harden: gate swap amounts on presence, not truthiness, so a figure always matches its token (closes #359)
All checks were successful
check / check (push) Successful in 32s
e2e / e2e-chrome (push) Successful in 1m45s
e2e / e2e-firefox (push) Successful in 29s

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
This commit was merged in pull request #368.
This commit is contained in:
2026-08-23 20:45:58 +02:00
parent c9ebac822a
commit 75a5fa9891
3 changed files with 452 additions and 57 deletions

15
TODO.md
View File

@@ -45,6 +45,21 @@ but the review is broader than any of them.
# Completed Steps
- 2026-08-23: A swap amount and the token it is counted in now always come from
the same hop, on both sides of the approval screen
([#359](https://git.eeqj.de/sneak/AutistMask/issues/359) and
[#364](https://git.eeqj.de/sneak/AutistMask/issues/364), the output and input
halves of one gate, fixed as one unit). `src/shared/uniswap.js` gated the
token and the amount on truthiness and independently; an address is never
falsy once set but an amount of `0n` is, so a hop supplying a zero amount
fixed the token and left the amount open, and the next hop's figure was then
rendered against the first hop's token at that token's scale — 0.5 WETH shown
as `500000000000.0000 USDT`, and an earlier hop's `Min. received` shown for a
final leg that guarantees nothing. Both sides are now set as a pair through
explicit presence, a zero slippage floor reads `None (no minimum guaranteed)`,
and V4's `OPEN_DELTA` (an `amountIn` of zero, which `V4Router` reads as "swap
the whole open credit") reads `All available (V4 open delta)` instead of
`0.0000`.
- 2026-08-23: A swap whose input token the calldata never named is said to be
unknown instead of being called ETH
([#357](https://git.eeqj.de/sneak/AutistMask/issues/357)), the twin on the

View File

@@ -53,6 +53,53 @@ function formatAmount(raw, decimals) {
// on a scale — not as a token name, and not as a quantity.
const UNNAMED_CURRENCY = "Unknown (not named in the calldata)";
// Explicit presence, never truthiness. Every gate in this file that guards a
// decoded value goes through here: an address is never falsy once set, but an
// amount of 0n is, and a gate that cannot tell a genuine zero from an absent
// value is the trap this decoder has now been bitten by five times.
function present(value) {
return value !== null && value !== undefined;
}
// Uniswap V4 spells "use the whole open delta" as an amount of zero:
// v4-periphery `src/libraries/ActionConstants.sol` declares
// `uint128 internal constant OPEN_DELTA = 0` ("used to signal that an action
// should use the input value of the open delta on the pool manager or of the
// balance that the contract holds"), and `src/V4Router.sol` substitutes the
// full open credit whenever an exact-in swap action's `amountIn` equals it:
//
// uint128 amountIn = params.amountIn;
// if (amountIn == ActionConstants.OPEN_DELTA) {
// amountIn = _getFullCredit(...).toUint128();
// }
//
// in both `_swapExactInputSingle` and `_swapExactInput`. Sentinel and literal
// zero are the same uint128 word, so the encoding CANNOT distinguish them —
// and the router does not try: it reads every zero as the sentinel, so in V4
// there is no such thing as an exact-in swap of literally zero. The amount is
// therefore not stated by the calldata at all; it is whatever credit is open
// at execution time. It is carried as this sentinel rather than as 0n because
// printing "0.0000" would state the exact inverse of what will happen —
// "nothing is being swapped" for a step that swaps the entire balance.
