mirror of
https://github.com/Instadapp/InstaContract.git
synced 2024-07-29 22:47:45 +00:00
281 lines
8.5 KiB
Solidity
281 lines
8.5 KiB
Solidity
pragma solidity 0.4.24;
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library SafeMath {
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function mul(uint256 a, uint256 b) internal pure returns (uint256) {
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if (a == 0) {
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return 0;
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}
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uint256 c = a * b;
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require(c / a == b, "Assertion Failed");
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return c;
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}
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function div(uint256 a, uint256 b) internal pure returns (uint256) {
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require(b > 0, "Assertion Failed");
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uint256 c = a / b;
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return c;
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}
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}
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interface IERC20 {
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function balanceOf(address who) external view returns (uint256);
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function transfer(address to, uint256 value) external returns (bool);
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function approve(address spender, uint256 value) external returns (bool);
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function transferFrom(address from, address to, uint256 value) external returns (bool);
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}
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interface AddressRegistry {
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function getAddr(string name) external view returns(address);
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}
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interface MakerCDP {
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function open() external returns (bytes32 cup);
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function join(uint wad) external; // Join PETH
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function exit(uint wad) external; // Exit PETH
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function give(bytes32 cup, address guy) external;
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function lock(bytes32 cup, uint wad) external;
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function free(bytes32 cup, uint wad) external;
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function draw(bytes32 cup, uint wad) external;
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function wipe(bytes32 cup, uint wad) external;
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function per() external view returns (uint ray);
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}
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interface PriceInterface {
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function peek() external view returns (bytes32, bool);
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}
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interface WETHFace {
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function deposit() external payable;
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function withdraw(uint wad) external;
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}
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interface InstaKyber {
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function executeTrade(
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address src,
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address dest,
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uint srcAmt,
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uint minConversionRate,
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uint maxDestAmt
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) external payable returns (uint destAmt);
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function getExpectedPrice(
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address src,
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address dest,
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uint srcAmt
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) external view returns (uint, uint);
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}
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contract Registry {
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address public addressRegistry;
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modifier onlyAdmin() {
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require(
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msg.sender == getAddress("admin"),
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"Permission Denied"
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);
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_;
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}
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function getAddress(string name) internal view returns(address) {
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AddressRegistry addrReg = AddressRegistry(addressRegistry);
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return addrReg.getAddr(name);
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}
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}
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contract GlobalVar is Registry {
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using SafeMath for uint;
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using SafeMath for uint256;
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bytes32 blankCDP = 0x0000000000000000000000000000000000000000000000000000000000000000;
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address cdpAddr; // cups
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mapping (address => bytes32) cdps; // borrower >>> CDP Bytes
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bool public freezed;
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}
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contract IssueLoan is GlobalVar {
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event LockedETH(address borrower, uint lockETH, uint lockPETH, address lockedBy);
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event LoanedDAI(address borrower, uint loanDAI);
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event NewCDP(address borrower, bytes32 cdpBytes);
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function pethPEReth(uint ethNum) public view returns (uint rPETH) {
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MakerCDP loanMaster = MakerCDP(cdpAddr);
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rPETH = (ethNum.mul(10 ** 27)).div(loanMaster.per());
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}
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function borrow(uint daiDraw) public payable {
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if (msg.value > 0) {lockETH(msg.sender);}
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if (daiDraw > 0) {drawDAI(daiDraw);}
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}
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function lockETH(address borrower) public payable {
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MakerCDP loanMaster = MakerCDP(cdpAddr);
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if (cdps[borrower] == blankCDP) {
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require(msg.sender == borrower, "Creating CDP for others is not permitted at the moment.");
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cdps[msg.sender] = loanMaster.open();
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emit NewCDP(msg.sender, cdps[msg.sender]);
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}
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WETHFace wethTkn = WETHFace(getAddress("weth"));
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wethTkn.deposit.value(msg.value)(); // ETH to WETH
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uint pethToLock = pethPEReth(msg.value);
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loanMaster.join(pethToLock); // WETH to PETH
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loanMaster.lock(cdps[borrower], pethToLock); // PETH to CDP
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emit LockedETH(
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borrower, msg.value, pethToLock, msg.sender
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);
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}
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function drawDAI(uint daiDraw) public {
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require(!freezed, "Operation Disabled");
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MakerCDP loanMaster = MakerCDP(cdpAddr);
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loanMaster.draw(cdps[msg.sender], daiDraw);
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IERC20 daiTkn = IERC20(getAddress("dai"));
