fix: one transaction history row per value movement (closes #177)
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This commit was merged in pull request #196.
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4
TODO.md
4
TODO.md
@@ -67,6 +67,10 @@ undefined identifiers, which is how
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remaining wallets, the selection only moves when it was deleted, and the
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active-address change is broadcast to connected sites
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([#156](https://git.eeqj.de/sneak/AutistMask/issues/156)).
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- 2026-08-11: One row per on-chain value movement in transaction history: the
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merge moved into the pure `mergeTransactions` and the zero-ETH native side of
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a plain ERC-20 transfer absorbed into its token row
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([#177](https://git.eeqj.de/sneak/AutistMask/issues/177)).
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- 2026-08-11: `TODO.md` Workflow rewritten to the branch-and-PR-per-issue model
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on `next`, with Status and Next Step refreshed
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([#191](https://git.eeqj.de/sneak/AutistMask/issues/191)).
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@@ -113,6 +113,85 @@ function parseTokenTransfer(tt, addrLower) {
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};
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}
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// True when a parsed native entry moved no ETH. Contract-call entries have
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// their amount fields blanked by parseTx, so they are never judged here.
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function movedNoEther(tx) {
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if (tx.direction === "contract") return false;
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return BigInt(tx.rawAmount || "0") === BigInt(0);
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}
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// Merge parsed normal transactions with parsed ERC-20 token transfers into
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// one row per distinct value movement. Pure: it reads only its arguments
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// and returns a new list sorted newest block first.
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//
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// The merge key is the transaction hash for the native entry and
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// hash + token contract for each token transfer, so:
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//
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// - A display-level contract call (a swap and friends, direction
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// "contract") absorbs every token leg of its hash into the single
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// native entry, because the legs are hops of one operation rather
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// than separate movements the user made.
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// - Otherwise each distinct token contract in the transaction keeps its
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// own row, so a hash carrying several genuine transfers stays several
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// rows.
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// - The native entry of such a transaction is dropped when it moved no
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// ETH and at least one token transfer shares its hash: that entry is
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// the ERC-20 call itself, already represented by the token row. A
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// native entry that moved ETH survives alongside the token rows, since
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// the ETH and the tokens are two real movements, and a zero-value
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// native transaction with no token transfer on its hash survives too.
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function mergeTransactions(txs, tokenTransfers) {
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const byKey = new Map();
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// Entries are copied so consolidation never writes through to the
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// caller's objects.
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for (const tx of txs) {
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byKey.set(tx.hash, { ...tx });
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}
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const absorbedHashes = new Set();
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for (const parsed of tokenTransfers) {
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const existing = byKey.get(parsed.hash);
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if (existing && existing.direction === "contract") {
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// For contract calls (swaps), consolidate into the original
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// tx entry. Prefer the "received" transfer (swap output)
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// for the display amount. If no received transfer exists,
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// fall back to the first "sent" transfer (swap input).
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const isReceived = parsed.direction === "received";
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const needsAmount = !existing.exactValue;
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if (isReceived || needsAmount) {
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existing.value = parsed.value;
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existing.exactValue = parsed.exactValue;
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existing.rawAmount = parsed.rawAmount;
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existing.rawUnit = parsed.rawUnit;
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existing.symbol = parsed.symbol;
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existing.contractAddress = parsed.contractAddress;
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existing.holders = parsed.holders;
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}
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// Keep the original tx's from/to (the user's address and the
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// contract they called), not the token transfer's from/to
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// which may be a router or Permit2 contract.
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continue;
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}
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if (existing && movedNoEther(existing)) {
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absorbedHashes.add(parsed.hash);
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}
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// Every other token transfer gets its own entry.
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byKey.set(parsed.hash + ":" + (parsed.contractAddress || ""), {
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...parsed,
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});
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}
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for (const hash of absorbedHashes) {
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byKey.delete(hash);
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}
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const merged = [...byKey.values()];
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merged.sort((a, b) => b.blockNumber - a.blockNumber);
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return merged;
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}
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async function fetchRecentTransactions(address, blockscoutUrl, count = 25) {
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log.debugf("fetchRecentTransactions", address);
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const addrLower = address.toLowerCase();
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@@ -145,53 +224,11 @@ async function fetchRecentTransactions(address, blockscoutUrl, count = 25) {
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const txJson = txResp.ok ? await txResp.json() : {};
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const ttJson = ttResp.ok ? await ttResp.json() : {};
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const txsByHash = new Map();
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const txs = mergeTransactions(
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(txJson.items || []).map((tx) => parseTx(tx, addrLower)),
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(ttJson.items || []).map((tt) => parseTokenTransfer(tt, addrLower)),
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);
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for (const tx of txJson.items || []) {
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txsByHash.set(tx.hash, parseTx(tx, addrLower));
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}
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// When a token transfer shares a hash with a normal tx, the normal tx
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// is the contract call (0 ETH) and the token transfer has the real
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// amount and symbol. For contract calls (swaps), a single transaction
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// can produce multiple token transfers (input, intermediates, output).
