mirror of
https://github.com/Instadapp/yield-contract.git
synced 2024-07-29 21:47:29 +00:00
156 lines
5.6 KiB
Solidity
156 lines
5.6 KiB
Solidity
// SPDX-License-Identifier: MIT
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pragma solidity ^0.6.8;
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pragma experimental ABIEncoderV2;
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import "@openzeppelin/contracts/token/ERC20/ERC20.sol";
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import "@openzeppelin/contracts/token/ERC20/IERC20.sol";
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import { DSMath } from "./libs/safeMath.sol";
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// TODO - Add ReentrancyGuard lib
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interface AccountInterface {
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function enable(address authority) external;
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function cast(address[] calldata _targets, bytes[] calldata _datas, address _origin) external payable;
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}
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interface IndexInterface {
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function master() external view returns (address);
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function build(address _owner, uint accountVersion, address _origin) external returns (address _account);
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}
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interface RegistryInterface {
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function chief(address) external view returns (bool);
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function poolLogic(address) external returns (address);
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function poolCap(address) external view returns (uint);
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function insureFee(address) external view returns (uint);
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}
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interface RateInterface {
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function getTotalToken() external returns (uint totalUnderlyingTkn);
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}
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contract PoolToken is ERC20, DSMath {
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event LogDeploy(uint amount);
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event LogExchangeRate(uint exchangeRate, uint tokenBalance, uint insuranceAmt);
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event LogSettle(uint settleTime);
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event LogDeposit(uint depositAmt, uint poolMintAmt);
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event LogWithdraw(uint withdrawAmt, uint poolBurnAmt);
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event LogAddInsurance(uint amount);
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event LogPoolShut(bool);
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// IERC20 public immutable baseToken;
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RegistryInterface public immutable registry; // Pool Registry
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IndexInterface public constant instaIndex = IndexInterface(0x2971AdFa57b20E5a416aE5a708A8655A9c74f723);
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AccountInterface public immutable dsa; // Pool's DSA account
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IERC20 public immutable baseToken; // Base token. Eg:- DAI, USDC, etc.
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uint private tokenBalance; // total token balance since last rebalancing
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uint public exchangeRate = 10 ** 18; // initial 1 token = 1
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uint public insuranceAmt; // insurance amount to keep pool safe
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bool public shutPool; // shutdown deposits and withdrawals
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constructor(
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address _registry,
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string memory _name,
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string memory _symbol,
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address _baseToken,
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address _origin
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) public ERC20(_name, _symbol) {
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baseToken = IERC20(_baseToken);
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registry = RegistryInterface(_registry);
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address _dsa = instaIndex.build(address(this), 1, _origin);
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dsa = AccountInterface(_dsa);
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}
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modifier isChief() {
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require(registry.chief(msg.sender) || msg.sender == instaIndex.master(), "not-chief");
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_;
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}
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function deploy(uint amount) external isChief {
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payable(address(dsa)).transfer(amount);
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emit LogDeploy(amount);
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}
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function setExchangeRate() public isChief {
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uint _previousRate = exchangeRate;
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uint _totalToken = RateInterface(registry.poolLogic(address(this))).getTotalToken();
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uint _currentRate = wdiv(_totalToken, totalSupply());
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if (_currentRate < _previousRate) {
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uint difRate = _previousRate - _currentRate;
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uint difTkn = wmul(_totalToken, difRate);
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insuranceAmt = sub(insuranceAmt, difTkn);
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_currentRate = _previousRate;
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} else {
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uint difRate = _currentRate - _previousRate;
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uint insureFee = wmul(difRate, registry.insureFee(address(this)));
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uint insureFeeAmt = wmul(_totalToken, insureFee);
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insuranceAmt = add(insuranceAmt, insureFeeAmt);
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_currentRate = sub(_currentRate, insureFee);
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tokenBalance = sub(_totalToken, insuranceAmt);
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}
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exchangeRate = _currentRate;
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emit LogExchangeRate(exchangeRate, tokenBalance, insuranceAmt);
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}
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function settle(address[] calldata _targets, bytes[] calldata _datas, address _origin) external isChief {
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if (_targets.length > 0 && _datas.length > 0) {
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dsa.cast(_targets, _datas, _origin);
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}
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setExchangeRate();
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emit LogSettle(block.timestamp);
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}
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function deposit(uint tknAmt) public payable returns(uint) {
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require(!shutPool, "pool-shut");
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require(tknAmt == msg.value, "unmatched-amount");
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uint _newTokenBal = add(tokenBalance, msg.value);
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require(_newTokenBal <= registry.poolCap(address(this)), "deposit-cap-reached");
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uint _mintAmt = wdiv(msg.value, exchangeRate);
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_mint(msg.sender, _mintAmt);
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emit LogDeposit(tknAmt, _mintAmt);
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}
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function withdraw(uint tknAmt, address to) external returns (uint _tknAmt) {
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require(!shutPool, "pool-shut");
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uint poolBal = address(this).balance;
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require(tknAmt <= poolBal, "not-enough-liquidity-available");
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uint _bal = balanceOf(msg.sender);
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uint _tknBal = wmul(_bal, exchangeRate);
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uint _burnAmt;
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if (tknAmt == uint(-1)) {
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_burnAmt = _bal;
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_tknAmt = wmul(_burnAmt, exchangeRate);
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} else {
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require(tknAmt <= _tknBal, "balance-exceeded");
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_burnAmt = wdiv(tknAmt, exchangeRate);
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_tknAmt = tknAmt;
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}
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_burn(msg.sender, _burnAmt);
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payable(to).transfer(_tknAmt); // TODO - if this is also Reentrancy prone attack or not.
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emit LogWithdraw(tknAmt, _burnAmt);
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}
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function addInsurance(uint tknAmt) external payable {
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require(tknAmt == msg.value, "unmatched-amount");
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insuranceAmt += tknAmt;
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emit LogAddInsurance(tknAmt);
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}
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function shutdown() external {
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require(msg.sender == instaIndex.master(), "not-master");
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shutPool = !shutPool;
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emit LogPoolShut(shutPool);
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}
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receive() external payable {}
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}
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