mirror of
https://github.com/Instadapp/dsa-resolvers-deprecated.git
synced 2024-07-29 22:38:16 +00:00
244 lines
8.7 KiB
Solidity
244 lines
8.7 KiB
Solidity
pragma solidity ^0.6.0;
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pragma experimental ABIEncoderV2;
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interface IERC20 {
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function balanceOf(address) external view returns (uint256);
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function totalSupply() external view returns (uint256);
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function decimals() external view returns (uint256);
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}
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interface IUniswapV3Pool {
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function slot0()
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external
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view
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returns (
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uint160 sqrtPriceX96,
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int24 tick,
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uint16 observationIndex,
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uint16 observationCardinality,
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uint16 observationCardinalityNext,
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uint8 feeProtocol,
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bool unlocked
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);
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}
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interface IGUniPool {
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function token0() external view returns (IERC20);
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function token1() external view returns (IERC20);
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function pool() external view returns (IUniswapV3Pool);
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function totalSupply() external view returns (uint256);
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function balanceOf(address account) external view returns (uint256);
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function getMintAmounts(uint256 amount0Max, uint256 amount1Max)
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external
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view
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returns (
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uint256 amount0,
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uint256 amount1,
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uint256 mintAmount
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);
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function getPositionID() external view returns (bytes32 positionID);
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function lowerTick() external view returns (int24);
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function upperTick() external view returns (int24);
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}
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interface GUniResolver {
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function getPoolUnderlyingBalances(IGUniPool pool)
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external
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view
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returns (uint256 amount0, uint256 amount1);
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function getUnderlyingBalances(
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IGUniPool pool,
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uint256 balance
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) external view returns (uint256 amount0, uint256 amount1);
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function getRebalanceParams(
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IGUniPool pool,
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uint256 amount0In,
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uint256 amount1In,
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uint16 slippageBPS
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) external view returns (
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bool zeroForOne,
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uint256 swapAmount,
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uint160 swapThreshold
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);
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}
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struct StakingRewardsInfo {
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address stakingRewards;
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uint rewardAmount;
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}
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interface StakingFactoryInterface {
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function stakingRewardsInfoByStakingToken(address) external view returns(StakingRewardsInfo memory);
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}
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interface StakingInterface {
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function totalSupply() external view returns (uint256);
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function rewardRate() external view returns (uint256);
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function balanceOf(address account) external view returns (uint256);
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function earned(address account) external view returns (uint256);
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function rewardPerToken() external view returns (uint256);
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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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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 x, uint y) internal pure returns (uint z) {
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require((z = x - y) <= x, "ds-math-sub-underflow");
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}
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}
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contract Helpers is DSMath {
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StakingFactoryInterface public constant getStakingFactory = StakingFactoryInterface(0xf39eC5a471edF20Ecc7db1c2c34B4C73ab4B2C19);
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GUniResolver public constant gelatoRouter = GUniResolver(0xC8b92036cf2bfc5aD2116c9b9Fb3cee2d3b3dc89);
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struct UserData {
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address pool; // address of pool contract
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address staking; // address of staking contract
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address token0Addr; // address of token 0
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address token1Addr; // address of token 1
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uint poolTokenSupply; // Total supply of Pool token
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uint poolToken0Bal; // balance of total pool for token0
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uint poolToken1Bal; // balance of total pool for token1
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uint poolTokenSupplyStaked; // total pool token locked in staking contract
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uint stakingToken0Bal; // total balance of token0 in Staking
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uint stakingToken1Bal; // total balance of token1 in Staking
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uint rewardRate; // INST distributing per second
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uint token0Bal; // balance of token 0 of user
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uint token1Bal; // balance of token 1 of user
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uint earned; // INST earned from staking
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uint stakedBal; // user's pool token bal in staking contract