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// We consolidate these into the original tx entry using the token
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// transfer where the user *receives* tokens (the swap output), so
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// the transaction list shows the final result rather than confusing
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// intermediate hops. We preserve the original tx's from/to so the
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// user sees their own address, not a router or Permit2 contract.
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for (const tt of ttJson.items || []) {
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const parsed = parseTokenTransfer(tt, addrLower);
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const existing = txsByHash.get(parsed.hash);
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if (existing && existing.direction === "contract") {
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// For contract calls (swaps), consolidate into the original
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// tx entry. Prefer the "received" transfer (swap output)
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// for the display amount. If no received transfer exists,
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// fall back to the first "sent" transfer (swap input).
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const isReceived = parsed.direction === "received";
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const needsAmount = !existing.exactValue;
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if (isReceived || needsAmount) {
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existing.value = parsed.value;
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existing.exactValue = parsed.exactValue;
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existing.rawAmount = parsed.rawAmount;
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existing.rawUnit = parsed.rawUnit;
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existing.symbol = parsed.symbol;
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existing.contractAddress = parsed.contractAddress;
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existing.holders = parsed.holders;
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}
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// Keep the original tx's from/to (the user's address and the
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// contract they called), not the token transfer's from/to
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// which may be a router or Permit2 contract.
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continue;
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}
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// Non-contract token transfers get their own entries.
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const ttKey = parsed.hash + ":" + (parsed.contractAddress || "");
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txsByHash.set(ttKey, parsed);
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}
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const txs = [...txsByHash.values()];
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txs.sort((a, b) => b.blockNumber - a.blockNumber);
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const result = txs.slice(0, count);
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log.debugf("fetchRecentTransactions done, count:", result.length);
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return result;
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@@ -265,4 +302,8 @@ function filterTransactions(txs, filters = {}) {
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return { transactions: filtered, newFraudContracts: newFraud };
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}
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module.exports = { fetchRecentTransactions, filterTransactions };
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module.exports = {
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fetchRecentTransactions,
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filterTransactions,
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mergeTransactions,
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};
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@@ -36,6 +36,7 @@ global.chrome = { storage: { local: {} } };
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const {
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fetchRecentTransactions,
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filterTransactions,
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mergeTransactions,
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} = require("../src/shared/transactions");
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const { KNOWN_SYMBOLS } = require("../src/shared/tokenList");
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const { debugFetch } = require("../src/shared/log");
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@@ -685,6 +686,339 @@ describe("legitimate transactions are never filtered", () => {
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});
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});
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// ---------------------------------------------------------------------------
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// mergeTransactions is the pure core of the merge: it takes parsed native
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// entries and parsed token transfers and decides how many rows one on-chain
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// transaction becomes. One transaction is one row per distinct value
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// movement, so the native side of a plain ERC-20 transfer must not survive
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// next to its token row (the duplicate-row bug), while a hash that really
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// did move several things must keep a row for each.
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// ---------------------------------------------------------------------------
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// A native entry as parseTx produces it for a decoded contract call: the
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// amount fields are blanked and direction is "contract".
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function contractCallTx(overrides = {}) {
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return nativeTx({
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from: VICTIM,
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to: USDC_CONTRACT,
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value: "",
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exactValue: "",
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rawAmount: "",
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rawUnit: "",
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valueGwei: 0,
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direction: "contract",
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directionLabel: "Approve",
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isContractCall: true,
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method: "approve",
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...overrides,
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});
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}
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// The native entry parseTx produces for a plain ERC-20 transfer: sent to the
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// token contract, no ETH, and method "transfer", which is exactly why it is
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// not marked as a display-level contract call.
