- So that we can possibly do a transferFrom - This should still be safe since the user can't control what is passed here
168 lines
5.2 KiB
Solidity
168 lines
5.2 KiB
Solidity
// SPDX-License-Identifier: BUSL-1.1
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pragma solidity ^0.8.26;
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import "@src/executors/UniswapV3Executor.sol";
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import {Test} from "../../lib/forge-std/src/Test.sol";
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import {Constants} from "../Constants.sol";
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contract UniswapV3ExecutorExposed is UniswapV3Executor {
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constructor(address _factory, bytes32 _initCode, address _permit2)
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UniswapV3Executor(_factory, _initCode, _permit2)
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{}
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function decodeData(bytes calldata data)
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external
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pure
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returns (
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address inToken,
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address outToken,
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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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TransferMethod method
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)
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{
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return _decodeData(data);
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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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) external view {
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_verifyPairAddress(tokenA, tokenB, fee, target);
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}
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}
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contract UniswapV3ExecutorTest is Test, Constants {
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using SafeERC20 for IERC20;
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UniswapV3ExecutorExposed uniswapV3Exposed;
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UniswapV3ExecutorExposed pancakeV3Exposed;
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IERC20 WETH = IERC20(WETH_ADDR);
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IERC20 DAI = IERC20(DAI_ADDR);
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function setUp() public {
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uint256 forkBlock = 17323404;
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vm.createSelectFork(vm.rpcUrl("mainnet"), forkBlock);
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uniswapV3Exposed = new UniswapV3ExecutorExposed(
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USV3_FACTORY_ETHEREUM, USV3_POOL_CODE_INIT_HASH, PERMIT2_ADDRESS
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);
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pancakeV3Exposed = new UniswapV3ExecutorExposed(
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PANCAKESWAPV3_DEPLOYER_ETHEREUM, PANCAKEV3_POOL_CODE_INIT_HASH, PERMIT2_ADDRESS
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);
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}
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function testDecodeParams() public view {
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uint24 expectedPoolFee = 500;
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bytes memory data = abi.encodePacked(
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WETH_ADDR, DAI_ADDR, expectedPoolFee, address(2), address(3), false
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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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ExecutorTransferMethods.TransferMethod method
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) = uniswapV3Exposed.decodeData(data);
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assertEq(tokenIn, WETH_ADDR);
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assertEq(tokenOut, DAI_ADDR);
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assertEq(fee, expectedPoolFee);
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assertEq(receiver, address(2));
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assertEq(target, address(3));
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assertEq(zeroForOne, false);
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assertEq(
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uint8(method),
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uint8(ExecutorTransferMethods.TransferMethod.TRANSFER)
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);
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}
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function testDecodeParamsInvalidDataLength() public {
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bytes memory invalidParams =
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abi.encodePacked(WETH_ADDR, address(2), address(3));
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vm.expectRevert(UniswapV3Executor__InvalidDataLength.selector);
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uniswapV3Exposed.decodeData(invalidParams);
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}
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function testVerifyPairAddress() public view {
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uniswapV3Exposed.verifyPairAddress(
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WETH_ADDR, DAI_ADDR, 3000, DAI_WETH_USV3
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);
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}
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function testVerifyPairAddressPancake() public view {
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pancakeV3Exposed.verifyPairAddress(
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WETH_ADDR, USDT_ADDR, 500, PANCAKESWAPV3_WETH_USDT_POOL
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);
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}
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function testUSV3Callback() public {
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uint24 poolFee = 3000;
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uint256 amountOwed = 1000000000000000000;
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deal(WETH_ADDR, address(uniswapV3Exposed), amountOwed);
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uint256 initialPoolReserve = IERC20(WETH_ADDR).balanceOf(DAI_WETH_USV3);
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vm.startPrank(DAI_WETH_USV3);
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bytes memory protocolData =
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abi.encodePacked(WETH_ADDR, DAI_ADDR, poolFee);
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uint256 dataOffset = 3; // some offset
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uint256 dataLength = protocolData.length;
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bytes memory callbackData = abi.encodePacked(
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bytes4(0xfa461e33),
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int256(amountOwed), // amount0Delta
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int256(0), // amount1Delta
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dataOffset,
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dataLength,
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protocolData,
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uint8(ExecutorTransferMethods.TransferMethod.TRANSFER),
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address(uniswapV3Exposed) // transferFrom sender (irrelevant in this case)
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);
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uniswapV3Exposed.handleCallback(callbackData);
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vm.stopPrank();
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uint256 finalPoolReserve = IERC20(WETH_ADDR).balanceOf(DAI_WETH_USV3);
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assertEq(finalPoolReserve - initialPoolReserve, amountOwed);
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}
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function testSwapFailureInvalidTarget() public {
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uint256 amountIn = 10 ** 18;
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deal(WETH_ADDR, address(uniswapV3Exposed), amountIn);
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bool zeroForOne = false;
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address fakePool = DUMMY; // Contract with minimal code
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bytes memory protocolData = abi.encodePacked(
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WETH_ADDR,
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DAI_ADDR,
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uint24(3000),
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address(this),
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fakePool,
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zeroForOne
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);
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vm.expectRevert(UniswapV3Executor__InvalidTarget.selector);
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uniswapV3Exposed.swap(amountIn, protocolData);
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}
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function encodeUniswapV3Swap(
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address tokenIn,
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address tokenOut,
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address receiver,
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address target,
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bool zero2one
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) internal view returns (bytes memory) {
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IUniswapV3Pool pool = IUniswapV3Pool(target);
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return abi.encodePacked(
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tokenIn, tokenOut, pool.fee(), receiver, target, zero2one
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);
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}
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}
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