Token and amount were gated on truthiness and gated independently. An address is never falsy once set but 0n is, so a hop supplying a zero amount fixed the token permanently while leaving the amount open, and the next hop's figure was rendered against the first hop's token at that token's scale -- 0.5 WETH shown as 500000000000.0000 USDT. Nine defective gates are now presence checks, and fourteen address gates were converted defensively so a sixth instance of this class cannot grow. Zero is not one thing. Established from v4-periphery: OPEN_DELTA is 0 and V4Router substitutes the full credit unconditionally, so a zero V4 exact-in amount means "swap the whole balance" and now reads "All available (V4 open delta)" rather than 0.0000, which would assert the exact inverse. amountOutMinimum gets no such mapping and universal-router special-cases only CONTRACT_BALANCE, so a zero minimum and a zero V2/V3 amount stay literal -- a zero floor reads "None (no minimum guaranteed)". closes #364
636 lines
26 KiB
JavaScript
636 lines
26 KiB
JavaScript
const { AbiCoder, Interface, solidityPacked } = require("ethers");
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const uniswap = require("../src/shared/uniswap");
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const ROUTER_ADDR = "0x66a9893cc07d91d95644aedd05d03f95e1dba8af";
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const USDT_ADDR = "0xdAC17F958D2ee523a2206206994597C13D831ec7";
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const WETH_ADDR = "0xC02aaA39b223FE8D0A0e5C4F27eAD9083C756Cc2";
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const USDC_ADDR = "0xA0b86991c6218b36c1d19D4a2e9Eb0cE3606eB48";
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const USER_ADDR = "0x66133E8ea0f5D1d612D2502a968757D1048c214a";
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// AutistMask's first-ever swap, 2026-02-27.
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// Swapped USDT for ETH via Uniswap V4 Universal Router.
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// https://etherscan.io/tx/0x6749f50c4e8f975b6d14780d5f539cf151d1594796ac49b7d6a5348ba0735e77
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const FIRST_SWAP_CALLDATA =
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"0x3593564c" +
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"000000000000000000000000000000000000000000000000000000000000006000000000000000000000000000000000000000000000000000000000000000a0" +
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"0000000000000000000000000000000000000000000000000000000069a1550f00000000000000000000000000000000000000000000000000000000000000020a10000000000000000000000000000000000000000000000000000000000000" +
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"0000000000000000000000000000000000000000000000000000000000000002000000000000000000000000000000000000000000000000000000000000004000000000000000000000000000000000000000000000000000000000000001c0" +
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"0000000000000000000000000000000000000000000000000000000000000160000000000000000000000000dac17f958d2ee523a2206206994597c13d831ec7000000000000000000000000ffffffffffffffffffffffffffffffffffffffff" +
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"0000000000000000000000000000000000000000000000000000000069c8daf6000000000000000000000000000000000000000000000000000000000000000000000000000000000000000066a9893cc07d91d95644aedd05d03f95e1dba8af" +
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"0000000000000000000000000000000000000000000000000000000069a154fe00000000000000000000000000000000000000000000000000000000000000e00000000000000000000000000000000000000000000000000000000000000041" +
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"230249bb7133205db7b2389b587c723cc182302907b9545dc40c59c33ad1d53078a65732f4182fedbc0d9d85c51d580bdc93db3556fac38f18e140da47d0eb631c00000000000000000000000000000000000000000000000000000000000000" +
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"00000000000000000000000000000000000000000000000000000000000003c0000000000000000000000000000000000000000000000000000000000000004000000000000000000000000000000000000000000000000000000000000000800000000000000000000000000000000000000000000000000000000000000003" +
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"070b0e0000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000300000000000000000000000000000000000000000000000000000000000000600000000000000000000000000000000000000000000000000000000000000220" +
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"00000000000000000000000000000000000000000000000000000000000002a000000000000000000000000000000000000000000000000000000000000001a00000000000000000000000000000000000000000000000000000000000000020000000000000000000000000dac17f958d2ee523a2206206994597c13d831ec7" +
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"0000000000000000000000000000000000000000000000000000000000000080000000000000000000000000000000000000000000000000000000000007a1200000000000000000000000000000000000000000000000000000dcb050d338e7" +
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"0000000000000000000000000000000000000000000000000000000000000001000000000000000000000000000000000000000000000000000000000000002000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000064" +
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"0000000000000000000000000000000000000000000000000000000000000001000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000a0" +
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"0000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000006000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000000" +
