ETH Price: $2,184.60 (+9.98%)
Gas: 0.38 Gwei

Transaction Decoder

Block:
14087911 at Jan-27-2022 01:22:24 PM +UTC
Transaction Fee:
0.013570694555439062 ETH $29.65
Gas Used:
187,787 Gas / 72.266421826 Gwei

Emitted Events:

183 AscendedNFT.Transfer( from=0x7a785570127873d44dce05b8738b973414e854dc, to=[Sender] 0xb56a304f326200756f773e085339a8251f1eaca4, tokenId=1751 )
184 WyvernExchange.OrdersMatched( buyHash=0000000000000000000000000000000000000000000000000000000000000000, sellHash=AA1BF3948A212D5DF28F696680DF80C67614914AABD8A58153A800204941B8D1, maker=0x7a785570127873d44dce05b8738b973414e854dc, taker=[Sender] 0xb56a304f326200756f773e085339a8251f1eaca4, price=120000000000000000, metadata=0000000000000000000000000000000000000000000000000000000000000000 )

Account State Difference:

  Address   Before After State Difference Code
0x496299d8...31f06c522
0x5b325696...807C01073
(OpenSea: Wallet)
15,347.514882608442776521 Eth15,347.523882608442776521 Eth0.009
0x7A785570...414e854DC 1.979290171365635327 Eth2.090290171365635327 Eth0.111
0x7Be8076f...6C946D12b
0xb56A304F...51f1eACA4
0.312275378365726822 Eth
Nonce: 7
0.17870468381028776 Eth
Nonce: 8
0.133570694555439062
(Ethermine)
1,870.339392327009792125 Eth1,870.339674007509792125 Eth0.0002816805

Execution Trace

ETH 0.12 WyvernExchange.atomicMatch_( addrs=[0x7Be8076f4EA4A4AD08075C2508e481d6C946D12b, 0xb56A304F326200756F773E085339a8251f1eACA4, 0x7A785570127873d44dCe05B8738b973414e854DC, 0x0000000000000000000000000000000000000000, 0x496299d8497A02b01f5Bc355298b0a831f06c522, 0x0000000000000000000000000000000000000000, 0x0000000000000000000000000000000000000000, 0x7Be8076f4EA4A4AD08075C2508e481d6C946D12b, 0x7A785570127873d44dCe05B8738b973414e854DC, 0x0000000000000000000000000000000000000000, 0x5b3256965e7C3cF26E11FCAf296DfC8807C01073, 0x496299d8497A02b01f5Bc355298b0a831f06c522, 0x0000000000000000000000000000000000000000, 0x0000000000000000000000000000000000000000], uints=[750, 0, 0, 0, 120000000000000000, 0, 1643289636, 0, 25114057638940859753398110087590028321172046771264428962687234792368144296678, 750, 0, 0, 0, 120000000000000000, 0, 1643289523, 1643346512, 38171547617262793728137280729413372067001183261522634647537644002960168245851], feeMethodsSidesKindsHowToCalls=[1, 0, 0, 0, 1, 1, 0, 0], calldataBuy=0x23B872DD0000000000000000000000000000000000000000000000000000000000000000000000000000000000000000B56A304F326200756F773E085339A8251F1EACA400000000000000000000000000000000000000000000000000000000000006D7, calldataSell=0x23B872DD0000000000000000000000007A785570127873D44DCE05B8738B973414E854DC000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000006D7, replacementPatternBuy=0x00000000FFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFF00000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000, replacementPatternSell=0x000000000000000000000000000000000000000000000000000000000000000000000000FFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFF0000000000000000000000000000000000000000000000000000000000000000, staticExtradataBuy=0x, staticExtradataSell=0x, vs=[27, 27], rssMetadata=[y7ZpPikfnBhGO4914YGKfp+1KyfGh2g5b96LXlnmxoQ=, De/CJAOZyieLC30c1xRZaEsRk8ovMfhqdOTSbxehkKY=, y7ZpPikfnBhGO4914YGKfp+1KyfGh2g5b96LXlnmxoQ=, De/CJAOZyieLC30c1xRZaEsRk8ovMfhqdOTSbxehkKY=, AAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAA=] )
  • Null: 0x000...001.aa1bf394( )
  • WyvernProxyRegistry.proxies( 0x7A785570127873d44dCe05B8738b973414e854DC ) => ( 0x79987113DA534633338F29e79bdB3eb769515955 )
  • WyvernProxyRegistry.CALL( )
  • 0x79987113da534633338f29e79bdb3eb769515955.CALL( )
  • ETH 0.009 OpenSea: Wallet.CALL( )
  • ETH 0.111 0x7a785570127873d44dce05b8738b973414e854dc.CALL( )
  • 0x79987113da534633338f29e79bdb3eb769515955.1b0f7ba9( )
    • AuthenticatedProxy.proxy( dest=0x496299d8497A02b01f5Bc355298b0a831f06c522, howToCall=0, calldata=0x23B872DD0000000000000000000000007A785570127873D44DCE05B8738B973414E854DC000000000000000000000000B56A304F326200756F773E085339A8251F1EACA400000000000000000000000000000000000000000000000000000000000006D7 ) => ( result=True )
      • WyvernProxyRegistry.contracts( 0x7Be8076f4EA4A4AD08075C2508e481d6C946D12b ) => ( True )
      • AscendedNFT.transferFrom( from_=0x7A785570127873d44dCe05B8738b973414e854DC, to_=0xb56A304F326200756F773E085339a8251f1eACA4, tokenId_=1751 )
        File 1 of 4: WyvernExchange
        pragma solidity ^0.4.13;
        
        library SafeMath {
        
          /**
          * @dev Multiplies two numbers, throws on overflow.
          */
          function mul(uint256 a, uint256 b) internal pure returns (uint256 c) {
            if (a == 0) {
              return 0;
            }
            c = a * b;
            assert(c / a == b);
            return c;
          }
        
          /**
          * @dev Integer division of two numbers, truncating the quotient.
          */
          function div(uint256 a, uint256 b) internal pure returns (uint256) {
            // assert(b > 0); // Solidity automatically throws when dividing by 0
            // uint256 c = a / b;
            // assert(a == b * c + a % b); // There is no case in which this doesn't hold
            return a / b;
          }
        
          /**
          * @dev Subtracts two numbers, throws on overflow (i.e. if subtrahend is greater than minuend).
          */
          function sub(uint256 a, uint256 b) internal pure returns (uint256) {
            assert(b <= a);
            return a - b;
          }
        
          /**
          * @dev Adds two numbers, throws on overflow.
          */
          function add(uint256 a, uint256 b) internal pure returns (uint256 c) {
            c = a + b;
            assert(c >= a);
            return c;
          }
        }
        
        contract Ownable {
          address public owner;
        
        
          event OwnershipRenounced(address indexed previousOwner);
          event OwnershipTransferred(
            address indexed previousOwner,
            address indexed newOwner
          );
        
        
          /**
           * @dev The Ownable constructor sets the original `owner` of the contract to the sender
           * account.
           */
          constructor() public {
            owner = msg.sender;
          }
        
          /**
           * @dev Throws if called by any account other than the owner.
           */
          modifier onlyOwner() {
            require(msg.sender == 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) public onlyOwner {
            require(newOwner != address(0));
            emit OwnershipTransferred(owner, newOwner);
            owner = newOwner;
          }
        
          /**
           * @dev Allows the current owner to relinquish control of the contract.
           */
          function renounceOwnership() public onlyOwner {
            emit OwnershipRenounced(owner);
            owner = address(0);
          }
        }
        
        contract ERC20Basic {
          function totalSupply() public view returns (uint256);
          function balanceOf(address who) public view returns (uint256);
          function transfer(address to, uint256 value) public returns (bool);
          event Transfer(address indexed from, address indexed to, uint256 value);
        }
        
        contract ERC20 is ERC20Basic {
          function allowance(address owner, address spender)
            public view returns (uint256);
        
          function transferFrom(address from, address to, uint256 value)
            public returns (bool);
        
          function approve(address spender, uint256 value) public returns (bool);
          event Approval(
            address indexed owner,
            address indexed spender,
            uint256 value
          );
        }
        
        library ArrayUtils {
        
            /**
             * Replace bytes in an array with bytes in another array, guarded by a bitmask
             * Efficiency of this function is a bit unpredictable because of the EVM's word-specific model (arrays under 32 bytes will be slower)
             * 
             * @dev Mask must be the size of the byte array. A nonzero byte means the byte array can be changed.
             * @param array The original array
             * @param desired The target array
             * @param mask The mask specifying which bits can be changed
             * @return The updated byte array (the parameter will be modified inplace)
             */
            function guardedArrayReplace(bytes memory array, bytes memory desired, bytes memory mask)
                internal
                pure
            {
                require(array.length == desired.length);
                require(array.length == mask.length);
        
                uint words = array.length / 0x20;
                uint index = words * 0x20;
                assert(index / 0x20 == words);
                uint i;
        
                for (i = 0; i < words; i++) {
                    /* Conceptually: array[i] = (!mask[i] && array[i]) || (mask[i] && desired[i]), bitwise in word chunks. */
                    assembly {
                        let commonIndex := mul(0x20, add(1, i))
                        let maskValue := mload(add(mask, commonIndex))
                        mstore(add(array, commonIndex), or(and(not(maskValue), mload(add(array, commonIndex))), and(maskValue, mload(add(desired, commonIndex)))))
                    }
                }
        
                /* Deal with the last section of the byte array. */
                if (words > 0) {
                    /* This overlaps with bytes already set but is still more efficient than iterating through each of the remaining bytes individually. */
                    i = words;
                    assembly {
                        let commonIndex := mul(0x20, add(1, i))
                        let maskValue := mload(add(mask, commonIndex))
                        mstore(add(array, commonIndex), or(and(not(maskValue), mload(add(array, commonIndex))), and(maskValue, mload(add(desired, commonIndex)))))
                    }
                } else {
                    /* If the byte array is shorter than a word, we must unfortunately do the whole thing bytewise.
                       (bounds checks could still probably be optimized away in assembly, but this is a rare case) */
                    for (i = index; i < array.length; i++) {
                        array[i] = ((mask[i] ^ 0xff) & array[i]) | (mask[i] & desired[i]);
                    }
                }
            }
        
            /**
             * Test if two arrays are equal
             * Source: https://github.com/GNSPS/solidity-bytes-utils/blob/master/contracts/BytesLib.sol
             * 
             * @dev Arrays must be of equal length, otherwise will return false
             * @param a First array
             * @param b Second array
             * @return Whether or not all bytes in the arrays are equal
             */
            function arrayEq(bytes memory a, bytes memory b)
                internal
                pure
                returns (bool)
            {
                bool success = true;
        
                assembly {
                    let length := mload(a)
        
                    // if lengths don't match the arrays are not equal
                    switch eq(length, mload(b))
                    case 1 {
                        // cb is a circuit breaker in the for loop since there's
                        //  no said feature for inline assembly loops
                        // cb = 1 - don't breaker
                        // cb = 0 - break
                        let cb := 1
        
                        let mc := add(a, 0x20)
                        let end := add(mc, length)
        
                        for {
                            let cc := add(b, 0x20)
                        // the next line is the loop condition:
                        // while(uint(mc < end) + cb == 2)
                        } eq(add(lt(mc, end), cb), 2) {
                            mc := add(mc, 0x20)
                            cc := add(cc, 0x20)
                        } {
                            // if any of these checks fails then arrays are not equal
                            if iszero(eq(mload(mc), mload(cc))) {
                                // unsuccess:
                                success := 0
                                cb := 0
                            }
                        }
                    }
                    default {
                        // unsuccess:
                        success := 0
                    }
                }
        
                return success;
            }
        
            /**
             * Unsafe write byte array into a memory location
             *
             * @param index Memory location
             * @param source Byte array to write
             * @return End memory index
             */
            function unsafeWriteBytes(uint index, bytes source)
                internal
                pure
                returns (uint)
            {
                if (source.length > 0) {
                    assembly {
                        let length := mload(source)
                        let end := add(source, add(0x20, length))
                        let arrIndex := add(source, 0x20)
                        let tempIndex := index
                        for { } eq(lt(arrIndex, end), 1) {
                            arrIndex := add(arrIndex, 0x20)
                            tempIndex := add(tempIndex, 0x20)
                        } {
                            mstore(tempIndex, mload(arrIndex))
                        }
                        index := add(index, length)
                    }
                }
                return index;
            }
        
            /**
             * Unsafe write address into a memory location
             *
             * @param index Memory location
             * @param source Address to write
             * @return End memory index
             */
            function unsafeWriteAddress(uint index, address source)
                internal
                pure
                returns (uint)
            {
                uint conv = uint(source) << 0x60;
                assembly {
                    mstore(index, conv)
                    index := add(index, 0x14)
                }
                return index;
            }
        
            /**
             * Unsafe write uint into a memory location
             *
             * @param index Memory location
             * @param source uint to write
             * @return End memory index
             */
            function unsafeWriteUint(uint index, uint source)
                internal
                pure
                returns (uint)
            {
                assembly {
                    mstore(index, source)
                    index := add(index, 0x20)
                }
                return index;
            }
        
            /**
             * Unsafe write uint8 into a memory location
             *
             * @param index Memory location
             * @param source uint8 to write
             * @return End memory index
             */
            function unsafeWriteUint8(uint index, uint8 source)
                internal
                pure
                returns (uint)
            {
                assembly {
                    mstore8(index, source)
                    index := add(index, 0x1)
                }
                return index;
            }
        
        }
        
        contract ReentrancyGuarded {
        
            bool reentrancyLock = false;
        
            /* Prevent a contract function from being reentrant-called. */
            modifier reentrancyGuard {
                if (reentrancyLock) {
                    revert();
                }
                reentrancyLock = true;
                _;
                reentrancyLock = false;
            }
        
        }
        
        contract TokenRecipient {
            event ReceivedEther(address indexed sender, uint amount);
            event ReceivedTokens(address indexed from, uint256 value, address indexed token, bytes extraData);
        
            /**
             * @dev Receive tokens and generate a log event
             * @param from Address from which to transfer tokens
             * @param value Amount of tokens to transfer
             * @param token Address of token
             * @param extraData Additional data to log
             */
            function receiveApproval(address from, uint256 value, address token, bytes extraData) public {
                ERC20 t = ERC20(token);
                require(t.transferFrom(from, this, value));
                emit ReceivedTokens(from, value, token, extraData);
            }
        
