feat: rm selector from usv3, usv4, update tests, and rename dispatcher file
This commit is contained in:
@@ -28,17 +28,10 @@ library LibSwap {
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res = address(uint160(bytes20(swap[5:25])));
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}
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/// The selector to be used of the executor contract
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function executorSelector(
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bytes calldata swap
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) internal pure returns (bytes4 res) {
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res = bytes4(swap[25:29]);
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}
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/// Remaining bytes are interpreted as protocol data
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function protocolData(
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bytes calldata swap
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) internal pure returns (bytes calldata res) {
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res = swap[29:];
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res = swap[25:];
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}
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}
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@@ -3,6 +3,7 @@ pragma solidity ^0.8.26;
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import "@interfaces/IExecutor.sol";
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import "@interfaces/ICallback.sol";
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import "forge-std/console.sol";
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error Dispatcher__UnapprovedExecutor();
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error Dispatcher__NonContractExecutor();
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@@ -81,7 +82,7 @@ contract Dispatcher {
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}
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function _handleCallback(bytes calldata data) internal {
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address executor = address(uint160(bytes20(data[data.length - 24:])));
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address executor = address(uint160(bytes20(data[data.length - 20:])));
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if (!executors[executor]) {
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revert Dispatcher__UnapprovedExecutor();
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@@ -148,9 +148,7 @@ contract UniswapV3Executor is IExecutor, ICallback {
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view
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returns (bytes memory)
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{
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return abi.encodePacked(
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tokenIn, tokenOut, fee, self, ICallback.handleCallback.selector
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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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@@ -42,7 +42,6 @@ contract UniswapV4Executor is IExecutor, V4Router, ICallback {
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address tokenOut,
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bool zeroForOne,
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address callbackExecutor,
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bytes4 callbackSelector,
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UniswapV4Executor.UniswapV4Pool[] memory pools
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) = _decodeData(data);
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@@ -108,8 +107,7 @@ contract UniswapV4Executor is IExecutor, V4Router, ICallback {
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params[2] = abi.encode(Currency.wrap(tokenOut), uint256(0));
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swapData = abi.encode(actions, params);
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}
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bytes memory fullData =
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abi.encodePacked(swapData, callbackExecutor, callbackSelector);
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bytes memory fullData = abi.encodePacked(swapData, callbackExecutor);
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uint256 tokenOutBalanceBefore;
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tokenOutBalanceBefore = tokenOut == address(0)
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@@ -143,11 +141,10 @@ contract UniswapV4Executor is IExecutor, V4Router, ICallback {
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address tokenOut,
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bool zeroForOne,
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address callbackExecutor,
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bytes4 callbackSelector,
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UniswapV4Pool[] memory pools
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)
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{
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if (data.length < 91) {
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if (data.length < 87) {
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revert UniswapV4Executor__InvalidDataLength();
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}
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@@ -155,11 +152,10 @@ contract UniswapV4Executor is IExecutor, V4Router, ICallback {
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tokenOut = address(bytes20(data[20:40]));
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zeroForOne = (data[40] != 0);
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callbackExecutor = address(bytes20(data[41:61]));
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callbackSelector = bytes4(data[61:65]);
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uint256 poolsLength = (data.length - 65) / 26; // 26 bytes per pool object
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uint256 poolsLength = (data.length - 61) / 26; // 26 bytes per pool object
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pools = new UniswapV4Pool[](poolsLength);
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bytes memory poolsData = data[65:];
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bytes memory poolsData = data[61:];
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uint256 offset = 0;
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for (uint256 i = 0; i < poolsLength; i++) {
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address intermediaryToken;
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@@ -12,15 +12,12 @@ contract LibSwapTest is Test {
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uint8 tokenOutIndex = 2;
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uint24 split = 3;
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address executor = 0x1234567890123456789012345678901234567890;
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bytes4 selector = 0x12345678;
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bytes memory protocolData = abi.encodePacked(uint256(456));
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bytes memory swap = abi.encodePacked(
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tokenInIndex, tokenOutIndex, split, executor, selector, protocolData
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);
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this.assertSwap(
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swap, tokenInIndex, tokenOutIndex, split, executor, selector
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tokenInIndex, tokenOutIndex, split, executor, protocolData
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);
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this.assertSwap(swap, tokenInIndex, tokenOutIndex, split, executor);
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}
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// This is necessary so that the compiler accepts bytes as a LibSwap.sol
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@@ -29,13 +26,11 @@ contract LibSwapTest is Test {
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uint8 tokenInIndex,