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"dac17f958d2ee523a2206206994597c13d831ec70000000000000000000000000000000000000000000000000000000000000000000000000000000000000001000000000000000000000000000000000000000000000000000000000000006000000000000000000000000000000000000000000000000000000000000000000000000000000000000000" +
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"66133e8ea0f5d1d612d2502a968757d1048c214a0000000000000000000000000000000000000000000000000000000000000000756e6978000000000012";
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const coder = AbiCoder.defaultAbiCoder();
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const routerIface = new Interface([
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"function execute(bytes commands, bytes[] inputs, uint256 deadline)",
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]);
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// Helper: build a minimal execute() calldata from commands + inputs
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function buildExecute(commands, inputs, deadline) {
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return routerIface.encodeFunctionData("execute", [
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commands,
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inputs,
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deadline,
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]);
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}
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// Helper: encode a PERMIT2_PERMIT input (command 0x0a)
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function encodePermit2(token, amount, spender) {
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return coder.encode(
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[
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"tuple(tuple(address,uint160,uint48,uint48),address,uint256)",
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"bytes",
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],
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[[[token, amount, 0, 0], spender, 9999999999], "0x1234"],
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);
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}
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// Helper: encode a BALANCE_CHECK_ERC20 input (command 0x0e)
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function encodeBalanceCheck(owner, token, minBalance) {
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return coder.encode(
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["address", "address", "uint256"],
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[owner, token, minBalance],
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);
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}
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// Helper: encode a WRAP_ETH input (command 0x0b)
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function encodeWrapEth(recipient, amount) {
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return coder.encode(["address", "uint256"], [recipient, amount]);
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}
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// Helper: encode a V2_SWAP_EXACT_IN input (command 0x08)
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function encodeV2SwapExactIn(recipient, amountIn, amountOutMin, pathAddrs) {
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return coder.encode(
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["address", "uint256", "uint256", "address[]", "bool"],
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[recipient, amountIn, amountOutMin, pathAddrs, true],
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);
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}
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// Helper: encode a V3_SWAP_EXACT_IN input (command 0x00)
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function encodeV3SwapExactIn(recipient, amountIn, amountOutMin, pathTokens) {
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// V3 path: token(20) + fee(3) + token(20) ...
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let pathHex = pathTokens[0].slice(2).toLowerCase();
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for (let i = 1; i < pathTokens.length; i++) {
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pathHex += "000bb8"; // fee 3000 = 0x000bb8
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pathHex += pathTokens[i].slice(2).toLowerCase();
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}
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return coder.encode(
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["address", "uint256", "uint256", "bytes", "bool"],
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[recipient, amountIn, amountOutMin, "0x" + pathHex, true],
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);
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}
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// Helper: encode a V4_SWAP input (command 0x10) — just a passthrough blob
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function encodeV4Swap(actions, params) {
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return coder.encode(["bytes", "bytes[]"], [actions, params]);
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}
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// V4 inner action IDs, as src/shared/uniswap.js names them.