            /**
             * @dev Receive Ether and generate a log event
             */
            function () payable public {
                emit ReceivedEther(msg.sender, msg.value);
            }
        }
        
        contract ExchangeCore is ReentrancyGuarded, Ownable {
        
            /* The token used to pay exchange fees. */
            ERC20 public exchangeToken;
        
            /* User registry. */
            ProxyRegistry public registry;
        
            /* Token transfer proxy. */
            TokenTransferProxy public tokenTransferProxy;
        
            /* Cancelled / finalized orders, by hash. */
            mapping(bytes32 => bool) public cancelledOrFinalized;
        
            /* Orders verified by on-chain approval (alternative to ECDSA signatures so that smart contracts can place orders directly). */
            mapping(bytes32 => bool) public approvedOrders;
        
            /* For split fee orders, minimum required protocol maker fee, in basis points. Paid to owner (who can change it). */
            uint public minimumMakerProtocolFee = 0;
        
            /* For split fee orders, minimum required protocol taker fee, in basis points. Paid to owner (who can change it). */
            uint public minimumTakerProtocolFee = 0;
        
            /* Recipient of protocol fees. */
            address public protocolFeeRecipient;
        
            /* Fee method: protocol fee or split fee. */
            enum FeeMethod { ProtocolFee, SplitFee }
        
            /* Inverse basis point. */
            uint public constant INVERSE_BASIS_POINT = 10000;
        
            /* An ECDSA signature. */ 
            struct Sig {
                /* v parameter */
                uint8 v;
                /* r parameter */
                bytes32 r;
                /* s parameter */
                bytes32 s;
            }
        
            /* An order on the exchange. */
            struct Order {
                /* Exchange address, intended as a versioning mechanism. */
                address exchange;
                /* Order maker address. */
                address maker;
                /* Order taker address, if specified. */
                address taker;
                /* Maker relayer fee of the order, unused for taker order. */
                uint makerRelayerFee;
                /* Taker relayer fee of the order, or maximum taker fee for a taker order. */
                uint takerRelayerFee;
                /* Maker protocol fee of the order, unused for taker order. */
                uint makerProtocolFee;
                /* Taker protocol fee of the order, or maximum taker fee for a taker order. */
                uint takerProtocolFee;
                /* Order fee recipient or zero address for taker order. */
                address feeRecipient;
                /* Fee method (protocol token or split fee). */
                FeeMethod feeMethod;
                /* Side (buy/sell). */
                SaleKindInterface.Side side;
                /* Kind of sale. */
                SaleKindInterface.SaleKind saleKind;
                /* Target. */
                address target;
                /* HowToCall. */
                AuthenticatedProxy.HowToCall howToCall;
                /* Calldata. */
                bytes calldata;
                /* Calldata replacement pattern, or an empty byte array for no replacement. */
                bytes replacementPattern;
                /* Static call target, zero-address for no static call. */
                address staticTarget;
                /* Static call extra data. */
                bytes staticExtradata;
                /* Token used to pay for the order, or the zero-address as a sentinel value for Ether. */
                address paymentToken;
                /* Base price of the order (in paymentTokens). */
                uint basePrice;
                /* Auction extra parameter - minimum bid increment for English auctions, starting/ending price difference. */
                uint extra;
                /* Listing timestamp. */
                uint listingTime;
                /* Expiration timestamp - 0 for no expiry. */
                uint expirationTime;
                /* Order salt, used to prevent duplicate hashes. */
                uint salt;
            }
            
            event OrderApprovedPartOne    (bytes32 indexed hash, address exchange, address indexed maker, address taker, uint makerRelayerFee, uint takerRelayerFee, uint makerProtocolFee, uint takerProtocolFee, address indexed feeRecipient, FeeMethod feeMethod, SaleKindInterface.Side side, SaleKindInterface.SaleKind saleKind, address target);
            event OrderApprovedPartTwo    (bytes32 indexed hash, AuthenticatedProxy.HowToCall howToCall, bytes calldata, bytes replacementPattern, address staticTarget, bytes staticExtradata, address paymentToken, uint basePrice, uint extra, uint listingTime, uint expirationTime, uint salt, bool orderbookInclusionDesired);
            event OrderCancelled          (bytes32 indexed hash);
            event OrdersMatched           (bytes32 buyHash, bytes32 sellHash, address indexed maker, address indexed taker, uint price, bytes32 indexed metadata);
        
            /**
             * @dev Change the minimum maker fee paid to the protocol (owner only)
             * @param newMinimumMakerProtocolFee New fee to set in basis points
             */
            function changeMinimumMakerProtocolFee(uint newMinimumMakerProtocolFee)
                public
                onlyOwner
            {
                minimumMakerProtocolFee = newMinimumMakerProtocolFee;
            }
        
            /**
             * @dev Change the minimum taker fee paid to the protocol (owner only)
             * @param newMinimumTakerProtocolFee New fee to set in basis points
             */
            function changeMinimumTakerProtocolFee(uint newMinimumTakerProtocolFee)
                public
                onlyOwner
            {
                minimumTakerProtocolFee = newMinimumTakerProtocolFee;
            }
        
            /**
             * @dev Change the protocol fee recipient (owner only)
             * @param newProtocolFeeRecipient New protocol fee recipient address
             */
            function changeProtocolFeeRecipient(address newProtocolFeeRecipient)
                public
                onlyOwner
            {
                protocolFeeRecipient = newProtocolFeeRecipient;
            }
        
            /**
             * @dev Transfer tokens
             * @param token Token to transfer
             * @param from Address to charge fees
             * @param to Address to receive fees
             * @param amount Amount of protocol tokens to charge
             */
            function transferTokens(address token, address from, address to, uint amount)
                internal
            {
                if (amount > 0) {
                    require(tokenTransferProxy.transferFrom(token, from, to, amount));
                }
            }
        
            /**
             * @dev Charge a fee in protocol tokens
             * @param from Address to charge fees
             * @param to Address to receive fees
             * @param amount Amount of protocol tokens to charge
             */
            function chargeProtocolFee(address from, address to, uint amount)
                internal
            {
                transferTokens(exchangeToken, from, to, amount);
            }
        
            /**
             * @dev Execute a STATICCALL (introduced with Ethereum Metropolis, non-state-modifying external call)
             * @param target Contract to call
             * @param calldata Calldata (appended to extradata)
             * @param extradata Base data for STATICCALL (probably function selector and argument encoding)
             * @return The result of the call (success or failure)
             */
            function staticCall(address target, bytes memory calldata, bytes memory extradata)
                public
                view
                returns (bool result)
            {
                bytes memory combined = new bytes(calldata.length + extradata.length);
                uint index;
                assembly {
                    index := add(combined, 0x20)
                }
                index = ArrayUtils.unsafeWriteBytes(index, extradata);
                ArrayUtils.unsafeWriteBytes(index, calldata);
                assembly {
                    result := staticcall(gas, target, add(combined, 0x20), mload(combined), mload(0x40), 0)
                }
                return result;
            }
        
            /**
             * Calculate size of an order struct when tightly packed
             *
             * @param order Order to calculate size of
             * @return Size in bytes
             */
            function sizeOf(Order memory order)
                internal
                pure
                returns (uint)
            {
                return ((0x14 * 7) + (0x20 * 9) + 4 + order.calldata.length + order.replacementPattern.length + order.staticExtradata.length);
            }
        
            /**
             * @dev Hash an order, returning the canonical order hash, without the message prefix
             * @param order Order to hash
             * @return Hash of order
             */
            function hashOrder(Order memory order)
                internal
                pure
                returns (bytes32 hash)
            {
                /* Unfortunately abi.encodePacked doesn't work here, stack size constraints. */
                uint size = sizeOf(order);
                bytes memory array = new bytes(size);
                uint index;
                assembly {
                    index := add(array, 0x20)
                }
                index = ArrayUtils.unsafeWriteAddress(index, order.exchange);
                index = ArrayUtils.unsafeWriteAddress(index, order.maker);
                index = ArrayUtils.unsafeWriteAddress(index, order.taker);
                index = ArrayUtils.unsafeWriteUint(index, order.makerRelayerFee);
                index = ArrayUtils.unsafeWriteUint(index, order.takerRelayerFee);
                index = ArrayUtils.unsafeWriteUint(index, order.makerProtocolFee);
                index = ArrayUtils.unsafeWriteUint(index, order.takerProtocolFee);
                index = ArrayUtils.unsafeWriteAddress(index, order.feeRecipient);
                index = ArrayUtils.unsafeWriteUint8(index, uint8(order.feeMethod));
                index = ArrayUtils.unsafeWriteUint8(index, uint8(order.side));
                index = ArrayUtils.unsafeWriteUint8(index, uint8(order.saleKind));
                index = ArrayUtils.unsafeWriteAddress(index, order.target);
                index = ArrayUtils.unsafeWriteUint8(index, uint8(order.howToCall));
                index = ArrayUtils.unsafeWriteBytes(index, order.calldata);
                index = ArrayUtils.unsafeWriteBytes(index, order.replacementPattern);
                index = ArrayUtils.unsafeWriteAddress(index, order.staticTarget);
                index = ArrayUtils.unsafeWriteBytes(index, order.staticExtradata);
                index = ArrayUtils.unsafeWriteAddress(index, order.paymentToken);
                index = ArrayUtils.unsafeWriteUint(index, order.basePrice);
                index = ArrayUtils.unsafeWriteUint(index, order.extra);
                index = ArrayUtils.unsafeWriteUint(index, order.listingTime);
                index = ArrayUtils.unsafeWriteUint(index, order.expirationTime);
                index = ArrayUtils.unsafeWriteUint(index, order.salt);
                assembly {
                    hash := keccak256(add(array, 0x20), size)
                }
                return hash;
            }
        
            /**
             * @dev Hash an order, returning the hash that a client must sign, including the standard message prefix
             * @param order Order to hash
             * @return Hash of message prefix and order hash per Ethereum format
             */
            function hashToSign(Order memory order)
                internal
                pure
                returns (bytes32)
            {
                return keccak256("\x19Ethereum Signed Message:\n32", hashOrder(order));
            }
        
            /**
             * @dev Assert an order is valid and return its hash
             * @param order Order to validate
             * @param sig ECDSA signature
             */
            function requireValidOrder(Order memory order, Sig memory sig)
                internal
                view
                returns (bytes32)
            {
                bytes32 hash = hashToSign(order);
                require(validateOrder(hash, order, sig));
                return hash;
            }
        
            /**
             * @dev Validate order parameters (does *not* check signature validity)
             * @param order Order to validate
             */
            function validateOrderParameters(Order memory order)
                internal
                view
                returns (bool)
            {
                /* Order must be targeted at this protocol version (this Exchange contract). */
                if (order.exchange != address(this)) {
                    return false;
                }
        
                /* Order must possess valid sale kind parameter combination. */
                if (!SaleKindInterface.validateParameters(order.saleKind, order.expirationTime)) {
                    return false;
                }
        
                /* If using the split fee method, order must have sufficient protocol fees. */
                if (order.feeMethod == FeeMethod.SplitFee && (order.makerProtocolFee < minimumMakerProtocolFee || order.takerProtocolFee < minimumTakerProtocolFee)) {
                    return false;
                }
        
                return true;
            }
        
            /**
             * @dev Validate a provided previously approved / signed order, hash, and signature.
             * @param hash Order hash (already calculated, passed to avoid recalculation)
             * @param order Order to validate
             * @param sig ECDSA signature
             */
            function validateOrder(bytes32 hash, Order memory order, Sig memory sig) 
                internal
                view
                returns (bool)
            {
                /* Not done in an if-conditional to prevent unnecessary ecrecover evaluation, which seems to happen even though it should short-circuit. */
        
                /* Order must have valid parameters. */
                if (!validateOrderParameters(order)) {
                    return false;
                }
        
                /* Order must have not been canceled or already filled. */
                if (cancelledOrFinalized[hash]) {
                    return false;
                }
                
                /* Order authentication. Order must be either:
                /* (a) previously approved */
                if (approvedOrders[hash]) {
                    return true;
                }
        
                /* or (b) ECDSA-signed by maker. */
                if (ecrecover(hash, sig.v, sig.r, sig.s) == order.maker) {
                    return true;
                }
        
                return false;
            }
        
            /**
             * @dev Approve an order and optionally mark it for orderbook inclusion. Must be called by the maker of the order
             * @param order Order to approve
             * @param orderbookInclusionDesired Whether orderbook providers should include the order in their orderbooks
             */
            function approveOrder(Order memory order, bool orderbookInclusionDesired)
                internal
            {
                /* CHECKS */
        
                /* Assert sender is authorized to approve order. */
                require(msg.sender == order.maker);
        
                /* Calculate order hash. */
                bytes32 hash = hashToSign(order);
        
                /* Assert order has not already been approved. */
                require(!approvedOrders[hash]);
        
                /* EFFECTS */
            
                /* Mark order as approved. */
                approvedOrders[hash] = true;
          
                /* Log approval event. Must be split in two due to Solidity stack size limitations. */
                {
                    emit OrderApprovedPartOne(hash, order.exchange, order.maker, order.taker, order.makerRelayerFee, order.takerRelayerFee, order.makerProtocolFee, order.takerProtocolFee, order.feeRecipient, order.feeMethod, order.side, order.saleKind, order.target);
                }
                {   
                    emit OrderApprovedPartTwo(hash, order.howToCall, order.calldata, order.replacementPattern, order.staticTarget, order.staticExtradata, order.paymentToken, order.basePrice, order.extra, order.listingTime, order.expirationTime, order.salt, orderbookInclusionDesired);
                }
            }
        
            /**
             * @dev Cancel an order, preventing it from being matched. Must be called by the maker of the order
             * @param order Order to cancel
             * @param sig ECDSA signature
             */
            function cancelOrder(Order memory order, Sig memory sig) 
                internal
            {
                /* CHECKS */
        
                /* Calculate order hash. */
                bytes32 hash = requireValidOrder(order, sig);
        
                /* Assert sender is authorized to cancel order. */
                require(msg.sender == order.maker);
          
                /* EFFECTS */
              
                /* Mark order as cancelled, preventing it from being matched. */
                cancelledOrFinalized[hash] = true;
        
                /* Log cancel event. */
                emit OrderCancelled(hash);
            }
        
            /**
             * @dev Calculate the current price of an order (convenience function)
             * @param order Order to calculate the price of
             * @return The current price of the order
             */
            function calculateCurrentPrice (Order memory order)
                internal  
                view
                returns (uint)
            {
                return SaleKindInterface.calculateFinalPrice(order.side, order.saleKind, order.basePrice, order.extra, order.listingTime, order.expirationTime);
            }
        
