- Needed to take pool code init hash as input param for executors - Added tests for ethereum. Will test base on-chain. - Important note: Pancakeswap uses their deployer instead of their factory (this is a different address) for target verification.
185 lines
5.5 KiB
Solidity
185 lines
5.5 KiB
Solidity
// SPDX-License-Identifier: BUSL-1.1
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pragma solidity ^0.8.26;
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import "@interfaces/IExecutor.sol";
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import "@openzeppelin/contracts/token/ERC20/utils/SafeERC20.sol";
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import "@uniswap/v3-core/contracts/interfaces/IUniswapV3Pool.sol";
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import "@uniswap/v3-updated/CallbackValidationV2.sol";
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import "@interfaces/ICallback.sol";
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error UniswapV3Executor__InvalidDataLength();
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error UniswapV3Executor__InvalidFactory();
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error UniswapV3Executor__InvalidTarget();
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error UniswapV3Executor__InvalidInitCode();
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contract UniswapV3Executor is IExecutor, ICallback {
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using SafeERC20 for IERC20;
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uint160 private constant MIN_SQRT_RATIO = 4295128739;
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uint160 private constant MAX_SQRT_RATIO =
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1461446703485210103287273052203988822378723970342;
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address public immutable factory;
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bytes32 public immutable initCode;
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address private immutable self;
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constructor(address _factory, bytes32 _initCode) {
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if (_factory == address(0)) {
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revert UniswapV3Executor__InvalidFactory();
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}
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if (_initCode == bytes32(0)) {
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revert UniswapV3Executor__InvalidInitCode();
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}
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factory = _factory;
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initCode = _initCode;
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self = address(this);
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}
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// slither-disable-next-line locked-ether
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function swap(uint256 amountIn, bytes calldata data)
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external
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payable
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returns (uint256 amountOut)
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{
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(
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address tokenIn,
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address tokenOut,
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uint24 fee,
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address receiver,
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address target,
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bool zeroForOne
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) = _decodeData(data);
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_verifyPairAddress(tokenIn, tokenOut, fee, target);
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int256 amount0;
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int256 amount1;
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IUniswapV3Pool pool = IUniswapV3Pool(target);
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bytes memory callbackData = _makeV3CallbackData(tokenIn, tokenOut, fee);
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{
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(amount0, amount1) = pool.swap(
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receiver,
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zeroForOne,
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// positive means exactIn
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int256(amountIn),
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zeroForOne ? MIN_SQRT_RATIO + 1 : MAX_SQRT_RATIO - 1,
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callbackData
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);
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}
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if (zeroForOne) {
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amountOut = amount1 > 0 ? uint256(amount1) : uint256(-amount1);
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} else {
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amountOut = amount0 > 0 ? uint256(amount0) : uint256(-amount0);
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}
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}
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function handleCallback(bytes calldata msgData)
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public
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returns (bytes memory result)
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{
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// The data has the following layout:
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// - amount0Delta (32 bytes)
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// - amount1Delta (32 bytes)
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// - dataOffset (32 bytes)
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// - dataLength (32 bytes)
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// - protocolData (variable length)
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(int256 amount0Delta, int256 amount1Delta) =
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abi.decode(msgData[:64], (int256, int256));
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address tokenIn = address(bytes20(msgData[128:148]));
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verifyCallback(msgData[128:]);
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uint256 amountOwed =
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amount0Delta > 0 ? uint256(amount0Delta) : uint256(amount1Delta);
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IERC20(tokenIn).safeTransfer(msg.sender, amountOwed);
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return abi.encode(amountOwed, tokenIn);
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}
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function verifyCallback(bytes calldata data) public view {
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address tokenIn = address(bytes20(data[0:20]));
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address tokenOut = address(bytes20(data[20:40]));
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uint24 poolFee = uint24(bytes3(data[40:43]));
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// slither-disable-next-line unused-return
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CallbackValidationV2.verifyCallback(factory, tokenIn, tokenOut, poolFee);
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}
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function uniswapV3SwapCallback(
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int256, /* amount0Delta */
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int256, /* amount1Delta */
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bytes calldata /* data */
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) external {
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uint256 dataOffset = 4 + 32 + 32 + 32; // Skip selector + 2 ints + data_offset
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uint256 dataLength =
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uint256(bytes32(msg.data[dataOffset:dataOffset + 32]));
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bytes calldata fullData = msg.data[4:dataOffset + 32 + dataLength];
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handleCallback(fullData);
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}
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function _decodeData(bytes calldata data)
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internal
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pure
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returns (
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address tokenIn,
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address tokenOut,
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uint24 fee,
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address receiver,
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address target,
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bool zeroForOne
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)
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{
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if (data.length != 84) {
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revert UniswapV3Executor__InvalidDataLength();
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}
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tokenIn = address(bytes20(data[0:20]));
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tokenOut = address(bytes20(data[20:40]));
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fee = uint24(bytes3(data[40:43]));
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receiver = address(bytes20(data[43:63]));
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target = address(bytes20(data[63:83]));
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zeroForOne = uint8(data[83]) > 0;
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}
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function _makeV3CallbackData(address tokenIn, address tokenOut, uint24 fee)
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internal
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view
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returns (bytes memory)
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{
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return abi.encodePacked(tokenIn, tokenOut, fee, self);
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}
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function _verifyPairAddress(
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address tokenA,
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address tokenB,
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uint24 fee,
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address target
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) internal view {
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(address token0, address token1) =
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tokenA < tokenB ? (tokenA, tokenB) : (tokenB, tokenA);
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address pool = address(
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uint160(
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uint256(
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keccak256(
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abi.encodePacked(
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hex"ff",
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factory,
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keccak256(abi.encode(token0, token1, fee)),
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initCode
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)
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)
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)
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)
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);
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if (pool != target) {
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revert UniswapV3Executor__InvalidTarget();
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}
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}
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}
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