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const V4_SWAP_EXACT_IN = 0x07;
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const V4_SWAP_EXACT_IN_SINGLE_ID = 0x06;
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const V4_SETTLE_ID = 0x0b;
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const V4_TAKE_ID = 0x0e;
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const ZERO_ADDR = "0x0000000000000000000000000000000000000000";
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// Helper: V4 SETTLE params — (address currency, uint256 maxAmount, bool payerIsUser)
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function encodeV4Settle(currency) {
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return coder.encode(["address", "uint256", "bool"], [currency, 0n, true]);
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}
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// Helper: V4 TAKE params — (address currency, address recipient, uint256 amount)
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function encodeV4Take(currency) {
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return coder.encode(
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["address", "address", "uint256"],
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[currency, USER_ADDR, 0n],
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);
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}
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// Helper: V4 ExactInputParams — (address currencyIn,
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// tuple(address,uint24,int24,address,bytes)[] path,
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// uint128 amountIn, uint128 amountOutMin)
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function encodeV4ExactIn(currencyIn, pathTokens, amountIn, amountOutMin) {
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return coder.encode(
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[
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"tuple(address,tuple(address,uint24,int24,address,bytes)[],uint128,uint128)",
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],
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[
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[
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currencyIn,
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pathTokens.map((t) => [t, 3000, 60, ZERO_ADDR, "0x"]),
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amountIn,
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amountOutMin,
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],
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],
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);
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}
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// Helper: V4 ExactInputSingleParams —
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// (tuple(address,address,uint24,int24,address) poolKey, bool zeroForOne,
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// uint128 amountIn, uint128 amountOutMin, bytes hookData)
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function encodeV4ExactInSingle(currency0, currency1, amountIn, amountOutMin) {
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return coder.encode(
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[
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"tuple(tuple(address,address,uint24,int24,address),bool,uint128,uint128,bytes)",
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],
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[
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[
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[currency0, currency1, 100, 1, ZERO_ADDR],
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true, // zeroForOne: in = currency0, out = currency1
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amountIn,
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amountOutMin,
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"0x",
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],
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],
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);
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}
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function detail(result, label) {
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return result.details.find((d) => d.label === label);
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}
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describe("uniswap decoder", () => {
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test("returns null for non-execute calldata", () => {
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expect(uniswap.decode("0x", ROUTER_ADDR)).toBeNull();
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expect(uniswap.decode("0xdeadbeef", ROUTER_ADDR)).toBeNull();
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expect(uniswap.decode(null, ROUTER_ADDR)).toBeNull();
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});
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test("decodes first-ever AutistMask swap (PERMIT2_PERMIT + V4_SWAP)", () => {
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const result = uniswap.decode(FIRST_SWAP_CALLDATA, ROUTER_ADDR);
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expect(result).not.toBeNull();
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expect(result.name).toBe("Swap USDT \u2192 ETH");
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expect(result.description).toContain("Uniswap");
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const labels = result.details.map((d) => d.label);
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expect(labels).toContain("Protocol");
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expect(labels).toContain("Token In");
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expect(labels).toContain("Steps");
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expect(labels).toContain("Deadline");
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const tokenIn = result.details.find((d) => d.label === "Token In");
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expect(tokenIn.value).toContain("USDT");
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expect(tokenIn.address.toLowerCase()).toBe(USDT_ADDR.toLowerCase());
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// Genuine native ETH on the output side, on a real mainnet fixture:
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// V4's TAKE names it as Currency.wrap(address(0)), which reaches the
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// decoder as the explicit zero address and must still read as ETH.
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const tokenOut = result.details.find((d) => d.label === "Token Out");
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expect(tokenOut.value).toBe("ETH");
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expect(result.details.find((d) => d.label === "Amount").value).toBe(
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"Unlimited",
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);
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expect(
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result.details.find((d) => d.label === "Min. received").value,
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).toBe("0.0002 ETH");
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const steps = result.details.find((d) => d.label === "Steps");
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expect(steps.value).toContain("Permit2 Permit");
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expect(steps.value).toContain("V4 Swap");
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});
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test("decodes V2_SWAP_EXACT_IN with known tokens", () => {
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const data = buildExecute(
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"0x08", // V2_SWAP_EXACT_IN
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[
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encodeV2SwapExactIn(
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USER_ADDR,
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1000000n, // 1 USDT (6 decimals)
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500000000000000n, // 0.0005 ETH
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[USDT_ADDR, WETH_ADDR],
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),
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],
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9999999999n,
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);
