takingAmount = AmountCalculator.getTakingAmount(orderMakingAmount, orderTakingAmount, makingAmount);
                                                    }
                                                    else {
                                                        if (amount > orderTakingAmount) revert TakingAmountExceeded();
                                                        takingAmount = amount;
                                                        makingAmount = AmountCalculator.getMakingAmount(orderMakingAmount, orderTakingAmount, takingAmount);
                                                    }
                                                }
                                        
                                                if (makingAmount == 0 || takingAmount == 0) revert RFQSwapWithZeroAmount();
                                        
                                                // Maker => Taker
                                                if (order.makerAsset == address(_WETH) && flagsAndAmount & _UNWRAP_WETH_FLAG != 0) {
                                                    _WETH.transferFrom(maker, address(this), makingAmount);
                                                    _WETH.withdraw(makingAmount);
                                                    // solhint-disable-next-line avoid-low-level-calls
                                                    (bool success, ) = target.call{value: makingAmount, gas: _RAW_CALL_GAS_LIMIT}("");
                                                    if (!success) revert Errors.ETHTransferFailed();
                                                } else {
                                                    IERC20(order.makerAsset).safeTransferFrom(maker, target, makingAmount);
                                                }
                                        
                                                // Taker => Maker
                                                if (order.takerAsset == address(_WETH) && msg.value > 0) {
                                                    if (msg.value != takingAmount) revert Errors.InvalidMsgValue();
                                                    _WETH.deposit{ value: takingAmount }();
                                                    _WETH.transfer(maker, takingAmount);
                                                } else {
                                                    if (msg.value != 0) revert Errors.InvalidMsgValue();
                                                    IERC20(order.takerAsset).safeTransferFrom(msg.sender, maker, takingAmount);
                                                }
                                            }
                                        
                                            function _invalidateOrder(address maker, uint256 orderInfo, uint256 additionalMask) private {
                                                uint256 invalidatorSlot = uint64(orderInfo) >> 8;
                                                uint256 invalidatorBits = (1 << uint8(orderInfo)) | additionalMask;
                                                mapping(uint256 => uint256) storage invalidatorStorage = _invalidator[maker];
                                                uint256 invalidator = invalidatorStorage[invalidatorSlot];
                                                if (invalidator & invalidatorBits == invalidatorBits) revert InvalidatedOrder();
                                                invalidatorStorage[invalidatorSlot] = invalidator | invalidatorBits;
                                            }
                                        }
                                        
                                        
                                        // File @1inch/limit-order-protocol/contracts/[email protected]
                                        
                                        
                                        pragma solidity 0.8.17;
                                        
                                        library OrderLib {
                                            struct Order {
                                                uint256 salt;
                                                address makerAsset;
                                                address takerAsset;
                                                address maker;
                                                address receiver;
                                                address allowedSender;  // equals to Zero address on public orders
                                                uint256 makingAmount;
                                                uint256 takingAmount;
                                                uint256 offsets;
                                                // bytes makerAssetData;
                                                // bytes takerAssetData;
                                                // bytes getMakingAmount; // this.staticcall(abi.encodePacked(bytes, swapTakerAmount)) => (swapMakerAmount)
                                                // bytes getTakingAmount; // this.staticcall(abi.encodePacked(bytes, swapMakerAmount)) => (swapTakerAmount)
                                                // bytes predicate;       // this.staticcall(bytes) => (bool)
                                                // bytes permit;          // On first fill: permit.1.call(abi.encodePacked(permit.selector, permit.2))
                                                // bytes preInteraction;
                                                // bytes postInteraction;
                                                bytes interactions; // concat(makerAssetData, takerAssetData, getMakingAmount, getTakingAmount, predicate, permit, preIntercation, postInteraction)
                                            }
                                        
                                            bytes32 constant internal _LIMIT_ORDER_TYPEHASH = keccak256(
                                                "Order("
                                                    "uint256 salt,"
                                                    "address makerAsset,"
                                                    "address takerAsset,"
                                                    "address maker,"
                                                    "address receiver,"
                                                    "address allowedSender,"
                                                    "uint256 makingAmount,"
                                                    "uint256 takingAmount,"
                                                    "uint256 offsets,"
                                                    "bytes interactions"
                                                ")"
                                            );
                                        
                                            enum DynamicField {
                                                MakerAssetData,
                                                TakerAssetData,
                                                GetMakingAmount,
                                                GetTakingAmount,
                                                Predicate,
                                                Permit,
                                                PreInteraction,
                                                PostInteraction
                                            }
                                        
                                            function getterIsFrozen(bytes calldata getter) internal pure returns(bool) {
                                                return getter.length == 1 && getter[0] == "x";
                                            }
                                        
                                            function _get(Order calldata order, DynamicField field) private pure returns(bytes calldata) {
                                                uint256 bitShift = uint256(field) << 5; // field * 32
                                                return order.interactions[
                                                    uint32((order.offsets << 32) >> bitShift):
                                                    uint32(order.offsets >> bitShift)
                                                ];
                                            }
                                        
                                            function makerAssetData(Order calldata order) internal pure returns(bytes calldata) {
                                                return _get(order, DynamicField.MakerAssetData);
                                            }
                                        
                                            function takerAssetData(Order calldata order) internal pure returns(bytes calldata) {
                                                return _get(order, DynamicField.TakerAssetData);
                                            }
                                        
                                            function getMakingAmount(Order calldata order) internal pure returns(bytes calldata) {
                                                return _get(order, DynamicField.GetMakingAmount);
                                            }
                                        
                                            function getTakingAmount(Order calldata order) internal pure returns(bytes calldata) {
                                                return _get(order, DynamicField.GetTakingAmount);
                                            }
                                        
                                            function predicate(Order calldata order) internal pure returns(bytes calldata) {
                                                return _get(order, DynamicField.Predicate);
                                            }
                                        
                                            function permit(Order calldata order) internal pure returns(bytes calldata) {
                                                return _get(order, DynamicField.Permit);
                                            }
                                        
                                            function preInteraction(Order calldata order) internal pure returns(bytes calldata) {
                                                return _get(order, DynamicField.PreInteraction);
                                            }
                                        
                                            function postInteraction(Order calldata order) internal pure returns(bytes calldata) {
                                                return _get(order, DynamicField.PostInteraction);
                                            }
                                        
                                            function hash(Order calldata order, bytes32 domainSeparator) internal pure returns(bytes32 result) {
                                                bytes calldata interactions = order.interactions;
                                                bytes32 typehash = _LIMIT_ORDER_TYPEHASH;
                                                /// @solidity memory-safe-assembly
                                                assembly { // solhint-disable-line no-inline-assembly
                                                    let ptr := mload(0x40)
                                        
                                                    // keccak256(abi.encode(_LIMIT_ORDER_TYPEHASH, orderWithoutInteractions, keccak256(order.interactions)));
                                                    calldatacopy(ptr, interactions.offset, interactions.length)
                                                    mstore(add(ptr, 0x140), keccak256(ptr, interactions.length))
                                                    calldatacopy(add(ptr, 0x20), order, 0x120)
                                                    mstore(ptr, typehash)
                                                    result := keccak256(ptr, 0x160)
                                                }
                                                result = ECDSA.toTypedDataHash(domainSeparator, result);
                                            }
                                        }
                                        
                                        
                                        // File @1inch/limit-order-protocol/contracts/libraries/[email protected]
                                        
                                        
                                        pragma solidity 0.8.17;
                                        
                                        /// @title Library with gas efficient alternatives to `abi.decode`
                                        library ArgumentsDecoder {
                                            error IncorrectDataLength();
                                        
                                            function decodeUint256(bytes calldata data, uint256 offset) internal pure returns(uint256 value) {
                                                unchecked { if (data.length < offset + 32) revert IncorrectDataLength(); }
                                                // no memory ops inside so this insertion is automatically memory safe
                                                assembly { // solhint-disable-line no-inline-assembly
                                                    value := calldataload(add(data.offset, offset))
                                                }
                                            }
                                        
                                            function decodeSelector(bytes calldata data) internal pure returns(bytes4 value) {
                                                if (data.length < 4) revert IncorrectDataLength();
                                                // no memory ops inside so this insertion is automatically memory safe
                                                assembly { // solhint-disable-line no-inline-assembly
                                                    value := calldataload(data.offset)
                                                }
                                            }
                                        
                                            function decodeTailCalldata(bytes calldata data, uint256 tailOffset) internal pure returns(bytes calldata args) {
                                                if (data.length < tailOffset) revert IncorrectDataLength();
                                                // no memory ops inside so this insertion is automatically memory safe
                                                assembly {  // solhint-disable-line no-inline-assembly
                                                    args.offset := add(data.offset, tailOffset)
                                                    args.length := sub(data.length, tailOffset)
                                                }
                                            }
                                        
                                            function decodeTargetAndCalldata(bytes calldata data) internal pure returns(address target, bytes calldata args) {
                                                if (data.length < 20) revert IncorrectDataLength();
                                                // no memory ops inside so this insertion is automatically memory safe
                                                assembly {  // solhint-disable-line no-inline-assembly
                                                    target := shr(96, calldataload(data.offset))
                                                    args.offset := add(data.offset, 20)
                                                    args.length := sub(data.length, 20)
                                                }
                                            }
                                        }
                                        
                                        
                                        // File @1inch/limit-order-protocol/contracts/helpers/[email protected]
                                        
                                        
                                        pragma solidity 0.8.17;
                                        
                                        /// @title A helper contract for managing nonce of tx sender
                                        contract NonceManager {
                                            error AdvanceNonceFailed();
                                            event NonceIncreased(address indexed maker, uint256 newNonce);
                                        
                                            mapping(address => uint256) public nonce;
                                        
                                            /// @notice Advances nonce by one
                                            function increaseNonce() external {
                                                advanceNonce(1);
                                            }
                                        
                                            /// @notice Advances nonce by specified amount
                                            function advanceNonce(uint8 amount) public {
                                                if (amount == 0) revert AdvanceNonceFailed();
                                                uint256 newNonce = nonce[msg.sender] + amount;
                                                nonce[msg.sender] = newNonce;
                                                emit NonceIncreased(msg.sender, newNonce);
                                            }
                                        
                                            /// @notice Checks if `makerAddress` has specified `makerNonce`
                                            /// @return Result True if `makerAddress` has specified nonce. Otherwise, false
                                            function nonceEquals(address makerAddress, uint256 makerNonce) public view returns(bool) {
                                                return nonce[makerAddress] == makerNonce;
                                            }
                                        }
                                        
                                        
                                        // File @1inch/limit-order-protocol/contracts/helpers/[email protected]
                                        
                                        
                                        pragma solidity 0.8.17;
                                        
                                        
                                        /// @title A helper contract for executing boolean functions on arbitrary target call results
                                        contract PredicateHelper is NonceManager {
                                            using ArgumentsDecoder for bytes;
                                        
                                            error ArbitraryStaticCallFailed();
                                        
                                            /// @notice Calls every target with corresponding data
                                            /// @return Result True if call to any target returned True. Otherwise, false
                                            function or(uint256 offsets, bytes calldata data) public view returns(bool) {
                                                uint256 current;
                                                uint256 previous;
                                                for (uint256 i = 0; (current = uint32(offsets >> i)) != 0; i += 32) {
                                                    (bool success, uint256 res) = _selfStaticCall(data[previous:current]);
                                                    if (success && res == 1) {
                                                        return true;
                                                    }
                                                    previous = current;
                                                }
                                                return false;
                                            }
                                        
                                            /// @notice Calls every target with corresponding data
                                            /// @return Result True if calls to all targets returned True. Otherwise, false
                                            function and(uint256 offsets, bytes calldata data) public view returns(bool) {
                                                uint256 current;
                                                uint256 previous;
                                                for (uint256 i = 0; (current = uint32(offsets >> i)) != 0; i += 32) {
                                                    (bool success, uint256 res) = _selfStaticCall(data[previous:current]);
                                                    if (!success || res != 1) {
                                                        return false;
                                                    }
                                                    previous = current;
                                                }
                                                return true;
                                            }
                                        
                                            /// @notice Calls target with specified data and tests if it's equal to the value
                                            /// @param value Value to test
                                            /// @return Result True if call to target returns the same value as `value`. Otherwise, false
                                            function eq(uint256 value, bytes calldata data) public view returns(bool) {
                                                (bool success, uint256 res) = _selfStaticCall(data);
                                                return success && res == value;
                                            }
                                        
                                            /// @notice Calls target with specified data and tests if it's lower than value
                                            /// @param value Value to test
                                            /// @return Result True if call to target returns value which is lower than `value`. Otherwise, false
                                            function lt(uint256 value, bytes calldata data) public view returns(bool) {
                                                (bool success, uint256 res) = _selfStaticCall(data);
                                                return success && res < value;
                                            }
                                        
                                            /// @notice Calls target with specified data and tests if it's bigger than value
                                            /// @param value Value to test
                                            /// @return Result True if call to target returns value which is bigger than `value`. Otherwise, false
                                            function gt(uint256 value, bytes calldata data) public view returns(bool) {
                                                (bool success, uint256 res) = _selfStaticCall(data);
                                                return success && res > value;
                                            }
                                        
                                            /// @notice Checks passed time against block timestamp
                                            /// @return Result True if current block timestamp is lower than `time`. Otherwise, false
                                            function timestampBelow(uint256 time) public view returns(bool) {
                                                return block.timestamp < time;  // solhint-disable-line not-rely-on-time
                                            }
                                        
                                            /// @notice Performs an arbitrary call to target with data
                                            /// @return Result Bytes transmuted to uint256
                                            function arbitraryStaticCall(address target, bytes calldata data) public view returns(uint256) {
                                                (bool success, uint256 res) = _staticcallForUint(target, data);
                                                if (!success) revert ArbitraryStaticCallFailed();
                                                return res;
                                            }
                                        
                                            function timestampBelowAndNonceEquals(uint256 timeNonceAccount) public view returns(bool) {
                                                uint256 _time = uint48(timeNonceAccount >> 208);
                                                uint256 _nonce = uint48(timeNonceAccount >> 160);
                                                address _account = address(uint160(timeNonceAccount));
                                                return timestampBelow(_time) && nonceEquals(_account, _nonce);
                                            }
                                        
                                            function _selfStaticCall(bytes calldata data) internal view returns(bool, uint256) {
                                                uint256 selector = uint32(data.decodeSelector());
                                                uint256 arg = data.decodeUint256(4);
                                        
                                                // special case for the most often used predicate
                                                if (selector == uint32(this.timestampBelowAndNonceEquals.selector)) {  // 0x2cc2878d
                                                    return (true, timestampBelowAndNonceEquals(arg) ? 1 : 0);
                                                }
                                        
                                                if (selector < uint32(this.arbitraryStaticCall.selector)) {  // 0xbf15fcd8
                                                    if (selector < uint32(this.eq.selector)) {  // 0x6fe7b0ba
                                                        if (selector == uint32(this.gt.selector)) {  // 0x4f38e2b8
                                                            return (true, gt(arg, data.decodeTailCalldata(100)) ? 1 : 0);
                                                        } else if (selector == uint32(this.timestampBelow.selector)) {  // 0x63592c2b
                                                            return (true, timestampBelow(arg) ? 1 : 0);
                                                        }
                                                    } else {
                                                        if (selector == uint32(this.eq.selector)) {  // 0x6fe7b0ba
                                                            return (true, eq(arg, data.decodeTailCalldata(100)) ? 1 : 0);
                                                        } else if (selector == uint32(this.or.selector)) {  // 0x74261145
                                                            return (true, or(arg, data.decodeTailCalldata(100)) ? 1 : 0);
                                                        }
                                                    }
                                                } else {
                                                    if (selector < uint32(this.lt.selector)) {  // 0xca4ece22
                                                        if (selector == uint32(this.arbitraryStaticCall.selector)) {  // 0xbf15fcd8
                                                            return (true, arbitraryStaticCall(address(uint160(arg)), data.decodeTailCalldata(100)));
                                                        } else if (selector == uint32(this.and.selector)) {  // 0xbfa75143
                                                            return (true, and(arg, data.decodeTailCalldata(100)) ? 1 : 0);
                                                        }
                                                    } else {
                                                        if (selector == uint32(this.lt.selector)) {  // 0xca4ece22
                                                            return (true, lt(arg, data.decodeTailCalldata(100)) ? 1 : 0);
                                                        } else if (selector == uint32(this.nonceEquals.selector)) {  // 0xcf6fc6e3
                                                            return (true, nonceEquals(address(uint160(arg)), data.decodeUint256(0x24)) ? 1 : 0);
                                                        }
                                                    }
                                                }
                                        
                                                return _staticcallForUint(address(this), data);
                                            }
                                        
                                            function _staticcallForUint(address target, bytes calldata input) private view returns(bool success, uint256 res) {
                                                /// @solidity memory-safe-assembly
                                                assembly { // solhint-disable-line no-inline-assembly
                                                    let data := mload(0x40)
                                        
                                                    calldatacopy(data, input.offset, input.length)
                                                    success := staticcall(gas(), target, data, input.length, 0x0, 0x20)
                                                    success := and(success, eq(returndatasize(), 32))
                                                    if success {
                                                        res := mload(0)
                                                    }
                                                }
                                            }
                                        }
                                        
                                        
                                        // File @1inch/limit-order-protocol/contracts/interfaces/[email protected]
                                        
                                        
                                        pragma solidity 0.8.17;
                                        
                                        interface IOrderMixin {
                                            /**
                                             * @notice Returns unfilled amount for order. Throws if order does not exist
                                             * @param orderHash Order's hash. Can be obtained by the `hashOrder` function
                                             * @return amount Unfilled amount
                                             */
                                            function remaining(bytes32 orderHash) external view returns(uint256 amount);
                                        
                                            /**
                                             * @notice Returns unfilled amount for order
                                             * @param orderHash Order's hash. Can be obtained by the `hashOrder` function
                                             * @return rawAmount Unfilled amount of order plus one if order exists. Otherwise 0
                                             */
                                            function remainingRaw(bytes32 orderHash) external view returns(uint256 rawAmount);
                                        
                                            /**
                                             * @notice Same as `remainingRaw` but for multiple orders
                                             * @param orderHashes Array of hashes
                                             * @return rawAmounts Array of amounts for each order plus one if order exists or 0 otherwise
                                             */
                                            function remainingsRaw(bytes32[] memory orderHashes) external view returns(uint256[] memory rawAmounts);
                                        
                                            /**
                                             * @notice Checks order predicate
                                             * @param order Order to check predicate for
                                             * @return result Predicate evaluation result. True if predicate allows to fill the order, false otherwise
                                             */
                                            function checkPredicate(OrderLib.Order calldata order) external view returns(bool result);
                                        
                                            /**
                                             * @notice Returns order hash according to EIP712 standard
                                             * @param order Order to get hash for
                                             * @return orderHash Hash of the order
                                             */
                                            function hashOrder(OrderLib.Order calldata order) external view returns(bytes32);
                                        
                                            /**
                                             * @notice Delegates execution to custom implementation. Could be used to validate if `transferFrom` works properly
                                             * @dev The function always reverts and returns the simulation results in revert data.
                                             * @param target Addresses that will be delegated
                                             * @param data Data that will be passed to delegatee
                                             */
                                            function simulate(address target, bytes calldata data) external;
                                        
                                            /**
                                             * @notice Cancels order.
                                             * @dev Order is cancelled by setting remaining amount to _ORDER_FILLED value
                                             * @param order Order quote to cancel
                                             * @return orderRemaining Unfilled amount of order before cancellation
                                             * @return orderHash Hash of the filled order
                                             */
                                            function cancelOrder(OrderLib.Order calldata order) external returns(uint256 orderRemaining, bytes32 orderHash);
                                        
                                            /**
                                             * @notice Fills an order. If one doesn't exist (first fill) it will be created using order.makerAssetData
                                             * @param order Order quote to fill
                                             * @param signature Signature to confirm quote ownership
                                             * @param interaction A call data for InteractiveNotificationReceiver. Taker may execute interaction after getting maker assets and before sending taker assets.
                                             * @param makingAmount Making amount
                                             * @param takingAmount Taking amount
                                             * @param skipPermitAndThresholdAmount Specifies maximum allowed takingAmount when takingAmount is zero, otherwise specifies minimum allowed makingAmount. Top-most bit specifies whether taker wants to skip maker's permit.
                                             * @return actualMakingAmount Actual amount transferred from maker to taker
                                             * @return actualTakingAmount Actual amount transferred from taker to maker
                                             * @return orderHash Hash of the filled order
                                             */
                                            function fillOrder(
                                                OrderLib.Order calldata order,
                                                bytes calldata signature,
                                                bytes calldata interaction,
                                                uint256 makingAmount,
                                                uint256 takingAmount,
                                                uint256 skipPermitAndThresholdAmount
                                            ) external payable returns(uint256 actualMakingAmount, uint256 actualTakingAmount, bytes32 orderHash);
                                        
                                            /**
                                             * @notice Same as `fillOrderTo` but calls permit first,
                                             * allowing to approve token spending and make a swap in one transaction.
                                             * Also allows to specify funds destination instead of `msg.sender`
                                             * @dev See tests for examples
                                             * @param order Order quote to fill
                                             * @param signature Signature to confirm quote ownership
                                             * @param interaction A call data for InteractiveNotificationReceiver. Taker may execute interaction after getting maker assets and before sending taker assets.
                                             * @param makingAmount Making amount
                                             * @param takingAmount Taking amount
                                             * @param skipPermitAndThresholdAmount Specifies maximum allowed takingAmount when takingAmount is zero, otherwise specifies minimum allowed makingAmount. Top-most bit specifies whether taker wants to skip maker's permit.
                                             * @param target Address that will receive swap funds
                                             * @param permit Should consist of abiencoded token address and encoded `IERC20Permit.permit` call.
                                             * @return actualMakingAmount Actual amount transferred from maker to taker
                                             * @return actualTakingAmount Actual amount transferred from taker to maker
                                             * @return orderHash Hash of the filled order
                                             */
                                            function fillOrderToWithPermit(
                                                OrderLib.Order calldata order,
                                                bytes calldata signature,
                                                bytes calldata interaction,
                                                uint256 makingAmount,
                                                uint256 takingAmount,
                                                uint256 skipPermitAndThresholdAmount,
                                                address target,
                                                bytes calldata permit
                                            ) external returns(uint256 actualMakingAmount, uint256 actualTakingAmount, bytes32 orderHash);
                                        
                                            /**
                                             * @notice Same as `fillOrder` but allows to specify funds destination instead of `msg.sender`
                                             * @param order_ Order quote to fill
                                             * @param signature Signature to confirm quote ownership
                                             * @param interaction A call data for InteractiveNotificationReceiver. Taker may execute interaction after getting maker assets and before sending taker assets.
                                             * @param makingAmount Making amount
                                             * @param takingAmount Taking amount
                                             * @param skipPermitAndThresholdAmount Specifies maximum allowed takingAmount when takingAmount is zero, otherwise specifies minimum allowed makingAmount. Top-most bit specifies whether taker wants to skip maker's permit.
                                             * @param target Address that will receive swap funds
                                             * @return actualMakingAmount Actual amount transferred from maker to taker
                                             * @return actualTakingAmount Actual amount transferred from taker to maker
                                             * @return orderHash Hash of the filled order
                                             */
                                            function fillOrderTo(
                                                OrderLib.Order calldata order_,
                                                bytes calldata signature,
                                                bytes calldata interaction,
                                                uint256 makingAmount,
                                                uint256 takingAmount,
                                                uint256 skipPermitAndThresholdAmount,
                                                address target
                                            ) external payable returns(uint256 actualMakingAmount, uint256 actualTakingAmount, bytes32 orderHash);
                                        }
                                        
                                        
                                        // File @1inch/limit-order-protocol/contracts/interfaces/[email protected]
                                        
                                        
                                        pragma solidity 0.8.17;
                                        
                                        /// @title Interface for interactor which acts between `maker => taker` and `taker => maker` transfers.
                                        interface PreInteractionNotificationReceiver {
                                            function fillOrderPreInteraction(
                                                bytes32 orderHash,
                                                address maker,
                                                address taker,
                                                uint256 makingAmount,
                                                uint256 takingAmount,
                                                uint256 remainingAmount,
                                                bytes memory interactiveData
                                            ) external;
                                        }
                                        
                                        interface PostInteractionNotificationReceiver {
                                            /// @notice Callback method that gets called after taker transferred funds to maker but before
                                            /// the opposite transfer happened
                                            function fillOrderPostInteraction(
                                                bytes32 orderHash,
                                                address maker,
                                                address taker,
                                                uint256 makingAmount,
                                                uint256 takingAmount,
                                                uint256 remainingAmount,
                                                bytes memory interactiveData
                                            ) external;
                                        }
                                        
                                        interface InteractionNotificationReceiver {
                                            function fillOrderInteraction(
                                                address taker,
                                                uint256 makingAmount,
                                                uint256 takingAmount,
                                                bytes memory interactiveData
                                            ) external returns(uint256 offeredTakingAmount);
                                        }
                                        
                                        
                                        // File @1inch/limit-order-protocol/contracts/[email protected]
                                        
                                        
                                        pragma solidity 0.8.17;
                                        
                                        
                                        
                                        
                                        
                                        
                                        
                                        
                                        
                                        
                                        
                                        /// @title Regular Limit Order mixin
                                        abstract contract OrderMixin is IOrderMixin, EIP712, PredicateHelper {
                                            using SafeERC20 for IERC20;
                                            using ArgumentsDecoder for bytes;
                                            using OrderLib for OrderLib.Order;
                                        
                                            error UnknownOrder();
                                            error AccessDenied();
                                            error AlreadyFilled();
                                            error PermitLengthTooLow();
                                            error ZeroTargetIsForbidden();
                                            error RemainingAmountIsZero();
                                            error PrivateOrder();
                                            error BadSignature();
                                            error ReentrancyDetected();
                                            error PredicateIsNotTrue();
                                            error OnlyOneAmountShouldBeZero();
                                            error TakingAmountTooHigh();
                                            error MakingAmountTooLow();
                                            error SwapWithZeroAmount();
                                            error TransferFromMakerToTakerFailed();
                                            error TransferFromTakerToMakerFailed();
                                            error WrongAmount();
                                            error WrongGetter();
                                            error GetAmountCallFailed();
                                            error TakingAmountIncreased();
                                            error SimulationResults(bool success, bytes res);
                                        
                                            /// @notice Emitted every time order gets filled, including partial fills
                                            event OrderFilled(
                                                address indexed maker,
                                                bytes32 orderHash,
                                                uint256 remaining
                                            );
                                        
                                            /// @notice Emitted when order gets cancelled
                                            event OrderCanceled(
                                                address indexed maker,
                                                bytes32 orderHash,
                                                uint256 remainingRaw
                                            );
                                        
                                            uint256 constant private _ORDER_DOES_NOT_EXIST = 0;
                                            uint256 constant private _ORDER_FILLED = 1;
                                            uint256 constant private _SKIP_PERMIT_FLAG = 1 << 255;
                                            uint256 constant private _THRESHOLD_MASK = ~_SKIP_PERMIT_FLAG;
                                        
                                            IWETH private immutable _WETH;  // solhint-disable-line var-name-mixedcase
                                            /// @notice Stores unfilled amounts for each order plus one.
                                            /// Therefore 0 means order doesn't exist and 1 means order was filled
                                            mapping(bytes32 => uint256) private _remaining;
                                        
                                            constructor(IWETH weth) {
                                                _WETH = weth;
                                            }
                                        
                                            /**
                                             * @notice See {IOrderMixin-remaining}.
                                             */
                                            function remaining(bytes32 orderHash) external view returns(uint256 /* amount */) {
                                                uint256 amount = _remaining[orderHash];
                                                if (amount == _ORDER_DOES_NOT_EXIST) revert UnknownOrder();
                                                unchecked { return amount - 1; }
                                            }
                                        
                                            /**
                                             * @notice See {IOrderMixin-remainingRaw}.
                                             */
                                            function remainingRaw(bytes32 orderHash) external view returns(uint256 /* rawAmount */) {
                                                return _remaining[orderHash];
                                            }
                                        
                                            /**
                                             * @notice See {IOrderMixin-remainingsRaw}.
                                             */
                                            function remainingsRaw(bytes32[] memory orderHashes) external view returns(uint256[] memory /* rawAmounts */) {
                                                uint256[] memory results = new uint256[](orderHashes.length);
                                                for (uint256 i = 0; i < orderHashes.length; i++) {
                                                    results[i] = _remaining[orderHashes[i]];
                                                }
                                                return results;
                                            }
                                        
                                            /**
                                             * @notice See {IOrderMixin-simulate}.
                                             */
                                            function simulate(address target, bytes calldata data) external {
                                                // solhint-disable-next-line avoid-low-level-calls
                                                (bool success, bytes memory result) = target.delegatecall(data);
                                                revert SimulationResults(success, result);
                                            }
                                        
                                            /**
                                             * @notice See {IOrderMixin-cancelOrder}.
                                             */
                                            function cancelOrder(OrderLib.Order calldata order) external returns(uint256 orderRemaining, bytes32 orderHash) {
                                                if (order.maker != msg.sender) revert AccessDenied();
                                        
                                                orderHash = hashOrder(order);
                                                orderRemaining = _remaining[orderHash];
                                                if (orderRemaining == _ORDER_FILLED) revert AlreadyFilled();
                                                emit OrderCanceled(msg.sender, orderHash, orderRemaining);
                                                _remaining[orderHash] = _ORDER_FILLED;
                                            }
                                        
                                            /**
                                             * @notice See {IOrderMixin-fillOrder}.
                                             */
                                            function fillOrder(
                                                OrderLib.Order calldata order,
                                                bytes calldata signature,
                                                bytes calldata interaction,
                                                uint256 makingAmount,
                                                uint256 takingAmount,
                                                uint256 skipPermitAndThresholdAmount
                                            ) external payable returns(uint256 /* actualMakingAmount */, uint256 /* actualTakingAmount */, bytes32 /* orderHash */) {
                                                return fillOrderTo(order, signature, interaction, makingAmount, takingAmount, skipPermitAndThresholdAmount, msg.sender);
                                            }
                                        
                                            /**
                                             * @notice See {IOrderMixin-fillOrderToWithPermit}.
                                             */
                                            function fillOrderToWithPermit(
                                                OrderLib.Order calldata order,
                                                bytes calldata signature,
                                                bytes calldata interaction,
                                                uint256 makingAmount,
                                                uint256 takingAmount,
                                                uint256 skipPermitAndThresholdAmount,
                                                address target,
                                                bytes calldata permit
                                            ) external returns(uint256 /* actualMakingAmount */, uint256 /* actualTakingAmount */, bytes32 /* orderHash */) {
                                                if (permit.length < 20) revert PermitLengthTooLow();
                                                {  // Stack too deep
                                                    (address token, bytes calldata permitData) = permit.decodeTargetAndCalldata();
                                                    IERC20(token).safePermit(permitData);
                                                }
                                                return fillOrderTo(order, signature, interaction, makingAmount, takingAmount, skipPermitAndThresholdAmount, target);
                                            }
                                        
                                            /**
                                             * @notice See {IOrderMixin-fillOrderTo}.
                                             */
                                            function fillOrderTo(
                                                OrderLib.Order calldata order_,
                                                bytes calldata signature,
                                                bytes calldata interaction,
                                                uint256 makingAmount,
                                                uint256 takingAmount,
                                                uint256 skipPermitAndThresholdAmount,
                                                address target
                                            ) public payable returns(uint256 actualMakingAmount, uint256 actualTakingAmount, bytes32 orderHash) {
                                                if (target == address(0)) revert ZeroTargetIsForbidden();
                                                orderHash = hashOrder(order_);
                                        
                                                OrderLib.Order calldata order = order_; // Helps with "Stack too deep"
                                                actualMakingAmount = makingAmount;
                                                actualTakingAmount = takingAmount;
                                        
                                                uint256 remainingMakingAmount = _remaining[orderHash];
                                                if (remainingMakingAmount == _ORDER_FILLED) revert RemainingAmountIsZero();
                                                if (order.allowedSender != address(0) && order.allowedSender != msg.sender) revert PrivateOrder();
                                                if (remainingMakingAmount == _ORDER_DOES_NOT_EXIST) {
                                                    // First fill: validate order and permit maker asset
                                                    if (!ECDSA.recoverOrIsValidSignature(order.maker, orderHash, signature)) revert BadSignature();
                                                    remainingMakingAmount = order.makingAmount;
                                        
                                                    bytes calldata permit = order.permit();
                                                    if (skipPermitAndThresholdAmount & _SKIP_PERMIT_FLAG == 0 && permit.length >= 20) {
                                                        // proceed only if taker is willing to execute permit and its length is enough to store address
                                                        (address token, bytes calldata permitCalldata) = permit.decodeTargetAndCalldata();
                                                        IERC20(token).safePermit(permitCalldata);
                                                        if (_remaining[orderHash] != _ORDER_DOES_NOT_EXIST) revert ReentrancyDetected();
                                                    }
                                                } else {
                                                    unchecked { remainingMakingAmount -= 1; }
                                                }
                                        
                                                // Check if order is valid
                                                if (order.predicate().length > 0) {
                                                    if (!checkPredicate(order)) revert PredicateIsNotTrue();
                                                }
                                        
                                                // Compute maker and taker assets amount
                                                if ((actualTakingAmount == 0) == (actualMakingAmount == 0)) {
                                                    revert OnlyOneAmountShouldBeZero();
                                                } else if (actualTakingAmount == 0) {
                                                    if (actualMakingAmount > remainingMakingAmount) {
                                                        actualMakingAmount = remainingMakingAmount;
                                                    }
                                                    actualTakingAmount = _getTakingAmount(order.getTakingAmount(), order.makingAmount, actualMakingAmount, order.takingAmount, remainingMakingAmount, orderHash);
                                                    uint256 thresholdAmount = skipPermitAndThresholdAmount & _THRESHOLD_MASK;
                                                    // check that actual rate is not worse than what was expected
                                                    // actualTakingAmount / actualMakingAmount <= thresholdAmount / makingAmount
                                                    if (actualTakingAmount * makingAmount > thresholdAmount * actualMakingAmount) revert TakingAmountTooHigh();
                                                } else {
                                                    actualMakingAmount = _getMakingAmount(order.getMakingAmount(), order.takingAmount, actualTakingAmount, order.makingAmount, remainingMakingAmount, orderHash);
                                                    if (actualMakingAmount > remainingMakingAmount) {
                                                        actualMakingAmount = remainingMakingAmount;
                                                        actualTakingAmount = _getTakingAmount(order.getTakingAmount(), order.makingAmount, actualMakingAmount, order.takingAmount, remainingMakingAmount, orderHash);
                                                        if (actualTakingAmount > takingAmount) revert TakingAmountIncreased();
                                                    }
                                                    uint256 thresholdAmount = skipPermitAndThresholdAmount & _THRESHOLD_MASK;
                                                    // check that actual rate is not worse than what was expected
                                                    // actualMakingAmount / actualTakingAmount >= thresholdAmount / takingAmount
                                                    if (actualMakingAmount * takingAmount < thresholdAmount * actualTakingAmount) revert MakingAmountTooLow();
                                                }
                                        
                                                if (actualMakingAmount == 0 || actualTakingAmount == 0) revert SwapWithZeroAmount();
                                        
                                                // Update remaining amount in storage
                                                unchecked {
                                                    remainingMakingAmount = remainingMakingAmount - actualMakingAmount;
                                                    _remaining[orderHash] = remainingMakingAmount + 1;
                                                }
                                                emit OrderFilled(order_.maker, orderHash, remainingMakingAmount);
                                        
                                                // Maker can handle funds interactively
                                                if (order.preInteraction().length >= 20) {
                                                    // proceed only if interaction length is enough to store address
                                                    (address interactionTarget, bytes calldata interactionData) = order.preInteraction().decodeTargetAndCalldata();
                                                    PreInteractionNotificationReceiver(interactionTarget).fillOrderPreInteraction(
                                                        orderHash, order.maker, msg.sender, actualMakingAmount, actualTakingAmount, remainingMakingAmount, interactionData
                                                    );
                                                }
                                        
                                                // Maker => Taker
                                                if (!_callTransferFrom(
                                                    order.makerAsset,
                                                    order.maker,
                                                    target,
                                                    actualMakingAmount,
                                                    order.makerAssetData()
                                                )) revert TransferFromMakerToTakerFailed();
                                        
                                                if (interaction.length >= 20) {
                                                    // proceed only if interaction length is enough to store address
                                                    (address interactionTarget, bytes calldata interactionData) = interaction.decodeTargetAndCalldata();
                                                    uint256 offeredTakingAmount = InteractionNotificationReceiver(interactionTarget).fillOrderInteraction(
                                                        msg.sender, actualMakingAmount, actualTakingAmount, interactionData
                                                    );
                                        
                                                    if (offeredTakingAmount > actualTakingAmount &&
                                                        !OrderLib.getterIsFrozen(order.getMakingAmount()) &&
                                                        !OrderLib.getterIsFrozen(order.getTakingAmount()))
                                                    {
                                                        actualTakingAmount = offeredTakingAmount;
                                                    }
                                                }
                                        
                                                // Taker => Maker
                                                if (order.takerAsset == address(_WETH) && msg.value > 0) {
                                                    if (msg.value < actualTakingAmount) revert Errors.InvalidMsgValue();
                                                    if (msg.value > actualTakingAmount) {
                                                        unchecked {
                                                            (bool success, ) = msg.sender.call{value: msg.value - actualTakingAmount}("");  // solhint-disable-line avoid-low-level-calls
                                                            if (!success) revert Errors.ETHTransferFailed();
                                                        }
                                                    }
                                                    _WETH.deposit{ value: actualTakingAmount }();
                                                    _WETH.transfer(order.receiver == address(0) ? order.maker : order.receiver, actualTakingAmount);
                                                } else {
                                                    if (msg.value != 0) revert Errors.InvalidMsgValue();
                                                    if (!_callTransferFrom(
                                                        order.takerAsset,
                                                        msg.sender,
                                                        order.receiver == address(0) ? order.maker : order.receiver,
                                                        actualTakingAmount,
                                                        order.takerAssetData()
                                                    )) revert TransferFromTakerToMakerFailed();
                                                }
                                        
                                                // Maker can handle funds interactively
                                                if (order.postInteraction().length >= 20) {
                                                    // proceed only if interaction length is enough to store address
                                                    (address interactionTarget, bytes calldata interactionData) = order.postInteraction().decodeTargetAndCalldata();
                                                    PostInteractionNotificationReceiver(interactionTarget).fillOrderPostInteraction(
                                                         orderHash, order.maker, msg.sender, actualMakingAmount, actualTakingAmount, remainingMakingAmount, interactionData
                                                    );
                                                }
                                            }
                                        
                                            /**
                                             * @notice See {IOrderMixin-checkPredicate}.
                                             */
                                            function checkPredicate(OrderLib.Order calldata order) public view returns(bool) {
                                                (bool success, uint256 res) = _selfStaticCall(order.predicate());
                                                return success && res == 1;
                                            }
                                        
                                            /**
                                             * @notice See {IOrderMixin-hashOrder}.
                                             */
                                            function hashOrder(OrderLib.Order calldata order) public view returns(bytes32) {
                                                return order.hash(_domainSeparatorV4());
                                            }
                                        
                                            function _callTransferFrom(address asset, address from, address to, uint256 amount, bytes calldata input) private returns(bool success) {
                                                bytes4 selector = IERC20.transferFrom.selector;
                                                /// @solidity memory-safe-assembly
                                                assembly { // solhint-disable-line no-inline-assembly
                                                    let data := mload(0x40)
                                        
                                                    mstore(data, selector)
                                                    mstore(add(data, 0x04), from)
                                                    mstore(add(data, 0x24), to)
                                                    mstore(add(data, 0x44), amount)
                                                    calldatacopy(add(data, 0x64), input.offset, input.length)
                                                    let status := call(gas(), asset, 0, data, add(0x64, input.length), 0x0, 0x20)
                                                    success := and(status, or(iszero(returndatasize()), and(gt(returndatasize(), 31), eq(mload(0), 1))))
                                                }
                                            }
                                        
                                            function _getMakingAmount(
                                                bytes calldata getter,
                                                uint256 orderTakingAmount,
                                                uint256 requestedTakingAmount,
                                                uint256 orderMakingAmount,
                                                uint256 remainingMakingAmount,
                                                bytes32 orderHash
                                            ) private view returns(uint256) {
                                                if (getter.length == 0) {
                                                    // Linear proportion
                                                    return AmountCalculator.getMakingAmount(orderMakingAmount, orderTakingAmount, requestedTakingAmount);
                                                }
                                                return _callGetter(getter, orderTakingAmount, requestedTakingAmount, orderMakingAmount, remainingMakingAmount, orderHash);
                                            }
                                        
                                            function _getTakingAmount(
                                                bytes calldata getter,
                                                uint256 orderMakingAmount,
                                                uint256 requestedMakingAmount,
                                                uint256 orderTakingAmount,
                                                uint256 remainingMakingAmount,
                                                bytes32 orderHash
                                            ) private view returns(uint256) {
                                                if (getter.length == 0) {
                                                    // Linear proportion
                                                    return AmountCalculator.getTakingAmount(orderMakingAmount, orderTakingAmount, requestedMakingAmount);
                                                }
                                                return _callGetter(getter, orderMakingAmount, requestedMakingAmount, orderTakingAmount, remainingMakingAmount, orderHash);
                                            }
                                        
                                            function _callGetter(
                                                bytes calldata getter,
                                                uint256 orderExpectedAmount,
                                                uint256 requestedAmount,
                                                uint256 orderResultAmount,
                                                uint256 remainingMakingAmount,
                                                bytes32 orderHash
                                            ) private view returns(uint256) {
                                                if (getter.length == 1) {
                                                    if (OrderLib.getterIsFrozen(getter)) {
                                                        // On "x" getter calldata only exact amount is allowed
                                                        if (requestedAmount != orderExpectedAmount) revert WrongAmount();
                                                        return orderResultAmount;
                                                    } else {
                                                        revert WrongGetter();
                                                    }
                                                } else {
                                                    (address target, bytes calldata data) = getter.decodeTargetAndCalldata();
                                                    (bool success, bytes memory result) = target.staticcall(abi.encodePacked(data, requestedAmount, remainingMakingAmount, orderHash));
                                                    if (!success || result.length != 32) revert GetAmountCallFailed();
                                                    return abi.decode(result, (uint256));
                                                }
                                            }
                                        }
                                        
                                        
                                        // File @openzeppelin/contracts/utils/[email protected]
                                        
                                        // OpenZeppelin Contracts v4.4.1 (utils/Context.sol)
                                        
                                        pragma solidity ^0.8.0;
                                        
                                        /**
                                         * @dev Provides information about the current execution context, including the
                                         * sender of the transaction and its data. While these are generally available
                                         * via msg.sender and msg.data, they should not be accessed in such a direct
                                         * manner, since when dealing with meta-transactions the account sending and
                                         * paying for execution may not be the actual sender (as far as an application
                                         * is concerned).
                                         *
                                         * This contract is only required for intermediate, library-like contracts.
                                         */
                                        abstract contract Context {
                                            function _msgSender() internal view virtual returns (address) {
                                                return msg.sender;
                                            }
                                        
                                            function _msgData() internal view virtual returns (bytes calldata) {
                                                return msg.data;
                                            }
                                        }
                                        
                                        
                                        // File @openzeppelin/contracts/access/[email protected]
                                        
                                        // OpenZeppelin Contracts (last updated v4.7.0) (access/Ownable.sol)
                                        
                                        pragma solidity ^0.8.0;
                                        
                                        /**
                                         * @dev Contract module which provides a basic access control mechanism, where
                                         * there is an account (an owner) that can be granted exclusive access to
                                         * specific functions.
                                         *
                                         * By default, the owner account will be the one that deploys the contract. This
                                         * can later be changed with {transferOwnership}.
                                         *
                                         * This module is used through inheritance. It will make available the modifier
                                         * `onlyOwner`, which can be applied to your functions to restrict their use to
                                         * the owner.
                                         */
                                        abstract contract Ownable is Context {
                                            address private _owner;
                                        
                                            event OwnershipTransferred(address indexed previousOwner, address indexed newOwner);
                                        
                                            /**
                                             * @dev Initializes the contract setting the deployer as the initial owner.
                                             */
                                            constructor() {
                                                _transferOwnership(_msgSender());
                                            }
                                        
                                            /**
                                             * @dev Throws if called by any account other than the owner.
                                             */
                                            modifier onlyOwner() {
                                                _checkOwner();
                                                _;
                                            }
                                        
                                            /**
                                             * @dev Returns the address of the current owner.
                                             */
                                            function owner() public view virtual returns (address) {
                                                return _owner;
                                            }
                                        
                                            /**
                                             * @dev Throws if the sender is not the owner.
                                             */
                                            function _checkOwner() internal view virtual {
                                                require(owner() == _msgSender(), "Ownable: caller is not the owner");
                                            }
                                        
                                            /**
                                             * @dev Leaves the contract without owner. It will not be possible to call
                                             * `onlyOwner` functions anymore. Can only be called by the current owner.
                                             *
                                             * NOTE: Renouncing ownership will leave the contract without an owner,
                                             * thereby removing any functionality that is only available to the owner.
                                             */
                                            function renounceOwnership() public virtual onlyOwner {
                                                _transferOwnership(address(0));
                                            }
                                        
                                            /**
                                             * @dev Transfers ownership of the contract to a new account (`newOwner`).
                                             * Can only be called by the current owner.
                                             */
                                            function transferOwnership(address newOwner) public virtual onlyOwner {
                                                require(newOwner != address(0), "Ownable: new owner is the zero address");
                                                _transferOwnership(newOwner);
                                            }
                                        
                                            /**
                                             * @dev Transfers ownership of the contract to a new account (`newOwner`).
                                             * Internal function without access restriction.
                                             */
                                            function _transferOwnership(address newOwner) internal virtual {
                                                address oldOwner = _owner;
                                                _owner = newOwner;
                                                emit OwnershipTransferred(oldOwner, newOwner);
                                            }
                                        }
                                        
                                        
                                        // File contracts/AggregationRouterV5.sol
                                        
                                        
                                        pragma solidity 0.8.17;
                                        
                                        
                                        
                                        
                                        
                                        
                                        
                                        
                                        
                                        /// @notice Main contract incorporates a number of routers to perform swaps and limit orders protocol to fill limit orders
                                        contract AggregationRouterV5 is EIP712("1inch Aggregation Router", "5"), Ownable,
                                            ClipperRouter, GenericRouter, UnoswapRouter, UnoswapV3Router, OrderMixin, OrderRFQMixin
                                        {
                                            using UniERC20 for IERC20;
                                        
                                            error ZeroAddress();
                                        
                                            /**
                                             * @dev Sets the wrapped eth token and clipper exhange interface
                                             * Both values are immutable: they can only be set once during
                                             * construction.
                                             */
                                            constructor(IWETH weth)
                                                UnoswapV3Router(weth)
                                                ClipperRouter(weth)
                                                OrderMixin(weth)
                                                OrderRFQMixin(weth)
                                            {
                                                if (address(weth) == address(0)) revert ZeroAddress();
                                            }
                                        
                                            /**
                                             * @notice Retrieves funds accidently sent directly to the contract address
                                             * @param token ERC20 token to retrieve
                                             * @param amount amount to retrieve
                                             */
                                            function rescueFunds(IERC20 token, uint256 amount) external onlyOwner {
                                                token.uniTransfer(payable(msg.sender), amount);
                                            }
                                        
                                            /**
                                             * @notice Destroys the contract and sends eth to sender. Use with caution.
                                             * The only case when the use of the method is justified is if there is an exploit found.
                                             * And the damage from the exploit is greater than from just an urgent contract change.
                                             */
                                            function destroy() external onlyOwner {
                                                selfdestruct(payable(msg.sender));
                                            }
                                        
                                            function _receive() internal override(EthReceiver, OnlyWethReceiver) {
                                                EthReceiver._receive();
                                            }
                                        }

                                        File 4 of 11: WETH9
                                        // Copyright (C) 2015, 2016, 2017 Dapphub
                                        
                                        // This program is free software: you can redistribute it and/or modify
                                        // it under the terms of the GNU General Public License as published by
                                        // the Free Software Foundation, either version 3 of the License, or
                                        // (at your option) any later version.
                                        
                                        // This program is distributed in the hope that it will be useful,
                                        // but WITHOUT ANY WARRANTY; without even the implied warranty of
                                        // MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE.  See the
                                        // GNU General Public License for more details.
                                        
                                        // You should have received a copy of the GNU General Public License
                                        // along with this program.  If not, see <http://www.gnu.org/licenses/>.
                                        
                                        pragma solidity ^0.4.18;
                                        
                                        contract WETH9 {
                                            string public name     = "Wrapped Ether";
                                            string public symbol   = "WETH";
                                            uint8  public decimals = 18;
                                        
                                            event  Approval(address indexed src, address indexed guy, uint wad);
                                            event  Transfer(address indexed src, address indexed dst, uint wad);
                                            event  Deposit(address indexed dst, uint wad);
                                            event  Withdrawal(address indexed src, uint wad);
                                        
                                            mapping (address => uint)                       public  balanceOf;
                                            mapping (address => mapping (address => uint))  public  allowance;
                                        
                                            function() public payable {
                                                deposit();
                                            }
                                            function deposit() public payable {
                                                balanceOf[msg.sender] += msg.value;
                                                Deposit(msg.sender, msg.value);
                                            }
                                            function withdraw(uint wad) public {
                                                require(balanceOf[msg.sender] >= wad);
                                                balanceOf[msg.sender] -= wad;
                                                msg.sender.transfer(wad);
                                                Withdrawal(msg.sender, wad);
                                            }
                                        
                                            function totalSupply() public view returns (uint) {
                                                return this.balance;
                                            }
                                        
                                            function approve(address guy, uint wad) public returns (bool) {
                                                allowance[msg.sender][guy] = wad;
                                                Approval(msg.sender, guy, wad);
                                                return true;
                                            }
                                        
                                            function transfer(address dst, uint wad) public returns (bool) {
                                                return transferFrom(msg.sender, dst, wad);
                                            }
                                        
                                            function transferFrom(address src, address dst, uint wad)
                                                public
                                                returns (bool)
                                            {
                                                require(balanceOf[src] >= wad);
                                        
                                                if (src != msg.sender && allowance[src][msg.sender] != uint(-1)) {
                                                    require(allowance[src][msg.sender] >= wad);
                                                    allowance[src][msg.sender] -= wad;
                                                }
                                        
                                                balanceOf[src] -= wad;
                                                balanceOf[dst] += wad;
                                        
                                                Transfer(src, dst, wad);
                                        
                                                return true;
                                            }
                                        }
                                        
                                        
                                        /*
                                                            GNU GENERAL PUBLIC LICENSE
                                                               Version 3, 29 June 2007
                                        
                                         Copyright (C) 2007 Free Software Foundation, Inc. <http://fsf.org/>
                                         Everyone is permitted to copy and distribute verbatim copies
                                         of this license document, but changing it is not allowed.
                                        
                                                                    Preamble
                                        
                                          The GNU General Public License is a free, copyleft license for
                                        software and other kinds of works.
                                        
