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			199 lines
		
	
	
		
			6.5 KiB
		
	
	
	
		
			Solidity
		
	
	
	
	
	
			
		
		
	
	
			199 lines
		
	
	
		
			6.5 KiB
		
	
	
	
		
			Solidity
		
	
	
	
	
	
pragma solidity ^0.7.0;
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// import files from common directory
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import { Stores } from "../common/stores.sol";
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import { DSMath } from "../common/math.sol";
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import { TokenInterface } from "../common/interfaces.sol";
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interface ICurve {
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  function coins(int128 tokenId) external view returns (address token);
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  function calc_token_amount(uint256[3] calldata amounts, bool deposit) external returns (uint256 amount);
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  function add_liquidity(uint256[3] calldata amounts, uint256 min_mint_amount) external;
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  function get_dy(int128 sellTokenId, int128 buyTokenId, uint256 sellTokenAmt) external returns (uint256 buyTokenAmt);
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  function exchange(int128 sellTokenId, int128 buyTokenId, uint256 sellTokenAmt, uint256 minBuyToken) external;
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  function remove_liquidity_imbalance(uint256[3] calldata amounts, uint256 max_burn_amount) external;
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  function calc_withdraw_one_coin(uint256 _token_amount, int128 i) external returns (uint256 amount);
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}
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abstract contract CurveSBTCHelpers is Stores, DSMath{
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  /**
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  * @dev Return Curve Swap Address
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  */
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  function getCurveSwapAddr() internal pure returns (address) {
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    return 0x7fC77b5c7614E1533320Ea6DDc2Eb61fa00A9714;
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  }
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  /**
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  * @dev Return Curve Token Address
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  */
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  function getCurveTokenAddr() internal pure returns (address) {
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    return 0x075b1bb99792c9E1041bA13afEf80C91a1e70fB3;
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  }
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  function convert18ToDec(uint _dec, uint256 _amt) internal pure returns (uint256 amt) {
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    amt = div(_amt, 10 ** (18 - _dec));
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  }
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  function convertTo18(uint _dec, uint256 _amt) internal pure returns (uint256 amt) {
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    amt = mul(_amt, 10 ** (18 - _dec));
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  }
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  function getTokenI(address token) internal pure returns (int128 i) {
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    if (token == address(0xEB4C2781e4ebA804CE9a9803C67d0893436bB27D)) {
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      // RenBTC Token
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      i = 0;
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    } else if (token == address(0x2260FAC5E5542a773Aa44fBCfeDf7C193bc2C599)) {
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      // WBTC Token
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      i = 1;
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    } else if (token == address(0xfE18be6b3Bd88A2D2A7f928d00292E7a9963CfC6)) {
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      // SBTC Token
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      i = 2;
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    } else {
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      revert("token-not-found.");
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    }
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  }
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}
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abstract contract CurveSBTCProtocol is CurveSBTCHelpers {
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  // Events
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  event LogSell(
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    address indexed buyToken,
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    address indexed sellToken,
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    uint256 buyAmt,
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    uint256 sellAmt,
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    uint256 getId,
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    uint256 setId
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  );
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  event LogDeposit(address token, uint256 amt, uint256 mintAmt, uint256 getId, uint256 setId);
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  event LogWithdraw(address token, uint256 amt, uint256 burnAmt, uint256 getId,  uint256 setId);
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  /**
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  * @dev Sell ERC20_Token.
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  * @param buyAddr buying token address.
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  * @param sellAddr selling token amount.
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  * @param sellAmt selling token amount.
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  * @param unitAmt unit amount of buyAmt/sellAmt with slippage.
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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 sell(
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    address buyAddr,
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    address sellAddr,
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    uint sellAmt,
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    uint unitAmt,
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    uint getId,
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    uint setId
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  ) external payable {
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    uint _sellAmt = getUint(getId, sellAmt);
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    ICurve curve = ICurve(getCurveSwapAddr());
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    TokenInterface _buyToken = TokenInterface(buyAddr);
