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feat: add fluid contracts
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14
contracts/mainnet/connectors/fluid/events.sol
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14
contracts/mainnet/connectors/fluid/events.sol
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//SPDX-License-Identifier: MIT
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pragma solidity ^0.7.0;
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contract Events {
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event LogOperate (
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address vaultAddress,
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uint256 nftId,
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int256 newCol,
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int256 newDebt,
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address to,
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uint256 getId,
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uint256 setId
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);
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}
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47
contracts/mainnet/connectors/fluid/interface.sol
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contracts/mainnet/connectors/fluid/interface.sol
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//SPDX-License-Identifier: MIT
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pragma solidity ^0.7.0;
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pragma experimental ABIEncoderV2;
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interface IVault {
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/// @dev Single function which handles supply, withdraw, borrow & payback
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/// @param nftId_ NFT ID for interaction. If 0 then create new NFT/position.
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/// @param newCol_ new collateral. If positive then deposit, if negative then withdraw, if 0 then do nohing
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/// @param newDebt_ new debt. If positive then borrow, if negative then payback, if 0 then do nohing
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/// @param to_ address where withdraw or borrow should go. If address(0) then msg.sender
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/// @return nftId_ if 0 then this returns the newly created NFT Id else returns the same NFT ID
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/// @return final supply amount. Mainly if max withdraw using type(int).min then this is useful to get perfect amount else remain same as newCol_
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/// @return final borrow amount. Mainly if max payback using type(int).min then this is useful to get perfect amount else remain same as newDebt_
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function operate(
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uint256 nftId_, // if 0 then new position
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int256 newCol_, // if negative then withdraw
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int256 newDebt_, // if negative then payback
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address to_ // address at which the borrow & withdraw amount should go to. If address(0) then it'll go to msg.sender
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)
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external
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returns (
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uint256, // nftId_
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int256, // final supply amount if - then withdraw
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int256 // final borrow amount if - then payback
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);
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struct ConstantViews {
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address liquidity;
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address factory;
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address adminImplementation;
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address secondaryImplementation;
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address supplyToken;
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address borrowToken;
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uint8 supplyDecimals;
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uint8 borrowDecimals;
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uint vaultId;
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bytes32 liquidityTotalSupplySlot;
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bytes32 liquidityTotalBorrowSlot;
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bytes32 liquiditySupplyExchangePriceSlot;
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bytes32 liquidityBorrowExchangePriceSlot;
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bytes32 liquidityUserSupplySlot;
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bytes32 liquidityUserBorrowSlot;
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}
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function constantsView() external view returns (ConstantViews memory constantsView_);
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}
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44
contracts/mainnet/connectors/fluid/main.sol
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contracts/mainnet/connectors/fluid/main.sol
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//SPDX-License-Identifier: MIT
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pragma solidity ^0.7.0;
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/**
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* @title Fluid.
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* @dev Lending & Borrowing.
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*/
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import { Stores } from "../../common/stores.sol";
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import { Events } from "./events.sol";
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import { IVault } from "./interface.sol";
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abstract contract FluidConnector is Events, Stores {
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// todo: add logics when user wants to deposit weth
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function operate(
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address vaultAddress_,
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uint256 nftId_, // if 0 then new position
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int256 newCol_, // if negative then withdraw
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int256 newDebt_, // if negative then payback
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address to_,
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uint256 getId_,
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uint256 setId_
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) external payable
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returns (string memory _eventName, bytes memory _eventParam)
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{
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nftId_ = getUint(getId_, nftId_);
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IVault vault_ = IVault(vaultAddress_);
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IVault.ConstantViews memory vaultDetails_ = vault_.constantsView();
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(nftId_, newCol_, newDebt_) = vault_.operate(nftId_, newCol_, newDebt_, to_);
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setUint(setId_, nftId_);
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_eventName = "LogOperate(address,uint256,uint256,uint256,address,uint256,uint256)";
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_eventParam = abi.encode(vaultAddress_, nftId_, newCol_, newDebt_, to_, getId_, setId_);
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}
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}
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contract ConnectV2Fluid is FluidConnector {
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string public constant name = "Fluid-v1.0";
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}
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