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daiTkn.transfer(msg.sender, daiDraw);
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emit LoanedDAI(msg.sender, daiDraw);
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}
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}
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contract RepayLoan is IssueLoan {
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event WipedDAI(address borrower, uint daiWipe, uint mkrCharged, address wipedBy);
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event UnlockedETH(address borrower, uint ethFree);
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function repay(uint daiWipe, uint ethFree) public payable {
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if (daiWipe > 0) {wipeDAI(daiWipe, msg.sender);}
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if (ethFree > 0) {unlockETH(ethFree);}
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}
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function wipeDAI(uint daiWipe, address borrower) public payable {
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address dai = getAddress("dai");
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address mkr = getAddress("mkr");
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address eth = getAddress("eth");
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IERC20 daiTkn = IERC20(dai);
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IERC20 mkrTkn = IERC20(mkr);
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uint contractMKR = mkrTkn.balanceOf(address(this)); // contract MKR balance before wiping
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daiTkn.transferFrom(msg.sender, address(this), daiWipe); // get DAI to pay the debt
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MakerCDP loanMaster = MakerCDP(cdpAddr);
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loanMaster.wipe(cdps[borrower], daiWipe); // wipe DAI
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uint mkrCharged = contractMKR - mkrTkn.balanceOf(address(this)); // MKR fee = before wiping bal - after wiping bal
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// claiming paid MKR back
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if (msg.value > 0) { // Interacting with Kyber to swap ETH with MKR
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swapETHMKR(
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eth, mkr, mkrCharged, msg.value
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);
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} else { // take MKR directly from address
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mkrTkn.transferFrom(msg.sender, address(this), mkrCharged); // user paying MKR fees
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}
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emit WipedDAI(
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borrower, daiWipe, mkrCharged, msg.sender
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);
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}
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function unlockETH(uint ethFree) public {
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require(!freezed, "Operation Disabled");
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uint pethToUnlock = pethPEReth(ethFree);
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MakerCDP loanMaster = MakerCDP(cdpAddr);
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loanMaster.free(cdps[msg.sender], pethToUnlock); // CDP to PETH
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loanMaster.exit(pethToUnlock); // PETH to WETH
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WETHFace wethTkn = WETHFace(getAddress("weth"));
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wethTkn.withdraw(ethFree); // WETH to ETH
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msg.sender.transfer(ethFree);
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emit UnlockedETH(msg.sender, ethFree);
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}
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function swapETHMKR(
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address eth,
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address mkr,
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uint mkrCharged,
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uint ethQty
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) internal
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{
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InstaKyber instak = InstaKyber(getAddress("InstaKyber"));
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uint minRate;
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(, minRate) = instak.getExpectedPrice(eth, mkr, ethQty);
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uint mkrBought = instak.executeTrade.value(ethQty)(
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eth, mkr, ethQty, minRate, mkrCharged
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);
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require(mkrCharged == mkrBought, "ETH not sufficient to cover the MKR fees.");
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if (address(this).balance > 0) {
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msg.sender.transfer(address(this).balance);
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}
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}
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}
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contract BorrowTasks is RepayLoan {
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event TranferCDP(bytes32 cdp, address owner, address nextOwner);
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function transferCDP(address nextOwner) public {
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require(nextOwner != 0, "Invalid Address.");
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MakerCDP loanMaster = MakerCDP(cdpAddr);
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loanMaster.give(cdps[msg.sender], nextOwner);
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cdps[msg.sender] = blankCDP;
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emit TranferCDP(cdps[msg.sender], msg.sender, nextOwner);
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}
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function getETHRate() public view returns (uint) {
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PriceInterface ethRate = PriceInterface(getAddress("ethfeed"));
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bytes32 ethrate;
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(ethrate, ) = ethRate.peek();
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return uint(ethrate);
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}
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function getCDP(address borrower) public view returns (uint, bytes32) {
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return (uint(cdps[borrower]), cdps[borrower]);
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}
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function approveERC20() public {
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IERC20 wethTkn = IERC20(getAddress("weth"));
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wethTkn.approve(cdpAddr, 2**256 - 1);
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IERC20 pethTkn = IERC20(getAddress("peth"));
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pethTkn.approve(cdpAddr, 2**256 - 1);
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IERC20 mkrTkn = IERC20(getAddress("mkr"));
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mkrTkn.approve(cdpAddr, 2**256 - 1);
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IERC20 daiTkn = IERC20(getAddress("dai"));
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daiTkn.approve(cdpAddr, 2**256 - 1);
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}
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}
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contract InstaMaker is BorrowTasks {
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event MKRCollected(uint amount);
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constructor(address rAddr) public {
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addressRegistry = rAddr;
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cdpAddr = getAddress("cdp");
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approveERC20();
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}
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function () public payable {}
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function freeze(bool stop) public onlyAdmin {
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freezed = stop;
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}
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// collecting MKR token kept as balance to pay fees
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function collectMKR(uint amount) public onlyAdmin {
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IERC20 mkrTkn = IERC20(getAddress("mkr"));
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mkrTkn.transfer(msg.sender, amount);
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emit MKRCollected(amount);
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}
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} |