feat: add callback
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@@ -12,11 +12,13 @@ import {PoolKey} from "@uniswap/v4-core/types/PoolKey.sol";
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import {BalanceDelta} from "@uniswap/v4-core/types/BalanceDelta.sol";
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import {SafeCast} from "@openzeppelin/contracts/utils/math/SafeCast.sol";
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import {IHooks} from "@uniswap/v4-core/interfaces/IHooks.sol";
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import {IUnlockCallback} from "@uniswap/v4-core/interfaces/callback/IUnlockCallback.sol";
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error UniswapV4Executor__InvalidDataLength();
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error UniswapV4Executor__SwapFailed();
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error UniswapV4Executor__InsufficientOutput();
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contract UniswapV4Executor is IExecutor {
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contract UniswapV4Executor is IExecutor, IUnlockCallback {
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using SafeERC20 for IERC20;
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using CurrencyLibrary for Currency;
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using SafeCast for int128;
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@@ -26,10 +28,16 @@ contract UniswapV4Executor is IExecutor {
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uint256 private constant MAX_SQRT_RATIO =
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1461446703485210103287273052203988822378723970342;
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// slither-disable-next-line locked-ether
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struct SwapCallbackData {
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PoolKey key;
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IPoolManager.SwapParams params;
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address tokenIn;
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address tokenOut;
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address receiver;
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}
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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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external payable
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returns (uint256 amountOut)
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{
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(
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@@ -55,15 +63,28 @@ contract UniswapV4Executor is IExecutor {
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sqrtPriceLimitX96: uint160(zeroForOne ? MIN_SQRT_RATIO + 1 : MAX_SQRT_RATIO - 1)
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});
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// Transfer tokens from sender to this contract
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IERC20(tokenIn).safeTransferFrom(msg.sender, address(this), amountIn);
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// Approve PoolManager to spend tokens
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IERC20(tokenIn).approve(target, amountIn);
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SwapCallbackData memory callbackData = SwapCallbackData({
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key: key,
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params: params,
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tokenIn: tokenIn,
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tokenOut: tokenOut,
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receiver: receiver
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});
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IPoolManager poolManager = IPoolManager(target);
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try poolManager.swap(key, params, abi.encode(key)) returns (BalanceDelta delta) {
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if (zeroForOne) {
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amountOut = delta.amount1() < 0 ? (-delta.amount1()).toUint256() : 0;
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} else {
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amountOut = delta.amount0() < 0 ? (-delta.amount0()).toUint256() : 0;
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}
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try poolManager.unlock(abi.encode(callbackData)) returns (bytes memory result) {
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amountOut = abi.decode(result, (uint256));
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if (amountOut == 0) revert UniswapV4Executor__InsufficientOutput();
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// Transfer output tokens to receiver if not this contract
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if (receiver != address(this)) {
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IERC20(tokenOut).safeTransfer(receiver, amountOut);
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}
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@@ -72,6 +93,28 @@ contract UniswapV4Executor is IExecutor {
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}
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}
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function unlockCallback(bytes calldata rawData) external returns (bytes memory) {
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SwapCallbackData memory data = abi.decode(rawData, (SwapCallbackData));
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IPoolManager poolManager = IPoolManager(msg.sender);
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BalanceDelta delta = poolManager.swap(data.key, data.params, "");
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uint256 amountOut;
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if (data.params.zeroForOne) {
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amountOut = delta.amount1() < 0 ? (-delta.amount1()).toUint256() : 0;
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} else {
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amountOut = delta.amount0() < 0 ? (-delta.amount0()).toUint256() : 0;
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}
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poolManager.settle();
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return abi.encode(amountOut);
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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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@@ -95,6 +138,4 @@ contract UniswapV4Executor is IExecutor {
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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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}
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