ETH Price: $4,836.41 (+14.47%)

Transaction Decoder

Block:
18643214 at Nov-24-2023 05:59:59 PM +UTC
Transaction Fee:
0.179612988988573144 ETH $868.68
Gas Used:
4,570,652 Gas / 39.297016922 Gwei

Emitted Events:

Account State Difference:

  Address   Before After State Difference Code
0x06fCa422...d6d6d3C00
1.99099 Eth
Nonce: 0
1.811377011011426856 Eth
Nonce: 1
0.179612988988573144
0x5C69bEe7...B9cc5aA6f
(Uniswap V2: Factory Contract)
0xd460a962...54Fbd4977
0 Eth
Nonce: 0
0 Eth
Nonce: 1
From: 0 To: 43484721736491721165453345926488884433030813712163675230304380765063825236674500628620161519118252990137444959325983297018544337620571001464604669030594560706768081544208569900229593787679039346754184122957272634939636797174478439634493527877373996753512563213013923532118337723952073669236535444477448676886468673534322675331510581107290263672694300263489936973366665120507084100584081717703377949675102922329790452053681367211559160260311836491094168880023830973153796376636499011075200255309613304786068727664884306382790691364778044905489049544420140588253794026303001403249102087320645721092648494050986337141152172396633038075947139396565327523935299745192186138102755574091978877107100550354487599255420055760343580234045551318895576594187545000706805048531247468717479997050506497671417552315474478533841907536781141201606796935062484770033216336806499361668613020301845941816567806361568728674364091665114221360905664229473562936750426045351219742198580420771130939449730849326659002572646248640458113318359109531704717692791833608925599717741343289451116193376202734470335813153467189111144110603058505546676608842322472672196035667224065892875439903453328457706380376478032530638183459981034952692709738285510505116993608475221632492615848856402869078894119373451255367508009624519687618862467725285104701826479822015458866510772007819348046809929103794645372476944171499330693195761768688815106135211973053840807518999378493860960023288090637564427808552222070956880378073454251623812955462387679969437580907727417313626685409058689410171408071047378157101679300190208007064625831054261073853159842622655201331136125238559893504428542948160518307813966120341349538601049893384577568263366409316475424778159641830214840595133815661793081091595480176010596869804036517385565870278761232780708641598255054576037969843668337157412750696953748726569433963396293607425203719553177769487661671458188692119243201434045620491516809503925412121426058458042334414275899152760271889403397662190154964096776906109137965773720138204427326294010819669677883553662897774333383571269066662915660326674150208459469046502856626878593070402540822075638990930316156308141412867436946161175271364228327357789040907417202524819754740327866942201657886614590368945743836247957570340863995792146586352928646481830236053056270429462725970403723448309552434295835158437497855820056876479428934649967323467054115965884174605331290100622927277960673449776431717933073949347145190915574699909177244752562770152684096664400319085357553827823597818922094231518926326755930831037687054714021665767555774602312305324489316076542117969647315129766461445521995875631569816823718978834486376013823303762187260042206578371555089399881903378206402856205160741664046481745087981345786392338860930452837591017848095334206912756025210946698893153375710214884767052215862497211741606591182875474399942149825055352506657495961728985221938668298402402937515539534105965665747338807694377172046527893602754387343628070168651903193483638702405983783993425947455026352857576238428777557972547457235278415409290349700098607781598154062640025478804674250605672624714529826155642340383170408144180404736602580446453402820697884698667608564697086622976412994647607390235473426992750080575424747038183051288540760156445387468788377869343176198921108517646209414050766618739631086892740887456170271194240071447926946466100754578110161490387938964470164167590015451082575268713670475259416034390658240727304944145652766781602617613301370108768055257890359463677672241679594649210072294356306624721665445448371119856018743995986374225190164259045478322615736987880086802752337978418139331715626957611889416425860648506685152673426596113646413500246314702825040356493707308064745847218887387004709524098400733523763320818690988062181164159000976470589086332805858473200001640338428505614391179115325272605298878639580654599821755970408172750086402275254642008458260075666124352754036841696413752254366791965910640115810557572415787906316956221675772649633681707335780820630588969359479540860943918996422191370307511714529850490257622177518346542078325474627525876413881568319491938324607852064980694666088012383332883218447971284615180022826782729613251042914135924509809908195308065391224296050566962669084483597028609497610739434289691228280549714751063500421684937044912615302316416459780881836420977209815342524019692873075185261729167053042707816758427442074876902556602235189725974183786470277957478457187046360101525587965955272586719186798036067425775904027593901579064100502236363349644312545570482567903087130309770782674641894679803883642738346162699095692674847124064078074677393296361059858777006867661095849588710203257953164665545733786975524069634522933007174848217820563844195863975714603017233707557428076441726764734076442929925970521042353826652690013849255722691500266132725448670713196620693520137203176131667887881417850630513633012486783478490455124847800978451728659130766494488201846932600021379396055243916962047989760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0xdba5AE22...db821F0b0
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Nonce: 0
0 Eth
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(Fee Recipient: 0xf758...203)
58.566459747708223215 Eth58.580171703708223215 Eth0.013711956