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uint8 tokenOutIndex,
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uint24 split,
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address executor,
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bytes4 selector
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address executor
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) public pure {
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assert(swap.tokenInIndex() == tokenInIndex);
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assert(swap.tokenOutIndex() == tokenOutIndex);
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assert(swap.splitPercentage() == split);
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assert(swap.executor() == executor);
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assert(swap.executorSelector() == selector);
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}
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}
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@@ -219,12 +219,7 @@ contract TychoRouterTest is TychoRouterTestSetup {
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);
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bytes memory swap = encodeSwap(
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uint8(0),
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uint8(1),
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uint24(0),
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address(usv2Executor),
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bytes4(0),
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protocolData
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uint8(0), uint8(1), uint24(0), address(usv2Executor), protocolData
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);
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bytes[] memory swaps = new bytes[](1);
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swaps[0] = swap;
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@@ -250,7 +245,6 @@ contract TychoRouterTest is TychoRouterTestSetup {
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uint8(1),
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uint24(0),
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address(usv2Executor),
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bytes4(0),
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encodeUniswapV2Swap(
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WETH_ADDR, WETH_DAI_POOL, tychoRouterAddr, false
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)
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@@ -262,7 +256,6 @@ contract TychoRouterTest is TychoRouterTestSetup {
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uint8(2),
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uint24(0),
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address(usv2Executor),
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bytes4(0),
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encodeUniswapV2Swap(DAI_ADDR, DAI_USDC_POOL, tychoRouterAddr, true)
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);
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@@ -289,7 +282,6 @@ contract TychoRouterTest is TychoRouterTestSetup {
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uint8(1),
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(0xffffff * 60) / 100, // 60%
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address(usv2Executor),
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bytes4(0),
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encodeUniswapV2Swap(
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WETH_ADDR, WETH_WBTC_POOL, tychoRouterAddr, false
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)
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@@ -300,7 +292,6 @@ contract TychoRouterTest is TychoRouterTestSetup {
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uint8(2),
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uint24(0),
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address(usv2Executor),
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bytes4(0),
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encodeUniswapV2Swap(
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WBTC_ADDR, USDC_WBTC_POOL, tychoRouterAddr, true
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)
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@@ -311,7 +302,6 @@ contract TychoRouterTest is TychoRouterTestSetup {
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uint8(3),
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uint24(0),
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address(usv2Executor),
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bytes4(0),
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encodeUniswapV2Swap(
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WETH_ADDR, WETH_DAI_POOL, tychoRouterAddr, false
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)
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@@ -323,7 +313,6 @@ contract TychoRouterTest is TychoRouterTestSetup {
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uint8(2),
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uint24(0),
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address(usv2Executor),
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bytes4(0),
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encodeUniswapV2Swap(DAI_ADDR, DAI_USDC_POOL, tychoRouterAddr, true)
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);
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@@ -353,12 +342,7 @@ contract TychoRouterTest is TychoRouterTestSetup {
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);
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bytes memory swap = encodeSwap(
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uint8(0),
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uint8(1),
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uint24(0),
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address(usv2Executor),
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bytes4(0),
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protocolData
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uint8(0), uint8(1), uint24(0), address(usv2Executor), protocolData
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);
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bytes[] memory swaps = new bytes[](1);
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swaps[0] = swap;
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@@ -402,12 +386,7 @@ contract TychoRouterTest is TychoRouterTestSetup {
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);
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bytes memory swap = encodeSwap(
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uint8(0),
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uint8(1),
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uint24(0),
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address(usv2Executor),
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bytes4(0),
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protocolData
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uint8(0), uint8(1), uint24(0), address(usv2Executor), protocolData
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);
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bytes[] memory swaps = new bytes[](1);
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swaps[0] = swap;
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@@ -453,12 +432,7 @@ contract TychoRouterTest is TychoRouterTestSetup {
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);
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bytes memory swap = encodeSwap(
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uint8(0),
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uint8(1),
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uint24(0),
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address(usv2Executor),
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bytes4(0),
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protocolData
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uint8(0), uint8(1), uint24(0), address(usv2Executor), protocolData
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);
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bytes[] memory swaps = new bytes[](1);