//
// `amountOutMinimum` gets no such mapping: V4Router compares it directly
// (`if (amountOut < params.amountOutMinimum) revert V4TooLittleReceived`), so
// a zero minimum is a literal zero slippage floor and is stated as one. Nor do
// the V2/V3 paths have it — universal-router's `V3SwapRouter.v3SwapExactInput`
// special-cases only `ActionConstants.CONTRACT_BALANCE` (1<<255), never zero —
// so a zero `amountIn` there is a literal zero and is displayed as one.
const OPEN_DELTA = Symbol("v4-open-delta");
// The two amount lines that state a fact instead of a quantity. Same register
// as UNNAMED_CURRENCY — a sentence in the value slot, so it cannot be misread
// as a number — and deliberately not a third phrasing of "not named": these
// say different things.
const OPEN_DELTA_AMOUNT = "All available (V4 open delta)";
const NO_MINIMUM = "None (no minimum guaranteed)";
// Permit2 amounts are uint160; the maximum is Permit2's "unbounded".
const MAX_UINT160 = BigInt("0xffffffffffffffffffffffffffffffffffffffff");
// `decimals` is null when nothing knows this token's scale. It is not
// defaulted to 18: the swap lines land on the same approval screen as the
// ERC-20 line, and a scale guessed there is what showed a 1,000 USDT swap as
@@ -224,6 +271,14 @@ const V4_SWAP_EXACT_OUT = 0x09;
const V4_SETTLE = 0x0b;
const V4_TAKE = 0x0e;
// A V4 exact-in `amountIn`, read the way V4Router reads it: zero is
// ActionConstants.OPEN_DELTA, not a quantity of zero. See the OPEN_DELTA
// comment above. The exact-OUT actions below decode no amounts at all, so
// their own OPEN_DELTA mapping on `amountOut` never reaches the screen.
function v4ExactInAmount(raw) {
return raw === 0n ? OPEN_DELTA : raw;
}
// Decode V4_SWAP (command 0x10) input bytes.
// The input is ABI-encoded as (bytes actions, bytes[] params).
// We extract token addresses from SETTLE (input) and TAKE (output) sub-actions,
@@ -272,13 +327,17 @@ function decodeV4Swap(input) {
],
params[i],
);
if (!settleToken) settleToken = s[0][0];
if (!present(settleToken)) settleToken = s[0][0];
const path = s[0][1];
if (path.length > 0 && !takeToken) {
if (path.length > 0 && !present(takeToken)) {
takeToken = path[path.length - 1][0];
}
if (!amountIn) amountIn = s[0][2];
if (!amountOutMin) amountOutMin = s[0][3];
if (!present(amountIn)) {
amountIn = v4ExactInAmount(s[0][2]);
}
if (!present(amountOutMin)) {
amountOutMin = s[0][3];
}
} catch {
// Fall through — SETTLE/TAKE will provide tokens
}
@@ -294,16 +353,20 @@ function decodeV4Swap(input) {
);
const poolKey = s[0][0];
const zeroForOne = s[0][1];
if (!settleToken)
if (!present(settleToken))
settleToken = zeroForOne
? poolKey[0]
: poolKey[1];
if (!takeToken)
if (!present(takeToken))
takeToken = zeroForOne
? poolKey[1]
: poolKey[0];
if (!amountIn) amountIn = s[0][2];
if (!amountOutMin) amountOutMin = s[0][3];
if (!present(amountIn)) {
amountIn = v4ExactInAmount(s[0][2]);
}
if (!present(amountOutMin)) {
amountOutMin = s[0][3];
}
} catch {
// Fall through
}
@@ -320,9 +383,9 @@ function decodeV4Swap(input) {
],
params[i],
);
if (!takeToken) takeToken = s[0][0];
if (!present(takeToken)) takeToken = s[0][0];
const path = s[0][1];
if (path.length > 0 && !settleToken) {
if (path.length > 0 && !present(settleToken)) {
settleToken = path[path.length - 1][0];
}
} catch {
@@ -338,11 +401,11 @@ function decodeV4Swap(input) {
);
const poolKey = s[0][0];
const zeroForOne = s[0][1];
if (!settleToken)
if (!present(settleToken))
settleToken = zeroForOne
? poolKey[0]
: poolKey[1];
if (!takeToken)
if (!present(takeToken))
takeToken = zeroForOne
? poolKey[1]
: poolKey[0];
@@ -381,11 +444,44 @@ function decode(data, toAddress, sources) {
let inputToken = null;
let inputAmount = null;
let inputEstablished = false;
let outputToken = null;
let minOutput = null;
let hasUnwrapWeth = false;
const commandNames = [];
// THE INVARIANT: an amount and the token it is counted in always come
// from the same hop. A figure is never rendered against a token that
// did not supply it.
