mirror of
https://github.com/Instadapp/dsa-polygon-migration.git
synced 2024-07-29 22:27:58 +00:00
198 lines
7.3 KiB
Solidity
198 lines
7.3 KiB
Solidity
pragma solidity ^0.7.0;
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pragma experimental ABIEncoderV2;
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import { SafeERC20 } from "@openzeppelin/contracts/token/ERC20/SafeERC20.sol";
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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 { AccountInterface, AaveData, AaveInterface, IndexInterface } from "./interfaces.sol";
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import { Events } from "./events.sol";
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import { Helpers } from "./helpers.sol";
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contract MigrateResolver is Helpers, Events {
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using SafeERC20 for IERC20;
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function spell(address _target, bytes memory _data) external {
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require(msg.sender == instaIndex.master(), "not-master");
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require(_target != address(0), "target-invalid");
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assembly {
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let succeeded := delegatecall(gas(), _target, add(_data, 0x20), mload(_data), 0, 0)
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switch iszero(succeeded)
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case 1 {
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// throw if delegatecall failed
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let size := returndatasize()
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returndatacopy(0x00, 0x00, size)
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revert(0x00, size)
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}
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}
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}
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// TODO: @mubaris Make this similar to L1 migrator. Have to change ETH by MATIC
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function deposit(address[] calldata tokens, uint[] calldata amts) external payable {
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uint _length = tokens.length;
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require(_length == amts.length, "invalid-length");
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AaveInterface aave = AaveInterface(aaveProvider.getLendingPool());
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uint[] memory _amts = new uint[](_length);
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for (uint256 i = 0; i < _length; i++) {
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require(isSupportedToken[tokens[i]], "token-not-enabled");
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uint _amt;
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address _token = tokens[i];
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if (_token == maticAddr) {
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require(msg.value == amts[i]);
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_amt = msg.value;
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TokenInterface(wmaticAddr).deposit{value: msg.value}();
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aave.deposit(wmaticAddr, _amt, address(this), 3288);
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} else {
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IERC20 tokenContract = IERC20(_token);
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_amt = amts[i] == uint(-1) ? tokenContract.balanceOf(msg.sender) : amts[i];
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tokenContract.safeTransferFrom(msg.sender, address(this), _amt);
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aave.deposit(_token, _amt, address(this), 3288);
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}
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_amts[i] = _amt;
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deposits[msg.sender][_token] += _amt;
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}
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emit LogDeposit(msg.sender, tokens, _amts);
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}
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function withdraw(address[] calldata tokens, uint[] calldata amts) external {
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uint _length = tokens.length;
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require(_length == amts.length, "invalid-length");
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AaveInterface aave = AaveInterface(aaveProvider.getLendingPool());
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uint[] memory _amts = new uint[](_length);
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for (uint256 i = 0; i < _length; i++) {
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require(isSupportedToken[tokens[i]], "token-not-enabled");
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uint _amt = amts[i];
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address _token = tokens[i];
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uint maxAmt = deposits[msg.sender][_token];
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if (_amt > maxAmt) {
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_amt = maxAmt;
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}
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deposits[msg.sender][_token] = sub(maxAmt, _amt);
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if (_token == maticAddr) {
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TokenInterface _tokenContract = TokenInterface(wmaticAddr);
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uint _maticBal = address(this).balance;
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uint _tknBal = _tokenContract.balanceOf(address(this));
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if ((_maticBal + _tknBal) < _amt) {
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aave.withdraw(wmaticAddr, sub(_amt, (_tknBal + _maticBal)), address(this));
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}
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_tokenContract.withdraw((sub(_amt, _maticBal)));
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msg.sender.call{value: _amt}("");
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} else {
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IERC20 _tokenContract = IERC20(_token);
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uint _tknBal = _tokenContract.balanceOf(address(this));
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if (_tknBal < _amt) {
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aave.withdraw(_token, sub(_amt, _tknBal), address(this));
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}
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_tokenContract.safeTransfer(msg.sender, _amt);
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}
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_amts[i] = _amt;
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}
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isPositionSafe();
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emit LogWithdraw(msg.sender, tokens, _amts);
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}
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function settle() external {
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AaveInterface aave = AaveInterface(aaveProvider.getLendingPool());
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for (uint i = 0; i < supportedTokens.length; i++) {
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address _token = supportedTokens[i];
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if (_token == maticAddr) {
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_token = wmaticAddr;
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if (address(this).balance > 0) {
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TokenInterface(wmaticAddr).deposit{value: address(this).balance}();
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}
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}
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IERC20 _tokenContract = IERC20(_token);
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uint _tokenBal = _tokenContract.balanceOf(address(this));
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if (_tokenBal > 0) {
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_tokenContract.approve(address(this), _tokenBal);
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aave.deposit(_token, _tokenBal, address(this), 3288);
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}
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(
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uint supplyBal,,
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uint borrowBal,
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,,,,,
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) = aaveData.getUserReserveData(_token, address(this));
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if (supplyBal != 0 && borrowBal != 0) {
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if (supplyBal > borrowBal) {
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aave.withdraw(_token, (borrowBal + flashAmts[_token]), address(this)); // TODO: fail because of not enough withdrawing capacity?
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IERC20(_token).approve(address(aave), borrowBal);
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aave.repay(_token, borrowBal, 2, address(this));
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} else {
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aave.withdraw(_token, (supplyBal + flashAmts[_token]), address(this)); // TODO: fail because of not enough withdrawing capacity?
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IERC20(_token).approve(address(aave), supplyBal);
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aave.repay(_token, supplyBal, 2, address(this));
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}
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}
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}
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// TODO: emit event
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}
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}
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contract AaveV2Migrator is MigrateResolver {
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using SafeERC20 for IERC20;
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uint private lastStateId;
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function _migratePosition(AaveData memory _data) internal {
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AaveData memory data = remapTokens(_data); // converting L1 token addresses to L2 addresses
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address dsa = _data.targetDsa;
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uint[] memory supplyAmts = _data.supplyAmts;
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uint[] memory borrowAmts = _data.borrowAmts;
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address[] memory supplyTokens = _data.supplyTokens;
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address[] memory borrowTokens = _data.borrowTokens;
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AaveInterface aave = AaveInterface(aaveProvider.getLendingPool());
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transferAtokens(aave, dsa, supplyTokens, supplyAmts);
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// Have to borrow from user's account & transfer
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borrowAndTransferSpells(aave, dsa, borrowTokens, borrowAmts);
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isPositionSafe();
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// TODO: emit event
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}
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function onStateReceive(uint256 stateId, bytes calldata receivedData) external {
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require(stateId > lastStateId, "wrong-data");
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lastStateId = stateId;
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// TODO: what's the best way to store user's data to create position later.
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// Can't do it via any address as user can migrate 2 times
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positions[stateId] = receivedData;
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// TODO: add event
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}
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function migrate(uint _id) external {
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bytes memory _data = positions[_id];
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require(_data.length != 0, "already-migrated");
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AaveData memory data = abi.decode(_data, (AaveData));
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_migratePosition(data);
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delete positions[_id];
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// TODO: add event
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}
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}
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