            /**
             * @dev Calculate the price two orders would match at, if in fact they would match (otherwise fail)
             * @param buy Buy-side order
             * @param sell Sell-side order
             * @return Match price
             */
            function calculateMatchPrice(Order memory buy, Order memory sell)
                view
                internal
                returns (uint)
            {
                /* Calculate sell price. */
                uint sellPrice = SaleKindInterface.calculateFinalPrice(sell.side, sell.saleKind, sell.basePrice, sell.extra, sell.listingTime, sell.expirationTime);
        
                /* Calculate buy price. */
                uint buyPrice = SaleKindInterface.calculateFinalPrice(buy.side, buy.saleKind, buy.basePrice, buy.extra, buy.listingTime, buy.expirationTime);
        
                /* Require price cross. */
                require(buyPrice >= sellPrice);
                
                /* Maker/taker priority. */
                return sell.feeRecipient != address(0) ? sellPrice : buyPrice;
            }
        
            /**
             * @dev Execute all ERC20 token / Ether transfers associated with an order match (fees and buyer => seller transfer)
             * @param buy Buy-side order
             * @param sell Sell-side order
             */
            function executeFundsTransfer(Order memory buy, Order memory sell)
                internal
                returns (uint)
            {
                /* Only payable in the special case of unwrapped Ether. */
                if (sell.paymentToken != address(0)) {
                    require(msg.value == 0);
                }
        
                /* Calculate match price. */
                uint price = calculateMatchPrice(buy, sell);
        
                /* If paying using a token (not Ether), transfer tokens. This is done prior to fee payments to that a seller will have tokens before being charged fees. */
                if (price > 0 && sell.paymentToken != address(0)) {
                    transferTokens(sell.paymentToken, buy.maker, sell.maker, price);
                }
        
                /* Amount that will be received by seller (for Ether). */
                uint receiveAmount = price;
        
                /* Amount that must be sent by buyer (for Ether). */
                uint requiredAmount = price;
        
                /* Determine maker/taker and charge fees accordingly. */
                if (sell.feeRecipient != address(0)) {
                    /* Sell-side order is maker. */
              
                    /* Assert taker fee is less than or equal to maximum fee specified by buyer. */
                    require(sell.takerRelayerFee <= buy.takerRelayerFee);
        
                    if (sell.feeMethod == FeeMethod.SplitFee) {
                        /* Assert taker fee is less than or equal to maximum fee specified by buyer. */
                        require(sell.takerProtocolFee <= buy.takerProtocolFee);
        
                        /* Maker fees are deducted from the token amount that the maker receives. Taker fees are extra tokens that must be paid by the taker. */
        
                        if (sell.makerRelayerFee > 0) {
                            uint makerRelayerFee = SafeMath.div(SafeMath.mul(sell.makerRelayerFee, price), INVERSE_BASIS_POINT);
                            if (sell.paymentToken == address(0)) {
                                receiveAmount = SafeMath.sub(receiveAmount, makerRelayerFee);
                                sell.feeRecipient.transfer(makerRelayerFee);
                            } else {
                                transferTokens(sell.paymentToken, sell.maker, sell.feeRecipient, makerRelayerFee);
                            }
                        }
        
                        if (sell.takerRelayerFee > 0) {
                            uint takerRelayerFee = SafeMath.div(SafeMath.mul(sell.takerRelayerFee, price), INVERSE_BASIS_POINT);
                            if (sell.paymentToken == address(0)) {
                                requiredAmount = SafeMath.add(requiredAmount, takerRelayerFee);
                                sell.feeRecipient.transfer(takerRelayerFee);
                            } else {
                                transferTokens(sell.paymentToken, buy.maker, sell.feeRecipient, takerRelayerFee);
                            }
                        }
        
                        if (sell.makerProtocolFee > 0) {
                            uint makerProtocolFee = SafeMath.div(SafeMath.mul(sell.makerProtocolFee, price), INVERSE_BASIS_POINT);
                            if (sell.paymentToken == address(0)) {
                                receiveAmount = SafeMath.sub(receiveAmount, makerProtocolFee);
                                protocolFeeRecipient.transfer(makerProtocolFee);
                            } else {
                                transferTokens(sell.paymentToken, sell.maker, protocolFeeRecipient, makerProtocolFee);
                            }
                        }
        
                        if (sell.takerProtocolFee > 0) {
                            uint takerProtocolFee = SafeMath.div(SafeMath.mul(sell.takerProtocolFee, price), INVERSE_BASIS_POINT);
                            if (sell.paymentToken == address(0)) {
                                requiredAmount = SafeMath.add(requiredAmount, takerProtocolFee);
                                protocolFeeRecipient.transfer(takerProtocolFee);
                            } else {
                                transferTokens(sell.paymentToken, buy.maker, protocolFeeRecipient, takerProtocolFee);
                            }
                        }
        
                    } else {
                        /* Charge maker fee to seller. */
                        chargeProtocolFee(sell.maker, sell.feeRecipient, sell.makerRelayerFee);
        
                        /* Charge taker fee to buyer. */
                        chargeProtocolFee(buy.maker, sell.feeRecipient, sell.takerRelayerFee);
                    }
                } else {
                    /* Buy-side order is maker. */
        
                    /* Assert taker fee is less than or equal to maximum fee specified by seller. */
                    require(buy.takerRelayerFee <= sell.takerRelayerFee);
        
                    if (sell.feeMethod == FeeMethod.SplitFee) {
                        /* The Exchange does not escrow Ether, so direct Ether can only be used to with sell-side maker / buy-side taker orders. */
                        require(sell.paymentToken != address(0));
        
                        /* Assert taker fee is less than or equal to maximum fee specified by seller. */
                        require(buy.takerProtocolFee <= sell.takerProtocolFee);
        
                        if (buy.makerRelayerFee > 0) {
                            makerRelayerFee = SafeMath.div(SafeMath.mul(buy.makerRelayerFee, price), INVERSE_BASIS_POINT);
                            transferTokens(sell.paymentToken, buy.maker, buy.feeRecipient, makerRelayerFee);
                        }
        
                        if (buy.takerRelayerFee > 0) {
                            takerRelayerFee = SafeMath.div(SafeMath.mul(buy.takerRelayerFee, price), INVERSE_BASIS_POINT);
                            transferTokens(sell.paymentToken, sell.maker, buy.feeRecipient, takerRelayerFee);
                        }
        
                        if (buy.makerProtocolFee > 0) {
                            makerProtocolFee = SafeMath.div(SafeMath.mul(buy.makerProtocolFee, price), INVERSE_BASIS_POINT);
                            transferTokens(sell.paymentToken, buy.maker, protocolFeeRecipient, makerProtocolFee);
                        }
        
                        if (buy.takerProtocolFee > 0) {
                            takerProtocolFee = SafeMath.div(SafeMath.mul(buy.takerProtocolFee, price), INVERSE_BASIS_POINT);
                            transferTokens(sell.paymentToken, sell.maker, protocolFeeRecipient, takerProtocolFee);
                        }
        
                    } else {
                        /* Charge maker fee to buyer. */
                        chargeProtocolFee(buy.maker, buy.feeRecipient, buy.makerRelayerFee);
              
                        /* Charge taker fee to seller. */
                        chargeProtocolFee(sell.maker, buy.feeRecipient, buy.takerRelayerFee);
                    }
                }
        
                if (sell.paymentToken == address(0)) {
                    /* Special-case Ether, order must be matched by buyer. */
                    require(msg.value >= requiredAmount);
                    sell.maker.transfer(receiveAmount);
                    /* Allow overshoot for variable-price auctions, refund difference. */
                    uint diff = SafeMath.sub(msg.value, requiredAmount);
                    if (diff > 0) {
                        buy.maker.transfer(diff);
                    }
                }
        
                /* This contract should never hold Ether, however, we cannot assert this, since it is impossible to prevent anyone from sending Ether e.g. with selfdestruct. */
        
                return price;
            }
        
            /**
             * @dev Return whether or not two orders can be matched with each other by basic parameters (does not check order signatures / calldata or perform static calls)
             * @param buy Buy-side order
             * @param sell Sell-side order
             * @return Whether or not the two orders can be matched
             */
            function ordersCanMatch(Order memory buy, Order memory sell)
                internal
                view
                returns (bool)
            {
                return (
                    /* Must be opposite-side. */
                    (buy.side == SaleKindInterface.Side.Buy && sell.side == SaleKindInterface.Side.Sell) &&     
                    /* Must use same fee method. */
                    (buy.feeMethod == sell.feeMethod) &&
                    /* Must use same payment token. */
                    (buy.paymentToken == sell.paymentToken) &&
                    /* Must match maker/taker addresses. */
                    (sell.taker == address(0) || sell.taker == buy.maker) &&
                    (buy.taker == address(0) || buy.taker == sell.maker) &&
                    /* One must be maker and the other must be taker (no bool XOR in Solidity). */
                    ((sell.feeRecipient == address(0) && buy.feeRecipient != address(0)) || (sell.feeRecipient != address(0) && buy.feeRecipient == address(0))) &&
                    /* Must match target. */
                    (buy.target == sell.target) &&
                    /* Must match howToCall. */
                    (buy.howToCall == sell.howToCall) &&
                    /* Buy-side order must be settleable. */
                    SaleKindInterface.canSettleOrder(buy.listingTime, buy.expirationTime) &&
                    /* Sell-side order must be settleable. */
                    SaleKindInterface.canSettleOrder(sell.listingTime, sell.expirationTime)
                );
            }
        
            /**
             * @dev Atomically match two orders, ensuring validity of the match, and execute all associated state transitions. Protected against reentrancy by a contract-global lock.
             * @param buy Buy-side order
             * @param buySig Buy-side order signature
             * @param sell Sell-side order
             * @param sellSig Sell-side order signature
             */
            function atomicMatch(Order memory buy, Sig memory buySig, Order memory sell, Sig memory sellSig, bytes32 metadata)
                internal
                reentrancyGuard
            {
                /* CHECKS */
              
                /* Ensure buy order validity and calculate hash if necessary. */
                bytes32 buyHash;
                if (buy.maker == msg.sender) {
                    require(validateOrderParameters(buy));
                } else {
                    buyHash = requireValidOrder(buy, buySig);
                }
        
                /* Ensure sell order validity and calculate hash if necessary. */
                bytes32 sellHash;
                if (sell.maker == msg.sender) {
                    require(validateOrderParameters(sell));
                } else {
                    sellHash = requireValidOrder(sell, sellSig);
                }
                
                /* Must be matchable. */
                require(ordersCanMatch(buy, sell));
        
                /* Target must exist (prevent malicious selfdestructs just prior to order settlement). */
                uint size;
                address target = sell.target;
                assembly {
                    size := extcodesize(target)
                }
                require(size > 0);
              
                /* Must match calldata after replacement, if specified. */ 
                if (buy.replacementPattern.length > 0) {
                  ArrayUtils.guardedArrayReplace(buy.calldata, sell.calldata, buy.replacementPattern);
                }
                if (sell.replacementPattern.length > 0) {
                  ArrayUtils.guardedArrayReplace(sell.calldata, buy.calldata, sell.replacementPattern);
                }
                require(ArrayUtils.arrayEq(buy.calldata, sell.calldata));
        
                /* Retrieve delegateProxy contract. */
                OwnableDelegateProxy delegateProxy = registry.proxies(sell.maker);
        
                /* Proxy must exist. */
                require(delegateProxy != address(0));
        
                /* Assert implementation. */
                require(delegateProxy.implementation() == registry.delegateProxyImplementation());
        
                /* Access the passthrough AuthenticatedProxy. */
                AuthenticatedProxy proxy = AuthenticatedProxy(delegateProxy);
        
                /* EFFECTS */
        
                /* Mark previously signed or approved orders as finalized. */
                if (msg.sender != buy.maker) {
                    cancelledOrFinalized[buyHash] = true;
                }
                if (msg.sender != sell.maker) {
                    cancelledOrFinalized[sellHash] = true;
                }
        
                /* INTERACTIONS */
        
                /* Execute funds transfer and pay fees. */
                uint price = executeFundsTransfer(buy, sell);
        
                /* Execute specified call through proxy. */
                require(proxy.proxy(sell.target, sell.howToCall, sell.calldata));
        
                /* Static calls are intentionally done after the effectful call so they can check resulting state. */
        
                /* Handle buy-side static call if specified. */
                if (buy.staticTarget != address(0)) {
                    require(staticCall(buy.staticTarget, sell.calldata, buy.staticExtradata));
                }
        
                /* Handle sell-side static call if specified. */
                if (sell.staticTarget != address(0)) {
                    require(staticCall(sell.staticTarget, sell.calldata, sell.staticExtradata));
                }
        
                /* Log match event. */
                emit OrdersMatched(buyHash, sellHash, sell.feeRecipient != address(0) ? sell.maker : buy.maker, sell.feeRecipient != address(0) ? buy.maker : sell.maker, price, metadata);
            }
        
        }
        
        contract Exchange is ExchangeCore {
        
            /**
             * @dev Call guardedArrayReplace - library function exposed for testing.
             */
            function guardedArrayReplace(bytes array, bytes desired, bytes mask)
                public
                pure
                returns (bytes)
            {
                ArrayUtils.guardedArrayReplace(array, desired, mask);
                return array;
            }
        
            /**
             * Test copy byte array
             *
             * @param arrToCopy Array to copy
             * @return byte array
             */
            function testCopy(bytes arrToCopy)
                public
                pure
                returns (bytes)
            {
                bytes memory arr = new bytes(arrToCopy.length);
                uint index;
                assembly {
                    index := add(arr, 0x20)
                }
                ArrayUtils.unsafeWriteBytes(index, arrToCopy);
                return arr;
            }
        
            /**
             * Test write address to bytes
             *
             * @param addr Address to write
             * @return byte array
             */
            function testCopyAddress(address addr)
                public
                pure
                returns (bytes)
            {
                bytes memory arr = new bytes(0x14);
                uint index;
                assembly {
                    index := add(arr, 0x20)
                }
                ArrayUtils.unsafeWriteAddress(index, addr);
                return arr;
            }
        
            /**
             * @dev Call calculateFinalPrice - library function exposed for testing.
             */
            function calculateFinalPrice(SaleKindInterface.Side side, SaleKindInterface.SaleKind saleKind, uint basePrice, uint extra, uint listingTime, uint expirationTime)
                public
                view
                returns (uint)
            {
                return SaleKindInterface.calculateFinalPrice(side, saleKind, basePrice, extra, listingTime, expirationTime);
            }
        