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const result = uniswap.decode(data, ROUTER_ADDR);
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expect(result).not.toBeNull();
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expect(result.name).toBe("Swap USDT \u2192 WETH");
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const amount = result.details.find((d) => d.label === "Amount");
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expect(amount.value).toBe("1.0000 USDT");
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const minOut = result.details.find((d) => d.label === "Min. received");
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expect(minOut.value).toContain("WETH");
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});
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test("decodes V3_SWAP_EXACT_IN with known tokens", () => {
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const data = buildExecute(
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"0x00", // V3_SWAP_EXACT_IN
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[
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encodeV3SwapExactIn(
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USER_ADDR,
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2000000n, // 2 USDT
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1000000000000000n, // 0.001 ETH
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[USDT_ADDR, WETH_ADDR],
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),
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],
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9999999999n,
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);
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const result = uniswap.decode(data, ROUTER_ADDR);
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expect(result).not.toBeNull();
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expect(result.name).toBe("Swap USDT \u2192 WETH");
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});
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test("decodes WRAP_ETH as ETH input", () => {
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const data = buildExecute(
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"0x0b", // WRAP_ETH
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[encodeWrapEth(ROUTER_ADDR, 1000000000000000000n)],
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9999999999n,
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);
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const result = uniswap.decode(data, ROUTER_ADDR);
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expect(result).not.toBeNull();
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const tokenIn = result.details.find((d) => d.label === "Token In");
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expect(tokenIn.value).toBe("ETH (native)");
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const amount = result.details.find((d) => d.label === "Amount");
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expect(amount.value).toBe("1.0000 ETH");
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});
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test("decodes UNWRAP_WETH as ETH output", () => {
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const data = buildExecute(
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solidityPacked(["uint8", "uint8"], [0x08, 0x0c]),
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[
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encodeV2SwapExactIn(USER_ADDR, 1000000n, 500000000000000n, [
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USDT_ADDR,
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WETH_ADDR,
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]),
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encodeWrapEth(USER_ADDR, 0n), // UNWRAP_WETH same encoding
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],
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9999999999n,
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);
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const result = uniswap.decode(data, ROUTER_ADDR);
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expect(result).not.toBeNull();
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// UNWRAP_WETH means output is native ETH
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expect(result.name).toBe("Swap USDT \u2192 ETH");
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});
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test("decodes BALANCE_CHECK_ERC20 for min output", () => {
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const data = buildExecute(
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solidityPacked(["uint8", "uint8"], [0x0b, 0x0e]),
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[
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encodeWrapEth(ROUTER_ADDR, 1000000000000000000n),
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encodeBalanceCheck(USER_ADDR, USDT_ADDR, 2000000n),
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],
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9999999999n,
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);
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const result = uniswap.decode(data, ROUTER_ADDR);
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expect(result).not.toBeNull();
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const minOut = result.details.find((d) => d.label === "Min. received");
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expect(minOut).toBeDefined();
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expect(minOut.value).toContain("2.0000");
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expect(minOut.value).toContain("USDT");
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});
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test("shows command names in steps", () => {
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const data = buildExecute(
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solidityPacked(["uint8", "uint8", "uint8"], [0x0a, 0x10, 0x0c]),
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[
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encodePermit2(USDT_ADDR, 1000000n, ROUTER_ADDR),
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encodeV4Swap("0x07", ["0x"]),
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encodeWrapEth(USER_ADDR, 0n), // reusing for UNWRAP_WETH
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],
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9999999999n,
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);
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const result = uniswap.decode(data, ROUTER_ADDR);
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expect(result).not.toBeNull();
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const steps = result.details.find((d) => d.label === "Steps");
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expect(steps.value).toBe(
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"Permit2 Permit \u2192 V4 Swap \u2192 Unwrap WETH",
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);
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});
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test("formats permit amount when not unlimited", () => {
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const data = buildExecute(
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"0x0a",
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[encodePermit2(USDT_ADDR, 5000000n, ROUTER_ADDR)],
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9999999999n,
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);
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const result = uniswap.decode(data, ROUTER_ADDR);
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expect(result).not.toBeNull();
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const amount = result.details.find((d) => d.label === "Amount");
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expect(amount.value).toBe("5.0000 USDT");
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});
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// This test validates the decodeV4Swap() fix: a V4 ERC20→ERC20 swap
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// (USDT→USDC) where the token addresses are ONLY discoverable inside
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// the V4_SWAP sub-actions (SETTLE/TAKE). Before decodeV4Swap() was added,
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// command 0x10 was opaque and this would decode as "Uniswap Swap" with
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// no token info (or "ETH → ETH"). Now it correctly shows "USDT → USDC".