                                          The licenses for most software and other practical works are designed
                                        to take away your freedom to share and change the works.  By contrast,
                                        the GNU General Public License is intended to guarantee your freedom to
                                        share and change all versions of a program--to make sure it remains free
                                        software for all its users.  We, the Free Software Foundation, use the
                                        GNU General Public License for most of our software; it applies also to
                                        any other work released this way by its authors.  You can apply it to
                                        your programs, too.
                                        
                                          When we speak of free software, we are referring to freedom, not
                                        price.  Our General Public Licenses are designed to make sure that you
                                        have the freedom to distribute copies of free software (and charge for
                                        them if you wish), that you receive source code or can get it if you
                                        want it, that you can change the software or use pieces of it in new
                                        free programs, and that you know you can do these things.
                                        
                                          To protect your rights, we need to prevent others from denying you
                                        these rights or asking you to surrender the rights.  Therefore, you have
                                        certain responsibilities if you distribute copies of the software, or if
                                        you modify it: responsibilities to respect the freedom of others.
                                        
                                          For example, if you distribute copies of such a program, whether
                                        gratis or for a fee, you must pass on to the recipients the same
                                        freedoms that you received.  You must make sure that they, too, receive
                                        or can get the source code.  And you must show them these terms so they
                                        know their rights.
                                        
                                          Developers that use the GNU GPL protect your rights with two steps:
                                        (1) assert copyright on the software, and (2) offer you this License
                                        giving you legal permission to copy, distribute and/or modify it.
                                        
                                          For the developers' and authors' protection, the GPL clearly explains
                                        that there is no warranty for this free software.  For both users' and
                                        authors' sake, the GPL requires that modified versions be marked as
                                        changed, so that their problems will not be attributed erroneously to
                                        authors of previous versions.
                                        
                                          Some devices are designed to deny users access to install or run
                                        modified versions of the software inside them, although the manufacturer
                                        can do so.  This is fundamentally incompatible with the aim of
                                        protecting users' freedom to change the software.  The systematic
                                        pattern of such abuse occurs in the area of products for individuals to
                                        use, which is precisely where it is most unacceptable.  Therefore, we
                                        have designed this version of the GPL to prohibit the practice for those
                                        products.  If such problems arise substantially in other domains, we
                                        stand ready to extend this provision to those domains in future versions
                                        of the GPL, as needed to protect the freedom of users.
                                        
                                          Finally, every program is threatened constantly by software patents.
                                        States should not allow patents to restrict development and use of
                                        software on general-purpose computers, but in those that do, we wish to
                                        avoid the special danger that patents applied to a free program could
                                        make it effectively proprietary.  To prevent this, the GPL assures that
                                        patents cannot be used to render the program non-free.
                                        
                                          The precise terms and conditions for copying, distribution and
                                        modification follow.
                                        
                                                               TERMS AND CONDITIONS
                                        
                                          0. Definitions.
                                        
                                          "This License" refers to version 3 of the GNU General Public License.
                                        
                                          "Copyright" also means copyright-like laws that apply to other kinds of
                                        works, such as semiconductor masks.
                                        
                                          "The Program" refers to any copyrightable work licensed under this
                                        License.  Each licensee is addressed as "you".  "Licensees" and
                                        "recipients" may be individuals or organizations.
                                        
                                          To "modify" a work means to copy from or adapt all or part of the work
                                        in a fashion requiring copyright permission, other than the making of an
                                        exact copy.  The resulting work is called a "modified version" of the
                                        earlier work or a work "based on" the earlier work.
                                        
                                          A "covered work" means either the unmodified Program or a work based
                                        on the Program.
                                        
                                          To "propagate" a work means to do anything with it that, without
                                        permission, would make you directly or secondarily liable for
                                        infringement under applicable copyright law, except executing it on a
                                        computer or modifying a private copy.  Propagation includes copying,
                                        distribution (with or without modification), making available to the
                                        public, and in some countries other activities as well.
                                        
                                          To "convey" a work means any kind of propagation that enables other
                                        parties to make or receive copies.  Mere interaction with a user through
                                        a computer network, with no transfer of a copy, is not conveying.
                                        
                                          An interactive user interface displays "Appropriate Legal Notices"
                                        to the extent that it includes a convenient and prominently visible
                                        feature that (1) displays an appropriate copyright notice, and (2)
                                        tells the user that there is no warranty for the work (except to the
                                        extent that warranties are provided), that licensees may convey the
                                        work under this License, and how to view a copy of this License.  If
                                        the interface presents a list of user commands or options, such as a
                                        menu, a prominent item in the list meets this criterion.
                                        
                                          1. Source Code.
                                        
                                          The "source code" for a work means the preferred form of the work
                                        for making modifications to it.  "Object code" means any non-source
                                        form of a work.
                                        
                                          A "Standard Interface" means an interface that either is an official
                                        standard defined by a recognized standards body, or, in the case of
                                        interfaces specified for a particular programming language, one that
                                        is widely used among developers working in that language.
                                        
                                          The "System Libraries" of an executable work include anything, other
                                        than the work as a whole, that (a) is included in the normal form of
                                        packaging a Major Component, but which is not part of that Major
                                        Component, and (b) serves only to enable use of the work with that
                                        Major Component, or to implement a Standard Interface for which an
                                        implementation is available to the public in source code form.  A
                                        "Major Component", in this context, means a major essential component
                                        (kernel, window system, and so on) of the specific operating system
                                        (if any) on which the executable work runs, or a compiler used to
                                        produce the work, or an object code interpreter used to run it.
                                        
                                          The "Corresponding Source" for a work in object code form means all
                                        the source code needed to generate, install, and (for an executable
                                        work) run the object code and to modify the work, including scripts to
                                        control those activities.  However, it does not include the work's
                                        System Libraries, or general-purpose tools or generally available free
                                        programs which are used unmodified in performing those activities but
                                        which are not part of the work.  For example, Corresponding Source
                                        includes interface definition files associated with source files for
                                        the work, and the source code for shared libraries and dynamically
                                        linked subprograms that the work is specifically designed to require,
                                        such as by intimate data communication or control flow between those
                                        subprograms and other parts of the work.
                                        
                                          The Corresponding Source need not include anything that users
                                        can regenerate automatically from other parts of the Corresponding
                                        Source.
                                        
                                          The Corresponding Source for a work in source code form is that
                                        same work.
                                        
                                          2. Basic Permissions.
                                        
                                          All rights granted under this License are granted for the term of
                                        copyright on the Program, and are irrevocable provided the stated
                                        conditions are met.  This License explicitly affirms your unlimited
                                        permission to run the unmodified Program.  The output from running a
                                        covered work is covered by this License only if the output, given its
                                        content, constitutes a covered work.  This License acknowledges your
                                        rights of fair use or other equivalent, as provided by copyright law.
                                        
                                          You may make, run and propagate covered works that you do not
                                        convey, without conditions so long as your license otherwise remains
                                        in force.  You may convey covered works to others for the sole purpose
                                        of having them make modifications exclusively for you, or provide you
                                        with facilities for running those works, provided that you comply with
                                        the terms of this License in conveying all material for which you do
                                        not control copyright.  Those thus making or running the covered works
                                        for you must do so exclusively on your behalf, under your direction
                                        and control, on terms that prohibit them from making any copies of
                                        your copyrighted material outside their relationship with you.
                                        
                                          Conveying under any other circumstances is permitted solely under
                                        the conditions stated below.  Sublicensing is not allowed; section 10
                                        makes it unnecessary.
                                        
                                          3. Protecting Users' Legal Rights From Anti-Circumvention Law.
                                        
                                          No covered work shall be deemed part of an effective technological
                                        measure under any applicable law fulfilling obligations under article
                                        11 of the WIPO copyright treaty adopted on 20 December 1996, or
                                        similar laws prohibiting or restricting circumvention of such
                                        measures.
                                        
                                          When you convey a covered work, you waive any legal power to forbid
                                        circumvention of technological measures to the extent such circumvention
                                        is effected by exercising rights under this License with respect to
                                        the covered work, and you disclaim any intention to limit operation or
                                        modification of the work as a means of enforcing, against the work's
                                        users, your or third parties' legal rights to forbid circumvention of
                                        technological measures.
                                        
                                          4. Conveying Verbatim Copies.
                                        
                                          You may convey verbatim copies of the Program's source code as you
                                        receive it, in any medium, provided that you conspicuously and
                                        appropriately publish on each copy an appropriate copyright notice;
                                        keep intact all notices stating that this License and any
                                        non-permissive terms added in accord with section 7 apply to the code;
                                        keep intact all notices of the absence of any warranty; and give all
                                        recipients a copy of this License along with the Program.
                                        
                                          You may charge any price or no price for each copy that you convey,
                                        and you may offer support or warranty protection for a fee.
                                        
                                          5. Conveying Modified Source Versions.
                                        
                                          You may convey a work based on the Program, or the modifications to
                                        produce it from the Program, in the form of source code under the
                                        terms of section 4, provided that you also meet all of these conditions:
                                        
                                            a) The work must carry prominent notices stating that you modified
                                            it, and giving a relevant date.
                                        
                                            b) The work must carry prominent notices stating that it is
                                            released under this License and any conditions added under section
                                            7.  This requirement modifies the requirement in section 4 to
                                            "keep intact all notices".
                                        
                                            c) You must license the entire work, as a whole, under this
                                            License to anyone who comes into possession of a copy.  This
                                            License will therefore apply, along with any applicable section 7
                                            additional terms, to the whole of the work, and all its parts,
                                            regardless of how they are packaged.  This License gives no
                                            permission to license the work in any other way, but it does not
                                            invalidate such permission if you have separately received it.
                                        
                                            d) If the work has interactive user interfaces, each must display
                                            Appropriate Legal Notices; however, if the Program has interactive
                                            interfaces that do not display Appropriate Legal Notices, your
                                            work need not make them do so.
                                        
                                          A compilation of a covered work with other separate and independent
                                        works, which are not by their nature extensions of the covered work,
                                        and which are not combined with it such as to form a larger program,
                                        in or on a volume of a storage or distribution medium, is called an
                                        "aggregate" if the compilation and its resulting copyright are not
                                        used to limit the access or legal rights of the compilation's users
                                        beyond what the individual works permit.  Inclusion of a covered work
                                        in an aggregate does not cause this License to apply to the other
                                        parts of the aggregate.
                                        
                                          6. Conveying Non-Source Forms.
                                        
                                          You may convey a covered work in object code form under the terms
                                        of sections 4 and 5, provided that you also convey the
                                        machine-readable Corresponding Source under the terms of this License,
                                        in one of these ways:
                                        
                                            a) Convey the object code in, or embodied in, a physical product
                                            (including a physical distribution medium), accompanied by the
                                            Corresponding Source fixed on a durable physical medium
                                            customarily used for software interchange.
                                        
                                            b) Convey the object code in, or embodied in, a physical product
                                            (including a physical distribution medium), accompanied by a
                                            written offer, valid for at least three years and valid for as
                                            long as you offer spare parts or customer support for that product
                                            model, to give anyone who possesses the object code either (1) a
                                            copy of the Corresponding Source for all the software in the
                                            product that is covered by this License, on a durable physical
                                            medium customarily used for software interchange, for a price no
                                            more than your reasonable cost of physically performing this
                                            conveying of source, or (2) access to copy the
                                            Corresponding Source from a network server at no charge.
                                        
                                            c) Convey individual copies of the object code with a copy of the
                                            written offer to provide the Corresponding Source.  This
                                            alternative is allowed only occasionally and noncommercially, and
                                            only if you received the object code with such an offer, in accord
                                            with subsection 6b.
                                        
                                            d) Convey the object code by offering access from a designated
                                            place (gratis or for a charge), and offer equivalent access to the
                                            Corresponding Source in the same way through the same place at no
                                            further charge.  You need not require recipients to copy the
                                            Corresponding Source along with the object code.  If the place to
                                            copy the object code is a network server, the Corresponding Source
                                            may be on a different server (operated by you or a third party)
                                            that supports equivalent copying facilities, provided you maintain
                                            clear directions next to the object code saying where to find the
                                            Corresponding Source.  Regardless of what server hosts the
                                            Corresponding Source, you remain obligated to ensure that it is
                                            available for as long as needed to satisfy these requirements.
                                        
                                            e) Convey the object code using peer-to-peer transmission, provided
                                            you inform other peers where the object code and Corresponding
                                            Source of the work are being offered to the general public at no
                                            charge under subsection 6d.
                                        
                                          A separable portion of the object code, whose source code is excluded
                                        from the Corresponding Source as a System Library, need not be
                                        included in conveying the object code work.
                                        
                                          A "User Product" is either (1) a "consumer product", which means any
                                        tangible personal property which is normally used for personal, family,
                                        or household purposes, or (2) anything designed or sold for incorporation
                                        into a dwelling.  In determining whether a product is a consumer product,
                                        doubtful cases shall be resolved in favor of coverage.  For a particular
                                        product received by a particular user, "normally used" refers to a
                                        typical or common use of that class of product, regardless of the status
                                        of the particular user or of the way in which the particular user
                                        actually uses, or expects or is expected to use, the product.  A product
                                        is a consumer product regardless of whether the product has substantial
                                        commercial, industrial or non-consumer uses, unless such uses represent
                                        the only significant mode of use of the product.
                                        
                                          "Installation Information" for a User Product means any methods,
                                        procedures, authorization keys, or other information required to install
                                        and execute modified versions of a covered work in that User Product from
                                        a modified version of its Corresponding Source.  The information must
                                        suffice to ensure that the continued functioning of the modified object
                                        code is in no case prevented or interfered with solely because
                                        modification has been made.
                                        
                                          If you convey an object code work under this section in, or with, or
                                        specifically for use in, a User Product, and the conveying occurs as
                                        part of a transaction in which the right of possession and use of the
                                        User Product is transferred to the recipient in perpetuity or for a
                                        fixed term (regardless of how the transaction is characterized), the
                                        Corresponding Source conveyed under this section must be accompanied
                                        by the Installation Information.  But this requirement does not apply
                                        if neither you nor any third party retains the ability to install
                                        modified object code on the User Product (for example, the work has
                                        been installed in ROM).
                                        
                                          The requirement to provide Installation Information does not include a
                                        requirement to continue to provide support service, warranty, or updates
                                        for a work that has been modified or installed by the recipient, or for
                                        the User Product in which it has been modified or installed.  Access to a
                                        network may be denied when the modification itself materially and
                                        adversely affects the operation of the network or violates the rules and
                                        protocols for communication across the network.
                                        
                                          Corresponding Source conveyed, and Installation Information provided,
                                        in accord with this section must be in a format that is publicly
                                        documented (and with an implementation available to the public in
                                        source code form), and must require no special password or key for
                                        unpacking, reading or copying.
                                        
                                          7. Additional Terms.
                                        
                                          "Additional permissions" are terms that supplement the terms of this
                                        License by making exceptions from one or more of its conditions.
                                        Additional permissions that are applicable to the entire Program shall
                                        be treated as though they were included in this License, to the extent
                                        that they are valid under applicable law.  If additional permissions
                                        apply only to part of the Program, that part may be used separately
                                        under those permissions, but the entire Program remains governed by
                                        this License without regard to the additional permissions.
                                        
                                          When you convey a copy of a covered work, you may at your option
                                        remove any additional permissions from that copy, or from any part of
                                        it.  (Additional permissions may be written to require their own
                                        removal in certain cases when you modify the work.)  You may place
                                        additional permissions on material, added by you to a covered work,
                                        for which you have or can give appropriate copyright permission.
                                        
                                          Notwithstanding any other provision of this License, for material you
                                        add to a covered work, you may (if authorized by the copyright holders of
                                        that material) supplement the terms of this License with terms:
                                        
                                            a) Disclaiming warranty or limiting liability differently from the
                                            terms of sections 15 and 16 of this License; or
                                        
                                            b) Requiring preservation of specified reasonable legal notices or
                                            author attributions in that material or in the Appropriate Legal
                                            Notices displayed by works containing it; or
                                        
                                            c) Prohibiting misrepresentation of the origin of that material, or
                                            requiring that modified versions of such material be marked in
                                            reasonable ways as different from the original version; or
                                        
                                            d) Limiting the use for publicity purposes of names of licensors or
                                            authors of the material; or
                                        
                                            e) Declining to grant rights under trademark law for use of some
                                            trade names, trademarks, or service marks; or
                                        
                                            f) Requiring indemnification of licensors and authors of that
                                            material by anyone who conveys the material (or modified versions of
                                            it) with contractual assumptions of liability to the recipient, for
                                            any liability that these contractual assumptions directly impose on
                                            those licensors and authors.
                                        
                                          All other non-permissive additional terms are considered "further
                                        restrictions" within the meaning of section 10.  If the Program as you
                                        received it, or any part of it, contains a notice stating that it is
                                        governed by this License along with a term that is a further
                                        restriction, you may remove that term.  If a license document contains
                                        a further restriction but permits relicensing or conveying under this
                                        License, you may add to a covered work material governed by the terms
                                        of that license document, provided that the further restriction does
                                        not survive such relicensing or conveying.
                                        
                                          If you add terms to a covered work in accord with this section, you
                                        must place, in the relevant source files, a statement of the
                                        additional terms that apply to those files, or a notice indicating
                                        where to find the applicable terms.
                                        
                                          Additional terms, permissive or non-permissive, may be stated in the
                                        form of a separately written license, or stated as exceptions;
                                        the above requirements apply either way.
                                        
                                          8. Termination.
                                        
                                          You may not propagate or modify a covered work except as expressly
                                        provided under this License.  Any attempt otherwise to propagate or
                                        modify it is void, and will automatically terminate your rights under
                                        this License (including any patent licenses granted under the third
                                        paragraph of section 11).
                                        
                                          However, if you cease all violation of this License, then your
                                        license from a particular copyright holder is reinstated (a)
                                        provisionally, unless and until the copyright holder explicitly and
                                        finally terminates your license, and (b) permanently, if the copyright
                                        holder fails to notify you of the violation by some reasonable means
                                        prior to 60 days after the cessation.
                                        
                                          Moreover, your license from a particular copyright holder is
                                        reinstated permanently if the copyright holder notifies you of the
                                        violation by some reasonable means, this is the first time you have
                                        received notice of violation of this License (for any work) from that
                                        copyright holder, and you cure the violation prior to 30 days after
                                        your receipt of the notice.
                                        
                                          Termination of your rights under this section does not terminate the
                                        licenses of parties who have received copies or rights from you under
                                        this License.  If your rights have been terminated and not permanently
                                        reinstated, you do not qualify to receive new licenses for the same
                                        material under section 10.
                                        
                                          9. Acceptance Not Required for Having Copies.
                                        
                                          You are not required to accept this License in order to receive or
                                        run a copy of the Program.  Ancillary propagation of a covered work
                                        occurring solely as a consequence of using peer-to-peer transmission
                                        to receive a copy likewise does not require acceptance.  However,
                                        nothing other than this License grants you permission to propagate or
                                        modify any covered work.  These actions infringe copyright if you do
                                        not accept this License.  Therefore, by modifying or propagating a
                                        covered work, you indicate your acceptance of this License to do so.
                                        
                                          10. Automatic Licensing of Downstream Recipients.
                                        
                                          Each time you convey a covered work, the recipient automatically
                                        receives a license from the original licensors, to run, modify and
                                        propagate that work, subject to this License.  You are not responsible
                                        for enforcing compliance by third parties with this License.
                                        
                                          An "entity transaction" is a transaction transferring control of an
                                        organization, or substantially all assets of one, or subdividing an
                                        organization, or merging organizations.  If propagation of a covered
                                        work results from an entity transaction, each party to that
                                        transaction who receives a copy of the work also receives whatever
                                        licenses to the work the party's predecessor in interest had or could
                                        give under the previous paragraph, plus a right to possession of the
                                        Corresponding Source of the work from the predecessor in interest, if
                                        the predecessor has it or can get it with reasonable efforts.
                                        
                                          You may not impose any further restrictions on the exercise of the
                                        rights granted or affirmed under this License.  For example, you may
                                        not impose a license fee, royalty, or other charge for exercise of
                                        rights granted under this License, and you may not initiate litigation
                                        (including a cross-claim or counterclaim in a lawsuit) alleging that
                                        any patent claim is infringed by making, using, selling, offering for
                                        sale, or importing the Program or any portion of it.
                                        
                                          11. Patents.
                                        
                                          A "contributor" is a copyright holder who authorizes use under this
                                        License of the Program or a work on which the Program is based.  The
                                        work thus licensed is called the contributor's "contributor version".
                                        
                                          A contributor's "essential patent claims" are all patent claims
                                        owned or controlled by the contributor, whether already acquired or
                                        hereafter acquired, that would be infringed by some manner, permitted
                                        by this License, of making, using, or selling its contributor version,
                                        but do not include claims that would be infringed only as a
                                        consequence of further modification of the contributor version.  For
                                        purposes of this definition, "control" includes the right to grant
                                        patent sublicenses in a manner consistent with the requirements of
                                        this License.
                                        
                                          Each contributor grants you a non-exclusive, worldwide, royalty-free
                                        patent license under the contributor's essential patent claims, to
                                        make, use, sell, offer for sale, import and otherwise run, modify and
                                        propagate the contents of its contributor version.
                                        
                                          In the following three paragraphs, a "patent license" is any express
                                        agreement or commitment, however denominated, not to enforce a patent
                                        (such as an express permission to practice a patent or covenant not to
                                        sue for patent infringement).  To "grant" such a patent license to a
                                        party means to make such an agreement or commitment not to enforce a
                                        patent against the party.
                                        
                                          If you convey a covered work, knowingly relying on a patent license,
                                        and the Corresponding Source of the work is not available for anyone
                                        to copy, free of charge and under the terms of this License, through a
                                        publicly available network server or other readily accessible means,
                                        then you must either (1) cause the Corresponding Source to be so
                                        available, or (2) arrange to deprive yourself of the benefit of the
                                        patent license for this particular work, or (3) arrange, in a manner
                                        consistent with the requirements of this License, to extend the patent
                                        license to downstream recipients.  "Knowingly relying" means you have
                                        actual knowledge that, but for the patent license, your conveying the
                                        covered work in a country, or your recipient's use of the covered work
                                        in a country, would infringe one or more identifiable patents in that
                                        country that you have reason to believe are valid.
                                        
                                          If, pursuant to or in connection with a single transaction or
                                        arrangement, you convey, or propagate by procuring conveyance of, a
                                        covered work, and grant a patent license to some of the parties
                                        receiving the covered work authorizing them to use, propagate, modify
                                        or convey a specific copy of the covered work, then the patent license
                                        you grant is automatically extended to all recipients of the covered
                                        work and works based on it.
                                        
                                          A patent license is "discriminatory" if it does not include within
                                        the scope of its coverage, prohibits the exercise of, or is
                                        conditioned on the non-exercise of one or more of the rights that are
                                        specifically granted under this License.  You may not convey a covered
                                        work if you are a party to an arrangement with a third party that is
                                        in the business of distributing software, under which you make payment
                                        to the third party based on the extent of your activity of conveying
                                        the work, and under which the third party grants, to any of the
                                        parties who would receive the covered work from you, a discriminatory
                                        patent license (a) in connection with copies of the covered work
                                        conveyed by you (or copies made from those copies), or (b) primarily
                                        for and in connection with specific products or compilations that
                                        contain the covered work, unless you entered into that arrangement,
                                        or that patent license was granted, prior to 28 March 2007.
                                        
                                          Nothing in this License shall be construed as excluding or limiting
                                        any implied license or other defenses to infringement that may
                                        otherwise be available to you under applicable patent law.
                                        
                                          12. No Surrender of Others' Freedom.
                                        
                                          If conditions are imposed on you (whether by court order, agreement or
                                        otherwise) that contradict the conditions of this License, they do not
                                        excuse you from the conditions of this License.  If you cannot convey a
                                        covered work so as to satisfy simultaneously your obligations under this
                                        License and any other pertinent obligations, then as a consequence you may
                                        not convey it at all.  For example, if you agree to terms that obligate you
                                        to collect a royalty for further conveying from those to whom you convey
                                        the Program, the only way you could satisfy both those terms and this
                                        License would be to refrain entirely from conveying the Program.
                                        
                                          13. Use with the GNU Affero General Public License.
                                        
                                          Notwithstanding any other provision of this License, you have
                                        permission to link or combine any covered work with a work licensed
                                        under version 3 of the GNU Affero General Public License into a single
                                        combined work, and to convey the resulting work.  The terms of this
                                        License will continue to apply to the part which is the covered work,
                                        but the special requirements of the GNU Affero General Public License,
                                        section 13, concerning interaction through a network will apply to the
                                        combination as such.
                                        
                                          14. Revised Versions of this License.
                                        
                                          The Free Software Foundation may publish revised and/or new versions of
                                        the GNU General Public License from time to time.  Such new versions will
                                        be similar in spirit to the present version, but may differ in detail to
                                        address new problems or concerns.
                                        
                                          Each version is given a distinguishing version number.  If the
                                        Program specifies that a certain numbered version of the GNU General
                                        Public License "or any later version" applies to it, you have the
                                        option of following the terms and conditions either of that numbered
                                        version or of any later version published by the Free Software
                                        Foundation.  If the Program does not specify a version number of the
                                        GNU General Public License, you may choose any version ever published
                                        by the Free Software Foundation.
                                        
                                          If the Program specifies that a proxy can decide which future
                                        versions of the GNU General Public License can be used, that proxy's
                                        public statement of acceptance of a version permanently authorizes you
                                        to choose that version for the Program.
                                        
                                          Later license versions may give you additional or different
                                        permissions.  However, no additional obligations are imposed on any
                                        author or copyright holder as a result of your choosing to follow a
                                        later version.
                                        
                                          15. Disclaimer of Warranty.
                                        
                                          THERE IS NO WARRANTY FOR THE PROGRAM, TO THE EXTENT PERMITTED BY
                                        APPLICABLE LAW.  EXCEPT WHEN OTHERWISE STATED IN WRITING THE COPYRIGHT
                                        HOLDERS AND/OR OTHER PARTIES PROVIDE THE PROGRAM "AS IS" WITHOUT WARRANTY
                                        OF ANY KIND, EITHER EXPRESSED OR IMPLIED, INCLUDING, BUT NOT LIMITED TO,
                                        THE IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR
                                        PURPOSE.  THE ENTIRE RISK AS TO THE QUALITY AND PERFORMANCE OF THE PROGRAM
                                        IS WITH YOU.  SHOULD THE PROGRAM PROVE DEFECTIVE, YOU ASSUME THE COST OF
                                        ALL NECESSARY SERVICING, REPAIR OR CORRECTION.
                                        
                                          16. Limitation of Liability.
                                        
                                          IN NO EVENT UNLESS REQUIRED BY APPLICABLE LAW OR AGREED TO IN WRITING
                                        WILL ANY COPYRIGHT HOLDER, OR ANY OTHER PARTY WHO MODIFIES AND/OR CONVEYS
                                        THE PROGRAM AS PERMITTED ABOVE, BE LIABLE TO YOU FOR DAMAGES, INCLUDING ANY
                                        GENERAL, SPECIAL, INCIDENTAL OR CONSEQUENTIAL DAMAGES ARISING OUT OF THE
                                        USE OR INABILITY TO USE THE PROGRAM (INCLUDING BUT NOT LIMITED TO LOSS OF
                                        DATA OR DATA BEING RENDERED INACCURATE OR LOSSES SUSTAINED BY YOU OR THIRD
                                        PARTIES OR A FAILURE OF THE PROGRAM TO OPERATE WITH ANY OTHER PROGRAMS),
                                        EVEN IF SUCH HOLDER OR OTHER PARTY HAS BEEN ADVISED OF THE POSSIBILITY OF
                                        SUCH DAMAGES.
                                        
                                          17. Interpretation of Sections 15 and 16.
                                        
                                          If the disclaimer of warranty and limitation of liability provided
                                        above cannot be given local legal effect according to their terms,
                                        reviewing courts shall apply local law that most closely approximates
                                        an absolute waiver of all civil liability in connection with the
                                        Program, unless a warranty or assumption of liability accompanies a
                                        copy of the Program in return for a fee.
                                        
                                                             END OF TERMS AND CONDITIONS
                                        
                                                    How to Apply These Terms to Your New Programs
                                        
                                          If you develop a new program, and you want it to be of the greatest
                                        possible use to the public, the best way to achieve this is to make it
                                        free software which everyone can redistribute and change under these terms.
                                        
                                          To do so, attach the following notices to the program.  It is safest
                                        to attach them to the start of each source file to most effectively
                                        state the exclusion of warranty; and each file should have at least
                                        the "copyright" line and a pointer to where the full notice is found.
                                        
                                            <one line to give the program's name and a brief idea of what it does.>
                                            Copyright (C) <year>  <name of author>
                                        
                                            This program is free software: you can redistribute it and/or modify
                                            it under the terms of the GNU General Public License as published by
                                            the Free Software Foundation, either version 3 of the License, or
                                            (at your option) any later version.
                                        
                                            This program is distributed in the hope that it will be useful,
                                            but WITHOUT ANY WARRANTY; without even the implied warranty of
                                            MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE.  See the
                                            GNU General Public License for more details.
                                        
                                            You should have received a copy of the GNU General Public License
                                            along with this program.  If not, see <http://www.gnu.org/licenses/>.
                                        
                                        Also add information on how to contact you by electronic and paper mail.
                                        
                                          If the program does terminal interaction, make it output a short
                                        notice like this when it starts in an interactive mode:
                                        
                                            <program>  Copyright (C) <year>  <name of author>
                                            This program comes with ABSOLUTELY NO WARRANTY; for details type `show w'.
                                            This is free software, and you are welcome to redistribute it
                                            under certain conditions; type `show c' for details.
                                        
                                        The hypothetical commands `show w' and `show c' should show the appropriate
                                        parts of the General Public License.  Of course, your program's commands
                                        might be different; for a GUI interface, you would use an "about box".
                                        
                                          You should also get your employer (if you work as a programmer) or school,
                                        if any, to sign a "copyright disclaimer" for the program, if necessary.
                                        For more information on this, and how to apply and follow the GNU GPL, see
                                        <http://www.gnu.org/licenses/>.
                                        
                                          The GNU General Public License does not permit incorporating your program
                                        into proprietary programs.  If your program is a subroutine library, you
                                        may consider it more useful to permit linking proprietary applications with
                                        the library.  If this is what you want to do, use the GNU Lesser General
                                        Public License instead of this License.  But first, please read
                                        <http://www.gnu.org/philosophy/why-not-lgpl.html>.
                                        
                                        */

                                        File 5 of 11: EventsHistory
                                        // This software is a subject to Ambisafe License Agreement.
                                        // No use or distribution is allowed without written permission from Ambisafe.
                                        // https://ambisafe.com/terms.pdf
                                        
                                        contract Ambi {
                                            function getNodeAddress(bytes32 _nodeName) constant returns(address);
                                            function hasRelation(bytes32 _nodeName, bytes32 _relation, address _to) constant returns(bool);
                                            function addNode(bytes32 _nodeName, address _nodeAddress) constant returns(bool);
                                        }
                                        
                                        contract AmbiEnabled {
                                            Ambi public ambiC;
                                            bool public isImmortal;
                                            bytes32 public name;
                                        
                                            modifier checkAccess(bytes32 _role) {
                                                if(address(ambiC) != 0x0 && ambiC.hasRelation(name, _role, msg.sender)){
                                                    _
                                                }
                                            }
                                            
                                            function getAddress(bytes32 _name) constant returns (address) {
                                                return ambiC.getNodeAddress(_name);
                                            }
                                        
                                            function setAmbiAddress(address _ambi, bytes32 _name) returns (bool){
                                                if(address(ambiC) != 0x0){
                                                    return false;
                                                }
                                                Ambi ambiContract = Ambi(_ambi);
                                                if(ambiContract.getNodeAddress(_name)!=address(this)) {
                                                    if (!ambiContract.addNode(_name, address(this))){
                                                        return false;
                                                    }
                                                }
                                                name = _name;
                                                ambiC = ambiContract;
                                                return true;
                                            }
                                        
                                            function immortality() checkAccess("owner") returns(bool) {
                                                isImmortal = true;
                                                return true;
                                            }
                                        
                                            function remove() checkAccess("owner") returns(bool) {
                                                if (isImmortal) {
                                                    return false;
                                                }
                                                selfdestruct(msg.sender);
                                                return true;
                                            }
                                        }
                                        
                                        library StackDepthLib {
                                            // This will probably work with a value of 390 but no need to cut it
                                            // that close in the case that the optimizer changes slightly or
                                            // something causing that number to rise slightly.
                                            uint constant GAS_PER_DEPTH = 400;
                                        
                                            function checkDepth(address self, uint n) constant returns(bool) {
                                                if (n == 0) return true;
                                                return self.call.gas(GAS_PER_DEPTH * n)(0x21835af6, n - 1);
                                            }
                                        
                                            function __dig(uint n) constant {
                                                if (n == 0) return;
                                                if (!address(this).delegatecall(0x21835af6, n - 1)) throw;
                                            }
                                        }
                                        
                                        contract Safe {
                                            // Should always be placed as first modifier!
                                            modifier noValue {
                                                if (msg.value > 0) {
                                                    // Internal Out Of Gas/Throw: revert this transaction too;
                                                    // Call Stack Depth Limit reached: revert this transaction too;
                                                    // Recursive Call: safe, no any changes applied yet, we are inside of modifier.
                                                    _safeSend(msg.sender, msg.value);
                                                }
                                                _
                                            }
                                        
                                            modifier onlyHuman {
                                                if (_isHuman()) {
                                                    _
                                                }
                                            }
                                        
                                            modifier noCallback {
                                                if (!isCall) {
                                                    _
                                                }
                                            }
                                        
                                            modifier immutable(address _address) {
                                                if (_address == 0) {
                                                    _
                                                }
                                            }
                                        
                                            address stackDepthLib;
                                            function setupStackDepthLib(address _stackDepthLib) immutable(address(stackDepthLib)) returns(bool) {
                                                stackDepthLib = _stackDepthLib;
                                                return true;
                                            }
                                        
                                            modifier requireStackDepth(uint16 _depth) {
                                                if (stackDepthLib == 0x0) {
                                                    throw;
                                                }
                                                if (_depth > 1023) {
                                                    throw;
                                                }
                                                if (!stackDepthLib.delegatecall(0x32921690, stackDepthLib, _depth)) {
                                                    throw;
                                                }
                                                _
                                            }
                                        
                                            // Must not be used inside the functions that have noValue() modifier!
                                            function _safeFalse() internal noValue() returns(bool) {
                                                return false;
                                            }
                                        
                                            function _safeSend(address _to, uint _value) internal {
                                                if (!_unsafeSend(_to, _value)) {
                                                    throw;
                                                }
                                            }
                                        
                                            function _unsafeSend(address _to, uint _value) internal returns(bool) {
                                                return _to.call.value(_value)();
                                            }
                                        
                                            function _isContract() constant internal returns(bool) {
                                                return msg.sender != tx.origin;
                                            }
                                        
                                            function _isHuman() constant internal returns(bool) {
                                                return !_isContract();
                                            }
                                        
                                            bool private isCall = false;
                                            function _setupNoCallback() internal {
                                                isCall = true;
                                            }
                                        
                                            function _finishNoCallback() internal {
                                                isCall = false;
                                            }
                                        }
                                        
                                        /**
                                         * @title Events History universal contract.
                                         *
                                         * Contract serves as an Events storage and version history for a particular contract type.
                                         * Events appear on this contract address but their definitions provided by other contracts/libraries.
                                         * Version info is provided for historical and informational purposes.
                                         *
                                         * Note: all the non constant functions return false instead of throwing in case if state change
                                         * didn't happen yet.
                                         */
                                        contract EventsHistory is AmbiEnabled, Safe {
                                            // Event emitter signature to address with Event definiton mapping.
                                            mapping(bytes4 => address) public emitters;
                                        
                                            // Calling contract address to version mapping.
                                            mapping(address => uint) public versions;
                                        
                                            // Version to info mapping.
                                            mapping(uint => VersionInfo) public versionInfo;
                                        
                                            // Latest verion number.
                                            uint public latestVersion;
                                        
                                            struct VersionInfo {
                                                uint block;        // Block number in which version has been introduced.
                                                address by;        // Contract owner address who added version.
                                                address caller;    // Address of this version calling contract.
                                                string name;       // Version name, informative.
                                                string changelog;  // Version changelog, informative.
                                            }
                                        
                                            /**
                                             * Assign emitter address to a specified emit function signature.
                                             *
                                             * Can be set only once for each signature, and only by contract owner.
                                             * Caller contract should be sure that emitter for a particular signature will never change.
                                             *
                                             * @param _eventSignature signature of the event emitting function.
                                             * @param _emitter address with Event definition.
                                             *
                                             * @return success.
                                             */
                                            function addEmitter(bytes4 _eventSignature, address _emitter) noValue() checkAccess("admin") returns(bool) {
                                                if (emitters[_eventSignature] != 0x0) {
                                                    return false;
                                                }
                                                emitters[_eventSignature] = _emitter;
                                                return true;
                                            }
                                        
                                            /**
                                             * Introduce new caller contract version specifing version information.
                                             *
                                             * Can be set only once for each caller, and only by contract owner.
                                             * Name and changelog should not be empty.
                                             *
                                             * @param _caller address of the new caller.
                                             * @param _name version name.
                                             * @param _changelog version changelog.
                                             *
                                             * @return success.
                                             */
                                            function addVersion(address _caller, string _name, string _changelog) noValue() checkAccess("admin") returns(bool) {
                                                if (versions[_caller] != 0) {
                                                    return false;
                                                }
                                                if (bytes(_name).length == 0) {
                                                    return false;
                                                }
                                                if (bytes(_changelog).length == 0) {
                                                    return false;
                                                }
                                                uint version = ++latestVersion;
                                                versions[_caller] = version;
                                                versionInfo[version] = VersionInfo(block.number, msg.sender, _caller, _name, _changelog);
                                                return true;
                                            }
                                        
                                            /**
                                             * Event emitting fallback.
                                             *
                                             * Can be and only called caller with assigned version.
                                             * Resolves msg.sig to an emitter address, and calls it to emit an event.
                                             *
                                             * Throws if emit function signature is not registered, or call failed.
                                             */
                                            function () noValue() {
                                                if (versions[msg.sender] == 0) {
                                                    return;
                                                }
                                                // Internal Out Of Gas/Throw: revert this transaction too;
                                                // Call Stack Depth Limit reached: revert this transaction too;
                                                // Recursive Call: safe, all changes already made.
                                                if (!emitters[msg.sig].delegatecall(msg.data)) {
                                                    throw;
                                                }
                                            }
                                        }