            /**
             * @dev Call hashOrder - Solidity ABI encoding limitation workaround, hopefully temporary.
             */
            function hashOrder_(
                address[7] addrs,
                uint[9] uints,
                FeeMethod feeMethod,
                SaleKindInterface.Side side,
                SaleKindInterface.SaleKind saleKind,
                AuthenticatedProxy.HowToCall howToCall,
                bytes calldata,
                bytes replacementPattern,
                bytes staticExtradata)
                public
                pure
                returns (bytes32)
            {
                return hashOrder(
                  Order(addrs[0], addrs[1], addrs[2], uints[0], uints[1], uints[2], uints[3], addrs[3], feeMethod, side, saleKind, addrs[4], howToCall, calldata, replacementPattern, addrs[5], staticExtradata, ERC20(addrs[6]), uints[4], uints[5], uints[6], uints[7], uints[8])
                );
            }
        
            /**
             * @dev Call hashToSign - Solidity ABI encoding limitation workaround, hopefully temporary.
             */
            function hashToSign_(
                address[7] addrs,
                uint[9] uints,
                FeeMethod feeMethod,
                SaleKindInterface.Side side,
                SaleKindInterface.SaleKind saleKind,
                AuthenticatedProxy.HowToCall howToCall,
                bytes calldata,
                bytes replacementPattern,
                bytes staticExtradata)
                public
                pure
                returns (bytes32)
            { 
                return hashToSign(
                  Order(addrs[0], addrs[1], addrs[2], uints[0], uints[1], uints[2], uints[3], addrs[3], feeMethod, side, saleKind, addrs[4], howToCall, calldata, replacementPattern, addrs[5], staticExtradata, ERC20(addrs[6]), uints[4], uints[5], uints[6], uints[7], uints[8])
                );
            }
        
            /**
             * @dev Call validateOrderParameters - Solidity ABI encoding limitation workaround, hopefully temporary.
             */
            function validateOrderParameters_ (
                address[7] addrs,
                uint[9] uints,
                FeeMethod feeMethod,
                SaleKindInterface.Side side,
                SaleKindInterface.SaleKind saleKind,
                AuthenticatedProxy.HowToCall howToCall,
                bytes calldata,
                bytes replacementPattern,
                bytes staticExtradata)
                view
                public
                returns (bool)
            {
                Order memory order = Order(addrs[0], addrs[1], addrs[2], uints[0], uints[1], uints[2], uints[3], addrs[3], feeMethod, side, saleKind, addrs[4], howToCall, calldata, replacementPattern, addrs[5], staticExtradata, ERC20(addrs[6]), uints[4], uints[5], uints[6], uints[7], uints[8]);
                return validateOrderParameters(
                  order
                );
            }
        
            /**
             * @dev Call validateOrder - Solidity ABI encoding limitation workaround, hopefully temporary.
             */
            function validateOrder_ (
                address[7] addrs,
                uint[9] uints,
                FeeMethod feeMethod,
                SaleKindInterface.Side side,
                SaleKindInterface.SaleKind saleKind,
                AuthenticatedProxy.HowToCall howToCall,
                bytes calldata,
                bytes replacementPattern,
                bytes staticExtradata,
                uint8 v,
                bytes32 r,
                bytes32 s)
                view
                public
                returns (bool)
            {
                Order memory order = Order(addrs[0], addrs[1], addrs[2], uints[0], uints[1], uints[2], uints[3], addrs[3], feeMethod, side, saleKind, addrs[4], howToCall, calldata, replacementPattern, addrs[5], staticExtradata, ERC20(addrs[6]), uints[4], uints[5], uints[6], uints[7], uints[8]);
                return validateOrder(
                  hashToSign(order),
                  order,
                  Sig(v, r, s)
                );
            }
        
            /**
             * @dev Call approveOrder - Solidity ABI encoding limitation workaround, hopefully temporary.
             */
            function approveOrder_ (
                address[7] addrs,
                uint[9] uints,
                FeeMethod feeMethod,
                SaleKindInterface.Side side,
                SaleKindInterface.SaleKind saleKind,
                AuthenticatedProxy.HowToCall howToCall,
                bytes calldata,
                bytes replacementPattern,
                bytes staticExtradata,
                bool orderbookInclusionDesired) 
                public
            {
                Order memory order = Order(addrs[0], addrs[1], addrs[2], uints[0], uints[1], uints[2], uints[3], addrs[3], feeMethod, side, saleKind, addrs[4], howToCall, calldata, replacementPattern, addrs[5], staticExtradata, ERC20(addrs[6]), uints[4], uints[5], uints[6], uints[7], uints[8]);
                return approveOrder(order, orderbookInclusionDesired);
            }
        
            /**
             * @dev Call cancelOrder - Solidity ABI encoding limitation workaround, hopefully temporary.
             */
            function cancelOrder_(
                address[7] addrs,
                uint[9] uints,
                FeeMethod feeMethod,
                SaleKindInterface.Side side,
                SaleKindInterface.SaleKind saleKind,
                AuthenticatedProxy.HowToCall howToCall,
                bytes calldata,
                bytes replacementPattern,
                bytes staticExtradata,
                uint8 v,
                bytes32 r,
                bytes32 s)
                public
            {
        
                return cancelOrder(
                  Order(addrs[0], addrs[1], addrs[2], uints[0], uints[1], uints[2], uints[3], addrs[3], feeMethod, side, saleKind, addrs[4], howToCall, calldata, replacementPattern, addrs[5], staticExtradata, ERC20(addrs[6]), uints[4], uints[5], uints[6], uints[7], uints[8]),
                  Sig(v, r, s)
                );
            }
        
            /**
             * @dev Call calculateCurrentPrice - Solidity ABI encoding limitation workaround, hopefully temporary.
             */
            function calculateCurrentPrice_(
                address[7] addrs,
                uint[9] uints,
                FeeMethod feeMethod,
                SaleKindInterface.Side side,
                SaleKindInterface.SaleKind saleKind,
                AuthenticatedProxy.HowToCall howToCall,
                bytes calldata,
                bytes replacementPattern,
                bytes staticExtradata)
                public
                view
                returns (uint)
            {
                return calculateCurrentPrice(
                  Order(addrs[0], addrs[1], addrs[2], uints[0], uints[1], uints[2], uints[3], addrs[3], feeMethod, side, saleKind, addrs[4], howToCall, calldata, replacementPattern, addrs[5], staticExtradata, ERC20(addrs[6]), uints[4], uints[5], uints[6], uints[7], uints[8])
                );
            }
        
            /**
             * @dev Call ordersCanMatch - Solidity ABI encoding limitation workaround, hopefully temporary.
             */
            function ordersCanMatch_(
                address[14] addrs,
                uint[18] uints,
                uint8[8] feeMethodsSidesKindsHowToCalls,
                bytes calldataBuy,
                bytes calldataSell,
                bytes replacementPatternBuy,
                bytes replacementPatternSell,
                bytes staticExtradataBuy,
                bytes staticExtradataSell)
                public
                view
                returns (bool)
            {
                Order memory buy = Order(addrs[0], addrs[1], addrs[2], uints[0], uints[1], uints[2], uints[3], addrs[3], FeeMethod(feeMethodsSidesKindsHowToCalls[0]), SaleKindInterface.Side(feeMethodsSidesKindsHowToCalls[1]), SaleKindInterface.SaleKind(feeMethodsSidesKindsHowToCalls[2]), addrs[4], AuthenticatedProxy.HowToCall(feeMethodsSidesKindsHowToCalls[3]), calldataBuy, replacementPatternBuy, addrs[5], staticExtradataBuy, ERC20(addrs[6]), uints[4], uints[5], uints[6], uints[7], uints[8]);
                Order memory sell = Order(addrs[7], addrs[8], addrs[9], uints[9], uints[10], uints[11], uints[12], addrs[10], FeeMethod(feeMethodsSidesKindsHowToCalls[4]), SaleKindInterface.Side(feeMethodsSidesKindsHowToCalls[5]), SaleKindInterface.SaleKind(feeMethodsSidesKindsHowToCalls[6]), addrs[11], AuthenticatedProxy.HowToCall(feeMethodsSidesKindsHowToCalls[7]), calldataSell, replacementPatternSell, addrs[12], staticExtradataSell, ERC20(addrs[13]), uints[13], uints[14], uints[15], uints[16], uints[17]);
                return ordersCanMatch(
                  buy,
                  sell
                );
            }
        
            /**
             * @dev Return whether or not two orders' calldata specifications can match
             * @param buyCalldata Buy-side order calldata
             * @param buyReplacementPattern Buy-side order calldata replacement mask
             * @param sellCalldata Sell-side order calldata
             * @param sellReplacementPattern Sell-side order calldata replacement mask
             * @return Whether the orders' calldata can be matched
             */
            function orderCalldataCanMatch(bytes buyCalldata, bytes buyReplacementPattern, bytes sellCalldata, bytes sellReplacementPattern)
                public
                pure
                returns (bool)
            {
                if (buyReplacementPattern.length > 0) {
                  ArrayUtils.guardedArrayReplace(buyCalldata, sellCalldata, buyReplacementPattern);
                }
                if (sellReplacementPattern.length > 0) {
                  ArrayUtils.guardedArrayReplace(sellCalldata, buyCalldata, sellReplacementPattern);
                }
                return ArrayUtils.arrayEq(buyCalldata, sellCalldata);
            }
        
            /**
             * @dev Call calculateMatchPrice - Solidity ABI encoding limitation workaround, hopefully temporary.
             */
            function calculateMatchPrice_(
                address[14] addrs,
                uint[18] uints,
                uint8[8] feeMethodsSidesKindsHowToCalls,
                bytes calldataBuy,
                bytes calldataSell,
                bytes replacementPatternBuy,
                bytes replacementPatternSell,
                bytes staticExtradataBuy,
                bytes staticExtradataSell)
                public
                view
                returns (uint)
            {
                Order memory buy = Order(addrs[0], addrs[1], addrs[2], uints[0], uints[1], uints[2], uints[3], addrs[3], FeeMethod(feeMethodsSidesKindsHowToCalls[0]), SaleKindInterface.Side(feeMethodsSidesKindsHowToCalls[1]), SaleKindInterface.SaleKind(feeMethodsSidesKindsHowToCalls[2]), addrs[4], AuthenticatedProxy.HowToCall(feeMethodsSidesKindsHowToCalls[3]), calldataBuy, replacementPatternBuy, addrs[5], staticExtradataBuy, ERC20(addrs[6]), uints[4], uints[5], uints[6], uints[7], uints[8]);
                Order memory sell = Order(addrs[7], addrs[8], addrs[9], uints[9], uints[10], uints[11], uints[12], addrs[10], FeeMethod(feeMethodsSidesKindsHowToCalls[4]), SaleKindInterface.Side(feeMethodsSidesKindsHowToCalls[5]), SaleKindInterface.SaleKind(feeMethodsSidesKindsHowToCalls[6]), addrs[11], AuthenticatedProxy.HowToCall(feeMethodsSidesKindsHowToCalls[7]), calldataSell, replacementPatternSell, addrs[12], staticExtradataSell, ERC20(addrs[13]), uints[13], uints[14], uints[15], uints[16], uints[17]);
                return calculateMatchPrice(
                  buy,
                  sell
                );
            }
        
            /**
             * @dev Call atomicMatch - Solidity ABI encoding limitation workaround, hopefully temporary.
             */
            function atomicMatch_(
                address[14] addrs,
                uint[18] uints,
                uint8[8] feeMethodsSidesKindsHowToCalls,
                bytes calldataBuy,
                bytes calldataSell,
                bytes replacementPatternBuy,
                bytes replacementPatternSell,
                bytes staticExtradataBuy,
                bytes staticExtradataSell,
                uint8[2] vs,
                bytes32[5] rssMetadata)
                public
                payable
            {
        
                return atomicMatch(
                  Order(addrs[0], addrs[1], addrs[2], uints[0], uints[1], uints[2], uints[3], addrs[3], FeeMethod(feeMethodsSidesKindsHowToCalls[0]), SaleKindInterface.Side(feeMethodsSidesKindsHowToCalls[1]), SaleKindInterface.SaleKind(feeMethodsSidesKindsHowToCalls[2]), addrs[4], AuthenticatedProxy.HowToCall(feeMethodsSidesKindsHowToCalls[3]), calldataBuy, replacementPatternBuy, addrs[5], staticExtradataBuy, ERC20(addrs[6]), uints[4], uints[5], uints[6], uints[7], uints[8]),
                  Sig(vs[0], rssMetadata[0], rssMetadata[1]),
                  Order(addrs[7], addrs[8], addrs[9], uints[9], uints[10], uints[11], uints[12], addrs[10], FeeMethod(feeMethodsSidesKindsHowToCalls[4]), SaleKindInterface.Side(feeMethodsSidesKindsHowToCalls[5]), SaleKindInterface.SaleKind(feeMethodsSidesKindsHowToCalls[6]), addrs[11], AuthenticatedProxy.HowToCall(feeMethodsSidesKindsHowToCalls[7]), calldataSell, replacementPatternSell, addrs[12], staticExtradataSell, ERC20(addrs[13]), uints[13], uints[14], uints[15], uints[16], uints[17]),
                  Sig(vs[1], rssMetadata[2], rssMetadata[3]),
                  rssMetadata[4]
                );
            }
        
        }
        
        contract WyvernExchange is Exchange {
        
            string public constant name = "Project Wyvern Exchange";
        
            string public constant version = "2.2";
        
            string public constant codename = "Lambton Worm";
        
            /**
             * @dev Initialize a WyvernExchange instance
             * @param registryAddress Address of the registry instance which this Exchange instance will use
             * @param tokenAddress Address of the token used for protocol fees
             */
            constructor (ProxyRegistry registryAddress, TokenTransferProxy tokenTransferProxyAddress, ERC20 tokenAddress, address protocolFeeAddress) public {
                registry = registryAddress;
                tokenTransferProxy = tokenTransferProxyAddress;
                exchangeToken = tokenAddress;
                protocolFeeRecipient = protocolFeeAddress;
                owner = msg.sender;
            }
        
        }
        
        library SaleKindInterface {
        
            /**
             * Side: buy or sell.
             */
            enum Side { Buy, Sell }
        
            /**
             * Currently supported kinds of sale: fixed price, Dutch auction. 
             * English auctions cannot be supported without stronger escrow guarantees.
             * Future interesting options: Vickrey auction, nonlinear Dutch auctions.
             */
            enum SaleKind { FixedPrice, DutchAuction }
        