Execution Trace

LilManyu.61010060( )
  • UniswapV2Router02.STATICCALL( )
  • UniswapV2Router02.STATICCALL( )
  • UniswapV2Factory.createPair( tokenA=0xd460a96231e2aa497ecA601F526913654Fbd4977, tokenB=0xC02aaA39b223FE8D0A0e5C4F27eAD9083C756Cc2 ) => ( pair=0xdba5AE22A238B32d5e5e7170392e4f8db821F0b0 )
    • UniswapV2Pair.60806040( )
    • UniswapV2Pair.initialize( _token0=0xC02aaA39b223FE8D0A0e5C4F27eAD9083C756Cc2, _token1=0xd460a96231e2aa497ecA601F526913654Fbd4977 )
      File 1 of 4: LilManyu
      // SPDX-License-Identifier: MIT
      pragma solidity ^0.8.21;
      import {ERC20} from "solmate/tokens/ERC20.sol";
      import {Owned} from "solmate/auth/Owned.sol";
      import {IUniswapV2Router02} from "@uniswap/v2-periphery/contracts/interfaces/IUniswapV2Router02.sol";
      import {IUniswapV2Factory} from "@uniswap/v2-core/contracts/interfaces/IUniswapV2Factory.sol";
      import {EnumerableSet} from "@openzeppelin/contracts/utils/structs/EnumerableSet.sol";
      contract LilManyu is ERC20, Owned {
          using EnumerableSet for EnumerableSet.AddressSet;
          EnumerableSet.AddressSet receivers;
          mapping(address => uint256) public receiversShares;
          uint256 public totalShares;
          uint256 public TOTAL_SUPPLY = 10_000_000_000 ether;
          IUniswapV2Router02 public constant uniswapRouter = IUniswapV2Router02(0x7a250d5630B4cF539739dF2C5dAcb4c659F2488D);
          mapping(address => bool) public isExcludedFromFee;
          mapping(address => bool) public isWhitelisted;
          mapping(address => uint256) public boughtAmount;
          // 1.25% of total supply
          uint256 public maxBuyAmount = 125_000_000 ether;
          uint256 public buyFee = 0;
          uint256 public sellFee = 0;
          address public immutable pair;
          bool public tradingEnabled;
          constructor() ERC20("LilManyu", "MANYU", 18) Owned(msg.sender) {
              _mint(msg.sender, TOTAL_SUPPLY);
              isExcludedFromFee[msg.sender] = true;
              isWhitelisted[msg.sender] = true;
              address _weth = uniswapRouter.WETH();
              pair = IUniswapV2Factory(uniswapRouter.factory()).createPair(address(this), _weth);
              isExcludedFromFee[pair] = true;
              isExcludedFromFee[address(this)] = true;
              allowance[address(this)][address(uniswapRouter)] = type(uint256).max;
          }
          function setMaxBuyAmount(uint256 _maxBuyAmount) external onlyOwner {
              require(_maxBuyAmount > 0, "max-buy-amount-must-be-greater-than-zero");
              maxBuyAmount = _maxBuyAmount;
          }
          function setExcludedFromFee(address account, bool excluded) external onlyOwner {
              isExcludedFromFee[account] = excluded;
          }
          function setWhitelisted(address account, bool whitelisted) external onlyOwner {
              isWhitelisted[account] = whitelisted;
          }
          function setBuyFee(uint256 _buyFee) external onlyOwner {
              require(_buyFee <= 30, "max-buy-fee-exceeded");
              buyFee = _buyFee;
          }
          function setSellFee(uint256 _sellFee) external onlyOwner {
              require(_sellFee <= 30, "max-sell-fee-exceeded");
              sellFee = _sellFee;
          }
          function startTrading() external onlyOwner {
              tradingEnabled = true;
          }
          function removeLimits() external onlyOwner {
              maxBuyAmount = type(uint256).max;
          }
          function transfer(address to, uint256 amount) public override returns (bool) {
              balanceOf[msg.sender] -= amount;
              if (msg.sender == pair) {
                  require(tradingEnabled || isWhitelisted[to], "trading-not-enabled");
                  if (!isExcludedFromFee[to]) {
                      uint256 taxAmount = amount * buyFee / 100;
                      amount -= taxAmount;
                      boughtAmount[to] += amount;
                      require(boughtAmount[to] <= maxBuyAmount, "max-buy-amount-exceeded");
                      balanceOf[address(this)] += taxAmount;
                      distributeShares();
                  }
              }
              unchecked {
                  balanceOf[to] += amount;
              }
              emit Transfer(msg.sender, to, amount);
              return true;
          }
          function transferFrom(address from, address to, uint256 amount) public override returns (bool) {
              uint256 allowed = allowance[from][msg.sender];
              if (allowed != type(uint256).max) allowance[from][msg.sender] = allowed - amount;
              balanceOf[from] -= amount;
              if (to == pair) {
                  require(tradingEnabled || isWhitelisted[from], "trading-not-enabled");
                  if (!isExcludedFromFee[from]) {
                      uint256 taxAmount = amount * sellFee / 100;
                      amount -= taxAmount;
                      balanceOf[address(this)] += taxAmount;
                      _swapTokensForEth(balanceOf[address(this)]);
                  }
              }
              unchecked {
                  balanceOf[to] += amount;
              }
              emit Transfer(from, to, amount);
              return true;
          }
          function _swapTokensForEth(uint256 tokenAmount) internal {
              if (tokenAmount == 0) return;
              address[] memory path = new address[](2);
              path[0] = address(this);
              path[1] = uniswapRouter.WETH();
              uniswapRouter.swapExactTokensForETHSupportingFeeOnTransferTokens(
                  tokenAmount, 0, path, address(this), block.timestamp
              );
          }
          function addReceiver(address receiver, uint256 shares) external onlyOwner {
              require(!receivers.contains(receiver), "receiver-already-added");
              require(shares > 0, "shares-must-be-greater-than-zero");
              require(totalShares + shares <= 100, "max-shares-exceeded");
              receivers.add(receiver);
              receiversShares[receiver] = shares;
              totalShares += shares;
          }
          function removeReceiver(address receiver) external onlyOwner {
              require(receivers.contains(receiver), "receiver-not-added");
              receivers.remove(receiver);
              totalShares -= receiversShares[receiver];
              receiversShares[receiver] = 0;
          }
          function getReceivers() public view returns (address[] memory, uint256[] memory) {
              address[] memory _receivers = new address[](receivers.length());
              uint256[] memory _shares = new uint256[](receivers.length());
              for (uint256 i = 0; i < receivers.length(); i++) {
                  _receivers[i] = receivers.at(i);
                  _shares[i] = receiversShares[_receivers[i]];
              }
              return (_receivers, _shares);
          }
          function distributeShares() public {
              uint256 balance = address(this).balance;
              if (balance == 0) return;
              (address[] memory _receivers, uint256[] memory _shares) = getReceivers();
              for (uint256 i = 0; i < _receivers.length; i++) {
                  payable(_receivers[i]).transfer((balance * _shares[i]) / 100);
              }
          }
          receive() external payable {}
      }
      // SPDX-License-Identifier: AGPL-3.0-only
      pragma solidity >=0.8.0;
      /// @notice Modern and gas efficient ERC20 + EIP-2612 implementation.
      /// @author Solmate (https://github.com/transmissions11/solmate/blob/main/src/tokens/ERC20.sol)
      /// @author Modified from Uniswap (https://github.com/Uniswap/uniswap-v2-core/blob/master/contracts/UniswapV2ERC20.sol)
      /// @dev Do not manually set balances without updating totalSupply, as the sum of all user balances must not exceed it.
      abstract contract ERC20 {
          /*//////////////////////////////////////////////////////////////
                                       EVENTS
          //////////////////////////////////////////////////////////////*/
          event Transfer(address indexed from, address indexed to, uint256 amount);
          event Approval(address indexed owner, address indexed spender, uint256 amount);
          /*//////////////////////////////////////////////////////////////
                                  METADATA STORAGE
          //////////////////////////////////////////////////////////////*/
          string public name;
          string public symbol;
          uint8 public immutable decimals;
          /*//////////////////////////////////////////////////////////////
                                    ERC20 STORAGE
          //////////////////////////////////////////////////////////////*/
          uint256 public totalSupply;
          mapping(address => uint256) public balanceOf;
          mapping(address => mapping(address => uint256)) public allowance;
          /*//////////////////////////////////////////////////////////////
                                  EIP-2612 STORAGE
          //////////////////////////////////////////////////////////////*/
          uint256 internal immutable INITIAL_CHAIN_ID;
          bytes32 internal immutable INITIAL_DOMAIN_SEPARATOR;
          mapping(address => uint256) public nonces;
          /*//////////////////////////////////////////////////////////////
                                     CONSTRUCTOR
          //////////////////////////////////////////////////////////////*/
          constructor(
              string memory _name,
              string memory _symbol,
              uint8 _decimals
          ) {
              name = _name;
              symbol = _symbol;
              decimals = _decimals;
              INITIAL_CHAIN_ID = block.chainid;
              INITIAL_DOMAIN_SEPARATOR = computeDomainSeparator();
          }
          /*//////////////////////////////////////////////////////////////
                                     ERC20 LOGIC
          //////////////////////////////////////////////////////////////*/
          function approve(address spender, uint256 amount) public virtual returns (bool) {
              allowance[msg.sender][spender] = amount;
              emit Approval(msg.sender, spender, amount);
              return true;
          }
          function transfer(address to, uint256 amount) public virtual returns (bool) {
              balanceOf[msg.sender] -= amount;
              // Cannot overflow because the sum of all user
              // balances can't exceed the max uint256 value.
              unchecked {
                  balanceOf[to] += amount;
              }
              emit Transfer(msg.sender, to, amount);
              return true;
          }
          function transferFrom(
              address from,
              address to,
              uint256 amount
          ) public virtual returns (bool) {
              uint256 allowed = allowance[from][msg.sender]; // Saves gas for limited approvals.
              if (allowed != type(uint256).max) allowance[from][msg.sender] = allowed - amount;
              balanceOf[from] -= amount;
              // Cannot overflow because the sum of all user
              // balances can't exceed the max uint256 value.
              unchecked {
                  balanceOf[to] += amount;
              }
              emit Transfer(from, to, amount);
              return true;
          }
          /*//////////////////////////////////////////////////////////////
                                   EIP-2612 LOGIC
          //////////////////////////////////////////////////////////////*/
          function permit(
              address owner,
              address spender,
              uint256 value,
              uint256 deadline,
              uint8 v,
              bytes32 r,
              bytes32 s
          ) public virtual {
              require(deadline >= block.timestamp, "PERMIT_DEADLINE_EXPIRED");
              // Unchecked because the only math done is incrementing
              // the owner's nonce which cannot realistically overflow.
              unchecked {
                  address recoveredAddress = ecrecover(
                      keccak256(
                          abi.encodePacked(
                              "\\x19\\x01",
                              DOMAIN_SEPARATOR(),
                              keccak256(
                                  abi.encode(
                                      keccak256(
                                          "Permit(address owner,address spender,uint256 value,uint256 nonce,uint256 deadline)"
                                      ),
                                      owner,
                                      spender,
                                      value,
                                      nonces[owner]++,
                                      deadline
                                  )
                              )
                          )
                      ),
                      v,
                      r,
                      s
                  );
                  require(recoveredAddress != address(0) && recoveredAddress == owner, "INVALID_SIGNER");
                  allowance[recoveredAddress][spender] = value;
              }
              emit Approval(owner, spender, value);
          }
          function DOMAIN_SEPARATOR() public view virtual returns (bytes32) {
              return block.chainid == INITIAL_CHAIN_ID ? INITIAL_DOMAIN_SEPARATOR : computeDomainSeparator();
          }
          function computeDomainSeparator() internal view virtual returns (bytes32) {
              return
                  keccak256(
                      abi.encode(
                          keccak256("EIP712Domain(string name,string version,uint256 chainId,address verifyingContract)"),
                          keccak256(bytes(name)),
                          keccak256("1"),
                          block.chainid,
                          address(this)
                      )
                  );
          }
          /*//////////////////////////////////////////////////////////////
                              INTERNAL MINT/BURN LOGIC
          //////////////////////////////////////////////////////////////*/
          function _mint(address to, uint256 amount) internal virtual {
              totalSupply += amount;
              // Cannot overflow because the sum of all user
              // balances can't exceed the max uint256 value.
              unchecked {
                  balanceOf[to] += amount;
              }
              emit Transfer(address(0), to, amount);
          }
          function _burn(address from, uint256 amount) internal virtual {
              balanceOf[from] -= amount;
              // Cannot underflow because a user's balance
              // will never be larger than the total supply.
              unchecked {
                  totalSupply -= amount;
              }
              emit Transfer(from, address(0), amount);
          }
      }
      // SPDX-License-Identifier: AGPL-3.0-only
      pragma solidity >=0.8.0;
      /// @notice Simple single owner authorization mixin.
      /// @author Solmate (https://github.com/transmissions11/solmate/blob/main/src/auth/Owned.sol)
      abstract contract Owned {
          /*//////////////////////////////////////////////////////////////
                                       EVENTS
          //////////////////////////////////////////////////////////////*/
          event OwnershipTransferred(address indexed user, address indexed newOwner);
          /*//////////////////////////////////////////////////////////////
                                  OWNERSHIP STORAGE
          //////////////////////////////////////////////////////////////*/
          address public owner;
          modifier onlyOwner() virtual {
              require(msg.sender == owner, "UNAUTHORIZED");
              _;
          }
          /*//////////////////////////////////////////////////////////////
                                     CONSTRUCTOR
          //////////////////////////////////////////////////////////////*/
          constructor(address _owner) {
              owner = _owner;
              emit OwnershipTransferred(address(0), _owner);
          }
          /*//////////////////////////////////////////////////////////////
                                   OWNERSHIP LOGIC
          //////////////////////////////////////////////////////////////*/
          function transferOwnership(address newOwner) public virtual onlyOwner {
              owner = newOwner;
              emit OwnershipTransferred(msg.sender, newOwner);
          }
      }
      pragma solidity >=0.6.2;
      import './IUniswapV2Router01.sol';
      interface IUniswapV2Router02 is IUniswapV2Router01 {
          function removeLiquidityETHSupportingFeeOnTransferTokens(
              address token,
              uint liquidity,
              uint amountTokenMin,
              uint amountETHMin,
              address to,
              uint deadline
          ) external returns (uint amountETH);
          function removeLiquidityETHWithPermitSupportingFeeOnTransferTokens(
              address token,
              uint liquidity,
              uint amountTokenMin,
              uint amountETHMin,
              address to,
              uint deadline,
              bool approveMax, uint8 v, bytes32 r, bytes32 s
          ) external returns (uint amountETH);
          function swapExactTokensForTokensSupportingFeeOnTransferTokens(
              uint amountIn,
              uint amountOutMin,
              address[] calldata path,
              address to,
              uint deadline
          ) external;
          function swapExactETHForTokensSupportingFeeOnTransferTokens(
              uint amountOutMin,
              address[] calldata path,
              address to,
              uint deadline
          ) external payable;
          function swapExactTokensForETHSupportingFeeOnTransferTokens(
              uint amountIn,
              uint amountOutMin,
              address[] calldata path,
              address to,
              uint deadline
          ) external;
      }
      pragma solidity >=0.5.0;
      interface IUniswapV2Factory {
          event PairCreated(address indexed token0, address indexed token1, address pair, uint);
          function feeTo() external view returns (address);
          function feeToSetter() external view returns (address);
          function getPair(address tokenA, address tokenB) external view returns (address pair);
          function allPairs(uint) external view returns (address pair);
          function allPairsLength() external view returns (uint);
          function createPair(address tokenA, address tokenB) external returns (address pair);
          function setFeeTo(address) external;
          function setFeeToSetter(address) external;
      }
      // SPDX-License-Identifier: MIT
      // OpenZeppelin Contracts (last updated v5.0.0) (utils/structs/EnumerableSet.sol)
      // This file was procedurally generated from scripts/generate/templates/EnumerableSet.js.
      pragma solidity ^0.8.20;
      /**
       * @dev Library for managing
       * https://en.wikipedia.org/wiki/Set_(abstract_data_type)[sets] of primitive
       * types.
       *
       * Sets have the following properties:
       *
       * - Elements are added, removed, and checked for existence in constant time
       * (O(1)).
       * - Elements are enumerated in O(n). No guarantees are made on the ordering.
       *
       * ```solidity
       * contract Example {
       *     // Add the library methods
       *     using EnumerableSet for EnumerableSet.AddressSet;
       *
       *     // Declare a set state variable
       *     EnumerableSet.AddressSet private mySet;
       * }
       * ```
       *
       * As of v3.3.0, sets of type `bytes32` (`Bytes32Set`), `address` (`AddressSet`)
       * and `uint256` (`UintSet`) are supported.
       *
       * [WARNING]
       * ====
       * Trying to delete such a structure from storage will likely result in data corruption, rendering the structure
       * unusable.
       * See https://github.com/ethereum/solidity/pull/11843[ethereum/solidity#11843] for more info.
       *
       * In order to clean an EnumerableSet, you can either remove all elements one by one or create a fresh instance using an
       * array of EnumerableSet.
       * ====
       */
      library EnumerableSet {
          // To implement this library for multiple types with as little code
          // repetition as possible, we write it in terms of a generic Set type with
          // bytes32 values.
          // The Set implementation uses private functions, and user-facing
          // implementations (such as AddressSet) are just wrappers around the
          // underlying Set.
          // This means that we can only create new EnumerableSets for types that fit
          // in bytes32.
          struct Set {
              // Storage of set values
              bytes32[] _values;
              // Position is the index of the value in the `values` array plus 1.
              // Position 0 is used to mean a value is not in the set.
              mapping(bytes32 value => uint256) _positions;
          }
          /**
           * @dev Add a value to a set. O(1).
           *
           * Returns true if the value was added to the set, that is if it was not
           * already present.
           */
          function _add(Set storage set, bytes32 value) private returns (bool) {
              if (!_contains(set, value)) {
                  set._values.push(value);
                  // The value is stored at length-1, but we add 1 to all indexes
                  // and use 0 as a sentinel value
                  set._positions[value] = set._values.length;
                  return true;
              } else {
                  return false;
              }
          }
          /**
           * @dev Removes a value from a set. O(1).
           *
           * Returns true if the value was removed from the set, that is if it was
           * present.
           */
          function _remove(Set storage set, bytes32 value) private returns (bool) {
              // We cache the value's position to prevent multiple reads from the same storage slot
              uint256 position = set._positions[value];
              if (position != 0) {
                  // Equivalent to contains(set, value)
                  // To delete an element from the _values array in O(1), we swap the element to delete with the last one in
                  // the array, and then remove the last element (sometimes called as 'swap and pop').
                  // This modifies the order of the array, as noted in {at}.
                  uint256 valueIndex = position - 1;
                  uint256 lastIndex = set._values.length - 1;
                  if (valueIndex != lastIndex) {
                      bytes32 lastValue = set._values[lastIndex];
                      // Move the lastValue to the index where the value to delete is
                      set._values[valueIndex] = lastValue;
                      // Update the tracked position of the lastValue (that was just moved)
                      set._positions[lastValue] = position;
                  }
                  // Delete the slot where the moved value was stored
                  set._values.pop();
                  // Delete the tracked position for the deleted slot
                  delete set._positions[value];
                  return true;
              } else {
                  return false;
              }
          }
          /**
           * @dev Returns true if the value is in the set. O(1).
           */
          function _contains(Set storage set, bytes32 value) private view returns (bool) {
              return set._positions[value] != 0;
          }
          /**
           * @dev Returns the number of values on the set. O(1).
           */
          function _length(Set storage set) private view returns (uint256) {
              return set._values.length;
          }
          /**
           * @dev Returns the value stored at position `index` in the set. O(1).
           *
           * Note that there are no guarantees on the ordering of values inside the
           * array, and it may change when more values are added or removed.
           *
           * Requirements:
           *
           * - `index` must be strictly less than {length}.
           */
          function _at(Set storage set, uint256 index) private view returns (bytes32) {
              return set._values[index];
          }
          /**
           * @dev Return the entire set in an array
           *
           * WARNING: This operation will copy the entire storage to memory, which can be quite expensive. This is designed
           * to mostly be used by view accessors that are queried without any gas fees. Developers should keep in mind that
           * this function has an unbounded cost, and using it as part of a state-changing function may render the function
           * uncallable if the set grows to a point where copying to memory consumes too much gas to fit in a block.
           */
          function _values(Set storage set) private view returns (bytes32[] memory) {
              return set._values;
          }
          // Bytes32Set
          struct Bytes32Set {
              Set _inner;
          }
          /**
           * @dev Add a value to a set. O(1).
           *
           * Returns true if the value was added to the set, that is if it was not
           * already present.
           */
          function add(Bytes32Set storage set, bytes32 value) internal returns (bool) {
              return _add(set._inner, value);
          }
          /**
           * @dev Removes a value from a set. O(1).
           *
           * Returns true if the value was removed from the set, that is if it was
           * present.
           */
          function remove(Bytes32Set storage set, bytes32 value) internal returns (bool) {
              return _remove(set._inner, value);
          }
          /**
           * @dev Returns true if the value is in the set. O(1).
           */
          function contains(Bytes32Set storage set, bytes32 value) internal view returns (bool) {
              return _contains(set._inner, value);
          }
          /**
           * @dev Returns the number of values in the set. O(1).
           */
          function length(Bytes32Set storage set) internal view returns (uint256) {
              return _length(set._inner);
          }
          /**
           * @dev Returns the value stored at position `index` in the set. O(1).
           *
           * Note that there are no guarantees on the ordering of values inside the
           * array, and it may change when more values are added or removed.
           *
           * Requirements:
           *
           * - `index` must be strictly less than {length}.
           */
          function at(Bytes32Set storage set, uint256 index) internal view returns (bytes32) {
              return _at(set._inner, index);
          }
          /**
           * @dev Return the entire set in an array
           *
           * WARNING: This operation will copy the entire storage to memory, which can be quite expensive. This is designed
           * to mostly be used by view accessors that are queried without any gas fees. Developers should keep in mind that
           * this function has an unbounded cost, and using it as part of a state-changing function may render the function
           * uncallable if the set grows to a point where copying to memory consumes too much gas to fit in a block.
           */
          function values(Bytes32Set storage set) internal view returns (bytes32[] memory) {
              bytes32[] memory store = _values(set._inner);
              bytes32[] memory result;
              /// @solidity memory-safe-assembly
              assembly {
                  result := store
              }
              return result;
          }
          // AddressSet
          struct AddressSet {
              Set _inner;
          }
          /**
           * @dev Add a value to a set. O(1).
           *
           * Returns true if the value was added to the set, that is if it was not
           * already present.
           */
          function add(AddressSet storage set, address value) internal returns (bool) {
              return _add(set._inner, bytes32(uint256(uint160(value))));
          }
          /**
           * @dev Removes a value from a set. O(1).
           *
           * Returns true if the value was removed from the set, that is if it was
           * present.
           */
          function remove(AddressSet storage set, address value) internal returns (bool) {
              return _remove(set._inner, bytes32(uint256(uint160(value))));
          }
          /**
           * @dev Returns true if the value is in the set. O(1).
           */
          function contains(AddressSet storage set, address value) internal view returns (bool) {
              return _contains(set._inner, bytes32(uint256(uint160(value))));
          }
          /**
           * @dev Returns the number of values in the set. O(1).
           */
          function length(AddressSet storage set) internal view returns (uint256) {
              return _length(set._inner);
          }
          /**
           * @dev Returns the value stored at position `index` in the set. O(1).
           *
           * Note that there are no guarantees on the ordering of values inside the
           * array, and it may change when more values are added or removed.
           *
           * Requirements:
           *
           * - `index` must be strictly less than {length}.
           */
          function at(AddressSet storage set, uint256 index) internal view returns (address) {
              return address(uint160(uint256(_at(set._inner, index))));
          }
          /**
           * @dev Return the entire set in an array
           *
           * WARNING: This operation will copy the entire storage to memory, which can be quite expensive. This is designed
           * to mostly be used by view accessors that are queried without any gas fees. Developers should keep in mind that
           * this function has an unbounded cost, and using it as part of a state-changing function may render the function
           * uncallable if the set grows to a point where copying to memory consumes too much gas to fit in a block.
           */
          function values(AddressSet storage set) internal view returns (address[] memory) {
              bytes32[] memory store = _values(set._inner);
              address[] memory result;
              /// @solidity memory-safe-assembly
              assembly {
                  result := store
              }
              return result;
          }
          // UintSet
          struct UintSet {
              Set _inner;
          }
          /**
           * @dev Add a value to a set. O(1).
           *
           * Returns true if the value was added to the set, that is if it was not
           * already present.
           */
          function add(UintSet storage set, uint256 value) internal returns (bool) {
              return _add(set._inner, bytes32(value));
          }
          /**
           * @dev Removes a value from a set. O(1).
           *
           * Returns true if the value was removed from the set, that is if it was
           * present.
           */
          function remove(UintSet storage set, uint256 value) internal returns (bool) {
              return _remove(set._inner, bytes32(value));
          }
          /**
           * @dev Returns true if the value is in the set. O(1).
           */
          function contains(UintSet storage set, uint256 value) internal view returns (bool) {
              return _contains(set._inner, bytes32(value));
          }
          /**
           * @dev Returns the number of values in the set. O(1).
           */
          function length(UintSet storage set) internal view returns (uint256) {
              return _length(set._inner);
          }
          /**
           * @dev Returns the value stored at position `index` in the set. O(1).
           *
           * Note that there are no guarantees on the ordering of values inside the
           * array, and it may change when more values are added or removed.
           *
           * Requirements:
           *
           * - `index` must be strictly less than {length}.
           */
          function at(UintSet storage set, uint256 index) internal view returns (uint256) {
              return uint256(_at(set._inner, index));
          }
          /**
           * @dev Return the entire set in an array
           *
           * WARNING: This operation will copy the entire storage to memory, which can be quite expensive. This is designed
           * to mostly be used by view accessors that are queried without any gas fees. Developers should keep in mind that
           * this function has an unbounded cost, and using it as part of a state-changing function may render the function
           * uncallable if the set grows to a point where copying to memory consumes too much gas to fit in a block.
           */
          function values(UintSet storage set) internal view returns (uint256[] memory) {
              bytes32[] memory store = _values(set._inner);
              uint256[] memory result;
              /// @solidity memory-safe-assembly
              assembly {
                  result := store
              }
              return result;
          }
      }
      pragma solidity >=0.6.2;
      interface IUniswapV2Router01 {
          function factory() external pure returns (address);
          function WETH() external pure returns (address);
          function addLiquidity(
              address tokenA,
              address tokenB,
              uint amountADesired,
              uint amountBDesired,
              uint amountAMin,
              uint amountBMin,
              address to,
              uint deadline
          ) external returns (uint amountA, uint amountB, uint liquidity);
          function addLiquidityETH(
              address token,
              uint amountTokenDesired,
              uint amountTokenMin,
              uint amountETHMin,
              address to,
              uint deadline
          ) external payable returns (uint amountToken, uint amountETH, uint liquidity);
          function removeLiquidity(
              address tokenA,
              address tokenB,
              uint liquidity,
              uint amountAMin,
              uint amountBMin,
              address to,
              uint deadline
          ) external returns (uint amountA, uint amountB);
          function removeLiquidityETH(
              address token,
              uint liquidity,
              uint amountTokenMin,
              uint amountETHMin,
              address to,
              uint deadline
          ) external returns (uint amountToken, uint amountETH);
          function removeLiquidityWithPermit(
              address tokenA,
              address tokenB,
              uint liquidity,
              uint amountAMin,
              uint amountBMin,
              address to,
              uint deadline,
              bool approveMax, uint8 v, bytes32 r, bytes32 s
          ) external returns (uint amountA, uint amountB);
          function removeLiquidityETHWithPermit(
              address token,
              uint liquidity,
              uint amountTokenMin,
              uint amountETHMin,
              address to,
              uint deadline,
              bool approveMax, uint8 v, bytes32 r, bytes32 s
          ) external returns (uint amountToken, uint amountETH);
          function swapExactTokensForTokens(
              uint amountIn,
              uint amountOutMin,
              address[] calldata path,
              address to,
              uint deadline
          ) external returns (uint[] memory amounts);
          function swapTokensForExactTokens(
              uint amountOut,
              uint amountInMax,
              address[] calldata path,
              address to,
              uint deadline
          ) external returns (uint[] memory amounts);
          function swapExactETHForTokens(uint amountOutMin, address[] calldata path, address to, uint deadline)
              external
              payable
              returns (uint[] memory amounts);
          function swapTokensForExactETH(uint amountOut, uint amountInMax, address[] calldata path, address to, uint deadline)
              external
              returns (uint[] memory amounts);
          function swapExactTokensForETH(uint amountIn, uint amountOutMin, address[] calldata path, address to, uint deadline)
              external
              returns (uint[] memory amounts);
          function swapETHForExactTokens(uint amountOut, address[] calldata path, address to, uint deadline)
              external
              payable
              returns (uint[] memory amounts);
          function quote(uint amountA, uint reserveA, uint reserveB) external pure returns (uint amountB);
          function getAmountOut(uint amountIn, uint reserveIn, uint reserveOut) external pure returns (uint amountOut);
          function getAmountIn(uint amountOut, uint reserveIn, uint reserveOut) external pure returns (uint amountIn);
          function getAmountsOut(uint amountIn, address[] calldata path) external view returns (uint[] memory amounts);
          function getAmountsIn(uint amountOut, address[] calldata path) external view returns (uint[] memory amounts);
      }
      