                                        File 6 of 11: UniswapV3Pool
                                        // SPDX-License-Identifier: BUSL-1.1
                                        pragma solidity =0.7.6;
                                        import './interfaces/IUniswapV3Pool.sol';
                                        import './NoDelegateCall.sol';
                                        import './libraries/LowGasSafeMath.sol';
                                        import './libraries/SafeCast.sol';
                                        import './libraries/Tick.sol';
                                        import './libraries/TickBitmap.sol';
                                        import './libraries/Position.sol';
                                        import './libraries/Oracle.sol';
                                        import './libraries/FullMath.sol';
                                        import './libraries/FixedPoint128.sol';
                                        import './libraries/TransferHelper.sol';
                                        import './libraries/TickMath.sol';
                                        import './libraries/LiquidityMath.sol';
                                        import './libraries/SqrtPriceMath.sol';
                                        import './libraries/SwapMath.sol';
                                        import './interfaces/IUniswapV3PoolDeployer.sol';
                                        import './interfaces/IUniswapV3Factory.sol';
                                        import './interfaces/IERC20Minimal.sol';
                                        import './interfaces/callback/IUniswapV3MintCallback.sol';
                                        import './interfaces/callback/IUniswapV3SwapCallback.sol';
                                        import './interfaces/callback/IUniswapV3FlashCallback.sol';
                                        contract UniswapV3Pool is IUniswapV3Pool, NoDelegateCall {
                                            using LowGasSafeMath for uint256;
                                            using LowGasSafeMath for int256;
                                            using SafeCast for uint256;
                                            using SafeCast for int256;
                                            using Tick for mapping(int24 => Tick.Info);
                                            using TickBitmap for mapping(int16 => uint256);
                                            using Position for mapping(bytes32 => Position.Info);
                                            using Position for Position.Info;
                                            using Oracle for Oracle.Observation[65535];
                                            /// @inheritdoc IUniswapV3PoolImmutables
                                            address public immutable override factory;
                                            /// @inheritdoc IUniswapV3PoolImmutables
                                            address public immutable override token0;
                                            /// @inheritdoc IUniswapV3PoolImmutables
                                            address public immutable override token1;
                                            /// @inheritdoc IUniswapV3PoolImmutables
                                            uint24 public immutable override fee;
                                            /// @inheritdoc IUniswapV3PoolImmutables
                                            int24 public immutable override tickSpacing;
                                            /// @inheritdoc IUniswapV3PoolImmutables
                                            uint128 public immutable override maxLiquidityPerTick;
                                            struct Slot0 {
                                                // the current price
                                                uint160 sqrtPriceX96;
                                                // the current tick
                                                int24 tick;
                                                // the most-recently updated index of the observations array
                                                uint16 observationIndex;
                                                // the current maximum number of observations that are being stored
                                                uint16 observationCardinality;
                                                // the next maximum number of observations to store, triggered in observations.write
                                                uint16 observationCardinalityNext;
                                                // the current protocol fee as a percentage of the swap fee taken on withdrawal
                                                // represented as an integer denominator (1/x)%
                                                uint8 feeProtocol;
                                                // whether the pool is locked
                                                bool unlocked;
                                            }
                                            /// @inheritdoc IUniswapV3PoolState
                                            Slot0 public override slot0;
                                            /// @inheritdoc IUniswapV3PoolState
                                            uint256 public override feeGrowthGlobal0X128;
                                            /// @inheritdoc IUniswapV3PoolState
                                            uint256 public override feeGrowthGlobal1X128;
                                            // accumulated protocol fees in token0/token1 units
                                            struct ProtocolFees {
                                                uint128 token0;
                                                uint128 token1;
                                            }
                                            /// @inheritdoc IUniswapV3PoolState
                                            ProtocolFees public override protocolFees;
                                            /// @inheritdoc IUniswapV3PoolState
                                            uint128 public override liquidity;
                                            /// @inheritdoc IUniswapV3PoolState
                                            mapping(int24 => Tick.Info) public override ticks;
                                            /// @inheritdoc IUniswapV3PoolState
                                            mapping(int16 => uint256) public override tickBitmap;
                                            /// @inheritdoc IUniswapV3PoolState
                                            mapping(bytes32 => Position.Info) public override positions;
                                            /// @inheritdoc IUniswapV3PoolState
                                            Oracle.Observation[65535] public override observations;
                                            /// @dev Mutually exclusive reentrancy protection into the pool to/from a method. This method also prevents entrance
                                            /// to a function before the pool is initialized. The reentrancy guard is required throughout the contract because
                                            /// we use balance checks to determine the payment status of interactions such as mint, swap and flash.
                                            modifier lock() {
                                                require(slot0.unlocked, 'LOK');
                                                slot0.unlocked = false;
                                                _;
                                                slot0.unlocked = true;
                                            }
                                            /// @dev Prevents calling a function from anyone except the address returned by IUniswapV3Factory#owner()
                                            modifier onlyFactoryOwner() {
                                                require(msg.sender == IUniswapV3Factory(factory).owner());
                                                _;
                                            }
                                            constructor() {
                                                int24 _tickSpacing;
                                                (factory, token0, token1, fee, _tickSpacing) = IUniswapV3PoolDeployer(msg.sender).parameters();
                                                tickSpacing = _tickSpacing;
                                                maxLiquidityPerTick = Tick.tickSpacingToMaxLiquidityPerTick(_tickSpacing);
                                            }
                                            /// @dev Common checks for valid tick inputs.
                                            function checkTicks(int24 tickLower, int24 tickUpper) private pure {
                                                require(tickLower < tickUpper, 'TLU');
                                                require(tickLower >= TickMath.MIN_TICK, 'TLM');
                                                require(tickUpper <= TickMath.MAX_TICK, 'TUM');
                                            }
                                            /// @dev Returns the block timestamp truncated to 32 bits, i.e. mod 2**32. This method is overridden in tests.
                                            function _blockTimestamp() internal view virtual returns (uint32) {
                                                return uint32(block.timestamp); // truncation is desired
                                            }
                                            /// @dev Get the pool's balance of token0
                                            /// @dev This function is gas optimized to avoid a redundant extcodesize check in addition to the returndatasize
                                            /// check
                                            function balance0() private view returns (uint256) {
                                                (bool success, bytes memory data) =
                                                    token0.staticcall(abi.encodeWithSelector(IERC20Minimal.balanceOf.selector, address(this)));
                                                require(success && data.length >= 32);
                                                return abi.decode(data, (uint256));
                                            }
                                            /// @dev Get the pool's balance of token1
                                            /// @dev This function is gas optimized to avoid a redundant extcodesize check in addition to the returndatasize
                                            /// check
                                            function balance1() private view returns (uint256) {
                                                (bool success, bytes memory data) =
                                                    token1.staticcall(abi.encodeWithSelector(IERC20Minimal.balanceOf.selector, address(this)));
                                                require(success && data.length >= 32);
                                                return abi.decode(data, (uint256));
                                            }
                                            /// @inheritdoc IUniswapV3PoolDerivedState
                                            function snapshotCumulativesInside(int24 tickLower, int24 tickUpper)
                                                external
                                                view
                                                override
                                                noDelegateCall
                                                returns (
                                                    int56 tickCumulativeInside,
                                                    uint160 secondsPerLiquidityInsideX128,
                                                    uint32 secondsInside
                                                )
                                            {
                                                checkTicks(tickLower, tickUpper);
                                                int56 tickCumulativeLower;
                                                int56 tickCumulativeUpper;
                                                uint160 secondsPerLiquidityOutsideLowerX128;
                                                uint160 secondsPerLiquidityOutsideUpperX128;
                                                uint32 secondsOutsideLower;
                                                uint32 secondsOutsideUpper;
                                                {
                                                    Tick.Info storage lower = ticks[tickLower];
                                                    Tick.Info storage upper = ticks[tickUpper];
                                                    bool initializedLower;
                                                    (tickCumulativeLower, secondsPerLiquidityOutsideLowerX128, secondsOutsideLower, initializedLower) = (
                                                        lower.tickCumulativeOutside,
                                                        lower.secondsPerLiquidityOutsideX128,
                                                        lower.secondsOutside,
                                                        lower.initialized
                                                    );
                                                    require(initializedLower);
                                                    bool initializedUpper;
                                                    (tickCumulativeUpper, secondsPerLiquidityOutsideUpperX128, secondsOutsideUpper, initializedUpper) = (
                                                        upper.tickCumulativeOutside,
                                                        upper.secondsPerLiquidityOutsideX128,
                                                        upper.secondsOutside,
                                                        upper.initialized
                                                    );
                                                    require(initializedUpper);
                                                }
                                                Slot0 memory _slot0 = slot0;
                                                if (_slot0.tick < tickLower) {
                                                    return (
                                                        tickCumulativeLower - tickCumulativeUpper,
                                                        secondsPerLiquidityOutsideLowerX128 - secondsPerLiquidityOutsideUpperX128,
                                                        secondsOutsideLower - secondsOutsideUpper
                                                    );
                                                } else if (_slot0.tick < tickUpper) {
                                                    uint32 time = _blockTimestamp();
                                                    (int56 tickCumulative, uint160 secondsPerLiquidityCumulativeX128) =
                                                        observations.observeSingle(
                                                            time,
                                                            0,
                                                            _slot0.tick,
                                                            _slot0.observationIndex,
                                                            liquidity,
                                                            _slot0.observationCardinality
                                                        );
                                                    return (
                                                        tickCumulative - tickCumulativeLower - tickCumulativeUpper,
                                                        secondsPerLiquidityCumulativeX128 -
                                                            secondsPerLiquidityOutsideLowerX128 -
                                                            secondsPerLiquidityOutsideUpperX128,
                                                        time - secondsOutsideLower - secondsOutsideUpper
                                                    );
                                                } else {
                                                    return (
                                                        tickCumulativeUpper - tickCumulativeLower,
                                                        secondsPerLiquidityOutsideUpperX128 - secondsPerLiquidityOutsideLowerX128,
                                                        secondsOutsideUpper - secondsOutsideLower
                                                    );
                                                }
                                            }
                                            /// @inheritdoc IUniswapV3PoolDerivedState
                                            function observe(uint32[] calldata secondsAgos)
                                                external
                                                view
                                                override
                                                noDelegateCall
                                                returns (int56[] memory tickCumulatives, uint160[] memory secondsPerLiquidityCumulativeX128s)
                                            {
                                                return
                                                    observations.observe(
                                                        _blockTimestamp(),
                                                        secondsAgos,
                                                        slot0.tick,
                                                        slot0.observationIndex,
                                                        liquidity,
                                                        slot0.observationCardinality
                                                    );
                                            }
                                            /// @inheritdoc IUniswapV3PoolActions
                                            function increaseObservationCardinalityNext(uint16 observationCardinalityNext)
                                                external
                                                override
                                                lock
                                                noDelegateCall
                                            {
                                                uint16 observationCardinalityNextOld = slot0.observationCardinalityNext; // for the event
                                                uint16 observationCardinalityNextNew =
                                                    observations.grow(observationCardinalityNextOld, observationCardinalityNext);
                                                slot0.observationCardinalityNext = observationCardinalityNextNew;
                                                if (observationCardinalityNextOld != observationCardinalityNextNew)
                                                    emit IncreaseObservationCardinalityNext(observationCardinalityNextOld, observationCardinalityNextNew);
                                            }
                                            /// @inheritdoc IUniswapV3PoolActions
                                            /// @dev not locked because it initializes unlocked
                                            function initialize(uint160 sqrtPriceX96) external override {
                                                require(slot0.sqrtPriceX96 == 0, 'AI');
                                                int24 tick = TickMath.getTickAtSqrtRatio(sqrtPriceX96);
                                                (uint16 cardinality, uint16 cardinalityNext) = observations.initialize(_blockTimestamp());
                                                slot0 = Slot0({
                                                    sqrtPriceX96: sqrtPriceX96,
                                                    tick: tick,
                                                    observationIndex: 0,
                                                    observationCardinality: cardinality,
                                                    observationCardinalityNext: cardinalityNext,
                                                    feeProtocol: 0,
                                                    unlocked: true
                                                });
                                                emit Initialize(sqrtPriceX96, tick);
                                            }
                                            struct ModifyPositionParams {
                                                // the address that owns the position
                                                address owner;
                                                // the lower and upper tick of the position
                                                int24 tickLower;
                                                int24 tickUpper;
                                                // any change in liquidity
                                                int128 liquidityDelta;
                                            }
                                            /// @dev Effect some changes to a position
                                            /// @param params the position details and the change to the position's liquidity to effect
                                            /// @return position a storage pointer referencing the position with the given owner and tick range
                                            /// @return amount0 the amount of token0 owed to the pool, negative if the pool should pay the recipient
                                            /// @return amount1 the amount of token1 owed to the pool, negative if the pool should pay the recipient
                                            function _modifyPosition(ModifyPositionParams memory params)
                                                private
                                                noDelegateCall
                                                returns (
                                                    Position.Info storage position,
                                                    int256 amount0,
                                                    int256 amount1
                                                )
                                            {
                                                checkTicks(params.tickLower, params.tickUpper);
                                                Slot0 memory _slot0 = slot0; // SLOAD for gas optimization
                                                position = _updatePosition(
                                                    params.owner,
                                                    params.tickLower,
                                                    params.tickUpper,
                                                    params.liquidityDelta,
                                                    _slot0.tick
                                                );
                                                if (params.liquidityDelta != 0) {
                                                    if (_slot0.tick < params.tickLower) {
                                                        // current tick is below the passed range; liquidity can only become in range by crossing from left to
                                                        // right, when we'll need _more_ token0 (it's becoming more valuable) so user must provide it
                                                        amount0 = SqrtPriceMath.getAmount0Delta(
                                                            TickMath.getSqrtRatioAtTick(params.tickLower),
                                                            TickMath.getSqrtRatioAtTick(params.tickUpper),
                                                            params.liquidityDelta
                                                        );
                                                    } else if (_slot0.tick < params.tickUpper) {
                                                        // current tick is inside the passed range
                                                        uint128 liquidityBefore = liquidity; // SLOAD for gas optimization
                                                        // write an oracle entry
                                                        (slot0.observationIndex, slot0.observationCardinality) = observations.write(
                                                            _slot0.observationIndex,
                                                            _blockTimestamp(),
                                                            _slot0.tick,
                                                            liquidityBefore,
                                                            _slot0.observationCardinality,
                                                            _slot0.observationCardinalityNext
                                                        );
                                                        amount0 = SqrtPriceMath.getAmount0Delta(
                                                            _slot0.sqrtPriceX96,
                                                            TickMath.getSqrtRatioAtTick(params.tickUpper),
                                                            params.liquidityDelta
                                                        );
                                                        amount1 = SqrtPriceMath.getAmount1Delta(
                                                            TickMath.getSqrtRatioAtTick(params.tickLower),
                                                            _slot0.sqrtPriceX96,
                                                            params.liquidityDelta
                                                        );
                                                        liquidity = LiquidityMath.addDelta(liquidityBefore, params.liquidityDelta);
                                                    } else {
                                                        // current tick is above the passed range; liquidity can only become in range by crossing from right to
                                                        // left, when we'll need _more_ token1 (it's becoming more valuable) so user must provide it
                                                        amount1 = SqrtPriceMath.getAmount1Delta(
                                                            TickMath.getSqrtRatioAtTick(params.tickLower),
                                                            TickMath.getSqrtRatioAtTick(params.tickUpper),
                                                            params.liquidityDelta
                                                        );
                                                    }
                                                }
                                            }
                                            /// @dev Gets and updates a position with the given liquidity delta
                                            /// @param owner the owner of the position
                                            /// @param tickLower the lower tick of the position's tick range
                                            /// @param tickUpper the upper tick of the position's tick range
                                            /// @param tick the current tick, passed to avoid sloads
                                            function _updatePosition(
                                                address owner,
                                                int24 tickLower,
                                                int24 tickUpper,
                                                int128 liquidityDelta,
                                                int24 tick
                                            ) private returns (Position.Info storage position) {
                                                position = positions.get(owner, tickLower, tickUpper);
                                                uint256 _feeGrowthGlobal0X128 = feeGrowthGlobal0X128; // SLOAD for gas optimization
                                                uint256 _feeGrowthGlobal1X128 = feeGrowthGlobal1X128; // SLOAD for gas optimization
                                                // if we need to update the ticks, do it
                                                bool flippedLower;
                                                bool flippedUpper;
                                                if (liquidityDelta != 0) {
                                                    uint32 time = _blockTimestamp();
                                                    (int56 tickCumulative, uint160 secondsPerLiquidityCumulativeX128) =
                                                        observations.observeSingle(
                                                            time,
                                                            0,
                                                            slot0.tick,
                                                            slot0.observationIndex,
                                                            liquidity,
                                                            slot0.observationCardinality
                                                        );
                                                    flippedLower = ticks.update(
                                                        tickLower,
                                                        tick,
                                                        liquidityDelta,
                                                        _feeGrowthGlobal0X128,
                                                        _feeGrowthGlobal1X128,
                                                        secondsPerLiquidityCumulativeX128,
                                                        tickCumulative,
                                                        time,
                                                        false,
                                                        maxLiquidityPerTick
                                                    );
                                                    flippedUpper = ticks.update(
                                                        tickUpper,
                                                        tick,
                                                        liquidityDelta,
                                                        _feeGrowthGlobal0X128,
                                                        _feeGrowthGlobal1X128,
                                                        secondsPerLiquidityCumulativeX128,
                                                        tickCumulative,
                                                        time,
                                                        true,
                                                        maxLiquidityPerTick
                                                    );
                                                    if (flippedLower) {
                                                        tickBitmap.flipTick(tickLower, tickSpacing);
                                                    }
                                                    if (flippedUpper) {
                                                        tickBitmap.flipTick(tickUpper, tickSpacing);
                                                    }
                                                }
                                                (uint256 feeGrowthInside0X128, uint256 feeGrowthInside1X128) =
                                                    ticks.getFeeGrowthInside(tickLower, tickUpper, tick, _feeGrowthGlobal0X128, _feeGrowthGlobal1X128);
                                                position.update(liquidityDelta, feeGrowthInside0X128, feeGrowthInside1X128);
                                                // clear any tick data that is no longer needed
                                                if (liquidityDelta < 0) {
                                                    if (flippedLower) {
                                                        ticks.clear(tickLower);
                                                    }
                                                    if (flippedUpper) {
                                                        ticks.clear(tickUpper);
                                                    }
                                                }
                                            }
                                            /// @inheritdoc IUniswapV3PoolActions
                                            /// @dev noDelegateCall is applied indirectly via _modifyPosition
                                            function mint(
                                                address recipient,
                                                int24 tickLower,
                                                int24 tickUpper,
                                                uint128 amount,
                                                bytes calldata data
                                            ) external override lock returns (uint256 amount0, uint256 amount1) {
                                                require(amount > 0);
                                                (, int256 amount0Int, int256 amount1Int) =
                                                    _modifyPosition(
                                                        ModifyPositionParams({
                                                            owner: recipient,
                                                            tickLower: tickLower,
                                                            tickUpper: tickUpper,
                                                            liquidityDelta: int256(amount).toInt128()
                                                        })
                                                    );
                                                amount0 = uint256(amount0Int);
                                                amount1 = uint256(amount1Int);
                                                uint256 balance0Before;
                                                uint256 balance1Before;
                                                if (amount0 > 0) balance0Before = balance0();
                                                if (amount1 > 0) balance1Before = balance1();
                                                IUniswapV3MintCallback(msg.sender).uniswapV3MintCallback(amount0, amount1, data);
                                                if (amount0 > 0) require(balance0Before.add(amount0) <= balance0(), 'M0');
                                                if (amount1 > 0) require(balance1Before.add(amount1) <= balance1(), 'M1');
                                                emit Mint(msg.sender, recipient, tickLower, tickUpper, amount, amount0, amount1);
                                            }
                                            /// @inheritdoc IUniswapV3PoolActions
                                            function collect(
                                                address recipient,
                                                int24 tickLower,
                                                int24 tickUpper,
                                                uint128 amount0Requested,
                                                uint128 amount1Requested
                                            ) external override lock returns (uint128 amount0, uint128 amount1) {
                                                // we don't need to checkTicks here, because invalid positions will never have non-zero tokensOwed{0,1}
                                                Position.Info storage position = positions.get(msg.sender, tickLower, tickUpper);
                                                amount0 = amount0Requested > position.tokensOwed0 ? position.tokensOwed0 : amount0Requested;
                                                amount1 = amount1Requested > position.tokensOwed1 ? position.tokensOwed1 : amount1Requested;
                                                if (amount0 > 0) {
                                                    position.tokensOwed0 -= amount0;
                                                    TransferHelper.safeTransfer(token0, recipient, amount0);
                                                }
                                                if (amount1 > 0) {
                                                    position.tokensOwed1 -= amount1;
                                                    TransferHelper.safeTransfer(token1, recipient, amount1);
                                                }
                                                emit Collect(msg.sender, recipient, tickLower, tickUpper, amount0, amount1);
                                            }
                                            /// @inheritdoc IUniswapV3PoolActions
                                            /// @dev noDelegateCall is applied indirectly via _modifyPosition
                                            function burn(
                                                int24 tickLower,
                                                int24 tickUpper,
                                                uint128 amount
                                            ) external override lock returns (uint256 amount0, uint256 amount1) {
                                                (Position.Info storage position, int256 amount0Int, int256 amount1Int) =
                                                    _modifyPosition(
                                                        ModifyPositionParams({
                                                            owner: msg.sender,
                                                            tickLower: tickLower,
                                                            tickUpper: tickUpper,
                                                            liquidityDelta: -int256(amount).toInt128()
                                                        })
                                                    );
                                                amount0 = uint256(-amount0Int);
                                                amount1 = uint256(-amount1Int);
                                                if (amount0 > 0 || amount1 > 0) {
                                                    (position.tokensOwed0, position.tokensOwed1) = (
                                                        position.tokensOwed0 + uint128(amount0),
                                                        position.tokensOwed1 + uint128(amount1)
                                                    );
                                                }
                                                emit Burn(msg.sender, tickLower, tickUpper, amount, amount0, amount1);
                                            }
                                            struct SwapCache {
                                                // the protocol fee for the input token
                                                uint8 feeProtocol;
                                                // liquidity at the beginning of the swap
                                                uint128 liquidityStart;
                                                // the timestamp of the current block
                                                uint32 blockTimestamp;
                                                // the current value of the tick accumulator, computed only if we cross an initialized tick
                                                int56 tickCumulative;
                                                // the current value of seconds per liquidity accumulator, computed only if we cross an initialized tick
                                                uint160 secondsPerLiquidityCumulativeX128;
                                                // whether we've computed and cached the above two accumulators
                                                bool computedLatestObservation;
                                            }
                                            // the top level state of the swap, the results of which are recorded in storage at the end
                                            struct SwapState {
                                                // the amount remaining to be swapped in/out of the input/output asset
                                                int256 amountSpecifiedRemaining;
                                                // the amount already swapped out/in of the output/input asset
                                                int256 amountCalculated;
                                                // current sqrt(price)
                                                uint160 sqrtPriceX96;
                                                // the tick associated with the current price
                                                int24 tick;
                                                // the global fee growth of the input token
                                                uint256 feeGrowthGlobalX128;
                                                // amount of input token paid as protocol fee
                                                uint128 protocolFee;
                                                // the current liquidity in range
                                                uint128 liquidity;
                                            }
                                            struct StepComputations {
                                                // the price at the beginning of the step
                                                uint160 sqrtPriceStartX96;
                                                // the next tick to swap to from the current tick in the swap direction
                                                int24 tickNext;
                                                // whether tickNext is initialized or not
                                                bool initialized;
                                                // sqrt(price) for the next tick (1/0)
                                                uint160 sqrtPriceNextX96;
                                                // how much is being swapped in in this step
                                                uint256 amountIn;
                                                // how much is being swapped out
                                                uint256 amountOut;
                                                // how much fee is being paid in
                                                uint256 feeAmount;
                                            }
                                            /// @inheritdoc IUniswapV3PoolActions
                                            function swap(
                                                address recipient,
                                                bool zeroForOne,
                                                int256 amountSpecified,
                                                uint160 sqrtPriceLimitX96,
                                                bytes calldata data
                                            ) external override noDelegateCall returns (int256 amount0, int256 amount1) {
                                                require(amountSpecified != 0, 'AS');
                                                Slot0 memory slot0Start = slot0;
                                                require(slot0Start.unlocked, 'LOK');
                                                require(
                                                    zeroForOne
                                                        ? sqrtPriceLimitX96 < slot0Start.sqrtPriceX96 && sqrtPriceLimitX96 > TickMath.MIN_SQRT_RATIO
                                                        : sqrtPriceLimitX96 > slot0Start.sqrtPriceX96 && sqrtPriceLimitX96 < TickMath.MAX_SQRT_RATIO,
                                                    'SPL'
                                                );
                                                slot0.unlocked = false;
                                                SwapCache memory cache =
                                                    SwapCache({
                                                        liquidityStart: liquidity,
                                                        blockTimestamp: _blockTimestamp(),
                                                        feeProtocol: zeroForOne ? (slot0Start.feeProtocol % 16) : (slot0Start.feeProtocol >> 4),
                                                        secondsPerLiquidityCumulativeX128: 0,
                                                        tickCumulative: 0,
                                                        computedLatestObservation: false
                                                    });
                                                bool exactInput = amountSpecified > 0;
                                                SwapState memory state =
                                                    SwapState({
                                                        amountSpecifiedRemaining: amountSpecified,
                                                        amountCalculated: 0,
                                                        sqrtPriceX96: slot0Start.sqrtPriceX96,
                                                        tick: slot0Start.tick,
                                                        feeGrowthGlobalX128: zeroForOne ? feeGrowthGlobal0X128 : feeGrowthGlobal1X128,
                                                        protocolFee: 0,
                                                        liquidity: cache.liquidityStart
                                                    });
                                                // continue swapping as long as we haven't used the entire input/output and haven't reached the price limit
                                                while (state.amountSpecifiedRemaining != 0 && state.sqrtPriceX96 != sqrtPriceLimitX96) {
                                                    StepComputations memory step;
                                                    step.sqrtPriceStartX96 = state.sqrtPriceX96;
                                                    (step.tickNext, step.initialized) = tickBitmap.nextInitializedTickWithinOneWord(
                                                        state.tick,
                                                        tickSpacing,
                                                        zeroForOne
                                                    );
                                                    // ensure that we do not overshoot the min/max tick, as the tick bitmap is not aware of these bounds
                                                    if (step.tickNext < TickMath.MIN_TICK) {
                                                        step.tickNext = TickMath.MIN_TICK;
                                                    } else if (step.tickNext > TickMath.MAX_TICK) {
                                                        step.tickNext = TickMath.MAX_TICK;
                                                    }
                                                    // get the price for the next tick
                                                    step.sqrtPriceNextX96 = TickMath.getSqrtRatioAtTick(step.tickNext);
                                                    // compute values to swap to the target tick, price limit, or point where input/output amount is exhausted
                                                    (state.sqrtPriceX96, step.amountIn, step.amountOut, step.feeAmount) = SwapMath.computeSwapStep(
                                                        state.sqrtPriceX96,
                                                        (zeroForOne ? step.sqrtPriceNextX96 < sqrtPriceLimitX96 : step.sqrtPriceNextX96 > sqrtPriceLimitX96)
                                                            ? sqrtPriceLimitX96
                                                            : step.sqrtPriceNextX96,
                                                        state.liquidity,
                                                        state.amountSpecifiedRemaining,
                                                        fee
                                                    );
                                                    if (exactInput) {
                                                        state.amountSpecifiedRemaining -= (step.amountIn + step.feeAmount).toInt256();
                                                        state.amountCalculated = state.amountCalculated.sub(step.amountOut.toInt256());
                                                    } else {
                                                        state.amountSpecifiedRemaining += step.amountOut.toInt256();
                                                        state.amountCalculated = state.amountCalculated.add((step.amountIn + step.feeAmount).toInt256());
                                                    }
                                                    // if the protocol fee is on, calculate how much is owed, decrement feeAmount, and increment protocolFee
                                                    if (cache.feeProtocol > 0) {
                                                        uint256 delta = step.feeAmount / cache.feeProtocol;
                                                        step.feeAmount -= delta;
                                                        state.protocolFee += uint128(delta);
                                                    }
                                                    // update global fee tracker
                                                    if (state.liquidity > 0)
                                                        state.feeGrowthGlobalX128 += FullMath.mulDiv(step.feeAmount, FixedPoint128.Q128, state.liquidity);
                                                    // shift tick if we reached the next price
                                                    if (state.sqrtPriceX96 == step.sqrtPriceNextX96) {
                                                        // if the tick is initialized, run the tick transition
                                                        if (step.initialized) {
                                                            // check for the placeholder value, which we replace with the actual value the first time the swap
                                                            // crosses an initialized tick
                                                            if (!cache.computedLatestObservation) {
                                                                (cache.tickCumulative, cache.secondsPerLiquidityCumulativeX128) = observations.observeSingle(
                                                                    cache.blockTimestamp,
                                                                    0,
                                                                    slot0Start.tick,
                                                                    slot0Start.observationIndex,
                                                                    cache.liquidityStart,
                                                                    slot0Start.observationCardinality
                                                                );
                                                                cache.computedLatestObservation = true;
                                                            }
                                                            int128 liquidityNet =
                                                                ticks.cross(
                                                                    step.tickNext,
                                                                    (zeroForOne ? state.feeGrowthGlobalX128 : feeGrowthGlobal0X128),
                                                                    (zeroForOne ? feeGrowthGlobal1X128 : state.feeGrowthGlobalX128),
                                                                    cache.secondsPerLiquidityCumulativeX128,
                                                                    cache.tickCumulative,
                                                                    cache.blockTimestamp
                                                                );
                                                            // if we're moving leftward, we interpret liquidityNet as the opposite sign
                                                            // safe because liquidityNet cannot be type(int128).min
                                                            if (zeroForOne) liquidityNet = -liquidityNet;
                                                            state.liquidity = LiquidityMath.addDelta(state.liquidity, liquidityNet);
                                                        }
                                                        state.tick = zeroForOne ? step.tickNext - 1 : step.tickNext;
                                                    } else if (state.sqrtPriceX96 != step.sqrtPriceStartX96) {
                                                        // recompute unless we're on a lower tick boundary (i.e. already transitioned ticks), and haven't moved
                                                        state.tick = TickMath.getTickAtSqrtRatio(state.sqrtPriceX96);
                                                    }
                                                }
                                                // update tick and write an oracle entry if the tick change
                                                if (state.tick != slot0Start.tick) {
                                                    (uint16 observationIndex, uint16 observationCardinality) =
                                                        observations.write(
                                                            slot0Start.observationIndex,
                                                            cache.blockTimestamp,
                                                            slot0Start.tick,
                                                            cache.liquidityStart,
                                                            slot0Start.observationCardinality,
                                                            slot0Start.observationCardinalityNext
                                                        );
                                                    (slot0.sqrtPriceX96, slot0.tick, slot0.observationIndex, slot0.observationCardinality) = (
                                                        state.sqrtPriceX96,
                                                        state.tick,
                                                        observationIndex,
                                                        observationCardinality
                                                    );
                                                } else {
                                                    // otherwise just update the price
                                                    slot0.sqrtPriceX96 = state.sqrtPriceX96;
                                                }
                                                // update liquidity if it changed
                                                if (cache.liquidityStart != state.liquidity) liquidity = state.liquidity;
                                                // update fee growth global and, if necessary, protocol fees
                                                // overflow is acceptable, protocol has to withdraw before it hits type(uint128).max fees
                                                if (zeroForOne) {
                                                    feeGrowthGlobal0X128 = state.feeGrowthGlobalX128;
                                                    if (state.protocolFee > 0) protocolFees.token0 += state.protocolFee;
                                                } else {
                                                    feeGrowthGlobal1X128 = state.feeGrowthGlobalX128;
                                                    if (state.protocolFee > 0) protocolFees.token1 += state.protocolFee;
                                                }
                                                (amount0, amount1) = zeroForOne == exactInput
                                                    ? (amountSpecified - state.amountSpecifiedRemaining, state.amountCalculated)
                                                    : (state.amountCalculated, amountSpecified - state.amountSpecifiedRemaining);
                                                // do the transfers and collect payment
                                                if (zeroForOne) {
                                                    if (amount1 < 0) TransferHelper.safeTransfer(token1, recipient, uint256(-amount1));
                                                    uint256 balance0Before = balance0();
                                                    IUniswapV3SwapCallback(msg.sender).uniswapV3SwapCallback(amount0, amount1, data);
                                                    require(balance0Before.add(uint256(amount0)) <= balance0(), 'IIA');
                                                } else {
                                                    if (amount0 < 0) TransferHelper.safeTransfer(token0, recipient, uint256(-amount0));
                                                    uint256 balance1Before = balance1();
                                                    IUniswapV3SwapCallback(msg.sender).uniswapV3SwapCallback(amount0, amount1, data);
                                                    require(balance1Before.add(uint256(amount1)) <= balance1(), 'IIA');
                                                }
                                                emit Swap(msg.sender, recipient, amount0, amount1, state.sqrtPriceX96, state.liquidity, state.tick);
                                                slot0.unlocked = true;
                                            }
                                            /// @inheritdoc IUniswapV3PoolActions
                                            function flash(
                                                address recipient,
                                                uint256 amount0,
                                                uint256 amount1,
                                                bytes calldata data
                                            ) external override lock noDelegateCall {
                                                uint128 _liquidity = liquidity;
                                                require(_liquidity > 0, 'L');
                                                uint256 fee0 = FullMath.mulDivRoundingUp(amount0, fee, 1e6);
                                                uint256 fee1 = FullMath.mulDivRoundingUp(amount1, fee, 1e6);
                                                uint256 balance0Before = balance0();
                                                uint256 balance1Before = balance1();
                                                if (amount0 > 0) TransferHelper.safeTransfer(token0, recipient, amount0);
                                                if (amount1 > 0) TransferHelper.safeTransfer(token1, recipient, amount1);
                                                IUniswapV3FlashCallback(msg.sender).uniswapV3FlashCallback(fee0, fee1, data);
                                                uint256 balance0After = balance0();
                                                uint256 balance1After = balance1();
                                                require(balance0Before.add(fee0) <= balance0After, 'F0');
                                                require(balance1Before.add(fee1) <= balance1After, 'F1');
                                                // sub is safe because we know balanceAfter is gt balanceBefore by at least fee
                                                uint256 paid0 = balance0After - balance0Before;
                                                uint256 paid1 = balance1After - balance1Before;
                                                if (paid0 > 0) {
                                                    uint8 feeProtocol0 = slot0.feeProtocol % 16;
                                                    uint256 fees0 = feeProtocol0 == 0 ? 0 : paid0 / feeProtocol0;
                                                    if (uint128(fees0) > 0) protocolFees.token0 += uint128(fees0);
                                                    feeGrowthGlobal0X128 += FullMath.mulDiv(paid0 - fees0, FixedPoint128.Q128, _liquidity);
                                                }
                                                if (paid1 > 0) {
                                                    uint8 feeProtocol1 = slot0.feeProtocol >> 4;
                                                    uint256 fees1 = feeProtocol1 == 0 ? 0 : paid1 / feeProtocol1;
                                                    if (uint128(fees1) > 0) protocolFees.token1 += uint128(fees1);
                                                    feeGrowthGlobal1X128 += FullMath.mulDiv(paid1 - fees1, FixedPoint128.Q128, _liquidity);
                                                }
                                                emit Flash(msg.sender, recipient, amount0, amount1, paid0, paid1);
                                            }
                                            /// @inheritdoc IUniswapV3PoolOwnerActions
                                            function setFeeProtocol(uint8 feeProtocol0, uint8 feeProtocol1) external override lock onlyFactoryOwner {
                                                require(
                                                    (feeProtocol0 == 0 || (feeProtocol0 >= 4 && feeProtocol0 <= 10)) &&
                                                        (feeProtocol1 == 0 || (feeProtocol1 >= 4 && feeProtocol1 <= 10))
                                                );
                                                uint8 feeProtocolOld = slot0.feeProtocol;
                                                slot0.feeProtocol = feeProtocol0 + (feeProtocol1 << 4);
                                                emit SetFeeProtocol(feeProtocolOld % 16, feeProtocolOld >> 4, feeProtocol0, feeProtocol1);
                                            }
                                            /// @inheritdoc IUniswapV3PoolOwnerActions
                                            function collectProtocol(
                                                address recipient,
                                                uint128 amount0Requested,
                                                uint128 amount1Requested
                                            ) external override lock onlyFactoryOwner returns (uint128 amount0, uint128 amount1) {
                                                amount0 = amount0Requested > protocolFees.token0 ? protocolFees.token0 : amount0Requested;
                                                amount1 = amount1Requested > protocolFees.token1 ? protocolFees.token1 : amount1Requested;
                                                if (amount0 > 0) {
                                                    if (amount0 == protocolFees.token0) amount0--; // ensure that the slot is not cleared, for gas savings
                                                    protocolFees.token0 -= amount0;
                                                    TransferHelper.safeTransfer(token0, recipient, amount0);
                                                }
                                                if (amount1 > 0) {
                                                    if (amount1 == protocolFees.token1) amount1--; // ensure that the slot is not cleared, for gas savings
                                                    protocolFees.token1 -= amount1;
                                                    TransferHelper.safeTransfer(token1, recipient, amount1);
                                                }
                                                emit CollectProtocol(msg.sender, recipient, amount0, amount1);
                                            }
                                        }
                                        // SPDX-License-Identifier: GPL-2.0-or-later
                                        pragma solidity >=0.5.0;
                                        import './pool/IUniswapV3PoolImmutables.sol';
                                        import './pool/IUniswapV3PoolState.sol';
                                        import './pool/IUniswapV3PoolDerivedState.sol';
                                        import './pool/IUniswapV3PoolActions.sol';
                                        import './pool/IUniswapV3PoolOwnerActions.sol';
                                        import './pool/IUniswapV3PoolEvents.sol';
                                        /// @title The interface for a Uniswap V3 Pool
                                        /// @notice A Uniswap pool facilitates swapping and automated market making between any two assets that strictly conform
                                        /// to the ERC20 specification
                                        /// @dev The pool interface is broken up into many smaller pieces
                                        interface IUniswapV3Pool is
                                            IUniswapV3PoolImmutables,
                                            IUniswapV3PoolState,
                                            IUniswapV3PoolDerivedState,
                                            IUniswapV3PoolActions,
                                            IUniswapV3PoolOwnerActions,
                                            IUniswapV3PoolEvents
                                        {
                                        }
                                        // SPDX-License-Identifier: BUSL-1.1
                                        pragma solidity =0.7.6;
                                        /// @title Prevents delegatecall to a contract
                                        /// @notice Base contract that provides a modifier for preventing delegatecall to methods in a child contract
                                        abstract contract NoDelegateCall {
                                            /// @dev The original address of this contract
                                            address private immutable original;
                                            constructor() {
                                                // Immutables are computed in the init code of the contract, and then inlined into the deployed bytecode.
                                                // In other words, this variable won't change when it's checked at runtime.
                                                original = address(this);
                                            }
                                            /// @dev Private method is used instead of inlining into modifier because modifiers are copied into each method,
                                            ///     and the use of immutable means the address bytes are copied in every place the modifier is used.
                                            function checkNotDelegateCall() private view {
                                                require(address(this) == original);
                                            }
                                            /// @notice Prevents delegatecall into the modified method
                                            modifier noDelegateCall() {
                                                checkNotDelegateCall();
                                                _;
                                            }
                                        }
                                        // SPDX-License-Identifier: GPL-2.0-or-later
                                        pragma solidity >=0.7.0;
                                        /// @title Optimized overflow and underflow safe math operations
                                        /// @notice Contains methods for doing math operations that revert on overflow or underflow for minimal gas cost
                                        library LowGasSafeMath {
                                            /// @notice Returns x + y, reverts if sum overflows uint256
                                            /// @param x The augend
                                            /// @param y The addend
                                            /// @return z The sum of x and y
                                            function add(uint256 x, uint256 y) internal pure returns (uint256 z) {
                                                require((z = x + y) >= x);
                                            }
                                            /// @notice Returns x - y, reverts if underflows
                                            /// @param x The minuend
                                            /// @param y The subtrahend
                                            /// @return z The difference of x and y
                                            function sub(uint256 x, uint256 y) internal pure returns (uint256 z) {
                                                require((z = x - y) <= x);
                                            }
                                            /// @notice Returns x * y, reverts if overflows
                                            /// @param x The multiplicand
                                            /// @param y The multiplier
                                            /// @return z The product of x and y
                                            function mul(uint256 x, uint256 y) internal pure returns (uint256 z) {
                                                require(x == 0 || (z = x * y) / x == y);
                                            }
                                            /// @notice Returns x + y, reverts if overflows or underflows
                                            /// @param x The augend
                                            /// @param y The addend
                                            /// @return z The sum of x and y
                                            function add(int256 x, int256 y) internal pure returns (int256 z) {
                                                require((z = x + y) >= x == (y >= 0));
                                            }
                                            /// @notice Returns x - y, reverts if overflows or underflows
                                            /// @param x The minuend
                                            /// @param y The subtrahend
                                            /// @return z The difference of x and y
                                            function sub(int256 x, int256 y) internal pure returns (int256 z) {
                                                require((z = x - y) <= x == (y >= 0));
                                            }
                                        }
                                        // SPDX-License-Identifier: GPL-2.0-or-later
                                        pragma solidity >=0.5.0;
                                        /// @title Safe casting methods
                                        /// @notice Contains methods for safely casting between types
                                        library SafeCast {
                                            /// @notice Cast a uint256 to a uint160, revert on overflow
                                            /// @param y The uint256 to be downcasted
                                            /// @return z The downcasted integer, now type uint160
                                            function toUint160(uint256 y) internal pure returns (uint160 z) {
                                                require((z = uint160(y)) == y);
                                            }
                                            /// @notice Cast a int256 to a int128, revert on overflow or underflow
                                            /// @param y The int256 to be downcasted
                                            /// @return z The downcasted integer, now type int128
                                            function toInt128(int256 y) internal pure returns (int128 z) {
                                                require((z = int128(y)) == y);
                                            }
                                            /// @notice Cast a uint256 to a int256, revert on overflow
                                            /// @param y The uint256 to be casted
                                            /// @return z The casted integer, now type int256
                                            function toInt256(uint256 y) internal pure returns (int256 z) {
                                                require(y < 2**255);
                                                z = int256(y);
                                            }
                                        }
                                        // SPDX-License-Identifier: BUSL-1.1
                                        pragma solidity >=0.5.0;
                                        import './LowGasSafeMath.sol';
                                        import './SafeCast.sol';
                                        import './TickMath.sol';
                                        import './LiquidityMath.sol';
                                        /// @title Tick
                                        /// @notice Contains functions for managing tick processes and relevant calculations
                                        library Tick {
                                            using LowGasSafeMath for int256;
                                            using SafeCast for int256;
                                            // info stored for each initialized individual tick
                                            struct Info {
                                                // the total position liquidity that references this tick
                                                uint128 liquidityGross;
                                                // amount of net liquidity added (subtracted) when tick is crossed from left to right (right to left),
                                                int128 liquidityNet;
                                                // fee growth per unit of liquidity on the _other_ side of this tick (relative to the current tick)
                                                // only has relative meaning, not absolute — the value depends on when the tick is initialized
                                                uint256 feeGrowthOutside0X128;
                                                uint256 feeGrowthOutside1X128;
                                                // the cumulative tick value on the other side of the tick
                                                int56 tickCumulativeOutside;
                                                // the seconds per unit of liquidity on the _other_ side of this tick (relative to the current tick)
                                                // only has relative meaning, not absolute — the value depends on when the tick is initialized
                                                uint160 secondsPerLiquidityOutsideX128;
                                                // the seconds spent on the other side of the tick (relative to the current tick)
                                                // only has relative meaning, not absolute — the value depends on when the tick is initialized
                                                uint32 secondsOutside;
                                                // true iff the tick is initialized, i.e. the value is exactly equivalent to the expression liquidityGross != 0
                                                // these 8 bits are set to prevent fresh sstores when crossing newly initialized ticks
                                                bool initialized;
                                            }
                                            /// @notice Derives max liquidity per tick from given tick spacing
                                            /// @dev Executed within the pool constructor
                                            /// @param tickSpacing The amount of required tick separation, realized in multiples of `tickSpacing`
                                            ///     e.g., a tickSpacing of 3 requires ticks to be initialized every 3rd tick i.e., ..., -6, -3, 0, 3, 6, ...
                                            /// @return The max liquidity per tick
                                            function tickSpacingToMaxLiquidityPerTick(int24 tickSpacing) internal pure returns (uint128) {
                                                int24 minTick = (TickMath.MIN_TICK / tickSpacing) * tickSpacing;
                                                int24 maxTick = (TickMath.MAX_TICK / tickSpacing) * tickSpacing;
                                                uint24 numTicks = uint24((maxTick - minTick) / tickSpacing) + 1;
                                                return type(uint128).max / numTicks;
                                            }
                                            /// @notice Retrieves fee growth data
                                            /// @param self The mapping containing all tick information for initialized ticks
                                            /// @param tickLower The lower tick boundary of the position
                                            /// @param tickUpper The upper tick boundary of the position
                                            /// @param tickCurrent The current tick
                                            /// @param feeGrowthGlobal0X128 The all-time global fee growth, per unit of liquidity, in token0
                                            /// @param feeGrowthGlobal1X128 The all-time global fee growth, per unit of liquidity, in token1
                                            /// @return feeGrowthInside0X128 The all-time fee growth in token0, per unit of liquidity, inside the position's tick boundaries
                                            /// @return feeGrowthInside1X128 The all-time fee growth in token1, per unit of liquidity, inside the position's tick boundaries
                                            function getFeeGrowthInside(
                                                mapping(int24 => Tick.Info) storage self,
                                                int24 tickLower,
                                                int24 tickUpper,
                                                int24 tickCurrent,
                                                uint256 feeGrowthGlobal0X128,
                                                uint256 feeGrowthGlobal1X128
                                            ) internal view returns (uint256 feeGrowthInside0X128, uint256 feeGrowthInside1X128) {
                                                Info storage lower = self[tickLower];
                                                Info storage upper = self[tickUpper];
                                                // calculate fee growth below
                                                uint256 feeGrowthBelow0X128;
                                                uint256 feeGrowthBelow1X128;
                                                if (tickCurrent >= tickLower) {
                                                    feeGrowthBelow0X128 = lower.feeGrowthOutside0X128;
                                                    feeGrowthBelow1X128 = lower.feeGrowthOutside1X128;
                                                } else {
                                                    feeGrowthBelow0X128 = feeGrowthGlobal0X128 - lower.feeGrowthOutside0X128;
                                                    feeGrowthBelow1X128 = feeGrowthGlobal1X128 - lower.feeGrowthOutside1X128;
                                                }
                                                // calculate fee growth above
                                                uint256 feeGrowthAbove0X128;
                                                uint256 feeGrowthAbove1X128;
                                                if (tickCurrent < tickUpper) {
                                                    feeGrowthAbove0X128 = upper.feeGrowthOutside0X128;
                                                    feeGrowthAbove1X128 = upper.feeGrowthOutside1X128;
                                                } else {
                                                    feeGrowthAbove0X128 = feeGrowthGlobal0X128 - upper.feeGrowthOutside0X128;
                                                    feeGrowthAbove1X128 = feeGrowthGlobal1X128 - upper.feeGrowthOutside1X128;
                                                }
                                                feeGrowthInside0X128 = feeGrowthGlobal0X128 - feeGrowthBelow0X128 - feeGrowthAbove0X128;
                                                feeGrowthInside1X128 = feeGrowthGlobal1X128 - feeGrowthBelow1X128 - feeGrowthAbove1X128;
                                            }
                                            /// @notice Updates a tick and returns true if the tick was flipped from initialized to uninitialized, or vice versa
                                            /// @param self The mapping containing all tick information for initialized ticks
                                            /// @param tick The tick that will be updated
                                            /// @param tickCurrent The current tick
                                            /// @param liquidityDelta A new amount of liquidity to be added (subtracted) when tick is crossed from left to right (right to left)
                                            /// @param feeGrowthGlobal0X128 The all-time global fee growth, per unit of liquidity, in token0
                                            /// @param feeGrowthGlobal1X128 The all-time global fee growth, per unit of liquidity, in token1
                                            /// @param secondsPerLiquidityCumulativeX128 The all-time seconds per max(1, liquidity) of the pool
                                            /// @param time The current block timestamp cast to a uint32
                                            /// @param upper true for updating a position's upper tick, or false for updating a position's lower tick
                                            /// @param maxLiquidity The maximum liquidity allocation for a single tick
                                            /// @return flipped Whether the tick was flipped from initialized to uninitialized, or vice versa
                                            function update(
                                                mapping(int24 => Tick.Info) storage self,
                                                int24 tick,
                                                int24 tickCurrent,
                                                int128 liquidityDelta,
                                                uint256 feeGrowthGlobal0X128,
                                                uint256 feeGrowthGlobal1X128,
                                                uint160 secondsPerLiquidityCumulativeX128,
                                                int56 tickCumulative,
                                                uint32 time,
                                                bool upper,
                                                uint128 maxLiquidity
                                            ) internal returns (bool flipped) {
                                                Tick.Info storage info = self[tick];
                                                uint128 liquidityGrossBefore = info.liquidityGross;
                                                uint128 liquidityGrossAfter = LiquidityMath.addDelta(liquidityGrossBefore, liquidityDelta);
                                                require(liquidityGrossAfter <= maxLiquidity, 'LO');
                                                flipped = (liquidityGrossAfter == 0) != (liquidityGrossBefore == 0);
                                                if (liquidityGrossBefore == 0) {
                                                    // by convention, we assume that all growth before a tick was initialized happened _below_ the tick
                                                    if (tick <= tickCurrent) {
                                                        info.feeGrowthOutside0X128 = feeGrowthGlobal0X128;
                                                        info.feeGrowthOutside1X128 = feeGrowthGlobal1X128;
                                                        info.secondsPerLiquidityOutsideX128 = secondsPerLiquidityCumulativeX128;
                                                        info.tickCumulativeOutside = tickCumulative;
                                                        info.secondsOutside = time;
                                                    }
                                                    info.initialized = true;
                                                }
                                                info.liquidityGross = liquidityGrossAfter;
                                                // when the lower (upper) tick is crossed left to right (right to left), liquidity must be added (removed)
                                                info.liquidityNet = upper
                                                    ? int256(info.liquidityNet).sub(liquidityDelta).toInt128()
                                                    : int256(info.liquidityNet).add(liquidityDelta).toInt128();
                                            }
                                            /// @notice Clears tick data
                                            /// @param self The mapping containing all initialized tick information for initialized ticks
                                            /// @param tick The tick that will be cleared
                                            function clear(mapping(int24 => Tick.Info) storage self, int24 tick) internal {
                                                delete self[tick];
                                            }
                                            /// @notice Transitions to next tick as needed by price movement
                                            /// @param self The mapping containing all tick information for initialized ticks
                                            /// @param tick The destination tick of the transition
                                            /// @param feeGrowthGlobal0X128 The all-time global fee growth, per unit of liquidity, in token0
                                            /// @param feeGrowthGlobal1X128 The all-time global fee growth, per unit of liquidity, in token1
                                            /// @param secondsPerLiquidityCumulativeX128 The current seconds per liquidity
                                            /// @param time The current block.timestamp
                                            /// @return liquidityNet The amount of liquidity added (subtracted) when tick is crossed from left to right (right to left)
                                            function cross(
                                                mapping(int24 => Tick.Info) storage self,
                                                int24 tick,
                                                uint256 feeGrowthGlobal0X128,
                                                uint256 feeGrowthGlobal1X128,
                                                uint160 secondsPerLiquidityCumulativeX128,
                                                int56 tickCumulative,
                                                uint32 time
                                            ) internal returns (int128 liquidityNet) {
                                                Tick.Info storage info = self[tick];
                                                info.feeGrowthOutside0X128 = feeGrowthGlobal0X128 - info.feeGrowthOutside0X128;
                                                info.feeGrowthOutside1X128 = feeGrowthGlobal1X128 - info.feeGrowthOutside1X128;
                                                info.secondsPerLiquidityOutsideX128 = secondsPerLiquidityCumulativeX128 - info.secondsPerLiquidityOutsideX128;
                                                info.tickCumulativeOutside = tickCumulative - info.tickCumulativeOutside;
                                                info.secondsOutside = time - info.secondsOutside;
                                                liquidityNet = info.liquidityNet;
                                            }
                                        }
                                        // SPDX-License-Identifier: BUSL-1.1
                                        pragma solidity >=0.5.0;
                                        import './BitMath.sol';
                                        /// @title Packed tick initialized state library
                                        /// @notice Stores a packed mapping of tick index to its initialized state
                                        /// @dev The mapping uses int16 for keys since ticks are represented as int24 and there are 256 (2^8) values per word.
                                        library TickBitmap {
                                            /// @notice Computes the position in the mapping where the initialized bit for a tick lives
                                            /// @param tick The tick for which to compute the position
                                            /// @return wordPos The key in the mapping containing the word in which the bit is stored
                                            /// @return bitPos The bit position in the word where the flag is stored
                                            function position(int24 tick) private pure returns (int16 wordPos, uint8 bitPos) {
                                                wordPos = int16(tick >> 8);
                                                bitPos = uint8(tick % 256);
                                            }
                                            /// @notice Flips the initialized state for a given tick from false to true, or vice versa
                                            /// @param self The mapping in which to flip the tick
                                            /// @param tick The tick to flip
                                            /// @param tickSpacing The spacing between usable ticks
                                            function flipTick(
                                                mapping(int16 => uint256) storage self,
                                                int24 tick,
                                                int24 tickSpacing
                                            ) internal {
                                                require(tick % tickSpacing == 0); // ensure that the tick is spaced
                                                (int16 wordPos, uint8 bitPos) = position(tick / tickSpacing);
                                                uint256 mask = 1 << bitPos;
                                                self[wordPos] ^= mask;
                                            }
                                            /// @notice Returns the next initialized tick contained in the same word (or adjacent word) as the tick that is either
                                            /// to the left (less than or equal to) or right (greater than) of the given tick
                                            /// @param self The mapping in which to compute the next initialized tick
                                            /// @param tick The starting tick
                                            /// @param tickSpacing The spacing between usable ticks
                                            /// @param lte Whether to search for the next initialized tick to the left (less than or equal to the starting tick)
                                            /// @return next The next initialized or uninitialized tick up to 256 ticks away from the current tick
                                            /// @return initialized Whether the next tick is initialized, as the function only searches within up to 256 ticks
                                            function nextInitializedTickWithinOneWord(
                                                mapping(int16 => uint256) storage self,
                                                int24 tick,
                                                int24 tickSpacing,
                                                bool lte
                                            ) internal view returns (int24 next, bool initialized) {
                                                int24 compressed = tick / tickSpacing;
                                                if (tick < 0 && tick % tickSpacing != 0) compressed--; // round towards negative infinity
                                                if (lte) {
                                                    (int16 wordPos, uint8 bitPos) = position(compressed);
                                                    // all the 1s at or to the right of the current bitPos
                                                    uint256 mask = (1 << bitPos) - 1 + (1 << bitPos);
                                                    uint256 masked = self[wordPos] & mask;
                                                    // if there are no initialized ticks to the right of or at the current tick, return rightmost in the word
                                                    initialized = masked != 0;
                                                    // overflow/underflow is possible, but prevented externally by limiting both tickSpacing and tick
                                                    next = initialized
                                                        ? (compressed - int24(bitPos - BitMath.mostSignificantBit(masked))) * tickSpacing
                                                        : (compressed - int24(bitPos)) * tickSpacing;
                                                } else {
                                                    // start from the word of the next tick, since the current tick state doesn't matter
                                                    (int16 wordPos, uint8 bitPos) = position(compressed + 1);
                                                    // all the 1s at or to the left of the bitPos
                                                    uint256 mask = ~((1 << bitPos) - 1);
                                                    uint256 masked = self[wordPos] & mask;
                                                    // if there are no initialized ticks to the left of the current tick, return leftmost in the word
                                                    initialized = masked != 0;
                                                    // overflow/underflow is possible, but prevented externally by limiting both tickSpacing and tick
                                                    next = initialized
                                                        ? (compressed + 1 + int24(BitMath.leastSignificantBit(masked) - bitPos)) * tickSpacing
                                                        : (compressed + 1 + int24(type(uint8).max - bitPos)) * tickSpacing;
                                                }
                                            }
                                        }
                                        // SPDX-License-Identifier: BUSL-1.1
                                        pragma solidity >=0.5.0;
                                        import './FullMath.sol';
                                        import './FixedPoint128.sol';
                                        import './LiquidityMath.sol';
                                        /// @title Position
                                        /// @notice Positions represent an owner address' liquidity between a lower and upper tick boundary
                                        /// @dev Positions store additional state for tracking fees owed to the position
                                        library Position {
                                            // info stored for each user's position
                                            struct Info {
                                                // the amount of liquidity owned by this position
                                                uint128 liquidity;
                                                // fee growth per unit of liquidity as of the last update to liquidity or fees owed
                                                uint256 feeGrowthInside0LastX128;
                                                uint256 feeGrowthInside1LastX128;
                                                // the fees owed to the position owner in token0/token1
                                                uint128 tokensOwed0;
                                                uint128 tokensOwed1;
                                            }
                                            /// @notice Returns the Info struct of a position, given an owner and position boundaries
                                            /// @param self The mapping containing all user positions
                                            /// @param owner The address of the position owner
                                            /// @param tickLower The lower tick boundary of the position
                                            /// @param tickUpper The upper tick boundary of the position
                                            /// @return position The position info struct of the given owners' position
                                            function get(
                                                mapping(bytes32 => Info) storage self,
                                                address owner,
                                                int24 tickLower,
                                                int24 tickUpper
                                            ) internal view returns (Position.Info storage position) {
                                                position = self[keccak256(abi.encodePacked(owner, tickLower, tickUpper))];
                                            }
                                            /// @notice Credits accumulated fees to a user's position
                                            /// @param self The individual position to update
                                            /// @param liquidityDelta The change in pool liquidity as a result of the position update
                                            /// @param feeGrowthInside0X128 The all-time fee growth in token0, per unit of liquidity, inside the position's tick boundaries
                                            /// @param feeGrowthInside1X128 The all-time fee growth in token1, per unit of liquidity, inside the position's tick boundaries
                                            function update(
                                                Info storage self,
                                                int128 liquidityDelta,
                                                uint256 feeGrowthInside0X128,
                                                uint256 feeGrowthInside1X128
                                            ) internal {
                                                Info memory _self = self;
                                                uint128 liquidityNext;
                                                if (liquidityDelta == 0) {
                                                    require(_self.liquidity > 0, 'NP'); // disallow pokes for 0 liquidity positions
                                                    liquidityNext = _self.liquidity;
                                                } else {
                                                    liquidityNext = LiquidityMath.addDelta(_self.liquidity, liquidityDelta);
                                                }
                                                // calculate accumulated fees
                                                uint128 tokensOwed0 =
                                                    uint128(
                                                        FullMath.mulDiv(
                                                            feeGrowthInside0X128 - _self.feeGrowthInside0LastX128,
                                                            _self.liquidity,
                                                            FixedPoint128.Q128
                                                        )
                                                    );
                                                uint128 tokensOwed1 =
                                                    uint128(
                                                        FullMath.mulDiv(
                                                            feeGrowthInside1X128 - _self.feeGrowthInside1LastX128,
                                                            _self.liquidity,
                                                            FixedPoint128.Q128
                                                        )
                                                    );
                                                // update the position
                                                if (liquidityDelta != 0) self.liquidity = liquidityNext;
                                                self.feeGrowthInside0LastX128 = feeGrowthInside0X128;
                                                self.feeGrowthInside1LastX128 = feeGrowthInside1X128;
                                                if (tokensOwed0 > 0 || tokensOwed1 > 0) {
                                                    // overflow is acceptable, have to withdraw before you hit type(uint128).max fees
                                                    self.tokensOwed0 += tokensOwed0;
                                                    self.tokensOwed1 += tokensOwed1;
                                                }
                                            }
                                        }
                                        // SPDX-License-Identifier: BUSL-1.1
                                        pragma solidity >=0.5.0;
                                        /// @title Oracle
                                        /// @notice Provides price and liquidity data useful for a wide variety of system designs
                                        /// @dev Instances of stored oracle data, "observations", are collected in the oracle array
                                        /// Every pool is initialized with an oracle array length of 1. Anyone can pay the SSTOREs to increase the
                                        /// maximum length of the oracle array. New slots will be added when the array is fully populated.
                                        /// Observations are overwritten when the full length of the oracle array is populated.
                                        /// The most recent observation is available, independent of the length of the oracle array, by passing 0 to observe()
                                        library Oracle {
                                            struct Observation {
                                                // the block timestamp of the observation
                                                uint32 blockTimestamp;
                                                // the tick accumulator, i.e. tick * time elapsed since the pool was first initialized
                                                int56 tickCumulative;
                                                // the seconds per liquidity, i.e. seconds elapsed / max(1, liquidity) since the pool was first initialized
                                                uint160 secondsPerLiquidityCumulativeX128;
                                                // whether or not the observation is initialized
                                                bool initialized;
                                            }
                                            /// @notice Transforms a previous observation into a new observation, given the passage of time and the current tick and liquidity values
                                            /// @dev blockTimestamp _must_ be chronologically equal to or greater than last.blockTimestamp, safe for 0 or 1 overflows
                                            /// @param last The specified observation to be transformed
                                            /// @param blockTimestamp The timestamp of the new observation
                                            /// @param tick The active tick at the time of the new observation
                                            /// @param liquidity The total in-range liquidity at the time of the new observation
                                            /// @return Observation The newly populated observation
                                            function transform(
                                                Observation memory last,
                                                uint32 blockTimestamp,
                                                int24 tick,
                                                uint128 liquidity
                                            ) private pure returns (Observation memory) {
                                                uint32 delta = blockTimestamp - last.blockTimestamp;
                                                return
                                                    Observation({
                                                        blockTimestamp: blockTimestamp,
                                                        tickCumulative: last.tickCumulative + int56(tick) * delta,
                                                        secondsPerLiquidityCumulativeX128: last.secondsPerLiquidityCumulativeX128 +
                                                            ((uint160(delta) << 128) / (liquidity > 0 ? liquidity : 1)),
                                                        initialized: true
                                                    });
                                            }
                                            /// @notice Initialize the oracle array by writing the first slot. Called once for the lifecycle of the observations array
                                            /// @param self The stored oracle array
                                            /// @param time The time of the oracle initialization, via block.timestamp truncated to uint32
                                            /// @return cardinality The number of populated elements in the oracle array
                                            /// @return cardinalityNext The new length of the oracle array, independent of population
                                            function initialize(Observation[65535] storage self, uint32 time)
                                                internal
                                                returns (uint16 cardinality, uint16 cardinalityNext)
                                            {
                                                self[0] = Observation({
                                                    blockTimestamp: time,
                                                    tickCumulative: 0,
                                                    secondsPerLiquidityCumulativeX128: 0,
                                                    initialized: true
                                                });
                                                return (1, 1);
                                            }
                                            /// @notice Writes an oracle observation to the array
                                            /// @dev Writable at most once per block. Index represents the most recently written element. cardinality and index must be tracked externally.
                                            /// If the index is at the end of the allowable array length (according to cardinality), and the next cardinality
                                            /// is greater than the current one, cardinality may be increased. This restriction is created to preserve ordering.
                                            /// @param self The stored oracle array
                                            /// @param index The index of the observation that was most recently written to the observations array
                                            /// @param blockTimestamp The timestamp of the new observation
                                            /// @param tick The active tick at the time of the new observation
                                            /// @param liquidity The total in-range liquidity at the time of the new observation
                                            /// @param cardinality The number of populated elements in the oracle array
                                            /// @param cardinalityNext The new length of the oracle array, independent of population
                                            /// @return indexUpdated The new index of the most recently written element in the oracle array
                                            /// @return cardinalityUpdated The new cardinality of the oracle array
                                            function write(
                                                Observation[65535] storage self,
                                                uint16 index,
                                                uint32 blockTimestamp,
                                                int24 tick,
                                                uint128 liquidity,
                                                uint16 cardinality,
                                                uint16 cardinalityNext
                                            ) internal returns (uint16 indexUpdated, uint16 cardinalityUpdated) {
                                                Observation memory last = self[index];
                                                // early return if we've already written an observation this block
                                                if (last.blockTimestamp == blockTimestamp) return (index, cardinality);
                                                // if the conditions are right, we can bump the cardinality
                                                if (cardinalityNext > cardinality && index == (cardinality - 1)) {
                                                    cardinalityUpdated = cardinalityNext;
                                                } else {
                                                    cardinalityUpdated = cardinality;
                                                }
                                                indexUpdated = (index + 1) % cardinalityUpdated;
                                                self[indexUpdated] = transform(last, blockTimestamp, tick, liquidity);
                                            }
                                            /// @notice Prepares the oracle array to store up to `next` observations
                                            /// @param self The stored oracle array
                                            /// @param current The current next cardinality of the oracle array
                                            /// @param next The proposed next cardinality which will be populated in the oracle array
                                            /// @return next The next cardinality which will be populated in the oracle array
                                            function grow(
                                                Observation[65535] storage self,
                                                uint16 current,
                                                uint16 next
                                            ) internal returns (uint16) {
                                                require(current > 0, 'I');
                                                // no-op if the passed next value isn't greater than the current next value
                                                if (next <= current) return current;
                                                // store in each slot to prevent fresh SSTOREs in swaps
                                                // this data will not be used because the initialized boolean is still false
                                                for (uint16 i = current; i < next; i++) self[i].blockTimestamp = 1;
                                                return next;
                                            }
                                            /// @notice comparator for 32-bit timestamps
                                            /// @dev safe for 0 or 1 overflows, a and b _must_ be chronologically before or equal to time
                                            /// @param time A timestamp truncated to 32 bits
                                            /// @param a A comparison timestamp from which to determine the relative position of `time`
                                            /// @param b From which to determine the relative position of `time`
                                            /// @return bool Whether `a` is chronologically <= `b`
                                            function lte(
                                                uint32 time,
                                                uint32 a,
                                                uint32 b
                                            ) private pure returns (bool) {
                                                // if there hasn't been overflow, no need to adjust
                                                if (a <= time && b <= time) return a <= b;
                                                uint256 aAdjusted = a > time ? a : a + 2**32;
                                                uint256 bAdjusted = b > time ? b : b + 2**32;
                                                return aAdjusted <= bAdjusted;
                                            }
                                            /// @notice Fetches the observations beforeOrAt and atOrAfter a target, i.e. where [beforeOrAt, atOrAfter] is satisfied.
                                            /// The result may be the same observation, or adjacent observations.
                                            /// @dev The answer must be contained in the array, used when the target is located within the stored observation
                                            /// boundaries: older than the most recent observation and younger, or the same age as, the oldest observation
                                            /// @param self The stored oracle array
                                            /// @param time The current block.timestamp
                                            /// @param target The timestamp at which the reserved observation should be for
                                            /// @param index The index of the observation that was most recently written to the observations array
                                            /// @param cardinality The number of populated elements in the oracle array
                                            /// @return beforeOrAt The observation recorded before, or at, the target
                                            /// @return atOrAfter The observation recorded at, or after, the target
                                            function binarySearch(
                                                Observation[65535] storage self,
                                                uint32 time,
                                                uint32 target,
                                                uint16 index,
                                                uint16 cardinality
                                            ) private view returns (Observation memory beforeOrAt, Observation memory atOrAfter) {
                                                uint256 l = (index + 1) % cardinality; // oldest observation
                                                uint256 r = l + cardinality - 1; // newest observation
                                                uint256 i;
                                                while (true) {
                                                    i = (l + r) / 2;
                                                    beforeOrAt = self[i % cardinality];
                                                    // we've landed on an uninitialized tick, keep searching higher (more recently)
                                                    if (!beforeOrAt.initialized) {
                                                        l = i + 1;
                                                        continue;
                                                    }
                                                    atOrAfter = self[(i + 1) % cardinality];
                                                    bool targetAtOrAfter = lte(time, beforeOrAt.blockTimestamp, target);
                                                    // check if we've found the answer!
                                                    if (targetAtOrAfter && lte(time, target, atOrAfter.blockTimestamp)) break;
                                                    if (!targetAtOrAfter) r = i - 1;
                                                    else l = i + 1;
                                                }
                                            }
                                            /// @notice Fetches the observations beforeOrAt and atOrAfter a given target, i.e. where [beforeOrAt, atOrAfter] is satisfied
                                            /// @dev Assumes there is at least 1 initialized observation.
                                            /// Used by observeSingle() to compute the counterfactual accumulator values as of a given block timestamp.
                                            /// @param self The stored oracle array
                                            /// @param time The current block.timestamp
                                            /// @param target The timestamp at which the reserved observation should be for
                                            /// @param tick The active tick at the time of the returned or simulated observation
                                            /// @param index The index of the observation that was most recently written to the observations array
                                            /// @param liquidity The total pool liquidity at the time of the call
                                            /// @param cardinality The number of populated elements in the oracle array
                                            /// @return beforeOrAt The observation which occurred at, or before, the given timestamp
                                            /// @return atOrAfter The observation which occurred at, or after, the given timestamp
                                            function getSurroundingObservations(
                                                Observation[65535] storage self,
                                                uint32 time,
                                                uint32 target,
                                                int24 tick,
                                                uint16 index,
                                                uint128 liquidity,
                                                uint16 cardinality
                                            ) private view returns (Observation memory beforeOrAt, Observation memory atOrAfter) {
                                                // optimistically set before to the newest observation
                                                beforeOrAt = self[index];
                                                // if the target is chronologically at or after the newest observation, we can early return
                                                if (lte(time, beforeOrAt.blockTimestamp, target)) {
                                                    if (beforeOrAt.blockTimestamp == target) {
                                                        // if newest observation equals target, we're in the same block, so we can ignore atOrAfter
                                                        return (beforeOrAt, atOrAfter);
                                                    } else {
                                                        // otherwise, we need to transform
                                                        return (beforeOrAt, transform(beforeOrAt, target, tick, liquidity));
                                                    }
                                                }
                                                // now, set before to the oldest observation
                                                beforeOrAt = self[(index + 1) % cardinality];
                                                if (!beforeOrAt.initialized) beforeOrAt = self[0];
                                                // ensure that the target is chronologically at or after the oldest observation
                                                require(lte(time, beforeOrAt.blockTimestamp, target), 'OLD');
                                                // if we've reached this point, we have to binary search
                                                return binarySearch(self, time, target, index, cardinality);
                                            }
                                            /// @dev Reverts if an observation at or before the desired observation timestamp does not exist.
                                            /// 0 may be passed as `secondsAgo' to return the current cumulative values.
                                            /// If called with a timestamp falling between two observations, returns the counterfactual accumulator values
                                            /// at exactly the timestamp between the two observations.
                                            /// @param self The stored oracle array
                                            /// @param time The current block timestamp
                                            /// @param secondsAgo The amount of time to look back, in seconds, at which point to return an observation
                                            /// @param tick The current tick
                                            /// @param index The index of the observation that was most recently written to the observations array
                                            /// @param liquidity The current in-range pool liquidity
                                            /// @param cardinality The number of populated elements in the oracle array
                                            /// @return tickCumulative The tick * time elapsed since the pool was first initialized, as of `secondsAgo`
                                            /// @return secondsPerLiquidityCumulativeX128 The time elapsed / max(1, liquidity) since the pool was first initialized, as of `secondsAgo`
                                            function observeSingle(
                                                Observation[65535] storage self,
                                                uint32 time,
                                                uint32 secondsAgo,
                                                int24 tick,
                                                uint16 index,
                                                uint128 liquidity,
                                                uint16 cardinality
                                            ) internal view returns (int56 tickCumulative, uint160 secondsPerLiquidityCumulativeX128) {
                                                if (secondsAgo == 0) {
                                                    Observation memory last = self[index];
                                                    if (last.blockTimestamp != time) last = transform(last, time, tick, liquidity);
                                                    return (last.tickCumulative, last.secondsPerLiquidityCumulativeX128);
                                                }
                                                uint32 target = time - secondsAgo;
                                                (Observation memory beforeOrAt, Observation memory atOrAfter) =
                                                    getSurroundingObservations(self, time, target, tick, index, liquidity, cardinality);
                                                if (target == beforeOrAt.blockTimestamp) {
                                                    // we're at the left boundary
                                                    return (beforeOrAt.tickCumulative, beforeOrAt.secondsPerLiquidityCumulativeX128);
                                                } else if (target == atOrAfter.blockTimestamp) {
                                                    // we're at the right boundary
                                                    return (atOrAfter.tickCumulative, atOrAfter.secondsPerLiquidityCumulativeX128);
                                                } else {
                                                    // we're in the middle
                                                    uint32 observationTimeDelta = atOrAfter.blockTimestamp - beforeOrAt.blockTimestamp;
                                                    uint32 targetDelta = target - beforeOrAt.blockTimestamp;
                                                    return (
                                                        beforeOrAt.tickCumulative +
                                                            ((atOrAfter.tickCumulative - beforeOrAt.tickCumulative) / observationTimeDelta) *
                                                            targetDelta,
                                                        beforeOrAt.secondsPerLiquidityCumulativeX128 +
                                                            uint160(
                                                                (uint256(
                                                                    atOrAfter.secondsPerLiquidityCumulativeX128 - beforeOrAt.secondsPerLiquidityCumulativeX128
                                                                ) * targetDelta) / observationTimeDelta
                                                            )
                                                    );
                                                }
                                            }
                                            /// @notice Returns the accumulator values as of each time seconds ago from the given time in the array of `secondsAgos`
                                            /// @dev Reverts if `secondsAgos` > oldest observation
                                            /// @param self The stored oracle array
                                            /// @param time The current block.timestamp
                                            /// @param secondsAgos Each amount of time to look back, in seconds, at which point to return an observation
                                            /// @param tick The current tick
                                            /// @param index The index of the observation that was most recently written to the observations array
                                            /// @param liquidity The current in-range pool liquidity
                                            /// @param cardinality The number of populated elements in the oracle array
                                            /// @return tickCumulatives The tick * time elapsed since the pool was first initialized, as of each `secondsAgo`
                                            /// @return secondsPerLiquidityCumulativeX128s The cumulative seconds / max(1, liquidity) since the pool was first initialized, as of each `secondsAgo`
                                            function observe(
                                                Observation[65535] storage self,
                                                uint32 time,
                                                uint32[] memory secondsAgos,
                                                int24 tick,
                                                uint16 index,
                                                uint128 liquidity,
                                                uint16 cardinality
                                            ) internal view returns (int56[] memory tickCumulatives, uint160[] memory secondsPerLiquidityCumulativeX128s) {
                                                require(cardinality > 0, 'I');
                                                tickCumulatives = new int56[](secondsAgos.length);
                                                secondsPerLiquidityCumulativeX128s = new uint160[](secondsAgos.length);
                                                for (uint256 i = 0; i < secondsAgos.length; i++) {
                                                    (tickCumulatives[i], secondsPerLiquidityCumulativeX128s[i]) = observeSingle(
                                                        self,
                                                        time,
                                                        secondsAgos[i],
                                                        tick,
                                                        index,
                                                        liquidity,
                                                        cardinality
                                                    );
                                                }
                                            }
                                        }
                                        // SPDX-License-Identifier: MIT
                                        pragma solidity >=0.4.0;
                                        /// @title Contains 512-bit math functions
                                        /// @notice Facilitates multiplication and division that can have overflow of an intermediate value without any loss of precision
                                        /// @dev Handles "phantom overflow" i.e., allows multiplication and division where an intermediate value overflows 256 bits
                                        library FullMath {
                                            /// @notice Calculates floor(a×b÷denominator) with full precision. Throws if result overflows a uint256 or denominator == 0
                                            /// @param a The multiplicand
                                            /// @param b The multiplier
                                            /// @param denominator The divisor
                                            /// @return result The 256-bit result
                                            /// @dev Credit to Remco Bloemen under MIT license https://xn--2-umb.com/21/muldiv
                                            function mulDiv(
                                                uint256 a,
                                                uint256 b,
                                                uint256 denominator
                                            ) internal pure returns (uint256 result) {
                                                // 512-bit multiply [prod1 prod0] = a * b
                                                // Compute the product mod 2**256 and mod 2**256 - 1
                                                // then use the Chinese Remainder Theorem to reconstruct
                                                // the 512 bit result. The result is stored in two 256
                                                // variables such that product = prod1 * 2**256 + prod0
                                                uint256 prod0; // Least significant 256 bits of the product
                                                uint256 prod1; // Most significant 256 bits of the product
                                                assembly {
                                                    let mm := mulmod(a, b, not(0))
                                                    prod0 := mul(a, b)
                                                    prod1 := sub(sub(mm, prod0), lt(mm, prod0))
                                                }
                                                // Handle non-overflow cases, 256 by 256 division
                                                if (prod1 == 0) {
                                                    require(denominator > 0);
                                                    assembly {
                                                        result := div(prod0, denominator)
                                                    }
                                                    return result;
                                                }
                                                // Make sure the result is less than 2**256.
                                                // Also prevents denominator == 0
                                                require(denominator > prod1);
                                                ///////////////////////////////////////////////
                                                // 512 by 256 division.
                                                ///////////////////////////////////////////////
                                                // Make division exact by subtracting the remainder from [prod1 prod0]
                                                // Compute remainder using mulmod
                                                uint256 remainder;
                                                assembly {
                                                    remainder := mulmod(a, b, denominator)
                                                }
                                                // Subtract 256 bit number from 512 bit number
                                                assembly {
                                                    prod1 := sub(prod1, gt(remainder, prod0))
                                                    prod0 := sub(prod0, remainder)
                                                }
                                                // Factor powers of two out of denominator
                                                // Compute largest power of two divisor of denominator.
                                                // Always >= 1.
                                                uint256 twos = -denominator & denominator;
                                                // Divide denominator by power of two
                                                assembly {
                                                    denominator := div(denominator, twos)
                                                }
                                                // Divide [prod1 prod0] by the factors of two
                                                assembly {
                                                    prod0 := div(prod0, twos)
                                                }
                                                // Shift in bits from prod1 into prod0. For this we need
                                                // to flip `twos` such that it is 2**256 / twos.
                                                // If twos is zero, then it becomes one
                                                assembly {
                                                    twos := add(div(sub(0, twos), twos), 1)
                                                }
                                                prod0 |= prod1 * twos;
                                                // Invert denominator mod 2**256
                                                // Now that denominator is an odd number, it has an inverse
                                                // modulo 2**256 such that denominator * inv = 1 mod 2**256.
                                                // Compute the inverse by starting with a seed that is correct
                                                // correct for four bits. That is, denominator * inv = 1 mod 2**4
                                                uint256 inv = (3 * denominator) ^ 2;
                                                // Now use Newton-Raphson iteration to improve the precision.
                                                // Thanks to Hensel's lifting lemma, this also works in modular
                                                // arithmetic, doubling the correct bits in each step.
                                                inv *= 2 - denominator * inv; // inverse mod 2**8
                                                inv *= 2 - denominator * inv; // inverse mod 2**16
                                                inv *= 2 - denominator * inv; // inverse mod 2**32
                                                inv *= 2 - denominator * inv; // inverse mod 2**64
                                                inv *= 2 - denominator * inv; // inverse mod 2**128
                                                inv *= 2 - denominator * inv; // inverse mod 2**256
                                                // Because the division is now exact we can divide by multiplying
                                                // with the modular inverse of denominator. This will give us the
                                                // correct result modulo 2**256. Since the precoditions guarantee
                                                // that the outcome is less than 2**256, this is the final result.
                                                // We don't need to compute the high bits of the result and prod1
                                                // is no longer required.
                                                result = prod0 * inv;
                                                return result;
                                            }
                                            /// @notice Calculates ceil(a×b÷denominator) with full precision. Throws if result overflows a uint256 or denominator == 0
                                            /// @param a The multiplicand
                                            /// @param b The multiplier
                                            /// @param denominator The divisor
                                            /// @return result The 256-bit result
                                            function mulDivRoundingUp(
                                                uint256 a,
                                                uint256 b,
                                                uint256 denominator
                                            ) internal pure returns (uint256 result) {
                                                result = mulDiv(a, b, denominator);
                                                if (mulmod(a, b, denominator) > 0) {
                                                    require(result < type(uint256).max);
                                                    result++;
                                                }
                                            }
                                        }
                                        // SPDX-License-Identifier: GPL-2.0-or-later
                                        pragma solidity >=0.4.0;
                                        /// @title FixedPoint128
                                        /// @notice A library for handling binary fixed point numbers, see https://en.wikipedia.org/wiki/Q_(number_format)
                                        library FixedPoint128 {
                                            uint256 internal constant Q128 = 0x100000000000000000000000000000000;
                                        }
                                        // SPDX-License-Identifier: GPL-2.0-or-later
                                        pragma solidity >=0.6.0;
                                        import '../interfaces/IERC20Minimal.sol';
                                        /// @title TransferHelper
                                        /// @notice Contains helper methods for interacting with ERC20 tokens that do not consistently return true/false
                                        library TransferHelper {
                                            /// @notice Transfers tokens from msg.sender to a recipient
                                            /// @dev Calls transfer on token contract, errors with TF if transfer fails
                                            /// @param token The contract address of the token which will be transferred
                                            /// @param to The recipient of the transfer
                                            /// @param value The value of the transfer
                                            function safeTransfer(
                                                address token,
                                                address to,
                                                uint256 value
                                            ) internal {
                                                (bool success, bytes memory data) =
                                                    token.call(abi.encodeWithSelector(IERC20Minimal.transfer.selector, to, value));
                                                require(success && (data.length == 0 || abi.decode(data, (bool))), 'TF');
                                            }
                                        }
                                        // SPDX-License-Identifier: GPL-2.0-or-later
                                        pragma solidity >=0.5.0;
                                        /// @title Math library for computing sqrt prices from ticks and vice versa
                                        /// @notice Computes sqrt price for ticks of size 1.0001, i.e. sqrt(1.0001^tick) as fixed point Q64.96 numbers. Supports
                                        /// prices between 2**-128 and 2**128
                                        library TickMath {
                                            /// @dev The minimum tick that may be passed to #getSqrtRatioAtTick computed from log base 1.0001 of 2**-128
                                            int24 internal constant MIN_TICK = -887272;
                                            /// @dev The maximum tick that may be passed to #getSqrtRatioAtTick computed from log base 1.0001 of 2**128
                                            int24 internal constant MAX_TICK = -MIN_TICK;
                                            /// @dev The minimum value that can be returned from #getSqrtRatioAtTick. Equivalent to getSqrtRatioAtTick(MIN_TICK)
                                            uint160 internal constant MIN_SQRT_RATIO = 4295128739;
                                            /// @dev The maximum value that can be returned from #getSqrtRatioAtTick. Equivalent to getSqrtRatioAtTick(MAX_TICK)
                                            uint160 internal constant MAX_SQRT_RATIO = 1461446703485210103287273052203988822378723970342;
                                            /// @notice Calculates sqrt(1.0001^tick) * 2^96
                                            /// @dev Throws if |tick| > max tick
                                            /// @param tick The input tick for the above formula
                                            /// @return sqrtPriceX96 A Fixed point Q64.96 number representing the sqrt of the ratio of the two assets (token1/token0)
                                            /// at the given tick
                                            function getSqrtRatioAtTick(int24 tick) internal pure returns (uint160 sqrtPriceX96) {
                                                uint256 absTick = tick < 0 ? uint256(-int256(tick)) : uint256(int256(tick));
                                                require(absTick <= uint256(MAX_TICK), 'T');
                                                uint256 ratio = absTick & 0x1 != 0 ? 0xfffcb933bd6fad37aa2d162d1a594001 : 0x100000000000000000000000000000000;
                                                if (absTick & 0x2 != 0) ratio = (ratio * 0xfff97272373d413259a46990580e213a) >> 128;
                                                if (absTick & 0x4 != 0) ratio = (ratio * 0xfff2e50f5f656932ef12357cf3c7fdcc) >> 128;
                                                if (absTick & 0x8 != 0) ratio = (ratio * 0xffe5caca7e10e4e61c3624eaa0941cd0) >> 128;
                                                if (absTick & 0x10 != 0) ratio = (ratio * 0xffcb9843d60f6159c9db58835c926644) >> 128;
                                                if (absTick & 0x20 != 0) ratio = (ratio * 0xff973b41fa98c081472e6896dfb254c0) >> 128;
                                                if (absTick & 0x40 != 0) ratio = (ratio * 0xff2ea16466c96a3843ec78b326b52861) >> 128;
                                                if (absTick & 0x80 != 0) ratio = (ratio * 0xfe5dee046a99a2a811c461f1969c3053) >> 128;
                                                if (absTick & 0x100 != 0) ratio = (ratio * 0xfcbe86c7900a88aedcffc83b479aa3a4) >> 128;
                                                if (absTick & 0x200 != 0) ratio = (ratio * 0xf987a7253ac413176f2b074cf7815e54) >> 128;
                                                if (absTick & 0x400 != 0) ratio = (ratio * 0xf3392b0822b70005940c7a398e4b70f3) >> 128;
                                                if (absTick & 0x800 != 0) ratio = (ratio * 0xe7159475a2c29b7443b29c7fa6e889d9) >> 128;
                                                if (absTick & 0x1000 != 0) ratio = (ratio * 0xd097f3bdfd2022b8845ad8f792aa5825) >> 128;
                                                if (absTick & 0x2000 != 0) ratio = (ratio * 0xa9f746462d870fdf8a65dc1f90e061e5) >> 128;
                                                if (absTick & 0x4000 != 0) ratio = (ratio * 0x70d869a156d2a1b890bb3df62baf32f7) >> 128;
                                                if (absTick & 0x8000 != 0) ratio = (ratio * 0x31be135f97d08fd981231505542fcfa6) >> 128;
                                                if (absTick & 0x10000 != 0) ratio = (ratio * 0x9aa508b5b7a84e1c677de54f3e99bc9) >> 128;
                                                if (absTick & 0x20000 != 0) ratio = (ratio * 0x5d6af8dedb81196699c329225ee604) >> 128;
                                                if (absTick & 0x40000 != 0) ratio = (ratio * 0x2216e584f5fa1ea926041bedfe98) >> 128;
                                                if (absTick & 0x80000 != 0) ratio = (ratio * 0x48a170391f7dc42444e8fa2) >> 128;
                                                if (tick > 0) ratio = type(uint256).max / ratio;
                                                // this divides by 1<<32 rounding up to go from a Q128.128 to a Q128.96.
                                                // we then downcast because we know the result always fits within 160 bits due to our tick input constraint
                                                // we round up in the division so getTickAtSqrtRatio of the output price is always consistent
                                                sqrtPriceX96 = uint160((ratio >> 32) + (ratio % (1 << 32) == 0 ? 0 : 1));
                                            }
                                            /// @notice Calculates the greatest tick value such that getRatioAtTick(tick) <= ratio
                                            /// @dev Throws in case sqrtPriceX96 < MIN_SQRT_RATIO, as MIN_SQRT_RATIO is the lowest value getRatioAtTick may
                                            /// ever return.
                                            /// @param sqrtPriceX96 The sqrt ratio for which to compute the tick as a Q64.96
                                            /// @return tick The greatest tick for which the ratio is less than or equal to the input ratio
                                            function getTickAtSqrtRatio(uint160 sqrtPriceX96) internal pure returns (int24 tick) {
                                                // second inequality must be < because the price can never reach the price at the max tick
                                                require(sqrtPriceX96 >= MIN_SQRT_RATIO && sqrtPriceX96 < MAX_SQRT_RATIO, 'R');
                                                uint256 ratio = uint256(sqrtPriceX96) << 32;
                                                uint256 r = ratio;
                                                uint256 msb = 0;
                                                assembly {
                                                    let f := shl(7, gt(r, 0xFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFF))
                                                    msb := or(msb, f)
                                                    r := shr(f, r)
                                                }
                                                assembly {
                                                    let f := shl(6, gt(r, 0xFFFFFFFFFFFFFFFF))
                                                    msb := or(msb, f)
                                                    r := shr(f, r)
                                                }
                                                assembly {
                                                    let f := shl(5, gt(r, 0xFFFFFFFF))
                                                    msb := or(msb, f)
                                                    r := shr(f, r)
                                                }
                                                assembly {
                                                    let f := shl(4, gt(r, 0xFFFF))
                                                    msb := or(msb, f)
                                                    r := shr(f, r)
                                                }
                                                assembly {
                                                    let f := shl(3, gt(r, 0xFF))
                                                    msb := or(msb, f)
                                                    r := shr(f, r)
                                                }
                                                assembly {
                                                    let f := shl(2, gt(r, 0xF))
                                                    msb := or(msb, f)
                                                    r := shr(f, r)
                                                }
                                                assembly {
                                                    let f := shl(1, gt(r, 0x3))
                                                    msb := or(msb, f)
                                                    r := shr(f, r)
                                                }
                                                assembly {
                                                    let f := gt(r, 0x1)
                                                    msb := or(msb, f)
                                                }
                                                if (msb >= 128) r = ratio >> (msb - 127);
                                                else r = ratio << (127 - msb);
                                                int256 log_2 = (int256(msb) - 128) << 64;
                                                assembly {
                                                    r := shr(127, mul(r, r))
                                                    let f := shr(128, r)
                                                    log_2 := or(log_2, shl(63, f))
                                                    r := shr(f, r)
                                                }
                                                assembly {
                                                    r := shr(127, mul(r, r))
                                                    let f := shr(128, r)
                                                    log_2 := or(log_2, shl(62, f))
                                                    r := shr(f, r)
                                                }
                                                assembly {
                                                    r := shr(127, mul(r, r))
                                                    let f := shr(128, r)
                                                    log_2 := or(log_2, shl(61, f))
                                                    r := shr(f, r)
                                                }
                                                assembly {
                                                    r := shr(127, mul(r, r))
                                                    let f := shr(128, r)
                                                    log_2 := or(log_2, shl(60, f))
                                                    r := shr(f, r)
                                                }
                                                assembly {
                                                    r := shr(127, mul(r, r))
                                                    let f := shr(128, r)
                                                    log_2 := or(log_2, shl(59, f))
                                                    r := shr(f, r)
                                                }
                                                assembly {
                                                    r := shr(127, mul(r, r))
                                                    let f := shr(128, r)
                                                    log_2 := or(log_2, shl(58, f))
                                                    r := shr(f, r)
                                                }
                                                assembly {
                                                    r := shr(127, mul(r, r))
                                                    let f := shr(128, r)
                                                    log_2 := or(log_2, shl(57, f))
                                                    r := shr(f, r)
                                                }
                                                assembly {
                                                    r := shr(127, mul(r, r))
                                                    let f := shr(128, r)
                                                    log_2 := or(log_2, shl(56, f))
                                                    r := shr(f, r)
                                                }
                                                assembly {
                                                    r := shr(127, mul(r, r))
                                                    let f := shr(128, r)
                                                    log_2 := or(log_2, shl(55, f))
                                                    r := shr(f, r)
                                                }
                                                assembly {
                                                    r := shr(127, mul(r, r))
                                                    let f := shr(128, r)
                                                    log_2 := or(log_2, shl(54, f))
                                                    r := shr(f, r)
                                                }
                                                assembly {
                                                    r := shr(127, mul(r, r))
                                                    let f := shr(128, r)
                                                    log_2 := or(log_2, shl(53, f))
                                                    r := shr(f, r)
                                                }
                                                assembly {
                                                    r := shr(127, mul(r, r))
                                                    let f := shr(128, r)
                                                    log_2 := or(log_2, shl(52, f))
                                                    r := shr(f, r)
                                                }
                                                assembly {
                                                    r := shr(127, mul(r, r))
                                                    let f := shr(128, r)
                                                    log_2 := or(log_2, shl(51, f))
                                                    r := shr(f, r)
                                                }
                                                assembly {
                                                    r := shr(127, mul(r, r))
                                                    let f := shr(128, r)
                                                    log_2 := or(log_2, shl(50, f))
                                                }
                                                int256 log_sqrt10001 = log_2 * 255738958999603826347141; // 128.128 number
                                                int24 tickLow = int24((log_sqrt10001 - 3402992956809132418596140100660247210) >> 128);
                                                int24 tickHi = int24((log_sqrt10001 + 291339464771989622907027621153398088495) >> 128);
                                                tick = tickLow == tickHi ? tickLow : getSqrtRatioAtTick(tickHi) <= sqrtPriceX96 ? tickHi : tickLow;
                                            }
                                        }
                                        // SPDX-License-Identifier: GPL-2.0-or-later
                                        pragma solidity >=0.5.0;
                                        /// @title Math library for liquidity
                                        library LiquidityMath {
                                            /// @notice Add a signed liquidity delta to liquidity and revert if it overflows or underflows
                                            /// @param x The liquidity before change
                                            /// @param y The delta by which liquidity should be changed
                                            /// @return z The liquidity delta
                                            function addDelta(uint128 x, int128 y) internal pure returns (uint128 z) {
                                                if (y < 0) {
                                                    require((z = x - uint128(-y)) < x, 'LS');
                                                } else {
                                                    require((z = x + uint128(y)) >= x, 'LA');
                                                }
                                            }
                                        }
                                        // SPDX-License-Identifier: BUSL-1.1
                                        pragma solidity >=0.5.0;
                                        import './LowGasSafeMath.sol';
                                        import './SafeCast.sol';
                                        import './FullMath.sol';
                                        import './UnsafeMath.sol';
                                        import './FixedPoint96.sol';
                                        /// @title Functions based on Q64.96 sqrt price and liquidity
                                        /// @notice Contains the math that uses square root of price as a Q64.96 and liquidity to compute deltas
                                        library SqrtPriceMath {
                                            using LowGasSafeMath for uint256;
                                            using SafeCast for uint256;
                                            /// @notice Gets the next sqrt price given a delta of token0
                                            /// @dev Always rounds up, because in the exact output case (increasing price) we need to move the price at least
                                            /// far enough to get the desired output amount, and in the exact input case (decreasing price) we need to move the
                                            /// price less in order to not send too much output.
                                            /// The most precise formula for this is liquidity * sqrtPX96 / (liquidity +- amount * sqrtPX96),
                                            /// if this is impossible because of overflow, we calculate liquidity / (liquidity / sqrtPX96 +- amount).
                                            /// @param sqrtPX96 The starting price, i.e. before accounting for the token0 delta
                                            /// @param liquidity The amount of usable liquidity
                                            /// @param amount How much of token0 to add or remove from virtual reserves
                                            /// @param add Whether to add or remove the amount of token0
                                            /// @return The price after adding or removing amount, depending on add
                                            function getNextSqrtPriceFromAmount0RoundingUp(
                                                uint160 sqrtPX96,
                                                uint128 liquidity,
                                                uint256 amount,
                                                bool add
                                            ) internal pure returns (uint160) {
                                                // we short circuit amount == 0 because the result is otherwise not guaranteed to equal the input price
                                                if (amount == 0) return sqrtPX96;
                                                uint256 numerator1 = uint256(liquidity) << FixedPoint96.RESOLUTION;
                                                if (add) {
                                                    uint256 product;
                                                    if ((product = amount * sqrtPX96) / amount == sqrtPX96) {
                                                        uint256 denominator = numerator1 + product;
                                                        if (denominator >= numerator1)
                                                            // always fits in 160 bits
                                                            return uint160(FullMath.mulDivRoundingUp(numerator1, sqrtPX96, denominator));
                                                    }
                                                    return uint160(UnsafeMath.divRoundingUp(numerator1, (numerator1 / sqrtPX96).add(amount)));
                                                } else {
                                                    uint256 product;
                                                    // if the product overflows, we know the denominator underflows
                                                    // in addition, we must check that the denominator does not underflow
                                                    require((product = amount * sqrtPX96) / amount == sqrtPX96 && numerator1 > product);
                                                    uint256 denominator = numerator1 - product;
                                                    return FullMath.mulDivRoundingUp(numerator1, sqrtPX96, denominator).toUint160();
                                                }
                                            }
                                            /// @notice Gets the next sqrt price given a delta of token1
                                            /// @dev Always rounds down, because in the exact output case (decreasing price) we need to move the price at least
                                            /// far enough to get the desired output amount, and in the exact input case (increasing price) we need to move the
                                            /// price less in order to not send too much output.
                                            /// The formula we compute is within <1 wei of the lossless version: sqrtPX96 +- amount / liquidity
                                            /// @param sqrtPX96 The starting price, i.e., before accounting for the token1 delta
                                            /// @param liquidity The amount of usable liquidity
                                            /// @param amount How much of token1 to add, or remove, from virtual reserves
                                            /// @param add Whether to add, or remove, the amount of token1
                                            /// @return The price after adding or removing `amount`
                                            function getNextSqrtPriceFromAmount1RoundingDown(
                                                uint160 sqrtPX96,
                                                uint128 liquidity,
                                                uint256 amount,
                                                bool add
                                            ) internal pure returns (uint160) {
                                                // if we're adding (subtracting), rounding down requires rounding the quotient down (up)
                                                // in both cases, avoid a mulDiv for most inputs
                                                if (add) {
                                                    uint256 quotient =
                                                        (
                                                            amount <= type(uint160).max
                                                                ? (amount << FixedPoint96.RESOLUTION) / liquidity
                                                                : FullMath.mulDiv(amount, FixedPoint96.Q96, liquidity)
                                                        );
                                                    return uint256(sqrtPX96).add(quotient).toUint160();
                                                } else {
                                                    uint256 quotient =
                                                        (
                                                            amount <= type(uint160).max
                                                                ? UnsafeMath.divRoundingUp(amount << FixedPoint96.RESOLUTION, liquidity)
                                                                : FullMath.mulDivRoundingUp(amount, FixedPoint96.Q96, liquidity)
                                                        );
                                                    require(sqrtPX96 > quotient);
                                                    // always fits 160 bits
                                                    return uint160(sqrtPX96 - quotient);
                                                }
                                            }
                                            /// @notice Gets the next sqrt price given an input amount of token0 or token1
                                            /// @dev Throws if price or liquidity are 0, or if the next price is out of bounds
                                            /// @param sqrtPX96 The starting price, i.e., before accounting for the input amount
                                            /// @param liquidity The amount of usable liquidity
                                            /// @param amountIn How much of token0, or token1, is being swapped in
                                            /// @param zeroForOne Whether the amount in is token0 or token1
                                            /// @return sqrtQX96 The price after adding the input amount to token0 or token1
                                            function getNextSqrtPriceFromInput(
                                                uint160 sqrtPX96,
                                                uint128 liquidity,
                                                uint256 amountIn,
                                                bool zeroForOne
                                            ) internal pure returns (uint160 sqrtQX96) {
                                                require(sqrtPX96 > 0);
                                                require(liquidity > 0);
                                                // round to make sure that we don't pass the target price
                                                return
                                                    zeroForOne
                                                        ? getNextSqrtPriceFromAmount0RoundingUp(sqrtPX96, liquidity, amountIn, true)
                                                        : getNextSqrtPriceFromAmount1RoundingDown(sqrtPX96, liquidity, amountIn, true);
                                            }
                                            /// @notice Gets the next sqrt price given an output amount of token0 or token1
                                            /// @dev Throws if price or liquidity are 0 or the next price is out of bounds
                                            /// @param sqrtPX96 The starting price before accounting for the output amount
                                            /// @param liquidity The amount of usable liquidity
                                            /// @param amountOut How much of token0, or token1, is being swapped out
                                            /// @param zeroForOne Whether the amount out is token0 or token1
                                            /// @return sqrtQX96 The price after removing the output amount of token0 or token1
                                            function getNextSqrtPriceFromOutput(
                                                uint160 sqrtPX96,
                                                uint128 liquidity,
                                                uint256 amountOut,
                                                bool zeroForOne
                                            ) internal pure returns (uint160 sqrtQX96) {
                                                require(sqrtPX96 > 0);
                                                require(liquidity > 0);
                                                // round to make sure that we pass the target price
                                                return
                                                    zeroForOne
                                                        ? getNextSqrtPriceFromAmount1RoundingDown(sqrtPX96, liquidity, amountOut, false)
                                                        : getNextSqrtPriceFromAmount0RoundingUp(sqrtPX96, liquidity, amountOut, false);
                                            }
                                            /// @notice Gets the amount0 delta between two prices
                                            /// @dev Calculates liquidity / sqrt(lower) - liquidity / sqrt(upper),
                                            /// i.e. liquidity * (sqrt(upper) - sqrt(lower)) / (sqrt(upper) * sqrt(lower))
                                            /// @param sqrtRatioAX96 A sqrt price
                                            /// @param sqrtRatioBX96 Another sqrt price
                                            /// @param liquidity The amount of usable liquidity
                                            /// @param roundUp Whether to round the amount up or down
                                            /// @return amount0 Amount of token0 required to cover a position of size liquidity between the two passed prices
                                            function getAmount0Delta(
                                                uint160 sqrtRatioAX96,
                                                uint160 sqrtRatioBX96,
                                                uint128 liquidity,
                                                bool roundUp
                                            ) internal pure returns (uint256 amount0) {
                                                if (sqrtRatioAX96 > sqrtRatioBX96) (sqrtRatioAX96, sqrtRatioBX96) = (sqrtRatioBX96, sqrtRatioAX96);
                                                uint256 numerator1 = uint256(liquidity) << FixedPoint96.RESOLUTION;
                                                uint256 numerator2 = sqrtRatioBX96 - sqrtRatioAX96;
                                                require(sqrtRatioAX96 > 0);
                                                return
                                                    roundUp
                                                        ? UnsafeMath.divRoundingUp(
                                                            FullMath.mulDivRoundingUp(numerator1, numerator2, sqrtRatioBX96),
                                                            sqrtRatioAX96
                                                        )
                                                        : FullMath.mulDiv(numerator1, numerator2, sqrtRatioBX96) / sqrtRatioAX96;
                                            }
                                            /// @notice Gets the amount1 delta between two prices
                                            /// @dev Calculates liquidity * (sqrt(upper) - sqrt(lower))
                                            /// @param sqrtRatioAX96 A sqrt price
                                            /// @param sqrtRatioBX96 Another sqrt price
                                            /// @param liquidity The amount of usable liquidity
                                            /// @param roundUp Whether to round the amount up, or down
                                            /// @return amount1 Amount of token1 required to cover a position of size liquidity between the two passed prices
                                            function getAmount1Delta(
                                                uint160 sqrtRatioAX96,
                                                uint160 sqrtRatioBX96,
                                                uint128 liquidity,
                                                bool roundUp
                                            ) internal pure returns (uint256 amount1) {
                                                if (sqrtRatioAX96 > sqrtRatioBX96) (sqrtRatioAX96, sqrtRatioBX96) = (sqrtRatioBX96, sqrtRatioAX96);
                                                return
                                                    roundUp
                                                        ? FullMath.mulDivRoundingUp(liquidity, sqrtRatioBX96 - sqrtRatioAX96, FixedPoint96.Q96)
                                                        : FullMath.mulDiv(liquidity, sqrtRatioBX96 - sqrtRatioAX96, FixedPoint96.Q96);
                                            }
                                            /// @notice Helper that gets signed token0 delta
                                            /// @param sqrtRatioAX96 A sqrt price
                                            /// @param sqrtRatioBX96 Another sqrt price
                                            /// @param liquidity The change in liquidity for which to compute the amount0 delta
                                            /// @return amount0 Amount of token0 corresponding to the passed liquidityDelta between the two prices
                                            function getAmount0Delta(
                                                uint160 sqrtRatioAX96,
                                                uint160 sqrtRatioBX96,
                                                int128 liquidity
                                            ) internal pure returns (int256 amount0) {
                                                return
                                                    liquidity < 0
                                                        ? -getAmount0Delta(sqrtRatioAX96, sqrtRatioBX96, uint128(-liquidity), false).toInt256()
                                                        : getAmount0Delta(sqrtRatioAX96, sqrtRatioBX96, uint128(liquidity), true).toInt256();
                                            }
                                            /// @notice Helper that gets signed token1 delta
                                            /// @param sqrtRatioAX96 A sqrt price
                                            /// @param sqrtRatioBX96 Another sqrt price
                                            /// @param liquidity The change in liquidity for which to compute the amount1 delta
                                            /// @return amount1 Amount of token1 corresponding to the passed liquidityDelta between the two prices
                                            function getAmount1Delta(
                                                uint160 sqrtRatioAX96,
                                                uint160 sqrtRatioBX96,
                                                int128 liquidity
                                            ) internal pure returns (int256 amount1) {
                                                return
                                                    liquidity < 0
                                                        ? -getAmount1Delta(sqrtRatioAX96, sqrtRatioBX96, uint128(-liquidity), false).toInt256()
                                                        : getAmount1Delta(sqrtRatioAX96, sqrtRatioBX96, uint128(liquidity), true).toInt256();
                                            }
                                        }
                                        // SPDX-License-Identifier: BUSL-1.1
                                        pragma solidity >=0.5.0;
                                        import './FullMath.sol';
                                        import './SqrtPriceMath.sol';
                                        /// @title Computes the result of a swap within ticks
                                        /// @notice Contains methods for computing the result of a swap within a single tick price range, i.e., a single tick.
                                        library SwapMath {
                                            /// @notice Computes the result of swapping some amount in, or amount out, given the parameters of the swap
                                            /// @dev The fee, plus the amount in, will never exceed the amount remaining if the swap's `amountSpecified` is positive
                                            /// @param sqrtRatioCurrentX96 The current sqrt price of the pool
                                            /// @param sqrtRatioTargetX96 The price that cannot be exceeded, from which the direction of the swap is inferred
                                            /// @param liquidity The usable liquidity
                                            /// @param amountRemaining How much input or output amount is remaining to be swapped in/out
                                            /// @param feePips The fee taken from the input amount, expressed in hundredths of a bip
                                            /// @return sqrtRatioNextX96 The price after swapping the amount in/out, not to exceed the price target
                                            /// @return amountIn The amount to be swapped in, of either token0 or token1, based on the direction of the swap
                                            /// @return amountOut The amount to be received, of either token0 or token1, based on the direction of the swap
                                            /// @return feeAmount The amount of input that will be taken as a fee
                                            function computeSwapStep(
                                                uint160 sqrtRatioCurrentX96,
                                                uint160 sqrtRatioTargetX96,
                                                uint128 liquidity,
                                                int256 amountRemaining,
                                                uint24 feePips
                                            )
                                                internal
                                                pure
                                                returns (
                                                    uint160 sqrtRatioNextX96,
                                                    uint256 amountIn,
                                                    uint256 amountOut,
                                                    uint256 feeAmount
                                                )
                                            {
                                                bool zeroForOne = sqrtRatioCurrentX96 >= sqrtRatioTargetX96;
                                                bool exactIn = amountRemaining >= 0;
                                                if (exactIn) {
                                                    uint256 amountRemainingLessFee = FullMath.mulDiv(uint256(amountRemaining), 1e6 - feePips, 1e6);
                                                    amountIn = zeroForOne
                                                        ? SqrtPriceMath.getAmount0Delta(sqrtRatioTargetX96, sqrtRatioCurrentX96, liquidity, true)
                                                        : SqrtPriceMath.getAmount1Delta(sqrtRatioCurrentX96, sqrtRatioTargetX96, liquidity, true);
                                                    if (amountRemainingLessFee >= amountIn) sqrtRatioNextX96 = sqrtRatioTargetX96;
                                                    else
                                                        sqrtRatioNextX96 = SqrtPriceMath.getNextSqrtPriceFromInput(
                                                            sqrtRatioCurrentX96,
                                                            liquidity,
                                                            amountRemainingLessFee,
                                                            zeroForOne
                                                        );
                                                } else {
                                                    amountOut = zeroForOne
                                                        ? SqrtPriceMath.getAmount1Delta(sqrtRatioTargetX96, sqrtRatioCurrentX96, liquidity, false)
                                                        : SqrtPriceMath.getAmount0Delta(sqrtRatioCurrentX96, sqrtRatioTargetX96, liquidity, false);
                                                    if (uint256(-amountRemaining) >= amountOut) sqrtRatioNextX96 = sqrtRatioTargetX96;
                                                    else
                                                        sqrtRatioNextX96 = SqrtPriceMath.getNextSqrtPriceFromOutput(
                                                            sqrtRatioCurrentX96,
                                                            liquidity,
                                                            uint256(-amountRemaining),
                                                            zeroForOne
                                                        );
                                                }
                                                bool max = sqrtRatioTargetX96 == sqrtRatioNextX96;
                                                // get the input/output amounts
                                                if (zeroForOne) {
                                                    amountIn = max && exactIn
                                                        ? amountIn
                                                        : SqrtPriceMath.getAmount0Delta(sqrtRatioNextX96, sqrtRatioCurrentX96, liquidity, true);
                                                    amountOut = max && !exactIn
                                                        ? amountOut
                                                        : SqrtPriceMath.getAmount1Delta(sqrtRatioNextX96, sqrtRatioCurrentX96, liquidity, false);
                                                } else {
                                                    amountIn = max && exactIn
                                                        ? amountIn
                                                        : SqrtPriceMath.getAmount1Delta(sqrtRatioCurrentX96, sqrtRatioNextX96, liquidity, true);
                                                    amountOut = max && !exactIn
                                                        ? amountOut
                                                        : SqrtPriceMath.getAmount0Delta(sqrtRatioCurrentX96, sqrtRatioNextX96, liquidity, false);
                                                }
                                                // cap the output amount to not exceed the remaining output amount
                                                if (!exactIn && amountOut > uint256(-amountRemaining)) {
                                                    amountOut = uint256(-amountRemaining);
                                                }
                                                if (exactIn && sqrtRatioNextX96 != sqrtRatioTargetX96) {
                                                    // we didn't reach the target, so take the remainder of the maximum input as fee
                                                    feeAmount = uint256(amountRemaining) - amountIn;
                                                } else {
                                                    feeAmount = FullMath.mulDivRoundingUp(amountIn, feePips, 1e6 - feePips);
                                                }
                                            }
                                        }
                                        // SPDX-License-Identifier: GPL-2.0-or-later
                                        pragma solidity >=0.5.0;
                                        /// @title An interface for a contract that is capable of deploying Uniswap V3 Pools
                                        /// @notice A contract that constructs a pool must implement this to pass arguments to the pool
                                        /// @dev This is used to avoid having constructor arguments in the pool contract, which results in the init code hash
                                        /// of the pool being constant allowing the CREATE2 address of the pool to be cheaply computed on-chain
                                        interface IUniswapV3PoolDeployer {
                                            /// @notice Get the parameters to be used in constructing the pool, set transiently during pool creation.
                                            /// @dev Called by the pool constructor to fetch the parameters of the pool
                                            /// Returns factory The factory address
                                            /// Returns token0 The first token of the pool by address sort order
                                            /// Returns token1 The second token of the pool by address sort order
                                            /// Returns fee The fee collected upon every swap in the pool, denominated in hundredths of a bip
                                            /// Returns tickSpacing The minimum number of ticks between initialized ticks
                                            function parameters()
                                                external
                                                view
                                                returns (
                                                    address factory,
                                                    address token0,
                                                    address token1,
                                                    uint24 fee,
                                                    int24 tickSpacing
                                                );
                                        }
                                        // SPDX-License-Identifier: GPL-2.0-or-later
                                        pragma solidity >=0.5.0;
                                        /// @title The interface for the Uniswap V3 Factory
                                        /// @notice The Uniswap V3 Factory facilitates creation of Uniswap V3 pools and control over the protocol fees
                                        interface IUniswapV3Factory {
                                            /// @notice Emitted when the owner of the factory is changed
                                            /// @param oldOwner The owner before the owner was changed
                                            /// @param newOwner The owner after the owner was changed
                                            event OwnerChanged(address indexed oldOwner, address indexed newOwner);
                                            /// @notice Emitted when a pool is created
                                            /// @param token0 The first token of the pool by address sort order
                                            /// @param token1 The second token of the pool by address sort order
                                            /// @param fee The fee collected upon every swap in the pool, denominated in hundredths of a bip
                                            /// @param tickSpacing The minimum number of ticks between initialized ticks
                                            /// @param pool The address of the created pool
                                            event PoolCreated(
                                                address indexed token0,
                                                address indexed token1,
                                                uint24 indexed fee,
                                                int24 tickSpacing,
                                                address pool
                                            );
                                            /// @notice Emitted when a new fee amount is enabled for pool creation via the factory
                                            /// @param fee The enabled fee, denominated in hundredths of a bip
                                            /// @param tickSpacing The minimum number of ticks between initialized ticks for pools created with the given fee
                                            event FeeAmountEnabled(uint24 indexed fee, int24 indexed tickSpacing);
                                            /// @notice Returns the current owner of the factory
                                            /// @dev Can be changed by the current owner via setOwner
                                            /// @return The address of the factory owner
                                            function owner() external view returns (address);
                                            /// @notice Returns the tick spacing for a given fee amount, if enabled, or 0 if not enabled
                                            /// @dev A fee amount can never be removed, so this value should be hard coded or cached in the calling context
                                            /// @param fee The enabled fee, denominated in hundredths of a bip. Returns 0 in case of unenabled fee
                                            /// @return The tick spacing
                                            function feeAmountTickSpacing(uint24 fee) external view returns (int24);
                                            /// @notice Returns the pool address for a given pair of tokens and a fee, or address 0 if it does not exist
                                            /// @dev tokenA and tokenB may be passed in either token0/token1 or token1/token0 order
                                            /// @param tokenA The contract address of either token0 or token1
                                            /// @param tokenB The contract address of the other token
                                            /// @param fee The fee collected upon every swap in the pool, denominated in hundredths of a bip
                                            /// @return pool The pool address
                                            function getPool(
                                                address tokenA,
                                                address tokenB,
                                                uint24 fee
                                            ) external view returns (address pool);
                                            /// @notice Creates a pool for the given two tokens and fee
                                            /// @param tokenA One of the two tokens in the desired pool
                                            /// @param tokenB The other of the two tokens in the desired pool
                                            /// @param fee The desired fee for the pool
                                            /// @dev tokenA and tokenB may be passed in either order: token0/token1 or token1/token0. tickSpacing is retrieved
                                            /// from the fee. The call will revert if the pool already exists, the fee is invalid, or the token arguments
                                            /// are invalid.
                                            /// @return pool The address of the newly created pool
                                            function createPool(
                                                address tokenA,
                                                address tokenB,
                                                uint24 fee
                                            ) external returns (address pool);
                                            /// @notice Updates the owner of the factory
                                            /// @dev Must be called by the current owner
                                            /// @param _owner The new owner of the factory
                                            function setOwner(address _owner) external;
                                            /// @notice Enables a fee amount with the given tickSpacing
                                            /// @dev Fee amounts may never be removed once enabled
                                            /// @param fee The fee amount to enable, denominated in hundredths of a bip (i.e. 1e-6)
                                            /// @param tickSpacing The spacing between ticks to be enforced for all pools created with the given fee amount
                                            function enableFeeAmount(uint24 fee, int24 tickSpacing) external;
                                        }
                                        // SPDX-License-Identifier: GPL-2.0-or-later
                                        pragma solidity >=0.5.0;
                                        /// @title Minimal ERC20 interface for Uniswap
                                        /// @notice Contains a subset of the full ERC20 interface that is used in Uniswap V3
                                        interface IERC20Minimal {
                                            /// @notice Returns the balance of a token
                                            /// @param account The account for which to look up the number of tokens it has, i.e. its balance
                                            /// @return The number of tokens held by the account
                                            function balanceOf(address account) external view returns (uint256);
                                            /// @notice Transfers the amount of token from the `msg.sender` to the recipient
                                            /// @param recipient The account that will receive the amount transferred
                                            /// @param amount The number of tokens to send from the sender to the recipient
                                            /// @return Returns true for a successful transfer, false for an unsuccessful transfer
                                            function transfer(address recipient, uint256 amount) external returns (bool);
                                            /// @notice Returns the current allowance given to a spender by an owner
                                            /// @param owner The account of the token owner
                                            /// @param spender The account of the token spender
                                            /// @return The current allowance granted by `owner` to `spender`
                                            function allowance(address owner, address spender) external view returns (uint256);
                                            /// @notice Sets the allowance of a spender from the `msg.sender` to the value `amount`
                                            /// @param spender The account which will be allowed to spend a given amount of the owners tokens
                                            /// @param amount The amount of tokens allowed to be used by `spender`
                                            /// @return Returns true for a successful approval, false for unsuccessful
                                            function approve(address spender, uint256 amount) external returns (bool);
                                            /// @notice Transfers `amount` tokens from `sender` to `recipient` up to the allowance given to the `msg.sender`
                                            /// @param sender The account from which the transfer will be initiated
                                            /// @param recipient The recipient of the transfer
                                            /// @param amount The amount of the transfer
                                            /// @return Returns true for a successful transfer, false for unsuccessful
                                            function transferFrom(
                                                address sender,
                                                address recipient,
                                                uint256 amount
                                            ) external returns (bool);
                                            /// @notice Event emitted when tokens are transferred from one address to another, either via `#transfer` or `#transferFrom`.
                                            /// @param from The account from which the tokens were sent, i.e. the balance decreased
                                            /// @param to The account to which the tokens were sent, i.e. the balance increased
                                            /// @param value The amount of tokens that were transferred
                                            event Transfer(address indexed from, address indexed to, uint256 value);
                                            /// @notice Event emitted when the approval amount for the spender of a given owner's tokens changes.
                                            /// @param owner The account that approved spending of its tokens
                                            /// @param spender The account for which the spending allowance was modified
                                            /// @param value The new allowance from the owner to the spender
                                            event Approval(address indexed owner, address indexed spender, uint256 value);
                                        }
                                        // SPDX-License-Identifier: GPL-2.0-or-later
                                        pragma solidity >=0.5.0;
                                        /// @title Callback for IUniswapV3PoolActions#mint
                                        /// @notice Any contract that calls IUniswapV3PoolActions#mint must implement this interface
                                        interface IUniswapV3MintCallback {
                                            /// @notice Called to `msg.sender` after minting liquidity to a position from IUniswapV3Pool#mint.
                                            /// @dev In the implementation you must pay the pool tokens owed for the minted liquidity.
                                            /// The caller of this method must be checked to be a UniswapV3Pool deployed by the canonical UniswapV3Factory.
                                            /// @param amount0Owed The amount of token0 due to the pool for the minted liquidity
                                            /// @param amount1Owed The amount of token1 due to the pool for the minted liquidity
                                            /// @param data Any data passed through by the caller via the IUniswapV3PoolActions#mint call
                                            function uniswapV3MintCallback(
                                                uint256 amount0Owed,
                                                uint256 amount1Owed,
                                                bytes calldata data
                                            ) external;
                                        }
                                        // SPDX-License-Identifier: GPL-2.0-or-later
                                        pragma solidity >=0.5.0;
                                        /// @title Callback for IUniswapV3PoolActions#swap
                                        /// @notice Any contract that calls IUniswapV3PoolActions#swap must implement this interface
                                        interface IUniswapV3SwapCallback {
                                            /// @notice Called to `msg.sender` after executing a swap via IUniswapV3Pool#swap.
                                            /// @dev In the implementation you must pay the pool tokens owed for the swap.
                                            /// The caller of this method must be checked to be a UniswapV3Pool deployed by the canonical UniswapV3Factory.
                                            /// amount0Delta and amount1Delta can both be 0 if no tokens were swapped.
                                            /// @param amount0Delta The amount of token0 that was sent (negative) or must be received (positive) by the pool by
                                            /// the end of the swap. If positive, the callback must send that amount of token0 to the pool.
                                            /// @param amount1Delta The amount of token1 that was sent (negative) or must be received (positive) by the pool by
                                            /// the end of the swap. If positive, the callback must send that amount of token1 to the pool.
                                            /// @param data Any data passed through by the caller via the IUniswapV3PoolActions#swap call
                                            function uniswapV3SwapCallback(
                                                int256 amount0Delta,
                                                int256 amount1Delta,
                                                bytes calldata data
                                            ) external;
                                        }
                                        // SPDX-License-Identifier: GPL-2.0-or-later
                                        pragma solidity >=0.5.0;
                                        /// @title Callback for IUniswapV3PoolActions#flash
                                        /// @notice Any contract that calls IUniswapV3PoolActions#flash must implement this interface
                                        interface IUniswapV3FlashCallback {
                                            /// @notice Called to `msg.sender` after transferring to the recipient from IUniswapV3Pool#flash.
                                            /// @dev In the implementation you must repay the pool the tokens sent by flash plus the computed fee amounts.
                                            /// The caller of this method must be checked to be a UniswapV3Pool deployed by the canonical UniswapV3Factory.
                                            /// @param fee0 The fee amount in token0 due to the pool by the end of the flash
                                            /// @param fee1 The fee amount in token1 due to the pool by the end of the flash
                                            /// @param data Any data passed through by the caller via the IUniswapV3PoolActions#flash call
                                            function uniswapV3FlashCallback(
                                                uint256 fee0,
                                                uint256 fee1,
                                                bytes calldata data
                                            ) external;
                                        }
                                        // SPDX-License-Identifier: GPL-2.0-or-later
                                        pragma solidity >=0.5.0;
                                        /// @title Pool state that never changes
                                        /// @notice These parameters are fixed for a pool forever, i.e., the methods will always return the same values
                                        interface IUniswapV3PoolImmutables {
                                            /// @notice The contract that deployed the pool, which must adhere to the IUniswapV3Factory interface
                                            /// @return The contract address
                                            function factory() external view returns (address);
                                            /// @notice The first of the two tokens of the pool, sorted by address
                                            /// @return The token contract address
                                            function token0() external view returns (address);
                                            /// @notice The second of the two tokens of the pool, sorted by address
                                            /// @return The token contract address
                                            function token1() external view returns (address);
                                            /// @notice The pool's fee in hundredths of a bip, i.e. 1e-6
                                            /// @return The fee
                                            function fee() external view returns (uint24);
                                            /// @notice The pool tick spacing
                                            /// @dev Ticks can only be used at multiples of this value, minimum of 1 and always positive
                                            /// e.g.: a tickSpacing of 3 means ticks can be initialized every 3rd tick, i.e., ..., -6, -3, 0, 3, 6, ...
                                            /// This value is an int24 to avoid casting even though it is always positive.
                                            /// @return The tick spacing
                                            function tickSpacing() external view returns (int24);
                                            /// @notice The maximum amount of position liquidity that can use any tick in the range
                                            /// @dev This parameter is enforced per tick to prevent liquidity from overflowing a uint128 at any point, and
                                            /// also prevents out-of-range liquidity from being used to prevent adding in-range liquidity to a pool
                                            /// @return The max amount of liquidity per tick
                                            function maxLiquidityPerTick() external view returns (uint128);
                                        }
                                        // SPDX-License-Identifier: GPL-2.0-or-later
                                        pragma solidity >=0.5.0;
                                        /// @title Pool state that can change
                                        /// @notice These methods compose the pool's state, and can change with any frequency including multiple times
                                        /// per transaction
                                        interface IUniswapV3PoolState {
                                            /// @notice The 0th storage slot in the pool stores many values, and is exposed as a single method to save gas
                                            /// when accessed externally.
                                            /// @return sqrtPriceX96 The current price of the pool as a sqrt(token1/token0) Q64.96 value
                                            /// tick The current tick of the pool, i.e. according to the last tick transition that was run.
                                            /// This value may not always be equal to SqrtTickMath.getTickAtSqrtRatio(sqrtPriceX96) if the price is on a tick
                                            /// boundary.
                                            /// observationIndex The index of the last oracle observation that was written,
                                            /// observationCardinality The current maximum number of observations stored in the pool,
                                            /// observationCardinalityNext The next maximum number of observations, to be updated when the observation.
                                            /// feeProtocol The protocol fee for both tokens of the pool.
                                            /// Encoded as two 4 bit values, where the protocol fee of token1 is shifted 4 bits and the protocol fee of token0
                                            /// is the lower 4 bits. Used as the denominator of a fraction of the swap fee, e.g. 4 means 1/4th of the swap fee.
                                            /// unlocked Whether the pool is currently locked to reentrancy
                                            function slot0()
                                                external
                                                view
                                                returns (
                                                    uint160 sqrtPriceX96,
                                                    int24 tick,
                                                    uint16 observationIndex,
                                                    uint16 observationCardinality,
                                                    uint16 observationCardinalityNext,
                                                    uint8 feeProtocol,
                                                    bool unlocked
                                                );
                                            /// @notice The fee growth as a Q128.128 fees of token0 collected per unit of liquidity for the entire life of the pool
                                            /// @dev This value can overflow the uint256
                                            function feeGrowthGlobal0X128() external view returns (uint256);
                                            /// @notice The fee growth as a Q128.128 fees of token1 collected per unit of liquidity for the entire life of the pool
                                            /// @dev This value can overflow the uint256
                                            function feeGrowthGlobal1X128() external view returns (uint256);
                                            /// @notice The amounts of token0 and token1 that are owed to the protocol
                                            /// @dev Protocol fees will never exceed uint128 max in either token
                                            function protocolFees() external view returns (uint128 token0, uint128 token1);
                                            /// @notice The currently in range liquidity available to the pool
                                            /// @dev This value has no relationship to the total liquidity across all ticks
                                            function liquidity() external view returns (uint128);
                                            /// @notice Look up information about a specific tick in the pool
                                            /// @param tick The tick to look up
                                            /// @return liquidityGross the total amount of position liquidity that uses the pool either as tick lower or
                                            /// tick upper,
                                            /// liquidityNet how much liquidity changes when the pool price crosses the tick,
                                            /// feeGrowthOutside0X128 the fee growth on the other side of the tick from the current tick in token0,
                                            /// feeGrowthOutside1X128 the fee growth on the other side of the tick from the current tick in token1,
                                            /// tickCumulativeOutside the cumulative tick value on the other side of the tick from the current tick
                                            /// secondsPerLiquidityOutsideX128 the seconds spent per liquidity on the other side of the tick from the current tick,
                                            /// secondsOutside the seconds spent on the other side of the tick from the current tick,
                                            /// initialized Set to true if the tick is initialized, i.e. liquidityGross is greater than 0, otherwise equal to false.
                                            /// Outside values can only be used if the tick is initialized, i.e. if liquidityGross is greater than 0.
                                            /// In addition, these values are only relative and must be used only in comparison to previous snapshots for
                                            /// a specific position.
                                            function ticks(int24 tick)
                                                external
                                                view
                                                returns (
                                                    uint128 liquidityGross,
                                                    int128 liquidityNet,
                                                    uint256 feeGrowthOutside0X128,
                                                    uint256 feeGrowthOutside1X128,
                                                    int56 tickCumulativeOutside,
                                                    uint160 secondsPerLiquidityOutsideX128,
                                                    uint32 secondsOutside,
                                                    bool initialized
                                                );
                                            /// @notice Returns 256 packed tick initialized boolean values. See TickBitmap for more information
                                            function tickBitmap(int16 wordPosition) external view returns (uint256);
                                            /// @notice Returns the information about a position by the position's key
                                            /// @param key The position's key is a hash of a preimage composed by the owner, tickLower and tickUpper
                                            /// @return _liquidity The amount of liquidity in the position,
                                            /// Returns feeGrowthInside0LastX128 fee growth of token0 inside the tick range as of the last mint/burn/poke,
                                            /// Returns feeGrowthInside1LastX128 fee growth of token1 inside the tick range as of the last mint/burn/poke,
                                            /// Returns tokensOwed0 the computed amount of token0 owed to the position as of the last mint/burn/poke,
                                            /// Returns tokensOwed1 the computed amount of token1 owed to the position as of the last mint/burn/poke
                                            function positions(bytes32 key)
                                                external
                                                view
                                                returns (
                                                    uint128 _liquidity,
                                                    uint256 feeGrowthInside0LastX128,
                                                    uint256 feeGrowthInside1LastX128,
                                                    uint128 tokensOwed0,
                                                    uint128 tokensOwed1
                                                );
                                            /// @notice Returns data about a specific observation index
                                            /// @param index The element of the observations array to fetch
                                            /// @dev You most likely want to use #observe() instead of this method to get an observation as of some amount of time
                                            /// ago, rather than at a specific index in the array.
                                            /// @return blockTimestamp The timestamp of the observation,
                                            /// Returns tickCumulative the tick multiplied by seconds elapsed for the life of the pool as of the observation timestamp,
                                            /// Returns secondsPerLiquidityCumulativeX128 the seconds per in range liquidity for the life of the pool as of the observation timestamp,
                                            /// Returns initialized whether the observation has been initialized and the values are safe to use
                                            function observations(uint256 index)
                                                external
                                                view
                                                returns (
                                                    uint32 blockTimestamp,
                                                    int56 tickCumulative,
                                                    uint160 secondsPerLiquidityCumulativeX128,
                                                    bool initialized
                                                );
                                        }
                                        // SPDX-License-Identifier: GPL-2.0-or-later
                                        pragma solidity >=0.5.0;
                                        /// @title Pool state that is not stored
                                        /// @notice Contains view functions to provide information about the pool that is computed rather than stored on the
                                        /// blockchain. The functions here may have variable gas costs.
                                        interface IUniswapV3PoolDerivedState {
                                            /// @notice Returns the cumulative tick and liquidity as of each timestamp `secondsAgo` from the current block timestamp
                                            /// @dev To get a time weighted average tick or liquidity-in-range, you must call this with two values, one representing
                                            /// the beginning of the period and another for the end of the period. E.g., to get the last hour time-weighted average tick,
                                            /// you must call it with secondsAgos = [3600, 0].
                                            /// @dev The time weighted average tick represents the geometric time weighted average price of the pool, in
                                            /// log base sqrt(1.0001) of token1 / token0. The TickMath library can be used to go from a tick value to a ratio.
                                            /// @param secondsAgos From how long ago each cumulative tick and liquidity value should be returned
                                            /// @return tickCumulatives Cumulative tick values as of each `secondsAgos` from the current block timestamp
                                            /// @return secondsPerLiquidityCumulativeX128s Cumulative seconds per liquidity-in-range value as of each `secondsAgos` from the current block
                                            /// timestamp
                                            function observe(uint32[] calldata secondsAgos)
                                                external
                                                view
                                                returns (int56[] memory tickCumulatives, uint160[] memory secondsPerLiquidityCumulativeX128s);
                                            /// @notice Returns a snapshot of the tick cumulative, seconds per liquidity and seconds inside a tick range
                                            /// @dev Snapshots must only be compared to other snapshots, taken over a period for which a position existed.
                                            /// I.e., snapshots cannot be compared if a position is not held for the entire period between when the first
                                            /// snapshot is taken and the second snapshot is taken.
                                            /// @param tickLower The lower tick of the range
                                            /// @param tickUpper The upper tick of the range
                                            /// @return tickCumulativeInside The snapshot of the tick accumulator for the range
                                            /// @return secondsPerLiquidityInsideX128 The snapshot of seconds per liquidity for the range
                                            /// @return secondsInside The snapshot of seconds per liquidity for the range
                                            function snapshotCumulativesInside(int24 tickLower, int24 tickUpper)
                                                external
                                                view
                                                returns (
                                                    int56 tickCumulativeInside,
                                                    uint160 secondsPerLiquidityInsideX128,
                                                    uint32 secondsInside
                                                );
                                        }
                                        // SPDX-License-Identifier: GPL-2.0-or-later
                                        pragma solidity >=0.5.0;
                                        /// @title Permissionless pool actions
                                        /// @notice Contains pool methods that can be called by anyone
                                        interface IUniswapV3PoolActions {
                                            /// @notice Sets the initial price for the pool
                                            /// @dev Price is represented as a sqrt(amountToken1/amountToken0) Q64.96 value
                                            /// @param sqrtPriceX96 the initial sqrt price of the pool as a Q64.96
                                            function initialize(uint160 sqrtPriceX96) external;
                                            /// @notice Adds liquidity for the given recipient/tickLower/tickUpper position
                                            /// @dev The caller of this method receives a callback in the form of IUniswapV3MintCallback#uniswapV3MintCallback
                                            /// in which they must pay any token0 or token1 owed for the liquidity. The amount of token0/token1 due depends
                                            /// on tickLower, tickUpper, the amount of liquidity, and the current price.
                                            /// @param recipient The address for which the liquidity will be created
                                            /// @param tickLower The lower tick of the position in which to add liquidity
                                            /// @param tickUpper The upper tick of the position in which to add liquidity
                                            /// @param amount The amount of liquidity to mint
                                            /// @param data Any data that should be passed through to the callback
                                            /// @return amount0 The amount of token0 that was paid to mint the given amount of liquidity. Matches the value in the callback
                                            /// @return amount1 The amount of token1 that was paid to mint the given amount of liquidity. Matches the value in the callback
                                            function mint(
                                                address recipient,
                                                int24 tickLower,
                                                int24 tickUpper,
                                                uint128 amount,
                                                bytes calldata data
                                            ) external returns (uint256 amount0, uint256 amount1);
                                            /// @notice Collects tokens owed to a position
                                            /// @dev Does not recompute fees earned, which must be done either via mint or burn of any amount of liquidity.
                                            /// Collect must be called by the position owner. To withdraw only token0 or only token1, amount0Requested or
                                            /// amount1Requested may be set to zero. To withdraw all tokens owed, caller may pass any value greater than the
                                            /// actual tokens owed, e.g. type(uint128).max. Tokens owed may be from accumulated swap fees or burned liquidity.
                                            /// @param recipient The address which should receive the fees collected
                                            /// @param tickLower The lower tick of the position for which to collect fees
                                            /// @param tickUpper The upper tick of the position for which to collect fees
                                            /// @param amount0Requested How much token0 should be withdrawn from the fees owed
                                            /// @param amount1Requested How much token1 should be withdrawn from the fees owed
                                            /// @return amount0 The amount of fees collected in token0
                                            /// @return amount1 The amount of fees collected in token1
                                            function collect(
                                                address recipient,
                                                int24 tickLower,
                                                int24 tickUpper,
                                                uint128 amount0Requested,
                                                uint128 amount1Requested
                                            ) external returns (uint128 amount0, uint128 amount1);
                                            /// @notice Burn liquidity from the sender and account tokens owed for the liquidity to the position
                                            /// @dev Can be used to trigger a recalculation of fees owed to a position by calling with an amount of 0
                                            /// @dev Fees must be collected separately via a call to #collect
                                            /// @param tickLower The lower tick of the position for which to burn liquidity
                                            /// @param tickUpper The upper tick of the position for which to burn liquidity
                                            /// @param amount How much liquidity to burn
                                            /// @return amount0 The amount of token0 sent to the recipient
                                            /// @return amount1 The amount of token1 sent to the recipient
                                            function burn(
                                                int24 tickLower,
                                                int24 tickUpper,
                                                uint128 amount
                                            ) external returns (uint256 amount0, uint256 amount1);
                                            /// @notice Swap token0 for token1, or token1 for token0
                                            /// @dev The caller of this method receives a callback in the form of IUniswapV3SwapCallback#uniswapV3SwapCallback
                                            /// @param recipient The address to receive the output of the swap
                                            /// @param zeroForOne The direction of the swap, true for token0 to token1, false for token1 to token0
                                            /// @param amountSpecified The amount of the swap, which implicitly configures the swap as exact input (positive), or exact output (negative)
                                            /// @param sqrtPriceLimitX96 The Q64.96 sqrt price limit. If zero for one, the price cannot be less than this
                                            /// value after the swap. If one for zero, the price cannot be greater than this value after the swap
                                            /// @param data Any data to be passed through to the callback
                                            /// @return amount0 The delta of the balance of token0 of the pool, exact when negative, minimum when positive
                                            /// @return amount1 The delta of the balance of token1 of the pool, exact when negative, minimum when positive
                                            function swap(
                                                address recipient,
                                                bool zeroForOne,
                                                int256 amountSpecified,
                                                uint160 sqrtPriceLimitX96,
                                                bytes calldata data
                                            ) external returns (int256 amount0, int256 amount1);
                                            /// @notice Receive token0 and/or token1 and pay it back, plus a fee, in the callback
                                            /// @dev The caller of this method receives a callback in the form of IUniswapV3FlashCallback#uniswapV3FlashCallback
                                            /// @dev Can be used to donate underlying tokens pro-rata to currently in-range liquidity providers by calling
                                            /// with 0 amount{0,1} and sending the donation amount(s) from the callback
                                            /// @param recipient The address which will receive the token0 and token1 amounts
                                            /// @param amount0 The amount of token0 to send
                                            /// @param amount1 The amount of token1 to send
                                            /// @param data Any data to be passed through to the callback
                                            function flash(
                                                address recipient,
                                                uint256 amount0,
                                                uint256 amount1,
                                                bytes calldata data
                                            ) external;
                                            /// @notice Increase the maximum number of price and liquidity observations that this pool will store
                                            /// @dev This method is no-op if the pool already has an observationCardinalityNext greater than or equal to
                                            /// the input observationCardinalityNext.
                                            /// @param observationCardinalityNext The desired minimum number of observations for the pool to store
                                            function increaseObservationCardinalityNext(uint16 observationCardinalityNext) external;
                                        }
                                        // SPDX-License-Identifier: GPL-2.0-or-later
                                        pragma solidity >=0.5.0;
                                        /// @title Permissioned pool actions
                                        /// @notice Contains pool methods that may only be called by the factory owner
                                        interface IUniswapV3PoolOwnerActions {
                                            /// @notice Set the denominator of the protocol's % share of the fees
                                            /// @param feeProtocol0 new protocol fee for token0 of the pool
                                            /// @param feeProtocol1 new protocol fee for token1 of the pool
                                            function setFeeProtocol(uint8 feeProtocol0, uint8 feeProtocol1) external;
                                            /// @notice Collect the protocol fee accrued to the pool
                                            /// @param recipient The address to which collected protocol fees should be sent
                                            /// @param amount0Requested The maximum amount of token0 to send, can be 0 to collect fees in only token1
                                            /// @param amount1Requested The maximum amount of token1 to send, can be 0 to collect fees in only token0
                                            /// @return amount0 The protocol fee collected in token0
                                            /// @return amount1 The protocol fee collected in token1
                                            function collectProtocol(
                                                address recipient,
                                                uint128 amount0Requested,
                                                uint128 amount1Requested
                                            ) external returns (uint128 amount0, uint128 amount1);
                                        }
                                        // SPDX-License-Identifier: GPL-2.0-or-later
                                        pragma solidity >=0.5.0;
                                        /// @title Events emitted by a pool
                                        /// @notice Contains all events emitted by the pool
                                        interface IUniswapV3PoolEvents {
                                            /// @notice Emitted exactly once by a pool when #initialize is first called on the pool
                                            /// @dev Mint/Burn/Swap cannot be emitted by the pool before Initialize
                                            /// @param sqrtPriceX96 The initial sqrt price of the pool, as a Q64.96
                                            /// @param tick The initial tick of the pool, i.e. log base 1.0001 of the starting price of the pool
                                            event Initialize(uint160 sqrtPriceX96, int24 tick);
                                            /// @notice Emitted when liquidity is minted for a given position
                                            /// @param sender The address that minted the liquidity
                                            /// @param owner The owner of the position and recipient of any minted liquidity
                                            /// @param tickLower The lower tick of the position
                                            /// @param tickUpper The upper tick of the position
                                            /// @param amount The amount of liquidity minted to the position range
                                            /// @param amount0 How much token0 was required for the minted liquidity
                                            /// @param amount1 How much token1 was required for the minted liquidity
                                            event Mint(
                                                address sender,
                                                address indexed owner,
                                                int24 indexed tickLower,
                                                int24 indexed tickUpper,
                                                uint128 amount,
                                                uint256 amount0,
                                                uint256 amount1
                                            );
                                            /// @notice Emitted when fees are collected by the owner of a position
                                            /// @dev Collect events may be emitted with zero amount0 and amount1 when the caller chooses not to collect fees
                                            /// @param owner The owner of the position for which fees are collected
                                            /// @param tickLower The lower tick of the position
                                            /// @param tickUpper The upper tick of the position
                                            /// @param amount0 The amount of token0 fees collected
                                            /// @param amount1 The amount of token1 fees collected
                                            event Collect(
                                                address indexed owner,
                                                address recipient,
                                                int24 indexed tickLower,
                                                int24 indexed tickUpper,
                                                uint128 amount0,
                                                uint128 amount1
                                            );
                                            /// @notice Emitted when a position's liquidity is removed
                                            /// @dev Does not withdraw any fees earned by the liquidity position, which must be withdrawn via #collect
                                            /// @param owner The owner of the position for which liquidity is removed
                                            /// @param tickLower The lower tick of the position
                                            /// @param tickUpper The upper tick of the position
                                            /// @param amount The amount of liquidity to remove
                                            /// @param amount0 The amount of token0 withdrawn
                                            /// @param amount1 The amount of token1 withdrawn
                                            event Burn(
                                                address indexed owner,
                                                int24 indexed tickLower,
                                                int24 indexed tickUpper,
                                                uint128 amount,
                                                uint256 amount0,
                                                uint256 amount1
                                            );
                                            /// @notice Emitted by the pool for any swaps between token0 and token1
                                            /// @param sender The address that initiated the swap call, and that received the callback
                                            /// @param recipient The address that received the output of the swap
                                            /// @param amount0 The delta of the token0 balance of the pool
                                            /// @param amount1 The delta of the token1 balance of the pool
                                            /// @param sqrtPriceX96 The sqrt(price) of the pool after the swap, as a Q64.96
                                            /// @param liquidity The liquidity of the pool after the swap
                                            /// @param tick The log base 1.0001 of price of the pool after the swap
                                            event Swap(
                                                address indexed sender,
                                                address indexed recipient,
                                                int256 amount0,
                                                int256 amount1,
                                                uint160 sqrtPriceX96,
                                                uint128 liquidity,
                                                int24 tick
                                            );
                                            /// @notice Emitted by the pool for any flashes of token0/token1
                                            /// @param sender The address that initiated the swap call, and that received the callback
                                            /// @param recipient The address that received the tokens from flash
                                            /// @param amount0 The amount of token0 that was flashed
                                            /// @param amount1 The amount of token1 that was flashed
                                            /// @param paid0 The amount of token0 paid for the flash, which can exceed the amount0 plus the fee
                                            /// @param paid1 The amount of token1 paid for the flash, which can exceed the amount1 plus the fee
                                            event Flash(
                                                address indexed sender,
                                                address indexed recipient,
                                                uint256 amount0,
                                                uint256 amount1,
                                                uint256 paid0,
                                                uint256 paid1
                                            );
                                            /// @notice Emitted by the pool for increases to the number of observations that can be stored
                                            /// @dev observationCardinalityNext is not the observation cardinality until an observation is written at the index
                                            /// just before a mint/swap/burn.
                                            /// @param observationCardinalityNextOld The previous value of the next observation cardinality
                                            /// @param observationCardinalityNextNew The updated value of the next observation cardinality
                                            event IncreaseObservationCardinalityNext(
                                                uint16 observationCardinalityNextOld,
                                                uint16 observationCardinalityNextNew
                                            );
                                            /// @notice Emitted when the protocol fee is changed by the pool
                                            /// @param feeProtocol0Old The previous value of the token0 protocol fee
                                            /// @param feeProtocol1Old The previous value of the token1 protocol fee
                                            /// @param feeProtocol0New The updated value of the token0 protocol fee
                                            /// @param feeProtocol1New The updated value of the token1 protocol fee
                                            event SetFeeProtocol(uint8 feeProtocol0Old, uint8 feeProtocol1Old, uint8 feeProtocol0New, uint8 feeProtocol1New);
                                            /// @notice Emitted when the collected protocol fees are withdrawn by the factory owner
                                            /// @param sender The address that collects the protocol fees
                                            /// @param recipient The address that receives the collected protocol fees
                                            /// @param amount0 The amount of token0 protocol fees that is withdrawn
                                            /// @param amount0 The amount of token1 protocol fees that is withdrawn
                                            event CollectProtocol(address indexed sender, address indexed recipient, uint128 amount0, uint128 amount1);
                                        }
                                        // SPDX-License-Identifier: GPL-2.0-or-later
                                        pragma solidity >=0.5.0;
                                        /// @title BitMath
                                        /// @dev This library provides functionality for computing bit properties of an unsigned integer
                                        library BitMath {
                                            /// @notice Returns the index of the most significant bit of the number,
                                            ///     where the least significant bit is at index 0 and the most significant bit is at index 255
                                            /// @dev The function satisfies the property:
                                            ///     x >= 2**mostSignificantBit(x) and x < 2**(mostSignificantBit(x)+1)
                                            /// @param x the value for which to compute the most significant bit, must be greater than 0
                                            /// @return r the index of the most significant bit
                                            function mostSignificantBit(uint256 x) internal pure returns (uint8 r) {
                                                require(x > 0);
                                                if (x >= 0x100000000000000000000000000000000) {
                                                    x >>= 128;
                                                    r += 128;
                                                }
                                                if (x >= 0x10000000000000000) {
                                                    x >>= 64;
                                                    r += 64;
                                                }
                                                if (x >= 0x100000000) {
                                                    x >>= 32;
                                                    r += 32;
                                                }
                                                if (x >= 0x10000) {
                                                    x >>= 16;
                                                    r += 16;
                                                }
                                                if (x >= 0x100) {
                                                    x >>= 8;
                                                    r += 8;
                                                }
                                                if (x >= 0x10) {
                                                    x >>= 4;
                                                    r += 4;
                                                }
                                                if (x >= 0x4) {
                                                    x >>= 2;
                                                    r += 2;
                                                }
                                                if (x >= 0x2) r += 1;
                                            }
                                            /// @notice Returns the index of the least significant bit of the number,
                                            ///     where the least significant bit is at index 0 and the most significant bit is at index 255
                                            /// @dev The function satisfies the property:
                                            ///     (x & 2**leastSignificantBit(x)) != 0 and (x & (2**(leastSignificantBit(x)) - 1)) == 0)
                                            /// @param x the value for which to compute the least significant bit, must be greater than 0
                                            /// @return r the index of the least significant bit
                                            function leastSignificantBit(uint256 x) internal pure returns (uint8 r) {
                                                require(x > 0);
                                                r = 255;
                                                if (x & type(uint128).max > 0) {
                                                    r -= 128;
                                                } else {
                                                    x >>= 128;
                                                }
                                                if (x & type(uint64).max > 0) {
                                                    r -= 64;
                                                } else {
                                                    x >>= 64;
                                                }
                                                if (x & type(uint32).max > 0) {
                                                    r -= 32;
                                                } else {
                                                    x >>= 32;
                                                }
                                                if (x & type(uint16).max > 0) {
                                                    r -= 16;
                                                } else {
                                                    x >>= 16;
                                                }
                                                if (x & type(uint8).max > 0) {
                                                    r -= 8;
                                                } else {
                                                    x >>= 8;
                                                }
                                                if (x & 0xf > 0) {
                                                    r -= 4;
                                                } else {
                                                    x >>= 4;
                                                }
                                                if (x & 0x3 > 0) {
                                                    r -= 2;
                                                } else {
                                                    x >>= 2;
                                                }
                                                if (x & 0x1 > 0) r -= 1;
                                            }
                                        }
                                        // SPDX-License-Identifier: GPL-2.0-or-later
                                        pragma solidity >=0.5.0;
                                        /// @title Math functions that do not check inputs or outputs
                                        /// @notice Contains methods that perform common math functions but do not do any overflow or underflow checks
                                        library UnsafeMath {
                                            /// @notice Returns ceil(x / y)
                                            /// @dev division by 0 has unspecified behavior, and must be checked externally
                                            /// @param x The dividend
                                            /// @param y The divisor
                                            /// @return z The quotient, ceil(x / y)
                                            function divRoundingUp(uint256 x, uint256 y) internal pure returns (uint256 z) {
                                                assembly {
                                                    z := add(div(x, y), gt(mod(x, y), 0))
                                                }
                                            }
                                        }
                                        // SPDX-License-Identifier: GPL-2.0-or-later
                                        pragma solidity >=0.4.0;
                                        /// @title FixedPoint96
                                        /// @notice A library for handling binary fixed point numbers, see https://en.wikipedia.org/wiki/Q_(number_format)
                                        /// @dev Used in SqrtPriceMath.sol
                                        library FixedPoint96 {
                                            uint8 internal constant RESOLUTION = 96;
                                            uint256 internal constant Q96 = 0x1000000000000000000000000;
                                        }
                                        