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swaps[0] = swap;
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@@ -512,12 +486,7 @@ contract TychoRouterTest is TychoRouterTestSetup {
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);
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bytes memory swap = encodeSwap(
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uint8(0),
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uint8(1),
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uint24(0),
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address(usv2Executor),
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bytes4(0),
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protocolData
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uint8(0), uint8(1), uint24(0), address(usv2Executor), protocolData
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);
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bytes[] memory swaps = new bytes[](1);
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swaps[0] = swap;
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@@ -569,12 +538,7 @@ contract TychoRouterTest is TychoRouterTestSetup {
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);
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bytes memory swap = encodeSwap(
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uint8(0),
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uint8(1),
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uint24(0),
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address(usv2Executor),
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bytes4(0),
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protocolData
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uint8(0), uint8(1), uint24(0), address(usv2Executor), protocolData
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);
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bytes[] memory swaps = new bytes[](1);
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swaps[0] = swap;
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@@ -618,12 +582,7 @@ contract TychoRouterTest is TychoRouterTestSetup {
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encodeUniswapV2Swap(DAI_ADDR, WETH_DAI_POOL, tychoRouterAddr, true);
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bytes memory swap = encodeSwap(
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uint8(0),
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uint8(1),
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uint24(0),
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address(usv2Executor),
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bytes4(0),
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protocolData
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uint8(0), uint8(1), uint24(0), address(usv2Executor), protocolData
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);
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bytes[] memory swaps = new bytes[](1);
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swaps[0] = swap;
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@@ -662,12 +621,7 @@ contract TychoRouterTest is TychoRouterTestSetup {
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WETH_ADDR, DAI_ADDR, tychoRouterAddr, DAI_WETH_USV3, zeroForOne
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);
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bytes memory swap = encodeSwap(
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uint8(0),
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uint8(1),
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uint24(0),
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address(usv3Executor),
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bytes4(0),
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protocolData
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uint8(0), uint8(1), uint24(0), address(usv3Executor), protocolData
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);
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bytes[] memory swaps = new bytes[](1);
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@@ -933,7 +887,6 @@ contract TychoRouterTest is TychoRouterTestSetup {
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uint8(1),
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(0xffffff * 60) / 100, // 60%
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address(usv2Executor),
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bytes4(0),
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protocolData
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);
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@@ -976,21 +929,11 @@ contract TychoRouterTest is TychoRouterTestSetup {
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});
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bytes memory protocolData = UniswapV4Utils.encodeExactInput(
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USDE_ADDR,
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USDT_ADDR,
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true,
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address(usv4Executor),
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SafeCallback.unlockCallback.selector,
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pools
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USDE_ADDR, USDT_ADDR, true, address(usv4Executor), pools
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);
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bytes memory swap = encodeSwap(
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uint8(0),
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uint8(1),
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uint24(0),
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address(usv4Executor),
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bytes4(0),
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protocolData
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uint8(0), uint8(1), uint24(0), address(usv4Executor), protocolData
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);
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bytes[] memory swaps = new bytes[](1);
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@@ -1021,21 +964,11 @@ contract TychoRouterTest is TychoRouterTestSetup {
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});
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bytes memory protocolData = UniswapV4Utils.encodeExactInput(
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USDE_ADDR,
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WBTC_ADDR,
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true,
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address(usv4Executor),
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SafeCallback.unlockCallback.selector,
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pools
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USDE_ADDR, WBTC_ADDR, true, address(usv4Executor), pools
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);
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bytes memory swap = encodeSwap(
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uint8(0),
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uint8(1),
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uint24(0),
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address(usv4Executor),
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bytes4(0),
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protocolData
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uint8(0), uint8(1), uint24(0), address(usv4Executor), protocolData
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);
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bytes[] memory swaps = new bytes[](1);
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@@ -186,11 +186,10 @@ contract TychoRouterTestSetup is Test, Constants {
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uint8 tokenOutIndex,
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uint24 split,
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address executor,
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bytes4 selector,
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bytes memory protocolData
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) internal pure returns (bytes memory) {
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return abi.encodePacked(
