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Testing Guide

This page covers how to run, understand, and extend the test suite.

10 modules, 400 tests. No network access anywhere. Most modules build synthetic fixtures in a temp directory; the three that read the working tree skip cleanly when the data they need is absent.

Running tests

Run the full suite:

python -m unittest discover tests -v

Run a single module:

python -m unittest tests.test_e2e -v
python -m unittest tests.test_install -v
python -m unittest tests.test_provenance -v
python -m unittest tests.test_mame_parser -v
python -m unittest tests.test_hash_merge -v
python -m unittest tests.test_fbneo_parser -v
python -m unittest tests.test_profile_refs -v
python -m unittest tests.test_pack_integrity -v
python -m unittest tests.test_torrentzip -v
python -m unittest tests.test_no_case_collisions -v

The only dependency is pyyaml. No test framework beyond the standard library unittest module.

Modules at a glance

Module Tests Fixtures What it covers
test_e2e.py 217 synthetic resolution, verification, packs, cross-reference, targets, truth
test_install.py 70 synthetic install.py detection, config parsing, manifest handling
test_provenance.py 29 synthetic Logiqx/Redump parsing, DAT import, provenance join, coverage report
test_mame_parser.py 22 inline C BIOS root sets, ROM blocks, macro expansion
test_hash_merge.py 17 synthetic YAML hash merge, diff, formatting preservation
test_fbneo_parser.py 16 inline C BDF_BOARDROM sets, ROM info parsing
test_profile_refs.py 12 synthetic check_profile_refs pure functions, no network
test_pack_integrity.py 8 real packs extract each ZIP, verify paths and hashes
test_torrentzip.py 8 real romsets TorrentZip builder byte-for-byte
test_no_case_collisions.py 1 real bios/ no case-colliding paths on Windows/macOS clones

Test architecture

test_e2e.py

The main regression suite. A single TestE2E class exercises every code path through the resolution, verification, pack generation, and cross-reference logic.

Fixture pattern. setUp creates a temporary directory tree with:

  • Fake BIOS files (deterministic content for hash computation)
  • Platform YAML configs (existence mode, MD5 mode, inheritance, shared groups)
  • Emulator profile YAMLs (required/optional files, aliases, HLE, standalone)
  • A synthetic database.json keyed by SHA1

tearDown removes the temporary tree.

Test numbering. Tests are grouped by category:

Range Category
test_01--test_14 File resolution (SHA1, MD5, name, alias, truncated MD5, composite, zip contents, variants, hash mismatch)
test_20--test_31 Verification (existence mode, MD5 mode, required/optional severity, zipped file, multi-hash)
test_40--test_51 Cross-reference and platform grouping (undeclared files, standalone skip, alias profiles, data dir suppression, exclusion notes)
test_60--test_61 Storage tiers (external, user-provided)
test_70--test_84 Emulator-level validation (index build, size, CRC32, MD5, SHA1, crypto)
test_90--test_125 Per-emulator and per-system verification, dest_hint resolution, registry metadata
test_130--test_183 Pack generation (required-only, split, --from-md5, path conflicts, archive extras, truth generation, exporters)
test_200--test_227 Pack source variants, deterministic ZIPs, SHA256/CRC32 resolution, MiSTer scraper, manifests

Numbers are stable anchors, not an execution order. When a range fills up, a letter suffix keeps a new test next to the behavior it covers (test_130b_existence_pack_reports_hash_mismatch).

Each test calls the same functions that verify.py and generate_pack.py use in production, against the synthetic fixtures.

Parser tests

test_mame_parser. Tests the MAME C source parser that extracts BIOS root sets from driver files. Fixtures are inline C source snippets containing ROM_START, ROM_LOAD, GAME()/COMP() macros with MACHINE_IS_BIOS_ROOT. Tests cover:

  • Standard GAME macro detection
  • COMP macro detection
  • ROM_LOAD / ROMX_LOAD parsing (name, size, CRC32, SHA1)
  • ROM_SYSTEM_BIOS variant extraction
  • Multi-region ROM blocks
  • Macro expansion and edge cases

test_fbneo_parser. Tests the FBNeo C source parser that identifies BDF_BOARDROM sets. Same inline fixture approach.

test_hash_merge. Tests the text-based YAML patching module used to merge upstream BIOS hashes into emulator profiles. Covers:

  • Merge operations (add new hashes, update existing)
  • Diff computation (detect what changed)
  • Formatting preservation (comments, ordering, flow style)

Fixtures are programmatically generated YAML/JSON files written to a temp directory.