                                        File 7 of 11: Spender
                                        {"Constants.84ef19f8.sol":{"content":"// SPDX-License-Identifier: MIT\r\n\r\npragma solidity ^0.6.0;\r\n\r\nlibrary Constants {\r\n    address internal constant ETH = 0x0000000000000000000000000000000000000000;\r\n}\r\n"},"Spender.3372a096.sol":{"content":"// SPDX-License-Identifier: MIT\r\n\r\npragma solidity ^0.6.0;\r\n\r\nimport \"./Constants.84ef19f8.sol\";\r\n\r\ncontract Spender {\r\n    address public immutable metaswap;\r\n\r\n    constructor() public {\r\n        metaswap = msg.sender;\r\n    }\r\n\r\n    /// @dev Receives ether from swaps\r\n    fallback() external payable {}\r\n\r\n    function swap(address adapter, bytes calldata data) external payable {\r\n        require(msg.sender == metaswap, \"FORBIDDEN\");\r\n        require(adapter != address(0), \"ADAPTER_NOT_PROVIDED\");\r\n        _delegate(adapter, data, \"ADAPTER_DELEGATECALL_FAILED\");\r\n    }\r\n\r\n    /**\r\n     * @dev Performs a delegatecall and bubbles up the errors, adapted from\r\n     * https://github.com/OpenZeppelin/openzeppelin-contracts/blob/master/contracts/utils/Address.sol\r\n     * @param target Address of the contract to delegatecall\r\n     * @param data Data passed in the delegatecall\r\n     * @param errorMessage Fallback revert reason\r\n     */\r\n    function _delegate(\r\n        address target,\r\n        bytes memory data,\r\n        string memory errorMessage\r\n    ) private returns (bytes memory) {\r\n        // solhint-disable-next-line avoid-low-level-calls\r\n        (bool success, bytes memory returndata) = target.delegatecall(data);\r\n        if (success) {\r\n            return returndata;\r\n        } else {\r\n            // Look for revert reason and bubble it up if present\r\n            if (returndata.length \u003e 0) {\r\n                // The easiest way to bubble the revert reason is using memory via assembly\r\n\r\n                // solhint-disable-next-line no-inline-assembly\r\n                assembly {\r\n                    let returndata_size := mload(returndata)\r\n                    revert(add(32, returndata), returndata_size)\r\n                }\r\n            } else {\r\n                revert(errorMessage);\r\n            }\r\n        }\r\n    }\r\n}\r\n"}}