      File 2 of 4: UniswapV2Factory
      pragma solidity =0.5.16;
      
      interface IUniswapV2Factory {
          event PairCreated(address indexed token0, address indexed token1, address pair, uint);
      
          function feeTo() external view returns (address);
          function feeToSetter() external view returns (address);
      
          function getPair(address tokenA, address tokenB) external view returns (address pair);
          function allPairs(uint) external view returns (address pair);
          function allPairsLength() external view returns (uint);
      
          function createPair(address tokenA, address tokenB) external returns (address pair);
      
          function setFeeTo(address) external;
          function setFeeToSetter(address) external;
      }
      
      interface IUniswapV2Pair {
          event Approval(address indexed owner, address indexed spender, uint value);
          event Transfer(address indexed from, address indexed to, uint value);
      
          function name() external pure returns (string memory);
          function symbol() external pure returns (string memory);
          function decimals() external pure returns (uint8);
          function totalSupply() external view returns (uint);
          function balanceOf(address owner) external view returns (uint);
          function allowance(address owner, address spender) external view returns (uint);
      
          function approve(address spender, uint value) external returns (bool);
          function transfer(address to, uint value) external returns (bool);
          function transferFrom(address from, address to, uint value) external returns (bool);
      
          function DOMAIN_SEPARATOR() external view returns (bytes32);
          function PERMIT_TYPEHASH() external pure returns (bytes32);
          function nonces(address owner) external view returns (uint);
      
          function permit(address owner, address spender, uint value, uint deadline, uint8 v, bytes32 r, bytes32 s) external;
      
          event Mint(address indexed sender, uint amount0, uint amount1);
          event Burn(address indexed sender, uint amount0, uint amount1, address indexed to);
          event Swap(
              address indexed sender,
              uint amount0In,
              uint amount1In,
              uint amount0Out,
              uint amount1Out,
              address indexed to
          );
          event Sync(uint112 reserve0, uint112 reserve1);
      
          function MINIMUM_LIQUIDITY() external pure returns (uint);
          function factory() external view returns (address);
          function token0() external view returns (address);
          function token1() external view returns (address);
          function getReserves() external view returns (uint112 reserve0, uint112 reserve1, uint32 blockTimestampLast);
          function price0CumulativeLast() external view returns (uint);
          function price1CumulativeLast() external view returns (uint);
          function kLast() external view returns (uint);
      
          function mint(address to) external returns (uint liquidity);
          function burn(address to) external returns (uint amount0, uint amount1);
          function swap(uint amount0Out, uint amount1Out, address to, bytes calldata data) external;
          function skim(address to) external;
          function sync() external;
      
          function initialize(address, address) external;
      }
      
      interface IUniswapV2ERC20 {
          event Approval(address indexed owner, address indexed spender, uint value);
          event Transfer(address indexed from, address indexed to, uint value);
      
          function name() external pure returns (string memory);
          function symbol() external pure returns (string memory);
          function decimals() external pure returns (uint8);
          function totalSupply() external view returns (uint);
          function balanceOf(address owner) external view returns (uint);
          function allowance(address owner, address spender) external view returns (uint);
      
          function approve(address spender, uint value) external returns (bool);
          function transfer(address to, uint value) external returns (bool);
          function transferFrom(address from, address to, uint value) external returns (bool);
      
          function DOMAIN_SEPARATOR() external view returns (bytes32);
          function PERMIT_TYPEHASH() external pure returns (bytes32);
          function nonces(address owner) external view returns (uint);
      
          function permit(address owner, address spender, uint value, uint deadline, uint8 v, bytes32 r, bytes32 s) external;
      }
      
      interface IERC20 {
          event Approval(address indexed owner, address indexed spender, uint value);
          event Transfer(address indexed from, address indexed to, uint value);
      
          function name() external view returns (string memory);
          function symbol() external view returns (string memory);
          function decimals() external view returns (uint8);
          function totalSupply() external view returns (uint);
          function balanceOf(address owner) external view returns (uint);
          function allowance(address owner, address spender) external view returns (uint);
      
          function approve(address spender, uint value) external returns (bool);
          function transfer(address to, uint value) external returns (bool);
          function transferFrom(address from, address to, uint value) external returns (bool);
      }
      
      interface IUniswapV2Callee {
          function uniswapV2Call(address sender, uint amount0, uint amount1, bytes calldata data) external;
      }
      
      contract UniswapV2ERC20 is IUniswapV2ERC20 {
          using SafeMath for uint;
      
          string public constant name = 'Uniswap V2';
          string public constant symbol = 'UNI-V2';
          uint8 public constant decimals = 18;
          uint  public totalSupply;
          mapping(address => uint) public balanceOf;
          mapping(address => mapping(address => uint)) public allowance;
      
          bytes32 public DOMAIN_SEPARATOR;
          // keccak256("Permit(address owner,address spender,uint256 value,uint256 nonce,uint256 deadline)");
          bytes32 public constant PERMIT_TYPEHASH = 0x6e71edae12b1b97f4d1f60370fef10105fa2faae0126114a169c64845d6126c9;
          mapping(address => uint) public nonces;
      
          event Approval(address indexed owner, address indexed spender, uint value);
          event Transfer(address indexed from, address indexed to, uint value);
      
          constructor() public {
              uint chainId;
              assembly {
                  chainId := chainid
              }
              DOMAIN_SEPARATOR = keccak256(
                  abi.encode(
                      keccak256('EIP712Domain(string name,string version,uint256 chainId,address verifyingContract)'),
                      keccak256(bytes(name)),
                      keccak256(bytes('1')),
                      chainId,
                      address(this)
                  )
              );
          }
      
          function _mint(address to, uint value) internal {
              totalSupply = totalSupply.add(value);
              balanceOf[to] = balanceOf[to].add(value);
              emit Transfer(address(0), to, value);
          }
      
          function _burn(address from, uint value) internal {
              balanceOf[from] = balanceOf[from].sub(value);
              totalSupply = totalSupply.sub(value);
              emit Transfer(from, address(0), value);
          }
      