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function erc20CallTx(overrides = {}) {
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return nativeTx({
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from: VICTIM,
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to: USDC_CONTRACT,
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value: "0.0000",
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exactValue: "0.0",
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rawAmount: "0",
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valueGwei: 0,
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direction: "sent",
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directionLabel: "Sent",
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isContractCall: true,
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method: "transfer",
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...overrides,
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});
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}
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describe("mergeTransactions: one row per value movement", () => {
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const HASH = "0x" + "d".repeat(64);
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const OTHER_HASH = "0x" + "e".repeat(64);
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const ROUTER = "0x3fc91a3afd70395cd496c647d5a6cc9d4b2b7fad";
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test("a plain ERC-20 transfer yields one row, the token row", () => {
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const native = erc20CallTx({ hash: HASH });
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const token = tokenTx({
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hash: HASH,
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from: VICTIM,
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to: ORDINARY_PEER,
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direction: "sent",
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directionLabel: "Sent",
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});
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const merged = mergeTransactions([native], [token]);
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expect(merged).toHaveLength(1);
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expect(merged[0].symbol).toBe("USDC");
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expect(merged[0].exactValue).toBe("1500.5");
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expect(merged[0].contractAddress).toBe(USDC_CONTRACT);
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});
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test("an ETH-only transfer keeps its row unchanged", () => {
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const merged = mergeTransactions([legitimateEthSend()], []);
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expect(merged).toHaveLength(1);
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expect(merged[0]).toEqual(legitimateEthSend());
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});
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test("a genuine zero-value native transaction is still displayed", () => {
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const zero = nativeTx({
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hash: HASH,
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from: VICTIM,
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to: ORDINARY_PEER,
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value: "0.0000",
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exactValue: "0.0",
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rawAmount: "0",
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valueGwei: 0,
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direction: "sent",
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directionLabel: "Sent",
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});
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const merged = mergeTransactions([zero], []);
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expect(merged).toEqual([zero]);
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});
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test("a zero-value native row is only absorbed by a transfer sharing its hash", () => {
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const zero = erc20CallTx({ hash: HASH });
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const unrelated = tokenTx({ hash: OTHER_HASH });
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const merged = mergeTransactions([zero], [unrelated]);
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expect(merged).toHaveLength(2);
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expect(merged.map((t) => t.hash).sort()).toEqual(
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[HASH, OTHER_HASH].sort(),
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);
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});
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test("a native transaction that moved ETH keeps its row beside the token row", () => {
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// An undecoded call (no method name) carrying ETH that also emitted
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// a token transfer: two real movements, so two rows.
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const native = nativeTx({
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hash: HASH,
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from: VICTIM,
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to: ROUTER,
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value: "0.2500",
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exactValue: "0.25",
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rawAmount: "250000000000000000",
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valueGwei: 250000000,
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direction: "sent",
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directionLabel: "Sent",
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isContractCall: true,
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});
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const token = tokenTx({ hash: HASH, from: ROUTER, to: VICTIM });
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const merged = mergeTransactions([native], [token]);
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expect(merged).toHaveLength(2);
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expect(merged.map((t) => t.symbol).sort()).toEqual(["ETH", "USDC"]);
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});
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test("a sub-gwei ETH movement keeps its row beside the token row", () => {
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// 500000000 wei is 0.5 gwei, so parseTx's valueGwei floors to 0 while
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// rawAmount stays nonzero. Deciding "moved no ETH" on valueGwei would
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// delete this row and lose a real ETH movement, so the decision is made
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// on rawAmount as a BigInt.
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const native = nativeTx({
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hash: HASH,
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from: VICTIM,
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to: ROUTER,
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value: "0.0000",
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exactValue: "0.0000000005",
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rawAmount: "500000000",
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valueGwei: 0,
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direction: "sent",
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directionLabel: "Sent",
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isContractCall: true,
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});
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const token = tokenTx({ hash: HASH, from: ROUTER, to: VICTIM });
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const merged = mergeTransactions([native], [token]);
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expect(merged).toHaveLength(2);
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expect(merged.map((t) => t.symbol).sort()).toEqual(["ETH", "USDC"]);
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expect(merged.find((t) => t.symbol === "ETH").rawAmount).toBe(
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"500000000",
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);
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});
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test("a swap consolidates every token leg into one row, preferring the received leg", () => {
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const native = contractCallTx({
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hash: HASH,
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to: ROUTER,
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directionLabel: "Swap",
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method: "execute",
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});
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const sentLeg = tokenTx({
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hash: HASH,
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from: VICTIM,
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to: ROUTER,
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direction: "sent",
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directionLabel: "Sent",
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});
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const receivedLeg = tokenTx({
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hash: HASH,
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from: ROUTER,
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to: VICTIM,
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value: "0.2500",
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exactValue: "0.25",
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rawAmount: "250000000000000000",
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rawUnit: "WETH base units (10^-18)",
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symbol: "WETH",
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contractAddress: WETH_CONTRACT,
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holders: 850000,
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});
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const merged = mergeTransactions([native], [sentLeg, receivedLeg]);
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expect(merged).toHaveLength(1);
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expect(merged[0].symbol).toBe("WETH");
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expect(merged[0].exactValue).toBe("0.25");
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// The user's own address and the contract called are preserved.