                                        File 8 of 11: PropyToken
                                        /**
                                         * This software is a subject to Ambisafe License Agreement.
                                         * No use or distribution is allowed without written permission from Ambisafe.
                                         * https://www.ambisafe.co/terms-of-use/
                                         */
                                        
                                        pragma solidity 0.4.8;
                                        
                                        contract EToken2 {
                                            function baseUnit(bytes32 _symbol) constant returns(uint8);
                                            function name(bytes32 _symbol) constant returns(string);
                                            function description(bytes32 _symbol) constant returns(string);
                                            function owner(bytes32 _symbol) constant returns(address);
                                            function isOwner(address _owner, bytes32 _symbol) constant returns(bool);
                                            function totalSupply(bytes32 _symbol) constant returns(uint);
                                            function balanceOf(address _holder, bytes32 _symbol) constant returns(uint);
                                            function isLocked(bytes32 _symbol) constant returns(bool);
                                            function proxyTransferFromToICAPWithReference(address _from, bytes32 _icap, uint _value, string _reference, address _sender) returns(bool);
                                            function proxyApprove(address _spender, uint _value, bytes32 _symbol, address _sender) returns(bool);
                                            function allowance(address _from, address _spender, bytes32 _symbol) constant returns(uint);
                                            function proxyTransferFromWithReference(address _from, address _to, uint _value, bytes32 _symbol, string _reference, address _sender) returns(bool);
                                        }
                                        
                                        contract Asset {
                                            function _performTransferWithReference(address _to, uint _value, string _reference, address _sender) returns(bool);
                                            function _performTransferToICAPWithReference(bytes32 _icap, uint _value, string _reference, address _sender) returns(bool);
                                            function _performApprove(address _spender, uint _value, address _sender) returns(bool);    
                                            function _performTransferFromWithReference(address _from, address _to, uint _value, string _reference, address _sender) returns(bool);
                                            function _performTransferFromToICAPWithReference(address _from, bytes32 _icap, uint _value, string _reference, address _sender) returns(bool);
                                            function _performGeneric(bytes _data, address _sender) payable returns(bytes32) {
                                                throw;
                                            }
                                        }
                                        
                                        contract ERC20 {
                                            event Transfer(address indexed from, address indexed to, uint256 value);
                                            event Approval(address indexed from, address indexed spender, uint256 value);
                                        
                                            function totalSupply() constant returns(uint256 supply);
                                            function balanceOf(address _owner) constant returns(uint256 balance);
                                            function transfer(address _to, uint256 _value) returns(bool success);
                                            function transferFrom(address _from, address _to, uint256 _value) returns(bool success);
                                            function approve(address _spender, uint256 _value) returns(bool success);
                                            function allowance(address _owner, address _spender) constant returns(uint256 remaining);
                                            function decimals() constant returns(uint8);
                                        }
                                        
                                        contract AssetProxyInterface {
                                            function _forwardApprove(address _spender, uint _value, address _sender) returns(bool);    
                                            function _forwardTransferFromWithReference(address _from, address _to, uint _value, string _reference, address _sender) returns(bool);
                                            function _forwardTransferFromToICAPWithReference(address _from, bytes32 _icap, uint _value, string _reference, address _sender) returns(bool);
                                        }
                                        
                                        contract Bytes32 {
                                            function _bytes32(string _input) internal constant returns(bytes32 result) {
                                                assembly {
                                                    result := mload(add(_input, 32))
                                                }
                                            }
                                        }
                                        
                                        /**
                                         * @title EToken2 Asset Proxy.
                                         *
                                         * Proxy implements ERC20 interface and acts as a gateway to a single EToken2 asset.
                                         * Proxy adds etoken2Symbol and caller(sender) when forwarding requests to EToken2.
                                         * Every request that is made by caller first sent to the specific asset implementation
                                         * contract, which then calls back to be forwarded onto EToken2.
                                         *
                                         * Calls flow: Caller ->
                                         *             Proxy.func(...) ->
                                         *             Asset._performFunc(..., Caller.address) ->
                                         *             Proxy._forwardFunc(..., Caller.address) ->
                                         *             Platform.proxyFunc(..., symbol, Caller.address)
                                         *
                                         * Generic call flow: Caller ->
                                         *             Proxy.unknownFunc(...) ->
                                         *             Asset._performGeneric(..., Caller.address) ->
                                         *             Asset.unknownFunc(...)
                                         *
                                         * Asset implementation contract is mutable, but each user have an option to stick with
                                         * old implementation, through explicit decision made in timely manner, if he doesn't agree
                                         * with new rules.
                                         * Each user have a possibility to upgrade to latest asset contract implementation, without the
                                         * possibility to rollback.
                                         *
                                         * Note: all the non constant functions return false instead of throwing in case if state change
                                         * didn't happen yet.
                                         */
                                        contract AssetProxy is ERC20, AssetProxyInterface, Bytes32 {
                                            // Assigned EToken2, immutable.
                                            EToken2 public etoken2;
                                        
                                            // Assigned symbol, immutable.
                                            bytes32 public etoken2Symbol;
                                        
                                            // Assigned name, immutable. For UI.
                                            string public name;
                                            string public symbol;
                                        
                                            /**
                                             * Sets EToken2 address, assigns symbol and name.
                                             *
                                             * Can be set only once.
                                             *
                                             * @param _etoken2 EToken2 contract address.
                                             * @param _symbol assigned symbol.
                                             * @param _name assigned name.
                                             *
                                             * @return success.
                                             */
                                            function init(EToken2 _etoken2, string _symbol, string _name) returns(bool) {
                                                if (address(etoken2) != 0x0) {
                                                    return false;
                                                }
                                                etoken2 = _etoken2;
                                                etoken2Symbol = _bytes32(_symbol);
                                                name = _name;
                                                symbol = _symbol;
                                                return true;
                                            }
                                        
                                            /**
                                             * Only EToken2 is allowed to call.
                                             */
                                            modifier onlyEToken2() {
                                                if (msg.sender == address(etoken2)) {
                                                    _;
                                                }
                                            }
                                        
                                            /**
                                             * Only current asset owner is allowed to call.
                                             */
                                            modifier onlyAssetOwner() {
                                                if (etoken2.isOwner(msg.sender, etoken2Symbol)) {
                                                    _;
                                                }
                                            }
                                        
                                            /**
                                             * Returns asset implementation contract for current caller.
                                             *
                                             * @return asset implementation contract.
                                             */
                                            function _getAsset() internal returns(Asset) {
                                                return Asset(getVersionFor(msg.sender));
                                            }
                                        
                                            function recoverTokens(uint _value) onlyAssetOwner() returns(bool) {
                                                return this.transferWithReference(msg.sender, _value, 'Tokens recovery');
                                            }
                                        
                                            /**
                                             * Returns asset total supply.
                                             *
                                             * @return asset total supply.
                                             */
                                            function totalSupply() constant returns(uint) {
                                                return etoken2.totalSupply(etoken2Symbol);
                                            }
                                        
                                            /**
                                             * Returns asset balance for a particular holder.
                                             *
                                             * @param _owner holder address.
                                             *
                                             * @return holder balance.
                                             */
                                            function balanceOf(address _owner) constant returns(uint) {
                                                return etoken2.balanceOf(_owner, etoken2Symbol);
                                            }
                                        
                                            /**
                                             * Returns asset allowance from one holder to another.
                                             *
                                             * @param _from holder that allowed spending.
                                             * @param _spender holder that is allowed to spend.
                                             *
                                             * @return holder to spender allowance.
                                             */
                                            function allowance(address _from, address _spender) constant returns(uint) {
                                                return etoken2.allowance(_from, _spender, etoken2Symbol);
                                            }
                                        
                                            /**
                                             * Returns asset decimals.
                                             *
                                             * @return asset decimals.
                                             */
                                            function decimals() constant returns(uint8) {
                                                return etoken2.baseUnit(etoken2Symbol);
                                            }
                                        
                                            /**
                                             * Transfers asset balance from the caller to specified receiver.
                                             *
                                             * @param _to holder address to give to.
                                             * @param _value amount to transfer.
                                             *
                                             * @return success.
                                             */
                                            function transfer(address _to, uint _value) returns(bool) {
                                                return transferWithReference(_to, _value, '');
                                            }
                                        
                                            /**
                                             * Transfers asset balance from the caller to specified receiver adding specified comment.
                                             * Resolves asset implementation contract for the caller and forwards there arguments along with
                                             * the caller address.
                                             *
                                             * @param _to holder address to give to.
                                             * @param _value amount to transfer.
                                             * @param _reference transfer comment to be included in a EToken2's Transfer event.
                                             *
                                             * @return success.
                                             */
                                            function transferWithReference(address _to, uint _value, string _reference) returns(bool) {
                                                return _getAsset()._performTransferWithReference(_to, _value, _reference, msg.sender);
                                            }
                                        
                                            /**
                                             * Transfers asset balance from the caller to specified ICAP.
                                             *
                                             * @param _icap recipient ICAP to give to.
                                             * @param _value amount to transfer.
                                             *
                                             * @return success.
                                             */
                                            function transferToICAP(bytes32 _icap, uint _value) returns(bool) {
                                                return transferToICAPWithReference(_icap, _value, '');
                                            }
                                        
                                            /**
                                             * Transfers asset balance from the caller to specified ICAP adding specified comment.
                                             * Resolves asset implementation contract for the caller and forwards there arguments along with
                                             * the caller address.
                                             *
                                             * @param _icap recipient ICAP to give to.
                                             * @param _value amount to transfer.
                                             * @param _reference transfer comment to be included in a EToken2's Transfer event.
                                             *
                                             * @return success.
                                             */
                                            function transferToICAPWithReference(bytes32 _icap, uint _value, string _reference) returns(bool) {
                                                return _getAsset()._performTransferToICAPWithReference(_icap, _value, _reference, msg.sender);
                                            }
                                        
                                            /**
                                             * Prforms allowance transfer of asset balance between holders.
                                             *
                                             * @param _from holder address to take from.
                                             * @param _to holder address to give to.
                                             * @param _value amount to transfer.
                                             *
                                             * @return success.
                                             */
                                            function transferFrom(address _from, address _to, uint _value) returns(bool) {
                                                return transferFromWithReference(_from, _to, _value, '');
                                            }
                                        
                                            /**
                                             * Prforms allowance transfer of asset balance between holders adding specified comment.
                                             * Resolves asset implementation contract for the caller and forwards there arguments along with
                                             * the caller address.
                                             *
                                             * @param _from holder address to take from.
                                             * @param _to holder address to give to.
                                             * @param _value amount to transfer.
                                             * @param _reference transfer comment to be included in a EToken2's Transfer event.
                                             *
                                             * @return success.
                                             */
                                            function transferFromWithReference(address _from, address _to, uint _value, string _reference) returns(bool) {
                                                return _getAsset()._performTransferFromWithReference(_from, _to, _value, _reference, msg.sender);
                                            }
                                        
                                            /**
                                             * Performs transfer call on the EToken2 by the name of specified sender.
                                             *
                                             * Can only be called by asset implementation contract assigned to sender.
                                             *
                                             * @param _from holder address to take from.
                                             * @param _to holder address to give to.
                                             * @param _value amount to transfer.
                                             * @param _reference transfer comment to be included in a EToken2's Transfer event.
                                             * @param _sender initial caller.
                                             *
                                             * @return success.
                                             */
                                            function _forwardTransferFromWithReference(address _from, address _to, uint _value, string _reference, address _sender) onlyImplementationFor(_sender) returns(bool) {
                                                return etoken2.proxyTransferFromWithReference(_from, _to, _value, etoken2Symbol, _reference, _sender);
                                            }
                                        
                                            /**
                                             * Prforms allowance transfer of asset balance between holders.
                                             *
                                             * @param _from holder address to take from.
                                             * @param _icap recipient ICAP address to give to.
                                             * @param _value amount to transfer.
                                             *
                                             * @return success.
                                             */
                                            function transferFromToICAP(address _from, bytes32 _icap, uint _value) returns(bool) {
                                                return transferFromToICAPWithReference(_from, _icap, _value, '');
                                            }
                                        
                                            /**
                                             * Prforms allowance transfer of asset balance between holders adding specified comment.
                                             * Resolves asset implementation contract for the caller and forwards there arguments along with
                                             * the caller address.
                                             *
                                             * @param _from holder address to take from.
                                             * @param _icap recipient ICAP address to give to.
                                             * @param _value amount to transfer.
                                             * @param _reference transfer comment to be included in a EToken2's Transfer event.
                                             *
                                             * @return success.
                                             */
                                            function transferFromToICAPWithReference(address _from, bytes32 _icap, uint _value, string _reference) returns(bool) {
                                                return _getAsset()._performTransferFromToICAPWithReference(_from, _icap, _value, _reference, msg.sender);
                                            }
                                        
                                            /**
                                             * Performs allowance transfer to ICAP call on the EToken2 by the name of specified sender.
                                             *
                                             * Can only be called by asset implementation contract assigned to sender.
                                             *
                                             * @param _from holder address to take from.
                                             * @param _icap recipient ICAP address to give to.
                                             * @param _value amount to transfer.
                                             * @param _reference transfer comment to be included in a EToken2's Transfer event.
                                             * @param _sender initial caller.
                                             *
                                             * @return success.
                                             */
                                            function _forwardTransferFromToICAPWithReference(address _from, bytes32 _icap, uint _value, string _reference, address _sender) onlyImplementationFor(_sender) returns(bool) {
                                                return etoken2.proxyTransferFromToICAPWithReference(_from, _icap, _value, _reference, _sender);
                                            }
                                        
                                            /**
                                             * Sets asset spending allowance for a specified spender.
                                             * Resolves asset implementation contract for the caller and forwards there arguments along with
                                             * the caller address.
                                             *
                                             * @param _spender holder address to set allowance to.
                                             * @param _value amount to allow.
                                             *
                                             * @return success.
                                             */
                                            function approve(address _spender, uint _value) returns(bool) {
                                                return _getAsset()._performApprove(_spender, _value, msg.sender);
                                            }
                                        
                                            /**
                                             * Performs allowance setting call on the EToken2 by the name of specified sender.
                                             *
                                             * Can only be called by asset implementation contract assigned to sender.
                                             *
                                             * @param _spender holder address to set allowance to.
                                             * @param _value amount to allow.
                                             * @param _sender initial caller.
                                             *
                                             * @return success.
                                             */
                                            function _forwardApprove(address _spender, uint _value, address _sender) onlyImplementationFor(_sender) returns(bool) {
                                                return etoken2.proxyApprove(_spender, _value, etoken2Symbol, _sender);
                                            }
                                        
                                            /**
                                             * Emits ERC20 Transfer event on this contract.
                                             *
                                             * Can only be, and, called by assigned EToken2 when asset transfer happens.
                                             */
                                            function emitTransfer(address _from, address _to, uint _value) onlyEToken2() {
                                                Transfer(_from, _to, _value);
                                            }
                                        