          function _approve(address owner, address spender, uint value) private {
              allowance[owner][spender] = value;
              emit Approval(owner, spender, value);
          }
      
          function _transfer(address from, address to, uint value) private {
              balanceOf[from] = balanceOf[from].sub(value);
              balanceOf[to] = balanceOf[to].add(value);
              emit Transfer(from, to, value);
          }
      
          function approve(address spender, uint value) external returns (bool) {
              _approve(msg.sender, spender, value);
              return true;
          }
      
          function transfer(address to, uint value) external returns (bool) {
              _transfer(msg.sender, to, value);
              return true;
          }
      
          function transferFrom(address from, address to, uint value) external returns (bool) {
              if (allowance[from][msg.sender] != uint(-1)) {
                  allowance[from][msg.sender] = allowance[from][msg.sender].sub(value);
              }
              _transfer(from, to, value);
              return true;
          }
      
          function permit(address owner, address spender, uint value, uint deadline, uint8 v, bytes32 r, bytes32 s) external {
              require(deadline >= block.timestamp, 'UniswapV2: EXPIRED');
              bytes32 digest = keccak256(
                  abi.encodePacked(
                      '\x19\x01',
                      DOMAIN_SEPARATOR,
                      keccak256(abi.encode(PERMIT_TYPEHASH, owner, spender, value, nonces[owner]++, deadline))
                  )
              );
              address recoveredAddress = ecrecover(digest, v, r, s);
              require(recoveredAddress != address(0) && recoveredAddress == owner, 'UniswapV2: INVALID_SIGNATURE');
              _approve(owner, spender, value);
          }
      }
      
      contract UniswapV2Pair is IUniswapV2Pair, UniswapV2ERC20 {
          using SafeMath  for uint;
          using UQ112x112 for uint224;
      
          uint public constant MINIMUM_LIQUIDITY = 10**3;
          bytes4 private constant SELECTOR = bytes4(keccak256(bytes('transfer(address,uint256)')));
      
          address public factory;
          address public token0;
          address public token1;
      
          uint112 private reserve0;           // uses single storage slot, accessible via getReserves
          uint112 private reserve1;           // uses single storage slot, accessible via getReserves
          uint32  private blockTimestampLast; // uses single storage slot, accessible via getReserves
      
          uint public price0CumulativeLast;
          uint public price1CumulativeLast;
          uint public kLast; // reserve0 * reserve1, as of immediately after the most recent liquidity event
      
          uint private unlocked = 1;
          modifier lock() {
              require(unlocked == 1, 'UniswapV2: LOCKED');
              unlocked = 0;
              _;
              unlocked = 1;
          }
      
          function getReserves() public view returns (uint112 _reserve0, uint112 _reserve1, uint32 _blockTimestampLast) {
              _reserve0 = reserve0;
              _reserve1 = reserve1;
              _blockTimestampLast = blockTimestampLast;
          }
      
          function _safeTransfer(address token, address to, uint value) private {
              (bool success, bytes memory data) = token.call(abi.encodeWithSelector(SELECTOR, to, value));
              require(success && (data.length == 0 || abi.decode(data, (bool))), 'UniswapV2: TRANSFER_FAILED');
          }
      
          event Mint(address indexed sender, uint amount0, uint amount1);
          event Burn(address indexed sender, uint amount0, uint amount1, address indexed to);
          event Swap(
              address indexed sender,
              uint amount0In,
              uint amount1In,
              uint amount0Out,
              uint amount1Out,
              address indexed to
          );
          event Sync(uint112 reserve0, uint112 reserve1);
      
          constructor() public {
              factory = msg.sender;
          }
      
          // called once by the factory at time of deployment
          function initialize(address _token0, address _token1) external {
              require(msg.sender == factory, 'UniswapV2: FORBIDDEN'); // sufficient check
              token0 = _token0;
              token1 = _token1;
          }
      
          // update reserves and, on the first call per block, price accumulators
          function _update(uint balance0, uint balance1, uint112 _reserve0, uint112 _reserve1) private {
              require(balance0 <= uint112(-1) && balance1 <= uint112(-1), 'UniswapV2: OVERFLOW');
              uint32 blockTimestamp = uint32(block.timestamp % 2**32);
              uint32 timeElapsed = blockTimestamp - blockTimestampLast; // overflow is desired
              if (timeElapsed > 0 && _reserve0 != 0 && _reserve1 != 0) {
                  // * never overflows, and + overflow is desired
                  price0CumulativeLast += uint(UQ112x112.encode(_reserve1).uqdiv(_reserve0)) * timeElapsed;
                  price1CumulativeLast += uint(UQ112x112.encode(_reserve0).uqdiv(_reserve1)) * timeElapsed;
              }
              reserve0 = uint112(balance0);
              reserve1 = uint112(balance1);
              blockTimestampLast = blockTimestamp;
              emit Sync(reserve0, reserve1);
          }
      
          // if fee is on, mint liquidity equivalent to 1/6th of the growth in sqrt(k)
          function _mintFee(uint112 _reserve0, uint112 _reserve1) private returns (bool feeOn) {
              address feeTo = IUniswapV2Factory(factory).feeTo();
              feeOn = feeTo != address(0);
              uint _kLast = kLast; // gas savings
              if (feeOn) {
                  if (_kLast != 0) {
                      uint rootK = Math.sqrt(uint(_reserve0).mul(_reserve1));
                      uint rootKLast = Math.sqrt(_kLast);
                      if (rootK > rootKLast) {
                          uint numerator = totalSupply.mul(rootK.sub(rootKLast));
                          uint denominator = rootK.mul(5).add(rootKLast);
                          uint liquidity = numerator / denominator;
                          if (liquidity > 0) _mint(feeTo, liquidity);
                      }
                  }
              } else if (_kLast != 0) {
                  kLast = 0;
              }
          }
      
          // this low-level function should be called from a contract which performs important safety checks
          function mint(address to) external lock returns (uint liquidity) {
              (uint112 _reserve0, uint112 _reserve1,) = getReserves(); // gas savings
              uint balance0 = IERC20(token0).balanceOf(address(this));
              uint balance1 = IERC20(token1).balanceOf(address(this));
              uint amount0 = balance0.sub(_reserve0);
              uint amount1 = balance1.sub(_reserve1);
      
              bool feeOn = _mintFee(_reserve0, _reserve1);
              uint _totalSupply = totalSupply; // gas savings, must be defined here since totalSupply can update in _mintFee
              if (_totalSupply == 0) {
                  liquidity = Math.sqrt(amount0.mul(amount1)).sub(MINIMUM_LIQUIDITY);
                 _mint(address(0), MINIMUM_LIQUIDITY); // permanently lock the first MINIMUM_LIQUIDITY tokens
              } else {
                  liquidity = Math.min(amount0.mul(_totalSupply) / _reserve0, amount1.mul(_totalSupply) / _reserve1);
              }
              require(liquidity > 0, 'UniswapV2: INSUFFICIENT_LIQUIDITY_MINTED');
              _mint(to, liquidity);
      
              _update(balance0, balance1, _reserve0, _reserve1);
              if (feeOn) kLast = uint(reserve0).mul(reserve1); // reserve0 and reserve1 are up-to-date
              emit Mint(msg.sender, amount0, amount1);
          }
      
          // this low-level function should be called from a contract which performs important safety checks
          function burn(address to) external lock returns (uint amount0, uint amount1) {
              (uint112 _reserve0, uint112 _reserve1,) = getReserves(); // gas savings
              address _token0 = token0;                                // gas savings
              address _token1 = token1;                                // gas savings
              uint balance0 = IERC20(_token0).balanceOf(address(this));
              uint balance1 = IERC20(_token1).balanceOf(address(this));
              uint liquidity = balanceOf[address(this)];
      
              bool feeOn = _mintFee(_reserve0, _reserve1);
              uint _totalSupply = totalSupply; // gas savings, must be defined here since totalSupply can update in _mintFee
              amount0 = liquidity.mul(balance0) / _totalSupply; // using balances ensures pro-rata distribution
              amount1 = liquidity.mul(balance1) / _totalSupply; // using balances ensures pro-rata distribution
              require(amount0 > 0 && amount1 > 0, 'UniswapV2: INSUFFICIENT_LIQUIDITY_BURNED');
              _burn(address(this), liquidity);
              _safeTransfer(_token0, to, amount0);
              _safeTransfer(_token1, to, amount1);
              balance0 = IERC20(_token0).balanceOf(address(this));
              balance1 = IERC20(_token1).balanceOf(address(this));
      
              _update(balance0, balance1, _reserve0, _reserve1);
              if (feeOn) kLast = uint(reserve0).mul(reserve1); // reserve0 and reserve1 are up-to-date
              emit Burn(msg.sender, amount0, amount1, to);
          }
      
          // this low-level function should be called from a contract which performs important safety checks
          function swap(uint amount0Out, uint amount1Out, address to, bytes calldata data) external lock {
              require(amount0Out > 0 || amount1Out > 0, 'UniswapV2: INSUFFICIENT_OUTPUT_AMOUNT');
              (uint112 _reserve0, uint112 _reserve1,) = getReserves(); // gas savings
              require(amount0Out < _reserve0 && amount1Out < _reserve1, 'UniswapV2: INSUFFICIENT_LIQUIDITY');
      
              uint balance0;
              uint balance1;
              { // scope for _token{0,1}, avoids stack too deep errors
              address _token0 = token0;
              address _token1 = token1;
              require(to != _token0 && to != _token1, 'UniswapV2: INVALID_TO');
              if (amount0Out > 0) _safeTransfer(_token0, to, amount0Out); // optimistically transfer tokens
              if (amount1Out > 0) _safeTransfer(_token1, to, amount1Out); // optimistically transfer tokens
              if (data.length > 0) IUniswapV2Callee(to).uniswapV2Call(msg.sender, amount0Out, amount1Out, data);
              balance0 = IERC20(_token0).balanceOf(address(this));
              balance1 = IERC20(_token1).balanceOf(address(this));
              }
              uint amount0In = balance0 > _reserve0 - amount0Out ? balance0 - (_reserve0 - amount0Out) : 0;
              uint amount1In = balance1 > _reserve1 - amount1Out ? balance1 - (_reserve1 - amount1Out) : 0;
              require(amount0In > 0 || amount1In > 0, 'UniswapV2: INSUFFICIENT_INPUT_AMOUNT');
              { // scope for reserve{0,1}Adjusted, avoids stack too deep errors
              uint balance0Adjusted = balance0.mul(1000).sub(amount0In.mul(3));
              uint balance1Adjusted = balance1.mul(1000).sub(amount1In.mul(3));
              require(balance0Adjusted.mul(balance1Adjusted) >= uint(_reserve0).mul(_reserve1).mul(1000**2), 'UniswapV2: K');
              }
      
              _update(balance0, balance1, _reserve0, _reserve1);
              emit Swap(msg.sender, amount0In, amount1In, amount0Out, amount1Out, to);
          }
      
          // force balances to match reserves
          function skim(address to) external lock {
              address _token0 = token0; // gas savings
              address _token1 = token1; // gas savings
              _safeTransfer(_token0, to, IERC20(_token0).balanceOf(address(this)).sub(reserve0));
              _safeTransfer(_token1, to, IERC20(_token1).balanceOf(address(this)).sub(reserve1));
          }
      
          // force reserves to match balances
          function sync() external lock {
              _update(IERC20(token0).balanceOf(address(this)), IERC20(token1).balanceOf(address(this)), reserve0, reserve1);
          }
      }
      
      contract UniswapV2Factory is IUniswapV2Factory {
          address public feeTo;
          address public feeToSetter;
      
          mapping(address => mapping(address => address)) public getPair;
          address[] public allPairs;
      
          event PairCreated(address indexed token0, address indexed token1, address pair, uint);
      
          constructor(address _feeToSetter) public {
              feeToSetter = _feeToSetter;
          }
      
          function allPairsLength() external view returns (uint) {
              return allPairs.length;
          }
      
          function createPair(address tokenA, address tokenB) external returns (address pair) {
              require(tokenA != tokenB, 'UniswapV2: IDENTICAL_ADDRESSES');
              (address token0, address token1) = tokenA < tokenB ? (tokenA, tokenB) : (tokenB, tokenA);
              require(token0 != address(0), 'UniswapV2: ZERO_ADDRESS');
              require(getPair[token0][token1] == address(0), 'UniswapV2: PAIR_EXISTS'); // single check is sufficient
              bytes memory bytecode = type(UniswapV2Pair).creationCode;
              bytes32 salt = keccak256(abi.encodePacked(token0, token1));
              assembly {
                  pair := create2(0, add(bytecode, 32), mload(bytecode), salt)
              }
              IUniswapV2Pair(pair).initialize(token0, token1);
              getPair[token0][token1] = pair;
              getPair[token1][token0] = pair; // populate mapping in the reverse direction
              allPairs.push(pair);
              emit PairCreated(token0, token1, pair, allPairs.length);
          }
      
          function setFeeTo(address _feeTo) external {
              require(msg.sender == feeToSetter, 'UniswapV2: FORBIDDEN');
              feeTo = _feeTo;
          }
      
          function setFeeToSetter(address _feeToSetter) external {
              require(msg.sender == feeToSetter, 'UniswapV2: FORBIDDEN');
              feeToSetter = _feeToSetter;
          }
      }
      
      // a library for performing overflow-safe math, courtesy of DappHub (https://github.com/dapphub/ds-math)
      
      library SafeMath {
          function add(uint x, uint y) internal pure returns (uint z) {
              require((z = x + y) >= x, 'ds-math-add-overflow');
          }
      
          function sub(uint x, uint y) internal pure returns (uint z) {
              require((z = x - y) <= x, 'ds-math-sub-underflow');
          }
      
          function mul(uint x, uint y) internal pure returns (uint z) {
              require(y == 0 || (z = x * y) / y == x, 'ds-math-mul-overflow');
          }
      }
      
