mirror of
https://github.com/Instadapp/smart-contract.git
synced 2024-07-29 22:08:07 +00:00
549 lines
18 KiB
Solidity
549 lines
18 KiB
Solidity
pragma solidity ^0.5.7;
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interface RegistryInterface {
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function proxies(address) external view returns (address);
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}
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interface UserWalletInterface {
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function owner() external view returns (address);
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}
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interface TubInterface {
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function open() external returns (bytes32);
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function join(uint) external;
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function exit(uint) external;
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function lock(bytes32, uint) external;
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function free(bytes32, uint) external;
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function draw(bytes32, uint) external;
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function wipe(bytes32, uint) external;
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function give(bytes32, address) external;
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function shut(bytes32) external;
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function cups(bytes32) external view returns (address, uint, uint, uint);
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function gem() external view returns (ERC20Interface);
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function gov() external view returns (ERC20Interface);
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function skr() external view returns (ERC20Interface);
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function sai() external view returns (ERC20Interface);
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function ink(bytes32) external view returns (uint);
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function tab(bytes32) external returns (uint);
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function rap(bytes32) external returns (uint);
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function per() external view returns (uint);
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function pep() external view returns (PepInterface);
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}
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interface PepInterface {
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function peek() external returns (bytes32, bool);
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}
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interface ERC20Interface {
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function allowance(address, address) external view returns (uint);
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function balanceOf(address) external view returns (uint);
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function approve(address, uint) external;
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function transfer(address, uint) external returns (bool);
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function transferFrom(address, address, uint) external returns (bool);
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function deposit() external payable;
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function withdraw(uint) external;
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}
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interface UniswapExchange {
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function getEthToTokenOutputPrice(uint256 tokensBought) external view returns (uint256 ethSold);
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function getTokenToEthOutputPrice(uint256 ethBought) external view returns (uint256 tokensSold);
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function tokenToTokenSwapOutput(
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uint256 tokensBought,
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uint256 maxTokensSold,
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uint256 maxEthSold,
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uint256 deadline,
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address tokenAddr
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) external returns (uint256 tokensSold);
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}
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interface CTokenInterface {
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function mint(uint mintAmount) external returns (uint); // For ERC20
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function redeem(uint redeemTokens) external returns (uint);
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function redeemUnderlying(uint redeemAmount) external returns (uint);
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function exchangeRateCurrent() external returns (uint);
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function transfer(address, uint) external returns (bool);
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function transferFrom(address, address, uint) external returns (bool);
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function balanceOf(address) external view returns (uint);
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}
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interface CETHInterface {
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function mint() external payable; // For ETH
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function transfer(address, uint) external returns (bool);
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}
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interface CDAIInterface {
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function mint(uint mintAmount) external returns (uint); // For ERC20
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function repayBorrowBehalf(address borrower, uint repayAmount) external returns (uint);
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function borrowBalanceCurrent(address account) external returns (uint);
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}
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contract DSMath {
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function add(uint x, uint y) internal pure returns (uint z) {
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require((z = x + y) >= x, "math-not-safe");
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}
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function mul(uint x, uint y) internal pure returns (uint z) {
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require(y == 0 || (z = x * y) / y == x, "math-not-safe");
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}
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uint constant WAD = 10 ** 18;
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uint constant RAY = 10 ** 27;
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function rmul(uint x, uint y) internal pure returns (uint z) {
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z = add(mul(x, y), RAY / 2) / RAY;
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}
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function rdiv(uint x, uint y) internal pure returns (uint z) {
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z = add(mul(x, RAY), y / 2) / y;
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}
