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198 lines
7.3 KiB
Solidity
198 lines
7.3 KiB
Solidity
// SPDX-License-Identifier: MIT
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pragma solidity ^0.7.0;
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/**
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* @title SushiSwap.
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* @dev Decentralized Exchange.
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*/
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import { TokenInterface } from "../../common/interfaces.sol";
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import { Helpers } from "./helpers.sol";
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import { Events } from "./events.sol";
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abstract contract SushiswapResolver is Helpers, Events {
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/**
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* @dev Deposit Liquidity.
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* @notice Deposit Liquidity to a SushiSwap pool.
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* @param tokenA The address of token A.(For ETH: 0xEeeeeEeeeEeEeeEeEeEeeEEEeeeeEeeeeeeeEEeE)
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* @param tokenB The address of token B.(For ETH: 0xEeeeeEeeeEeEeeEeEeEeeEEEeeeeEeeeeeeeEEeE)
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* @param amtA The amount of A tokens to deposit.
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* @param unitAmt The unit amount of of amtB/amtA with slippage.
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* @param slippage Slippage amount.
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* @param getId ID to retrieve amtA.
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* @param setId ID stores the amount of pools tokens received.
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*/
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function deposit(
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address tokenA,
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address tokenB,
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uint256 amtA,
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uint256 unitAmt,
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uint256 slippage,
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uint256 getId,
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uint256 setId
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) external payable returns (string memory _eventName, bytes memory _eventParam) {
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uint _amt = getUint(getId, amtA);
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(uint _amtA, uint _amtB, uint _uniAmt) = _addLiquidity(
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tokenA,
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tokenB,
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_amt,
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unitAmt,
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slippage
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);
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setUint(setId, _uniAmt);
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_eventName = "LogDepositLiquidity(address,address,uint256,uint256,uint256,uint256,uint256)";
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_eventParam = abi.encode(tokenA, tokenB, _amtA, _amtB, _uniAmt, getId, setId);
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}
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/**
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* @dev Withdraw Liquidity.
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* @notice Withdraw Liquidity from a SushiSwap pool.
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* @param tokenA The address of token A.(For ETH: 0xEeeeeEeeeEeEeeEeEeEeeEEEeeeeEeeeeeeeEEeE)
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* @param tokenB The address of token B.(For ETH: 0xEeeeeEeeeEeEeeEeEeEeeEEEeeeeEeeeeeeeEEeE)
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* @param uniAmt The amount of pool tokens to withdraw.
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* @param unitAmtA The unit amount of amtA/uniAmt with slippage.
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* @param unitAmtB The unit amount of amtB/uniAmt with slippage.
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* @param getId ID to retrieve uniAmt.
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* @param setIds Array of IDs to store the amount tokens received.
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*/
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function withdraw(
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address tokenA,
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address tokenB,
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uint256 uniAmt,
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uint256 unitAmtA,
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uint256 unitAmtB,
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uint256 getId,
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uint256[] calldata setIds
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) external payable returns (string memory _eventName, bytes memory _eventParam) {
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uint _amt = getUint(getId, uniAmt);
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(uint _amtA, uint _amtB, uint _uniAmt) = _removeLiquidity(
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tokenA,
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tokenB,
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_amt,
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unitAmtA,
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unitAmtB
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);
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setUint(setIds[0], _amtA);
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setUint(setIds[1], _amtB);
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_eventName = "LogWithdrawLiquidity(address,address,uint256,uint256,uint256,uint256,uint256[])";
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_eventParam = abi.encode(tokenA, tokenB, _amtA, _amtB, _uniAmt, getId, setIds);
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}
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/**
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* @dev Buy ETH/ERC20_Token.
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* @notice Buy a token using a SushiSwap
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* @param buyAddr The address of the token to buy.(For ETH: 0xEeeeeEeeeEeEeeEeEeEeeEEEeeeeEeeeeeeeEEeE)
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* @param sellAddr The address of the token to sell.(For ETH: 0xEeeeeEeeeEeEeeEeEeEeeEEEeeeeEeeeeeeeEEeE)
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* @param buyAmt The amount of tokens to buy.
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* @param unitAmt The unit amount of sellAmt/buyAmt with slippage.
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* @param getId ID to retrieve buyAmt.
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* @param setId ID to store the amount of tokens sold.