            /**
             * @dev Check whether the parameters of a sale are valid
             * @param saleKind Kind of sale
             * @param expirationTime Order expiration time
             * @return Whether the parameters were valid
             */
            function validateParameters(SaleKind saleKind, uint expirationTime)
                pure
                internal
                returns (bool)
            {
                /* Auctions must have a set expiration date. */
                return (saleKind == SaleKind.FixedPrice || expirationTime > 0);
            }
        
            /**
             * @dev Return whether or not an order can be settled
             * @dev Precondition: parameters have passed validateParameters
             * @param listingTime Order listing time
             * @param expirationTime Order expiration time
             */
            function canSettleOrder(uint listingTime, uint expirationTime)
                view
                internal
                returns (bool)
            {
                return (listingTime < now) && (expirationTime == 0 || now < expirationTime);
            }
        
            /**
             * @dev Calculate the settlement price of an order
             * @dev Precondition: parameters have passed validateParameters.
             * @param side Order side
             * @param saleKind Method of sale
             * @param basePrice Order base price
             * @param extra Order extra price data
             * @param listingTime Order listing time
             * @param expirationTime Order expiration time
             */
            function calculateFinalPrice(Side side, SaleKind saleKind, uint basePrice, uint extra, uint listingTime, uint expirationTime)
                view
                internal
                returns (uint finalPrice)
            {
                if (saleKind == SaleKind.FixedPrice) {
                    return basePrice;
                } else if (saleKind == SaleKind.DutchAuction) {
                    uint diff = SafeMath.div(SafeMath.mul(extra, SafeMath.sub(now, listingTime)), SafeMath.sub(expirationTime, listingTime));
                    if (side == Side.Sell) {
                        /* Sell-side - start price: basePrice. End price: basePrice - extra. */
                        return SafeMath.sub(basePrice, diff);
                    } else {
                        /* Buy-side - start price: basePrice. End price: basePrice + extra. */
                        return SafeMath.add(basePrice, diff);
                    }
                }
            }
        
        }
        
        contract ProxyRegistry is Ownable {
        
            /* DelegateProxy implementation contract. Must be initialized. */
            address public delegateProxyImplementation;
        
            /* Authenticated proxies by user. */
            mapping(address => OwnableDelegateProxy) public proxies;
        
            /* Contracts pending access. */
            mapping(address => uint) public pending;
        
            /* Contracts allowed to call those proxies. */
            mapping(address => bool) public contracts;
        
            /* Delay period for adding an authenticated contract.
               This mitigates a particular class of potential attack on the Wyvern DAO (which owns this registry) - if at any point the value of assets held by proxy contracts exceeded the value of half the WYV supply (votes in the DAO),
               a malicious but rational attacker could buy half the Wyvern and grant themselves access to all the proxy contracts. A delay period renders this attack nonthreatening - given two weeks, if that happened, users would have
               plenty of time to notice and transfer their assets.
            */
            uint public DELAY_PERIOD = 2 weeks;
        
            /**
             * Start the process to enable access for specified contract. Subject to delay period.
             *
             * @dev ProxyRegistry owner only
             * @param addr Address to which to grant permissions
             */
            function startGrantAuthentication (address addr)
                public
                onlyOwner
            {
                require(!contracts[addr] && pending[addr] == 0);
                pending[addr] = now;
            }
        
            /**
             * End the process to nable access for specified contract after delay period has passed.
             *
             * @dev ProxyRegistry owner only
             * @param addr Address to which to grant permissions
             */
            function endGrantAuthentication (address addr)
                public
                onlyOwner
            {
                require(!contracts[addr] && pending[addr] != 0 && ((pending[addr] + DELAY_PERIOD) < now));
                pending[addr] = 0;
                contracts[addr] = true;
            }
        
            /**
             * Revoke access for specified contract. Can be done instantly.
             *
             * @dev ProxyRegistry owner only
             * @param addr Address of which to revoke permissions
             */    
            function revokeAuthentication (address addr)
                public
                onlyOwner
            {
                contracts[addr] = false;
            }
        
            /**
             * Register a proxy contract with this registry
             *
             * @dev Must be called by the user which the proxy is for, creates a new AuthenticatedProxy
             * @return New AuthenticatedProxy contract
             */
            function registerProxy()
                public
                returns (OwnableDelegateProxy proxy)
            {
                require(proxies[msg.sender] == address(0));
                proxy = new OwnableDelegateProxy(msg.sender, delegateProxyImplementation, abi.encodeWithSignature("initialize(address,address)", msg.sender, address(this)));
                proxies[msg.sender] = proxy;
                return proxy;
            }
        
        }
        
        contract TokenTransferProxy {
        
            /* Authentication registry. */
            ProxyRegistry public registry;
        
            /**
             * Call ERC20 `transferFrom`
             *
             * @dev Authenticated contract only
             * @param token ERC20 token address
             * @param from From address
             * @param to To address
             * @param amount Transfer amount
             */
            function transferFrom(address token, address from, address to, uint amount)
                public
                returns (bool)
            {
                require(registry.contracts(msg.sender));
                return ERC20(token).transferFrom(from, to, amount);
            }
        
        }
        
        contract OwnedUpgradeabilityStorage {
        
          // Current implementation
          address internal _implementation;
        
          // Owner of the contract
          address private _upgradeabilityOwner;
        
          /**
           * @dev Tells the address of the owner
           * @return the address of the owner
           */
          function upgradeabilityOwner() public view returns (address) {
            return _upgradeabilityOwner;
          }
        
          /**
           * @dev Sets the address of the owner
           */
          function setUpgradeabilityOwner(address newUpgradeabilityOwner) internal {
            _upgradeabilityOwner = newUpgradeabilityOwner;
          }
        
          /**
          * @dev Tells the address of the current implementation
          * @return address of the current implementation
          */
          function implementation() public view returns (address) {
            return _implementation;
          }
        
          /**
          * @dev Tells the proxy type (EIP 897)
          * @return Proxy type, 2 for forwarding proxy
          */
          function proxyType() public pure returns (uint256 proxyTypeId) {
            return 2;
          }
        }
        
        contract AuthenticatedProxy is TokenRecipient, OwnedUpgradeabilityStorage {
        
            /* Whether initialized. */
            bool initialized = false;
        
            /* Address which owns this proxy. */
            address public user;
        
            /* Associated registry with contract authentication information. */
            ProxyRegistry public registry;
        
            /* Whether access has been revoked. */
            bool public revoked;
        
            /* Delegate call could be used to atomically transfer multiple assets owned by the proxy contract with one order. */
            enum HowToCall { Call, DelegateCall }
        
            /* Event fired when the proxy access is revoked or unrevoked. */
            event Revoked(bool revoked);
        
            /**
             * Initialize an AuthenticatedProxy
             *
             * @param addrUser Address of user on whose behalf this proxy will act
             * @param addrRegistry Address of ProxyRegistry contract which will manage this proxy
             */
            function initialize (address addrUser, ProxyRegistry addrRegistry)
                public
            {
                require(!initialized);
                initialized = true;
                user = addrUser;
                registry = addrRegistry;
            }
        
            /**
             * Set the revoked flag (allows a user to revoke ProxyRegistry access)
             *
             * @dev Can be called by the user only
             * @param revoke Whether or not to revoke access
             */
            function setRevoke(bool revoke)
                public
            {
                require(msg.sender == user);
                revoked = revoke;
                emit Revoked(revoke);
            }
        
            /**
             * Execute a message call from the proxy contract
             *
             * @dev Can be called by the user, or by a contract authorized by the registry as long as the user has not revoked access
             * @param dest Address to which the call will be sent
             * @param howToCall Which kind of call to make
             * @param calldata Calldata to send
             * @return Result of the call (success or failure)
             */
            function proxy(address dest, HowToCall howToCall, bytes calldata)
                public
                returns (bool result)
            {
                require(msg.sender == user || (!revoked && registry.contracts(msg.sender)));
                if (howToCall == HowToCall.Call) {
                    result = dest.call(calldata);
                } else if (howToCall == HowToCall.DelegateCall) {
                    result = dest.delegatecall(calldata);
                }
                return result;
            }
        
            /**
             * Execute a message call and assert success
             * 
             * @dev Same functionality as `proxy`, just asserts the return value
             * @param dest Address to which the call will be sent
             * @param howToCall What kind of call to make
             * @param calldata Calldata to send
             */
            function proxyAssert(address dest, HowToCall howToCall, bytes calldata)
                public
            {
                require(proxy(dest, howToCall, calldata));
            }
        
        }
        
        contract Proxy {
        
          /**
          * @dev Tells the address of the implementation where every call will be delegated.
          * @return address of the implementation to which it will be delegated
          */
          function implementation() public view returns (address);
        
          /**
          * @dev Tells the type of proxy (EIP 897)
          * @return Type of proxy, 2 for upgradeable proxy
          */
          function proxyType() public pure returns (uint256 proxyTypeId);
        
          /**
          * @dev Fallback function allowing to perform a delegatecall to the given implementation.
          * This function will return whatever the implementation call returns
          */
          function () payable public {
            address _impl = implementation();
            require(_impl != address(0));
        
            assembly {
              let ptr := mload(0x40)
              calldatacopy(ptr, 0, calldatasize)
              let result := delegatecall(gas, _impl, ptr, calldatasize, 0, 0)
              let size := returndatasize
              returndatacopy(ptr, 0, size)
        
              switch result
              case 0 { revert(ptr, size) }
              default { return(ptr, size) }
            }
          }
        }
        
        contract OwnedUpgradeabilityProxy is Proxy, OwnedUpgradeabilityStorage {
          /**
          * @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 ProxyOwnershipTransferred(address previousOwner, address newOwner);
        
          /**
          * @dev This event will be emitted every time the implementation gets upgraded
          * @param implementation representing the address of the upgraded implementation
          */
          event Upgraded(address indexed implementation);
        
          /**
          * @dev Upgrades the implementation address
          * @param implementation representing the address of the new implementation to be set
          */
          function _upgradeTo(address implementation) internal {
            require(_implementation != implementation);
            _implementation = implementation;
            emit Upgraded(implementation);
          }
        
          /**
          * @dev Throws if called by any account other than the owner.
          */
          modifier onlyProxyOwner() {
            require(msg.sender == proxyOwner());
            _;
          }
        
          /**
           * @dev Tells the address of the proxy owner
           * @return the address of the proxy owner
           */
          function proxyOwner() public view returns (address) {
            return upgradeabilityOwner();
          }
        
          /**
           * @dev Allows the current owner to transfer control of the contract to a newOwner.
           * @param newOwner The address to transfer ownership to.
           */
          function transferProxyOwnership(address newOwner) public onlyProxyOwner {
            require(newOwner != address(0));
            emit ProxyOwnershipTransferred(proxyOwner(), newOwner);
            setUpgradeabilityOwner(newOwner);
          }
        
          /**
           * @dev Allows the upgradeability owner to upgrade the current implementation of the proxy.
           * @param implementation representing the address of the new implementation to be set.
           */
          function upgradeTo(address implementation) public onlyProxyOwner {
            _upgradeTo(implementation);
          }
        
          /**
           * @dev Allows the upgradeability owner to upgrade the current implementation of the proxy
           * and delegatecall the new implementation for initialization.
           * @param implementation representing the address of the new implementation to be set.
           * @param data represents the msg.data to bet sent in the low level call. This parameter may include the function
           * signature of the implementation to be called with the needed payload
           */
          function upgradeToAndCall(address implementation, bytes data) payable public onlyProxyOwner {
            upgradeTo(implementation);
            require(address(this).delegatecall(data));
          }
        }
        
        contract OwnableDelegateProxy is OwnedUpgradeabilityProxy {
        
            constructor(address owner, address initialImplementation, bytes calldata)
                public
            {
                setUpgradeabilityOwner(owner);
                _upgradeTo(initialImplementation);
                require(initialImplementation.delegatecall(calldata));
            }
        
        }

        File 2 of 4: AscendedNFT
        // SPDX-License-Identifier: MIT
        pragma solidity ^0.8.0;
        
        /* ERC721I - ERC721I (ERC721 0xInuarashi Edition) - Gas Optimized
            Author: 0xInuarashi || https://twitter.com/0xinuarashi 
            Open Source: with the efforts of the [0x Collective] <3 */
        
        contract ERC721I {
        
            string public name; string public symbol;
            string internal baseTokenURI; string internal baseTokenURI_EXT;
            constructor(string memory name_, string memory symbol_) { name = name_; symbol = symbol_; }
        
            uint256 public totalSupply; 
            mapping(uint256 => address) public ownerOf; 
            mapping(address => uint256) public balanceOf; 
        
            mapping(uint256 => address) public getApproved; 
            mapping(address => mapping(address => bool)) public isApprovedForAll; 
        
            // Events
            event Transfer(address indexed from, address indexed to, uint256 indexed tokenId);
            event Mint(address indexed to, uint256 tokenId);
            event Approval(address indexed owner, address indexed approved, uint256 indexed tokenId);
            event ApprovalForAll(address indexed owner, address indexed operator, bool approved);
        
            // // internal write functions
            // mint
            function _mint(address to_, uint256 tokenId_) internal virtual {
                require(to_ != address(0x0), "ERC721I: _mint() Mint to Zero Address");
                require(ownerOf[tokenId_] == address(0x0), "ERC721I: _mint() Token to Mint Already Exists!");
        
                // ERC721I Starts Here
                balanceOf[to_]++;
                ownerOf[tokenId_] = to_;
        
                // totalSupply++; // I removed this for a bit better gas management on multi-mints ~ 0xInuarashi
                
                // ERC721I Ends Here
        
                emit Transfer(address(0x0), to_, tokenId_);
                
                // emit Mint(to_, tokenId_); // I removed this for a bit better gas management on multi-mints ~ 0xInuarashi
            }
        
            // transfer
            function _transfer(address from_, address to_, uint256 tokenId_) internal virtual {
                require(from_ == ownerOf[tokenId_], "ERC721I: _transfer() Transfer Not Owner of Token!");
                require(to_ != address(0x0), "ERC721I: _transfer() Transfer to Zero Address!");
        