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function wmul(uint x, uint y) internal pure returns (uint z) {
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z = add(mul(x, y), WAD / 2) / WAD;
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}
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function wdiv(uint x, uint y) internal pure returns (uint z) {
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z = add(mul(x, WAD), y / 2) / y;
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}
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function sub(uint a, uint b) internal pure returns (uint c) {
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require(b <= a, "SafeMath: subtraction overflow");
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c = a - b;
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}
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}
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contract Helper is DSMath {
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address public ethAddr = 0xEeeeeEeeeEeEeeEeEeEeeEEEeeeeEeeeeeeeEEeE;
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address public daiAddr = 0x89d24A6b4CcB1B6fAA2625fE562bDD9a23260359;
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address public registry = 0x498b3BfaBE9F73db90D252bCD4Fa9548Cd0Fd981;
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address public sai = 0x448a5065aeBB8E423F0896E6c5D525C040f59af3;
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address public ume = 0x2C4Bd064b998838076fa341A83d007FC2FA50957; // Uniswap Maker Exchange
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address public ude = 0x09cabEC1eAd1c0Ba254B09efb3EE13841712bE14; // Uniswap DAI Exchange
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address public cEth = 0x4Ddc2D193948926D02f9B1fE9e1daa0718270ED5;
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address public cDai = 0xF5DCe57282A584D2746FaF1593d3121Fcac444dC;
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address public feeOne = 0xd8db02A498E9AFbf4A32BC006DC1940495b4e592;
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address public feeTwo = 0xa7615CD307F323172331865181DC8b80a2834324;
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/**
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* @dev setting allowance to compound for the "user proxy" if required
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*/
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function setApproval(address erc20, uint srcAmt, address to) internal {
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ERC20Interface erc20Contract = ERC20Interface(erc20);
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uint tokenAllowance = erc20Contract.allowance(address(this), to);
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if (srcAmt > tokenAllowance) {
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erc20Contract.approve(to, 2**255);
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}
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}
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function setAllowance(ERC20Interface _token, address _spender) internal {
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if (_token.allowance(address(this), _spender) != uint(-1)) {
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_token.approve(_spender, uint(-1));
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}
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}
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}
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contract CompoundResolver is Helper {
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event LogMint(address erc20, address cErc20, uint tokenAmt, address owner);
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event LogRedeem(address erc20, address cErc20, uint tokenAmt, address owner);
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event LogBorrow(address erc20, address cErc20, uint tokenAmt, address owner);
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event LogRepay(address erc20, address cErc20, uint tokenAmt, address owner);
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/**
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* @dev Redeem ETH/ERC20 and mint Compound Tokens
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* @param tokenAmt Amount of token To Redeem
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*/
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function redeemUnderlying(address cErc20, uint tokenAmt) internal {
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if (tokenAmt > 0) {
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require(CTokenInterface(cErc20).redeemUnderlying(tokenAmt) == 0, "something went wrong");
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}
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}
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/**
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* @dev Deposit ETH/ERC20 and mint Compound Tokens
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*/
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function mintCETH(uint ethAmt) internal {
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if (ethAmt > 0) {
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CETHInterface cToken = CETHInterface(cEth);
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cToken.mint.value(ethAmt)();
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uint exchangeRate = CTokenInterface(cEth).exchangeRateCurrent();
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uint cEthToReturn = wdiv(ethAmt, exchangeRate);
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cEthToReturn = wmul(cEthToReturn, exchangeRate) <= ethAmt ? cEthToReturn : cEthToReturn - 1;
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require(cToken.transfer(msg.sender, cEthToReturn), "CETH Transfer failed");
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emit LogMint(
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ethAddr,
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cEth,
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ethAmt,
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msg.sender
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);
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}
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}
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/**
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* @dev Deposit ETH/ERC20 and mint Compound Tokens
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*/
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function fetchCETH(uint ethAmt) internal {
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if (ethAmt > 0) {
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CTokenInterface cToken = CTokenInterface(cEth);
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uint exchangeRate = cToken.exchangeRateCurrent();
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uint cTokenAmt = wdiv(ethAmt, exchangeRate);
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cTokenAmt = wmul(cTokenAmt, exchangeRate) <= ethAmt ? cTokenAmt : cTokenAmt - 1;
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require(ERC20Interface(cEth).transferFrom(msg.sender, address(this), cTokenAmt), "Contract Approved?");
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}
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}
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/**
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* @dev If col/debt > user's balance/borrow. Then set max
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*/
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function checkCompound(uint ethAmt, uint daiAmt) internal returns (uint ethCol, uint daiDebt) {