      // a library for performing various math operations
      
      library Math {
          function min(uint x, uint y) internal pure returns (uint z) {
              z = x < y ? x : y;
          }
      
          // babylonian method (https://en.wikipedia.org/wiki/Methods_of_computing_square_roots#Babylonian_method)
          function sqrt(uint y) internal pure returns (uint z) {
              if (y > 3) {
                  z = y;
                  uint x = y / 2 + 1;
                  while (x < z) {
                      z = x;
                      x = (y / x + x) / 2;
                  }
              } else if (y != 0) {
                  z = 1;
              }
          }
      }
      
      // a library for handling binary fixed point numbers (https://en.wikipedia.org/wiki/Q_(number_format))
      
      // range: [0, 2**112 - 1]
      // resolution: 1 / 2**112
      
      library UQ112x112 {
          uint224 constant Q112 = 2**112;
      
          // encode a uint112 as a UQ112x112
          function encode(uint112 y) internal pure returns (uint224 z) {
              z = uint224(y) * Q112; // never overflows
          }
      
          // divide a UQ112x112 by a uint112, returning a UQ112x112
          function uqdiv(uint224 x, uint112 y) internal pure returns (uint224 z) {
              z = x / uint224(y);
          }
      }

      File 3 of 4: UniswapV2Router02
      pragma solidity =0.6.6;
      
      interface IUniswapV2Factory {
          event PairCreated(address indexed token0, address indexed token1, address pair, uint);
      
          function feeTo() external view returns (address);
          function feeToSetter() external view returns (address);
      
          function getPair(address tokenA, address tokenB) external view returns (address pair);
          function allPairs(uint) external view returns (address pair);
          function allPairsLength() external view returns (uint);
      
          function createPair(address tokenA, address tokenB) external returns (address pair);
      
          function setFeeTo(address) external;
          function setFeeToSetter(address) external;
      }
      
      interface IUniswapV2Pair {
          event Approval(address indexed owner, address indexed spender, uint value);
          event Transfer(address indexed from, address indexed to, uint value);
      
          function name() external pure returns (string memory);
          function symbol() external pure returns (string memory);
          function decimals() external pure returns (uint8);
          function totalSupply() external view returns (uint);
          function balanceOf(address owner) external view returns (uint);
          function allowance(address owner, address spender) external view returns (uint);
      
          function approve(address spender, uint value) external returns (bool);
          function transfer(address to, uint value) external returns (bool);
          function transferFrom(address from, address to, uint value) external returns (bool);
      
          function DOMAIN_SEPARATOR() external view returns (bytes32);
          function PERMIT_TYPEHASH() external pure returns (bytes32);
          function nonces(address owner) external view returns (uint);
      
          function permit(address owner, address spender, uint value, uint deadline, uint8 v, bytes32 r, bytes32 s) external;
      
          event Mint(address indexed sender, uint amount0, uint amount1);
          event Burn(address indexed sender, uint amount0, uint amount1, address indexed to);
          event Swap(
              address indexed sender,
              uint amount0In,
              uint amount1In,
              uint amount0Out,
              uint amount1Out,
              address indexed to
          );
          event Sync(uint112 reserve0, uint112 reserve1);
      
          function MINIMUM_LIQUIDITY() external pure returns (uint);
          function factory() external view returns (address);
          function token0() external view returns (address);
          function token1() external view returns (address);
          function getReserves() external view returns (uint112 reserve0, uint112 reserve1, uint32 blockTimestampLast);
          function price0CumulativeLast() external view returns (uint);
          function price1CumulativeLast() external view returns (uint);
          function kLast() external view returns (uint);
      
          function mint(address to) external returns (uint liquidity);
          function burn(address to) external returns (uint amount0, uint amount1);
          function swap(uint amount0Out, uint amount1Out, address to, bytes calldata data) external;
          function skim(address to) external;
          function sync() external;
      
          function initialize(address, address) external;
      }
      
      interface IUniswapV2Router01 {
          function factory() external pure returns (address);
          function WETH() external pure returns (address);
      
          function addLiquidity(
              address tokenA,
              address tokenB,
              uint amountADesired,
              uint amountBDesired,
              uint amountAMin,
              uint amountBMin,
              address to,
              uint deadline
          ) external returns (uint amountA, uint amountB, uint liquidity);
          function addLiquidityETH(
              address token,
              uint amountTokenDesired,
              uint amountTokenMin,
              uint amountETHMin,
              address to,
              uint deadline
          ) external payable returns (uint amountToken, uint amountETH, uint liquidity);
          function removeLiquidity(
              address tokenA,
              address tokenB,
              uint liquidity,
              uint amountAMin,
              uint amountBMin,
              address to,
              uint deadline
          ) external returns (uint amountA, uint amountB);
          function removeLiquidityETH(
              address token,
              uint liquidity,
              uint amountTokenMin,
              uint amountETHMin,
              address to,
              uint deadline
          ) external returns (uint amountToken, uint amountETH);
          function removeLiquidityWithPermit(
              address tokenA,
              address tokenB,
              uint liquidity,
              uint amountAMin,
              uint amountBMin,
              address to,
              uint deadline,
              bool approveMax, uint8 v, bytes32 r, bytes32 s
          ) external returns (uint amountA, uint amountB);
          function removeLiquidityETHWithPermit(
              address token,
              uint liquidity,
              uint amountTokenMin,
              uint amountETHMin,
              address to,
              uint deadline,
              bool approveMax, uint8 v, bytes32 r, bytes32 s
          ) external returns (uint amountToken, uint amountETH);
          function swapExactTokensForTokens(
              uint amountIn,
              uint amountOutMin,
              address[] calldata path,
              address to,
              uint deadline
          ) external returns (uint[] memory amounts);
          function swapTokensForExactTokens(
              uint amountOut,
              uint amountInMax,
              address[] calldata path,
              address to,
              uint deadline
          ) external returns (uint[] memory amounts);
          function swapExactETHForTokens(uint amountOutMin, address[] calldata path, address to, uint deadline)
              external
              payable
              returns (uint[] memory amounts);
          function swapTokensForExactETH(uint amountOut, uint amountInMax, address[] calldata path, address to, uint deadline)
              external
              returns (uint[] memory amounts);
          function swapExactTokensForETH(uint amountIn, uint amountOutMin, address[] calldata path, address to, uint deadline)
              external
              returns (uint[] memory amounts);
          function swapETHForExactTokens(uint amountOut, address[] calldata path, address to, uint deadline)
              external
              payable
              returns (uint[] memory amounts);
      
          function quote(uint amountA, uint reserveA, uint reserveB) external pure returns (uint amountB);
          function getAmountOut(uint amountIn, uint reserveIn, uint reserveOut) external pure returns (uint amountOut);
          function getAmountIn(uint amountOut, uint reserveIn, uint reserveOut) external pure returns (uint amountIn);
          function getAmountsOut(uint amountIn, address[] calldata path) external view returns (uint[] memory amounts);
          function getAmountsIn(uint amountOut, address[] calldata path) external view returns (uint[] memory amounts);
      }
      
      interface IUniswapV2Router02 is IUniswapV2Router01 {
          function removeLiquidityETHSupportingFeeOnTransferTokens(
              address token,
              uint liquidity,
              uint amountTokenMin,
              uint amountETHMin,
              address to,
              uint deadline
          ) external returns (uint amountETH);
          function removeLiquidityETHWithPermitSupportingFeeOnTransferTokens(
              address token,
              uint liquidity,
              uint amountTokenMin,
              uint amountETHMin,
              address to,
              uint deadline,
              bool approveMax, uint8 v, bytes32 r, bytes32 s
          ) external returns (uint amountETH);
      
          function swapExactTokensForTokensSupportingFeeOnTransferTokens(
              uint amountIn,
              uint amountOutMin,
              address[] calldata path,
              address to,
              uint deadline
          ) external;
          function swapExactETHForTokensSupportingFeeOnTransferTokens(
              uint amountOutMin,
              address[] calldata path,
              address to,
              uint deadline
          ) external payable;
          function swapExactTokensForETHSupportingFeeOnTransferTokens(
              uint amountIn,
              uint amountOutMin,
              address[] calldata path,
              address to,
              uint deadline
          ) external;
      }
      
      interface IERC20 {
          event Approval(address indexed owner, address indexed spender, uint value);
          event Transfer(address indexed from, address indexed to, uint value);
      
          function name() external view returns (string memory);
          function symbol() external view returns (string memory);
          function decimals() external view returns (uint8);
          function totalSupply() external view returns (uint);
          function balanceOf(address owner) external view returns (uint);
          function allowance(address owner, address spender) external view returns (uint);
      
          function approve(address spender, uint value) external returns (bool);
          function transfer(address to, uint value) external returns (bool);
          function transferFrom(address from, address to, uint value) external returns (bool);
      }
      
      interface IWETH {
          function deposit() external payable;
          function transfer(address to, uint value) external returns (bool);
          function withdraw(uint) external;
      }
      
      contract UniswapV2Router02 is IUniswapV2Router02 {
          using SafeMath for uint;
      
          address public immutable override factory;
          address public immutable override WETH;
      
          modifier ensure(uint deadline) {
              require(deadline >= block.timestamp, 'UniswapV2Router: EXPIRED');
              _;
          }
      
          constructor(address _factory, address _WETH) public {
              factory = _factory;
              WETH = _WETH;
          }
      
          receive() external payable {
              assert(msg.sender == WETH); // only accept ETH via fallback from the WETH contract
          }
      
          // **** ADD LIQUIDITY ****
          function _addLiquidity(
              address tokenA,
              address tokenB,
              uint amountADesired,
              uint amountBDesired,
              uint amountAMin,
              uint amountBMin
          ) internal virtual returns (uint amountA, uint amountB) {
              // create the pair if it doesn't exist yet
              if (IUniswapV2Factory(factory).getPair(tokenA, tokenB) == address(0)) {
                  IUniswapV2Factory(factory).createPair(tokenA, tokenB);
              }
              (uint reserveA, uint reserveB) = UniswapV2Library.getReserves(factory, tokenA, tokenB);
              if (reserveA == 0 && reserveB == 0) {
                  (amountA, amountB) = (amountADesired, amountBDesired);
              } else {
                  uint amountBOptimal = UniswapV2Library.quote(amountADesired, reserveA, reserveB);
                  if (amountBOptimal <= amountBDesired) {
                      require(amountBOptimal >= amountBMin, 'UniswapV2Router: INSUFFICIENT_B_AMOUNT');
                      (amountA, amountB) = (amountADesired, amountBOptimal);
                  } else {
                      uint amountAOptimal = UniswapV2Library.quote(amountBDesired, reserveB, reserveA);
                      assert(amountAOptimal <= amountADesired);
                      require(amountAOptimal >= amountAMin, 'UniswapV2Router: INSUFFICIENT_A_AMOUNT');
                      (amountA, amountB) = (amountAOptimal, amountBDesired);
                  }
              }
          }
          function addLiquidity(
              address tokenA,
              address tokenB,
              uint amountADesired,
              uint amountBDesired,
              uint amountAMin,
              uint amountBMin,
              address to,
              uint deadline
          ) external virtual override ensure(deadline) returns (uint amountA, uint amountB, uint liquidity) {
              (amountA, amountB) = _addLiquidity(tokenA, tokenB, amountADesired, amountBDesired, amountAMin, amountBMin);
              address pair = UniswapV2Library.pairFor(factory, tokenA, tokenB);
              TransferHelper.safeTransferFrom(tokenA, msg.sender, pair, amountA);
              TransferHelper.safeTransferFrom(tokenB, msg.sender, pair, amountB);
              liquidity = IUniswapV2Pair(pair).mint(to);
          }
          function addLiquidityETH(
              address token,
              uint amountTokenDesired,
              uint amountTokenMin,
              uint amountETHMin,
              address to,
              uint deadline
          ) external virtual override payable ensure(deadline) returns (uint amountToken, uint amountETH, uint liquidity) {
              (amountToken, amountETH) = _addLiquidity(
                  token,
                  WETH,
                  amountTokenDesired,
                  msg.value,
                  amountTokenMin,
                  amountETHMin
              );
              address pair = UniswapV2Library.pairFor(factory, token, WETH);
              TransferHelper.safeTransferFrom(token, msg.sender, pair, amountToken);
              IWETH(WETH).deposit{value: amountETH}();
              assert(IWETH(WETH).transfer(pair, amountETH));
              liquidity = IUniswapV2Pair(pair).mint(to);
              // refund dust eth, if any
              if (msg.value > amountETH) TransferHelper.safeTransferETH(msg.sender, msg.value - amountETH);
          }
      