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test("decodes V4_SWAP ERC20→ERC20 tokens via SETTLE/TAKE (regression: #59)", () => {
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// Build a V4_SWAP input with SETTLE(USDT) + SWAP_EXACT_IN_SINGLE + TAKE(USDC)
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const V4_SETTLE = 0x0b;
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const V4_SWAP_EXACT_IN_SINGLE = 0x06;
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const V4_TAKE = 0x0e;
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// actions: SETTLE, SWAP_EXACT_IN_SINGLE, TAKE
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const actions = new Uint8Array([
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V4_SETTLE,
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V4_SWAP_EXACT_IN_SINGLE,
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V4_TAKE,
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]);
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// SETTLE params: (address currency, uint256 maxAmount, bool payerIsUser)
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const settleParam = coder.encode(
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["address", "uint256", "bool"],
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[USDT_ADDR, 5000000n, true],
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);
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// SWAP_EXACT_IN_SINGLE params:
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// (tuple(address,address,uint24,int24,address) poolKey, bool zeroForOne, uint128 amountIn, uint128 amountOutMin, bytes hookData)
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const swapParam = coder.encode(
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[
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"tuple(tuple(address,address,uint24,int24,address),bool,uint128,uint128,bytes)",
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],
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[
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[
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[
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USDT_ADDR,
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USDC_ADDR,
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100, // fee
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1, // tickSpacing
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"0x0000000000000000000000000000000000000000", // hooks
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],
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true, // zeroForOne
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5000000n, // amountIn (5 USDT)
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4900000n, // amountOutMin (4.9 USDC)
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"0x", // hookData
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],
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],
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);
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// TAKE params: (address currency, address recipient, uint256 amount)
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const takeParam = coder.encode(
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["address", "address", "uint256"],
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[USDC_ADDR, USER_ADDR, 0n],
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);
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// Encode the V4_SWAP input: (bytes actions, bytes[] params)
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const v4Input = coder.encode(
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["bytes", "bytes[]"],
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[actions, [settleParam, swapParam, takeParam]],
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);
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// Build execute() with PERMIT2_PERMIT (0x0a) + V4_SWAP (0x10)
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// The permit provides the input token, but V4_SWAP must provide
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// the OUTPUT token — without decodeV4Swap, output would be unknown.
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const data = buildExecute(
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solidityPacked(["uint8", "uint8"], [0x0a, 0x10]),
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[encodePermit2(USDT_ADDR, 5000000n, ROUTER_ADDR), v4Input],
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9999999999n,
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);
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const result = uniswap.decode(data, ROUTER_ADDR);
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expect(result).not.toBeNull();
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// Before decodeV4Swap fix: name would be "Swap USDT → ETH" or "Uniswap Swap"
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// After fix: correctly identifies both tokens from V4 sub-actions
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expect(result.name).toBe("Swap USDT \u2192 USDC");
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const tokenIn = result.details.find((d) => d.label === "Token In");
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expect(tokenIn.value).toContain("USDT");
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const steps = result.details.find((d) => d.label === "Steps");
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expect(steps.value).toContain("V4 Swap");
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});
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// https://git.eeqj.de/sneak/AutistMask/issues/364 — the input half.
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//
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// Fails against c9ebac8: `if (!inputAmount) inputAmount = s.amountIn`
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// cannot tell the V3 hop's genuine 0n from "not yet set", so the V2 hop's
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// 0.5 WETH overwrote it while Token In stayed pinned to the V3 hop's USDT.
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// Observed there: Amount = "500000000000.0000 USDT".
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test("a hop's zero amountIn is a real amount, not an opening for the next hop's figure", () => {
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const data = buildExecute(
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|
solidityPacked(["uint8", "uint8"], [0x00, 0x08]),
|
|
[
|
|
encodeV3SwapExactIn(USER_ADDR, 0n, 0n, [USDT_ADDR, WETH_ADDR]),
|
|
encodeV2SwapExactIn(
|
|
USER_ADDR,
|
|
500000000000000000n, // 0.5 WETH
|
|
1000000n,
|
|
[WETH_ADDR, USDC_ADDR],
|
|
),
|
|
],
|
|
9999999999n,
|
|
);
|
|
|
|
const result = uniswap.decode(data, ROUTER_ADDR);
|
|
expect(result).not.toBeNull();
|
|
|
|
// The amount and the token it is counted in come from the same hop.
|
|
expect(detail(result, "Token In").address.toLowerCase()).toBe(
|
|
USDT_ADDR.toLowerCase(),
|
|
);
|
|
expect(detail(result, "Amount").value).toBe("0.0000 USDT");
|
|
expect(detail(result, "Amount").value).not.toContain("500000000000");
|
|
});
|
|
|
|
// https://git.eeqj.de/sneak/AutistMask/issues/359 — the output half, in
|
|
// the shape the issue measured: a V4 step that states a minimum of zero
|
|
// and names no output currency.