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CTokenInterface cEthContract = CTokenInterface(cEth);
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uint cEthBal = cEthContract.balanceOf(msg.sender);
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uint ethExchangeRate = cEthContract.exchangeRateCurrent();
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ethCol = wmul(cEthBal, ethExchangeRate);
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ethCol = wdiv(ethCol, ethExchangeRate) <= cEthBal ? ethCol : ethCol - 1;
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ethCol = ethCol <= ethAmt ? ethCol : ethAmt; // Set Max if amount is greater than the Col user have
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daiDebt = CDAIInterface(cDai).borrowBalanceCurrent(msg.sender);
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daiDebt = daiDebt <= daiAmt ? daiDebt : daiAmt; // Set Max if amount is greater than the Debt user have
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}
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}
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contract MakerResolver is CompoundResolver {
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event LogOpen(uint cdpNum, address owner);
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event LogGive(uint cdpNum, address owner, address nextOwner);
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event LogLock(uint cdpNum, uint amtETH, uint amtPETH, address owner);
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event LogFree(uint cdpNum, uint amtETH, uint amtPETH, address owner);
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event LogDraw(uint cdpNum, uint amtDAI, address owner);
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event LogDrawSend(uint cdpNum, uint amtDAI, address to);
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event LogWipe(uint cdpNum, uint daiAmt, uint mkrFee, uint daiFee, address owner);
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event LogShut(uint cdpNum);
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function open() internal returns (uint) {
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bytes32 cup = TubInterface(sai).open();
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emit LogOpen(uint(cup), address(this));
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return uint(cup);
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}
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/**
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* @dev transfer CDP ownership
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*/
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function give(uint cdpNum, address nextOwner) internal {
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TubInterface(sai).give(bytes32(cdpNum), nextOwner);
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}
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function wipe(uint cdpNum, uint _wad) internal returns (uint daiAmt) {
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if (_wad > 0) {
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TubInterface tub = TubInterface(sai);
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UniswapExchange daiEx = UniswapExchange(ude);
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UniswapExchange mkrEx = UniswapExchange(ume);
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ERC20Interface dai = tub.sai();
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ERC20Interface mkr = tub.gov();
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bytes32 cup = bytes32(cdpNum);
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(address lad,,,) = tub.cups(cup);
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require(lad == address(this), "cup-not-owned");
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setAllowance(dai, sai);
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setAllowance(mkr, sai);
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setAllowance(dai, ude);
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(bytes32 val, bool ok) = tub.pep().peek();
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// MKR required for wipe = Stability fees accrued in Dai / MKRUSD value
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uint mkrFee = wdiv(rmul(_wad, rdiv(tub.rap(cup), tub.tab(cup))), uint(val));
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uint daiFeeAmt = daiEx.getTokenToEthOutputPrice(mkrEx.getEthToTokenOutputPrice(mkrFee));
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daiAmt = add(_wad, daiFeeAmt);
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redeemUnderlying(cDai, daiAmt);
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if (ok && val != 0) {
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daiEx.tokenToTokenSwapOutput(
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mkrFee,
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daiAmt,
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uint(999000000000000000000),
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uint(1899063809), // 6th March 2030 GMT // no logic
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address(mkr)
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);
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}
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tub.wipe(cup, _wad);
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emit LogWipe(
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cdpNum,
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daiAmt,
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mkrFee,
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daiFeeAmt,
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address(this)
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);
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}
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}
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function free(uint cdpNum, uint jam) internal {
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if (jam > 0) {
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bytes32 cup = bytes32(cdpNum);
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address tubAddr = sai;
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TubInterface tub = TubInterface(tubAddr);
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ERC20Interface peth = tub.skr();
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ERC20Interface weth = tub.gem();
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uint ink = rdiv(jam, tub.per());
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ink = rmul(ink, tub.per()) <= jam ? ink : ink - 1;
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tub.free(cup, ink);
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setAllowance(peth, tubAddr);
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tub.exit(ink);
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uint freeJam = weth.balanceOf(address(this)); // withdraw possible previous stuck WETH as well
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weth.withdraw(freeJam);
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emit LogFree(
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cdpNum,
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freeJam,
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ink,
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address(this)
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);
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}
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}
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function lock(uint cdpNum, uint ethAmt) internal {
