* test(#2724): delete golden-install-parity fixtures, test, and generator Removes the 19 committed path->hash manifests, the two per-file size baselines, tests/golden-install-parity.test.cjs, and scripts/gen-golden-install-parity-zcode.cjs. These were pure functions of the source tree (ADR-2719); the differential attribution check (tests/emitted-attribution.test.cjs + tests/emitted-provenance.test.cjs) is now the sole gate for emitted-artifact propagation. tests/fixtures/install-tree/*.json and tests/golden-install-tree.test.cjs are unchanged (ADR-2719 section 7 exception). Follow-up commits fix the resulting bookkeeping: scripts/ci-test-scope.cjs's existence guard, .gitattributes, package.json scripts, the emitted-provenance totality guard's IO, the differential check's baseline acquisition, CI wiring to publish/restore the baseline artifact, and docs. * refactor(#2724): make the differential attribution check self-sufficient Three fixes required to delete the golden fixtures without breaking CI: - scripts/ci-test-scope.cjs: remove tests/golden-install-parity.test.cjs from the three rules that named it. #2759's missingRuleTestFiles guard hard-throws at module load if a rule names a test file absent from disk, which would break the changes job on every PR the moment the fixture-deletion commit landed. - tests/helpers/emitted-provenance.cjs: loadManifests() read the committed golden fixture directory. With that directory deleted at every future ref, this would throw at module load forever, taking the Phase 2 totality guard down with it. Rebuilt from real installer spawns (MANIFEST_FAMILIES + runMinimalInstall + buildParityManifest), the same shape emitted-runtime.cjs's currentManifests() already uses. - tests/emitted-attribution.test.cjs / tests/helpers/emitted-runtime.cjs: the real-tree test's baseline acquisition swaps from baselineManifestsAtRef(base) (git show at a ref that no longer carries fixtures) to resolveBaseline()'s documented precedence: env, then the on-disk cache, then an in-job build. The build fallback (buildBaselineAtRef, new) checks out base into a throwaway git worktree and runs the new scripts/gen-emitted-baseline.cjs there -- no npm ci needed, since bin/install.js and the test helper shells are Node-builtins-only. That script also publishes the baseline artifact from CI's push-to-next job (wired in a follow-up commit). * refactor(#2724): retire the merge-driver bridge and per-file size baselines The Phase 1 bridge (#2721) is retired now that the artifacts it guarded are deleted: scripts/git-merge-regen-driver.cjs, its test, and the 'setup:merge-driver' npm script are removed, and the .gitattributes merge=gsd-regen/linguist-generated block for the three deleted-path globs is dropped. tests/fixtures/install-tree/*.json keeps its normal merge behavior, unchanged (ADR-2719 section 7). scripts/update-size-baseline.cjs and its test are removed: their sole purpose was regenerating tests/workflow-size-baseline.json and tests/agent-size-baseline.json, both deleted. The 'size:baseline' npm script and its step in 'regen:derived' go with it. The per-file baseline describe blocks in tests/workflow-size-budget.test.cjs and tests/agent-size-budget.test.cjs are removed for the same reason; the independent loose-tier hard caps are untouched. The differential attribution check's size ratchet (tests/emitted-diff.cjs, already shipped in #2723) is the replacement anti-creep mechanism. 'npm run gen:golden' is replaced by 'npm run gen:install-tree', which keeps regenerating tests/fixtures/install-tree/*.json (the one artifact family ADR-2719 section 7 keeps committed); tests/golden-install-tree.test.cjs's error messages point at the new command name. tests/golden-parity-single-source.test.cjs's anti-divergence guard (#2266) is retargeted from the two deleted golden-parity consumers to their two replacements (tests/helpers/emitted-runtime.cjs and tests/helpers/emitted-provenance.cjs), which import buildParityManifest the same way — the divergence risk the guard exists for is unchanged. Also wires CI: a new publish-emitted-baseline job runs scripts/gen-emitted-baseline.cjs after a push to next and caches the result keyed on the sha; the test and test-full jobs restore that cache on pull_request events, keyed on the PR's base sha, and export GSD_EMITTED_BASELINE for tests/emitted-attribution.test.cjs's real-tree test to pick up. * docs(#2724): flip ADR-2719 to Accepted and update contributor docs Status: Proposed -> Accepted. Regenerated docs/adr/README.md index. CONTRIBUTING.md, docs/TESTING-SUITES.md, and CONTEXT.md (RULESET. EMITTED_ATTRIBUTION, RULESET.WORKFLOW_SIZE_BUDGET, RULESET. AGENT_SIZE_BUDGET, and the Emitted Artifact Provenance glossary entry) no longer point at the deleted golden-install-parity fixtures, size baselines, gen:golden, UPDATE_GOLDEN, or the setup:merge-driver / git-merge-regen-driver.cjs bridge. Editing shipped content now requires zero manual fixture regeneration, documented against the differential attribution check instead of the deleted commands. * docs(#2724): add changeset for removed golden-parity commands * fix(#2724): drop stale scripts/update-size-baseline.cjs glossary ref check-glossary-refs.cjs verifies every backtick-wrapped scripts/*.cjs token in CONTEXT.md resolves to a real file. The RULESET. EMITTED_ATTRIBUTION rewrite named the deleted script