mirror of
https://github.com/Instadapp/dsa-connectors.git
synced 2024-07-29 22:37:00 +00:00
278 lines
10 KiB
Solidity
278 lines
10 KiB
Solidity
pragma solidity ^0.7.0;
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import { IERC20 } from "@openzeppelin/contracts/token/ERC20/IERC20.sol";
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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 LiquidityManage is Helpers, Events {
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/**
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* @dev Deposit Liquidity in InstaPool.
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* @param token token address.(For ETH: 0xEeeeeEeeeEeEeeEeEeEeeEEEeeeeEeeeeeeeEEeE)
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* @param amt token amount.
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* @param getId Get token amount at this ID from `InstaMemory` Contract.
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* @param setId Set token amount at this ID in `InstaMemory` Contract.
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*/
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function deposit(
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address token,
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uint amt,
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uint getId,
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uint setId
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) external payable returns (string memory _eventName, bytes memory _eventParam) {
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uint _amt = getUint(getId, amt);
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uint ethAmt;
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if (token == ethAddr) {
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_amt = _amt == uint(-1) ? address(this).balance : _amt;
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ethAmt = _amt;
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} else {
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IERC20 tokenContract = IERC20(token);
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_amt = _amt == uint(-1) ? tokenContract.balanceOf(address(this)) : _amt;
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tokenContract.approve(address(instaPool), _amt);
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}
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instaPool.deposit{value: ethAmt}(token, _amt);
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setUint(setId, _amt);
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_eventName = "LogDepositLiquidity(address,uint256,uint256,uint256)";
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_eventParam = abi.encode(token, _amt, getId, setId);
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}
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/**
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* @dev Withdraw Liquidity in InstaPool.
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* @param token token address.(For ETH: 0xEeeeeEeeeEeEeeEeEeEeeEEEeeeeEeeeeeeeEEeE)
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* @param amt token amount.
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* @param getId Get token amount at this ID from `InstaMemory` Contract.
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* @param setId Set token amount at this ID in `InstaMemory` Contract.
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*/
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function withdraw(
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address token,
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uint amt,
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uint getId,
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uint setId
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) external payable returns (string memory _eventName, bytes memory _eventParam) {
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uint _amt = getUint(getId, amt);
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instaPool.withdraw(token, _amt);
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setUint(setId, _amt);
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_eventName = "LogWithdrawLiquidity(address,uint256,uint256,uint256)";
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_eventParam = abi.encode(token, _amt, getId, setId);
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}
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}
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abstract contract LiquidityAccessHelper is LiquidityManage {
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/**
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* @dev Add Fee Amount to borrowed flashloan/
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* @param amt Get token amount at this ID from `InstaMemory` Contract.
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* @param getId Get token amount at this ID from `InstaMemory` Contract.
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* @param setId Set token amount at this ID in `InstaMemory` Contract.
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*/
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function addFeeAmount(address token, uint amt, uint getId, uint setId) external payable {
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uint _amt = getUint(getId, amt);
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require(_amt != 0, "amt-is-0");
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uint totalFee = calculateTotalFeeAmt(IERC20(token), _amt);
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setUint(setId, totalFee);
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}
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}
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contract LiquidityAccess is LiquidityAccessHelper {
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/**
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* @dev Access Token Liquidity from InstaPool.
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* @param token token address.(For ETH: 0xEeeeeEeeeEeEeeEeEeEeeEEEeeeeEeeeeeeeEEeE)
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* @param amt token amount.
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* @param getId Get token amount at this ID from `InstaMemory` Contract.
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* @param setId Set token amount at this ID in `InstaMemory` Contract.
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*/
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function flashBorrow(
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address token,
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uint amt,
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uint getId,
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uint setId
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) external payable returns (string memory _eventName, bytes memory _eventParam) {
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uint _amt = getUint(getId, amt);
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address[] memory _tknAddrs = new address[](1);
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_tknAddrs[0] = token;
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uint[] memory _amts = new uint[](1);
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_amts[0] = _amt;
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instaPool.accessLiquidity(_tknAddrs, _amts);
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setUint(setId, _amt);
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_eventName = "LogFlashBorrow(address,uint256,uint256,uint256)";
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_eventParam = abi.encode(token, _amt, getId, setId);
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}
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/**
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* @dev Return Token Liquidity from InstaPool.
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* @param token token address.(For ETH: 0xEeeeeEeeeEeEeeEeEeEeeEEEeeeeEeeeeeeeEEeE)
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* @param getId Get token amount at this ID from `InstaMemory` Contract.
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* @param setId Set token amount at this ID in `InstaMemory` Contract.
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*/
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function flashPayback(
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address token,
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uint getId,
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uint setId
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) external payable returns (string memory _eventName, bytes memory _eventParam) {
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uint _amt = instaPool.borrowedToken(token);
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IERC20 tokenContract = IERC20(token);
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(address feeCollector, uint feeAmt) = calculateFeeAmt(tokenContract, _amt);
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address[] memory _tknAddrs = new address[](1);
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_tknAddrs[0] = token;
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_transfer(payable(address(instaPool)), tokenContract, _amt);
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instaPool.returnLiquidity(_tknAddrs);
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if (feeAmt > 0) _transfer(payable(feeCollector), tokenContract, feeAmt);
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setUint(setId, _amt);
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_eventName = "LogFlashPayback(address,uint256,uint256,uint256,uint256)";
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_eventParam = abi.encode(token, _amt, feeAmt, getId, setId);
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}
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/**
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* @dev Return Token Liquidity from InstaPool and Transfer 20% of Collected Fee to `origin`.
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* @param origin origin address to transfer 20% of the collected fee.