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    TokenInterface _sellToken = TokenInterface(sellAddr);
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    _sellAmt = _sellAmt == uint(-1) ? _sellToken.balanceOf(address(this)) : _sellAmt;
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    _sellToken.approve(address(curve), _sellAmt);
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    uint _slippageAmt = convert18ToDec(_buyToken.decimals(), wmul(unitAmt, convertTo18(_sellToken.decimals(), _sellAmt)));
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    uint intialBal = _buyToken.balanceOf(address(this));
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    curve.exchange(getTokenI(sellAddr), getTokenI(buyAddr), _sellAmt, _slippageAmt);
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    uint finalBal = _buyToken.balanceOf(address(this));
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    uint _buyAmt = sub(finalBal, intialBal);
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    setUint(setId, _buyAmt);
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    emit LogSell(buyAddr, sellAddr, _buyAmt, _sellAmt, getId, setId);
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  }
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  /**
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  * @dev Deposit Token.
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  * @param token token address.
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  * @param amt token amount.
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  * @param unitAmt unit amount of curve_amt/token_amt with slippage.
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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 deposit(
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    address token,
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    uint amt,
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    uint unitAmt,
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    uint getId,
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    uint setId
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  ) external payable {
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    uint256 _amt = getUint(getId, amt);
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    TokenInterface tokenContract = TokenInterface(token);
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    _amt = _amt == uint(-1) ? tokenContract.balanceOf(address(this)) : _amt;
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    uint[3] memory _amts;
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    _amts[uint(getTokenI(token))] = _amt;
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    tokenContract.approve(getCurveSwapAddr(), _amt);
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    uint _amt18 = convertTo18(tokenContract.decimals(), _amt);
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    uint _slippageAmt = wmul(unitAmt, _amt18);
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    TokenInterface curveTokenContract = TokenInterface(getCurveTokenAddr());
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    uint initialCurveBal = curveTokenContract.balanceOf(address(this));
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    ICurve(getCurveSwapAddr()).add_liquidity(_amts, _slippageAmt);
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    uint finalCurveBal = curveTokenContract.balanceOf(address(this));
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    uint mintAmt = sub(finalCurveBal, initialCurveBal);
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    setUint(setId, mintAmt);
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    emit LogDeposit(token, _amt, mintAmt, getId, setId);
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  }
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  /**
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  * @dev Withdraw Token.
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  * @param token token address.
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  * @param amt token amount.
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  * @param unitAmt unit amount of curve_amt/token_amt with slippage.
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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 withdraw(
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    address token,
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    uint256 amt,
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    uint256 unitAmt,
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    uint getId,
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    uint setId
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  ) external payable {
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    uint _amt = getUint(getId, amt);
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    int128 tokenId = getTokenI(token);
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    TokenInterface curveTokenContract = TokenInterface(getCurveTokenAddr());
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    ICurve curveSwap = ICurve(getCurveSwapAddr());
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    uint _curveAmt;
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    uint[3] memory _amts;
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    if (_amt == uint(-1)) {
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      _curveAmt = curveTokenContract.balanceOf(address(this));
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      _amt = curveSwap.calc_withdraw_one_coin(_curveAmt, tokenId);
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      _amts[uint(tokenId)] = _amt;
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    } else {
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      _amts[uint(tokenId)] = _amt;
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      _curveAmt = curveSwap.calc_token_amount(_amts, false);
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    }
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    uint _amt18 = convertTo18(TokenInterface(token).decimals(), _amt);
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    uint _slippageAmt = wmul(unitAmt, _amt18);
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    curveTokenContract.approve(address(curveSwap), 0);
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    curveTokenContract.approve(address(curveSwap), _slippageAmt);
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    curveSwap.remove_liquidity_imbalance(_amts, _slippageAmt);
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    setUint(setId, _amt);
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    emit LogWithdraw(token, _amt, _curveAmt, getId, setId);
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  }
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}
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contract ConnectSBTCCurve is CurveSBTCProtocol {
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  string public name = "Curve-sbtc-v1";
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}
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