//
// Both sides are therefore set as a PAIR — never field by field, and
// never on truthiness. An address is never falsy once set but an
// amount of 0n is, so gating the two halves independently let a hop
// with a zero amount fix the token and leave the amount open; the next
// hop's figure was then displayed against the first hop's token, at the
// first hop's scale. A V3 USDT->WETH hop with amountIn 0 followed by a
// V2 WETH->USDC hop of 0.5e18 rendered "500000000000.0000 USDT".
//
// The input side is fixed by the first hop that states either half, the
// output side by the last, because the final leg is what the user
// receives. A half the establishing hop did not state stays null and
// the line says so, rather than being filled in from a different hop.
const setInput = (token, amount) => {
inputToken = present(token) ? token : null;
inputAmount = present(amount) ? amount : null;
inputEstablished = true;
};
const setInputOnce = (token, amount) => {
if (inputEstablished) return;
if (!present(token) && !present(amount)) return;
setInput(token, amount);
};
const setOutput = (token, amount) => {
if (!present(token) && !present(amount)) return;
outputToken = present(token) ? token : null;
minOutput = present(amount) ? amount : null;
};
for (let i = 0; i < commandsBytes.length; i++) {
const cmdId = commandsBytes[i] & 0x1f;
commandNames.push(
@@ -396,69 +492,61 @@ function decode(data, toAddress, sources) {
try {
if (cmdId === 0x0a) {
const p = decodePermit2(inputs[i]);
if (p) {
inputToken = p.token;
inputAmount = p.amount;
}
// A permit states both halves itself, so it may replace an
// input side an earlier hop established without breaking
// the invariant.
if (p) setInput(p.token, p.amount);
}
if (cmdId === 0x0e) {
const b = decodeBalanceCheck(inputs[i]);
if (b) {
outputToken = b.token;
minOutput = b.minBalance;
}
if (b) setOutput(b.token, b.minBalance);
}
if (cmdId === 0x00) {
const s = decodeV3SwapExactIn(inputs[i]);
if (s) {
if (!inputToken) inputToken = s.tokenIn;
if (!inputAmount) inputAmount = s.amountIn;
setInputOnce(s.tokenIn, s.amountIn);
// Always update output: in multi-step swaps (V3 → V4),
// the last swap step determines the final output token
// and minimum received amount.
outputToken = s.tokenOut;
minOutput = s.amountOutMin;
setOutput(s.tokenOut, s.amountOutMin);
}
}
if (cmdId === 0x08) {
const s = decodeV2SwapExactIn(inputs[i]);
if (s) {
if (!inputToken) inputToken = s.tokenIn;
if (!inputAmount) inputAmount = s.amountIn;
outputToken = s.tokenOut;
minOutput = s.amountOutMin;
setInputOnce(s.tokenIn, s.amountIn);
setOutput(s.tokenOut, s.amountOutMin);
}
}
if (cmdId === 0x0b) {
const w = decodeWrapEth(inputs[i]);
if (w && !inputToken) {
inputToken =
"0x0000000000000000000000000000000000000000";
inputAmount = w.amount;
if (w) {
setInputOnce(
"0x0000000000000000000000000000000000000000",
w.amount,
);
}
}
if (cmdId === 0x10) {
const v4 = decodeV4Swap(inputs[i]);
if (v4) {
if (!inputToken && v4.tokenIn) inputToken = v4.tokenIn;
if (!inputAmount && v4.amountIn)
inputAmount = v4.amountIn;
setInputOnce(v4.tokenIn, v4.amountIn);
// Always update output: last swap step wins. A step
// that carries the Min. received figure but decoded no
// output currency makes the output *undetermined* — it
// is neither ETH nor whatever an earlier step named,
// and that figure is no longer counted in that token.
