fix: a shared ticker no longer hides one of its two real tokens (closes #276)
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Seven bundled tokens were filtered as spoofs at their own address, so a user holding FRAX, TON, REUSD, EURE, MSUSD, MUSD or JPYC could not see or spend the one the wallet happened not to pick. The known-symbol table is derived from the bundled token list, first-wins in market-cap order, so a symbol that appears twice silently condemned its second contract. Both are real tokens from the same fetch and neither is stale -- three pairs are one issuer's old and new contract, four are unrelated issuers sharing a ticker. Picking a winner would have been guessing, and dropping the ambiguous symbols would have ended spoof filtering for those tickers entirely. The table now maps a symbol to the set of addresses that legitimately bear it. A contract outside the set is still a spoof, so the check is not weakened: a third contract bearing any of the seven shared tickers is refused, and that is tested. The filter decides what is fake, not what is worth holding, so a legacy contract stays in the set -- it still holds real balances. A test walks the whole bundled list asserting no token is filtered at its own address, which is the guard whose absence let this ship.
This commit was merged in pull request #277.
This commit is contained in:
@@ -56,7 +56,7 @@ global.chrome = {
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};
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const { isSpoofedSymbol } = require("../src/shared/symbolSpoof");
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const { KNOWN_SYMBOLS } = require("../src/shared/tokenList");
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const { TOKENS, KNOWN_SYMBOLS } = require("../src/shared/tokenList");
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const { filterTransactions } = require("../src/shared/transactions");
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const {
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fetchTokenBalances,
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@@ -284,11 +284,137 @@ describe("the shared rule: symbols that render as a known symbol", () => {
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// asserts the claim it stands for — `[ -~]` would admit an interior
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// space and let a whitespace-bearing entry through the guard.
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test("no bundled symbol is touched by the normalization", () => {
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for (const [symbol, address] of KNOWN_SYMBOLS) {
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for (const [symbol, addresses] of KNOWN_SYMBOLS) {
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expect(symbol).toBe(symbol.trim());
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expect(symbol).toMatch(/^[!-~]+$/);
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if (address === null) continue;
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expect(isSpoofedSymbol(symbol, address)).toBe(false);
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if (addresses === null) continue;
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for (const address of addresses) {
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expect(isSpoofedSymbol(symbol, address)).toBe(false);
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}
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}
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});
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});
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// Issue #276: the guard that was missing. The suite walked KNOWN_SYMBOLS,
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// which is built from TOKENS, so it could only ever assert that the table
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// agrees with itself. Seven symbols appear twice in the bundled list at two
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// different real contracts, and the table kept whichever came first, so the
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// other seven contracts — tokens in our own shipped list, at their own
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// addresses — were judged spoofs and hidden from the balance list, the
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// history and the send selector. That is the over-filtering direction: it
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// hides a holding the user cannot then spend.
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//
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// This walk is over TOKENS, the data the wallet actually ships, so it fails
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// whenever a bundled token would be filtered at its own address no matter
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// which side of the table the mistake is on.
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describe("the shipped token list", () => {
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test("no bundled token is filtered at its own address", () => {
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const filtered = TOKENS.filter((t) =>
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isSpoofedSymbol(t.symbol, t.address),
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).map((t) => t.symbol + " @ " + t.address);
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expect(filtered).toEqual([]);
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});
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// The third failure mode the issue asks about: a symbol whose table entry
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// names an address that is in neither the table nor the list would be a
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// contract we vouch for and do not ship. There is none, and the table is
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// built from the list, so this asserts the derivation has not acquired a
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// hand-written entry.
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test("every address the table vouches for is a bundled token", () => {
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const bundled = new Set(TOKENS.map((t) => t.address.toLowerCase()));
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for (const [symbol, addresses] of KNOWN_SYMBOLS) {
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if (addresses === null) continue;
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expect(addresses.size).toBeGreaterThan(0);
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for (const address of addresses) {
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expect(address).toBe(address.toLowerCase());
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expect(bundled.has(address)).toBe(true);
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// And it is the token that actually reports that symbol.