          // **** REMOVE LIQUIDITY ****
          function removeLiquidity(
              address tokenA,
              address tokenB,
              uint liquidity,
              uint amountAMin,
              uint amountBMin,
              address to,
              uint deadline
          ) public virtual override ensure(deadline) returns (uint amountA, uint amountB) {
              address pair = UniswapV2Library.pairFor(factory, tokenA, tokenB);
              IUniswapV2Pair(pair).transferFrom(msg.sender, pair, liquidity); // send liquidity to pair
              (uint amount0, uint amount1) = IUniswapV2Pair(pair).burn(to);
              (address token0,) = UniswapV2Library.sortTokens(tokenA, tokenB);
              (amountA, amountB) = tokenA == token0 ? (amount0, amount1) : (amount1, amount0);
              require(amountA >= amountAMin, 'UniswapV2Router: INSUFFICIENT_A_AMOUNT');
              require(amountB >= amountBMin, 'UniswapV2Router: INSUFFICIENT_B_AMOUNT');
          }
          function removeLiquidityETH(
              address token,
              uint liquidity,
              uint amountTokenMin,
              uint amountETHMin,
              address to,
              uint deadline
          ) public virtual override ensure(deadline) returns (uint amountToken, uint amountETH) {
              (amountToken, amountETH) = removeLiquidity(
                  token,
                  WETH,
                  liquidity,
                  amountTokenMin,
                  amountETHMin,
                  address(this),
                  deadline
              );
              TransferHelper.safeTransfer(token, to, amountToken);
              IWETH(WETH).withdraw(amountETH);
              TransferHelper.safeTransferETH(to, amountETH);
          }
          function removeLiquidityWithPermit(
              address tokenA,
              address tokenB,
              uint liquidity,
              uint amountAMin,
              uint amountBMin,
              address to,
              uint deadline,
              bool approveMax, uint8 v, bytes32 r, bytes32 s
          ) external virtual override returns (uint amountA, uint amountB) {
              address pair = UniswapV2Library.pairFor(factory, tokenA, tokenB);
              uint value = approveMax ? uint(-1) : liquidity;
              IUniswapV2Pair(pair).permit(msg.sender, address(this), value, deadline, v, r, s);
              (amountA, amountB) = removeLiquidity(tokenA, tokenB, liquidity, amountAMin, amountBMin, to, deadline);
          }
          function removeLiquidityETHWithPermit(
              address token,
              uint liquidity,
              uint amountTokenMin,
              uint amountETHMin,
              address to,
              uint deadline,
              bool approveMax, uint8 v, bytes32 r, bytes32 s
          ) external virtual override returns (uint amountToken, uint amountETH) {
              address pair = UniswapV2Library.pairFor(factory, token, WETH);
              uint value = approveMax ? uint(-1) : liquidity;
              IUniswapV2Pair(pair).permit(msg.sender, address(this), value, deadline, v, r, s);
              (amountToken, amountETH) = removeLiquidityETH(token, liquidity, amountTokenMin, amountETHMin, to, deadline);
          }
      
          // **** REMOVE LIQUIDITY (supporting fee-on-transfer tokens) ****
          function removeLiquidityETHSupportingFeeOnTransferTokens(
              address token,
              uint liquidity,
              uint amountTokenMin,
              uint amountETHMin,
              address to,
              uint deadline
          ) public virtual override ensure(deadline) returns (uint amountETH) {
              (, amountETH) = removeLiquidity(
                  token,
                  WETH,
                  liquidity,
                  amountTokenMin,
                  amountETHMin,
                  address(this),
                  deadline
              );
              TransferHelper.safeTransfer(token, to, IERC20(token).balanceOf(address(this)));
              IWETH(WETH).withdraw(amountETH);
              TransferHelper.safeTransferETH(to, amountETH);
          }
          function removeLiquidityETHWithPermitSupportingFeeOnTransferTokens(
              address token,
              uint liquidity,
              uint amountTokenMin,
              uint amountETHMin,
              address to,
              uint deadline,
              bool approveMax, uint8 v, bytes32 r, bytes32 s
          ) external virtual override returns (uint amountETH) {
              address pair = UniswapV2Library.pairFor(factory, token, WETH);
              uint value = approveMax ? uint(-1) : liquidity;
              IUniswapV2Pair(pair).permit(msg.sender, address(this), value, deadline, v, r, s);
              amountETH = removeLiquidityETHSupportingFeeOnTransferTokens(
                  token, liquidity, amountTokenMin, amountETHMin, to, deadline
              );
          }
      
          // **** SWAP ****
          // requires the initial amount to have already been sent to the first pair
          function _swap(uint[] memory amounts, address[] memory path, address _to) internal virtual {
              for (uint i; i < path.length - 1; i++) {
                  (address input, address output) = (path[i], path[i + 1]);
                  (address token0,) = UniswapV2Library.sortTokens(input, output);
                  uint amountOut = amounts[i + 1];
                  (uint amount0Out, uint amount1Out) = input == token0 ? (uint(0), amountOut) : (amountOut, uint(0));
                  address to = i < path.length - 2 ? UniswapV2Library.pairFor(factory, output, path[i + 2]) : _to;
                  IUniswapV2Pair(UniswapV2Library.pairFor(factory, input, output)).swap(
                      amount0Out, amount1Out, to, new bytes(0)
                  );
              }
          }
          function swapExactTokensForTokens(
              uint amountIn,
              uint amountOutMin,
              address[] calldata path,
              address to,
              uint deadline
          ) external virtual override ensure(deadline) returns (uint[] memory amounts) {
              amounts = UniswapV2Library.getAmountsOut(factory, amountIn, path);
              require(amounts[amounts.length - 1] >= amountOutMin, 'UniswapV2Router: INSUFFICIENT_OUTPUT_AMOUNT');
              TransferHelper.safeTransferFrom(
                  path[0], msg.sender, UniswapV2Library.pairFor(factory, path[0], path[1]), amounts[0]
              );
              _swap(amounts, path, to);
          }
          function swapTokensForExactTokens(
              uint amountOut,
              uint amountInMax,
              address[] calldata path,
              address to,
              uint deadline
          ) external virtual override ensure(deadline) returns (uint[] memory amounts) {
              amounts = UniswapV2Library.getAmountsIn(factory, amountOut, path);
              require(amounts[0] <= amountInMax, 'UniswapV2Router: EXCESSIVE_INPUT_AMOUNT');
              TransferHelper.safeTransferFrom(
                  path[0], msg.sender, UniswapV2Library.pairFor(factory, path[0], path[1]), amounts[0]
              );
              _swap(amounts, path, to);
          }
          function swapExactETHForTokens(uint amountOutMin, address[] calldata path, address to, uint deadline)
              external
              virtual
              override
              payable
              ensure(deadline)
              returns (uint[] memory amounts)
          {
              require(path[0] == WETH, 'UniswapV2Router: INVALID_PATH');
              amounts = UniswapV2Library.getAmountsOut(factory, msg.value, path);
              require(amounts[amounts.length - 1] >= amountOutMin, 'UniswapV2Router: INSUFFICIENT_OUTPUT_AMOUNT');
              IWETH(WETH).deposit{value: amounts[0]}();
              assert(IWETH(WETH).transfer(UniswapV2Library.pairFor(factory, path[0], path[1]), amounts[0]));
              _swap(amounts, path, to);
          }
          function swapTokensForExactETH(uint amountOut, uint amountInMax, address[] calldata path, address to, uint deadline)
              external
              virtual
              override
              ensure(deadline)
              returns (uint[] memory amounts)
          {
              require(path[path.length - 1] == WETH, 'UniswapV2Router: INVALID_PATH');
              amounts = UniswapV2Library.getAmountsIn(factory, amountOut, path);
              require(amounts[0] <= amountInMax, 'UniswapV2Router: EXCESSIVE_INPUT_AMOUNT');
              TransferHelper.safeTransferFrom(
                  path[0], msg.sender, UniswapV2Library.pairFor(factory, path[0], path[1]), amounts[0]
              );
              _swap(amounts, path, address(this));
              IWETH(WETH).withdraw(amounts[amounts.length - 1]);
              TransferHelper.safeTransferETH(to, amounts[amounts.length - 1]);
          }
          function swapExactTokensForETH(uint amountIn, uint amountOutMin, address[] calldata path, address to, uint deadline)
              external
              virtual
              override
              ensure(deadline)
              returns (uint[] memory amounts)
          {
              require(path[path.length - 1] == WETH, 'UniswapV2Router: INVALID_PATH');
              amounts = UniswapV2Library.getAmountsOut(factory, amountIn, path);
              require(amounts[amounts.length - 1] >= amountOutMin, 'UniswapV2Router: INSUFFICIENT_OUTPUT_AMOUNT');
              TransferHelper.safeTransferFrom(
                  path[0], msg.sender, UniswapV2Library.pairFor(factory, path[0], path[1]), amounts[0]
              );
              _swap(amounts, path, address(this));
              IWETH(WETH).withdraw(amounts[amounts.length - 1]);
              TransferHelper.safeTransferETH(to, amounts[amounts.length - 1]);
          }
          function swapETHForExactTokens(uint amountOut, address[] calldata path, address to, uint deadline)
              external
              virtual
              override
              payable
              ensure(deadline)
              returns (uint[] memory amounts)
          {
              require(path[0] == WETH, 'UniswapV2Router: INVALID_PATH');
              amounts = UniswapV2Library.getAmountsIn(factory, amountOut, path);
              require(amounts[0] <= msg.value, 'UniswapV2Router: EXCESSIVE_INPUT_AMOUNT');
              IWETH(WETH).deposit{value: amounts[0]}();
              assert(IWETH(WETH).transfer(UniswapV2Library.pairFor(factory, path[0], path[1]), amounts[0]));
              _swap(amounts, path, to);
              // refund dust eth, if any
              if (msg.value > amounts[0]) TransferHelper.safeTransferETH(msg.sender, msg.value - amounts[0]);
          }
      
          // **** SWAP (supporting fee-on-transfer tokens) ****
          // requires the initial amount to have already been sent to the first pair
          function _swapSupportingFeeOnTransferTokens(address[] memory path, address _to) internal virtual {
              for (uint i; i < path.length - 1; i++) {
                  (address input, address output) = (path[i], path[i + 1]);
                  (address token0,) = UniswapV2Library.sortTokens(input, output);
                  IUniswapV2Pair pair = IUniswapV2Pair(UniswapV2Library.pairFor(factory, input, output));
                  uint amountInput;
                  uint amountOutput;
                  { // scope to avoid stack too deep errors
                  (uint reserve0, uint reserve1,) = pair.getReserves();
                  (uint reserveInput, uint reserveOutput) = input == token0 ? (reserve0, reserve1) : (reserve1, reserve0);
                  amountInput = IERC20(input).balanceOf(address(pair)).sub(reserveInput);
                  amountOutput = UniswapV2Library.getAmountOut(amountInput, reserveInput, reserveOutput);
                  }
                  (uint amount0Out, uint amount1Out) = input == token0 ? (uint(0), amountOutput) : (amountOutput, uint(0));
                  address to = i < path.length - 2 ? UniswapV2Library.pairFor(factory, output, path[i + 2]) : _to;
                  pair.swap(amount0Out, amount1Out, to, new bytes(0));
              }
          }
          function swapExactTokensForTokensSupportingFeeOnTransferTokens(
              uint amountIn,
              uint amountOutMin,
              address[] calldata path,
              address to,
              uint deadline
          ) external virtual override ensure(deadline) {
              TransferHelper.safeTransferFrom(
                  path[0], msg.sender, UniswapV2Library.pairFor(factory, path[0], path[1]), amountIn
              );
              uint balanceBefore = IERC20(path[path.length - 1]).balanceOf(to);
              _swapSupportingFeeOnTransferTokens(path, to);
              require(
                  IERC20(path[path.length - 1]).balanceOf(to).sub(balanceBefore) >= amountOutMin,
                  'UniswapV2Router: INSUFFICIENT_OUTPUT_AMOUNT'
              );
          }
          function swapExactETHForTokensSupportingFeeOnTransferTokens(
              uint amountOutMin,
              address[] calldata path,
              address to,
              uint deadline
          )
              external
              virtual
              override
              payable
              ensure(deadline)
          {
              require(path[0] == WETH, 'UniswapV2Router: INVALID_PATH');
              uint amountIn = msg.value;
              IWETH(WETH).deposit{value: amountIn}();
              assert(IWETH(WETH).transfer(UniswapV2Library.pairFor(factory, path[0], path[1]), amountIn));
              uint balanceBefore = IERC20(path[path.length - 1]).balanceOf(to);
              _swapSupportingFeeOnTransferTokens(path, to);
              require(
                  IERC20(path[path.length - 1]).balanceOf(to).sub(balanceBefore) >= amountOutMin,
                  'UniswapV2Router: INSUFFICIENT_OUTPUT_AMOUNT'
              );
          }
          function swapExactTokensForETHSupportingFeeOnTransferTokens(
              uint amountIn,
              uint amountOutMin,
              address[] calldata path,
              address to,
              uint deadline
          )
              external
              virtual
              override
              ensure(deadline)
          {
              require(path[path.length - 1] == WETH, 'UniswapV2Router: INVALID_PATH');
              TransferHelper.safeTransferFrom(
                  path[0], msg.sender, UniswapV2Library.pairFor(factory, path[0], path[1]), amountIn
              );
              _swapSupportingFeeOnTransferTokens(path, address(this));
              uint amountOut = IERC20(WETH).balanceOf(address(this));
              require(amountOut >= amountOutMin, 'UniswapV2Router: INSUFFICIENT_OUTPUT_AMOUNT');
              IWETH(WETH).withdraw(amountOut);
              TransferHelper.safeTransferETH(to, amountOut);
          }
      
          // **** LIBRARY FUNCTIONS ****
          function quote(uint amountA, uint reserveA, uint reserveB) public pure virtual override returns (uint amountB) {
              return UniswapV2Library.quote(amountA, reserveA, reserveB);
          }
      
          function getAmountOut(uint amountIn, uint reserveIn, uint reserveOut)
              public
              pure
              virtual
              override
              returns (uint amountOut)
          {
              return UniswapV2Library.getAmountOut(amountIn, reserveIn, reserveOut);
          }
      
          function getAmountIn(uint amountOut, uint reserveIn, uint reserveOut)
              public
              pure
              virtual
              override
              returns (uint amountIn)
          {
              return UniswapV2Library.getAmountIn(amountOut, reserveIn, reserveOut);
          }
      
          function getAmountsOut(uint amountIn, address[] memory path)
              public
              view
              virtual
              override
              returns (uint[] memory amounts)
          {
              return UniswapV2Library.getAmountsOut(factory, amountIn, path);
          }
      
          function getAmountsIn(uint amountOut, address[] memory path)
              public
              view
              virtual
              override
              returns (uint[] memory amounts)
          {
              return UniswapV2Library.getAmountsIn(factory, amountOut, path);
          }
      }
      