if (v4.tokenOut) {
outputToken = v4.tokenOut;
} else if (v4.amountOutMin) {
outputToken = null;
}
if (v4.amountOutMin) minOutput = v4.amountOutMin;
// Equally, a step that names an output currency but no
// minimum leaves Min. received unstated rather than
// keeping an earlier step's figure beside the new
// token. setOutput() is both rules; a step that states
// neither half leaves the output alone.
setOutput(v4.tokenOut, v4.amountOutMin);
}
}
@@ -495,7 +583,7 @@ function decode(data, toAddress, sources) {
address: toAddress,
});
if (inputToken && inInfo.address) {
if (present(inputToken) && present(inInfo.address)) {
const label = inSymbol
? inSymbol + " (" + inputToken + ")"
: inputToken;
@@ -515,16 +603,20 @@ function decode(data, toAddress, sources) {
details.push({ label: "Token In", value: UNNAMED_CURRENCY });
}
if (inputAmount !== null && inputAmount !== undefined) {
const maxUint160 = BigInt(
"0xffffffffffffffffffffffffffffffffffffffff",
);
const isUnlimited = inputAmount >= maxUint160;
// An unbounded permit needs no scale to describe, so it is still
// named rather than refused.
const amount = isUnlimited
? { raw: "Unlimited", display: "Unlimited" }
: amountText(inputAmount, inInfo);
if (present(inputAmount)) {
// Two amounts need no scale to describe and are named rather than
// formatted: V4's open delta, which is not a quantity at all (see
// OPEN_DELTA), and an unbounded permit. The open-delta test comes
// first — the sentinel is not a bigint and cannot be compared with
// one.
let amount;
if (inputAmount === OPEN_DELTA) {
amount = { raw: OPEN_DELTA_AMOUNT, display: OPEN_DELTA_AMOUNT };
} else if (inputAmount >= MAX_UINT160) {
amount = { raw: "Unlimited", display: "Unlimited" };
} else {
amount = amountText(inputAmount, inInfo);
}
details.push({
label: "Amount",
value: amount.display,
@@ -537,7 +629,7 @@ function decode(data, toAddress, sources) {
// entirely, leaving a Min. received figure with nothing saying what is
// being received. The Token In line above already falls back to the
// address; this does the same.
if (outInfo.address) {
if (present(outInfo.address)) {
const label = outSymbol
? outSymbol + " (" + outInfo.address + ")"
: outInfo.address;
@@ -557,10 +649,19 @@ function decode(data, toAddress, sources) {
details.push({ label: "Token Out", value: UNNAMED_CURRENCY });
}
if (minOutput !== null && minOutput !== undefined) {
if (present(minOutput)) {
// A zero floor is the one case the user most needs stated: the
// swap guarantees nothing back. It is said in words, in the same
// register as UNNAMED_CURRENCY, because "0.0000 WETH" reads as an
// artifact of the four-decimal rule rather than as "this may
// return nothing" — and because it is true at every scale, so it
// holds even when the output token's decimals are unknown.
details.push({
label: "Min. received",
value: amountText(minOutput, outInfo).display,
value:
minOutput === 0n
? NO_MINIMUM
: amountText(minOutput, outInfo).display,
});
}

View File

@@ -94,6 +94,69 @@ function encodeV4Swap(actions, params) {
return coder.encode(["bytes", "bytes[]"], [actions, params]);
}
// V4 inner action IDs, as src/shared/uniswap.js names them.