|
|
//
|
|
// Fails against c9ebac8: `if (v4.amountOutMin) minOutput = ...` and the
|
|
// `else if` beside it both read 0n as absent, so neither the figure nor
|
|
// the token moved. Observed there: Token Out = "WETH (0xC02aaA39...)" and
|
|
// Min. received = "0.5000 WETH" — the V3 hop's guarantee shown for a
|
|
// transaction whose final leg guarantees nothing.
|
|
test("a V4 step with a zero amountOutMin states no minimum instead of keeping an earlier hop's", () => {
|
|
const data = buildExecute(
|
|
solidityPacked(["uint8", "uint8"], [0x00, 0x10]),
|
|
[
|
|
encodeV3SwapExactIn(USER_ADDR, 2000000n, 500000000000000000n, [
|
|
USDT_ADDR,
|
|
WETH_ADDR,
|
|
]),
|
|
encodeV4Swap(new Uint8Array([V4_SWAP_EXACT_IN]), [
|
|
encodeV4ExactIn(
|
|
WETH_ADDR,
|
|
[], // no path: this step names no output currency
|
|
1000000000000000000n,
|
|
0n, // no slippage floor at all
|
|
),
|
|
]),
|
|
],
|
|
9999999999n,
|
|
);
|
|
|
|
const result = uniswap.decode(data, ROUTER_ADDR);
|
|
expect(result).not.toBeNull();
|
|
|
|
expect(detail(result, "Token Out").value).toBe(
|
|
"Unknown (not named in the calldata)",
|
|
);
|
|
expect(detail(result, "Min. received").value).toBe(
|
|
"None (no minimum guaranteed)",
|
|
);
|
|
expect(detail(result, "Min. received").value).not.toContain("0.5000");
|
|
});
|
|
|
|
// The same zero floor, but with the final leg's output currency named:
|
|
// the figure must belong to the token beside it. Against c9ebac8 this
|
|
// rendered Token Out = USDC with Min. received = "500000000000.0000 USDC",
|
|
// the V3 hop's 0.5e18 WETH figure re-scaled to USDC's six decimals.
|
|
test("a zero minimum is stated against the token that supplied it", () => {
|
|
const data = buildExecute(
|
|
solidityPacked(["uint8", "uint8"], [0x00, 0x10]),
|
|
[
|
|
encodeV3SwapExactIn(USER_ADDR, 2000000n, 500000000000000000n, [
|
|
USDT_ADDR,
|
|
WETH_ADDR,
|
|
]),
|
|
encodeV4Swap(
|
|
new Uint8Array([
|
|
V4_SETTLE_ID,
|
|
V4_SWAP_EXACT_IN_SINGLE_ID,
|
|
V4_TAKE_ID,
|
|
]),
|
|
[
|
|
encodeV4Settle(WETH_ADDR),
|
|
encodeV4ExactInSingle(
|
|
WETH_ADDR,
|
|
USDC_ADDR,
|
|
1000000000000000000n,
|
|
0n,
|
|
),
|
|
encodeV4Take(USDC_ADDR),
|
|
],
|
|
),
|
|
],
|
|
9999999999n,
|
|
);
|
|
|
|
const result = uniswap.decode(data, ROUTER_ADDR);
|
|
expect(result).not.toBeNull();
|
|
|
|
expect(detail(result, "Token Out").value).toContain("USDC");
|
|
expect(detail(result, "Min. received").value).toBe(
|
|
"None (no minimum guaranteed)",
|
|
);
|
|
});
|
|
|
|
// The other half of the same invariant: a final leg that names an output
|
|
// currency but no minimum leaves Min. received unstated. Against c9ebac8
|
|
// the V3 hop's figure stayed on screen beside the new token, rendering
|
|
// "500000000000.0000 USDC".