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*/
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function buy(
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address buyAddr,
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address sellAddr,
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uint256 buyAmt,
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uint256 unitAmt,
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uint256 getId,
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uint256 setId
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) external payable returns (string memory _eventName, bytes memory _eventParam) {
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uint _buyAmt = getUint(getId, buyAmt);
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(TokenInterface _buyAddr, TokenInterface _sellAddr) = changeEthAddress(buyAddr, sellAddr);
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address[] memory paths = getPaths(address(_buyAddr), address(_sellAddr));
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uint _slippageAmt = convert18ToDec(_sellAddr.decimals(),
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wmul(unitAmt, convertTo18(_buyAddr.decimals(), _buyAmt))
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);
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checkPair(paths);
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uint _expectedAmt = getExpectedSellAmt(paths, _buyAmt);
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require(_slippageAmt >= _expectedAmt, "Too much slippage");
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bool isEth = address(_sellAddr) == wethAddr;
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convertEthToWeth(isEth, _sellAddr, _expectedAmt);
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approve(_sellAddr, address(router), _expectedAmt);
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uint _sellAmt = router.swapTokensForExactTokens(
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_buyAmt,
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_expectedAmt,
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paths,
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address(this),
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block.timestamp + 1
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)[0];
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isEth = address(_buyAddr) == wethAddr;
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convertWethToEth(isEth, _buyAddr, _buyAmt);
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setUint(setId, _sellAmt);
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_eventName = "LogBuy(address,address,uint256,uint256,uint256,uint256)";
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_eventParam = abi.encode(buyAddr, sellAddr, _buyAmt, _sellAmt, getId, setId);
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}
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/**
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* @dev Sell ETH/ERC20_Token.
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* @notice Sell a token using a SushiSwap
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* @param buyAddr The address of the token to buy.(For ETH: 0xEeeeeEeeeEeEeeEeEeEeeEEEeeeeEeeeeeeeEEeE)
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* @param sellAddr The address of the token to sell.(For ETH: 0xEeeeeEeeeEeEeeEeEeEeeEEEeeeeEeeeeeeeEEeE)
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* @param sellAmt The amount of the token to sell.
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* @param unitAmt The unit amount of buyAmt/sellAmt with slippage.
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* @param getId ID to retrieve sellAmt.
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* @param setId ID stores the amount of token brought.
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*/
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function sell(
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address buyAddr,
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address sellAddr,
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uint256 sellAmt,
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uint256 unitAmt,
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uint256 getId,
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uint256 setId
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) external payable returns (string memory _eventName, bytes memory _eventParam) {
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uint _sellAmt = getUint(getId, sellAmt);
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(TokenInterface _buyAddr, TokenInterface _sellAddr) = changeEthAddress(buyAddr, sellAddr);
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address[] memory paths = getPaths(address(_buyAddr), address(_sellAddr));
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if (_sellAmt == uint(-1)) {
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_sellAmt = sellAddr == ethAddr ?
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address(this).balance :
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_sellAddr.balanceOf(address(this));
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}
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uint _slippageAmt = convert18ToDec(_buyAddr.decimals(),
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wmul(unitAmt, convertTo18(_sellAddr.decimals(), _sellAmt))
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);
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checkPair(paths);
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uint _expectedAmt = getExpectedBuyAmt(paths, _sellAmt);
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require(_slippageAmt <= _expectedAmt, "Too much slippage");
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bool isEth = address(_sellAddr) == wethAddr;
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convertEthToWeth(isEth, _sellAddr, _sellAmt);
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approve(_sellAddr, address(router), _sellAmt);
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uint _buyAmt = router.swapExactTokensForTokens(
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_sellAmt,
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_expectedAmt,
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paths,
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address(this),
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block.timestamp + 1
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)[1];
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isEth = address(_buyAddr) == wethAddr;
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convertWethToEth(isEth, _buyAddr, _buyAmt);
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setUint(setId, _buyAmt);
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_eventName = "LogSell(address,address,uint256,uint256,uint256,uint256)";
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_eventParam = abi.encode(buyAddr, sellAddr, _buyAmt, _sellAmt, getId, setId);
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}
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}
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contract ConnectV2Sushiswap is SushiswapResolver {
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string public constant name = "Sushiswap-v1";
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}
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