const V4_SWAP_EXACT_IN = 0x07;
const V4_SWAP_EXACT_IN_SINGLE_ID = 0x06;
const V4_SETTLE_ID = 0x0b;
const V4_TAKE_ID = 0x0e;
const ZERO_ADDR = "0x0000000000000000000000000000000000000000";
// Helper: V4 SETTLE params — (address currency, uint256 maxAmount, bool payerIsUser)
function encodeV4Settle(currency) {
return coder.encode(["address", "uint256", "bool"], [currency, 0n, true]);
}
// Helper: V4 TAKE params — (address currency, address recipient, uint256 amount)
function encodeV4Take(currency) {
return coder.encode(
["address", "address", "uint256"],
[currency, USER_ADDR, 0n],
);
}
// Helper: V4 ExactInputParams — (address currencyIn,
// tuple(address,uint24,int24,address,bytes)[] path,
// uint128 amountIn, uint128 amountOutMin)
function encodeV4ExactIn(currencyIn, pathTokens, amountIn, amountOutMin) {
return coder.encode(
[
"tuple(address,tuple(address,uint24,int24,address,bytes)[],uint128,uint128)",
],
[
[
currencyIn,
pathTokens.map((t) => [t, 3000, 60, ZERO_ADDR, "0x"]),
amountIn,
amountOutMin,
],
],
);
}
// Helper: V4 ExactInputSingleParams —
// (tuple(address,address,uint24,int24,address) poolKey, bool zeroForOne,
// uint128 amountIn, uint128 amountOutMin, bytes hookData)
function encodeV4ExactInSingle(currency0, currency1, amountIn, amountOutMin) {
return coder.encode(
[
"tuple(tuple(address,address,uint24,int24,address),bool,uint128,uint128,bytes)",
],
[
[
[currency0, currency1, 100, 1, ZERO_ADDR],
true, // zeroForOne: in = currency0, out = currency1
amountIn,
amountOutMin,
"0x",
],
],
);
}
function detail(result, label) {
return result.details.find((d) => d.label === label);
}
describe("uniswap decoder", () => {
test("returns null for non-execute calldata", () => {
expect(uniswap.decode("0x", ROUTER_ADDR)).toBeNull();
@@ -118,6 +181,18 @@ describe("uniswap decoder", () => {
expect(tokenIn.value).toContain("USDT");
expect(tokenIn.address.toLowerCase()).toBe(USDT_ADDR.toLowerCase());
// Genuine native ETH on the output side, on a real mainnet fixture:
// V4's TAKE names it as Currency.wrap(address(0)), which reaches the
// decoder as the explicit zero address and must still read as ETH.
const tokenOut = result.details.find((d) => d.label === "Token Out");
expect(tokenOut.value).toBe("ETH");
expect(result.details.find((d) => d.label === "Amount").value).toBe(
"Unlimited",
);
expect(
result.details.find((d) => d.label === "Min. received").value,
).toBe("0.0002 ETH");
const steps = result.details.find((d) => d.label === "Steps");
expect(steps.value).toContain("Permit2 Permit");
expect(steps.value).toContain("V4 Swap");
@@ -181,8 +256,7 @@ describe("uniswap decoder", () => {
expect(tokenIn.value).toBe("ETH (native)");
const amount = result.details.find((d) => d.label === "Amount");
expect(amount.value).toContain("1.0000");
expect(amount.value).toContain("ETH");
expect(amount.value).toBe("1.0000 ETH");
});
test("decodes UNWRAP_WETH as ETH output", () => {
@@ -338,6 +412,211 @@ describe("uniswap decoder", () => {
expect(steps.value).toContain("V4 Swap");
});
// https://git.eeqj.de/sneak/AutistMask/issues/364 — the input half.
//
// Fails against c9ebac8: `if (!inputAmount) inputAmount = s.amountIn`
// cannot tell the V3 hop's genuine 0n from "not yet set", so the V2 hop's
// 0.5 WETH overwrote it while Token In stayed pinned to the V3 hop's USDT.
// Observed there: Amount = "500000000000.0000 USDT".
test("a hop's zero amountIn is a real amount, not an opening for the next hop's figure", () => {
const data = buildExecute(
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(