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if (ethAmt > 0) {
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bytes32 cup = bytes32(cdpNum);
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address tubAddr = sai;
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TubInterface tub = TubInterface(tubAddr);
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ERC20Interface weth = tub.gem();
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ERC20Interface peth = tub.skr();
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(address lad,,,) = tub.cups(cup);
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require(lad == address(this), "cup-not-owned");
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weth.deposit.value(ethAmt)();
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uint ink = rdiv(ethAmt, tub.per());
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ink = rmul(ink, tub.per()) <= ethAmt ? ink : ink - 1;
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setAllowance(weth, tubAddr);
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tub.join(ink);
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setAllowance(peth, tubAddr);
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tub.lock(cup, ink);
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emit LogLock(
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cdpNum,
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ethAmt,
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ink,
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address(this)
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);
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}
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}
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function draw(uint cdpNum, uint _wad) internal {
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bytes32 cup = bytes32(cdpNum);
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if (_wad > 0) {
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TubInterface tub = TubInterface(sai);
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tub.draw(cup, _wad);
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emit LogDraw(cdpNum, _wad, address(this));
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}
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}
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function checkCDP(bytes32 cup, uint ethAmt, uint daiAmt) internal returns (uint ethCol, uint daiDebt) {
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TubInterface tub = TubInterface(sai);
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ethCol = rmul(tub.ink(cup), tub.per()); // get ETH col from PETH col
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daiDebt = tub.tab(cup);
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daiDebt = daiAmt < daiDebt ? daiAmt : daiDebt; // if DAI amount > max debt. Set max debt
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ethCol = ethAmt < ethCol ? ethAmt : ethCol; // if ETH amount > max Col. Set max col
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}
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function wipeAndFree(uint cdpNum, uint jam, uint _wad) internal returns (uint daiAmt) {
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daiAmt = wipe(cdpNum, _wad);
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free(cdpNum, jam);
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}
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function lockAndDraw(uint cdpNum, uint jam, uint _wad) internal {
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lock(cdpNum, jam);
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draw(cdpNum, _wad);
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}
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}
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contract BridgeResolver is MakerResolver {
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/**
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* @dev initiated from user wallet to reimburse temporary DAI debt
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*/
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function refillFunds(uint daiDebt) external {
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if (daiDebt > 0) {
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require(ERC20Interface(daiAddr).transferFrom(msg.sender, address(this), daiDebt), "Contract Approved?");
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assert(CDAIInterface(cDai).mint(daiDebt) == 0);
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}
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}
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/**
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* @dev paying back users debt
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*/
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function payUserDebt(uint daiDebt) internal {
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if (daiDebt > 0) {
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redeemUnderlying(cDai, daiDebt);
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require(CDAIInterface(cDai).repayBorrowBehalf(msg.sender, daiDebt) == 0, "Enough DAI?");
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}
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}
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}
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contract LiquidityProvider is BridgeResolver {
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mapping (address => uint) public deposits; // amount of CDAI deposits
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uint public totalDeposits;
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/**
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* @dev Deposit DAI for liquidity
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*/
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function depositDAI(uint amt) public {
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require(ERC20Interface(daiAddr).transferFrom(msg.sender, address(this), amt), "Nothing to deposit");
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CTokenInterface cToken = CTokenInterface(cDai);
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assert(cToken.mint(amt) == 0);
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uint exchangeRate = cToken.exchangeRateCurrent();
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uint cDaiAmt = wdiv(amt, exchangeRate);
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cDaiAmt = wmul(cDaiAmt, exchangeRate) <= amt ? cDaiAmt : cDaiAmt - 1;
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deposits[msg.sender] += cDaiAmt;
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totalDeposits += cDaiAmt;
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}
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/**
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* @dev Withdraw DAI from liquidity
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*/
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function withdrawDAI(uint amt) public {
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require(deposits[msg.sender] != 0, "Nothing to Withdraw");
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CTokenInterface cToken = CTokenInterface(cDai);
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uint exchangeRate = cToken.exchangeRateCurrent();
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uint withdrawAmt = wdiv(amt, exchangeRate);
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uint daiAmt = amt;
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if (withdrawAmt > deposits[msg.sender]) {