                // ERC721I Starts Here
                // checks if there is an approved address clears it if there is
                if (getApproved[tokenId_] != address(0x0)) { 
                    _approve(address(0x0), tokenId_); 
                } 
        
                ownerOf[tokenId_] = to_; 
                balanceOf[from_]--;
                balanceOf[to_]++;
                // ERC721I Ends Here
        
                emit Transfer(from_, to_, tokenId_);
            }
        
            // approve
            function _approve(address to_, uint256 tokenId_) internal virtual {
                if (getApproved[tokenId_] != to_) {
                    getApproved[tokenId_] = to_;
                    emit Approval(ownerOf[tokenId_], to_, tokenId_);
                }
            }
            function _setApprovalForAll(address owner_, address operator_, bool approved_) internal virtual {
                require(owner_ != operator_, "ERC721I: _setApprovalForAll() Owner must not be the Operator!");
                isApprovedForAll[owner_][operator_] = approved_;
                emit ApprovalForAll(owner_, operator_, approved_);
            }
        
            // token uri
            function _setBaseTokenURI(string memory uri_) internal virtual {
                baseTokenURI = uri_;
            }
            function _setBaseTokenURI_EXT(string memory ext_) internal virtual {
                baseTokenURI_EXT = ext_;
            }
        
            // // Internal View Functions
            // Embedded Libraries
            function _toString(uint256 value_) internal pure returns (string memory) {
                if (value_ == 0) { return "0"; }
                uint256 _iterate = value_; uint256 _digits;
                while (_iterate != 0) { _digits++; _iterate /= 10; } // get digits in value_
                bytes memory _buffer = new bytes(_digits);
                while (value_ != 0) { _digits--; _buffer[_digits] = bytes1(uint8(48 + uint256(value_ % 10 ))); value_ /= 10; } // create bytes of value_
                return string(_buffer); // return string converted bytes of value_
            }
        
            // Functional Views
            function _isApprovedOrOwner(address spender_, uint256 tokenId_) internal view virtual returns (bool) {
                require(ownerOf[tokenId_] != address(0x0), "ERC721I: _isApprovedOrOwner() Owner is Zero Address!");
                address _owner = ownerOf[tokenId_];
                return (spender_ == _owner || spender_ == getApproved[tokenId_] || isApprovedForAll[_owner][spender_]);
            }
            function _exists(uint256 tokenId_) internal view virtual returns (bool) {
                return ownerOf[tokenId_] != address(0x0);
            }
        
            // // public write functions
            function approve(address to_, uint256 tokenId_) public virtual {
                address _owner = ownerOf[tokenId_];
                require(to_ != _owner, "ERC721I: approve() Cannot approve yourself!");
                require(msg.sender == _owner || isApprovedForAll[_owner][msg.sender], "ERC721I: Caller not owner or Approved!");
                _approve(to_, tokenId_);
            }
            function setApprovalForAll(address operator_, bool approved_) public virtual {
                _setApprovalForAll(msg.sender, operator_, approved_);
            }
            function transferFrom(address from_, address to_, uint256 tokenId_) public virtual {
                require(_isApprovedOrOwner(msg.sender, tokenId_), "ERC721I: transferFrom() _isApprovedOrOwner = false!");
                _transfer(from_, to_, tokenId_);
            }
            function safeTransferFrom(address from_, address to_, uint256 tokenId_, bytes memory data_) public virtual {
                transferFrom(from_, to_, tokenId_);
                if (to_.code.length != 0) {
                    (, bytes memory _returned) = to_.staticcall(abi.encodeWithSelector(0x150b7a02, msg.sender, from_, tokenId_, data_));
                    bytes4 _selector = abi.decode(_returned, (bytes4));
                    require(_selector == 0x150b7a02, "ERC721I: safeTransferFrom() to_ not ERC721Receivable!");
                }
            }
            function safeTransferFrom(address from_, address to_, uint256 tokenId_) public virtual {
                safeTransferFrom(from_, to_, tokenId_, "");
            }
        
            // 0xInuarashi Custom Functions
            function multiTransferFrom(address from_, address to_, uint256[] memory tokenIds_) public virtual {
                for (uint256 i = 0; i < tokenIds_.length; i++) {
                    transferFrom(from_, to_, tokenIds_[i]);
                }
            }
            function multiSafeTransferFrom(address from_, address to_, uint256[] memory tokenIds_, bytes memory data_) public virtual {
                for (uint256 i = 0; i < tokenIds_.length; i++) {
                    safeTransferFrom(from_, to_, tokenIds_[i], data_);
                }
            }
        
            // OZ Standard Stuff
            function supportsInterface(bytes4 interfaceId_) public pure returns (bool) {
                return (interfaceId_ == 0x80ac58cd || interfaceId_ == 0x5b5e139f);
            }
        
            function tokenURI(uint256 tokenId_) public view virtual returns (string memory) {
                require(ownerOf[tokenId_] != address(0x0), "ERC721I: tokenURI() Token does not exist!");
                return string(abi.encodePacked(baseTokenURI, _toString(tokenId_), baseTokenURI_EXT));
            }
            // // public view functions
            // never use these for functions ever, they are expensive af and for view only (this will be an issue in the future for interfaces)
            function walletOfOwner(address address_) public virtual view returns (uint256[] memory) {
                uint256 _balance = balanceOf[address_];
                uint256[] memory _tokens = new uint256[] (_balance);
                uint256 _index;
                uint256 _loopThrough = totalSupply;
                for (uint256 i = 0; i < _loopThrough; i++) {
                    if (ownerOf[i] == address(0x0) && _tokens[_balance - 1] == 0) { _loopThrough++; }
                    if (ownerOf[i] == address_) { _tokens[_index] = i; _index++; }
                }
                return _tokens;
            }
        
            // so not sure when this will ever be really needed but it conforms to erc721 enumerable
            function tokenOfOwnerByIndex(address address_, uint256 index_) public virtual view returns (uint256) {
                uint256[] memory _wallet = walletOfOwner(address_);
                return _wallet[index_];
            }
        }
        
        abstract contract Ownable {
            address public owner;
            event OwnershipTransferred(address indexed oldOwner_, address indexed newOwner_);
            constructor() { owner = msg.sender; }
            modifier onlyOwner {
                require(owner == msg.sender, "Ownable: caller is not the owner");
                _;
            }
            function _transferOwnership(address newOwner_) internal virtual {
                address _oldOwner = owner;
                owner = newOwner_;
                emit OwnershipTransferred(_oldOwner, newOwner_);    
            }
            function transferOwnership(address newOwner_) public virtual onlyOwner {
                require(newOwner_ != address(0x0), "Ownable: new owner is the zero address!");
                _transferOwnership(newOwner_);
            }
            function renounceOwnership() public virtual onlyOwner {
                _transferOwnership(address(0x0));
            }
        }
        
        abstract contract MerkleWhitelist {
            bytes32 internal _merkleRoot;
            function _setMerkleRoot(bytes32 merkleRoot_) internal virtual {
                _merkleRoot = merkleRoot_;
            }
            function isWhitelisted(address address_, bytes32[] memory proof_) public view returns (bool) {
                bytes32 _leaf = keccak256(abi.encodePacked(address_));
                for (uint256 i = 0; i < proof_.length; i++) {
                    _leaf = _leaf < proof_[i] ? keccak256(abi.encodePacked(_leaf, proof_[i])) : keccak256(abi.encodePacked(proof_[i], _leaf));
                }
                return _leaf == _merkleRoot;
            }
        }
        
        abstract contract Security {
            // Prevent Smart Contracts
            modifier onlySender {
                require(msg.sender == tx.origin, "No Smart Contracts!"); _; }
        }
        
        abstract contract PublicMint {
            // Public Minting
            bool public _publicMintEnabled; uint256 public _publicMintTime;
            function _setPublicMint(bool bool_, uint256 time_) internal {
                _publicMintEnabled = bool_; _publicMintTime = time_; }
            modifier publicMintEnabled { 
                require(_publicMintEnabled && _publicMintTime <= block.timestamp, 
                    "Public Mint is not enabled yet!"); _; }
            function publicMintStatus() external view returns (bool) {
                return _publicMintEnabled && _publicMintTime <= block.timestamp; }
        }
        
        abstract contract WhitelistMint {
            // Whitelist Minting
            bool internal _whitelistMintEnabled; uint256 public _whitelistMintTime;
            function _setWhitelistMint(bool bool_, uint256 time_) internal {
                _whitelistMintEnabled = bool_; _whitelistMintTime = time_; }
            modifier whitelistMintEnabled {
                require(_whitelistMintEnabled && _whitelistMintTime <= block.timestamp, 
                    "Whitelist Mint is not enabled yet!"); _; } 
            function whitelistMintStatus() external view returns (bool) {
                return _whitelistMintEnabled && _whitelistMintTime <= block.timestamp; }
        }
        
        
        // Open0x Presets //
        // ERC721I_OW (ERC721I 0xInuarashi Edition, Ownable, Whitelist) 
        
        abstract contract ERC721I_OW is ERC721I, Ownable, MerkleWhitelist, Security, PublicMint, WhitelistMint {
        
            constructor(string memory name_, string memory symbol_) ERC721I(name_, symbol_) {}
        
            // Ownable Functions for ERC721I_OW //
            
            // Token URI
            function setBaseTokenURI(string calldata uri_) external onlyOwner { 
                _setBaseTokenURI(uri_);
            }
            function setBaseTokenURI_EXT(string calldata ext_) external onlyOwner {
                _setBaseTokenURI_EXT(ext_);
            }
        
            // MerkleRoot
            function setMerkleRoot(bytes32 merkleRoot_) external onlyOwner {
                _setMerkleRoot(merkleRoot_);
            }
        
            // Public Mint
            function setPublicMint(bool bool_, uint256 time_) external onlyOwner {
                _setPublicMint(bool_, time_);
            }
            
            // Whitelist Mint
            function setWhitelistMint(bool bool_, uint256 time_) external onlyOwner {
                _setWhitelistMint(bool_, time_);
            }
        
        }
        
        abstract contract PayableGovernance is Ownable {
            // Special Access
            address _payableGovernanceSetter;
            constructor() payable { _payableGovernanceSetter = msg.sender; }
            modifier onlyPayableGovernanceSetter {
                require(msg.sender == _payableGovernanceSetter, "PayableGovernance: Caller is not Setter!"); _; }
            function reouncePayableGovernancePermissions() public onlyPayableGovernanceSetter {
                _payableGovernanceSetter = address(0x0); }
        
            // Receivable Fallback
            event Received(address from, uint amount);
            receive() external payable { emit Received(msg.sender, msg.value); }
        
            // Required Variables
            address payable[] internal _payableGovernanceAddresses;
            uint256[] internal _payableGovernanceShares;    
            mapping(address => bool) public addressToEmergencyUnlocked;
        
            // Withdraw Functionality
            function _withdraw(address payable address_, uint256 amount_) internal {
                (bool success, ) = payable(address_).call{value: amount_}("");
                require(success, "Transfer failed");
            }
        
            // Governance Functions
            function setPayableGovernanceShareholders(address payable[] memory addresses_, uint256[] memory shares_) public onlyPayableGovernanceSetter {
                require(_payableGovernanceAddresses.length == 0 && _payableGovernanceShares.length == 0, "Payable Governance already set! To set again, reset first!");
                require(addresses_.length == shares_.length, "Address and Shares length mismatch!");
                uint256 _totalShares;
                for (uint256 i = 0; i < addresses_.length; i++) {
                    _totalShares += shares_[i];
                    _payableGovernanceAddresses.push(addresses_[i]);
                    _payableGovernanceShares.push(shares_[i]);
                }
                require(_totalShares == 1000, "Total Shares is not 1000!");
            }
            function resetPayableGovernanceShareholders() public onlyPayableGovernanceSetter {
                while (_payableGovernanceAddresses.length != 0) {
                    _payableGovernanceAddresses.pop(); }
                while (_payableGovernanceShares.length != 0) {
                    _payableGovernanceShares.pop(); }
            }
        
            // Governance View Functions
            function balance() public view returns (uint256) {
                return address(this).balance;
            }
            function payableGovernanceAddresses() public view returns (address payable[] memory) {
                return _payableGovernanceAddresses;
            }
            function payableGovernanceShares() public view returns (uint256[] memory) {
                return _payableGovernanceShares;
            }
        
            // Withdraw Functions
            function withdrawEther() public onlyOwner {
                // require that there has been payable governance set.
                require(_payableGovernanceAddresses.length > 0 && _payableGovernanceShares.length > 0, "Payable governance not set yet!");
                 // this should never happen
                require(_payableGovernanceAddresses.length == _payableGovernanceShares.length, "Payable governance length mismatch!");
                
                // now, we check that the governance shares equal to 1000.
                uint256 _totalPayableShares;
                for (uint256 i = 0; i < _payableGovernanceShares.length; i++) {
                    _totalPayableShares += _payableGovernanceShares[i]; }
                require(_totalPayableShares == 1000, "Payable Governance Shares is not 1000!");
                
                // // now, we start the withdrawal process if all conditionals pass
                // store current balance in local memory
                uint256 _totalETH = address(this).balance; 
        
                // withdraw loop for payable governance
                for (uint256 i = 0; i < _payableGovernanceAddresses.length; i++) {
                    uint256 _ethToWithdraw = ((_totalETH * _payableGovernanceShares[i]) / 1000);
                    _withdraw(_payableGovernanceAddresses[i], _ethToWithdraw);
                }
            }
        
            function viewWithdrawAmounts() public view onlyOwner returns (uint256[] memory) {
                // require that there has been payable governance set.
                require(_payableGovernanceAddresses.length > 0 && _payableGovernanceShares.length > 0, "Payable governance not set yet!");
                 // this should never happen
                require(_payableGovernanceAddresses.length == _payableGovernanceShares.length, "Payable governance length mismatch!");
                
                // now, we check that the governance shares equal to 1000.
                uint256 _totalPayableShares;
                for (uint256 i = 0; i < _payableGovernanceShares.length; i++) {
                    _totalPayableShares += _payableGovernanceShares[i]; }
                require(_totalPayableShares == 1000, "Payable Governance Shares is not 1000!");
                
                // // now, we start the array creation process if all conditionals pass
                // store current balance in local memory and instantiate array for input
                uint256 _totalETH = address(this).balance; 
                uint256[] memory _withdrawals = new uint256[] (_payableGovernanceAddresses.length + 2);
        
                // array creation loop for payable governance values 
                for (uint256 i = 0; i < _payableGovernanceAddresses.length; i++) {
                    _withdrawals[i] = ( (_totalETH * _payableGovernanceShares[i]) / 1000 );
                }
                
                // push two last array spots as total eth and added eths of withdrawals
                _withdrawals[_payableGovernanceAddresses.length] = _totalETH;
                for (uint256 i = 0; i < _payableGovernanceAddresses.length; i++) {
                    _withdrawals[_payableGovernanceAddresses.length + 1] += _withdrawals[i]; }
        