      // a library for performing overflow-safe math, courtesy of DappHub (https://github.com/dapphub/ds-math)
      
      library SafeMath {
          function add(uint x, uint y) internal pure returns (uint z) {
              require((z = x + y) >= x, 'ds-math-add-overflow');
          }
      
          function sub(uint x, uint y) internal pure returns (uint z) {
              require((z = x - y) <= x, 'ds-math-sub-underflow');
          }
      
          function mul(uint x, uint y) internal pure returns (uint z) {
              require(y == 0 || (z = x * y) / y == x, 'ds-math-mul-overflow');
          }
      }
      
      library UniswapV2Library {
          using SafeMath for uint;
      
          // returns sorted token addresses, used to handle return values from pairs sorted in this order
          function sortTokens(address tokenA, address tokenB) internal pure returns (address token0, address token1) {
              require(tokenA != tokenB, 'UniswapV2Library: IDENTICAL_ADDRESSES');
              (token0, token1) = tokenA < tokenB ? (tokenA, tokenB) : (tokenB, tokenA);
              require(token0 != address(0), 'UniswapV2Library: ZERO_ADDRESS');
          }
      
          // calculates the CREATE2 address for a pair without making any external calls
          function pairFor(address factory, address tokenA, address tokenB) internal pure returns (address pair) {
              (address token0, address token1) = sortTokens(tokenA, tokenB);
              pair = address(uint(keccak256(abi.encodePacked(
                      hex'ff',
                      factory,
                      keccak256(abi.encodePacked(token0, token1)),
                      hex'96e8ac4277198ff8b6f785478aa9a39f403cb768dd02cbee326c3e7da348845f' // init code hash
                  ))));
          }
      
          // fetches and sorts the reserves for a pair
          function getReserves(address factory, address tokenA, address tokenB) internal view returns (uint reserveA, uint reserveB) {
              (address token0,) = sortTokens(tokenA, tokenB);
              (uint reserve0, uint reserve1,) = IUniswapV2Pair(pairFor(factory, tokenA, tokenB)).getReserves();
              (reserveA, reserveB) = tokenA == token0 ? (reserve0, reserve1) : (reserve1, reserve0);
          }
      
          // given some amount of an asset and pair reserves, returns an equivalent amount of the other asset
          function quote(uint amountA, uint reserveA, uint reserveB) internal pure returns (uint amountB) {
              require(amountA > 0, 'UniswapV2Library: INSUFFICIENT_AMOUNT');
              require(reserveA > 0 && reserveB > 0, 'UniswapV2Library: INSUFFICIENT_LIQUIDITY');
              amountB = amountA.mul(reserveB) / reserveA;
          }
      
          // given an input amount of an asset and pair reserves, returns the maximum output amount of the other asset
          function getAmountOut(uint amountIn, uint reserveIn, uint reserveOut) internal pure returns (uint amountOut) {
              require(amountIn > 0, 'UniswapV2Library: INSUFFICIENT_INPUT_AMOUNT');
              require(reserveIn > 0 && reserveOut > 0, 'UniswapV2Library: INSUFFICIENT_LIQUIDITY');
              uint amountInWithFee = amountIn.mul(997);
              uint numerator = amountInWithFee.mul(reserveOut);
              uint denominator = reserveIn.mul(1000).add(amountInWithFee);
              amountOut = numerator / denominator;
          }
      
          // given an output amount of an asset and pair reserves, returns a required input amount of the other asset
          function getAmountIn(uint amountOut, uint reserveIn, uint reserveOut) internal pure returns (uint amountIn) {
              require(amountOut > 0, 'UniswapV2Library: INSUFFICIENT_OUTPUT_AMOUNT');
              require(reserveIn > 0 && reserveOut > 0, 'UniswapV2Library: INSUFFICIENT_LIQUIDITY');
              uint numerator = reserveIn.mul(amountOut).mul(1000);
              uint denominator = reserveOut.sub(amountOut).mul(997);
              amountIn = (numerator / denominator).add(1);
          }
      
          // performs chained getAmountOut calculations on any number of pairs
          function getAmountsOut(address factory, uint amountIn, address[] memory path) internal view returns (uint[] memory amounts) {
              require(path.length >= 2, 'UniswapV2Library: INVALID_PATH');
              amounts = new uint[](path.length);
              amounts[0] = amountIn;
              for (uint i; i < path.length - 1; i++) {
                  (uint reserveIn, uint reserveOut) = getReserves(factory, path[i], path[i + 1]);
                  amounts[i + 1] = getAmountOut(amounts[i], reserveIn, reserveOut);
              }
          }
      
          // performs chained getAmountIn calculations on any number of pairs
          function getAmountsIn(address factory, uint amountOut, address[] memory path) internal view returns (uint[] memory amounts) {
              require(path.length >= 2, 'UniswapV2Library: INVALID_PATH');
              amounts = new uint[](path.length);
              amounts[amounts.length - 1] = amountOut;
              for (uint i = path.length - 1; i > 0; i--) {
                  (uint reserveIn, uint reserveOut) = getReserves(factory, path[i - 1], path[i]);
                  amounts[i - 1] = getAmountIn(amounts[i], reserveIn, reserveOut);
              }
          }
      }
      
      // helper methods for interacting with ERC20 tokens and sending ETH that do not consistently return true/false
      library TransferHelper {
          function safeApprove(address token, address to, uint value) internal {
              // bytes4(keccak256(bytes('approve(address,uint256)')));
              (bool success, bytes memory data) = token.call(abi.encodeWithSelector(0x095ea7b3, to, value));
              require(success && (data.length == 0 || abi.decode(data, (bool))), 'TransferHelper: APPROVE_FAILED');
          }
      
          function safeTransfer(address token, address to, uint value) internal {
              // bytes4(keccak256(bytes('transfer(address,uint256)')));
              (bool success, bytes memory data) = token.call(abi.encodeWithSelector(0xa9059cbb, to, value));
              require(success && (data.length == 0 || abi.decode(data, (bool))), 'TransferHelper: TRANSFER_FAILED');
          }
      
          function safeTransferFrom(address token, address from, address to, uint value) internal {
              // bytes4(keccak256(bytes('transferFrom(address,address,uint256)')));
              (bool success, bytes memory data) = token.call(abi.encodeWithSelector(0x23b872dd, from, to, value));
              require(success && (data.length == 0 || abi.decode(data, (bool))), 'TransferHelper: TRANSFER_FROM_FAILED');
          }
      
          function safeTransferETH(address to, uint value) internal {
              (bool success,) = to.call{value:value}(new bytes(0));
              require(success, 'TransferHelper: ETH_TRANSFER_FAILED');
          }
      }

      File 4 of 4: UniswapV2Pair
      // File: contracts/interfaces/IUniswapV2Pair.sol
      
      pragma solidity >=0.5.0;
      
      interface IUniswapV2Pair {
          event Approval(address indexed owner, address indexed spender, uint value);
          event Transfer(address indexed from, address indexed to, uint value);
      
          function name() external pure returns (string memory);
          function symbol() external pure returns (string memory);
          function decimals() external pure returns (uint8);
          function totalSupply() external view returns (uint);
          function balanceOf(address owner) external view returns (uint);
          function allowance(address owner, address spender) external view returns (uint);
      
          function approve(address spender, uint value) external returns (bool);
          function transfer(address to, uint value) external returns (bool);
          function transferFrom(address from, address to, uint value) external returns (bool);
      
          function DOMAIN_SEPARATOR() external view returns (bytes32);
          function PERMIT_TYPEHASH() external pure returns (bytes32);
          function nonces(address owner) external view returns (uint);
      
          function permit(address owner, address spender, uint value, uint deadline, uint8 v, bytes32 r, bytes32 s) external;
      
          event Mint(address indexed sender, uint amount0, uint amount1);
          event Burn(address indexed sender, uint amount0, uint amount1, address indexed to);
          event Swap(
              address indexed sender,
              uint amount0In,
              uint amount1In,
              uint amount0Out,
              uint amount1Out,
              address indexed to
          );
          event Sync(uint112 reserve0, uint112 reserve1);
      
          function MINIMUM_LIQUIDITY() external pure returns (uint);
          function factory() external view returns (address);
          function token0() external view returns (address);
          function token1() external view returns (address);
          function getReserves() external view returns (uint112 reserve0, uint112 reserve1, uint32 blockTimestampLast);
          function price0CumulativeLast() external view returns (uint);
          function price1CumulativeLast() external view returns (uint);
          function kLast() external view returns (uint);
      
          function mint(address to) external returns (uint liquidity);
          function burn(address to) external returns (uint amount0, uint amount1);
          function swap(uint amount0Out, uint amount1Out, address to, bytes calldata data) external;
          function skim(address to) external;
          function sync() external;
      
          function initialize(address, address) external;
      }
      
      // File: contracts/interfaces/IUniswapV2ERC20.sol
      
      pragma solidity >=0.5.0;
      
      interface IUniswapV2ERC20 {
          event Approval(address indexed owner, address indexed spender, uint value);
          event Transfer(address indexed from, address indexed to, uint value);
      
          function name() external pure returns (string memory);
          function symbol() external pure returns (string memory);
          function decimals() external pure returns (uint8);
          function totalSupply() external view returns (uint);
          function balanceOf(address owner) external view returns (uint);
          function allowance(address owner, address spender) external view returns (uint);
      
          function approve(address spender, uint value) external returns (bool);
          function transfer(address to, uint value) external returns (bool);
          function transferFrom(address from, address to, uint value) external returns (bool);
      
          function DOMAIN_SEPARATOR() external view returns (bytes32);
          function PERMIT_TYPEHASH() external pure returns (bytes32);
          function nonces(address owner) external view returns (uint);
      
          function permit(address owner, address spender, uint value, uint deadline, uint8 v, bytes32 r, bytes32 s) external;
      }
      
      // File: contracts/libraries/SafeMath.sol
      
      pragma solidity =0.5.16;
      
      // a library for performing overflow-safe math, courtesy of DappHub (https://github.com/dapphub/ds-math)
      
      library SafeMath {
          function add(uint x, uint y) internal pure returns (uint z) {
              require((z = x + y) >= x, 'ds-math-add-overflow');
          }
      
          function sub(uint x, uint y) internal pure returns (uint z) {
              require((z = x - y) <= x, 'ds-math-sub-underflow');
          }
      
          function mul(uint x, uint y) internal pure returns (uint z) {
              require(y == 0 || (z = x * y) / y == x, 'ds-math-mul-overflow');
          }
      }
      
      // File: contracts/UniswapV2ERC20.sol
      
      pragma solidity =0.5.16;
      
      
      
      contract UniswapV2ERC20 is IUniswapV2ERC20 {
          using SafeMath for uint;
      
          string public constant name = 'Uniswap V2';
          string public constant symbol = 'UNI-V2';
          uint8 public constant decimals = 18;
          uint  public totalSupply;
          mapping(address => uint) public balanceOf;
          mapping(address => mapping(address => uint)) public allowance;
      
          bytes32 public DOMAIN_SEPARATOR;
          // keccak256("Permit(address owner,address spender,uint256 value,uint256 nonce,uint256 deadline)");
          bytes32 public constant PERMIT_TYPEHASH = 0x6e71edae12b1b97f4d1f60370fef10105fa2faae0126114a169c64845d6126c9;
          mapping(address => uint) public nonces;
      
          event Approval(address indexed owner, address indexed spender, uint value);
          event Transfer(address indexed from, address indexed to, uint value);
      
          constructor() public {
              uint chainId;
              assembly {
                  chainId := chainid
              }
              DOMAIN_SEPARATOR = keccak256(
                  abi.encode(
                      keccak256('EIP712Domain(string name,string version,uint256 chainId,address verifyingContract)'),
                      keccak256(bytes(name)),
                      keccak256(bytes('1')),
                      chainId,
                      address(this)
                  )
              );
          }
      
          function _mint(address to, uint value) internal {
              totalSupply = totalSupply.add(value);
              balanceOf[to] = balanceOf[to].add(value);
              emit Transfer(address(0), to, value);
          }
      
          function _burn(address from, uint value) internal {
              balanceOf[from] = balanceOf[from].sub(value);
              totalSupply = totalSupply.sub(value);
              emit Transfer(from, address(0), value);
          }
      
          function _approve(address owner, address spender, uint value) private {
              allowance[owner][spender] = value;
              emit Approval(owner, spender, value);
          }
      
          function _transfer(address from, address to, uint value) private {
              balanceOf[from] = balanceOf[from].sub(value);
              balanceOf[to] = balanceOf[to].add(value);
              emit Transfer(from, to, value);
          }
      
          function approve(address spender, uint value) external returns (bool) {
              _approve(msg.sender, spender, value);
              return true;
          }
      
          function transfer(address to, uint value) external returns (bool) {
              _transfer(msg.sender, to, value);
              return true;
          }
      
          function transferFrom(address from, address to, uint value) external returns (bool) {
              if (allowance[from][msg.sender] != uint(-1)) {
                  allowance[from][msg.sender] = allowance[from][msg.sender].sub(value);
              }
              _transfer(from, to, value);
              return true;
          }
      
          function permit(address owner, address spender, uint value, uint deadline, uint8 v, bytes32 r, bytes32 s) external {
              require(deadline >= block.timestamp, 'UniswapV2: EXPIRED');
              bytes32 digest = keccak256(
                  abi.encodePacked(
                      '\x19\x01',
                      DOMAIN_SEPARATOR,
                      keccak256(abi.encode(PERMIT_TYPEHASH, owner, spender, value, nonces[owner]++, deadline))
                  )
              );
              address recoveredAddress = ecrecover(digest, v, r, s);
              require(recoveredAddress != address(0) && recoveredAddress == owner, 'UniswapV2: INVALID_SIGNATURE');
              _approve(owner, spender, value);
          }
      }
      
