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https://github.com/Instadapp/dsa-connectors.git
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Add raw liquidation
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@ -34,11 +34,3 @@ interface CompoundMappingInterface {
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function cTokenMapping(string calldata tokenId) external view returns (address);
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function getMapping(string calldata tokenId) external view returns (address, address);
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}
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struct LiquidateData {
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address tokenToPay;
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address tokenInReturn;
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address cTokenPay;
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address cTokenColl;
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CTokenInterface cTokenContract;
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}
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@ -5,7 +5,7 @@ import { TokenInterface } from "../../common/interfaces.sol";
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import { Stores } from "../../common/stores.sol";
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import { Helpers } from "./helpers.sol";
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import { Events } from "./events.sol";
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import { CETHInterface, CTokenInterface, LiquidateData } from "./interface.sol";
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import { CETHInterface, CTokenInterface } from "./interface.sol";
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abstract contract CompoundResolver is Events, Helpers {
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/**
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@ -25,7 +25,7 @@ abstract contract CompoundResolver is Events, Helpers {
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) public payable returns (string memory _eventName, bytes memory _eventParam) {
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uint _amt = getUint(getId, amt);
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require(token != address(0) && cToken != address(0), "ctoken mapping not found");
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require(token != address(0) && cToken != address(0), "invalid token/ctoken address");
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enterMarket(cToken);
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if (token == ethAddr) {
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@ -78,7 +78,7 @@ abstract contract CompoundResolver is Events, Helpers {
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) public payable returns (string memory _eventName, bytes memory _eventParam) {
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uint _amt = getUint(getId, amt);
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require(token != address(0) && cToken != address(0), "ctoken mapping not found");
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require(token != address(0) && cToken != address(0), "invalid token/ctoken address");
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CTokenInterface cTokenContract = CTokenInterface(cToken);
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if (_amt == uint(-1)) {
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@ -131,7 +131,7 @@ abstract contract CompoundResolver is Events, Helpers {
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) public payable returns (string memory _eventName, bytes memory _eventParam) {
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uint _amt = getUint(getId, amt);
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require(token != address(0) && cToken != address(0), "ctoken mapping not found");
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require(token != address(0) && cToken != address(0), "invalid token/ctoken address");
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enterMarket(cToken);
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require(CTokenInterface(cToken).borrow(_amt) == 0, "borrow-failed");
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@ -176,7 +176,7 @@ abstract contract CompoundResolver is Events, Helpers {
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) public payable returns (string memory _eventName, bytes memory _eventParam) {
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uint _amt = getUint(getId, amt);
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require(token != address(0) && cToken != address(0), "ctoken mapping not found");
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require(token != address(0) && cToken != address(0), "invalid token/ctoken address");
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CTokenInterface cTokenContract = CTokenInterface(cToken);
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_amt = _amt == uint(-1) ? cTokenContract.borrowBalanceCurrent(address(this)) : _amt;
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@ -231,7 +231,7 @@ abstract contract CompoundResolver is Events, Helpers {
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) public payable returns (string memory _eventName, bytes memory _eventParam) {
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uint _amt = getUint(getId, amt);
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require(token != address(0) && cToken != address(0), "ctoken mapping not found");
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require(token != address(0) && cToken != address(0), "invalid token/ctoken address");
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enterMarket(cToken);
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@ -294,7 +294,7 @@ abstract contract CompoundResolver is Events, Helpers {
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uint setId
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) public payable returns (string memory _eventName, bytes memory _eventParam) {
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uint _cAmt = getUint(getId, cTokenAmt);
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require(token != address(0) && cToken != address(0), "ctoken mapping not found");
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require(token != address(0) && cToken != address(0), "invalid token/ctoken address");
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CTokenInterface cTokenContract = CTokenInterface(cToken);
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TokenInterface tokenContract = TokenInterface(token);
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@ -336,6 +336,62 @@ abstract contract CompoundResolver is Events, Helpers {
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/**
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* @dev Liquidate a position.
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* @param borrower Borrower's Address.
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* @param tokenToPay The address of the token to pay for liquidation.(For ETH: 0xEeeeeEeeeEeEeeEeEeEeeEEEeeeeEeeeeeeeEEeE)
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* @param cTokenPay Corresponding cToken address.