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tokenInIndex, tokenOutIndex, split, executor, selector, protocolData
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tokenInIndex, tokenOutIndex, split, executor, protocolData
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);
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}
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@@ -19,7 +19,6 @@ contract UniswapV4ExecutorExposed is UniswapV4Executor {
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address tokenOut,
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bool zeroForOne,
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address callbackExecutor,
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bytes4 callbackSelector,
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UniswapV4Pool[] memory pools
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)
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{
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@@ -42,7 +41,7 @@ contract UniswapV4ExecutorTest is Test, Constants {
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new UniswapV4ExecutorExposed(IPoolManager(poolManager));
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}
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function testDecodeParams() public view {
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function testDecodeParamsV4() public view {
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bool zeroForOne = true;
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uint24 pool1Fee = 500;
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int24 tickSpacing1 = 60;
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@@ -63,12 +62,7 @@ contract UniswapV4ExecutorTest is Test, Constants {
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});
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bytes memory data = UniswapV4Utils.encodeExactInput(
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USDE_ADDR,
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USDT_ADDR,
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zeroForOne,
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address(uniswapV4Exposed),
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SafeCallback.unlockCallback.selector,
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pools
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USDE_ADDR, USDT_ADDR, zeroForOne, address(uniswapV4Exposed), pools
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);
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(
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@@ -76,7 +70,6 @@ contract UniswapV4ExecutorTest is Test, Constants {
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address tokenOut,
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bool zeroForOneDecoded,
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address callbackExecutor,
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bytes4 callbackSelector,
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UniswapV4Executor.UniswapV4Pool[] memory decodedPools
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) = uniswapV4Exposed.decodeData(data);
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@@ -84,7 +77,6 @@ contract UniswapV4ExecutorTest is Test, Constants {
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assertEq(tokenOut, USDT_ADDR);
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assertEq(zeroForOneDecoded, zeroForOne);
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assertEq(callbackExecutor, address(uniswapV4Exposed));
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assertEq(callbackSelector, SafeCallback.unlockCallback.selector);
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assertEq(decodedPools.length, 2);
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assertEq(decodedPools[0].intermediaryToken, USDT_ADDR);
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assertEq(decodedPools[0].fee, pool1Fee);
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@@ -94,7 +86,7 @@ contract UniswapV4ExecutorTest is Test, Constants {
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assertEq(decodedPools[1].tickSpacing, tickSpacing2);
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}
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function testSingleSwap() public {
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function testSingleSwapV4() public {
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uint256 amountIn = 100 ether;
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deal(USDE_ADDR, address(uniswapV4Exposed), amountIn);
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uint256 usdeBalanceBeforePool = USDE.balanceOf(poolManager);
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@@ -110,12 +102,7 @@ contract UniswapV4ExecutorTest is Test, Constants {
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});
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bytes memory data = UniswapV4Utils.encodeExactInput(
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USDE_ADDR,
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USDT_ADDR,
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true,
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address(uniswapV4Exposed),
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SafeCallback.unlockCallback.selector,
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pools
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USDE_ADDR, USDT_ADDR, true, address(uniswapV4Exposed), pools
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);
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uint256 amountOut = uniswapV4Exposed.swap(amountIn, data);
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@@ -148,7 +135,7 @@ contract UniswapV4ExecutorTest is Test, Constants {
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assertTrue(USDT.balanceOf(address(uniswapV4Exposed)) == amountOut);
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}
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function testMultipleSwap() public {
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function testMultipleSwapV4() public {
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// USDE -> USDT -> WBTC
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uint256 amountIn = 100 ether;
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deal(USDE_ADDR, address(uniswapV4Exposed), amountIn);
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@@ -170,12 +157,7 @@ contract UniswapV4ExecutorTest is Test, Constants {
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});
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bytes memory data = UniswapV4Utils.encodeExactInput(
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USDE_ADDR,
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WBTC_ADDR,
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true,
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address(uniswapV4Exposed),
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SafeCallback.unlockCallback.selector,
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pools
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USDE_ADDR, WBTC_ADDR, true, address(uniswapV4Exposed), pools
|
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);
|
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|
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uint256 amountOut = uniswapV4Exposed.swap(amountIn, data);
|
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|
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@@ -9,7 +9,6 @@ library UniswapV4Utils {
|
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address tokenOut,
|
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bool zeroForOne,
|
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address callbackExecutor,
|
||||
bytes4 callbackSelector,
|
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UniswapV4Executor.UniswapV4Pool[] memory pools
|
||||
) public pure returns (bytes memory) {
|
||||
bytes memory encodedPools;
|
||||
@@ -24,12 +23,7 @@ library UniswapV4Utils {
|
||||
}
|
||||
|
||||
return abi.encodePacked(
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||||
tokenIn,
|
||||
tokenOut,
|
||||
zeroForOne,
|
||||
callbackExecutor,
|
||||
bytes4(callbackSelector),
|
||||
encodedPools
|
||||
tokenIn, tokenOut, zeroForOne, callbackExecutor, encodedPools
|
||||
);
|
||||
}
|
||||
}
|
||||
|
||||
Reference in New Issue
Block a user