                // return the final array data
                return _withdrawals;
            }
        
            // Shareholder Governance
            modifier onlyShareholder {
                bool _isShareholder;
                for (uint256 i = 0; i < _payableGovernanceAddresses.length; i++) {
                    if (msg.sender == _payableGovernanceAddresses[i]) {
                        _isShareholder = true;
                    }
                }
                require(_isShareholder, "You are not a shareholder!");
                _;
            }
            function unlockEmergencyFunctionsAsShareholder() public onlyShareholder {
                addressToEmergencyUnlocked[msg.sender] = true;
            }
        
            // Emergency Functions
            modifier onlyEmergency {
                for (uint256 i = 0; i < _payableGovernanceAddresses.length; i++) {
                    require(addressToEmergencyUnlocked[_payableGovernanceAddresses[i]], "Emergency Functions are not unlocked!");
                }
                _;
            }
            function emergencyWithdrawEther() public onlyOwner onlyEmergency {
                _withdraw(payable(msg.sender), address(this).balance);
            }
        }
        
        interface iYield {
            function updateRewardOnTransfer(address from_, address to_, uint256 tokenId_) external;
        }
        
        contract AscendedNFT is ERC721I_OW, PayableGovernance {
            constructor() payable ERC721I_OW("Ascended NFT", "ASCENDED") {}
        
            // Project Contraints
            uint256 public mintPrice = 0.08 ether;
            uint256 public maxTokens = 8888;
        
            uint256 public maxMintsPerWl = 4;
            mapping(address => uint256) public addressToWlMints;
        
            uint256 public maxMintsPerTx = 10;
        
            function setMintPrice(uint256 mintPrice_) external onlyOwner {
                mintPrice = mintPrice_;
            }
            function setMaxtokens(uint256 maxTokens_) external onlyOwner {
                require(totalSupply >= maxTokens_, "Below totalSupply");
                maxTokens = maxTokens_;
            }
        
            // Setting Future-Proof Token Yield
            iYield public Yield;
            function setYieldToken(address address_) external onlyOwner {
                Yield = iYield(address_);
            }
        
            // Internal Mint
            function _mintMany(address to_, uint256 amount_) internal {
                require(maxTokens >= totalSupply + amount_,
                    "Not enough tokens remaining!");
        
                uint256 _startId = totalSupply + 1; // iterate from 1
        
                for (uint256 i = 0; i < amount_; i++) {
                    _mint(to_, _startId + i);
                }
                totalSupply += amount_;
            }
        
            // Owner Mint Functions
            function ownerMint(address to_, uint256 amount_) external onlyOwner {
                _mintMany(to_, amount_);
            }
            function ownerMintToMany(address[] calldata tos_, uint256[] calldata amounts_) 
            external onlyOwner {
                require(tos_.length == amounts_.length, 
                    "Array lengths mismatch!");
                
                for (uint256 i = 0; i < tos_.length; i++) {
                    _mintMany(tos_[i], amounts_[i]);
                }
            }
        
            // Whitelist Mint Functions
            function whitelistMint(bytes32[] calldata proof_, uint256 amount_) external payable 
            onlySender whitelistMintEnabled {
                require(isWhitelisted(msg.sender, proof_), 
                    "You are not Whitelisted!");
                require(maxMintsPerWl >= addressToWlMints[msg.sender] + amount_,
                    "Over Max Mints per TX or Not enough whitelist mints remaining for you!");
                require(msg.value == mintPrice * amount_,   
                    "Invalid value sent!");
                
                // Add address to WL minted
                addressToWlMints[msg.sender] += amount_;
        
                _mintMany(msg.sender, amount_);
            }
        
            // Public Mint Functions
            function publicMint(uint256 amount_) external payable onlySender publicMintEnabled {
                require(maxMintsPerTx >= amount_,
                    "Over maxmimum mints per Tx!");
                require(msg.value == mintPrice * amount_, 
                    "Invalid value sent!");
        
                _mintMany(msg.sender, amount_);
            }
        
            /////////////////////////////////////////////////////
            // Withdraw Functions handled by PayableGovernance //
            /////////////////////////////////////////////////////
        
            // Future-Proof Transfer Hook Yield Overrides
            function transferFrom(address from_, address to_, uint256 tokenId_) public 
            override {
                if ( Yield != iYield(address(0x0)) ) {
                    Yield.updateRewardOnTransfer(from_, to_, tokenId_);    
                }
                ERC721I.transferFrom(from_, to_, tokenId_);
            }
            function safeTransferFrom(address from_, address to_, uint256 tokenId_, 
            bytes memory data_) public override {
                if ( Yield != iYield(address(0x0)) ) {
                    Yield.updateRewardOnTransfer(from_, to_, tokenId_);    
                }
                ERC721I.safeTransferFrom(from_, to_, tokenId_, data_);
            }
        }

        File 3 of 4: WyvernProxyRegistry
        pragma solidity ^0.4.13;
        
        contract Ownable {
          address public owner;
        
        
          event OwnershipRenounced(address indexed previousOwner);
          event OwnershipTransferred(
            address indexed previousOwner,
            address indexed newOwner
          );
        
        
          /**
           * @dev The Ownable constructor sets the original `owner` of the contract to the sender
           * account.
           */
          constructor() public {
            owner = msg.sender;
          }
        
          /**
           * @dev Throws if called by any account other than the owner.
           */
          modifier onlyOwner() {
            require(msg.sender == 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) public onlyOwner {
            require(newOwner != address(0));
            emit OwnershipTransferred(owner, newOwner);
            owner = newOwner;
          }
        
          /**
           * @dev Allows the current owner to relinquish control of the contract.
           */
          function renounceOwnership() public onlyOwner {
            emit OwnershipRenounced(owner);
            owner = address(0);
          }
        }
        
        contract ERC20Basic {
          function totalSupply() public view returns (uint256);
          function balanceOf(address who) public view returns (uint256);
          function transfer(address to, uint256 value) public returns (bool);
          event Transfer(address indexed from, address indexed to, uint256 value);
        }
        
        contract ERC20 is ERC20Basic {
          function allowance(address owner, address spender)
            public view returns (uint256);
        
          function transferFrom(address from, address to, uint256 value)
            public returns (bool);
        
          function approve(address spender, uint256 value) public returns (bool);
          event Approval(
            address indexed owner,
            address indexed spender,
            uint256 value
          );
        }
        
        contract TokenRecipient {
            event ReceivedEther(address indexed sender, uint amount);
            event ReceivedTokens(address indexed from, uint256 value, address indexed token, bytes extraData);
        
            /**
             * @dev Receive tokens and generate a log event
             * @param from Address from which to transfer tokens
             * @param value Amount of tokens to transfer
             * @param token Address of token
             * @param extraData Additional data to log
             */
            function receiveApproval(address from, uint256 value, address token, bytes extraData) public {
                ERC20 t = ERC20(token);
                require(t.transferFrom(from, this, value));
                emit ReceivedTokens(from, value, token, extraData);
            }
        
            /**
             * @dev Receive Ether and generate a log event
             */
            function () payable public {
                emit ReceivedEther(msg.sender, msg.value);
            }
        }
        
        contract ProxyRegistry is Ownable {
        
            /* DelegateProxy implementation contract. Must be initialized. */
            address public delegateProxyImplementation;
        
            /* Authenticated proxies by user. */
            mapping(address => OwnableDelegateProxy) public proxies;
        
            /* Contracts pending access. */
            mapping(address => uint) public pending;
        
            /* Contracts allowed to call those proxies. */
            mapping(address => bool) public contracts;
        
            /* Delay period for adding an authenticated contract.
               This mitigates a particular class of potential attack on the Wyvern DAO (which owns this registry) - if at any point the value of assets held by proxy contracts exceeded the value of half the WYV supply (votes in the DAO),
               a malicious but rational attacker could buy half the Wyvern and grant themselves access to all the proxy contracts. A delay period renders this attack nonthreatening - given two weeks, if that happened, users would have
               plenty of time to notice and transfer their assets.
            */
            uint public DELAY_PERIOD = 2 weeks;
        
            /**
             * Start the process to enable access for specified contract. Subject to delay period.
             *
             * @dev ProxyRegistry owner only
             * @param addr Address to which to grant permissions
             */
            function startGrantAuthentication (address addr)
                public
                onlyOwner
            {
                require(!contracts[addr] && pending[addr] == 0);
                pending[addr] = now;
            }
        
            /**
             * End the process to nable access for specified contract after delay period has passed.
             *
             * @dev ProxyRegistry owner only
             * @param addr Address to which to grant permissions
             */
            function endGrantAuthentication (address addr)
                public
                onlyOwner
            {
                require(!contracts[addr] && pending[addr] != 0 && ((pending[addr] + DELAY_PERIOD) < now));
                pending[addr] = 0;
                contracts[addr] = true;
            }
        
            /**
             * Revoke access for specified contract. Can be done instantly.
             *
             * @dev ProxyRegistry owner only
             * @param addr Address of which to revoke permissions
             */    
            function revokeAuthentication (address addr)
                public
                onlyOwner
            {
                contracts[addr] = false;
            }
        
            /**
             * Register a proxy contract with this registry
             *
             * @dev Must be called by the user which the proxy is for, creates a new AuthenticatedProxy
             * @return New AuthenticatedProxy contract
             */
            function registerProxy()
                public
                returns (OwnableDelegateProxy proxy)
            {
                require(proxies[msg.sender] == address(0));
                proxy = new OwnableDelegateProxy(msg.sender, delegateProxyImplementation, abi.encodeWithSignature("initialize(address,address)", msg.sender, address(this)));
                proxies[msg.sender] = proxy;
                return proxy;
            }
        
        }
        
        contract WyvernProxyRegistry is ProxyRegistry {
        
            string public constant name = "Project Wyvern Proxy Registry";
        
            /* Whether the initial auth address has been set. */
            bool public initialAddressSet = false;
        
            constructor ()
                public
            {
                delegateProxyImplementation = new AuthenticatedProxy();
            }
        
            /** 
             * Grant authentication to the initial Exchange protocol contract
             *
             * @dev No delay, can only be called once - after that the standard registry process with a delay must be used
             * @param authAddress Address of the contract to grant authentication
             */
            function grantInitialAuthentication (address authAddress)
                onlyOwner
                public
            {
                require(!initialAddressSet);
                initialAddressSet = true;
                contracts[authAddress] = true;
            }
        
        }
        
        contract OwnedUpgradeabilityStorage {
        
          // Current implementation
          address internal _implementation;
        
          // Owner of the contract
          address private _upgradeabilityOwner;
        
          /**
           * @dev Tells the address of the owner
           * @return the address of the owner
           */
          function upgradeabilityOwner() public view returns (address) {
            return _upgradeabilityOwner;
          }
        
          /**
           * @dev Sets the address of the owner
           */
          function setUpgradeabilityOwner(address newUpgradeabilityOwner) internal {
            _upgradeabilityOwner = newUpgradeabilityOwner;
          }
        
          /**
          * @dev Tells the address of the current implementation
          * @return address of the current implementation
          */
          function implementation() public view returns (address) {
            return _implementation;
          }
        
          /**
          * @dev Tells the proxy type (EIP 897)
          * @return Proxy type, 2 for forwarding proxy
          */
          function proxyType() public pure returns (uint256 proxyTypeId) {
            return 2;
          }
        }
        
        contract AuthenticatedProxy is TokenRecipient, OwnedUpgradeabilityStorage {
        
            /* Whether initialized. */
            bool initialized = false;
        
            /* Address which owns this proxy. */
            address public user;
        
            /* Associated registry with contract authentication information. */
            ProxyRegistry public registry;
        
            /* Whether access has been revoked. */
            bool public revoked;
        
            /* Delegate call could be used to atomically transfer multiple assets owned by the proxy contract with one order. */
            enum HowToCall { Call, DelegateCall }
        
            /* Event fired when the proxy access is revoked or unrevoked. */
            event Revoked(bool revoked);
        
            /**
             * Initialize an AuthenticatedProxy
             *
             * @param addrUser Address of user on whose behalf this proxy will act
             * @param addrRegistry Address of ProxyRegistry contract which will manage this proxy
             */
            function initialize (address addrUser, ProxyRegistry addrRegistry)
                public
            {
                require(!initialized);
                initialized = true;
                user = addrUser;
                registry = addrRegistry;
            }
        
            /**
             * Set the revoked flag (allows a user to revoke ProxyRegistry access)
             *
             * @dev Can be called by the user only
             * @param revoke Whether or not to revoke access
             */
            function setRevoke(bool revoke)
                public
            {
                require(msg.sender == user);
                revoked = revoke;
                emit Revoked(revoke);
            }
        
            /**
             * Execute a message call from the proxy contract
             *
             * @dev Can be called by the user, or by a contract authorized by the registry as long as the user has not revoked access
             * @param dest Address to which the call will be sent
             * @param howToCall Which kind of call to make
             * @param calldata Calldata to send
             * @return Result of the call (success or failure)
             */
            function proxy(address dest, HowToCall howToCall, bytes calldata)
                public
                returns (bool result)
            {
                require(msg.sender == user || (!revoked && registry.contracts(msg.sender)));
                if (howToCall == HowToCall.Call) {
                    result = dest.call(calldata);
                } else if (howToCall == HowToCall.DelegateCall) {
                    result = dest.delegatecall(calldata);
                }
                return result;
            }
        
            /**
             * Execute a message call and assert success
             * 
             * @dev Same functionality as `proxy`, just asserts the return value
             * @param dest Address to which the call will be sent
             * @param howToCall What kind of call to make
             * @param calldata Calldata to send
             */
            function proxyAssert(address dest, HowToCall howToCall, bytes calldata)
                public
            {
                require(proxy(dest, howToCall, calldata));
            }
        
        }
        
        contract Proxy {
        
          /**
          * @dev Tells the address of the implementation where every call will be delegated.
          * @return address of the implementation to which it will be delegated
          */
          function implementation() public view returns (address);
        
          /**
          * @dev Tells the type of proxy (EIP 897)
          * @return Type of proxy, 2 for upgradeable proxy
          */
          function proxyType() public pure returns (uint256 proxyTypeId);
        