                                            /**
                                             * Emits ERC20 Approval event on this contract.
                                             *
                                             * Can only be, and, called by assigned EToken2 when asset allowance set happens.
                                             */
                                            function emitApprove(address _from, address _spender, uint _value) onlyEToken2() {
                                                Approval(_from, _spender, _value);
                                            }
                                        
                                            /**
                                             * Resolves asset implementation contract for the caller and forwards there transaction data,
                                             * along with the value. This allows for proxy interface growth.
                                             */
                                            function () payable {
                                                bytes32 result = _getAsset()._performGeneric.value(msg.value)(msg.data, msg.sender);
                                                assembly {
                                                    mstore(0, result)
                                                    return(0, 32)
                                                }
                                            }
                                        
                                            /**
                                             * Indicates an upgrade freeze-time start, and the next asset implementation contract.
                                             */
                                            event UpgradeProposal(address newVersion);
                                        
                                            // Current asset implementation contract address.
                                            address latestVersion;
                                        
                                            // Proposed next asset implementation contract address.
                                            address pendingVersion;
                                        
                                            // Upgrade freeze-time start.
                                            uint pendingVersionTimestamp;
                                        
                                            // Timespan for users to review the new implementation and make decision.
                                            uint constant UPGRADE_FREEZE_TIME = 3 days;
                                        
                                            // Asset implementation contract address that user decided to stick with.
                                            // 0x0 means that user uses latest version.
                                            mapping(address => address) userOptOutVersion;
                                        
                                            /**
                                             * Only asset implementation contract assigned to sender is allowed to call.
                                             */
                                            modifier onlyImplementationFor(address _sender) {
                                                if (getVersionFor(_sender) == msg.sender) {
                                                    _;
                                                }
                                            }
                                        
                                            /**
                                             * Returns asset implementation contract address assigned to sender.
                                             *
                                             * @param _sender sender address.
                                             *
                                             * @return asset implementation contract address.
                                             */
                                            function getVersionFor(address _sender) constant returns(address) {
                                                return userOptOutVersion[_sender] == 0 ? latestVersion : userOptOutVersion[_sender];
                                            }
                                        
                                            /**
                                             * Returns current asset implementation contract address.
                                             *
                                             * @return asset implementation contract address.
                                             */
                                            function getLatestVersion() constant returns(address) {
                                                return latestVersion;
                                            }
                                        
                                            /**
                                             * Returns proposed next asset implementation contract address.
                                             *
                                             * @return asset implementation contract address.
                                             */
                                            function getPendingVersion() constant returns(address) {
                                                return pendingVersion;
                                            }
                                        
                                            /**
                                             * Returns upgrade freeze-time start.
                                             *
                                             * @return freeze-time start.
                                             */
                                            function getPendingVersionTimestamp() constant returns(uint) {
                                                return pendingVersionTimestamp;
                                            }
                                        
                                            /**
                                             * Propose next asset implementation contract address.
                                             *
                                             * Can only be called by current asset owner.
                                             *
                                             * Note: freeze-time should not be applied for the initial setup.
                                             *
                                             * @param _newVersion asset implementation contract address.
                                             *
                                             * @return success.
                                             */
                                            function proposeUpgrade(address _newVersion) onlyAssetOwner() returns(bool) {
                                                // Should not already be in the upgrading process.
                                                if (pendingVersion != 0x0) {
                                                    return false;
                                                }
                                                // New version address should be other than 0x0.
                                                if (_newVersion == 0x0) {
                                                    return false;
                                                }
                                                // Don't apply freeze-time for the initial setup.
                                                if (latestVersion == 0x0) {
                                                    latestVersion = _newVersion;
                                                    return true;
                                                }
                                                pendingVersion = _newVersion;
                                                pendingVersionTimestamp = now;
                                                UpgradeProposal(_newVersion);
                                                return true;
                                            }
                                        
                                            /**
                                             * Cancel the pending upgrade process.
                                             *
                                             * Can only be called by current asset owner.
                                             *
                                             * @return success.
                                             */
                                            function purgeUpgrade() onlyAssetOwner() returns(bool) {
                                                if (pendingVersion == 0x0) {
                                                    return false;
                                                }
                                                delete pendingVersion;
                                                delete pendingVersionTimestamp;
                                                return true;
                                            }
                                        
                                            /**
                                             * Finalize an upgrade process setting new asset implementation contract address.
                                             *
                                             * Can only be called after an upgrade freeze-time.
                                             *
                                             * @return success.
                                             */
                                            function commitUpgrade() returns(bool) {
                                                if (pendingVersion == 0x0) {
                                                    return false;
                                                }
                                                if (pendingVersionTimestamp + UPGRADE_FREEZE_TIME > now) {
                                                    return false;
                                                }
                                                latestVersion = pendingVersion;
                                                delete pendingVersion;
                                                delete pendingVersionTimestamp;
                                                return true;
                                            }
                                        
                                            /**
                                             * Disagree with proposed upgrade, and stick with current asset implementation
                                             * until further explicit agreement to upgrade.
                                             *
                                             * @return success.
                                             */
                                            function optOut() returns(bool) {
                                                if (userOptOutVersion[msg.sender] != 0x0) {
                                                    return false;
                                                }
                                                userOptOutVersion[msg.sender] = latestVersion;
                                                return true;
                                            }
                                        
                                            /**
                                             * Implicitly agree to upgrade to current and future asset implementation upgrades,
                                             * until further explicit disagreement.
                                             *
                                             * @return success.
                                             */
                                            function optIn() returns(bool) {
                                                delete userOptOutVersion[msg.sender];
                                                return true;
                                            }
                                        
                                            // Backwards compatibility.
                                            function multiAsset() constant returns(EToken2) {
                                                return etoken2;
                                            }
                                        }
                                        
                                        contract PropyToken is AssetProxy {
                                            function change(string _symbol, string _name) onlyAssetOwner() returns(bool) {
                                                if (etoken2.isLocked(etoken2Symbol)) {
                                                    return false;
                                                }
                                                name = _name;
                                                symbol = _symbol;
                                                return true;
                                            }
                                        }