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expect(merged[0].from).toBe(VICTIM);
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expect(merged[0].to).toBe(ROUTER);
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expect(merged[0].directionLabel).toBe("Swap");
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});
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test("a swap whose legs are all sent takes its amount from the first sent leg", () => {
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const native = contractCallTx({
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hash: HASH,
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to: ROUTER,
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directionLabel: "Swap",
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method: "execute",
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});
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const firstSent = tokenTx({
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hash: HASH,
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from: VICTIM,
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to: ROUTER,
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direction: "sent",
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directionLabel: "Sent",
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});
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const secondSent = tokenTx({
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hash: HASH,
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from: VICTIM,
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to: ROUTER,
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value: "0.2500",
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exactValue: "0.25",
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rawAmount: "250000000000000000",
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rawUnit: "WETH base units (10^-18)",
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symbol: "WETH",
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contractAddress: WETH_CONTRACT,
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holders: 850000,
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direction: "sent",
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directionLabel: "Sent",
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});
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const merged = mergeTransactions([native], [firstSent, secondSent]);
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expect(merged).toHaveLength(1);
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// With no received leg the display amount comes from the first sent
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// leg, and a later sent leg does not overwrite it.
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expect(merged[0].symbol).toBe("USDC");
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expect(merged[0].exactValue).toBe("1500.5");
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expect(merged[0].contractAddress).toBe(USDC_CONTRACT);
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expect(merged[0].holders).toBe(3500000);
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});
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test("a contract call carrying ETH plus a token transfer stays one row", () => {
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const native = contractCallTx({
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hash: HASH,
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to: ROUTER,
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directionLabel: "Swap",
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method: "swapExactETHForTokens",
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valueGwei: 250000000,
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});
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const received = tokenTx({ hash: HASH, from: ROUTER, to: VICTIM });
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const merged = mergeTransactions([native], [received]);
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expect(merged).toHaveLength(1);
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expect(merged[0].symbol).toBe("USDC");
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expect(merged[0].exactValue).toBe("1500.5");
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// The ETH leg is still visible as the row's native quantity.
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expect(merged[0].valueGwei).toBe(250000000);
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});
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test("an approve keeps its row and survives the filters", () => {
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const approve = contractCallTx({ hash: HASH });
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const merged = mergeTransactions([approve], []);
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expect(merged).toEqual([approve]);
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expect(filterTransactions(merged, filters()).transactions).toEqual([
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approve,
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]);
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});
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test("a contract creation keeps its row", () => {
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const creation = nativeTx({
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hash: HASH,
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from: VICTIM,
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to: "",