          /**
          * @dev Fallback function allowing to perform a delegatecall to the given implementation.
          * This function will return whatever the implementation call returns
          */
          function () payable public {
            address _impl = implementation();
            require(_impl != address(0));
        
            assembly {
              let ptr := mload(0x40)
              calldatacopy(ptr, 0, calldatasize)
              let result := delegatecall(gas, _impl, ptr, calldatasize, 0, 0)
              let size := returndatasize
              returndatacopy(ptr, 0, size)
        
              switch result
              case 0 { revert(ptr, size) }
              default { return(ptr, size) }
            }
          }
        }
        
        contract OwnedUpgradeabilityProxy is Proxy, OwnedUpgradeabilityStorage {
          /**
          * @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 ProxyOwnershipTransferred(address previousOwner, address newOwner);
        
          /**
          * @dev This event will be emitted every time the implementation gets upgraded
          * @param implementation representing the address of the upgraded implementation
          */
          event Upgraded(address indexed implementation);
        
          /**
          * @dev Upgrades the implementation address
          * @param implementation representing the address of the new implementation to be set
          */
          function _upgradeTo(address implementation) internal {
            require(_implementation != implementation);
            _implementation = implementation;
            emit Upgraded(implementation);
          }
        
          /**
          * @dev Throws if called by any account other than the owner.
          */
          modifier onlyProxyOwner() {
            require(msg.sender == proxyOwner());
            _;
          }
        
          /**
           * @dev Tells the address of the proxy owner
           * @return the address of the proxy owner
           */
          function proxyOwner() public view returns (address) {
            return upgradeabilityOwner();
          }
        
          /**
           * @dev Allows the current owner to transfer control of the contract to a newOwner.
           * @param newOwner The address to transfer ownership to.
           */
          function transferProxyOwnership(address newOwner) public onlyProxyOwner {
            require(newOwner != address(0));
            emit ProxyOwnershipTransferred(proxyOwner(), newOwner);
            setUpgradeabilityOwner(newOwner);
          }
        
          /**
           * @dev Allows the upgradeability owner to upgrade the current implementation of the proxy.
           * @param implementation representing the address of the new implementation to be set.
           */
          function upgradeTo(address implementation) public onlyProxyOwner {
            _upgradeTo(implementation);
          }
        
          /**
           * @dev Allows the upgradeability owner to upgrade the current implementation of the proxy
           * and delegatecall the new implementation for initialization.
           * @param implementation representing the address of the new implementation to be set.
           * @param data represents the msg.data to bet sent in the low level call. This parameter may include the function
           * signature of the implementation to be called with the needed payload
           */
          function upgradeToAndCall(address implementation, bytes data) payable public onlyProxyOwner {
            upgradeTo(implementation);
            require(address(this).delegatecall(data));
          }
        }
        
        contract OwnableDelegateProxy is OwnedUpgradeabilityProxy {
        
            constructor(address owner, address initialImplementation, bytes calldata)
                public
            {
                setUpgradeabilityOwner(owner);
                _upgradeTo(initialImplementation);
                require(initialImplementation.delegatecall(calldata));
            }
        
        }

        File 4 of 4: AuthenticatedProxy
        pragma solidity ^0.4.13;
        
        contract Ownable {
          address public owner;
        
        
          event OwnershipRenounced(address indexed previousOwner);
          event OwnershipTransferred(
            address indexed previousOwner,
            address indexed newOwner
          );
        
        
          /**
           * @dev The Ownable constructor sets the original `owner` of the contract to the sender
           * account.
           */
          constructor() public {
            owner = msg.sender;
          }
        
          /**
           * @dev Throws if called by any account other than the owner.
           */
          modifier onlyOwner() {
            require(msg.sender == 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) public onlyOwner {
            require(newOwner != address(0));
            emit OwnershipTransferred(owner, newOwner);
            owner = newOwner;
          }
        
          /**
           * @dev Allows the current owner to relinquish control of the contract.
           */
          function renounceOwnership() public onlyOwner {
            emit OwnershipRenounced(owner);
            owner = address(0);
          }
        }
        
        contract ERC20Basic {
          function totalSupply() public view returns (uint256);
          function balanceOf(address who) public view returns (uint256);
          function transfer(address to, uint256 value) public returns (bool);
          event Transfer(address indexed from, address indexed to, uint256 value);
        }
        
        contract ERC20 is ERC20Basic {
          function allowance(address owner, address spender)
            public view returns (uint256);
        
          function transferFrom(address from, address to, uint256 value)
            public returns (bool);
        
          function approve(address spender, uint256 value) public returns (bool);
          event Approval(
            address indexed owner,
            address indexed spender,
            uint256 value
          );
        }
        
        contract ProxyRegistry is Ownable {
        
            /* DelegateProxy implementation contract. Must be initialized. */
            address public delegateProxyImplementation;
        
            /* Authenticated proxies by user. */
            mapping(address => OwnableDelegateProxy) public proxies;
        
            /* Contracts pending access. */
            mapping(address => uint) public pending;
        
            /* Contracts allowed to call those proxies. */
            mapping(address => bool) public contracts;
        
            /* Delay period for adding an authenticated contract.
               This mitigates a particular class of potential attack on the Wyvern DAO (which owns this registry) - if at any point the value of assets held by proxy contracts exceeded the value of half the WYV supply (votes in the DAO),
               a malicious but rational attacker could buy half the Wyvern and grant themselves access to all the proxy contracts. A delay period renders this attack nonthreatening - given two weeks, if that happened, users would have
               plenty of time to notice and transfer their assets.
            */
            uint public DELAY_PERIOD = 2 weeks;
        
            /**
             * Start the process to enable access for specified contract. Subject to delay period.
             *
             * @dev ProxyRegistry owner only
             * @param addr Address to which to grant permissions
             */
            function startGrantAuthentication (address addr)
                public
                onlyOwner
            {
                require(!contracts[addr] && pending[addr] == 0);
                pending[addr] = now;
            }
        
            /**
             * End the process to nable access for specified contract after delay period has passed.
             *
             * @dev ProxyRegistry owner only
             * @param addr Address to which to grant permissions
             */
            function endGrantAuthentication (address addr)
                public
                onlyOwner
            {
                require(!contracts[addr] && pending[addr] != 0 && ((pending[addr] + DELAY_PERIOD) < now));
                pending[addr] = 0;
                contracts[addr] = true;
            }
        
            /**
             * Revoke access for specified contract. Can be done instantly.
             *
             * @dev ProxyRegistry owner only
             * @param addr Address of which to revoke permissions
             */    
            function revokeAuthentication (address addr)
                public
                onlyOwner
            {
                contracts[addr] = false;
            }
        
            /**
             * Register a proxy contract with this registry
             *
             * @dev Must be called by the user which the proxy is for, creates a new AuthenticatedProxy
             * @return New AuthenticatedProxy contract
             */
            function registerProxy()
                public
                returns (OwnableDelegateProxy proxy)
            {
                require(proxies[msg.sender] == address(0));
                proxy = new OwnableDelegateProxy(msg.sender, delegateProxyImplementation, abi.encodeWithSignature("initialize(address,address)", msg.sender, address(this)));
                proxies[msg.sender] = proxy;
                return proxy;
            }
        
        }
        
        contract TokenRecipient {
            event ReceivedEther(address indexed sender, uint amount);
            event ReceivedTokens(address indexed from, uint256 value, address indexed token, bytes extraData);
        
            /**
             * @dev Receive tokens and generate a log event
             * @param from Address from which to transfer tokens
             * @param value Amount of tokens to transfer
             * @param token Address of token
             * @param extraData Additional data to log
             */
            function receiveApproval(address from, uint256 value, address token, bytes extraData) public {
                ERC20 t = ERC20(token);
                require(t.transferFrom(from, this, value));
                emit ReceivedTokens(from, value, token, extraData);
            }
        
            /**
             * @dev Receive Ether and generate a log event
             */
            function () payable public {
                emit ReceivedEther(msg.sender, msg.value);
            }
        }
        
        contract OwnedUpgradeabilityStorage {
        
          // Current implementation
          address internal _implementation;
        
          // Owner of the contract
          address private _upgradeabilityOwner;
        
          /**
           * @dev Tells the address of the owner
           * @return the address of the owner
           */
          function upgradeabilityOwner() public view returns (address) {
            return _upgradeabilityOwner;
          }
        
          /**
           * @dev Sets the address of the owner
           */
          function setUpgradeabilityOwner(address newUpgradeabilityOwner) internal {
            _upgradeabilityOwner = newUpgradeabilityOwner;
          }
        
          /**
          * @dev Tells the address of the current implementation
          * @return address of the current implementation
          */
          function implementation() public view returns (address) {
            return _implementation;
          }
        
          /**
          * @dev Tells the proxy type (EIP 897)
          * @return Proxy type, 2 for forwarding proxy
          */
          function proxyType() public pure returns (uint256 proxyTypeId) {
            return 2;
          }
        }
        
        contract AuthenticatedProxy is TokenRecipient, OwnedUpgradeabilityStorage {
        
            /* Whether initialized. */
            bool initialized = false;
        
            /* Address which owns this proxy. */
            address public user;
        
            /* Associated registry with contract authentication information. */
            ProxyRegistry public registry;
        
            /* Whether access has been revoked. */
            bool public revoked;
        
            /* Delegate call could be used to atomically transfer multiple assets owned by the proxy contract with one order. */
            enum HowToCall { Call, DelegateCall }
        
            /* Event fired when the proxy access is revoked or unrevoked. */
            event Revoked(bool revoked);
        
            /**
             * Initialize an AuthenticatedProxy
             *
             * @param addrUser Address of user on whose behalf this proxy will act
             * @param addrRegistry Address of ProxyRegistry contract which will manage this proxy
             */
            function initialize (address addrUser, ProxyRegistry addrRegistry)
                public
            {
                require(!initialized);
                initialized = true;
                user = addrUser;
                registry = addrRegistry;
            }
        
            /**
             * Set the revoked flag (allows a user to revoke ProxyRegistry access)
             *
             * @dev Can be called by the user only
             * @param revoke Whether or not to revoke access
             */
            function setRevoke(bool revoke)
                public
            {
                require(msg.sender == user);
                revoked = revoke;
                emit Revoked(revoke);
            }
        
            /**
             * Execute a message call from the proxy contract
             *
             * @dev Can be called by the user, or by a contract authorized by the registry as long as the user has not revoked access
             * @param dest Address to which the call will be sent
             * @param howToCall Which kind of call to make
             * @param calldata Calldata to send
             * @return Result of the call (success or failure)
             */
            function proxy(address dest, HowToCall howToCall, bytes calldata)
                public
                returns (bool result)
            {
                require(msg.sender == user || (!revoked && registry.contracts(msg.sender)));
                if (howToCall == HowToCall.Call) {
                    result = dest.call(calldata);
                } else if (howToCall == HowToCall.DelegateCall) {
                    result = dest.delegatecall(calldata);
                }
                return result;
            }
        
            /**
             * Execute a message call and assert success
             * 
             * @dev Same functionality as `proxy`, just asserts the return value
             * @param dest Address to which the call will be sent
             * @param howToCall What kind of call to make
             * @param calldata Calldata to send
             */
            function proxyAssert(address dest, HowToCall howToCall, bytes calldata)
                public
            {
                require(proxy(dest, howToCall, calldata));
            }
        
        }
        
        contract Proxy {
        
          /**
          * @dev Tells the address of the implementation where every call will be delegated.
          * @return address of the implementation to which it will be delegated
          */
          function implementation() public view returns (address);
        
          /**
          * @dev Tells the type of proxy (EIP 897)
          * @return Type of proxy, 2 for upgradeable proxy
          */
          function proxyType() public pure returns (uint256 proxyTypeId);
        
          /**
          * @dev Fallback function allowing to perform a delegatecall to the given implementation.
          * This function will return whatever the implementation call returns
          */
          function () payable public {
            address _impl = implementation();
            require(_impl != address(0));
        
            assembly {
              let ptr := mload(0x40)
              calldatacopy(ptr, 0, calldatasize)
              let result := delegatecall(gas, _impl, ptr, calldatasize, 0, 0)
              let size := returndatasize
              returndatacopy(ptr, 0, size)
        
              switch result
              case 0 { revert(ptr, size) }
              default { return(ptr, size) }
            }
          }
        }
        
        contract OwnedUpgradeabilityProxy is Proxy, OwnedUpgradeabilityStorage {
          /**
          * @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 ProxyOwnershipTransferred(address previousOwner, address newOwner);
        
          /**
          * @dev This event will be emitted every time the implementation gets upgraded
          * @param implementation representing the address of the upgraded implementation
          */
          event Upgraded(address indexed implementation);
        
          /**
          * @dev Upgrades the implementation address
          * @param implementation representing the address of the new implementation to be set
          */
          function _upgradeTo(address implementation) internal {
            require(_implementation != implementation);
            _implementation = implementation;
            emit Upgraded(implementation);
          }
        
          /**
          * @dev Throws if called by any account other than the owner.
          */
          modifier onlyProxyOwner() {
            require(msg.sender == proxyOwner());
            _;
          }
        
          /**
           * @dev Tells the address of the proxy owner
           * @return the address of the proxy owner
           */
          function proxyOwner() public view returns (address) {
            return upgradeabilityOwner();
          }
        
          /**
           * @dev Allows the current owner to transfer control of the contract to a newOwner.
           * @param newOwner The address to transfer ownership to.
           */
          function transferProxyOwnership(address newOwner) public onlyProxyOwner {
            require(newOwner != address(0));
            emit ProxyOwnershipTransferred(proxyOwner(), newOwner);
            setUpgradeabilityOwner(newOwner);
          }
        
          /**
           * @dev Allows the upgradeability owner to upgrade the current implementation of the proxy.
           * @param implementation representing the address of the new implementation to be set.
           */
          function upgradeTo(address implementation) public onlyProxyOwner {
            _upgradeTo(implementation);
          }
        
          /**
           * @dev Allows the upgradeability owner to upgrade the current implementation of the proxy
           * and delegatecall the new implementation for initialization.
           * @param implementation representing the address of the new implementation to be set.
           * @param data represents the msg.data to bet sent in the low level call. This parameter may include the function
           * signature of the implementation to be called with the needed payload
           */
          function upgradeToAndCall(address implementation, bytes data) payable public onlyProxyOwner {
            upgradeTo(implementation);
            require(address(this).delegatecall(data));
          }
        }
        
        contract OwnableDelegateProxy is OwnedUpgradeabilityProxy {
        
            constructor(address owner, address initialImplementation, bytes calldata)
                public
            {
                setUpgradeabilityOwner(owner);
                _upgradeTo(initialImplementation);
                require(initialImplementation.delegatecall(calldata));
            }
        
        }