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Parent Txn Hash | Block | From | To | Value | |||
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0xe231768f4b795dc6ab3bf545dcaf806489feb905e8882f9eac5360ea63097148 | 16139252 | 831 days 10 hrs ago | 0xeaa98f7b5f7bfbcd1af14d0efaa9d9e68d82f640 | Contract Creation | 0 MATIC |
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Contract Name:
PolyDexPair
Compiler Version
v0.5.16+commit.9c3226ce
Optimization Enabled:
Yes with 999999 runs
Other Settings:
default evmVersion
Contract Source Code (Solidity Standard Json-Input format)
pragma solidity = 0.5.16; import './interfaces/IPolyDexPair.sol'; import './interfaces/IPolyDexFormula.sol'; import './PolyDexERC20.sol'; import './libraries/Math.sol'; import './libraries/UQ112x112.sol'; import './interfaces/IERC20.sol'; import './interfaces/IPolyDexFactory.sol'; import './interfaces/IUniswapV2Callee.sol'; contract PolyDexPair is IPolyDexPair, PolyDexERC20 { 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 private unlocked = 1; address public formula; uint112 private collectedFee0; // uses single storage slot, accessible via getReserves uint112 private collectedFee1; // uses single storage slot, accessible via getReserves uint32 public swapFee; modifier lock() { require(unlocked == 1, 'PolyDexV2: LOCKED'); unlocked = 0; _; unlocked = 1; } function getReserves() public view returns (uint112 _reserve0, uint112 _reserve1, uint32 _blockTimestampLast) { _reserve0 = reserve0; _reserve1 = reserve1; _blockTimestampLast = blockTimestampLast; } function getCollectedFees() public view returns (uint112 _collectedFee0, uint112 _collectedFee1) { _collectedFee0 = collectedFee0; _collectedFee1 = collectedFee1; } function getTokenWeights() public view returns (uint32 _tokenWeight0, uint32 _tokenWeight1) { _tokenWeight0 = 50; _tokenWeight1 = 50; } function getSwapFee() public view returns (uint32 _swapFee) { _swapFee = swapFee; } 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))), 'PolyDexV2: TRANSFER_FAILED'); } constructor() public { factory = msg.sender; } // called once by the factory at time of deployment function initialize(address _token0, address _token1, uint32 _swapFee) external { require(msg.sender == factory, 'PolyDexV2: FORBIDDEN'); // sufficient check token0 = _token0; token1 = _token1; swapFee = _swapFee; formula = IPolyDexFactory(factory).formula(); } // 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), 'Polydex: 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); } function _mintFee(uint112 _reserve0, uint112 _reserve1) private returns (bool feeOn) { address feeTo = IPolyDexFactory(factory).feeTo(); uint112 protocolFee = uint112(IPolyDexFactory(factory).protocolFee()); feeOn = feeTo != address(0); (uint112 _collectedFee0, uint112 _collectedFee1) = getCollectedFees(); if (protocolFee > 0 && feeOn && (_collectedFee0 > 0 || _collectedFee1 > 0)) { uint liquidity = IPolyDexFormula(formula).mintLiquidityFee( totalSupply, _reserve0, _reserve1, _collectedFee0 / protocolFee, _collectedFee1 / protocolFee ); if (liquidity > 0) _mint(feeTo, liquidity); } if (_collectedFee0 > 0) collectedFee0 = 0; if (_collectedFee1 > 0) collectedFee1 = 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); _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, 'PolyDexV2: INSUFFICIENT_LIQUIDITY_MINTED'); _mint(to, liquidity); _update(balance0, balance1, _reserve0, _reserve1); 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)]; _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, 'PolyDexV2: 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); 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, 'PolyDexV2: INSUFFICIENT_OUTPUT_AMOUNT'); uint112 _reserve0 = reserve0; // gas savings uint112 _reserve1 = reserve1; // gas savings require(amount0Out < _reserve0 && amount1Out < _reserve1, 'PolyDexV2: 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, 'PolyDexV2: 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, 'PolyDexV2: INSUFFICIENT_INPUT_AMOUNT'); { // scope for reserve{0,1}Adjusted, avoids stack too deep errors uint balance0Adjusted = balance0.mul(10000); uint balance1Adjusted = balance1.mul(10000); { // avoids stack too deep errors if (amount0In > 0) { uint amount0InFee = amount0In.mul(swapFee); balance0Adjusted = balance0Adjusted.sub(amount0InFee); collectedFee0 = uint112(uint(collectedFee0).add(amount0InFee)); } if (amount1In > 0) { uint amount1InFee = amount1In.mul(swapFee); balance1Adjusted = balance1Adjusted.sub(amount1InFee); collectedFee1 = uint112(uint(collectedFee1).add(amount1InFee)); } require(balance0Adjusted.mul(balance1Adjusted) >= uint(_reserve0).mul(_reserve1).mul(10000**2), 'PolyDexV2: 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); } }
pragma solidity >=0.5.16; interface IPolyDexPair { 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 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 PaidProtocolFee(uint112 collectedFee0, uint112 collectedFee1); 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 getCollectedFees() external view returns (uint112 _collectedFee0, uint112 _collectedFee1); function getTokenWeights() external view returns (uint32 tokenWeight0, uint32 tokenWeight1); function getSwapFee() external view returns (uint32); function price0CumulativeLast() external view returns (uint); function price1CumulativeLast() 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, uint32) external; }
