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Almost done with ethLogic exchangeRate
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@ -3,36 +3,102 @@ pragma solidity ^0.6.8;
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import { DSMath } from "../../libs/safeMath.sol";
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contract EthRateLogic {
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address poolToken;
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// TODO - have to check y pool virtual price
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interface CTokenInterface {
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function borrowBalanceCurrent(address account) external returns (uint256);
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function exchangeRateCurrent() external returns (uint256);
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function getCompoundNetAssetsInEth(address _dsa) private returns (uint _netBal) {
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// Logics
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// Take price from Compound's Oracle?
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function balanceOf(address owner) external view returns (uint256);
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}
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interface CompTroller {
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function getAllMarkets() external view returns (address[] memory);
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}
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interface OracleComp {
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function getUnderlyingPrice(address) external view returns (uint);
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}
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interface InstaMapping {
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function cTokenMapping(address) external view returns (address);
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}
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interface CurveMapping {
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function curvePoolMapping(address poolAddr) external view returns (address);
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}
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interface CurveRegistry {
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function pool_list(uint) external view returns (address poolAddress, address poolToken, address ctokenPrice);
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function pool_count() external view returns (uint);
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}
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interface ICurve {
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function get_virtual_price() external view returns (uint256 out);
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}
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interface TokenInterface {
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function balanceOf(address owner) external view returns (uint256);
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}
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contract EthRateLogic is DSMath {
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address public immutable poolToken;
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address public constant compTrollerAddr = address(0xe81F70Cc7C0D46e12d70efc60607F16bbD617E88);
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address public constant cethAddr = address(0xe81F70Cc7C0D46e12d70efc60607F16bbD617E88);
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address public constant compOracleAddr = address(0xe81F70Cc7C0D46e12d70efc60607F16bbD617E88);
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address public constant ctokenMapping = address(0xe81F70Cc7C0D46e12d70efc60607F16bbD617E88);
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address public constant curveRegistryAddr = address(0xe81F70Cc7C0D46e12d70efc60607F16bbD617E88);
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function getCompoundNetAssetsInEth(address _dsa) private returns (uint256 _netBal) {
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uint totalSupplyInETH;
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uint totalBorrowInETH;
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address[] memory allMarkets = CompTroller(compTrollerAddr).getAllMarkets();
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OracleComp oracleContract = OracleComp(compOracleAddr);
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uint ethPrice = oracleContract.getUnderlyingPrice(cethAddr);
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for (uint i = 0; i < allMarkets.length; i++) {
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CTokenInterface ctoken = CTokenInterface(allMarkets[i]);
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uint tokenPriceInETH = wdiv(oracleContract.getUnderlyingPrice(address(ctoken)), ethPrice);
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uint supply = wmul(ctoken.balanceOf(_dsa), ctoken.exchangeRateCurrent());
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uint supplyInETH = wmul(supply, tokenPriceInETH);
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uint borrow = ctoken.borrowBalanceCurrent(_dsa);
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uint borrowInETH = wmul(borrow, tokenPriceInETH);
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totalSupplyInETH += add(totalSupplyInETH, supplyInETH);
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totalBorrowInETH = add(totalBorrowInETH, borrowInETH);
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}
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_netBal = sub(totalSupplyInETH, totalBorrowInETH);
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}
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function getCurveNetAssetsInEth(address _dsa) private returns (uint _netBal) {
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// Logics
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// Take price from ChainLink's Oracle?
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function getCurveNetAssetsInEth(address _dsa) private returns (uint256 _netBal) {
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CurveRegistry curveRegistry = CurveRegistry(curveRegistryAddr);
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uint poolLen = curveRegistry.pool_count();
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OracleComp oracleContract = OracleComp(compOracleAddr);
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uint ethPrice = oracleContract.getUnderlyingPrice(cethAddr);
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for (uint i = 0; i < poolLen; i++) {
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(address curvePoolAddr, address curveTokenAddr, address ctokenPriceAddr) = curveRegistry.pool_list(i);
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uint tokenPriceInETH = wdiv(oracleContract.getUnderlyingPrice(address(ctokenPriceAddr)), ethPrice);
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uint virtualPrice = ICurve(curvePoolAddr).get_virtual_price();
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uint curveTokenBal = TokenInterface(curveTokenAddr).balanceOf(_dsa);
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uint amtInUSD = wmul(curveTokenBal, virtualPrice);
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uint amtInETH = wmul(amtInUSD, tokenPriceInETH);
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_netBal = add(_netBal, amtInETH);
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}
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}
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function getNetDsaAssets(address _dsa) private returns (uint _netBal) {
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function getNetDsaAssets(address _dsa) private returns (uint256 _netBal) {
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_netBal = _dsa.balance;
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_netBal += getCompoundNetAssetsInEth(_dsa);
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_netBal += getCurveNetAssetsInEth(_dsa);
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}
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function getTotalToken() public returns (uint) {
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function getTotalToken() public returns (uint256) {
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address _dsa = 0x0000000000000000000000000000000000000000;
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uint bal = poolToken.balance;
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uint256 bal = poolToken.balance;
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bal += getNetDsaAssets(_dsa);
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return bal;
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}
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function reduceETH(uint amt) public {
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payable(address(0)).transfer(amt);
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}
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constructor (address ethPool) public {
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poolToken = address(ethPool);
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}
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