                                        File 9 of 11: FiatTokenV2_2
                                        /**
                                         * SPDX-License-Identifier: Apache-2.0
                                         *
                                         * Copyright (c) 2023, Circle Internet Financial, LLC.
                                         *
                                         * Licensed under the Apache License, Version 2.0 (the "License");
                                         * you may not use this file except in compliance with the License.
                                         * You may obtain a copy of the License at
                                         *
                                         * http://www.apache.org/licenses/LICENSE-2.0
                                         *
                                         * Unless required by applicable law or agreed to in writing, software
                                         * distributed under the License is distributed on an "AS IS" BASIS,
                                         * WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
                                         * See the License for the specific language governing permissions and
                                         * limitations under the License.
                                         */
                                        pragma solidity 0.6.12;
                                        import { EIP712Domain } from "./EIP712Domain.sol"; // solhint-disable-line no-unused-import
                                        import { Blacklistable } from "../v1/Blacklistable.sol"; // solhint-disable-line no-unused-import
                                        import { FiatTokenV1 } from "../v1/FiatTokenV1.sol"; // solhint-disable-line no-unused-import
                                        import { FiatTokenV2 } from "./FiatTokenV2.sol"; // solhint-disable-line no-unused-import
                                        import { FiatTokenV2_1 } from "./FiatTokenV2_1.sol";
                                        import { EIP712 } from "../util/EIP712.sol";
                                        // solhint-disable func-name-mixedcase
                                        /**
                                         * @title FiatToken V2.2
                                         * @notice ERC20 Token backed by fiat reserves, version 2.2
                                         */
                                        contract FiatTokenV2_2 is FiatTokenV2_1 {
                                            /**
                                             * @notice Initialize v2.2
                                             * @param accountsToBlacklist   A list of accounts to migrate from the old blacklist
                                             * @param newSymbol             New token symbol
                                             * data structure to the new blacklist data structure.
                                             */
                                            function initializeV2_2(
                                                address[] calldata accountsToBlacklist,
                                                string calldata newSymbol
                                            ) external {
                                                // solhint-disable-next-line reason-string
                                                require(_initializedVersion == 2);
                                                // Update fiat token symbol
                                                symbol = newSymbol;
                                                // Add previously blacklisted accounts to the new blacklist data structure
                                                // and remove them from the old blacklist data structure.
                                                for (uint256 i = 0; i < accountsToBlacklist.length; i++) {
                                                    require(
                                                        _deprecatedBlacklisted[accountsToBlacklist[i]],
                                                        "FiatTokenV2_2: Blacklisting previously unblacklisted account!"
                                                    );
                                                    _blacklist(accountsToBlacklist[i]);
                                                    delete _deprecatedBlacklisted[accountsToBlacklist[i]];
                                                }
                                                _blacklist(address(this));
                                                delete _deprecatedBlacklisted[address(this)];
                                                _initializedVersion = 3;
                                            }
                                            /**
                                             * @dev Internal function to get the current chain id.
                                             * @return The current chain id.
                                             */
                                            function _chainId() internal virtual view returns (uint256) {
                                                uint256 chainId;
                                                assembly {
                                                    chainId := chainid()
                                                }
                                                return chainId;
                                            }
                                            /**
                                             * @inheritdoc EIP712Domain
                                             */
                                            function _domainSeparator() internal override view returns (bytes32) {
                                                return EIP712.makeDomainSeparator(name, "2", _chainId());
                                            }
                                            /**
                                             * @notice Update allowance with a signed permit
                                             * @dev EOA wallet signatures should be packed in the order of r, s, v.
                                             * @param owner       Token owner's address (Authorizer)
                                             * @param spender     Spender's address
                                             * @param value       Amount of allowance
                                             * @param deadline    The time at which the signature expires (unix time), or max uint256 value to signal no expiration
                                             * @param signature   Signature bytes signed by an EOA wallet or a contract wallet
                                             */
                                            function permit(
                                                address owner,
                                                address spender,
                                                uint256 value,
                                                uint256 deadline,
                                                bytes memory signature
                                            ) external whenNotPaused {
                                                _permit(owner, spender, value, deadline, signature);
                                            }
                                            /**
                                             * @notice Execute a transfer with a signed authorization
                                             * @dev EOA wallet signatures should be packed in the order of r, s, v.
                                             * @param from          Payer's address (Authorizer)
                                             * @param to            Payee's address
                                             * @param value         Amount to be transferred
                                             * @param validAfter    The time after which this is valid (unix time)
                                             * @param validBefore   The time before which this is valid (unix time)
                                             * @param nonce         Unique nonce
                                             * @param signature     Signature bytes signed by an EOA wallet or a contract wallet
                                             */
                                            function transferWithAuthorization(
                                                address from,
                                                address to,
                                                uint256 value,
                                                uint256 validAfter,
                                                uint256 validBefore,
                                                bytes32 nonce,
                                                bytes memory signature
                                            ) external whenNotPaused notBlacklisted(from) notBlacklisted(to) {
                                                _transferWithAuthorization(
                                                    from,
                                                    to,
                                                    value,
                                                    validAfter,
                                                    validBefore,
                                                    nonce,
                                                    signature
                                                );
                                            }
                                            /**
                                             * @notice Receive a transfer with a signed authorization from the payer
                                             * @dev This has an additional check to ensure that the payee's address
                                             * matches the caller of this function to prevent front-running attacks.
                                             * EOA wallet signatures should be packed in the order of r, s, v.
                                             * @param from          Payer's address (Authorizer)
                                             * @param to            Payee's address
                                             * @param value         Amount to be transferred
                                             * @param validAfter    The time after which this is valid (unix time)
                                             * @param validBefore   The time before which this is valid (unix time)
                                             * @param nonce         Unique nonce
                                             * @param signature     Signature bytes signed by an EOA wallet or a contract wallet
                                             */
                                            function receiveWithAuthorization(
                                                address from,
                                                address to,
                                                uint256 value,
                                                uint256 validAfter,
                                                uint256 validBefore,
                                                bytes32 nonce,
                                                bytes memory signature
                                            ) external whenNotPaused notBlacklisted(from) notBlacklisted(to) {
                                                _receiveWithAuthorization(
                                                    from,
                                                    to,
                                                    value,
                                                    validAfter,
                                                    validBefore,
                                                    nonce,
                                                    signature
                                                );
                                            }
                                            /**
                                             * @notice Attempt to cancel an authorization
                                             * @dev Works only if the authorization is not yet used.
                                             * EOA wallet signatures should be packed in the order of r, s, v.
                                             * @param authorizer    Authorizer's address
                                             * @param nonce         Nonce of the authorization
                                             * @param signature     Signature bytes signed by an EOA wallet or a contract wallet
                                             */
                                            function cancelAuthorization(
                                                address authorizer,
                                                bytes32 nonce,
                                                bytes memory signature
                                            ) external whenNotPaused {
                                                _cancelAuthorization(authorizer, nonce, signature);
                                            }
                                            /**
                                             * @dev Helper method that sets the blacklist state of an account on balanceAndBlacklistStates.
                                             * If _shouldBlacklist is true, we apply a (1 << 255) bitmask with an OR operation on the
                                             * account's balanceAndBlacklistState. This flips the high bit for the account to 1,
                                             * indicating that the account is blacklisted.
                                             *
                                             * If _shouldBlacklist if false, we reset the account's balanceAndBlacklistStates to their
                                             * balances. This clears the high bit for the account, indicating that the account is unblacklisted.
                                             * @param _account         The address of the account.
                                             * @param _shouldBlacklist True if the account should be blacklisted, false if the account should be unblacklisted.
                                             */
                                            function _setBlacklistState(address _account, bool _shouldBlacklist)
                                                internal
                                                override
                                            {
                                                balanceAndBlacklistStates[_account] = _shouldBlacklist
                                                    ? balanceAndBlacklistStates[_account] | (1 << 255)
                                                    : _balanceOf(_account);
                                            }
                                            /**
                                             * @dev Helper method that sets the balance of an account on balanceAndBlacklistStates.
                                             * Since balances are stored in the last 255 bits of the balanceAndBlacklistStates value,
                                             * we need to ensure that the updated balance does not exceed (2^255 - 1).
                                             * Since blacklisted accounts' balances cannot be updated, the method will also
                                             * revert if the account is blacklisted
                                             * @param _account The address of the account.
                                             * @param _balance The new fiat token balance of the account (max: (2^255 - 1)).
                                             */
                                            function _setBalance(address _account, uint256 _balance) internal override {
                                                require(
                                                    _balance <= ((1 << 255) - 1),
                                                    "FiatTokenV2_2: Balance exceeds (2^255 - 1)"
                                                );
                                                require(
                                                    !_isBlacklisted(_account),
                                                    "FiatTokenV2_2: Account is blacklisted"
                                                );
                                                balanceAndBlacklistStates[_account] = _balance;
                                            }
                                            /**
                                             * @inheritdoc Blacklistable
                                             */
                                            function _isBlacklisted(address _account)
                                                internal
                                                override
                                                view
                                                returns (bool)
                                            {
                                                return balanceAndBlacklistStates[_account] >> 255 == 1;
                                            }
                                            /**
                                             * @dev Helper method to obtain the balance of an account. Since balances
                                             * are stored in the last 255 bits of the balanceAndBlacklistStates value,
                                             * we apply a ((1 << 255) - 1) bit bitmask with an AND operation on the
                                             * balanceAndBlacklistState to obtain the balance.
                                             * @param _account  The address of the account.
                                             * @return          The fiat token balance of the account.
                                             */
                                            function _balanceOf(address _account)
                                                internal
                                                override
                                                view
                                                returns (uint256)
                                            {
                                                return balanceAndBlacklistStates[_account] & ((1 << 255) - 1);
                                            }
                                            /**
                                             * @inheritdoc FiatTokenV1
                                             */
                                            function approve(address spender, uint256 value)
                                                external
                                                override
                                                whenNotPaused
                                                returns (bool)
                                            {
                                                _approve(msg.sender, spender, value);
                                                return true;
                                            }
                                            /**
                                             * @inheritdoc FiatTokenV2
                                             */
                                            function permit(
                                                address owner,
                                                address spender,
                                                uint256 value,
                                                uint256 deadline,
                                                uint8 v,
                                                bytes32 r,
                                                bytes32 s
                                            ) external override whenNotPaused {
                                                _permit(owner, spender, value, deadline, v, r, s);
                                            }
                                            /**
                                             * @inheritdoc FiatTokenV2
                                             */
                                            function increaseAllowance(address spender, uint256 increment)
                                                external
                                                override
                                                whenNotPaused
                                                returns (bool)
                                            {
                                                _increaseAllowance(msg.sender, spender, increment);
                                                return true;
                                            }
                                            /**
                                             * @inheritdoc FiatTokenV2
                                             */
                                            function decreaseAllowance(address spender, uint256 decrement)
                                                external
                                                override
                                                whenNotPaused
                                                returns (bool)
                                            {
                                                _decreaseAllowance(msg.sender, spender, decrement);
                                                return true;
                                            }
                                        }
                                        // SPDX-License-Identifier: MIT
                                        pragma solidity >=0.6.2 <0.8.0;
                                        /**
                                         * @dev Collection of functions related to the address type
                                         */
                                        library Address {
                                            /**
                                             * @dev Returns true if `account` is a contract.
                                             *
                                             * [IMPORTANT]
                                             * ====
                                             * It is unsafe to assume that an address for which this function returns
                                             * false is an externally-owned account (EOA) and not a contract.
                                             *
                                             * Among others, `isContract` will return false for the following
                                             * types of addresses:
                                             *
                                             *  - an externally-owned account
                                             *  - a contract in construction
                                             *  - an address where a contract will be created
                                             *  - an address where a contract lived, but was destroyed
                                             * ====
                                             */
                                            function isContract(address account) internal view returns (bool) {
                                                // This method relies on extcodesize, which returns 0 for contracts in
                                                // construction, since the code is only stored at the end of the
                                                // constructor execution.
                                                uint256 size;
                                                // solhint-disable-next-line no-inline-assembly
                                                assembly { size := extcodesize(account) }
                                                return size > 0;
                                            }
                                            /**
                                             * @dev Replacement for Solidity's `transfer`: sends `amount` wei to
                                             * `recipient`, forwarding all available gas and reverting on errors.
                                             *
                                             * https://eips.ethereum.org/EIPS/eip-1884[EIP1884] increases the gas cost
                                             * of certain opcodes, possibly making contracts go over the 2300 gas limit
                                             * imposed by `transfer`, making them unable to receive funds via
                                             * `transfer`. {sendValue} removes this limitation.
                                             *
                                             * https://diligence.consensys.net/posts/2019/09/stop-using-soliditys-transfer-now/[Learn more].
                                             *
                                             * IMPORTANT: because control is transferred to `recipient`, care must be
                                             * taken to not create reentrancy vulnerabilities. Consider using
                                             * {ReentrancyGuard} or the
                                             * https://solidity.readthedocs.io/en/v0.5.11/security-considerations.html#use-the-checks-effects-interactions-pattern[checks-effects-interactions pattern].
                                             */
                                            function sendValue(address payable recipient, uint256 amount) internal {
                                                require(address(this).balance >= amount, "Address: insufficient balance");
                                                // solhint-disable-next-line avoid-low-level-calls, avoid-call-value
                                                (bool success, ) = recipient.call{ value: amount }("");
                                                require(success, "Address: unable to send value, recipient may have reverted");
                                            }
                                            /**
                                             * @dev Performs a Solidity function call using a low level `call`. A
                                             * plain`call` is an unsafe replacement for a function call: use this
                                             * function instead.
                                             *
                                             * If `target` reverts with a revert reason, it is bubbled up by this
                                             * function (like regular Solidity function calls).
                                             *
                                             * Returns the raw returned data. To convert to the expected return value,
                                             * use https://solidity.readthedocs.io/en/latest/units-and-global-variables.html?highlight=abi.decode#abi-encoding-and-decoding-functions[`abi.decode`].
                                             *
                                             * Requirements:
                                             *
                                             * - `target` must be a contract.
                                             * - calling `target` with `data` must not revert.
                                             *
                                             * _Available since v3.1._
                                             */
                                            function functionCall(address target, bytes memory data) internal returns (bytes memory) {
                                              return functionCall(target, data, "Address: low-level call failed");
                                            }
                                            /**
                                             * @dev Same as {xref-Address-functionCall-address-bytes-}[`functionCall`], but with
                                             * `errorMessage` as a fallback revert reason when `target` reverts.
                                             *
                                             * _Available since v3.1._
                                             */
                                            function functionCall(address target, bytes memory data, string memory errorMessage) internal returns (bytes memory) {
                                                return functionCallWithValue(target, data, 0, errorMessage);
                                            }
                                            /**
                                             * @dev Same as {xref-Address-functionCall-address-bytes-}[`functionCall`],
                                             * but also transferring `value` wei to `target`.
                                             *
                                             * Requirements:
                                             *
                                             * - the calling contract must have an ETH balance of at least `value`.
                                             * - the called Solidity function must be `payable`.
                                             *
                                             * _Available since v3.1._
                                             */
                                            function functionCallWithValue(address target, bytes memory data, uint256 value) internal returns (bytes memory) {
                                                return functionCallWithValue(target, data, value, "Address: low-level call with value failed");
                                            }
                                            /**
                                             * @dev Same as {xref-Address-functionCallWithValue-address-bytes-uint256-}[`functionCallWithValue`], but
                                             * with `errorMessage` as a fallback revert reason when `target` reverts.
                                             *
                                             * _Available since v3.1._
                                             */
                                            function functionCallWithValue(address target, bytes memory data, uint256 value, string memory errorMessage) internal returns (bytes memory) {
                                                require(address(this).balance >= value, "Address: insufficient balance for call");
                                                require(isContract(target), "Address: call to non-contract");
                                                // solhint-disable-next-line avoid-low-level-calls
                                                (bool success, bytes memory returndata) = target.call{ value: value }(data);
                                                return _verifyCallResult(success, returndata, errorMessage);
                                            }
                                            /**
                                             * @dev Same as {xref-Address-functionCall-address-bytes-}[`functionCall`],
                                             * but performing a static call.
                                             *
                                             * _Available since v3.3._
                                             */
                                            function functionStaticCall(address target, bytes memory data) internal view returns (bytes memory) {
                                                return functionStaticCall(target, data, "Address: low-level static call failed");
                                            }
                                            /**
                                             * @dev Same as {xref-Address-functionCall-address-bytes-string-}[`functionCall`],
                                             * but performing a static call.
                                             *
                                             * _Available since v3.3._
                                             */
                                            function functionStaticCall(address target, bytes memory data, string memory errorMessage) internal view returns (bytes memory) {
                                                require(isContract(target), "Address: static call to non-contract");
                                                // solhint-disable-next-line avoid-low-level-calls
                                                (bool success, bytes memory returndata) = target.staticcall(data);
                                                return _verifyCallResult(success, returndata, errorMessage);
                                            }
                                            /**
                                             * @dev Same as {xref-Address-functionCall-address-bytes-}[`functionCall`],
                                             * but performing a delegate call.
                                             *
                                             * _Available since v3.4._
                                             */
                                            function functionDelegateCall(address target, bytes memory data) internal returns (bytes memory) {
                                                return functionDelegateCall(target, data, "Address: low-level delegate call failed");
                                            }
                                            /**
                                             * @dev Same as {xref-Address-functionCall-address-bytes-string-}[`functionCall`],
                                             * but performing a delegate call.
                                             *
                                             * _Available since v3.4._
                                             */
                                            function functionDelegateCall(address target, bytes memory data, string memory errorMessage) internal returns (bytes memory) {
                                                require(isContract(target), "Address: delegate call to non-contract");
                                                // solhint-disable-next-line avoid-low-level-calls
                                                (bool success, bytes memory returndata) = target.delegatecall(data);
                                                return _verifyCallResult(success, returndata, errorMessage);
                                            }
                                            function _verifyCallResult(bool success, bytes memory returndata, string memory errorMessage) private pure returns(bytes memory) {
                                                if (success) {
                                                    return returndata;
                                                } else {
                                                    // Look for revert reason and bubble it up if present
                                                    if (returndata.length > 0) {
                                                        // The easiest way to bubble the revert reason is using memory via assembly
                                                        // solhint-disable-next-line no-inline-assembly
                                                        assembly {
                                                            let returndata_size := mload(returndata)
                                                            revert(add(32, returndata), returndata_size)
                                                        }
                                                    } else {
                                                        revert(errorMessage);
                                                    }
                                                }
                                            }
                                        }
                                        // SPDX-License-Identifier: MIT
                                        pragma solidity >=0.6.0 <0.8.0;
                                        import "./IERC20.sol";
                                        import "../../math/SafeMath.sol";
                                        import "../../utils/Address.sol";
                                        /**
                                         * @title SafeERC20
                                         * @dev Wrappers around ERC20 operations that throw on failure (when the token
                                         * contract returns false). Tokens that return no value (and instead revert or
                                         * throw on failure) are also supported, non-reverting calls are assumed to be
                                         * successful.
                                         * To use this library you can add a `using SafeERC20 for IERC20;` statement to your contract,
                                         * which allows you to call the safe operations as `token.safeTransfer(...)`, etc.
                                         */
                                        library SafeERC20 {
                                            using SafeMath for uint256;
                                            using Address for address;
                                            function safeTransfer(IERC20 token, address to, uint256 value) internal {
                                                _callOptionalReturn(token, abi.encodeWithSelector(token.transfer.selector, to, value));
                                            }
                                            function safeTransferFrom(IERC20 token, address from, address to, uint256 value) internal {
                                                _callOptionalReturn(token, abi.encodeWithSelector(token.transferFrom.selector, from, to, value));
                                            }
                                            /**
                                             * @dev Deprecated. This function has issues similar to the ones found in
                                             * {IERC20-approve}, and its usage is discouraged.
                                             *
                                             * Whenever possible, use {safeIncreaseAllowance} and
                                             * {safeDecreaseAllowance} instead.
                                             */
                                            function safeApprove(IERC20 token, address spender, uint256 value) internal {
                                                // safeApprove should only be called when setting an initial allowance,
                                                // or when resetting it to zero. To increase and decrease it, use
                                                // 'safeIncreaseAllowance' and 'safeDecreaseAllowance'
                                                // solhint-disable-next-line max-line-length
                                                require((value == 0) || (token.allowance(address(this), spender) == 0),
                                                    "SafeERC20: approve from non-zero to non-zero allowance"
                                                );
                                                _callOptionalReturn(token, abi.encodeWithSelector(token.approve.selector, spender, value));
                                            }
                                            function safeIncreaseAllowance(IERC20 token, address spender, uint256 value) internal {
                                                uint256 newAllowance = token.allowance(address(this), spender).add(value);
                                                _callOptionalReturn(token, abi.encodeWithSelector(token.approve.selector, spender, newAllowance));
                                            }
                                            function safeDecreaseAllowance(IERC20 token, address spender, uint256 value) internal {
                                                uint256 newAllowance = token.allowance(address(this), spender).sub(value, "SafeERC20: decreased allowance below zero");
                                                _callOptionalReturn(token, abi.encodeWithSelector(token.approve.selector, spender, newAllowance));
                                            }
                                            /**
                                             * @dev Imitates a Solidity high-level call (i.e. a regular function call to a contract), relaxing the requirement
                                             * on the return value: the return value is optional (but if data is returned, it must not be false).
                                             * @param token The token targeted by the call.
                                             * @param data The call data (encoded using abi.encode or one of its variants).
                                             */
                                            function _callOptionalReturn(IERC20 token, bytes memory data) private {
                                                // We need to perform a low level call here, to bypass Solidity's return data size checking mechanism, since
                                                // we're implementing it ourselves. We use {Address.functionCall} to perform this call, which verifies that
                                                // the target address contains contract code and also asserts for success in the low-level call.
                                                bytes memory returndata = address(token).functionCall(data, "SafeERC20: low-level call failed");
                                                if (returndata.length > 0) { // Return data is optional
                                                    // solhint-disable-next-line max-line-length
                                                    require(abi.decode(returndata, (bool)), "SafeERC20: ERC20 operation did not succeed");
                                                }
                                            }
                                        }
                                        // SPDX-License-Identifier: MIT
                                        pragma solidity >=0.6.0 <0.8.0;
                                        /**
                                         * @dev Interface of the ERC20 standard as defined in the EIP.
                                         */
                                        interface IERC20 {
                                            /**
                                             * @dev Returns the amount of tokens in existence.
                                             */
                                            function totalSupply() external view returns (uint256);
                                            /**
                                             * @dev Returns the amount of tokens owned by `account`.
                                             */
                                            function balanceOf(address account) external view returns (uint256);
                                            /**
                                             * @dev Moves `amount` tokens from the caller's account to `recipient`.
                                             *
                                             * Returns a boolean value indicating whether the operation succeeded.
                                             *
                                             * Emits a {Transfer} event.
                                             */
                                            function transfer(address recipient, uint256 amount) external returns (bool);
                                            /**
                                             * @dev Returns the remaining number of tokens that `spender` will be
                                             * allowed to spend on behalf of `owner` through {transferFrom}. This is
                                             * zero by default.
                                             *
                                             * This value changes when {approve} or {transferFrom} are called.
                                             */
                                            function allowance(address owner, address spender) external view returns (uint256);
                                            /**
                                             * @dev Sets `amount` as the allowance of `spender` over the caller's tokens.
                                             *
                                             * Returns a boolean value indicating whether the operation succeeded.
                                             *
                                             * IMPORTANT: Beware that changing an allowance with this method brings the risk
                                             * that someone may use both the old and the new allowance by unfortunate
                                             * transaction ordering. One possible solution to mitigate this race
                                             * condition is to first reduce the spender's allowance to 0 and set the
                                             * desired value afterwards:
                                             * https://github.com/ethereum/EIPs/issues/20#issuecomment-263524729
                                             *
                                             * Emits an {Approval} event.
                                             */
                                            function approve(address spender, uint256 amount) external returns (bool);
                                            /**
                                             * @dev Moves `amount` tokens from `sender` to `recipient` using the
                                             * allowance mechanism. `amount` is then deducted from the caller's
                                             * allowance.
                                             *
                                             * Returns a boolean value indicating whether the operation succeeded.
                                             *
                                             * Emits a {Transfer} event.
                                             */
                                            function transferFrom(address sender, address recipient, uint256 amount) external returns (bool);
                                            /**
                                             * @dev Emitted when `value` tokens are moved from one account (`from`) to
                                             * another (`to`).
                                             *
                                             * Note that `value` may be zero.
                                             */
                                            event Transfer(address indexed from, address indexed to, uint256 value);
                                            /**
                                             * @dev Emitted when the allowance of a `spender` for an `owner` is set by
                                             * a call to {approve}. `value` is the new allowance.
                                             */
                                            event Approval(address indexed owner, address indexed spender, uint256 value);
                                        }
                                        // SPDX-License-Identifier: MIT
                                        pragma solidity >=0.6.0 <0.8.0;
                                        /**
                                         * @dev Wrappers over Solidity's arithmetic operations with added overflow
                                         * checks.
                                         *
                                         * Arithmetic operations in Solidity wrap on overflow. This can easily result
                                         * in bugs, because programmers usually assume that an overflow raises an
                                         * error, which is the standard behavior in high level programming languages.
                                         * `SafeMath` restores this intuition by reverting the transaction when an
                                         * operation overflows.
                                         *
                                         * Using this library instead of the unchecked operations eliminates an entire
                                         * class of bugs, so it's recommended to use it always.
                                         */
                                        library SafeMath {
                                            /**
                                             * @dev Returns the addition of two unsigned integers, with an overflow flag.
                                             *
                                             * _Available since v3.4._
                                             */
                                            function tryAdd(uint256 a, uint256 b) internal pure returns (bool, uint256) {
                                                uint256 c = a + b;
                                                if (c < a) return (false, 0);
                                                return (true, c);
                                            }
                                            /**
                                             * @dev Returns the substraction of two unsigned integers, with an overflow flag.
                                             *
                                             * _Available since v3.4._
                                             */
                                            function trySub(uint256 a, uint256 b) internal pure returns (bool, uint256) {
                                                if (b > a) return (false, 0);
                                                return (true, a - b);
                                            }
                                            /**
                                             * @dev Returns the multiplication of two unsigned integers, with an overflow flag.
                                             *
                                             * _Available since v3.4._
                                             */
                                            function tryMul(uint256 a, uint256 b) internal pure returns (bool, uint256) {
                                                // Gas optimization: this is cheaper than requiring 'a' not being zero, but the
                                                // benefit is lost if 'b' is also tested.
                                                // See: https://github.com/OpenZeppelin/openzeppelin-contracts/pull/522
                                                if (a == 0) return (true, 0);
                                                uint256 c = a * b;
                                                if (c / a != b) return (false, 0);
                                                return (true, c);
                                            }
                                            /**
                                             * @dev Returns the division of two unsigned integers, with a division by zero flag.
                                             *
                                             * _Available since v3.4._
                                             */
                                            function tryDiv(uint256 a, uint256 b) internal pure returns (bool, uint256) {
                                                if (b == 0) return (false, 0);
                                                return (true, a / b);
                                            }
                                            /**
                                             * @dev Returns the remainder of dividing two unsigned integers, with a division by zero flag.
                                             *
                                             * _Available since v3.4._
                                             */
                                            function tryMod(uint256 a, uint256 b) internal pure returns (bool, uint256) {
                                                if (b == 0) return (false, 0);
                                                return (true, a % b);
                                            }
                                            /**
                                             * @dev Returns the addition of two unsigned integers, reverting on
                                             * overflow.
                                             *
                                             * Counterpart to Solidity's `+` operator.
                                             *
                                             * Requirements:
                                             *
                                             * - Addition cannot overflow.
                                             */
                                            function add(uint256 a, uint256 b) internal pure returns (uint256) {
                                                uint256 c = a + b;
                                                require(c >= a, "SafeMath: addition overflow");
                                                return c;
                                            }
                                            /**
                                             * @dev Returns the subtraction of two unsigned integers, reverting on
                                             * overflow (when the result is negative).
                                             *
                                             * Counterpart to Solidity's `-` operator.
                                             *
                                             * Requirements:
                                             *
                                             * - Subtraction cannot overflow.
                                             */
                                            function sub(uint256 a, uint256 b) internal pure returns (uint256) {
                                                require(b <= a, "SafeMath: subtraction overflow");
                                                return a - b;
                                            }
                                            /**
                                             * @dev Returns the multiplication of two unsigned integers, reverting on
                                             * overflow.
                                             *
                                             * Counterpart to Solidity's `*` operator.
                                             *
                                             * Requirements:
                                             *
                                             * - Multiplication cannot overflow.
                                             */
                                            function mul(uint256 a, uint256 b) internal pure returns (uint256) {
                                                if (a == 0) return 0;
                                                uint256 c = a * b;
                                                require(c / a == b, "SafeMath: multiplication overflow");
                                                return c;
                                            }
                                            /**
                                             * @dev Returns the integer division of two unsigned integers, reverting on
                                             * division by zero. The result is rounded towards zero.
                                             *
                                             * Counterpart to Solidity's `/` operator. Note: this function uses a
                                             * `revert` opcode (which leaves remaining gas untouched) while Solidity
                                             * uses an invalid opcode to revert (consuming all remaining gas).
                                             *
                                             * Requirements:
                                             *
                                             * - The divisor cannot be zero.
                                             */
                                            function div(uint256 a, uint256 b) internal pure returns (uint256) {
                                                require(b > 0, "SafeMath: division by zero");
                                                return a / b;
                                            }
                                            /**
                                             * @dev Returns the remainder of dividing two unsigned integers. (unsigned integer modulo),
                                             * reverting when dividing by zero.
                                             *
                                             * Counterpart to Solidity's `%` operator. This function uses a `revert`
                                             * opcode (which leaves remaining gas untouched) while Solidity uses an
                                             * invalid opcode to revert (consuming all remaining gas).
                                             *
                                             * Requirements:
                                             *
                                             * - The divisor cannot be zero.
                                             */
                                            function mod(uint256 a, uint256 b) internal pure returns (uint256) {
                                                require(b > 0, "SafeMath: modulo by zero");
                                                return a % b;
                                            }
                                            /**
                                             * @dev Returns the subtraction of two unsigned integers, reverting with custom message on
                                             * overflow (when the result is negative).
                                             *
                                             * CAUTION: This function is deprecated because it requires allocating memory for the error
                                             * message unnecessarily. For custom revert reasons use {trySub}.
                                             *
                                             * Counterpart to Solidity's `-` operator.
                                             *
                                             * Requirements:
                                             *
                                             * - Subtraction cannot overflow.
                                             */
                                            function sub(uint256 a, uint256 b, string memory errorMessage) internal pure returns (uint256) {
                                                require(b <= a, errorMessage);
                                                return a - b;
                                            }
                                            /**
                                             * @dev Returns the integer division of two unsigned integers, reverting with custom message on
                                             * division by zero. The result is rounded towards zero.
                                             *
                                             * CAUTION: This function is deprecated because it requires allocating memory for the error
                                             * message unnecessarily. For custom revert reasons use {tryDiv}.
                                             *
                                             * Counterpart to Solidity's `/` operator. Note: this function uses a
                                             * `revert` opcode (which leaves remaining gas untouched) while Solidity
                                             * uses an invalid opcode to revert (consuming all remaining gas).
                                             *
                                             * Requirements:
                                             *
                                             * - The divisor cannot be zero.
                                             */
                                            function div(uint256 a, uint256 b, string memory errorMessage) internal pure returns (uint256) {
                                                require(b > 0, errorMessage);
                                                return a / b;
                                            }
                                            /**
                                             * @dev Returns the remainder of dividing two unsigned integers. (unsigned integer modulo),
                                             * reverting with custom message when dividing by zero.
                                             *
                                             * CAUTION: This function is deprecated because it requires allocating memory for the error
                                             * message unnecessarily. For custom revert reasons use {tryMod}.
                                             *
                                             * Counterpart to Solidity's `%` operator. This function uses a `revert`
                                             * opcode (which leaves remaining gas untouched) while Solidity uses an
                                             * invalid opcode to revert (consuming all remaining gas).
                                             *
                                             * Requirements:
                                             *
                                             * - The divisor cannot be zero.
                                             */
                                            function mod(uint256 a, uint256 b, string memory errorMessage) internal pure returns (uint256) {
                                                require(b > 0, errorMessage);
                                                return a % b;
                                            }
                                        }
                                        /**
                                         * SPDX-License-Identifier: Apache-2.0
                                         *
                                         * Copyright (c) 2023, Circle Internet Financial, LLC.
                                         *
                                         * Licensed under the Apache License, Version 2.0 (the "License");
                                         * you may not use this file except in compliance with the License.
                                         * You may obtain a copy of the License at
                                         *
                                         * http://www.apache.org/licenses/LICENSE-2.0
                                         *
                                         * Unless required by applicable law or agreed to in writing, software
                                         * distributed under the License is distributed on an "AS IS" BASIS,
                                         * WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
                                         * See the License for the specific language governing permissions and
                                         * limitations under the License.
                                         */
                                        pragma solidity 0.6.12;
                                        import { FiatTokenV2 } from "./FiatTokenV2.sol";
                                        // solhint-disable func-name-mixedcase
                                        /**
                                         * @title FiatToken V2.1
                                         * @notice ERC20 Token backed by fiat reserves, version 2.1
                                         */
                                        contract FiatTokenV2_1 is FiatTokenV2 {
                                            /**
                                             * @notice Initialize v2.1
                                             * @param lostAndFound  The address to which the locked funds are sent
                                             */
                                            function initializeV2_1(address lostAndFound) external {
                                                // solhint-disable-next-line reason-string
                                                require(_initializedVersion == 1);
                                                uint256 lockedAmount = _balanceOf(address(this));
                                                if (lockedAmount > 0) {
                                                    _transfer(address(this), lostAndFound, lockedAmount);
                                                }
                                                _blacklist(address(this));
                                                _initializedVersion = 2;
                                            }
                                            /**
                                             * @notice Version string for the EIP712 domain separator
                                             * @return Version string
                                             */
                                            function version() external pure returns (string memory) {
                                                return "2";
                                            }
                                        }
                                        /**
                                         * SPDX-License-Identifier: Apache-2.0
                                         *
                                         * Copyright (c) 2023, Circle Internet Financial, LLC.
                                         *
                                         * Licensed under the Apache License, Version 2.0 (the "License");
                                         * you may not use this file except in compliance with the License.
                                         * You may obtain a copy of the License at
                                         *
                                         * http://www.apache.org/licenses/LICENSE-2.0
                                         *
                                         * Unless required by applicable law or agreed to in writing, software
                                         * distributed under the License is distributed on an "AS IS" BASIS,
                                         * WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
                                         * See the License for the specific language governing permissions and
                                         * limitations under the License.
                                         */
                                        pragma solidity 0.6.12;
                                        import { FiatTokenV1_1 } from "../v1.1/FiatTokenV1_1.sol";
                                        import { EIP712 } from "../util/EIP712.sol";
                                        import { EIP3009 } from "./EIP3009.sol";
                                        import { EIP2612 } from "./EIP2612.sol";
                                        /**
                                         * @title FiatToken V2
                                         * @notice ERC20 Token backed by fiat reserves, version 2
                                         */
                                        contract FiatTokenV2 is FiatTokenV1_1, EIP3009, EIP2612 {
                                            uint8 internal _initializedVersion;
                                            /**
                                             * @notice Initialize v2
                                             * @param newName   New token name
                                             */
                                            function initializeV2(string calldata newName) external {
                                                // solhint-disable-next-line reason-string
                                                require(initialized && _initializedVersion == 0);
                                                name = newName;
                                                _DEPRECATED_CACHED_DOMAIN_SEPARATOR = EIP712.makeDomainSeparator(
                                                    newName,
                                                    "2"
                                                );
                                                _initializedVersion = 1;
                                            }
                                            /**
                                             * @notice Increase the allowance by a given increment
                                             * @param spender   Spender's address
                                             * @param increment Amount of increase in allowance
                                             * @return True if successful
                                             */
                                            function increaseAllowance(address spender, uint256 increment)
                                                external
                                                virtual
                                                whenNotPaused
                                                notBlacklisted(msg.sender)
                                                notBlacklisted(spender)
                                                returns (bool)
                                            {
                                                _increaseAllowance(msg.sender, spender, increment);
                                                return true;
                                            }
                                            /**
                                             * @notice Decrease the allowance by a given decrement
                                             * @param spender   Spender's address
                                             * @param decrement Amount of decrease in allowance
                                             * @return True if successful
                                             */
                                            function decreaseAllowance(address spender, uint256 decrement)
                                                external
                                                virtual
                                                whenNotPaused
                                                notBlacklisted(msg.sender)
                                                notBlacklisted(spender)
                                                returns (bool)
                                            {
                                                _decreaseAllowance(msg.sender, spender, decrement);
                                                return true;
                                            }
                                            /**
                                             * @notice Execute a transfer with a signed authorization
                                             * @param from          Payer's address (Authorizer)
                                             * @param to            Payee's address
                                             * @param value         Amount to be transferred
                                             * @param validAfter    The time after which this is valid (unix time)
                                             * @param validBefore   The time before which this is valid (unix time)
                                             * @param nonce         Unique nonce
                                             * @param v             v of the signature
                                             * @param r             r of the signature
                                             * @param s             s of the signature
                                             */
                                            function transferWithAuthorization(
                                                address from,
                                                address to,
                                                uint256 value,
                                                uint256 validAfter,
                                                uint256 validBefore,
                                                bytes32 nonce,
                                                uint8 v,
                                                bytes32 r,
                                                bytes32 s
                                            ) external whenNotPaused notBlacklisted(from) notBlacklisted(to) {
                                                _transferWithAuthorization(
                                                    from,
                                                    to,
                                                    value,
                                                    validAfter,
                                                    validBefore,
                                                    nonce,
                                                    v,
                                                    r,
                                                    s
                                                );
                                            }
                                            /**
                                             * @notice Receive a transfer with a signed authorization from the payer
                                             * @dev This has an additional check to ensure that the payee's address
                                             * matches the caller of this function to prevent front-running attacks.
                                             * @param from          Payer's address (Authorizer)
                                             * @param to            Payee's address
                                             * @param value         Amount to be transferred
                                             * @param validAfter    The time after which this is valid (unix time)
                                             * @param validBefore   The time before which this is valid (unix time)
                                             * @param nonce         Unique nonce
                                             * @param v             v of the signature
                                             * @param r             r of the signature
                                             * @param s             s of the signature
                                             */
                                            function receiveWithAuthorization(
                                                address from,
                                                address to,
                                                uint256 value,
                                                uint256 validAfter,
                                                uint256 validBefore,
                                                bytes32 nonce,
                                                uint8 v,
                                                bytes32 r,
                                                bytes32 s
                                            ) external whenNotPaused notBlacklisted(from) notBlacklisted(to) {
                                                _receiveWithAuthorization(
                                                    from,
                                                    to,
                                                    value,
                                                    validAfter,
                                                    validBefore,
                                                    nonce,
                                                    v,
                                                    r,
                                                    s
                                                );
                                            }
                                            /**
                                             * @notice Attempt to cancel an authorization
                                             * @dev Works only if the authorization is not yet used.
                                             * @param authorizer    Authorizer's address
                                             * @param nonce         Nonce of the authorization
                                             * @param v             v of the signature
                                             * @param r             r of the signature
                                             * @param s             s of the signature
                                             */
                                            function cancelAuthorization(
                                                address authorizer,
                                                bytes32 nonce,
                                                uint8 v,
                                                bytes32 r,
                                                bytes32 s
                                            ) external whenNotPaused {
                                                _cancelAuthorization(authorizer, nonce, v, r, s);
                                            }
                                            /**
                                             * @notice Update allowance with a signed permit
                                             * @param owner       Token owner's address (Authorizer)
                                             * @param spender     Spender's address
                                             * @param value       Amount of allowance
                                             * @param deadline    The time at which the signature expires (unix time), or max uint256 value to signal no expiration
                                             * @param v           v of the signature
                                             * @param r           r of the signature
                                             * @param s           s of the signature
                                             */
                                            function permit(
                                                address owner,
                                                address spender,
                                                uint256 value,
                                                uint256 deadline,
                                                uint8 v,
                                                bytes32 r,
                                                bytes32 s
                                            )
                                                external
                                                virtual
                                                whenNotPaused
                                                notBlacklisted(owner)
                                                notBlacklisted(spender)
                                            {
                                                _permit(owner, spender, value, deadline, v, r, s);
                                            }
                                            /**
                                             * @dev Internal function to increase the allowance by a given increment
                                             * @param owner     Token owner's address
                                             * @param spender   Spender's address
                                             * @param increment Amount of increase
                                             */
                                            function _increaseAllowance(
                                                address owner,
                                                address spender,
                                                uint256 increment
                                            ) internal override {
                                                _approve(owner, spender, allowed[owner][spender].add(increment));
                                            }
                                            /**
                                             * @dev Internal function to decrease the allowance by a given decrement
                                             * @param owner     Token owner's address
                                             * @param spender   Spender's address
                                             * @param decrement Amount of decrease
                                             */
                                            function _decreaseAllowance(
                                                address owner,
                                                address spender,
                                                uint256 decrement
                                            ) internal override {
                                                _approve(
                                                    owner,
                                                    spender,
                                                    allowed[owner][spender].sub(
                                                        decrement,
                                                        "ERC20: decreased allowance below zero"
                                                    )
                                                );
                                            }
                                        }
                                        /**
                                         * SPDX-License-Identifier: Apache-2.0
                                         *
                                         * Copyright (c) 2023, Circle Internet Financial, LLC.
                                         *
                                         * Licensed under the Apache License, Version 2.0 (the "License");
                                         * you may not use this file except in compliance with the License.
                                         * You may obtain a copy of the License at
                                         *
                                         * http://www.apache.org/licenses/LICENSE-2.0
                                         *
                                         * Unless required by applicable law or agreed to in writing, software
                                         * distributed under the License is distributed on an "AS IS" BASIS,
                                         * WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
                                         * See the License for the specific language governing permissions and
                                         * limitations under the License.
                                         */
                                        pragma solidity 0.6.12;
                                        // solhint-disable func-name-mixedcase
                                        /**
                                         * @title EIP712 Domain
                                         */
                                        contract EIP712Domain {
                                            // was originally DOMAIN_SEPARATOR
                                            // but that has been moved to a method so we can override it in V2_2+
                                            bytes32 internal _DEPRECATED_CACHED_DOMAIN_SEPARATOR;
                                            /**
                                             * @notice Get the EIP712 Domain Separator.
                                             * @return The bytes32 EIP712 domain separator.
                                             */
                                            function DOMAIN_SEPARATOR() external view returns (bytes32) {
                                                return _domainSeparator();
                                            }
                                            /**
                                             * @dev Internal method to get the EIP712 Domain Separator.
                                             * @return The bytes32 EIP712 domain separator.
                                             */
                                            function _domainSeparator() internal virtual view returns (bytes32) {
                                                return _DEPRECATED_CACHED_DOMAIN_SEPARATOR;
                                            }
                                        }
                                        /**
                                         * SPDX-License-Identifier: Apache-2.0
                                         *
                                         * Copyright (c) 2023, Circle Internet Financial, LLC.
                                         *
                                         * Licensed under the Apache License, Version 2.0 (the "License");
                                         * you may not use this file except in compliance with the License.
                                         * You may obtain a copy of the License at
                                         *
                                         * http://www.apache.org/licenses/LICENSE-2.0
                                         *
                                         * Unless required by applicable law or agreed to in writing, software
                                         * distributed under the License is distributed on an "AS IS" BASIS,
                                         * WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
                                         * See the License for the specific language governing permissions and
                                         * limitations under the License.
                                         */
                                        pragma solidity 0.6.12;
                                        import { AbstractFiatTokenV2 } from "./AbstractFiatTokenV2.sol";
                                        import { EIP712Domain } from "./EIP712Domain.sol";
                                        import { SignatureChecker } from "../util/SignatureChecker.sol";
                                        import { MessageHashUtils } from "../util/MessageHashUtils.sol";
                                        /**
                                         * @title EIP-3009
                                         * @notice Provide internal implementation for gas-abstracted transfers
                                         * @dev Contracts that inherit from this must wrap these with publicly
                                         * accessible functions, optionally adding modifiers where necessary
                                         */
                                        abstract contract EIP3009 is AbstractFiatTokenV2, EIP712Domain {
                                            // keccak256("TransferWithAuthorization(address from,address to,uint256 value,uint256 validAfter,uint256 validBefore,bytes32 nonce)")
                                            bytes32
                                                public constant TRANSFER_WITH_AUTHORIZATION_TYPEHASH = 0x7c7c6cdb67a18743f49ec6fa9b35f50d52ed05cbed4cc592e13b44501c1a2267;
                                            // keccak256("ReceiveWithAuthorization(address from,address to,uint256 value,uint256 validAfter,uint256 validBefore,bytes32 nonce)")
                                            bytes32
                                                public constant RECEIVE_WITH_AUTHORIZATION_TYPEHASH = 0xd099cc98ef71107a616c4f0f941f04c322d8e254fe26b3c6668db87aae413de8;
                                            // keccak256("CancelAuthorization(address authorizer,bytes32 nonce)")
                                            bytes32
                                                public constant CANCEL_AUTHORIZATION_TYPEHASH = 0x158b0a9edf7a828aad02f63cd515c68ef2f50ba807396f6d12842833a1597429;
                                            /**
                                             * @dev authorizer address => nonce => bool (true if nonce is used)
                                             */
                                            mapping(address => mapping(bytes32 => bool)) private _authorizationStates;
                                            event AuthorizationUsed(address indexed authorizer, bytes32 indexed nonce);
                                            event AuthorizationCanceled(
                                                address indexed authorizer,
                                                bytes32 indexed nonce
                                            );
                                            /**
                                             * @notice Returns the state of an authorization
                                             * @dev Nonces are randomly generated 32-byte data unique to the
                                             * authorizer's address
                                             * @param authorizer    Authorizer's address
                                             * @param nonce         Nonce of the authorization
                                             * @return True if the nonce is used
                                             */
                                            function authorizationState(address authorizer, bytes32 nonce)
                                                external
                                                view
                                                returns (bool)
                                            {
                                                return _authorizationStates[authorizer][nonce];
                                            }
                                            /**
                                             * @notice Execute a transfer with a signed authorization
                                             * @param from          Payer's address (Authorizer)
                                             * @param to            Payee's address
                                             * @param value         Amount to be transferred
                                             * @param validAfter    The time after which this is valid (unix time)
                                             * @param validBefore   The time before which this is valid (unix time)
                                             * @param nonce         Unique nonce
                                             * @param v             v of the signature
                                             * @param r             r of the signature
                                             * @param s             s of the signature
                                             */
                                            function _transferWithAuthorization(
                                                address from,
                                                address to,
                                                uint256 value,
                                                uint256 validAfter,
                                                uint256 validBefore,
                                                bytes32 nonce,
                                                uint8 v,
                                                bytes32 r,
                                                bytes32 s
                                            ) internal {
                                                _transferWithAuthorization(
                                                    from,
                                                    to,
                                                    value,
                                                    validAfter,
                                                    validBefore,
                                                    nonce,
                                                    abi.encodePacked(r, s, v)
                                                );
                                            }
                                            /**
                                             * @notice Execute a transfer with a signed authorization
                                             * @dev EOA wallet signatures should be packed in the order of r, s, v.
                                             * @param from          Payer's address (Authorizer)
                                             * @param to            Payee's address
                                             * @param value         Amount to be transferred
                                             * @param validAfter    The time after which this is valid (unix time)
                                             * @param validBefore   The time before which this is valid (unix time)
                                             * @param nonce         Unique nonce
                                             * @param signature     Signature byte array produced by an EOA wallet or a contract wallet
                                             */
                                            function _transferWithAuthorization(
                                                address from,
                                                address to,
                                                uint256 value,
                                                uint256 validAfter,
                                                uint256 validBefore,
                                                bytes32 nonce,
                                                bytes memory signature
                                            ) internal {
                                                _requireValidAuthorization(from, nonce, validAfter, validBefore);
                                                _requireValidSignature(
                                                    from,
                                                    keccak256(
                                                        abi.encode(
                                                            TRANSFER_WITH_AUTHORIZATION_TYPEHASH,
                                                            from,
                                                            to,
                                                            value,
                                                            validAfter,
                                                            validBefore,
                                                            nonce
                                                        )
                                                    ),
                                                    signature
                                                );
                                                _markAuthorizationAsUsed(from, nonce);
                                                _transfer(from, to, value);
                                            }
                                            /**
                                             * @notice Receive a transfer with a signed authorization from the payer
                                             * @dev This has an additional check to ensure that the payee's address
                                             * matches the caller of this function to prevent front-running attacks.
                                             * @param from          Payer's address (Authorizer)
                                             * @param to            Payee's address
                                             * @param value         Amount to be transferred
                                             * @param validAfter    The time after which this is valid (unix time)
                                             * @param validBefore   The time before which this is valid (unix time)
                                             * @param nonce         Unique nonce
                                             * @param v             v of the signature
                                             * @param r             r of the signature
                                             * @param s             s of the signature
                                             */
                                            function _receiveWithAuthorization(
                                                address from,
                                                address to,
                                                uint256 value,
                                                uint256 validAfter,
                                                uint256 validBefore,
                                                bytes32 nonce,
                                                uint8 v,
                                                bytes32 r,
                                                bytes32 s
                                            ) internal {
                                                _receiveWithAuthorization(
                                                    from,
                                                    to,
                                                    value,
                                                    validAfter,
                                                    validBefore,
                                                    nonce,
                                                    abi.encodePacked(r, s, v)
                                                );
                                            }
                                            /**
                                             * @notice Receive a transfer with a signed authorization from the payer
                                             * @dev This has an additional check to ensure that the payee's address
                                             * matches the caller of this function to prevent front-running attacks.
                                             * EOA wallet signatures should be packed in the order of r, s, v.
                                             * @param from          Payer's address (Authorizer)
                                             * @param to            Payee's address
                                             * @param value         Amount to be transferred
                                             * @param validAfter    The time after which this is valid (unix time)
                                             * @param validBefore   The time before which this is valid (unix time)
                                             * @param nonce         Unique nonce
                                             * @param signature     Signature byte array produced by an EOA wallet or a contract wallet
                                             */
                                            function _receiveWithAuthorization(
                                                address from,
                                                address to,
                                                uint256 value,
                                                uint256 validAfter,
                                                uint256 validBefore,
                                                bytes32 nonce,
                                                bytes memory signature
                                            ) internal {
                                                require(to == msg.sender, "FiatTokenV2: caller must be the payee");
                                                _requireValidAuthorization(from, nonce, validAfter, validBefore);
                                                _requireValidSignature(
                                                    from,
                                                    keccak256(
                                                        abi.encode(
                                                            RECEIVE_WITH_AUTHORIZATION_TYPEHASH,
                                                            from,
                                                            to,
                                                            value,
                                                            validAfter,
                                                            validBefore,
                                                            nonce
                                                        )
                                                    ),
                                                    signature
                                                );
                                                _markAuthorizationAsUsed(from, nonce);
                                                _transfer(from, to, value);
                                            }
                                            /**
                                             * @notice Attempt to cancel an authorization
                                             * @param authorizer    Authorizer's address
                                             * @param nonce         Nonce of the authorization
                                             * @param v             v of the signature
                                             * @param r             r of the signature
                                             * @param s             s of the signature
                                             */
                                            function _cancelAuthorization(
                                                address authorizer,
                                                bytes32 nonce,
                                                uint8 v,
                                                bytes32 r,
                                                bytes32 s
                                            ) internal {
                                                _cancelAuthorization(authorizer, nonce, abi.encodePacked(r, s, v));
                                            }
                                            /**
                                             * @notice Attempt to cancel an authorization
                                             * @dev EOA wallet signatures should be packed in the order of r, s, v.
                                             * @param authorizer    Authorizer's address
                                             * @param nonce         Nonce of the authorization
                                             * @param signature     Signature byte array produced by an EOA wallet or a contract wallet
                                             */
                                            function _cancelAuthorization(
                                                address authorizer,
                                                bytes32 nonce,
                                                bytes memory signature
                                            ) internal {
                                                _requireUnusedAuthorization(authorizer, nonce);
                                                _requireValidSignature(
                                                    authorizer,
                                                    keccak256(
                                                        abi.encode(CANCEL_AUTHORIZATION_TYPEHASH, authorizer, nonce)
                                                    ),
                                                    signature
                                                );
                                                _authorizationStates[authorizer][nonce] = true;
                                                emit AuthorizationCanceled(authorizer, nonce);
                                            }
                                            /**
                                             * @notice Validates that signature against input data struct
                                             * @param signer        Signer's address
                                             * @param dataHash      Hash of encoded data struct
                                             * @param signature     Signature byte array produced by an EOA wallet or a contract wallet
                                             */
                                            function _requireValidSignature(
                                                address signer,
                                                bytes32 dataHash,
                                                bytes memory signature
                                            ) private view {
                                                require(
                                                    SignatureChecker.isValidSignatureNow(
                                                        signer,
                                                        MessageHashUtils.toTypedDataHash(_domainSeparator(), dataHash),
                                                        signature
                                                    ),
                                                    "FiatTokenV2: invalid signature"
                                                );
                                            }
                                            /**
                                             * @notice Check that an authorization is unused
                                             * @param authorizer    Authorizer's address
                                             * @param nonce         Nonce of the authorization
                                             */
                                            function _requireUnusedAuthorization(address authorizer, bytes32 nonce)
                                                private
                                                view
                                            {
                                                require(
                                                    !_authorizationStates[authorizer][nonce],
                                                    "FiatTokenV2: authorization is used or canceled"
                                                );
                                            }
                                            /**
                                             * @notice Check that authorization is valid
                                             * @param authorizer    Authorizer's address
                                             * @param nonce         Nonce of the authorization
                                             * @param validAfter    The time after which this is valid (unix time)
                                             * @param validBefore   The time before which this is valid (unix time)
                                             */
                                            function _requireValidAuthorization(
                                                address authorizer,
                                                bytes32 nonce,
                                                uint256 validAfter,
                                                uint256 validBefore
                                            ) private view {
                                                require(
                                                    now > validAfter,
                                                    "FiatTokenV2: authorization is not yet valid"
                                                );
                                                require(now < validBefore, "FiatTokenV2: authorization is expired");
                                                _requireUnusedAuthorization(authorizer, nonce);
                                            }
                                            /**
                                             * @notice Mark an authorization as used
                                             * @param authorizer    Authorizer's address
                                             * @param nonce         Nonce of the authorization
                                             */
                                            function _markAuthorizationAsUsed(address authorizer, bytes32 nonce)
                                                private
                                            {
                                                _authorizationStates[authorizer][nonce] = true;
                                                emit AuthorizationUsed(authorizer, nonce);
                                            }
                                        }
                                        /**
                                         * SPDX-License-Identifier: Apache-2.0
                                         *
                                         * Copyright (c) 2023, Circle Internet Financial, LLC.
                                         *
                                         * Licensed under the Apache License, Version 2.0 (the "License");
                                         * you may not use this file except in compliance with the License.
                                         * You may obtain a copy of the License at
                                         *
                                         * http://www.apache.org/licenses/LICENSE-2.0
                                         *
                                         * Unless required by applicable law or agreed to in writing, software
                                         * distributed under the License is distributed on an "AS IS" BASIS,
                                         * WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
                                         * See the License for the specific language governing permissions and
                                         * limitations under the License.
                                         */
                                        pragma solidity 0.6.12;
                                        import { AbstractFiatTokenV2 } from "./AbstractFiatTokenV2.sol";
                                        import { EIP712Domain } from "./EIP712Domain.sol";
                                        import { MessageHashUtils } from "../util/MessageHashUtils.sol";
                                        import { SignatureChecker } from "../util/SignatureChecker.sol";
                                        /**
                                         * @title EIP-2612
                                         * @notice Provide internal implementation for gas-abstracted approvals
                                         */
                                        abstract contract EIP2612 is AbstractFiatTokenV2, EIP712Domain {
                                            // keccak256("Permit(address owner,address spender,uint256 value,uint256 nonce,uint256 deadline)")
                                            bytes32
                                                public constant PERMIT_TYPEHASH = 0x6e71edae12b1b97f4d1f60370fef10105fa2faae0126114a169c64845d6126c9;
                                            mapping(address => uint256) private _permitNonces;
                                            /**
                                             * @notice Nonces for permit
                                             * @param owner Token owner's address (Authorizer)
                                             * @return Next nonce
                                             */
                                            function nonces(address owner) external view returns (uint256) {
                                                return _permitNonces[owner];
                                            }
                                            /**
                                             * @notice Verify a signed approval permit and execute if valid
                                             * @param owner     Token owner's address (Authorizer)
                                             * @param spender   Spender's address
                                             * @param value     Amount of allowance
                                             * @param deadline  The time at which the signature expires (unix time), or max uint256 value to signal no expiration
                                             * @param v         v of the signature
                                             * @param r         r of the signature
                                             * @param s         s of the signature
                                             */
                                            function _permit(
                                                address owner,
                                                address spender,
                                                uint256 value,
                                                uint256 deadline,
                                                uint8 v,
                                                bytes32 r,
                                                bytes32 s
                                            ) internal {
                                                _permit(owner, spender, value, deadline, abi.encodePacked(r, s, v));
                                            }
                                            /**
                                             * @notice Verify a signed approval permit and execute if valid
                                             * @dev EOA wallet signatures should be packed in the order of r, s, v.
                                             * @param owner      Token owner's address (Authorizer)
                                             * @param spender    Spender's address
                                             * @param value      Amount of allowance
                                             * @param deadline   The time at which the signature expires (unix time), or max uint256 value to signal no expiration
                                             * @param signature  Signature byte array signed by an EOA wallet or a contract wallet
                                             */
                                            function _permit(
                                                address owner,
                                                address spender,
                                                uint256 value,
                                                uint256 deadline,
                                                bytes memory signature
                                            ) internal {
                                                require(
                                                    deadline == type(uint256).max || deadline >= now,
                                                    "FiatTokenV2: permit is expired"
                                                );
                                                bytes32 typedDataHash = MessageHashUtils.toTypedDataHash(
                                                    _domainSeparator(),
                                                    keccak256(
                                                        abi.encode(
                                                            PERMIT_TYPEHASH,
                                                            owner,
                                                            spender,
                                                            value,
                                                            _permitNonces[owner]++,
                                                            deadline
                                                        )
                                                    )
                                                );
                                                require(
                                                    SignatureChecker.isValidSignatureNow(
                                                        owner,
                                                        typedDataHash,
                                                        signature
                                                    ),
                                                    "EIP2612: invalid signature"
                                                );
                                                _approve(owner, spender, value);
                                            }
                                        }
                                        /**
                                         * SPDX-License-Identifier: Apache-2.0
                                         *
                                         * Copyright (c) 2023, Circle Internet Financial, LLC.
                                         *
                                         * Licensed under the Apache License, Version 2.0 (the "License");
                                         * you may not use this file except in compliance with the License.
                                         * You may obtain a copy of the License at
                                         *
                                         * http://www.apache.org/licenses/LICENSE-2.0
                                         *
                                         * Unless required by applicable law or agreed to in writing, software
                                         * distributed under the License is distributed on an "AS IS" BASIS,
                                         * WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
                                         * See the License for the specific language governing permissions and
                                         * limitations under the License.
                                         */
                                        pragma solidity 0.6.12;
                                        import { AbstractFiatTokenV1 } from "../v1/AbstractFiatTokenV1.sol";
                                        abstract contract AbstractFiatTokenV2 is AbstractFiatTokenV1 {
                                            function _increaseAllowance(
                                                address owner,
                                                address spender,
                                                uint256 increment
                                            ) internal virtual;
                                            function _decreaseAllowance(
                                                address owner,
                                                address spender,
                                                uint256 decrement
                                            ) internal virtual;
                                        }
                                        /**
                                         * SPDX-License-Identifier: MIT
                                         *
                                         * Copyright (c) 2016 Smart Contract Solutions, Inc.
                                         * Copyright (c) 2018-2020 CENTRE SECZ
                                         *
                                         * Permission is hereby granted, free of charge, to any person obtaining a copy
                                         * of this software and associated documentation files (the "Software"), to deal
                                         * in the Software without restriction, including without limitation the rights
                                         * to use, copy, modify, merge, publish, distribute, sublicense, and/or sell
                                         * copies of the Software, and to permit persons to whom the Software is
                                         * furnished to do so, subject to the following conditions:
                                         *
                                         * The above copyright notice and this permission notice shall be included in
                                         * copies or substantial portions of the Software.
                                         *
                                         * THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR
                                         * IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY,
                                         * FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL THE
                                         * AUTHORS OR COPYRIGHT HOLDERS BE LIABLE FOR ANY CLAIM, DAMAGES OR OTHER
                                         * LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE, ARISING FROM,
                                         * OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR OTHER DEALINGS IN THE
                                         * SOFTWARE.
                                         */
                                        pragma solidity 0.6.12;
                                        import { Ownable } from "./Ownable.sol";
                                        /**
                                         * @notice Base contract which allows children to implement an emergency stop
                                         * mechanism
                                         * @dev Forked from https://github.com/OpenZeppelin/openzeppelin-contracts/blob/feb665136c0dae9912e08397c1a21c4af3651ef3/contracts/lifecycle/Pausable.sol
                                         * Modifications:
                                         * 1. Added pauser role, switched pause/unpause to be onlyPauser (6/14/2018)
                                         * 2. Removed whenNotPause/whenPaused from pause/unpause (6/14/2018)
                                         * 3. Removed whenPaused (6/14/2018)
                                         * 4. Switches ownable library to use ZeppelinOS (7/12/18)
                                         * 5. Remove constructor (7/13/18)
                                         * 6. Reformat, conform to Solidity 0.6 syntax and add error messages (5/13/20)
                                         * 7. Make public functions external (5/27/20)
                                         */
                                        contract Pausable is Ownable {
                                            event Pause();
                                            event Unpause();
                                            event PauserChanged(address indexed newAddress);
                                            address public pauser;
                                            bool public paused = false;
                                            /**
                                             * @dev Modifier to make a function callable only when the contract is not paused.
                                             */
                                            modifier whenNotPaused() {
                                                require(!paused, "Pausable: paused");
                                                _;
                                            }
                                            /**
                                             * @dev throws if called by any account other than the pauser
                                             */
                                            modifier onlyPauser() {
                                                require(msg.sender == pauser, "Pausable: caller is not the pauser");
                                                _;
                                            }
                                            /**
                                             * @dev called by the owner to pause, triggers stopped state
                                             */
                                            function pause() external onlyPauser {
                                                paused = true;
                                                emit Pause();
                                            }
                                            /**
                                             * @dev called by the owner to unpause, returns to normal state
                                             */
                                            function unpause() external onlyPauser {
                                                paused = false;
                                                emit Unpause();
                                            }
                                            /**
                                             * @notice Updates the pauser address.
                                             * @param _newPauser The address of the new pauser.
                                             */
                                            function updatePauser(address _newPauser) external onlyOwner {
                                                require(
                                                    _newPauser != address(0),
                                                    "Pausable: new pauser is the zero address"
                                                );
                                                pauser = _newPauser;
                                                emit PauserChanged(pauser);
                                            }
                                        }
                                        /**
                                         * SPDX-License-Identifier: MIT
                                         *
                                         * Copyright (c) 2018 zOS Global Limited.
                                         * Copyright (c) 2018-2020 CENTRE SECZ
                                         *
                                         * Permission is hereby granted, free of charge, to any person obtaining a copy
                                         * of this software and associated documentation files (the "Software"), to deal
                                         * in the Software without restriction, including without limitation the rights
                                         * to use, copy, modify, merge, publish, distribute, sublicense, and/or sell
                                         * copies of the Software, and to permit persons to whom the Software is
                                         * furnished to do so, subject to the following conditions:
                                         *
                                         * The above copyright notice and this permission notice shall be included in
                                         * copies or substantial portions of the Software.
                                         *
                                         * THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR
                                         * IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY,
                                         * FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL THE
                                         * AUTHORS OR COPYRIGHT HOLDERS BE LIABLE FOR ANY CLAIM, DAMAGES OR OTHER
                                         * LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE, ARISING FROM,
                                         * OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR OTHER DEALINGS IN THE
                                         * SOFTWARE.
                                         */
                                        pragma solidity 0.6.12;
                                        /**
                                         * @notice The Ownable contract has an owner address, and provides basic
                                         * authorization control functions
                                         * @dev Forked from https://github.com/OpenZeppelin/openzeppelin-labs/blob/3887ab77b8adafba4a26ace002f3a684c1a3388b/upgradeability_ownership/contracts/ownership/Ownable.sol
                                         * Modifications:
                                         * 1. Consolidate OwnableStorage into this contract (7/13/18)
                                         * 2. Reformat, conform to Solidity 0.6 syntax, and add error messages (5/13/20)
                                         * 3. Make public functions external (5/27/20)
                                         */
                                        contract Ownable {
                                            // Owner of the contract
                                            address private _owner;
                                            /**
                                             * @dev Event to show ownership has been transferred
                                             * @param previousOwner representing the address of the previous owner
                                             * @param newOwner representing the address of the new owner
                                             */
                                            event OwnershipTransferred(address previousOwner, address newOwner);
                                            /**
                                             * @dev The constructor sets the original owner of the contract to the sender account.
                                             */
                                            constructor() public {
                                                setOwner(msg.sender);
                                            }
                                            /**
                                             * @dev Tells the address of the owner
                                             * @return the address of the owner
                                             */
                                            function owner() external view returns (address) {
                                                return _owner;
                                            }
                                            /**
                                             * @dev Sets a new owner address
                                             */
                                            function setOwner(address newOwner) internal {
                                                _owner = newOwner;
                                            }
                                            /**
                                             * @dev Throws if called by any account other than the owner.
                                             */
                                            modifier onlyOwner() {
                                                require(msg.sender == _owner, "Ownable: caller is not the owner");
                                                _;
                                            }
                                            /**
                                             * @dev Allows the current owner to transfer control of the contract to a newOwner.
                                             * @param newOwner The address to transfer ownership to.
                                             */
                                            function transferOwnership(address newOwner) external onlyOwner {
                                                require(
                                                    newOwner != address(0),
                                                    "Ownable: new owner is the zero address"
                                                );
                                                emit OwnershipTransferred(_owner, newOwner);
                                                setOwner(newOwner);
                                            }
                                        }
                                        /**
                                         * SPDX-License-Identifier: Apache-2.0
                                         *
                                         * Copyright (c) 2023, Circle Internet Financial, LLC.
                                         *
                                         * Licensed under the Apache License, Version 2.0 (the "License");
                                         * you may not use this file except in compliance with the License.
                                         * You may obtain a copy of the License at
                                         *
                                         * http://www.apache.org/licenses/LICENSE-2.0
                                         *
                                         * Unless required by applicable law or agreed to in writing, software
                                         * distributed under the License is distributed on an "AS IS" BASIS,
                                         * WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
                                         * See the License for the specific language governing permissions and
                                         * limitations under the License.
                                         */
                                        pragma solidity 0.6.12;
                                        import { SafeMath } from "@openzeppelin/contracts/math/SafeMath.sol";
                                        import { AbstractFiatTokenV1 } from "./AbstractFiatTokenV1.sol";
                                        import { Ownable } from "./Ownable.sol";
                                        import { Pausable } from "./Pausable.sol";
                                        import { Blacklistable } from "./Blacklistable.sol";
                                        /**
                                         * @title FiatToken
                                         * @dev ERC20 Token backed by fiat reserves
                                         */
                                        contract FiatTokenV1 is AbstractFiatTokenV1, Ownable, Pausable, Blacklistable {
                                            using SafeMath for uint256;
                                            string public name;
                                            string public symbol;
                                            uint8 public decimals;
                                            string public currency;
                                            address public masterMinter;
                                            bool internal initialized;
                                            /// @dev A mapping that stores the balance and blacklist states for a given address.
                                            /// The first bit defines whether the address is blacklisted (1 if blacklisted, 0 otherwise).
                                            /// The last 255 bits define the balance for the address.
                                            mapping(address => uint256) internal balanceAndBlacklistStates;
                                            mapping(address => mapping(address => uint256)) internal allowed;
                                            uint256 internal totalSupply_ = 0;
                                            mapping(address => bool) internal minters;
                                            mapping(address => uint256) internal minterAllowed;
                                            event Mint(address indexed minter, address indexed to, uint256 amount);
                                            event Burn(address indexed burner, uint256 amount);
                                            event MinterConfigured(address indexed minter, uint256 minterAllowedAmount);
                                            event MinterRemoved(address indexed oldMinter);
                                            event MasterMinterChanged(address indexed newMasterMinter);
                                            /**
                                             * @notice Initializes the fiat token contract.
                                             * @param tokenName       The name of the fiat token.
                                             * @param tokenSymbol     The symbol of the fiat token.
                                             * @param tokenCurrency   The fiat currency that the token represents.
                                             * @param tokenDecimals   The number of decimals that the token uses.
                                             * @param newMasterMinter The masterMinter address for the fiat token.
                                             * @param newPauser       The pauser address for the fiat token.
                                             * @param newBlacklister  The blacklister address for the fiat token.
                                             * @param newOwner        The owner of the fiat token.
                                             */
                                            function initialize(
                                                string memory tokenName,
                                                string memory tokenSymbol,
                                                string memory tokenCurrency,
                                                uint8 tokenDecimals,
                                                address newMasterMinter,
                                                address newPauser,
                                                address newBlacklister,
                                                address newOwner
                                            ) public {
                                                require(!initialized, "FiatToken: contract is already initialized");
                                                require(
                                                    newMasterMinter != address(0),
                                                    "FiatToken: new masterMinter is the zero address"
                                                );
                                                require(
                                                    newPauser != address(0),
                                                    "FiatToken: new pauser is the zero address"
                                                );
                                                require(
                                                    newBlacklister != address(0),
                                                    "FiatToken: new blacklister is the zero address"
                                                );
                                                require(
                                                    newOwner != address(0),
                                                    "FiatToken: new owner is the zero address"
                                                );
                                                name = tokenName;
                                                symbol = tokenSymbol;
                                                currency = tokenCurrency;
                                                decimals = tokenDecimals;
                                                masterMinter = newMasterMinter;
                                                pauser = newPauser;
                                                blacklister = newBlacklister;
                                                setOwner(newOwner);
                                                initialized = true;
                                            }
                                            /**
                                             * @dev Throws if called by any account other than a minter.
                                             */
                                            modifier onlyMinters() {
                                                require(minters[msg.sender], "FiatToken: caller is not a minter");
                                                _;
                                            }
                                            /**
                                             * @notice Mints fiat tokens to an address.
                                             * @param _to The address that will receive the minted tokens.
                                             * @param _amount The amount of tokens to mint. Must be less than or equal
                                             * to the minterAllowance of the caller.
                                             * @return True if the operation was successful.
                                             */
                                            function mint(address _to, uint256 _amount)
                                                external
                                                whenNotPaused
                                                onlyMinters
                                                notBlacklisted(msg.sender)
                                                notBlacklisted(_to)
                                                returns (bool)
                                            {
                                                require(_to != address(0), "FiatToken: mint to the zero address");
                                                require(_amount > 0, "FiatToken: mint amount not greater than 0");
                                                uint256 mintingAllowedAmount = minterAllowed[msg.sender];
                                                require(
                                                    _amount <= mintingAllowedAmount,
                                                    "FiatToken: mint amount exceeds minterAllowance"
                                                );
                                                totalSupply_ = totalSupply_.add(_amount);
                                                _setBalance(_to, _balanceOf(_to).add(_amount));
                                                minterAllowed[msg.sender] = mintingAllowedAmount.sub(_amount);
                                                emit Mint(msg.sender, _to, _amount);
                                                emit Transfer(address(0), _to, _amount);
                                                return true;
                                            }
                                            /**
                                             * @dev Throws if called by any account other than the masterMinter
                                             */
                                            modifier onlyMasterMinter() {
                                                require(
                                                    msg.sender == masterMinter,
                                                    "FiatToken: caller is not the masterMinter"
                                                );
                                                _;
                                            }
                                            /**
                                             * @notice Gets the minter allowance for an account.
                                             * @param minter The address to check.
                                             * @return The remaining minter allowance for the account.
                                             */
                                            function minterAllowance(address minter) external view returns (uint256) {
                                                return minterAllowed[minter];
                                            }
                                            /**
                                             * @notice Checks if an account is a minter.
                                             * @param account The address to check.
                                             * @return True if the account is a minter, false if the account is not a minter.
                                             */
                                            function isMinter(address account) external view returns (bool) {
                                                return minters[account];
                                            }
                                            /**
                                             * @notice Gets the remaining amount of fiat tokens a spender is allowed to transfer on
                                             * behalf of the token owner.
                                             * @param owner   The token owner's address.
                                             * @param spender The spender's address.
                                             * @return The remaining allowance.
                                             */
                                            function allowance(address owner, address spender)
                                                external
                                                override
                                                view
                                                returns (uint256)
                                            {
                                                return allowed[owner][spender];
                                            }
                                            /**
                                             * @notice Gets the totalSupply of the fiat token.
                                             * @return The totalSupply of the fiat token.
                                             */
                                            function totalSupply() external override view returns (uint256) {
                                                return totalSupply_;
                                            }
                                            /**
                                             * @notice Gets the fiat token balance of an account.
                                             * @param account  The address to check.
                                             * @return balance The fiat token balance of the account.
                                             */
                                            function balanceOf(address account)
                                                external
                                                override
                                                view
                                                returns (uint256)
                                            {
                                                return _balanceOf(account);
                                            }
                                            /**
                                             * @notice Sets a fiat token allowance for a spender to spend on behalf of the caller.
                                             * @param spender The spender's address.
                                             * @param value   The allowance amount.
                                             * @return True if the operation was successful.
                                             */
                                            function approve(address spender, uint256 value)
                                                external
                                                virtual
                                                override
                                                whenNotPaused
                                                notBlacklisted(msg.sender)
                                                notBlacklisted(spender)
                                                returns (bool)
                                            {
                                                _approve(msg.sender, spender, value);
                                                return true;
                                            }
                                            /**
                                             * @dev Internal function to set allowance.
                                             * @param owner     Token owner's address.
                                             * @param spender   Spender's address.
                                             * @param value     Allowance amount.
                                             */
                                            function _approve(
                                                address owner,
                                                address spender,
                                                uint256 value
                                            ) internal override {
                                                require(owner != address(0), "ERC20: approve from the zero address");
                                                require(spender != address(0), "ERC20: approve to the zero address");
                                                allowed[owner][spender] = value;
                                                emit Approval(owner, spender, value);
                                            }
                                            /**
                                             * @notice Transfers tokens from an address to another by spending the caller's allowance.
                                             * @dev The caller must have some fiat token allowance on the payer's tokens.
                                             * @param from  Payer's address.
                                             * @param to    Payee's address.
                                             * @param value Transfer amount.
                                             * @return True if the operation was successful.
                                             */
                                            function transferFrom(
                                                address from,
                                                address to,
                                                uint256 value
                                            )
                                                external
                                                override
                                                whenNotPaused
                                                notBlacklisted(msg.sender)
                                                notBlacklisted(from)
                                                notBlacklisted(to)
                                                returns (bool)
                                            {
                                                require(
                                                    value <= allowed[from][msg.sender],
                                                    "ERC20: transfer amount exceeds allowance"
                                                );
                                                _transfer(from, to, value);
                                                allowed[from][msg.sender] = allowed[from][msg.sender].sub(value);
                                                return true;
                                            }
                                            /**
                                             * @notice Transfers tokens from the caller.
                                             * @param to    Payee's address.
                                             * @param value Transfer amount.
                                             * @return True if the operation was successful.
                                             */
                                            function transfer(address to, uint256 value)
                                                external
                                                override
                                                whenNotPaused
                                                notBlacklisted(msg.sender)
                                                notBlacklisted(to)
                                                returns (bool)
                                            {
                                                _transfer(msg.sender, to, value);
                                                return true;
                                            }
                                            /**
                                             * @dev Internal function to process transfers.
                                             * @param from  Payer's address.
                                             * @param to    Payee's address.
                                             * @param value Transfer amount.
                                             */
                                            function _transfer(
                                                address from,
                                                address to,
                                                uint256 value
                                            ) internal override {
                                                require(from != address(0), "ERC20: transfer from the zero address");
                                                require(to != address(0), "ERC20: transfer to the zero address");
                                                require(
                                                    value <= _balanceOf(from),
                                                    "ERC20: transfer amount exceeds balance"
                                                );
                                                _setBalance(from, _balanceOf(from).sub(value));
                                                _setBalance(to, _balanceOf(to).add(value));
                                                emit Transfer(from, to, value);
                                            }
                                            /**
                                             * @notice Adds or updates a new minter with a mint allowance.
                                             * @param minter The address of the minter.
                                             * @param minterAllowedAmount The minting amount allowed for the minter.
                                             * @return True if the operation was successful.
                                             */
                                            function configureMinter(address minter, uint256 minterAllowedAmount)
                                                external
                                                whenNotPaused
                                                onlyMasterMinter
                                                returns (bool)
                                            {
                                                minters[minter] = true;
                                                minterAllowed[minter] = minterAllowedAmount;
                                                emit MinterConfigured(minter, minterAllowedAmount);
                                                return true;
                                            }
                                            /**
                                             * @notice Removes a minter.
                                             * @param minter The address of the minter to remove.
                                             * @return True if the operation was successful.
                                             */
                                            function removeMinter(address minter)
                                                external
                                                onlyMasterMinter
                                                returns (bool)
                                            {
                                                minters[minter] = false;
                                                minterAllowed[minter] = 0;
                                                emit MinterRemoved(minter);
                                                return true;
                                            }
                                            /**
                                             * @notice Allows a minter to burn some of its own tokens.
                                             * @dev The caller must be a minter, must not be blacklisted, and the amount to burn
                                             * should be less than or equal to the account's balance.
                                             * @param _amount the amount of tokens to be burned.
                                             */
                                            function burn(uint256 _amount)
                                                external
                                                whenNotPaused
                                                onlyMinters
                                                notBlacklisted(msg.sender)
                                            {
                                                uint256 balance = _balanceOf(msg.sender);
                                                require(_amount > 0, "FiatToken: burn amount not greater than 0");
                                                require(balance >= _amount, "FiatToken: burn amount exceeds balance");
                                                totalSupply_ = totalSupply_.sub(_amount);
                                                _setBalance(msg.sender, balance.sub(_amount));
                                                emit Burn(msg.sender, _amount);
                                                emit Transfer(msg.sender, address(0), _amount);
                                            }
                                            /**
                                             * @notice Updates the master minter address.
                                             * @param _newMasterMinter The address of the new master minter.
                                             */
                                            function updateMasterMinter(address _newMasterMinter) external onlyOwner {
                                                require(
                                                    _newMasterMinter != address(0),
                                                    "FiatToken: new masterMinter is the zero address"
                                                );
                                                masterMinter = _newMasterMinter;
                                                emit MasterMinterChanged(masterMinter);
                                            }
                                            /**
                                             * @inheritdoc Blacklistable
                                             */
                                            function _blacklist(address _account) internal override {
                                                _setBlacklistState(_account, true);
                                            }
                                            /**
                                             * @inheritdoc Blacklistable
                                             */
                                            function _unBlacklist(address _account) internal override {
                                                _setBlacklistState(_account, false);
                                            }
                                            /**
                                             * @dev Helper method that sets the blacklist state of an account.
                                             * @param _account         The address of the account.
                                             * @param _shouldBlacklist True if the account should be blacklisted, false if the account should be unblacklisted.
                                             */
                                            function _setBlacklistState(address _account, bool _shouldBlacklist)
                                                internal
                                                virtual
                                            {
                                                _deprecatedBlacklisted[_account] = _shouldBlacklist;
                                            }
                                            /**
                                             * @dev Helper method that sets the balance of an account.
                                             * @param _account The address of the account.
                                             * @param _balance The new fiat token balance of the account.
                                             */
                                            function _setBalance(address _account, uint256 _balance) internal virtual {
                                                balanceAndBlacklistStates[_account] = _balance;
                                            }
                                            /**
                                             * @inheritdoc Blacklistable
                                             */
                                            function _isBlacklisted(address _account)
                                                internal
                                                virtual
                                                override
                                                view
                                                returns (bool)
                                            {
                                                return _deprecatedBlacklisted[_account];
                                            }
                                            /**
                                             * @dev Helper method to obtain the balance of an account.
                                             * @param _account  The address of the account.
                                             * @return          The fiat token balance of the account.
                                             */
                                            function _balanceOf(address _account)
                                                internal
                                                virtual
                                                view
                                                returns (uint256)
                                            {
                                                return balanceAndBlacklistStates[_account];
                                            }
                                        }
                                        /**
                                         * SPDX-License-Identifier: Apache-2.0
                                         *
                                         * Copyright (c) 2023, Circle Internet Financial, LLC.
                                         *
                                         * Licensed under the Apache License, Version 2.0 (the "License");
                                         * you may not use this file except in compliance with the License.
                                         * You may obtain a copy of the License at
                                         *
                                         * http://www.apache.org/licenses/LICENSE-2.0
                                         *
                                         * Unless required by applicable law or agreed to in writing, software
                                         * distributed under the License is distributed on an "AS IS" BASIS,
                                         * WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
                                         * See the License for the specific language governing permissions and
                                         * limitations under the License.
                                         */
                                        pragma solidity 0.6.12;
                                        import { Ownable } from "./Ownable.sol";
                                        /**
                                         * @title Blacklistable Token
                                         * @dev Allows accounts to be blacklisted by a "blacklister" role
                                         */
                                        abstract contract Blacklistable is Ownable {
                                            address public blacklister;
                                            mapping(address => bool) internal _deprecatedBlacklisted;
                                            event Blacklisted(address indexed _account);
                                            event UnBlacklisted(address indexed _account);
                                            event BlacklisterChanged(address indexed newBlacklister);
                                            /**
                                             * @dev Throws if called by any account other than the blacklister.
                                             */
                                            modifier onlyBlacklister() {
                                                require(
                                                    msg.sender == blacklister,
                                                    "Blacklistable: caller is not the blacklister"
                                                );
                                                _;
                                            }
                                            /**
                                             * @dev Throws if argument account is blacklisted.
                                             * @param _account The address to check.
                                             */
                                            modifier notBlacklisted(address _account) {
                                                require(
                                                    !_isBlacklisted(_account),
                                                    "Blacklistable: account is blacklisted"
                                                );
                                                _;
                                            }
                                            /**
                                             * @notice Checks if account is blacklisted.
                                             * @param _account The address to check.
                                             * @return True if the account is blacklisted, false if the account is not blacklisted.
                                             */
                                            function isBlacklisted(address _account) external view returns (bool) {
                                                return _isBlacklisted(_account);
                                            }
                                            /**
                                             * @notice Adds account to blacklist.
                                             * @param _account The address to blacklist.
                                             */
                                            function blacklist(address _account) external onlyBlacklister {
                                                _blacklist(_account);
                                                emit Blacklisted(_account);
                                            }
                                            /**
                                             * @notice Removes account from blacklist.
                                             * @param _account The address to remove from the blacklist.
                                             */
                                            function unBlacklist(address _account) external onlyBlacklister {
                                                _unBlacklist(_account);
                                                emit UnBlacklisted(_account);
                                            }
                                            /**
                                             * @notice Updates the blacklister address.
                                             * @param _newBlacklister The address of the new blacklister.
                                             */
                                            function updateBlacklister(address _newBlacklister) external onlyOwner {
                                                require(
                                                    _newBlacklister != address(0),
                                                    "Blacklistable: new blacklister is the zero address"
                                                );
                                                blacklister = _newBlacklister;
                                                emit BlacklisterChanged(blacklister);
                                            }
                                            /**
                                             * @dev Checks if account is blacklisted.
                                             * @param _account The address to check.
                                             * @return true if the account is blacklisted, false otherwise.
                                             */
                                            function _isBlacklisted(address _account)
                                                internal
                                                virtual
                                                view
                                                returns (bool);
                                            /**
                                             * @dev Helper method that blacklists an account.
                                             * @param _account The address to blacklist.
                                             */
                                            function _blacklist(address _account) internal virtual;
                                            /**
                                             * @dev Helper method that unblacklists an account.
                                             * @param _account The address to unblacklist.
                                             */
                                            function _unBlacklist(address _account) internal virtual;
                                        }
                                        /**
                                         * SPDX-License-Identifier: Apache-2.0
                                         *
                                         * Copyright (c) 2023, Circle Internet Financial, LLC.
                                         *
                                         * Licensed under the Apache License, Version 2.0 (the "License");
                                         * you may not use this file except in compliance with the License.
                                         * You may obtain a copy of the License at
                                         *
                                         * http://www.apache.org/licenses/LICENSE-2.0
                                         *
                                         * Unless required by applicable law or agreed to in writing, software
                                         * distributed under the License is distributed on an "AS IS" BASIS,
                                         * WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
                                         * See the License for the specific language governing permissions and
                                         * limitations under the License.
                                         */
                                        pragma solidity 0.6.12;
                                        import { IERC20 } from "@openzeppelin/contracts/token/ERC20/IERC20.sol";
                                        abstract contract AbstractFiatTokenV1 is IERC20 {
                                            function _approve(
                                                address owner,
                                                address spender,
                                                uint256 value
                                            ) internal virtual;
                                            function _transfer(
                                                address from,
                                                address to,
                                                uint256 value
                                            ) internal virtual;
                                        }
                                        /**
                                         * SPDX-License-Identifier: Apache-2.0
                                         *
                                         * Copyright (c) 2023, Circle Internet Financial, LLC.
                                         *
                                         * Licensed under the Apache License, Version 2.0 (the "License");
                                         * you may not use this file except in compliance with the License.
                                         * You may obtain a copy of the License at
                                         *
                                         * http://www.apache.org/licenses/LICENSE-2.0
                                         *
                                         * Unless required by applicable law or agreed to in writing, software
                                         * distributed under the License is distributed on an "AS IS" BASIS,
                                         * WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
                                         * See the License for the specific language governing permissions and
                                         * limitations under the License.
                                         */
                                        pragma solidity 0.6.12;
                                        import { Ownable } from "../v1/Ownable.sol";
                                        import { IERC20 } from "@openzeppelin/contracts/token/ERC20/IERC20.sol";
                                        import { SafeERC20 } from "@openzeppelin/contracts/token/ERC20/SafeERC20.sol";
                                        contract Rescuable is Ownable {
                                            using SafeERC20 for IERC20;
                                            address private _rescuer;
                                            event RescuerChanged(address indexed newRescuer);
                                            /**
                                             * @notice Returns current rescuer
                                             * @return Rescuer's address
                                             */
                                            function rescuer() external view returns (address) {
                                                return _rescuer;
                                            }
                                            /**
                                             * @notice Revert if called by any account other than the rescuer.
                                             */
                                            modifier onlyRescuer() {
                                                require(msg.sender == _rescuer, "Rescuable: caller is not the rescuer");
                                                _;
                                            }
                                            /**
                                             * @notice Rescue ERC20 tokens locked up in this contract.
                                             * @param tokenContract ERC20 token contract address
                                             * @param to        Recipient address
                                             * @param amount    Amount to withdraw
                                             */
                                            function rescueERC20(
                                                IERC20 tokenContract,
                                                address to,
                                                uint256 amount
                                            ) external onlyRescuer {
                                                tokenContract.safeTransfer(to, amount);
                                            }
                                            /**
                                             * @notice Updates the rescuer address.
                                             * @param newRescuer The address of the new rescuer.
                                             */
                                            function updateRescuer(address newRescuer) external onlyOwner {
                                                require(
                                                    newRescuer != address(0),
                                                    "Rescuable: new rescuer is the zero address"
                                                );
                                                _rescuer = newRescuer;
                                                emit RescuerChanged(newRescuer);
                                            }
                                        }
                                        /**
                                         * SPDX-License-Identifier: Apache-2.0
                                         *
                                         * Copyright (c) 2023, Circle Internet Financial, LLC.
                                         *
                                         * Licensed under the Apache License, Version 2.0 (the "License");
                                         * you may not use this file except in compliance with the License.
                                         * You may obtain a copy of the License at
                                         *
                                         * http://www.apache.org/licenses/LICENSE-2.0
                                         *
                                         * Unless required by applicable law or agreed to in writing, software
                                         * distributed under the License is distributed on an "AS IS" BASIS,
                                         * WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
                                         * See the License for the specific language governing permissions and
                                         * limitations under the License.
                                         */
                                        pragma solidity 0.6.12;
                                        import { FiatTokenV1 } from "../v1/FiatTokenV1.sol";
                                        import { Rescuable } from "./Rescuable.sol";
                                        /**
                                         * @title FiatTokenV1_1
                                         * @dev ERC20 Token backed by fiat reserves
                                         */
                                        contract FiatTokenV1_1 is FiatTokenV1, Rescuable {
                                        }
                                        /**
                                         * SPDX-License-Identifier: Apache-2.0
                                         *
                                         * Copyright (c) 2023, Circle Internet Financial, LLC.
                                         *
                                         * Licensed under the Apache License, Version 2.0 (the "License");
                                         * you may not use this file except in compliance with the License.
                                         * You may obtain a copy of the License at
                                         *
                                         * http://www.apache.org/licenses/LICENSE-2.0
                                         *
                                         * Unless required by applicable law or agreed to in writing, software
                                         * distributed under the License is distributed on an "AS IS" BASIS,
                                         * WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
                                         * See the License for the specific language governing permissions and
                                         * limitations under the License.
                                         */
                                        pragma solidity 0.6.12;
                                        import { ECRecover } from "./ECRecover.sol";
                                        import { IERC1271 } from "../interface/IERC1271.sol";
                                        /**
                                         * @dev Signature verification helper that can be used instead of `ECRecover.recover` to seamlessly support both ECDSA
                                         * signatures from externally owned accounts (EOAs) as well as ERC1271 signatures from smart contract wallets.
                                         *
                                         * Adapted from https://github.com/OpenZeppelin/openzeppelin-contracts/blob/21bb89ef5bfc789b9333eb05e3ba2b7b284ac77c/contracts/utils/cryptography/SignatureChecker.sol
                                         */
                                        library SignatureChecker {
                                            /**
                                             * @dev Checks if a signature is valid for a given signer and data hash. If the signer is a smart contract, the
                                             * signature is validated against that smart contract using ERC1271, otherwise it's validated using `ECRecover.recover`.
                                             * @param signer        Address of the claimed signer
                                             * @param digest        Keccak-256 hash digest of the signed message
                                             * @param signature     Signature byte array associated with hash
                                             */
                                            function isValidSignatureNow(
                                                address signer,
                                                bytes32 digest,
                                                bytes memory signature
                                            ) external view returns (bool) {
                                                if (!isContract(signer)) {
                                                    return ECRecover.recover(digest, signature) == signer;
                                                }
                                                return isValidERC1271SignatureNow(signer, digest, signature);
                                            }
                                            /**
                                             * @dev Checks if a signature is valid for a given signer and data hash. The signature is validated
                                             * against the signer smart contract using ERC1271.
                                             * @param signer        Address of the claimed signer
                                             * @param digest        Keccak-256 hash digest of the signed message
                                             * @param signature     Signature byte array associated with hash
                                             *
                                             * NOTE: Unlike ECDSA signatures, contract signatures are revocable, and the outcome of this function can thus
                                             * change through time. It could return true at block N and false at block N+1 (or the opposite).
                                             */
                                            function isValidERC1271SignatureNow(
                                                address signer,
                                                bytes32 digest,
                                                bytes memory signature
                                            ) internal view returns (bool) {
                                                (bool success, bytes memory result) = signer.staticcall(
                                                    abi.encodeWithSelector(
                                                        IERC1271.isValidSignature.selector,
                                                        digest,
                                                        signature
                                                    )
                                                );
                                                return (success &&
                                                    result.length >= 32 &&
                                                    abi.decode(result, (bytes32)) ==
                                                    bytes32(IERC1271.isValidSignature.selector));
                                            }
                                            /**
                                             * @dev Checks if the input address is a smart contract.
                                             */
                                            function isContract(address addr) internal view returns (bool) {
                                                uint256 size;
                                                assembly {
                                                    size := extcodesize(addr)
                                                }
                                                return size > 0;
                                            }
                                        }
                                        /**
                                         * SPDX-License-Identifier: Apache-2.0
                                         *
                                         * Copyright (c) 2023, Circle Internet Financial, LLC.
                                         *
                                         * Licensed under the Apache License, Version 2.0 (the "License");
                                         * you may not use this file except in compliance with the License.
                                         * You may obtain a copy of the License at
                                         *
                                         * http://www.apache.org/licenses/LICENSE-2.0
                                         *
                                         * Unless required by applicable law or agreed to in writing, software
                                         * distributed under the License is distributed on an "AS IS" BASIS,
                                         * WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
                                         * See the License for the specific language governing permissions and
                                         * limitations under the License.
                                         */
                                        pragma solidity 0.6.12;
                                        /**
                                         * @dev Signature message hash utilities for producing digests to be consumed by {ECDSA} recovery or signing.
                                         *
                                         * The library provides methods for generating a hash of a message that conforms to the
                                         * https://eips.ethereum.org/EIPS/eip-191[EIP 191] and https://eips.ethereum.org/EIPS/eip-712[EIP 712]
                                         * specifications.
                                         */
                                        library MessageHashUtils {
                                            /**
                                             * @dev Returns the keccak256 digest of an EIP-712 typed data (EIP-191 version `0x01`).
                                             * Adapted from https://github.com/OpenZeppelin/openzeppelin-contracts/blob/21bb89ef5bfc789b9333eb05e3ba2b7b284ac77c/contracts/utils/cryptography/MessageHashUtils.sol
                                             *
                                             * The digest is calculated from a `domainSeparator` and a `structHash`, by prefixing them with
                                             * `\\x19\\x01` and hashing the result. It corresponds to the hash signed by the
                                             * https://eips.ethereum.org/EIPS/eip-712[`eth_signTypedData`] JSON-RPC method as part of EIP-712.
                                             *
                                             * @param domainSeparator    Domain separator
                                             * @param structHash         Hashed EIP-712 data struct
                                             * @return digest            The keccak256 digest of an EIP-712 typed data
                                             */
                                            function toTypedDataHash(bytes32 domainSeparator, bytes32 structHash)
                                                internal
                                                pure
                                                returns (bytes32 digest)
                                            {
                                                assembly {
                                                    let ptr := mload(0x40)
                                                    mstore(ptr, "\\x19\\x01")
                                                    mstore(add(ptr, 0x02), domainSeparator)
                                                    mstore(add(ptr, 0x22), structHash)
                                                    digest := keccak256(ptr, 0x42)
                                                }
                                            }
                                        }
                                        /**
                                         * SPDX-License-Identifier: Apache-2.0
                                         *
                                         * Copyright (c) 2023, Circle Internet Financial, LLC.
                                         *
                                         * Licensed under the Apache License, Version 2.0 (the "License");
                                         * you may not use this file except in compliance with the License.
                                         * You may obtain a copy of the License at
                                         *
                                         * http://www.apache.org/licenses/LICENSE-2.0
                                         *
                                         * Unless required by applicable law or agreed to in writing, software
                                         * distributed under the License is distributed on an "AS IS" BASIS,
                                         * WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
                                         * See the License for the specific language governing permissions and
                                         * limitations under the License.
                                         */
                                        pragma solidity 0.6.12;
                                        /**
                                         * @title EIP712
                                         * @notice A library that provides EIP712 helper functions
                                         */
                                        library EIP712 {
                                            /**
                                             * @notice Make EIP712 domain separator
                                             * @param name      Contract name
                                             * @param version   Contract version
                                             * @param chainId   Blockchain ID
                                             * @return Domain separator
                                             */
                                            function makeDomainSeparator(
                                                string memory name,
                                                string memory version,
                                                uint256 chainId
                                            ) internal view returns (bytes32) {
                                                return
                                                    keccak256(
                                                        abi.encode(
                                                            // keccak256("EIP712Domain(string name,string version,uint256 chainId,address verifyingContract)")
                                                            0x8b73c3c69bb8fe3d512ecc4cf759cc79239f7b179b0ffacaa9a75d522b39400f,
                                                            keccak256(bytes(name)),
                                                            keccak256(bytes(version)),
                                                            chainId,
                                                            address(this)
                                                        )
                                                    );
                                            }
                                            /**
                                             * @notice Make EIP712 domain separator
                                             * @param name      Contract name
                                             * @param version   Contract version
                                             * @return Domain separator
                                             */
                                            function makeDomainSeparator(string memory name, string memory version)
                                                internal
                                                view
                                                returns (bytes32)
                                            {
                                                uint256 chainId;
                                                assembly {
                                                    chainId := chainid()
                                                }
                                                return makeDomainSeparator(name, version, chainId);
                                            }
                                        }
                                        /**
                                         * SPDX-License-Identifier: Apache-2.0
                                         *
                                         * Copyright (c) 2023, Circle Internet Financial, LLC.
                                         *
                                         * Licensed under the Apache License, Version 2.0 (the "License");
                                         * you may not use this file except in compliance with the License.
                                         * You may obtain a copy of the License at
                                         *
                                         * http://www.apache.org/licenses/LICENSE-2.0
                                         *
                                         * Unless required by applicable law or agreed to in writing, software
                                         * distributed under the License is distributed on an "AS IS" BASIS,
                                         * WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
                                         * See the License for the specific language governing permissions and
                                         * limitations under the License.
                                         */
                                        pragma solidity 0.6.12;
                                        /**
                                         * @title ECRecover
                                         * @notice A library that provides a safe ECDSA recovery function
                                         */
                                        library ECRecover {
                                            /**
                                             * @notice Recover signer's address from a signed message
                                             * @dev Adapted from: https://github.com/OpenZeppelin/openzeppelin-contracts/blob/65e4ffde586ec89af3b7e9140bdc9235d1254853/contracts/cryptography/ECDSA.sol
                                             * Modifications: Accept v, r, and s as separate arguments
                                             * @param digest    Keccak-256 hash digest of the signed message
                                             * @param v         v of the signature
                                             * @param r         r of the signature
                                             * @param s         s of the signature
                                             * @return Signer address
                                             */
                                            function recover(
                                                bytes32 digest,
                                                uint8 v,
                                                bytes32 r,
                                                bytes32 s
                                            ) internal pure returns (address) {
                                                // EIP-2 still allows signature malleability for ecrecover(). Remove this possibility and make the signature
                                                // unique. Appendix F in the Ethereum Yellow paper (https://ethereum.github.io/yellowpaper/paper.pdf), defines
                                                // the valid range for s in (281): 0 < s < secp256k1n ÷ 2 + 1, and for v in (282): v ∈ {27, 28}. Most
                                                // signatures from current libraries generate a unique signature with an s-value in the lower half order.
                                                //
                                                // If your library generates malleable signatures, such as s-values in the upper range, calculate a new s-value
                                                // with 0xFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFEBAAEDCE6AF48A03BBFD25E8CD0364141 - s1 and flip v from 27 to 28 or
                                                // vice versa. If your library also generates signatures with 0/1 for v instead 27/28, add 27 to v to accept
                                                // these malleable signatures as well.
                                                if (
                                                    uint256(s) >
                                                    0x7FFFFFFFFFFFFFFFFFFFFFFFFFFFFFFF5D576E7357A4501DDFE92F46681B20A0
                                                ) {
                                                    revert("ECRecover: invalid signature 's' value");
                                                }
                                                if (v != 27 && v != 28) {
                                                    revert("ECRecover: invalid signature 'v' value");
                                                }
                                                // If the signature is valid (and not malleable), return the signer address
                                                address signer = ecrecover(digest, v, r, s);
                                                require(signer != address(0), "ECRecover: invalid signature");
                                                return signer;
                                            }
                                            /**
                                             * @notice Recover signer's address from a signed message
                                             * @dev Adapted from: https://github.com/OpenZeppelin/openzeppelin-contracts/blob/0053ee040a7ff1dbc39691c9e67a69f564930a88/contracts/utils/cryptography/ECDSA.sol
                                             * @param digest    Keccak-256 hash digest of the signed message
                                             * @param signature Signature byte array associated with hash
                                             * @return Signer address
                                             */
                                            function recover(bytes32 digest, bytes memory signature)
                                                internal
                                                pure
                                                returns (address)
                                            {
                                                require(signature.length == 65, "ECRecover: invalid signature length");
                                                bytes32 r;
                                                bytes32 s;
                                                uint8 v;
                                                // ecrecover takes the signature parameters, and the only way to get them
                                                // currently is to use assembly.
                                                /// @solidity memory-safe-assembly
                                                assembly {
                                                    r := mload(add(signature, 0x20))
                                                    s := mload(add(signature, 0x40))
                                                    v := byte(0, mload(add(signature, 0x60)))
                                                }
                                                return recover(digest, v, r, s);
                                            }
                                        }
                                        /**
                                         * SPDX-License-Identifier: Apache-2.0
                                         *
                                         * Copyright (c) 2023, Circle Internet Financial, LLC.
                                         *
                                         * Licensed under the Apache License, Version 2.0 (the "License");
                                         * you may not use this file except in compliance with the License.
                                         * You may obtain a copy of the License at
                                         *
                                         * http://www.apache.org/licenses/LICENSE-2.0
                                         *
                                         * Unless required by applicable law or agreed to in writing, software
                                         * distributed under the License is distributed on an "AS IS" BASIS,
                                         * WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
                                         * See the License for the specific language governing permissions and
                                         * limitations under the License.
                                         */
                                        pragma solidity 0.6.12;
                                        /**
                                         * @dev Interface of the ERC1271 standard signature validation method for
                                         * contracts as defined in https://eips.ethereum.org/EIPS/eip-1271[ERC-1271].
                                         */
                                        interface IERC1271 {
                                            /**
                                             * @dev Should return whether the signature provided is valid for the provided data
                                             * @param hash          Hash of the data to be signed
                                             * @param signature     Signature byte array associated with the provided data hash
                                             * @return magicValue   bytes4 magic value 0x1626ba7e when function passes
                                             */
                                            function isValidSignature(bytes32 hash, bytes memory signature)
                                                external
                                                view
                                                returns (bytes4 magicValue);
                                        }
                                        