inside backticks, which the checker reads as a live reference, not historical prose. * test(#2724): retarget ci-test-scope tests off the deleted golden test tests/ci-test-scope.test.cjs asserted specific RULES entries select tests/golden-install-parity.test.cjs, and that every rule selecting it also selects both emitted gates. Both premises broke when the golden test was deleted (#2724): the deleted filename never re-appears in targeted_tests, and there was no longer a third file for the gates to travel alongside. Retargeted the two selection describe blocks to assert tests/emitted-provenance.test.cjs directly (the drift guard the golden gate's rules were retargeted to), and simplified the third block to assert the two emitted gates always travel together, without reference to the golden filename. * docs(#2724): repoint two contributor how-to guides at the differential check Both guides told contributors to regenerate a baseline against tests/golden-install-parity.test.cjs, which #2724 deletes. Repointed at the differential attribution check (tests/emitted-attribution.test.cjs, ADR-2719), which needs no manual regeneration step. * fix(#2724): repair phase6-capstone-conformance's deleted-baseline read An independent orthogonal review caught a real regression this branch introduced into a test file the branch's diff never touched: tests/phase6-capstone-conformance.test.cjs read tests/workflow-size-baseline.json (deleted earlier in this branch) with no fallback, so the whole suite would throw ENOENT the moment this branch landed. The test's actual intent — prove the host-loop workflow files are real, tracked, non-empty docs — is preserved by asserting the live byte count via the same shared counter (scripts/workflow-size.cjs) the size guards already use, instead of a committed snapshot. Also, from the same review: a stale doc comment in scripts/workflow-size.cjs still named the deleted scripts/update-size-baseline.cjs as a consumer, and buildBaselineAtRef's cleanup in tests/helpers/emitted-runtime.cjs left two fs.rmSync calls unguarded against masking the primary result/error, inconsistent with the try/catch already wrapping the git cleanup beside them. Both fixed. A doc comment was added to baselineFamilyNamesAtRef explaining why it (and its siblings) are kept despite having no production caller post-cutover — they still answer real questions about refs that predate the cutover. * fix(#2724): repair three real regressions found by remote verification 1. tests/emitted-provenance.test.cjs's two hostile-input tests (non-object manifest, unreadable fixture) drove loadManifests(tmp) and monkeypatched fs.readFileSync, both premised on the deleted fixture-directory read this branch already replaced with real installer spawns -- the negative assertions silently stopped firing. loadManifests() now accepts injected {families, install, build, clean} (defaulting to production values), giving the tests a real seam to drive a bad build result and a build failure through the ACTUAL loader instead of a reimplementation, and added coverage that clean() still runs on both paths. 2. .github/workflows/test.yml's two 'Export GSD_EMITTED_BASELINE' steps hardcoded shell: bash, which is wrong on windows-latest (native pwsh) and on test-full's macos-latest legs (native zsh per that job's own matrix) -- the repo's H1 shell policy (tests/policy-shell-pinning .test.cjs) caught it. Replaced the inline bash script with scripts/ci-export-emitted-baseline-env.cjs, a plain Node script: a bare 'node <path>' command line has no shell-specific syntax, so it runs correctly under bash, zsh, and pwsh without a shell override. tests/phase6-capstone-conformance.test.cjs's deleted-baseline read (caught by the same remote run, at a commit prior to this one) was already fixed in d0c3b1242 and is not touched here; verified still passing after these changes. * fix(#2724): revive ADR-1610's new-file size cap inside the differential An isolated review caught a real regression: deleting tests/workflow-size-baseline.json silently dropped NEW_FILE_CAP (ADR-1610 Decision point 3, the Codex project_doc_max_bytes anchor) with no successor. tests/helpers/emitted-diff.cjs's size ratchet already 'continue's past any file absent from sizeBaseline -- exactly the files this cap exists to bound -- so a brand-new workflow file sized 32,769-40,960 bytes passed CI clean and shipped, then risked silent truncation at the Codex anchor at runtime. ADR-1610 is Accepted and never referenced anywhere in this branch. Fix: NEW_FILE_CAP=32768 revived inside emitted-diff.cjs's own size-ratchet loop, keyed off the SAME hasOwnProperty(sizeBaseline, name) signal the growth check already computes -- 'new' is exactly 'present in sizeCurrent, absent from sizeBaseline'. Not ack-able, matching the tier hard caps it sits beside: the fix is extraction, not an acknowledgment entry. Documented, disclosed narrowing: the pure differential module cannot see XL_WORKFLOWS/LARGE_WORKFLOWS tiering (tests/workflow-size-budget.test.cjs's classification), so a legitimately large new file must extract rather than tier in, one release earlier than an existing file would need to. ADR-1610 itself is left unamended -- this restores its decision rather than re-litigating it. Also fixes a stale comment plus a redundant real 19-installer-spawn assertion left over from the pre-injection-seam