|
|
test("a final leg with no minimum drops the line rather than keeping an earlier hop's figure", () => {
|
|
const data = buildExecute(
|
|
solidityPacked(["uint8", "uint8"], [0x00, 0x10]),
|
|
[
|
|
encodeV3SwapExactIn(USER_ADDR, 2000000n, 500000000000000000n, [
|
|
USDT_ADDR,
|
|
WETH_ADDR,
|
|
]),
|
|
encodeV4Swap(new Uint8Array([V4_SETTLE_ID, V4_TAKE_ID]), [
|
|
encodeV4Settle(WETH_ADDR),
|
|
encodeV4Take(USDC_ADDR),
|
|
]),
|
|
],
|
|
9999999999n,
|
|
);
|
|
|
|
const result = uniswap.decode(data, ROUTER_ADDR);
|
|
expect(result).not.toBeNull();
|
|
|
|
expect(detail(result, "Token Out").value).toContain("USDC");
|
|
expect(detail(result, "Min. received")).toBeUndefined();
|
|
});
|
|
|
|
// V4 spells "swap the whole open delta" as an amountIn of zero
|
|
// (v4-periphery ActionConstants.OPEN_DELTA = 0, applied by V4Router's
|
|
// _swapExactInputSingle / _swapExactInput). It is not a quantity, and
|
|
// printing "0.0000 WETH" for it would state the exact inverse of what the
|
|
// step does. Against c9ebac8 the Amount line was omitted entirely.
|
|
test("a V4 open-delta amountIn is named, not printed as zero", () => {
|
|
const data = buildExecute(
|
|
"0x10",
|
|
[
|
|
encodeV4Swap(
|
|
new Uint8Array([
|
|
V4_SETTLE_ID,
|
|
V4_SWAP_EXACT_IN_SINGLE_ID,
|
|
V4_TAKE_ID,
|
|
]),
|
|
[
|
|
encodeV4Settle(WETH_ADDR),
|
|
encodeV4ExactInSingle(
|
|
WETH_ADDR,
|
|
USDC_ADDR,
|
|
0n, // ActionConstants.OPEN_DELTA
|
|
990000n,
|
|
),
|
|
encodeV4Take(USDC_ADDR),
|
|
],
|
|
),
|
|
],
|
|
9999999999n,
|
|
);
|
|
|
|
const result = uniswap.decode(data, ROUTER_ADDR);
|
|
expect(result).not.toBeNull();
|
|
|
|
expect(detail(result, "Token In").value).toContain("WETH");
|
|
expect(detail(result, "Amount").value).toBe(
|
|
"All available (V4 open delta)",
|
|
);
|
|
expect(detail(result, "Min. received").value).toBe("0.9900 USDC");
|
|
});
|
|
|
|
// Pins what https://git.eeqj.de/sneak/AutistMask/pulls/356 changed without
|
|
// testing: a non-swap execute() carrying only PERMIT2_PERMIT names no
|
|
// output currency, so it says so and titles itself "Uniswap Swap" rather
|
|
// than inventing "Token Out: ETH".
|
|
test("a PERMIT2_PERMIT-only execute() invents no output token", () => {
|
|
const data = buildExecute(
|
|
"0x0a",
|
|
[encodePermit2(USDT_ADDR, 5000000n, ROUTER_ADDR)],
|
|
9999999999n,
|
|
);
|
|
|
|
const result = uniswap.decode(data, ROUTER_ADDR);
|
|
expect(result).not.toBeNull();
|
|
expect(result.name).toBe("Uniswap Swap");
|
|
|
|
expect(detail(result, "Token In").value).toContain("USDT");
|
|
expect(detail(result, "Token Out").value).toBe(
|
|
"Unknown (not named in the calldata)",
|
|
);
|
|
expect(detail(result, "Token Out").address).toBeUndefined();
|
|
expect(detail(result, "Min. received")).toBeUndefined();
|
|
});
|
|
|
|
test("handles unknown tokens gracefully", () => {
|
|
const fakeToken = "0x1111111111111111111111111111111111111111";
|
|
const data = buildExecute(
|
|
"0x0a",
|
|
[encodePermit2(fakeToken, 1000000000000000000n, ROUTER_ADDR)],
|
|
9999999999n,
|
|
);
|
|
|
|
const result = uniswap.decode(data, ROUTER_ADDR);
|
|
expect(result).not.toBeNull();
|
|
expect(result.name).toBe("Uniswap Swap");
|
|
|
|
const tokenIn = result.details.find((d) => d.label === "Token In");
|
|
expect(tokenIn.value).toContain(fakeToken);
|
|
});
|
|
});
|