Provenance and installer tests

test_provenance. Covers the dump-catalog pipeline end to end on synthetic DATs: the Logiqx XML parser, the Redump scraper's parsing path, the DAT pack importer, the SHA1-then-MD5+size join performed by generate_db.py, and the coverage report's covered/uncovered DAT accounting.

test_install. Covers install.py without touching the network: OS detection, each registry detection method (config_file, path_exists, file_exists), config-file key parsing, manifest loading, target filtering, and destination resolution.

test_profile_refs. Covers the pure functions of check_profile_refs (anchor matching, line-window search, hash extraction). The GitHub fetching path is not exercised, so the module runs offline.

Tests that read the working tree

Three modules assert on real repository data instead of fixtures. Each skips when its input is missing, so a partial checkout still runs green.

test_torrentzip. Rebuilds real MAME romsets through the TorrentZip builder and asserts the output is byte-identical, which is what keeps arcade ZIP hashes stable across rebuilds.

test_no_case_collisions. Walks bios/ and fails on two paths that differ only by case. On Windows and macOS, git can only check out one of them, which silently corrupts the clone. .variants/ is exempt: those names are disambiguated by a hash suffix on purpose.

test_pack_integrity. Described below; needs packs in dist/.

How to add a test

  1. Pick the right category. Find the number range that matches the subsystem you are testing. If none fits, start a new range after the last existing one.

  2. Create synthetic fixtures. Write the minimum YAML configs and fake files needed to isolate the behavior. Use tempfile.mkdtemp for a clean workspace. Avoid depending on the repo's real bios/ or platforms/ directories.

  3. Call production functions. Import from common, verify, validation, or truth and call the same entry points that the CLI scripts use. Do not re-implement logic in tests.

  4. Assert specific outcomes. Check Status, Severity, resolution method, file counts, or pack contents. Avoid brittle assertions on log output or formatting.

  5. Run the full suite. After adding your test, run python -m unittest discover tests -v to verify nothing else broke.

Example skeleton:

def test_42_my_new_behavior(self):
    # Write minimal fixtures to self.root
    profile = {"emulator": "test_core", "files": [...]}
    with open(os.path.join(self.emulators_dir, "test_core.yml"), "w") as f:
        yaml.dump(profile, f)

    # Call production code
    result = verify_platform(self.config, self.db, ...)

    # Assert specific outcomes
    self.assertEqual(result[0]["status"], Status.OK)

test_pack_integrity.py

End-to-end pack verification. Extracts each platform ZIP to tmp/ (in the repo, not /tmp which is tmpfs on WSL) and verifies that every file declared in the platform YAML:

  1. Exists at the correct path on disk after extraction
  2. Has the correct hash per the platform's native verification mode

Handles inner ZIP verification for MAME/FBNeo ROM sets (checkInsideZip, md5_composite, inner ROM MD5) and path collision deduplication.

8 tests (one per active platform): RetroArch, Batocera, BizHawk, EmuDeck, Recalbox, RetroBat, RetroDECK, RomM.

python -m unittest tests.test_pack_integrity -v
# or via CLI:
python scripts/generate_pack.py --all --verify-packs --output-dir dist/

Integrated as pipeline step 6/8 (runs after consistency check, before README generation). Requires packs in dist/ — skip with --skip-packs.

Verification discipline

The test suite is one layer of verification. The full quality gate is:

  1. All unit tests pass (python -m unittest discover tests)
  2. The full pipeline completes without error (python scripts/pipeline.py --offline)
  3. No unexpected CRITICAL entries in the verify output
  4. Pack file counts match verification file counts (consistency check)
  5. Pack integrity passes (every declared file extractable with correct hash)

If a change passes tests but breaks the pipeline, it's worth investigating before merging. Similarly, new CRITICAL entries in the verify output after a change usually indicate something to look into. The pipeline is designed so that all steps agree: if verify reports N files for a platform, the pack should contain exactly N files.

Ideally, tests, code, and documentation ship together. When profiles and platform configs are involved, updating them in the same change helps keep everything in sync.

CI integration

The validate.yml workflow runs test_e2e on every pull request that touches bios/ or platforms/ files. The test job (run-tests) runs in parallel with BIOS validation, schema validation, and auto-labeling. build.yml runs the same module before building release packs.

CI runs test_e2e only, not the whole suite: the other modules either need build artifacts (test_pack_integrity needs packs in dist/) or duplicate work the workflow already does. Run python -m unittest discover tests locally before pushing.

Tests must pass before merge. If a test fails in CI, reproduce locally with:

python -m unittest tests.test_e2e -v 2>&1 | head -50