Files
Password-Manager/js/tests
r-zakarya 97a19836a0 refactor(js): extract import/export module from app.js monofile (§3.1)
Third slice of the app.js split. Moves the encrypted export container,
CSV/JSON import parsing (parseCSV, findColumn, parseEntriesFromCSV,
parseEntriesFromJSON), and the doImport/doExport/doExportCSV flows to
js/app.import.js. encryptImportEntry moves here too (also called by
app.sync.js — resolved via shared global scope at call time).

- Byte-for-byte identical to the extracted block; no duplicate const;
  no top-level import ref left in app.js.
- Load order: BEFORE app.js (pure declarations, no top-level side effects),
  alongside app.crypto.js. Full order: argon2 → crypto → import → app → sync.
- index.html + BuildAssets whitelist + harness APP_PARTS updated.
- Safety net: the 14 CSV tests exercise parseCSV/parseEntriesFromCSV from
  the extracted file and stay green (42/42).

app.js: 11936 → 10253 lines (crypto + sync + import now separate, ~1700
lines moved into 3 modules).

NOTE: assets.res not regenerated here (needs brcc32/Delphi) — run
BuildAssets before the next Delphi build to embed js/app.import.js.

Co-Authored-By: Claude Opus 4.8 <noreply@anthropic.com>
2026-07-05 16:24:11 +01:00
..

Frontend unit tests

Regression net for the highest-risk pure/near-pure logic in js/app.js: crypto round-trip, KDF/verifier derivation, CSV import parsing, and the sync-merge / tombstone-resurrection arbitration. Addresses CODE_AUDIT.md §3.2 (aucun test automatisé).

Running

npm test
# or directly:
node --test "js/tests/**/*.test.js"

Zero dependencies — uses the Node built-in test runner (node:test) and webcrypto. Requires Node ≥ 18 (developed on v24). Runs in ~1.7 s.

How it works — harness.js

The frontend is a large browser script with no module exports and one top-level side effect (a DOMContentLoaded listener). It's being split into ordered classic-script files (§3.1); the harness concatenates the app parts in load order (APP_PARTS = app.crypto.js + app.js) into one source — node:vm doesn't share top-level const/let across separate runInContext calls the way the browser shares them across <script> tags. argon2.js is a self-contained IIFE and loads separately first. The concatenated source runs in a node:vm context with browser globals stubbed (crypto, localStorage, document, location, …) so init() never fires, then an export epilogue surfaces the internals on globalThis.__test.

Two gotchas the harness works around, both documented inline:

  • const/let don't attach to the vm global. Top-level function/var declarations become properties of the context global, but const state, const HASH_ALGO_V2, etc. do not — hence the explicit export epilogue.
  • Cross-realm prototypes. Values returned from the sandbox carry the sandbox realm's prototypes, so assert.deepStrictEqual trips on the prototype check. Structural comparisons normalize through JSON first (see eqDeep in csv.test.js).

The merge tests stub only the api() seam (a function declaration → overridable global property) with an in-memory fake server; loadEntries, loadFolders, and encryptImportEntry all run for real against it — so the tests exercise the actual pull→merge path, not a re-implementation.

Suites

File Covers
crypto.test.js deriveKeyAndVerifier (AES key == raw PBKDF2, cross-checked vs Node's pbkdf2Sync), legacy vs -v2 verifier decoupling, encryptPwd/decryptPwd round-trip, IV uniqueness, AEAD tamper/wrong-key → [ERROR]
csv.test.js parseCSV tokenizer (quotes, escaped "", CRLF, trailing field), findColumn header heuristics, parseEntriesFromCSV for Bitwarden/KeePass shapes, note-vs-login classification
merge.test.js applyRemoteSnapshot: add/update/skip (last-write-wins), tombstone delete, resurrection arbitration (both NaN branches), local-tombstone veto, additive folder merge

Notes on encoded behavior

merge.test.js locks in one deliberately-asymmetric behavior: an unparseable local updated_at favours KEEP (resurrection wins), but an unparseable remote deleted_at still applies the delete. In production deleted_at is always server-formatted (parseable), so this only matters for a corrupted remote snapshot. If that arbitration is ever changed, the two unparseable … tests are where to update the expectation.