// SPDX-License-Identifier: SEE LICENSE IN LICENSE pragma solidity >=0.5.16; /* Bancor Formula interface */ interface IPolyDexFormula { function getReserveAndWeights(address pair, address tokenA) external view returns ( address tokenB, uint reserveA, uint reserveB, uint32 tokenWeightA, uint32 tokenWeightB, uint32 swapFee ); function getFactoryReserveAndWeights(address factory, address pair, address tokenA) external view returns ( address tokenB, uint reserveA, uint reserveB, uint32 tokenWeightA, uint32 tokenWeightB, uint32 swapFee ); function getAmountIn( uint amountOut, uint reserveIn, uint reserveOut, uint32 tokenWeightIn, uint32 tokenWeightOut, uint32 swapFee ) external view returns (uint amountIn); function getPairAmountIn(address pair, address tokenIn, uint amountOut) external view returns (uint amountIn); function getAmountOut( uint amountIn, uint reserveIn, uint reserveOut, uint32 tokenWeightIn, uint32 tokenWeightOut, uint32 swapFee ) external view returns (uint amountOut); function getPairAmountOut(address pair, address tokenIn, uint amountIn) external view returns (uint amountOut); function getAmountsIn( address tokenIn, address tokenOut, uint amountOut, address[] calldata path ) external view returns (uint[] memory amounts); function getFactoryAmountsIn( address factory, address tokenIn, address tokenOut, uint amountOut, address[] calldata path ) external view returns (uint[] memory amounts); function getAmountsOut( address tokenIn, address tokenOut, uint amountIn, address[] calldata path ) external view returns (uint[] memory amounts); function getFactoryAmountsOut( address factory, address tokenIn, address tokenOut, uint amountIn, address[] calldata path ) external view returns (uint[] memory amounts); function ensureConstantValue(uint reserve0, uint reserve1, uint balance0Adjusted, uint balance1Adjusted, uint32 tokenWeight0) external view returns (bool); function getReserves(address pair, address tokenA, address tokenB) external view returns (uint reserveA, uint reserveB); function getOtherToken(address pair, address tokenA) external view returns (address tokenB); function quote(uint amountA, uint reserveA, uint reserveB) external pure returns (uint amountB); function sortTokens(address tokenA, address tokenB) external pure returns (address token0, address token1); function mintLiquidityFee( uint totalLiquidity, uint112 reserve0, uint112 reserve1, uint112 collectedFee0, uint112 collectedFee1) external view returns (uint amount); }
pragma solidity =0.5.16; import './interfaces/IPolyDexERC20.sol'; import './libraries/SafeMath.sol'; contract PolyDexERC20 is IPolyDexERC20 { using SafeMath for uint; string public constant name = 'PolyDexV2 Liquidity Provider'; string public constant symbol = 'PolyDexV2-LP'; 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; 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, 'PolyDexV2: 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, 'PolyDexV2: INVALID_SIGNATURE'); _approve(owner, spender, value); } }
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; } } }
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); } }
pragma solidity >=0.5.16; 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); }
pragma solidity >=0.5.16; interface IPolyDexFactory { event PairCreated(address indexed token0, address indexed token1, address pair, uint32 swapFee, uint); function feeTo() external view returns (address); function formula() external view returns (address); function protocolFee() external view returns (uint); 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 isPair(address) external view returns (bool); function allPairsLength() external view returns (uint); function createPair(address tokenA, address tokenB) external returns (address pair); function getWeightsAndSwapFee(address pair) external view returns (uint32 tokenWeight0, uint32 tokenWeight1, uint32 swapFee); function setFeeTo(address) external; function setFeeToSetter(address) external; function setProtocolFee(uint) external; }
pragma solidity >=0.5.16; interface IUniswapV2Callee { function uniswapV2Call(address sender, uint amount0, uint amount1, bytes calldata data) external; }
pragma solidity >=0.5.16; interface IPolyDexERC20 { 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 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; }
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'); } function div(uint a, uint b) internal pure returns (uint c) { require(b > 0, 'ds-math-division-by-zero'); c = a / b; } }
{ "optimizer": { "enabled": true, "runs": 999999 }, "outputSelection": { "*": { "*": [ "evm.bytecode", "evm.deployedBytecode", "abi" ] } }, "metadata": { "useLiteralContent": true }, "libraries": {} }
Contract Security Audit
- No Contract Security Audit Submitted- Submit Audit Here
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Contract Creation Code
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