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* @param token token address.(For ETH: 0xEeeeeEeeeEeEeeEeEeEeeEEEeeeeEeeeeeeeEEeE)
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* @param getId Get token amount at this ID from `InstaMemory` Contract.
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* @param setId Set token amount at this ID in `InstaMemory` Contract.
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*/
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function flashPaybackOrigin(
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address origin,
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address token,
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uint getId,
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uint setId
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) external payable returns (string memory _eventName, bytes memory _eventParam) {
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require(origin != address(0), "origin-is-address(0)");
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uint _amt = instaPool.borrowedToken(token);
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IERC20 tokenContract = IERC20(token);
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(address feeCollector, uint poolFeeAmt, uint originFeeAmt) = calculateFeeAmtOrigin(tokenContract, _amt);
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address[] memory _tknAddrs = new address[](1);
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_tknAddrs[0] = token;
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_transfer(payable(address(instaPool)), tokenContract, _amt);
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instaPool.returnLiquidity(_tknAddrs);
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if (poolFeeAmt > 0) {
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_transfer(payable(feeCollector), tokenContract, poolFeeAmt);
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_transfer(payable(origin), tokenContract, originFeeAmt);
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}
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setUint(setId, _amt);
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_eventName = "LogFlashPaybackOrigin(address,address,uint256,uint256,uint256,uint256,uint256)";
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_eventParam = abi.encode(origin, token, _amt, poolFeeAmt, originFeeAmt, getId, setId);
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}
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}
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contract LiquidityAccessMulti is LiquidityAccess {
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/**
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* @dev Access Multiple Token liquidity from InstaPool.
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* @param tokens Array of token addresses.(For ETH: 0xEeeeeEeeeEeEeeEeEeEeeEEEeeeeEeeeeeeeEEeE)
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* @param amts Array of token amount.
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* @param getId get token amounts at this IDs from `InstaMemory` Contract.
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* @param setId set token amounts at this IDs in `InstaMemory` Contract.
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*/
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function flashMultiBorrow(
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address[] calldata tokens,
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uint[] calldata amts,
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uint[] calldata getId,
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uint[] calldata setId
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) external payable returns (string memory _eventName, bytes memory _eventParam) {
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uint _length = tokens.length;
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uint[] memory _amts = new uint[](_length);
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for (uint i = 0; i < _length; i++) {
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_amts[i] = getUint(getId[i], amts[i]);
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}
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instaPool.accessLiquidity(tokens, _amts);
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for (uint i = 0; i < _length; i++) {
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setUint(setId[i], _amts[i]);
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}
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_eventName = "LogMultiBorrow(address[],uint256[],uint256[],uint256[])";
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_eventParam = abi.encode(tokens, amts, getId, setId);
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}
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/**
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* @dev Return Multiple token liquidity from InstaPool.
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* @param tokens Array of token addresses.(For ETH: 0xEeeeeEeeeEeEeeEeEeEeeEEEeeeeEeeeeeeeEEeE)
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* @param getId get token amounts at this IDs from `InstaMemory` Contract.
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* @param setId set token amounts at this IDs in `InstaMemory` Contract.
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*/
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function flashMultiPayback(
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address[] calldata tokens,
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uint[] calldata getId,
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uint[] calldata setId
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) external payable returns (string memory _eventName, bytes memory _eventParam) {
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uint _length = tokens.length;
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for (uint i = 0; i < _length; i++) {
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uint _amt = instaPool.borrowedToken(tokens[i]);
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IERC20 tokenContract = IERC20(tokens[i]);
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(address feeCollector, uint feeAmt) = calculateFeeAmt(tokenContract, _amt);
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_transfer(payable(address(instaPool)), tokenContract, _amt);
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if (feeAmt > 0) _transfer(payable(feeCollector), tokenContract, feeAmt);
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setUint(setId[i], _amt);
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}
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instaPool.returnLiquidity(tokens);
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_eventName = "LogMultiPayback(address[],uint256[],uint256[])";
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_eventParam = abi.encode(tokens, getId, setId);
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}
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// TODO - Fix stack too deep
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// /**
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// * @dev Return Multiple token liquidity from InstaPool and Tranfer 20% of the Fee to Origin.
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// * @param tokens Array of token addresses.(For ETH: 0xEeeeeEeeeEeEeeEeEeEeeEEEeeeeEeeeeeeeEEeE)
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// * @param getId get token amounts at this IDs from `InstaMemory` Contract.
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// * @param setId set token amounts at this IDs in `InstaMemory` Contract.
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// */
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// function flashMultiPaybackOrigin(
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// address origin,
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// address[] calldata tokens,
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// uint[] calldata getId,
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// uint[] calldata setId
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// ) external payable returns (string memory _eventName, bytes memory _eventParam) {
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// uint _length = tokens.length;
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// for (uint i = 0; i < _length; i++) {
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// uint _amt = instaPool.borrowedToken(tokens[i]);
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// IERC20 tokenContract = IERC20(tokens[i]);
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// (address feeCollector, uint poolFeeAmt, uint originFeeAmt) = calculateFeeAmtOrigin(tokenContract, _amt);
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// _transfer(payable(address(instaPool)), tokenContract, _amt);
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// if (poolFeeAmt > 0) {
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// _transfer(payable(feeCollector), tokenContract, poolFeeAmt);
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// _transfer(payable(origin), tokenContract, originFeeAmt);
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// }
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// setUint(setId[i], _amt);
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// }
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// instaPool.returnLiquidity(tokens);
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// _eventName = "LogMultiPaybackOrigin(address,address[],uint256[],uint256[])";
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// _eventParam = abi.encode(origin, tokens, getId, setId);
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// }
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}
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contract ConnectV2InstaPool is LiquidityAccessMulti {
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string public name = "InstaPool-v2";
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}
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