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withdrawAmt = deposits[msg.sender];
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daiAmt = wmul(withdrawAmt, exchangeRate);
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}
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require(cToken.redeem(withdrawAmt) == 0, "something went wrong");
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require(ERC20Interface(daiAddr).transfer(msg.sender, daiAmt), "Dai Transfer failed");
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deposits[msg.sender] -= withdrawAmt;
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totalDeposits -= withdrawAmt;
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}
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/**
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* @dev Deposit CDAI for liquidity
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*/
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function depositCDAI(uint amt) public {
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CTokenInterface cToken = CTokenInterface(cDai);
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require(cToken.transferFrom(msg.sender, address(this), amt) == true, "Nothing to deposit");
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deposits[msg.sender] += amt;
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totalDeposits += amt;
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}
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/**
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* @dev Withdraw CDAI from liquidity
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*/
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function withdrawCDAI(uint amt) public {
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require(deposits[msg.sender] != 0, "Nothing to Withdraw");
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uint withdrawAmt = amt;
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if (withdrawAmt > deposits[msg.sender]) {
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withdrawAmt = deposits[msg.sender];
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}
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require(CTokenInterface(cDai).transfer(msg.sender, withdrawAmt), "Dai Transfer failed");
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deposits[msg.sender] -= withdrawAmt;
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totalDeposits -= withdrawAmt;
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}
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/**
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* collecting fees generated overtime
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*/
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function withdrawFeesInCDai(uint num) public {
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CTokenInterface cToken = CTokenInterface(cDai);
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uint cDaiBal = cToken.balanceOf(address(this));
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uint withdrawAmt = sub(cDaiBal, totalDeposits);
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if (num == 0) {
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require(cToken.transfer(feeOne, withdrawAmt), "Dai Transfer failed");
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} else {
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require(cToken.transfer(feeTwo, withdrawAmt), "Dai Transfer failed");
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}
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}
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}
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contract Bridge is LiquidityProvider {
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/**
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* FOR SECURITY PURPOSE
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* checks if only InstaDApp contract wallets can access the bridge
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*/
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modifier isUserWallet {
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address userAdd = UserWalletInterface(msg.sender).owner();
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address walletAdd = RegistryInterface(registry).proxies(userAdd);
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require(walletAdd != address(0), "not-user-wallet");
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require(walletAdd == msg.sender, "not-wallet-owner");
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_;
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}
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/**
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* @dev MakerDAO to Compound
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*/
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function makerToCompound(uint cdpId, uint ethCol, uint daiDebt) public payable isUserWallet returns (uint daiAmt) {
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uint ethAmt;
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(ethAmt, daiAmt) = checkCDP(bytes32(cdpId), ethCol, daiDebt);
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daiAmt = wipeAndFree(cdpId, ethAmt, daiAmt);
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daiAmt = wmul(daiAmt, 1002000000000000000); // 0.2% fees
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mintCETH(ethAmt);
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give(cdpId, msg.sender);
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}
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/**
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* @dev Compound to MakerDAO
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*/
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function compoundToMaker(uint cdpId, uint ethCol, uint daiDebt) public payable isUserWallet {
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(uint ethAmt, uint daiAmt) = checkCompound(ethCol, daiDebt);
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payUserDebt(daiAmt);
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fetchCETH(ethAmt);
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redeemUnderlying(cEth, ethAmt);
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uint cdpNum = cdpId > 0 ? cdpId : open();
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daiAmt = wmul(daiAmt, 1002000000000000000); // 0.2% fees
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lockAndDraw(cdpNum, ethAmt, daiAmt);
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if (daiAmt > 0) {
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assert(CDAIInterface(cDai).mint(daiAmt) == 0);
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}
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give(cdpNum, msg.sender);
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}
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}
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contract MakerCompoundBridge is Bridge {
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/**
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* @dev setting up all required token approvals
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*/
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constructor() public {
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setApproval(daiAddr, 10**30, cDai);
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setApproval(cDai, 10**30, cDai);
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setApproval(cEth, 10**30, cEth);
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}
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function() external payable {}
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} |