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value: "0.0000",
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exactValue: "0.0",
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rawAmount: "0",
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valueGwei: 0,
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direction: "sent",
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directionLabel: "Sent",
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});
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expect(mergeTransactions([creation], [])).toEqual([creation]);
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});
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test("a native self-send keeps its single row", () => {
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const selfSend = nativeTx({
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hash: HASH,
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from: VICTIM,
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to: VICTIM,
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direction: "sent",
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directionLabel: "Sent",
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});
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|
||||
expect(mergeTransactions([selfSend], [])).toEqual([selfSend]);
|
||||
});
|
||||
|
||||
test("a token self-send yields one row", () => {
|
||||
const native = erc20CallTx({ hash: HASH });
|
||||
const token = tokenTx({
|
||||
hash: HASH,
|
||||
from: VICTIM,
|
||||
to: VICTIM,
|
||||
direction: "sent",
|
||||
directionLabel: "Sent",
|
||||
});
|
||||
|
||||
const merged = mergeTransactions([native], [token]);
|
||||
expect(merged).toHaveLength(1);
|
||||
expect(merged[0].symbol).toBe("USDC");
|
||||
expect(merged[0].from).toBe(VICTIM);
|
||||
expect(merged[0].to).toBe(VICTIM);
|
||||
});
|
||||
|
||||
test("several distinct tokens moved by one ERC-20 call keep a row each", () => {
|
||||
const native = erc20CallTx({ hash: HASH });
|
||||
const usdc = tokenTx({ hash: HASH });
|
||||
const weth = tokenTx({
|
||||
hash: HASH,
|
||||
symbol: "WETH",
|
||||
contractAddress: WETH_CONTRACT,
|
||||
holders: 850000,
|
||||
});
|
||||
|
||||
const merged = mergeTransactions([native], [usdc, weth]);
|
||||
expect(merged.map((t) => t.symbol).sort()).toEqual(["USDC", "WETH"]);
|
||||
});
|
||||
|
||||
test("rows are sorted by block number, newest first", () => {
|
||||
const older = nativeTx({ hash: HASH, blockNumber: 21000000 });
|
||||
const newer = nativeTx({ hash: OTHER_HASH, blockNumber: 21000010 });
|
||||
|
||||
const merged = mergeTransactions([older, newer], []);
|
||||
expect(merged.map((t) => t.blockNumber)).toEqual([21000010, 21000000]);
|
||||
});
|
||||
|
||||
test("the entries handed in are never mutated", () => {
|
||||
const native = contractCallTx({ hash: HASH, method: "execute" });
|
||||
const token = tokenTx({ hash: HASH });
|
||||
const before = JSON.stringify([native, token]);
|
||||
|
||||
mergeTransactions([native], [token]);
|
||||
expect(JSON.stringify([native, token])).toBe(before);
|
||||
});
|
||||
});
|
||||
|
||||
// ---------------------------------------------------------------------------
|
||||
// fetchRecentTransactions owns the per-address merge of normal transactions
|
||||
// with ERC-20 transfers. (The cross-address merge Home performs lives in
|
||||
@@ -886,13 +1220,12 @@ describe("fetchRecentTransactions merge and dedup", () => {
|
||||
expect(txs.map((t) => t.symbol).sort()).toEqual(["USDC", "WETH"]);
|
||||
});
|
||||
|
||||
// Documents current behaviour: for a plain ERC-20 transfer the method is
|
||||
// "transfer", so parseTx does not mark the entry as a contract call in
|
||||
// the display sense and the merge loop does not consolidate the token
|
||||
// transfer into it. The result is two entries for one transaction: a
|
||||
// zero-value native row and the real token row. The zero-value row also
|
||||
// escapes dust filtering because isContractCall is true.
|
||||
test("current behaviour: a plain ERC-20 transfer produces two entries", async () => {
|
||||
// Regression guard for the duplicate-row bug: for a plain ERC-20
|
||||
// transfer the method is "transfer", so parseTx does not mark the entry
|
||||
// as a contract call in the display sense. The native side of that
|
||||
// transaction moved no ETH and is represented by the token row, so it
|
||||
// must not survive the merge as a second, zero-value row.
|
||||
test("a plain ERC-20 transfer produces exactly one entry", async () => {
|
||||
const hash = "0x" + "5".repeat(64);
|
||||
respondWith(
|
||||
[
|
||||
@@ -925,14 +1258,15 @@ describe("fetchRecentTransactions merge and dedup", () => {
|
||||
);
|
||||
|
||||
const txs = await fetchRecentTransactions(VICTIM, BLOCKSCOUT);
|
||||
expect(txs).toHaveLength(2);
|
||||
expect(txs.map((t) => t.symbol).sort()).toEqual(["ETH", "USDC"]);
|
||||
const nativeRow = txs.find((t) => t.symbol === "ETH");
|
||||
expect(nativeRow.exactValue).toBe("0.0");
|
||||
expect(nativeRow.isContractCall).toBe(true);
|
||||
// And the zero-value row is not removed by the dust filter.
|
||||
expect(txs).toHaveLength(1);
|
||||
expect(txs[0].symbol).toBe("USDC");
|
||||
expect(txs[0].exactValue).toBe("1.0");
|
||||
expect(txs[0].direction).toBe("sent");
|
||||
expect(txs[0].contractAddress).toBe(USDC_CONTRACT);
|
||||
// The surviving row is the token row, and the filters keep it.
|
||||
const kept = filterTransactions(txs, filters()).transactions;
|
||||
expect(kept).toHaveLength(2);
|
||||
expect(kept).toHaveLength(1);
|
||||
expect(kept[0].symbol).toBe("USDC");
|
||||
});
|
||||
|
||||
test("entries are sorted by block number descending and capped at count", async () => {
|
||||
|
||||
Reference in New Issue
Block a user