      // File: contracts/libraries/Math.sol
      
      pragma solidity =0.5.16;
      
      // a library for performing various math operations
      
      library Math {
          function min(uint x, uint y) internal pure returns (uint z) {
              z = x < y ? x : y;
          }
      
          // babylonian method (https://en.wikipedia.org/wiki/Methods_of_computing_square_roots#Babylonian_method)
          function sqrt(uint y) internal pure returns (uint z) {
              if (y > 3) {
                  z = y;
                  uint x = y / 2 + 1;
                  while (x < z) {
                      z = x;
                      x = (y / x + x) / 2;
                  }
              } else if (y != 0) {
                  z = 1;
              }
          }
      }
      
      // File: contracts/libraries/UQ112x112.sol
      
      pragma solidity =0.5.16;
      
      // a library for handling binary fixed point numbers (https://en.wikipedia.org/wiki/Q_(number_format))
      
      // range: [0, 2**112 - 1]
      // resolution: 1 / 2**112
      
      library UQ112x112 {
          uint224 constant Q112 = 2**112;
      
          // encode a uint112 as a UQ112x112
          function encode(uint112 y) internal pure returns (uint224 z) {
              z = uint224(y) * Q112; // never overflows
          }
      
          // divide a UQ112x112 by a uint112, returning a UQ112x112
          function uqdiv(uint224 x, uint112 y) internal pure returns (uint224 z) {
              z = x / uint224(y);
          }
      }
      
      // File: contracts/interfaces/IERC20.sol
      
      pragma solidity >=0.5.0;
      
      interface IERC20 {
          event Approval(address indexed owner, address indexed spender, uint value);
          event Transfer(address indexed from, address indexed to, uint value);
      
          function name() external view returns (string memory);
          function symbol() external view returns (string memory);
          function decimals() external view returns (uint8);
          function totalSupply() external view returns (uint);
          function balanceOf(address owner) external view returns (uint);
          function allowance(address owner, address spender) external view returns (uint);
      
          function approve(address spender, uint value) external returns (bool);
          function transfer(address to, uint value) external returns (bool);
          function transferFrom(address from, address to, uint value) external returns (bool);
      }
      
      // File: contracts/interfaces/IUniswapV2Factory.sol
      
      pragma solidity >=0.5.0;
      
      interface IUniswapV2Factory {
          event PairCreated(address indexed token0, address indexed token1, address pair, uint);
      
          function feeTo() external view returns (address);
          function feeToSetter() external view returns (address);
      
          function getPair(address tokenA, address tokenB) external view returns (address pair);
          function allPairs(uint) external view returns (address pair);
          function allPairsLength() external view returns (uint);
      
          function createPair(address tokenA, address tokenB) external returns (address pair);
      
          function setFeeTo(address) external;
          function setFeeToSetter(address) external;
      }
      
      // File: contracts/interfaces/IUniswapV2Callee.sol
      
      pragma solidity >=0.5.0;
      
      interface IUniswapV2Callee {
          function uniswapV2Call(address sender, uint amount0, uint amount1, bytes calldata data) external;
      }
      
      // File: contracts/UniswapV2Pair.sol
      
      pragma solidity =0.5.16;
      
      
      
      
      
      
      
      
      contract UniswapV2Pair is IUniswapV2Pair, UniswapV2ERC20 {
          using SafeMath  for uint;
          using UQ112x112 for uint224;
      
          uint public constant MINIMUM_LIQUIDITY = 10**3;
          bytes4 private constant SELECTOR = bytes4(keccak256(bytes('transfer(address,uint256)')));
      
          address public factory;
          address public token0;
          address public token1;
      
          uint112 private reserve0;           // uses single storage slot, accessible via getReserves
          uint112 private reserve1;           // uses single storage slot, accessible via getReserves
          uint32  private blockTimestampLast; // uses single storage slot, accessible via getReserves
      
          uint public price0CumulativeLast;
          uint public price1CumulativeLast;
          uint public kLast; // reserve0 * reserve1, as of immediately after the most recent liquidity event
      
          uint private unlocked = 1;
          modifier lock() {
              require(unlocked == 1, 'UniswapV2: LOCKED');
              unlocked = 0;
              _;
              unlocked = 1;
          }
      
          function getReserves() public view returns (uint112 _reserve0, uint112 _reserve1, uint32 _blockTimestampLast) {
              _reserve0 = reserve0;
              _reserve1 = reserve1;
              _blockTimestampLast = blockTimestampLast;
          }
      
          function _safeTransfer(address token, address to, uint value) private {
              (bool success, bytes memory data) = token.call(abi.encodeWithSelector(SELECTOR, to, value));
              require(success && (data.length == 0 || abi.decode(data, (bool))), 'UniswapV2: TRANSFER_FAILED');
          }
      
          event Mint(address indexed sender, uint amount0, uint amount1);
          event Burn(address indexed sender, uint amount0, uint amount1, address indexed to);
          event Swap(
              address indexed sender,
              uint amount0In,
              uint amount1In,
              uint amount0Out,
              uint amount1Out,
              address indexed to
          );
          event Sync(uint112 reserve0, uint112 reserve1);
      
          constructor() public {
              factory = msg.sender;
          }
      
          // called once by the factory at time of deployment
          function initialize(address _token0, address _token1) external {
              require(msg.sender == factory, 'UniswapV2: FORBIDDEN'); // sufficient check
              token0 = _token0;
              token1 = _token1;
          }
      
          // update reserves and, on the first call per block, price accumulators
          function _update(uint balance0, uint balance1, uint112 _reserve0, uint112 _reserve1) private {
              require(balance0 <= uint112(-1) && balance1 <= uint112(-1), 'UniswapV2: OVERFLOW');
              uint32 blockTimestamp = uint32(block.timestamp % 2**32);
              uint32 timeElapsed = blockTimestamp - blockTimestampLast; // overflow is desired
              if (timeElapsed > 0 && _reserve0 != 0 && _reserve1 != 0) {
                  // * never overflows, and + overflow is desired
                  price0CumulativeLast += uint(UQ112x112.encode(_reserve1).uqdiv(_reserve0)) * timeElapsed;
                  price1CumulativeLast += uint(UQ112x112.encode(_reserve0).uqdiv(_reserve1)) * timeElapsed;
              }
              reserve0 = uint112(balance0);
              reserve1 = uint112(balance1);
              blockTimestampLast = blockTimestamp;
              emit Sync(reserve0, reserve1);
          }
      
          // if fee is on, mint liquidity equivalent to 1/6th of the growth in sqrt(k)
          function _mintFee(uint112 _reserve0, uint112 _reserve1) private returns (bool feeOn) {
              address feeTo = IUniswapV2Factory(factory).feeTo();
              feeOn = feeTo != address(0);
              uint _kLast = kLast; // gas savings
              if (feeOn) {
                  if (_kLast != 0) {
                      uint rootK = Math.sqrt(uint(_reserve0).mul(_reserve1));
                      uint rootKLast = Math.sqrt(_kLast);
                      if (rootK > rootKLast) {
                          uint numerator = totalSupply.mul(rootK.sub(rootKLast));
                          uint denominator = rootK.mul(5).add(rootKLast);
                          uint liquidity = numerator / denominator;
                          if (liquidity > 0) _mint(feeTo, liquidity);
                      }
                  }
              } else if (_kLast != 0) {
                  kLast = 0;
              }
          }
      
          // this low-level function should be called from a contract which performs important safety checks
          function mint(address to) external lock returns (uint liquidity) {
              (uint112 _reserve0, uint112 _reserve1,) = getReserves(); // gas savings
              uint balance0 = IERC20(token0).balanceOf(address(this));
              uint balance1 = IERC20(token1).balanceOf(address(this));
              uint amount0 = balance0.sub(_reserve0);
              uint amount1 = balance1.sub(_reserve1);
      
              bool feeOn = _mintFee(_reserve0, _reserve1);
              uint _totalSupply = totalSupply; // gas savings, must be defined here since totalSupply can update in _mintFee
              if (_totalSupply == 0) {
                  liquidity = Math.sqrt(amount0.mul(amount1)).sub(MINIMUM_LIQUIDITY);
                 _mint(address(0), MINIMUM_LIQUIDITY); // permanently lock the first MINIMUM_LIQUIDITY tokens
              } else {
                  liquidity = Math.min(amount0.mul(_totalSupply) / _reserve0, amount1.mul(_totalSupply) / _reserve1);
              }
              require(liquidity > 0, 'UniswapV2: INSUFFICIENT_LIQUIDITY_MINTED');
              _mint(to, liquidity);
      
              _update(balance0, balance1, _reserve0, _reserve1);
              if (feeOn) kLast = uint(reserve0).mul(reserve1); // reserve0 and reserve1 are up-to-date
              emit Mint(msg.sender, amount0, amount1);
          }
      
          // this low-level function should be called from a contract which performs important safety checks
          function burn(address to) external lock returns (uint amount0, uint amount1) {
              (uint112 _reserve0, uint112 _reserve1,) = getReserves(); // gas savings
              address _token0 = token0;                                // gas savings
              address _token1 = token1;                                // gas savings
              uint balance0 = IERC20(_token0).balanceOf(address(this));
              uint balance1 = IERC20(_token1).balanceOf(address(this));
              uint liquidity = balanceOf[address(this)];
      
              bool feeOn = _mintFee(_reserve0, _reserve1);
              uint _totalSupply = totalSupply; // gas savings, must be defined here since totalSupply can update in _mintFee
              amount0 = liquidity.mul(balance0) / _totalSupply; // using balances ensures pro-rata distribution
              amount1 = liquidity.mul(balance1) / _totalSupply; // using balances ensures pro-rata distribution
              require(amount0 > 0 && amount1 > 0, 'UniswapV2: INSUFFICIENT_LIQUIDITY_BURNED');
              _burn(address(this), liquidity);
              _safeTransfer(_token0, to, amount0);
              _safeTransfer(_token1, to, amount1);
              balance0 = IERC20(_token0).balanceOf(address(this));
              balance1 = IERC20(_token1).balanceOf(address(this));
      
              _update(balance0, balance1, _reserve0, _reserve1);
              if (feeOn) kLast = uint(reserve0).mul(reserve1); // reserve0 and reserve1 are up-to-date
              emit Burn(msg.sender, amount0, amount1, to);
          }
      
          // this low-level function should be called from a contract which performs important safety checks
          function swap(uint amount0Out, uint amount1Out, address to, bytes calldata data) external lock {
              require(amount0Out > 0 || amount1Out > 0, 'UniswapV2: INSUFFICIENT_OUTPUT_AMOUNT');
              (uint112 _reserve0, uint112 _reserve1,) = getReserves(); // gas savings
              require(amount0Out < _reserve0 && amount1Out < _reserve1, 'UniswapV2: INSUFFICIENT_LIQUIDITY');
      
              uint balance0;
              uint balance1;
              { // scope for _token{0,1}, avoids stack too deep errors
              address _token0 = token0;
              address _token1 = token1;
              require(to != _token0 && to != _token1, 'UniswapV2: INVALID_TO');
              if (amount0Out > 0) _safeTransfer(_token0, to, amount0Out); // optimistically transfer tokens
              if (amount1Out > 0) _safeTransfer(_token1, to, amount1Out); // optimistically transfer tokens
              if (data.length > 0) IUniswapV2Callee(to).uniswapV2Call(msg.sender, amount0Out, amount1Out, data);
              balance0 = IERC20(_token0).balanceOf(address(this));
              balance1 = IERC20(_token1).balanceOf(address(this));
              }
              uint amount0In = balance0 > _reserve0 - amount0Out ? balance0 - (_reserve0 - amount0Out) : 0;
              uint amount1In = balance1 > _reserve1 - amount1Out ? balance1 - (_reserve1 - amount1Out) : 0;
              require(amount0In > 0 || amount1In > 0, 'UniswapV2: INSUFFICIENT_INPUT_AMOUNT');
              { // scope for reserve{0,1}Adjusted, avoids stack too deep errors
              uint balance0Adjusted = balance0.mul(1000).sub(amount0In.mul(3));
              uint balance1Adjusted = balance1.mul(1000).sub(amount1In.mul(3));
              require(balance0Adjusted.mul(balance1Adjusted) >= uint(_reserve0).mul(_reserve1).mul(1000**2), 'UniswapV2: K');
              }
      
              _update(balance0, balance1, _reserve0, _reserve1);
              emit Swap(msg.sender, amount0In, amount1In, amount0Out, amount1Out, to);
          }
      
          // force balances to match reserves
          function skim(address to) external lock {
              address _token0 = token0; // gas savings
              address _token1 = token1; // gas savings
              _safeTransfer(_token0, to, IERC20(_token0).balanceOf(address(this)).sub(reserve0));
              _safeTransfer(_token1, to, IERC20(_token1).balanceOf(address(this)).sub(reserve1));
          }
      
          // force reserves to match balances
          function sync() external lock {
              _update(IERC20(token0).balanceOf(address(this)), IERC20(token1).balanceOf(address(this)), reserve0, reserve1);
          }
      }