                                        File 10 of 11: AssetWithWhitelist
                                        pragma solidity 0.4.11;
                                        
                                        contract AssetInterface {
                                            function _performTransferWithReference(address _to, uint _value, string _reference, address _sender) returns(bool);
                                            function _performTransferToICAPWithReference(bytes32 _icap, uint _value, string _reference, address _sender) returns(bool);
                                            function _performApprove(address _spender, uint _value, address _sender) returns(bool);    
                                            function _performTransferFromWithReference(address _from, address _to, uint _value, string _reference, address _sender) returns(bool);
                                            function _performTransferFromToICAPWithReference(address _from, bytes32 _icap, uint _value, string _reference, address _sender) returns(bool);
                                            function _performGeneric(bytes _data, address _sender) payable returns(bytes32) {
                                                throw;
                                            }
                                        }
                                        
                                        /**
                                         * @title EToken2 Asset implementation contract.
                                         *
                                         * Basic asset implementation contract, without any additional logic.
                                         * Every other asset implementation contracts should derive from this one.
                                         * Receives calls from the proxy, and calls back immediatly without arguments modification.
                                         *
                                         * Note: all the non constant functions return false instead of throwing in case if state change
                                         * didn't happen yet.
                                         */
                                        contract Asset is AssetInterface {
                                            // Assigned asset proxy contract, immutable.
                                            AssetProxy public proxy;
                                        
                                            /**
                                             * Only assigned proxy is allowed to call.
                                             */
                                            modifier onlyProxy() {
                                                if (proxy == msg.sender) {
                                                    _;
                                                }
                                            }
                                        
                                            /**
                                             * Sets asset proxy address.
                                             *
                                             * Can be set only once.
                                             *
                                             * @param _proxy asset proxy contract address.
                                             *
                                             * @return success.
                                             * @dev function is final, and must not be overridden.
                                             */
                                            function init(AssetProxy _proxy) returns(bool) {
                                                if (address(proxy) != 0x0) {
                                                    return false;
                                                }
                                                proxy = _proxy;
                                                return true;
                                            }
                                        
                                            /**
                                             * Passes execution into virtual function.
                                             *
                                             * Can only be called by assigned asset proxy.
                                             *
                                             * @return success.
                                             * @dev function is final, and must not be overridden.
                                             */
                                            function _performTransferWithReference(address _to, uint _value, string _reference, address _sender) onlyProxy() returns(bool) {
                                                return _transferWithReference(_to, _value, _reference, _sender);
                                            }
                                        
                                            /**
                                             * Calls back without modifications.
                                             *
                                             * @return success.
                                             * @dev function is virtual, and meant to be overridden.
                                             */
                                            function _transferWithReference(address _to, uint _value, string _reference, address _sender) internal returns(bool) {
                                                return proxy._forwardTransferFromWithReference(_sender, _to, _value, _reference, _sender);
                                            }
                                        
                                            /**
                                             * Passes execution into virtual function.
                                             *
                                             * Can only be called by assigned asset proxy.
                                             *
                                             * @return success.
                                             * @dev function is final, and must not be overridden.
                                             */
                                            function _performTransferToICAPWithReference(bytes32 _icap, uint _value, string _reference, address _sender) onlyProxy() returns(bool) {
                                                return _transferToICAPWithReference(_icap, _value, _reference, _sender);
                                            }
                                        
                                            /**
                                             * Calls back without modifications.
                                             *
                                             * @return success.
                                             * @dev function is virtual, and meant to be overridden.
                                             */
                                            function _transferToICAPWithReference(bytes32 _icap, uint _value, string _reference, address _sender) internal returns(bool) {
                                                return proxy._forwardTransferFromToICAPWithReference(_sender, _icap, _value, _reference, _sender);
                                            }
                                        
                                            /**
                                             * Passes execution into virtual function.
                                             *
                                             * Can only be called by assigned asset proxy.
                                             *
                                             * @return success.
                                             * @dev function is final, and must not be overridden.
                                             */
                                            function _performTransferFromWithReference(address _from, address _to, uint _value, string _reference, address _sender) onlyProxy() returns(bool) {
                                                return _transferFromWithReference(_from, _to, _value, _reference, _sender);
                                            }
                                        
                                            /**
                                             * Calls back without modifications.
                                             *
                                             * @return success.
                                             * @dev function is virtual, and meant to be overridden.
                                             */
                                            function _transferFromWithReference(address _from, address _to, uint _value, string _reference, address _sender) internal returns(bool) {
                                                return proxy._forwardTransferFromWithReference(_from, _to, _value, _reference, _sender);
                                            }
                                        
                                            /**
                                             * Passes execution into virtual function.
                                             *
                                             * Can only be called by assigned asset proxy.
                                             *
                                             * @return success.
                                             * @dev function is final, and must not be overridden.
                                             */
                                            function _performTransferFromToICAPWithReference(address _from, bytes32 _icap, uint _value, string _reference, address _sender) onlyProxy() returns(bool) {
                                                return _transferFromToICAPWithReference(_from, _icap, _value, _reference, _sender);
                                            }
                                        
                                            /**
                                             * Calls back without modifications.
                                             *
                                             * @return success.
                                             * @dev function is virtual, and meant to be overridden.
                                             */
                                            function _transferFromToICAPWithReference(address _from, bytes32 _icap, uint _value, string _reference, address _sender) internal returns(bool) {
                                                return proxy._forwardTransferFromToICAPWithReference(_from, _icap, _value, _reference, _sender);
                                            }
                                        
                                            /**
                                             * Passes execution into virtual function.
                                             *
                                             * Can only be called by assigned asset proxy.
                                             *
                                             * @return success.
                                             * @dev function is final, and must not be overridden.
                                             */
                                            function _performApprove(address _spender, uint _value, address _sender) onlyProxy() returns(bool) {
                                                return _approve(_spender, _value, _sender);
                                            }
                                        
                                            /**
                                             * Calls back without modifications.
                                             *
                                             * @return success.
                                             * @dev function is virtual, and meant to be overridden.
                                             */
                                            function _approve(address _spender, uint _value, address _sender) internal returns(bool) {
                                                return proxy._forwardApprove(_spender, _value, _sender);
                                            }
                                        
                                            /**
                                             * Passes execution into virtual function.
                                             *
                                             * Can only be called by assigned asset proxy.
                                             *
                                             * @return bytes32 result.
                                             * @dev function is final, and must not be overridden.
                                             */
                                            function _performGeneric(bytes _data, address _sender) payable onlyProxy() returns(bytes32) {
                                                return _generic(_data, _sender);
                                            }
                                        
                                            modifier onlyMe() {
                                                if (this == msg.sender) {
                                                    _;
                                                }
                                            }
                                        
                                            // Most probably the following should never be redefined in child contracts.
                                            address genericSender;
                                            function _generic(bytes _data, address _sender) internal returns(bytes32) {
                                                // Restrict reentrancy.
                                                if (genericSender != 0x0) {
                                                    throw;
                                                }
                                                genericSender = _sender;
                                                bytes32 result = _callReturn(this, _data, msg.value);
                                                delete genericSender;
                                                return result;
                                            }
                                        
                                            function _callReturn(address _target, bytes _data, uint _value) internal returns(bytes32 result) {
                                                bool success;
                                                assembly {
                                                    success := call(div(mul(gas, 63), 64), _target, _value, add(_data, 32), mload(_data), 0, 32)
                                                    result := mload(0)
                                                }
                                                if (!success) {
                                                    throw;
                                                }
                                            }
                                        
                                            // Decsendants should use _sender() instead of msg.sender to properly process proxied calls.
                                            function _sender() constant internal returns(address) {
                                                return this == msg.sender ? genericSender : msg.sender;
                                            }
                                        }
                                        
                                        contract Ambi2 {
                                            function claimFor(address _address, address _owner) returns(bool);
                                            function hasRole(address _from, bytes32 _role, address _to) constant returns(bool);
                                            function isOwner(address _node, address _owner) constant returns(bool);
                                        }
                                        
                                        contract Ambi2Enabled {
                                            Ambi2 ambi2;
                                        
                                            modifier onlyRole(bytes32 _role) {
                                                if (address(ambi2) != 0x0 && ambi2.hasRole(this, _role, msg.sender)) {
                                                    _;
                                                }
                                            }
                                        
                                            // Perform only after claiming the node, or claim in the same tx.
                                            function setupAmbi2(Ambi2 _ambi2) returns(bool) {
                                                if (address(ambi2) != 0x0) {
                                                    return false;
                                                }
                                        
                                                ambi2 = _ambi2;
                                                return true;
                                            }
                                        }
                                        
                                        contract Ambi2EnabledFull is Ambi2Enabled {
                                            // Setup and claim atomically.
                                            function setupAmbi2(Ambi2 _ambi2) returns(bool) {
                                                if (address(ambi2) != 0x0) {
                                                    return false;
                                                }
                                                if (!_ambi2.claimFor(this, msg.sender) && !_ambi2.isOwner(this, msg.sender)) {
                                                    return false;
                                                }
                                        
                                                ambi2 = _ambi2;
                                                return true;
                                            }
                                        }
                                        
                                        contract AssetWithAmbi is Asset, Ambi2EnabledFull {
                                            modifier onlyRole(bytes32 _role) {
                                                if (address(ambi2) != 0x0 && (ambi2.hasRole(this, _role, _sender()))) {
                                                    _;
                                                }
                                            }
                                        }
                                        
                                        contract AssetProxy {
                                            function _forwardApprove(address _spender, uint _value, address _sender) returns(bool);
                                            function _forwardTransferFromWithReference(address _from, address _to, uint _value, string _reference, address _sender) returns(bool);
                                            function _forwardTransferFromToICAPWithReference(address _from, bytes32 _icap, uint _value, string _reference, address _sender) returns(bool);
                                            function balanceOf(address _owner) constant returns(uint);
                                        }
                                        
                                        /**
                                         * @title EToken2 Asset with whitelist implementation contract.
                                         */
                                        contract AssetWithWhitelist is AssetWithAmbi {
                                            mapping(address => bool) public whitelist;
                                            uint public restrictionExpiraton;
                                            bool public restrictionRemoved;
                                        
                                            event Error(bytes32 _errorText);
                                        
                                            function allowTransferFrom(address _from) onlyRole('admin') returns(bool) {
                                                whitelist[_from] = true;
                                                return true;
                                            }
                                        
                                            function blockTransferFrom(address _from) onlyRole('admin') returns(bool) {
                                                whitelist[_from] = false;
                                                return true;
                                            }
                                        
                                            function transferIsAllowed(address _from) constant returns(bool) {
                                                return restrictionRemoved || whitelist[_from] || (now >= restrictionExpiraton);
                                            }
                                        
                                            function removeRestriction() onlyRole('admin') returns(bool) {
                                                restrictionRemoved = true;
                                                return true;
                                            }
                                        
                                            modifier transferAllowed(address _sender) {
                                                if (!transferIsAllowed(_sender)) {
                                                    Error('Transfer not allowed');
                                                    return;
                                                }
                                                _;
                                            }
                                        
                                            function setExpiration(uint _time) onlyRole('admin') returns(bool) {
                                                if (restrictionExpiraton != 0) {
                                                    Error('Expiration time already set');
                                                    return false;
                                                }
                                                if (_time < now) {
                                                    Error('Expiration time invalid');
                                                    return false;
                                                }
                                                restrictionExpiraton = _time;
                                                return true;
                                            }
                                        
                                            // Transfers
                                            function _transferWithReference(address _to, uint _value, string _reference, address _sender)
                                                transferAllowed(_sender)
                                                internal
                                                returns(bool)
                                            {
                                                return super._transferWithReference(_to, _value, _reference, _sender);
                                            }
                                        
                                            function _transferToICAPWithReference(bytes32 _icap, uint _value, string _reference, address _sender)
                                                transferAllowed(_sender)
                                                internal
                                                returns(bool)
                                            {
                                                return super._transferToICAPWithReference(_icap, _value, _reference, _sender);
                                            }
                                        
                                            function _transferFromWithReference(address _from, address _to, uint _value, string _reference, address _sender)
                                                transferAllowed(_from)
                                                internal
                                                returns(bool)
                                            {
                                                return super._transferFromWithReference(_from, _to, _value, _reference, _sender);
                                            }
                                        
                                            function _transferFromToICAPWithReference(address _from, bytes32 _icap, uint _value, string _reference, address _sender)
                                                transferAllowed(_from)
                                                internal
                                                returns(bool)
                                            {
                                                return super._transferFromToICAPWithReference(_from, _icap, _value, _reference, _sender);
                                            }
                                        }

                                        File 11 of 11: EToken2
                                        // This software is a subject to Ambisafe License Agreement.
                                        // No use or distribution is allowed without written permission from Ambisafe.
                                        // https://ambisafe.com/terms.pdf
                                        
                                        pragma solidity 0.4.8;
                                        
                                        contract Ambi2 {
                                            function claimFor(address _address, address _owner) returns(bool);
                                            function hasRole(address _from, bytes32 _role, address _to) constant returns(bool);
                                            function isOwner(address _node, address _owner) constant returns(bool);
                                        }
                                        
                                        contract Ambi2Enabled {
                                            Ambi2 ambi2;
                                        
                                            modifier onlyRole(bytes32 _role) {
                                                if (address(ambi2) != 0x0 && ambi2.hasRole(this, _role, msg.sender)) {
                                                    _;
                                                }
                                            }
                                        
                                            // Perform only after claiming the node, or claim in the same tx.
                                            function setupAmbi2(Ambi2 _ambi2) returns(bool) {
                                                if (address(ambi2) != 0x0) {
                                                    return false;
                                                }
                                        
                                                ambi2 = _ambi2;
                                                return true;
                                            }
                                        }
                                        
                                        contract Ambi2EnabledFull is Ambi2Enabled {
                                            // Setup and claim atomically.
                                            function setupAmbi2(Ambi2 _ambi2) returns(bool) {
                                                if (address(ambi2) != 0x0) {
                                                    return false;
                                                }
                                                if (!_ambi2.claimFor(this, msg.sender) && !_ambi2.isOwner(this, msg.sender)) {
                                                    return false;
                                                }
                                        
                                                ambi2 = _ambi2;
                                                return true;
                                            }
                                        }
                                        
                                        contract RegistryICAPInterface {
                                            function parse(bytes32 _icap) constant returns(address, bytes32, bool);
                                            function institutions(bytes32 _institution) constant returns(address);
                                        }
                                        
                                        contract Cosigner {
                                            function consumeOperation(bytes32 _opHash, uint _required) returns(bool);
                                        }
                                        
                                        contract Emitter {
                                            function emitTransfer(address _from, address _to, bytes32 _symbol, uint _value, string _reference);
                                            function emitTransferToICAP(address _from, address _to, bytes32 _icap, uint _value, string _reference);
                                            function emitIssue(bytes32 _symbol, uint _value, address _by);
                                            function emitRevoke(bytes32 _symbol, uint _value, address _by);
                                            function emitOwnershipChange(address _from, address _to, bytes32 _symbol);
                                            function emitApprove(address _from, address _spender, bytes32 _symbol, uint _value);
                                            function emitRecovery(address _from, address _to, address _by);
                                            function emitError(bytes32 _message);
                                            function emitChange(bytes32 _symbol);
                                        }
                                        
                                        contract Proxy {
                                            function emitTransfer(address _from, address _to, uint _value);
                                            function emitApprove(address _from, address _spender, uint _value);
                                        }
                                        
                                        /**
                                         * @title EToken2.
                                         *
                                         * The official Ambisafe assets platform powering all kinds of tokens.
                                         * EToken2 uses EventsHistory contract to keep events, so that in case it needs to be redeployed
                                         * at some point, all the events keep appearing at the same place.
                                         *
                                         * Every asset is meant to be used through a proxy contract. Only one proxy contract have access
                                         * rights for a particular asset.
                                         *
                                         * Features: assets issuance, transfers, allowances, supply adjustments, lost wallet access recovery.
                                         *           cosignature check, ICAP.
                                         *
                                         * Note: all the non constant functions return false instead of throwing in case if state change
                                         * didn't happen yet.
                                         */
                                        contract EToken2 is Ambi2EnabledFull {
                                            mapping(bytes32 => bool) switches;
                                        
                                            function isEnabled(bytes32 _switch) constant returns(bool) {
                                                return switches[_switch];
                                            }
                                        
                                            function enableSwitch(bytes32 _switch) onlyRole('issuance') returns(bool) {
                                                switches[_switch] = true;
                                                return true;
                                            }
                                        
                                            modifier checkEnabledSwitch(bytes32 _switch) {
                                                if (!isEnabled(_switch)) {
                                                    _error('Feature is disabled');
                                                } else {
                                                    _;
                                                }
                                            }
                                        
                                            enum Features { Issue, TransferWithReference, Revoke, ChangeOwnership, Allowances, ICAP }
                                        
                                            // Structure of a particular asset.
                                            struct Asset {
                                                uint owner;                       // Asset's owner id.
                                                uint totalSupply;                 // Asset's total supply.
                                                string name;                      // Asset's name, for information purposes.
                                                string description;               // Asset's description, for information purposes.
                                                bool isReissuable;                // Indicates if asset have dynamic of fixed supply.
                                                uint8 baseUnit;                   // Proposed number of decimals.
                                                bool isLocked;                    // Are changes still allowed.
                                                mapping(uint => Wallet) wallets;  // Holders wallets.
                                            }
                                        
                                            // Structure of an asset holder wallet for particular asset.
                                            struct Wallet {
                                                uint balance;
                                                mapping(uint => uint) allowance;
                                            }
                                        
                                            // Structure of an asset holder.
                                            struct Holder {
                                                address addr;                    // Current address of the holder.
                                                Cosigner cosigner;               // Cosigner contract for 2FA and recovery.
                                                mapping(address => bool) trust;  // Addresses that are trusted with recovery proocedure.
                                            }
                                        
                                            // Iterable mapping pattern is used for holders.
                                            uint public holdersCount;
                                            mapping(uint => Holder) public holders;
                                        
                                            // This is an access address mapping. Many addresses may have access to a single holder.
                                            mapping(address => uint) holderIndex;
                                        
                                            // Asset symbol to asset mapping.
                                            mapping(bytes32 => Asset) public assets;
                                        
                                            // Asset symbol to asset proxy mapping.
                                            mapping(bytes32 => address) public proxies;
                                        
                                            // ICAP registry contract.
                                            RegistryICAPInterface public registryICAP;
                                        
                                            // Should use interface of the emitter, but address of events history.
                                            Emitter public eventsHistory;
                                        
                                            /**
                                             * Emits Error event with specified error message.
                                             *
                                             * Should only be used if no state changes happened.
                                             *
                                             * @param _message error message.
                                             */
                                            function _error(bytes32 _message) internal {
                                                eventsHistory.emitError(_message);
                                            }
                                        
                                            /**
                                             * Sets EventsHstory contract address.
                                             *
                                             * Can be set only once, and only by contract owner.
                                             *
                                             * @param _eventsHistory EventsHistory contract address.
                                             *
                                             * @return success.
                                             */
                                            function setupEventsHistory(Emitter _eventsHistory) onlyRole('setup') returns(bool) {
                                                if (address(eventsHistory) != 0) {
                                                    return false;
                                                }
                                                eventsHistory = _eventsHistory;
                                                return true;
                                            }
                                        
                                            /**
                                             * Sets RegistryICAP contract address.
                                             *
                                             * Can be set only once, and only by contract owner.
                                             *
                                             * @param _registryICAP RegistryICAP contract address.
                                             *
                                             * @return success.
                                             */
                                            function setupRegistryICAP(RegistryICAPInterface _registryICAP) onlyRole('setup') returns(bool) {
                                                if (address(registryICAP) != 0) {
                                                    return false;
                                                }
                                                registryICAP = _registryICAP;
                                                return true;
                                            }
                                        
                                            /**
                                             * Emits Error if called not by asset owner.
                                             */
                                            modifier onlyOwner(bytes32 _symbol) {
                                                if (_isSignedOwner(_symbol)) {
                                                    _;
                                                } else {
                                                    _error('Only owner: access denied');
                                                }
                                            }
                                        
                                            /**
                                             * Emits Error if called not by asset proxy.
                                             */
                                            modifier onlyProxy(bytes32 _symbol) {
                                                if (_isProxy(_symbol)) {
                                                    _;
                                                } else {
                                                    _error('Only proxy: access denied');
                                                }
                                            }
                                        
                                            /**
                                             * Emits Error if _from doesn't trust _to.
                                             */
                                            modifier checkTrust(address _from, address _to) {
                                                if (isTrusted(_from, _to)) {
                                                    _;
                                                } else {
                                                    _error('Only trusted: access denied');
                                                }
                                            }
                                        
                                            function _isSignedOwner(bytes32 _symbol) internal checkSigned(getHolderId(msg.sender), 1) returns(bool) {
                                                return isOwner(msg.sender, _symbol);
                                            }
                                        
                                            /**
                                             * Check asset existance.
                                             *
                                             * @param _symbol asset symbol.
                                             *
                                             * @return asset existance.
                                             */
                                            function isCreated(bytes32 _symbol) constant returns(bool) {
                                                return assets[_symbol].owner != 0;
                                            }
                                        
                                            function isLocked(bytes32 _symbol) constant returns(bool) {
                                                return assets[_symbol].isLocked;
                                            }
                                        
                                            /**
                                             * Returns asset decimals.
                                             *
                                             * @param _symbol asset symbol.
                                             *
                                             * @return asset decimals.
                                             */
                                            function baseUnit(bytes32 _symbol) constant returns(uint8) {
                                                return assets[_symbol].baseUnit;
                                            }
                                        
                                            /**
                                             * Returns asset name.
                                             *
                                             * @param _symbol asset symbol.
                                             *
                                             * @return asset name.
                                             */
                                            function name(bytes32 _symbol) constant returns(string) {
                                                return assets[_symbol].name;
                                            }
                                        
                                            /**
                                             * Returns asset description.
                                             *
                                             * @param _symbol asset symbol.
                                             *
                                             * @return asset description.
                                             */
                                            function description(bytes32 _symbol) constant returns(string) {
                                                return assets[_symbol].description;
                                            }
                                        
                                            /**
                                             * Returns asset reissuability.
                                             *
                                             * @param _symbol asset symbol.
                                             *
                                             * @return asset reissuability.
                                             */
                                            function isReissuable(bytes32 _symbol) constant returns(bool) {
                                                return assets[_symbol].isReissuable;
                                            }
                                        
                                            /**
                                             * Returns asset owner address.
                                             *
                                             * @param _symbol asset symbol.
                                             *
                                             * @return asset owner address.
                                             */
                                            function owner(bytes32 _symbol) constant returns(address) {
                                                return holders[assets[_symbol].owner].addr;
                                            }
                                        
                                            /**
                                             * Check if specified address has asset owner rights.
                                             *
                                             * @param _owner address to check.
                                             * @param _symbol asset symbol.
                                             *
                                             * @return owner rights availability.
                                             */
                                            function isOwner(address _owner, bytes32 _symbol) constant returns(bool) {
                                                return isCreated(_symbol) && (assets[_symbol].owner == getHolderId(_owner));
                                            }
                                        
                                            /**
                                             * Returns asset total supply.
                                             *
                                             * @param _symbol asset symbol.
                                             *
                                             * @return asset total supply.
                                             */
                                            function totalSupply(bytes32 _symbol) constant returns(uint) {
                                                return assets[_symbol].totalSupply;
                                            }
                                        
                                            /**
                                             * Returns asset balance for current address of a particular holder.
                                             *
                                             * @param _holder holder address.
                                             * @param _symbol asset symbol.
                                             *
                                             * @return holder balance.
                                             */
                                            function balanceOf(address _holder, bytes32 _symbol) constant returns(uint) {
                                                uint holderId = getHolderId(_holder);
                                                return holders[holderId].addr == _holder ? _balanceOf(holderId, _symbol) : 0;
                                            }
                                        
                                            /**
                                             * Returns asset balance for a particular holder id.
                                             *
                                             * @param _holderId holder id.
                                             * @param _symbol asset symbol.
                                             *
                                             * @return holder balance.
                                             */
                                            function _balanceOf(uint _holderId, bytes32 _symbol) constant internal returns(uint) {
                                                return assets[_symbol].wallets[_holderId].balance;
                                            }
                                        
                                            /**
                                             * Returns current address for a particular holder id.
                                             *
                                             * @param _holderId holder id.
                                             *
                                             * @return holder address.
                                             */
                                            function _address(uint _holderId) constant internal returns(address) {
                                                return holders[_holderId].addr;
                                            }
                                        
                                            function _isProxy(bytes32 _symbol) constant internal returns(bool) {
                                                return proxies[_symbol] == msg.sender;
                                            }
                                        
                                            /**
                                             * Sets Proxy contract address for a particular asset.
                                             *
                                             * Can be set only once for each asset, and only by contract owner.
                                             *
                                             * @param _address Proxy contract address.
                                             * @param _symbol asset symbol.
                                             *
                                             * @return success.
                                             */
                                            function setProxy(address _address, bytes32 _symbol) onlyOwner(_symbol) returns(bool) {
                                                if (proxies[_symbol] != 0x0 && assets[_symbol].isLocked) {
                                                    return false;
                                                }
                                                proxies[_symbol] = _address;
                                                return true;
                                            }
                                        
                                            /**
                                             * Transfers asset balance between holders wallets.
                                             *
                                             * @param _fromId holder id to take from.
                                             * @param _toId holder id to give to.
                                             * @param _value amount to transfer.
                                             * @param _symbol asset symbol.
                                             */
                                            function _transferDirect(uint _fromId, uint _toId, uint _value, bytes32 _symbol) internal {
                                                assets[_symbol].wallets[_fromId].balance -= _value;
                                                assets[_symbol].wallets[_toId].balance += _value;
                                            }
                                        
                                            /**
                                             * Transfers asset balance between holders wallets.
                                             *
                                             * Performs sanity checks and takes care of allowances adjustment.
                                             *
                                             * @param _fromId holder id to take from.
                                             * @param _toId holder id to give to.
                                             * @param _value amount to transfer.
                                             * @param _symbol asset symbol.
                                             * @param _reference transfer comment to be included in a Transfer event.
                                             * @param _senderId transfer initiator holder id.
                                             *
                                             * @return success.
                                             */
                                            function _transfer(uint _fromId, uint _toId, uint _value, bytes32 _symbol, string _reference, uint _senderId) internal checkSigned(_senderId, 1) returns(bool) {
                                                // Should not allow to send to oneself.
                                                if (_fromId == _toId) {
                                                    _error('Cannot send to oneself');
                                                    return false;
                                                }
                                                // Should have positive value.
                                                if (_value == 0) {
                                                    _error('Cannot send 0 value');
                                                    return false;
                                                }
                                                // Should have enough balance.
                                                if (_balanceOf(_fromId, _symbol) < _value) {
                                                    _error('Insufficient balance');
                                                    return false;
                                                }
                                                // Should allow references.
                                                if (bytes(_reference).length > 0 && !isEnabled(sha3(_symbol, Features.TransferWithReference))) {
                                                    _error('References feature is disabled');
                                                    return false;
                                                }
                                                // Should have enough allowance.
                                                if (_fromId != _senderId && _allowance(_fromId, _senderId, _symbol) < _value) {
                                                    _error('Not enough allowance');
                                                    return false;
                                                }
                                                // Adjust allowance.
                                                if (_fromId != _senderId) {
                                                    assets[_symbol].wallets[_fromId].allowance[_senderId] -= _value;
                                                }
                                                _transferDirect(_fromId, _toId, _value, _symbol);
                                                // Internal Out Of Gas/Throw: revert this transaction too;
                                                // Recursive Call: safe, all changes already made.
                                                eventsHistory.emitTransfer(_address(_fromId), _address(_toId), _symbol, _value, _reference);
                                                _proxyTransferEvent(_fromId, _toId, _value, _symbol);
                                                return true;
                                            }
                                        
                                            // Feature and proxy checks done internally due to unknown symbol when the function is called.
                                            function _transferToICAP(uint _fromId, bytes32 _icap, uint _value, string _reference, uint _senderId) internal returns(bool) {
                                                var (to, symbol, success) = registryICAP.parse(_icap);
                                                if (!success) {
                                                    _error('ICAP is not registered');
                                                    return false;
                                                }
                                                if (!isEnabled(sha3(symbol, Features.ICAP))) {
                                                    _error('ICAP feature is disabled');
                                                    return false;
                                                }
                                                if (!_isProxy(symbol)) {
                                                    _error('Only proxy: access denied');
                                                    return false;
                                                }
                                                uint toId = _createHolderId(to);
                                                if (!_transfer(_fromId, toId, _value, symbol, _reference, _senderId)) {
                                                    return false;
                                                }
                                                // Internal Out Of Gas/Throw: revert this transaction too;
                                                // Recursive Call: safe, all changes already made.
                                                eventsHistory.emitTransferToICAP(_address(_fromId), _address(toId), _icap, _value, _reference);
                                                return true;
                                            }
                                        
                                            function proxyTransferFromToICAPWithReference(address _from, bytes32 _icap, uint _value, string _reference, address _sender) returns(bool) {
                                                return _transferToICAP(getHolderId(_from), _icap, _value, _reference, getHolderId(_sender));
                                            }
                                        
                                            /**
                                             * Ask asset Proxy contract to emit ERC20 compliant Transfer event.
                                             *
                                             * @param _fromId holder id to take from.
                                             * @param _toId holder id to give to.
                                             * @param _value amount to transfer.
                                             * @param _symbol asset symbol.
                                             */
                                            function _proxyTransferEvent(uint _fromId, uint _toId, uint _value, bytes32 _symbol) internal {
                                                if (proxies[_symbol] != 0x0) {
                                                    // Internal Out Of Gas/Throw: revert this transaction too;
                                                    // Recursive Call: safe, all changes already made.
                                                    Proxy(proxies[_symbol]).emitTransfer(_address(_fromId), _address(_toId), _value);
                                                }
                                            }
                                        
                                            /**
                                             * Returns holder id for the specified address.
                                             *
                                             * @param _holder holder address.
                                             *
                                             * @return holder id.
                                             */
                                            function getHolderId(address _holder) constant returns(uint) {
                                                return holderIndex[_holder];
                                            }
                                        
                                            /**
                                             * Returns holder id for the specified address, creates it if needed.
                                             *
                                             * @param _holder holder address.
                                             *
                                             * @return holder id.
                                             */
                                            function _createHolderId(address _holder) internal returns(uint) {
                                                uint holderId = holderIndex[_holder];
                                                if (holderId == 0) {
                                                    holderId = ++holdersCount;
                                                    holders[holderId].addr = _holder;
                                                    holderIndex[_holder] = holderId;
                                                }
                                                return holderId;
                                            }
                                        
                                            /**
                                             * Issues new asset token on the platform.
                                             *
                                             * Tokens issued with this call go straight to contract owner.
                                             * Each symbol can be issued only once, and only by contract owner.
                                             *
                                             * _isReissuable is included in checkEnabledSwitch because it should be
                                             * explicitly allowed before issuing new asset.
                                             *
                                             * @param _symbol asset symbol.
                                             * @param _value amount of tokens to issue immediately.
                                             * @param _name name of the asset.
                                             * @param _description description for the asset.
                                             * @param _baseUnit number of decimals.
                                             * @param _isReissuable dynamic or fixed supply.
                                             *
                                             * @return success.
                                             */
                                            function issueAsset(bytes32 _symbol, uint _value, string _name, string _description, uint8 _baseUnit, bool _isReissuable) checkEnabledSwitch(sha3(_symbol, _isReissuable, Features.Issue)) returns(bool) {
                                                // Should have positive value if supply is going to be fixed.
                                                if (_value == 0 && !_isReissuable) {
                                                    _error('Cannot issue 0 value fixed asset');
                                                    return false;
                                                }
                                                // Should not be issued yet.
                                                if (isCreated(_symbol)) {
                                                    _error('Asset already issued');
                                                    return false;
                                                }
                                                uint holderId = _createHolderId(msg.sender);
                                        
                                                assets[_symbol] = Asset(holderId, _value, _name, _description, _isReissuable, _baseUnit, false);
                                                assets[_symbol].wallets[holderId].balance = _value;
                                                // Internal Out Of Gas/Throw: revert this transaction too;
                                                // Recursive Call: safe, all changes already made.
                                                eventsHistory.emitIssue(_symbol, _value, _address(holderId));
                                                return true;
                                            }
                                        
                                            function changeAsset(bytes32 _symbol, string _name, string _description, uint8 _baseUnit) onlyOwner(_symbol) returns(bool) {
                                                if (isLocked(_symbol)) {
                                                    _error('Asset is locked');
                                                    return false;
                                                }
                                                assets[_symbol].name = _name;
                                                assets[_symbol].description = _description;
                                                assets[_symbol].baseUnit = _baseUnit;
                                                eventsHistory.emitChange(_symbol);
                                                return true;
                                            }
                                        
                                            function lockAsset(bytes32 _symbol) onlyOwner(_symbol) returns(bool) {
                                                if (isLocked(_symbol)) {
                                                    _error('Asset is locked');
                                                    return false;
                                                }
                                                assets[_symbol].isLocked = true;
                                                return true;
                                            }
                                        
                                            /**
                                             * Issues additional asset tokens if the asset have dynamic supply.
                                             *
                                             * Tokens issued with this call go straight to asset owner.
                                             * Can only be called by asset owner.
                                             *
                                             * @param _symbol asset symbol.
                                             * @param _value amount of additional tokens to issue.
                                             *
                                             * @return success.
                                             */
                                            function reissueAsset(bytes32 _symbol, uint _value) onlyOwner(_symbol) returns(bool) {
                                                // Should have positive value.
                                                if (_value == 0) {
                                                    _error('Cannot reissue 0 value');
                                                    return false;
                                                }
                                                Asset asset = assets[_symbol];
                                                // Should have dynamic supply.
                                                if (!asset.isReissuable) {
                                                    _error('Cannot reissue fixed asset');
                                                    return false;
                                                }
                                                // Resulting total supply should not overflow.
                                                if (asset.totalSupply + _value < asset.totalSupply) {
                                                    _error('Total supply overflow');
                                                    return false;
                                                }
                                                uint holderId = getHolderId(msg.sender);
                                                asset.wallets[holderId].balance += _value;
                                                asset.totalSupply += _value;
                                                // Internal Out Of Gas/Throw: revert this transaction too;
                                                // Recursive Call: safe, all changes already made.
                                                eventsHistory.emitIssue(_symbol, _value, _address(holderId));
                                                _proxyTransferEvent(0, holderId, _value, _symbol);
                                                return true;
                                            }
                                        
                                            /**
                                             * Destroys specified amount of senders asset tokens.
                                             *
                                             * @param _symbol asset symbol.
                                             * @param _value amount of tokens to destroy.
                                             *
                                             * @return success.
                                             */
                                            function revokeAsset(bytes32 _symbol, uint _value) checkEnabledSwitch(sha3(_symbol, Features.Revoke)) checkSigned(getHolderId(msg.sender), 1) returns(bool) {
                                                // Should have positive value.
                                                if (_value == 0) {
                                                    _error('Cannot revoke 0 value');
                                                    return false;
                                                }
                                                Asset asset = assets[_symbol];
                                                uint holderId = getHolderId(msg.sender);
                                                // Should have enough tokens.
                                                if (asset.wallets[holderId].balance < _value) {
                                                    _error('Not enough tokens to revoke');
                                                    return false;
                                                }
                                                asset.wallets[holderId].balance -= _value;
                                                asset.totalSupply -= _value;
                                                // Internal Out Of Gas/Throw: revert this transaction too;
                                                // Recursive Call: safe, all changes already made.
                                                eventsHistory.emitRevoke(_symbol, _value, _address(holderId));
                                                _proxyTransferEvent(holderId, 0, _value, _symbol);
                                                return true;
                                            }
                                        
                                            /**
                                             * Passes asset ownership to specified address.
                                             *
                                             * Only ownership is changed, balances are not touched.
                                             * Can only be called by asset owner.
                                             *
                                             * @param _symbol asset symbol.
                                             * @param _newOwner address to become a new owner.
                                             *
                                             * @return success.
                                             */
                                            function changeOwnership(bytes32 _symbol, address _newOwner) checkEnabledSwitch(sha3(_symbol, Features.ChangeOwnership)) onlyOwner(_symbol) returns(bool) {
                                                Asset asset = assets[_symbol];
                                                uint newOwnerId = _createHolderId(_newOwner);
                                                // Should pass ownership to another holder.
                                                if (asset.owner == newOwnerId) {
                                                    _error('Cannot pass ownership to oneself');
                                                    return false;
                                                }
                                                address oldOwner = _address(asset.owner);
                                                asset.owner = newOwnerId;
                                                // Internal Out Of Gas/Throw: revert this transaction too;
                                                // Recursive Call: safe, all changes already made.
                                                eventsHistory.emitOwnershipChange(oldOwner, _address(newOwnerId), _symbol);
                                                return true;
                                            }
                                        
                                            function setCosignerAddress(Cosigner _cosigner) checkSigned(_createHolderId(msg.sender), 1) returns(bool) {
                                                if (!_checkSigned(_cosigner, getHolderId(msg.sender), 1)) {
                                                    _error('Invalid cosigner');
                                                    return false;
                                                }
                                                holders[_createHolderId(msg.sender)].cosigner = _cosigner;
                                                return true;
                                            }
                                        
                                            function isCosignerSet(uint _holderId) constant returns(bool) {
                                                return address(holders[_holderId].cosigner) != 0x0;
                                            }
                                        
                                            function _checkSigned(Cosigner _cosigner, uint _holderId, uint _required) internal returns(bool) {
                                                return _cosigner.consumeOperation(sha3(msg.data, _holderId), _required);
                                            }
                                        
                                            modifier checkSigned(uint _holderId, uint _required) {
                                                if (!isCosignerSet(_holderId) || _checkSigned(holders[_holderId].cosigner, _holderId, _required)) {
                                                    _;
                                                } else {
                                                    _error('Cosigner: access denied');
                                                }
                                            }
                                        
                                            /**
                                             * Check if specified holder trusts an address with recovery procedure.
                                             *
                                             * @param _from truster.
                                             * @param _to trustee.
                                             *
                                             * @return trust existance.
                                             */
                                            function isTrusted(address _from, address _to) constant returns(bool) {
                                                return holders[getHolderId(_from)].trust[_to];
                                            }
                                        
                                            /**
                                             * Trust an address to perform recovery procedure for the caller.
                                             *
                                             * @param _to trustee.
                                             *
                                             * @return success.
                                             */
                                            function trust(address _to) returns(bool) {
                                                uint fromId = _createHolderId(msg.sender);
                                                // Should trust to another address.
                                                if (fromId == getHolderId(_to)) {
                                                    _error('Cannot trust to oneself');
                                                    return false;
                                                }
                                                // Should trust to yet untrusted.
                                                if (isTrusted(msg.sender, _to)) {
                                                    _error('Already trusted');
                                                    return false;
                                                }
                                                holders[fromId].trust[_to] = true;
                                                return true;
                                            }
                                        
                                            /**
                                             * Revoke trust to perform recovery procedure from an address.
                                             *
                                             * @param _to trustee.
                                             *
                                             * @return success.
                                             */
                                            function distrust(address _to) checkTrust(msg.sender, _to) returns(bool) {
                                                holders[getHolderId(msg.sender)].trust[_to] = false;
                                                return true;
                                            }
                                        
                                            /**
                                             * Perform recovery procedure.
                                             *
                                             * This function logic is actually more of an grantAccess(uint _holderId, address _to).
                                             * It grants another address access to recovery subject wallets.
                                             * Can only be called by trustee of recovery subject.
                                             * If cosigning is enabled, should have atleast 2 confirmations.
                                             *
                                             * @dev Deprecated. Backward compatibility.
                                             *
                                             * @param _from holder address to recover from.
                                             * @param _to address to grant access to.
                                             *
                                             * @return success.
                                             */
                                            function recover(address _from, address _to) checkTrust(_from, msg.sender) returns(bool) {
                                                return _grantAccess(getHolderId(_from), _to);
                                            }
                                        
                                            /**
                                             * Perform recovery procedure.
                                             *
                                             * This function logic is actually more of an grantAccess(uint _holderId, address _to).
                                             * It grants another address access to subject holder wallets.
                                             * Can only be called if pre-confirmed by atleast 2 cosign oracles.
                                             *
                                             * @param _from holder address to recover from.
                                             * @param _to address to grant access to.
                                             *
                                             * @return success.
                                             */
                                            function grantAccess(address _from, address _to) returns(bool) {
                                                if (!isCosignerSet(getHolderId(_from))) {
                                                    _error('Cosigner not set');
                                                    return false;
                                                }
                                                return _grantAccess(getHolderId(_from), _to);
                                            }
                                        
                                            function _grantAccess(uint _fromId, address _to) internal checkSigned(_fromId, 2) returns(bool) {
                                                // Should recover to previously unused address.
                                                if (getHolderId(_to) != 0) {
                                                    _error('Should recover to new address');
                                                    return false;
                                                }
                                                // We take current holder address because it might not equal _from.
                                                // It is possible to recover from any old holder address, but event should have the current one.
                                                address from = holders[_fromId].addr;
                                                holders[_fromId].addr = _to;
                                                holderIndex[_to] = _fromId;
                                                // Internal Out Of Gas/Throw: revert this transaction too;
                                                // Recursive Call: safe, all changes already made.
                                                eventsHistory.emitRecovery(from, _to, msg.sender);
                                                return true;
                                            }
                                        
                                            /**
                                             * Sets asset spending allowance for a specified spender.
                                             *
                                             * Note: to revoke allowance, one needs to set allowance to 0.
                                             *
                                             * @param _spenderId holder id to set allowance for.
                                             * @param _value amount to allow.
                                             * @param _symbol asset symbol.
                                             * @param _senderId approve initiator holder id.
                                             *
                                             * @return success.
                                             */
                                            function _approve(uint _spenderId, uint _value, bytes32 _symbol, uint _senderId) internal checkEnabledSwitch(sha3(_symbol, Features.Allowances)) checkSigned(_senderId, 1) returns(bool) {
                                                // Asset should exist.
                                                if (!isCreated(_symbol)) {
                                                    _error('Asset is not issued');
                                                    return false;
                                                }
                                                // Should allow to another holder.
                                                if (_senderId == _spenderId) {
                                                    _error('Cannot approve to oneself');
                                                    return false;
                                                }
                                                assets[_symbol].wallets[_senderId].allowance[_spenderId] = _value;
                                                // Internal Out Of Gas/Throw: revert this transaction too;
                                                // Recursive Call: safe, all changes already made.
                                                eventsHistory.emitApprove(_address(_senderId), _address(_spenderId), _symbol, _value);
                                                if (proxies[_symbol] != 0x0) {
                                                    // Internal Out Of Gas/Throw: revert this transaction too;
                                                    // Recursive Call: safe, all changes already made.
                                                    Proxy(proxies[_symbol]).emitApprove(_address(_senderId), _address(_spenderId), _value);
                                                }
                                                return true;
                                            }
                                        
                                            /**
                                             * Sets asset spending allowance for a specified spender.
                                             *
                                             * Can only be called by asset proxy.
                                             *
                                             * @param _spender holder address to set allowance to.
                                             * @param _value amount to allow.
                                             * @param _symbol asset symbol.
                                             * @param _sender approve initiator address.
                                             *
                                             * @return success.
                                             */
                                            function proxyApprove(address _spender, uint _value, bytes32 _symbol, address _sender) onlyProxy(_symbol) returns(bool) {
                                                return _approve(_createHolderId(_spender), _value, _symbol, _createHolderId(_sender));
                                            }
                                        
                                            /**
                                             * Returns asset allowance from one holder to another.
                                             *
                                             * @param _from holder that allowed spending.
                                             * @param _spender holder that is allowed to spend.
                                             * @param _symbol asset symbol.
                                             *
                                             * @return holder to spender allowance.
                                             */
                                            function allowance(address _from, address _spender, bytes32 _symbol) constant returns(uint) {
                                                return _allowance(getHolderId(_from), getHolderId(_spender), _symbol);
                                            }
                                        
                                            /**
                                             * Returns asset allowance from one holder to another.
                                             *
                                             * @param _fromId holder id that allowed spending.
                                             * @param _toId holder id that is allowed to spend.
                                             * @param _symbol asset symbol.
                                             *
                                             * @return holder to spender allowance.
                                             */
                                            function _allowance(uint _fromId, uint _toId, bytes32 _symbol) constant internal returns(uint) {
                                                return assets[_symbol].wallets[_fromId].allowance[_toId];
                                            }
                                        
                                            /**
                                             * Prforms allowance transfer of asset balance between holders wallets.
                                             *
                                             * Can only be called by asset proxy.
                                             *
                                             * @param _from holder address to take from.
                                             * @param _to holder address to give to.
                                             * @param _value amount to transfer.
                                             * @param _symbol asset symbol.
                                             * @param _reference transfer comment to be included in a Transfer event.
                                             * @param _sender allowance transfer initiator address.
                                             *
                                             * @return success.
                                             */
                                            function proxyTransferFromWithReference(address _from, address _to, uint _value, bytes32 _symbol, string _reference, address _sender) onlyProxy(_symbol) returns(bool) {
                                                return _transfer(getHolderId(_from), _createHolderId(_to), _value, _symbol, _reference, getHolderId(_sender));
                                            }
                                        }