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uint poolBal; // ideal pool token in user's DSA
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uint totalBal; // stakedBal + poolTknBal
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uint token0Decimals; // token0 decimals
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uint token1Decimals; // token1 decimals
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int24 currentTick; // Current price of 1 token w.r.t to other
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int24 lowerTick; // Price of 1 token w.r.t to other at lower tick
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int24 upperTick; // Price of 1 token w.r.t to other at upper tick
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}
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}
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contract Resolver is Helpers {
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function getSinglePosition(address user, address pool) public view returns(UserData memory _data) {
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_data.pool = pool;
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StakingInterface stakingContract = StakingInterface(getStakingFactory.stakingRewardsInfoByStakingToken(pool).stakingRewards);
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_data.staking = address(stakingContract);
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IGUniPool poolContract = IGUniPool(pool);
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_data.token0Addr = address(poolContract.token0());
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_data.token1Addr = address(poolContract.token1());
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if (_data.staking == address(0)) {
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_data.earned = 0;
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_data.stakedBal = 0;
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} else {
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_data.earned = stakingContract.earned(user);
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_data.stakedBal = stakingContract.balanceOf(user);
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}
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_data.poolBal = poolContract.balanceOf(user);
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_data.totalBal = add(_data.stakedBal, _data.poolBal);
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(_data.token0Bal, _data.token1Bal) = gelatoRouter.getUnderlyingBalances(poolContract, _data.totalBal);
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_data.poolTokenSupply = poolContract.balanceOf(user);
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(_data.poolToken0Bal, _data.poolToken1Bal) = gelatoRouter.getPoolUnderlyingBalances(poolContract);
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_data.poolTokenSupplyStaked = stakingContract.totalSupply();
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(_data.stakingToken0Bal, _data.stakingToken1Bal) = gelatoRouter.getUnderlyingBalances(poolContract, _data.poolTokenSupplyStaked);
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_data.rewardRate = stakingContract.rewardRate();
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_data.token0Decimals = poolContract.token0().decimals();
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_data.token1Decimals = poolContract.token1().decimals();
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IUniswapV3Pool uniNft = poolContract.pool();
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(, _data.currentTick, , , , , ) = uniNft.slot0();
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_data.lowerTick = poolContract.lowerTick();
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_data.upperTick = poolContract.upperTick();
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}
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function getPosition(address user, address[] memory pools) public view returns(UserData[] memory _data) {
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_data = new UserData[](pools.length);
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for (uint i = 0; i < pools.length; i++) {
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_data[i] = getSinglePosition(user, pools[i]);
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}
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}
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/**
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* @param pool - gelato pool address.
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* @param amount0In - amount of token0 user wants to deposit.
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* @param amount1In - amount of token1 user wants to deposit.
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* @param slippage in 18 decimal where 100% = 1e18.
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* @return zeroForOne - if true swap token0 for token1 else vice versa
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* @return swapAmount - Amount of tokens to swap.
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* @return swapThreshold - Max slippage that the swap can take.
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*/
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function getSwapAndDepositParams(
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address pool,
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uint amount0In,
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uint amount1In,
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uint slippage
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) public view returns (
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bool zeroForOne,
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uint256 swapAmount,
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uint160 swapThreshold
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) {
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uint slippageBPS = slippage / 1e16;
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(zeroForOne, swapAmount, swapThreshold) = gelatoRouter.getRebalanceParams(IGUniPool(pool), amount0In, amount1In, uint16(slippageBPS));
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}
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/**
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* @param user - address of user.
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* @param pool - address of Gelato Pool.
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* @param burnPercent - in 18 decimal where 100% = 1e18.
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* @param slippage in 18 decimal where 100% = 1e18.
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* @return burnAmt - Amount of pool tokens to burn.
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* @return amount0 - Amount of token0 user will get.
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* @return amount1 - Amount of token1 user will get.
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* @return amount0Min - Min amount of token0 user should get.
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* @return amount1Min - Min amount of token1 user should get.
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*/
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function getWithdrawParams(address user, address pool, uint burnPercent, uint slippage) public view returns (uint burnAmt, uint amount0, uint amount1, uint amount0Min, uint amount1Min) {
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UserData memory _data = getSinglePosition(user, pool);
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burnPercent = burnPercent > 1e18 ? 1e18 : burnPercent;
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burnAmt = wmul(_data.totalBal, burnPercent);
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amount0 = wmul(_data.token0Bal, burnPercent);
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amount1 = wmul(_data.token1Bal, burnPercent);
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amount0Min = wmul(amount0, sub(1e18, slippage));
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amount1Min = wmul(amount1, sub(1e18, slippage));
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}
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} |