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* @param tokenInReturn The address of the token to return for liquidation.
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* @param cTokenColl Corresponding cToken address.
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* @param amt The token amount to pay for liquidation.
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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 liquidateRaw(
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address borrower,
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address tokenToPay,
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address cTokenPay,
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address tokenInReturn,
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address cTokenColl,
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uint256 amt,
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uint256 getId,
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uint256 setId
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) public payable returns (string memory _eventName, bytes memory _eventParam) {
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uint _amt = getUint(getId, amt);
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require(tokenToPay != address(0) && cTokenPay != address(0), "invalid token/ctoken address");
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require(tokenInReturn != address(0) && cTokenColl != address(0), "invalid token/ctoken address");
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CTokenInterface cTokenContract = CTokenInterface(cTokenPay);
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{
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(,, uint shortfal) = troller.getAccountLiquidity(borrower);
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require(shortfal != 0, "account-cannot-be-liquidated");
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_amt = _amt == uint(-1) ? cTokenContract.borrowBalanceCurrent(borrower) : _amt;
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}
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if (tokenToPay == ethAddr) {
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require(address(this).balance >= _amt, "not-enought-eth");
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CETHInterface(cTokenPay).liquidateBorrow{value: _amt}(borrower, cTokenColl);
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} else {
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TokenInterface tokenContract = TokenInterface(tokenToPay);
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require(tokenContract.balanceOf(address(this)) >= _amt, "not-enough-token");
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tokenContract.approve(cTokenPay, _amt);
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require(cTokenContract.liquidateBorrow(borrower, _amt, cTokenColl) == 0, "liquidate-failed");
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}
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setUint(setId, _amt);
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_eventName = "LogLiquidate(address,address,address,uint256,uint256,uint256)";
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_eventParam = abi.encode(
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address(this),
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tokenToPay,
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tokenInReturn,
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_amt,
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getId,
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setId
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);
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}
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/**
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* @dev Liquidate a position using the mapping.
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* @param borrower Borrower's Address.
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* @param tokenIdToPay token id of the token to pay for liquidation.(For eg: ETH-A)
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* @param tokenIdInReturn token id of the token to return for liquidation.(For eg: USDC-A)
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* @param amt token amount to pay for liquidation.
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@ -350,38 +406,16 @@ abstract contract CompoundResolver is Events, Helpers {
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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, amt);
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(address tokenToPay, address cTokenToPay) = compMapping.getMapping(tokenIdToPay);
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(address tokenInReturn, address cTokenColl) = compMapping.getMapping(tokenIdInReturn);
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LiquidateData memory data;
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(data.tokenToPay, data.cTokenPay) = compMapping.getMapping(tokenIdToPay);
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(data.tokenInReturn, data.cTokenColl) = compMapping.getMapping(tokenIdInReturn);
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data.cTokenContract = CTokenInterface(data.cTokenPay);
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{
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(,, uint shortfal) = troller.getAccountLiquidity(borrower);
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require(shortfal != 0, "account-cannot-be-liquidated");
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_amt = _amt == uint(-1) ? data.cTokenContract.borrowBalanceCurrent(borrower) : _amt;
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}
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if (data.tokenToPay == ethAddr) {
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require(address(this).balance >= _amt, "not-enought-eth");
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CETHInterface(data.cTokenPay).liquidateBorrow{value: _amt}(borrower, data.cTokenColl);
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} else {
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TokenInterface tokenContract = TokenInterface(data.tokenToPay);
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require(tokenContract.balanceOf(address(this)) >= _amt, "not-enough-token");
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tokenContract.approve(data.cTokenPay, _amt);
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require(data.cTokenContract.liquidateBorrow(borrower, _amt, data.cTokenColl) == 0, "liquidate-failed");
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}
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setUint(setId, _amt);
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_eventName = "LogLiquidate(address,address,address,uint256,uint256,uint256)";
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_eventParam = abi.encode(
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address(this),
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data.tokenToPay,
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data.tokenInReturn,
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_amt,
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(_eventName, _eventParam) = liquidateRaw(
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borrower,
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tokenToPay,
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cTokenToPay,
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tokenInReturn,
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cTokenColl,
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amt,
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getId,
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setId
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);
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