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const token = TOKENS.find(
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(t) => t.address.toLowerCase() === address,
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);
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expect(token.symbol.toUpperCase()).toBe(symbol);
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}
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}
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});
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// Both contracts behind a shared ticker must pass, from either side: a
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// rule that admits only the one the table happens to visit first is the
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// bug, not the fix.
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test("both contracts behind a shared ticker are admitted", () => {
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const bySymbol = new Map();
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for (const t of TOKENS) {
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const upper = t.symbol.toUpperCase();
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if (!bySymbol.has(upper)) bySymbol.set(upper, []);
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bySymbol.get(upper).push(t);
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}
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const shared = [...bySymbol].filter(([, list]) => list.length > 1);
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// The shared tickers are a fact about the shipped data; if a future
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// list has none, this test would silently assert nothing.
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expect(shared.length).toBeGreaterThan(0);
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for (const [, list] of shared) {
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for (const t of list) {
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expect(isSpoofedSymbol(t.symbol, t.address)).toBe(false);
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}
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}
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});
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// The seven from issue #276, named so that the reconciliation is a fact
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// in the suite: each is two real contracts from the same source fetch,
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// and the table now holds both rather than the one that came first.
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test("the seven shared tickers each name both bundled contracts", () => {
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const expected = {
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TON: [
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"0x582d872a1b094fc48f5de31d3b73f2d9be47def1", // Toncoin
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"0x2be5e8c109e2197d077d13a82daead6a9b3433c5", // Tokamak Network
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],
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FRAX: [
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"0x853d955acef822db058eb8505911ed77f175b99e", // Legacy Frax Dollar
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"0x3432b6a60d23ca0dfca7761b7ab56459d9c964d0", // Frax (prev. FXS)
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],
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REUSD: [
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"0x5086bf358635b81d8c47c66d1c8b9e567db70c72", // Re Protocol reUSD
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"0x57ab1e0003f623289cd798b1824be09a793e4bec", // Resupply USD
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],
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EURE: [
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"0x39b8b6385416f4ca36a20319f70d28621895279d", // Monerium EUR emoney
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"0x3231cb76718cdef2155fc47b5286d82e6eda273f", // Monerium EUR emoney [OLD]
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],
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MSUSD: [
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"0x4ba01f22827018b4772cd326c7627fb4956a7c00", // Main Street USD
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"0xab5eb14c09d416f0ac63661e57edb7aecdb9befa", // Metronome Synth USD
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],
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MUSD: [
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"0xaca92e438df0b2401ff60da7e4337b687a2435da", // MetaMask USD
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"0xdd468a1ddc392dcdbef6db6e34e89aa338f9f186", // Mezo USD
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],
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JPYC: [
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"0x431d5dff03120afa4bdf332c61a6e1766ef37bdb", // JPY Coin
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"0x2370f9d504c7a6e775bf6e14b3f12846b594cd53", // JPY Coin v1
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],
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};
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for (const [symbol, addresses] of Object.entries(expected)) {
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expect([...KNOWN_SYMBOLS.get(symbol)].sort()).toEqual(
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[...addresses].sort(),
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);
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for (const address of addresses) {
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expect(isSpoofedSymbol(symbol, address)).toBe(false);
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}
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}
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});
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// The other direction, on the same symbols: widening the table to hold
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// every bundled address for a ticker must not turn it into a pass for
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// any other contract.
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test("a shared ticker from a third contract is still a spoof", () => {
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const bySymbol = new Map();
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for (const t of TOKENS) {
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const upper = t.symbol.toUpperCase();
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if (!bySymbol.has(upper)) bySymbol.set(upper, []);
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bySymbol.get(upper).push(t);
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}
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for (const [symbol, list] of bySymbol) {
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if (list.length < 2) continue;
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expect(isSpoofedSymbol(symbol, FAKE_ETH_CONTRACT)).toBe(true);
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}
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});
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});
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