version of tests/emitted-provenance.test.cjs's build-failure test, and annotates 3 of 4 stale golden-fixture citations in docs/reference/host-integration-capability-matrix.md as superseded (the 4th is an accurate historical PR narrative, left alone). * fix(#2724): repair three red CI defects on the golden-fixture cutover Windows-only provenance false attribution (defect A): the `hooks-built` provenance rule attributed `hooks/<name>.cmd` to itself. Those shims are Windows-only installer output (ensureCodexHooksJsonSessionStart / ensureCodexHooksJsonEvent, both in src/runtime-hooks-surface.cts) wrapping the same-named `.js` hook — no `.cmd` file is ever tracked in the repo, so the self-attribution resolved to a path that exists on no platform. Only windows-latest ever emits the key, so this only failed there. Fixed by special-casing `.cmd` inside the SAME `hooks-built` rule (not a dedicated rule) — a dedicated rule would match zero paths, and therefore report as a dead rule, on every non-Windows lane of the same totality guard. `sources` already supported per-match functions; `transforms` is extended to support the same shape so the attribution can vary by match within one rule. Baseline bootstrap was structurally impossible (defect B): `buildBaselineAtRef` ran `scripts/gen-emitted-baseline.cjs` from INSIDE the base-ref worktree, but that script is new in this PR and therefore absent at any base ref that predates it — every call failed closed with "Cannot find module". Fixed by running the PR checkout's own generator against the worktree via a new `--dir` parameter, decoupling "which copy of the script runs" from "which tree it measures" (`currentManifests`/`currentSizes` gained a `repoRoot` override, threaded down to `runMinimalInstall`'s new `installScript` override). This is not just a bootstrap fix: a differential needs ONE measurement schema applied to both sides, or the two stop being comparable the moment that schema evolves — running each side's own copy would silently reintroduce that risk. Verified locally end-to-end against real origin/next: resolves a valid {version, sha, manifests, sizes} artifact with the correct sha and no leaked worktree. Changeset placeholder (defect C): `pr: 0` -> `pr: 2767`, which is what let docs-lint evaluate the fragment for the first time; it already passes (docs/TESTING-SUITES.md and friends already document the removed scripts). Also fixed while in this file: an eslint no-unused-vars warning surfaced by the changed lint run (unused `cleanup` import in tests/emitted-provenance.test.cjs). Added regression coverage for both A and B: a cross-platform spot-check that drives the real hooks-built rule against `.cmd` keys directly (not through a real Windows install), and a real-tree test that drives buildBaselineAtRef against a base ref verified (via git cat-file) to lack the generator, both skipping honestly rather than false-passing when their precondition does not hold. Co-Authored-By: Claude Opus 5 (1M context) <noreply@anthropic.com> Claude-Session: https://claude.ai/code/session_01W5kQs6ZufZDySC6zDJfYP6 * fix(#2724): repair false .cmd byte-provenance and a permanently-skipping regression test Two isolated-review findings on PR #2767: - `hooks-built`'s `.cmd` branch attributed the Windows shim's bytes to the wrapped `hooks/<name>.js` script, asserting a byte-provenance link that does not exist — traced against buildCodexHookWindowsShimIR (src/runtime-hooks-surface.cts), only the script's NAME (a literal in that same file) flows into the .cmd bytes, never its content. Point `sources` at HOOKS_WINDOWS_SHIM_SRC instead, matching the code-derived convention used elsewhere in the table. Since `sources` is checked before `transforms` in the differential, the wrong mapping silently excused any .cmd byte movement caused by editing the wrapped .js file. - The `buildBaselineAtRef` regression test skipped unless a resolvable base ref still lacked scripts/gen-emitted-baseline.cjs — true only until this PR merges, after which every base ref carries the file and the test skips forever with zero ongoing coverage. Rebuilt hermetically: synthesize the missing-generator condition in-place via git plumbing (a throwaway commit, child of HEAD, with just that one file removed from a scratch index), never touching the real working tree, HEAD, or index, and never depending on ambient history or remotes. Co-Authored-By: Claude Opus 5 (1M context) <noreply@anthropic.com> Claude-Session: https://claude.ai/code/session_01W5kQs6ZufZDySC6zDJfYP6 * fix(#2724): tolerate the remote runner's dubious-ownership git mount in the emitted baseline path The runner container mounts the repo at a path owned by a different uid than the process running the suite, so git's dubious-ownership protection refuses every git operation there. GitHub Actions never hits this because actions/checkout registers the workspace as safe automatically; this runner's container does not. buildBaselineAtRef is the production build-fallback the sole remaining emitted gate depends on (resolveBaseline's in-job-build leg), not just a test helper, so the fix is in the shared git() wrapper (emitted-runtime.cjs) that every caller — resolveChangedPaths, resolveBase, buildBaselineAtRef's worktree add/remove/prune, and the hermetic regression test added in the prior commit — funnels through, plus gen-emitted-baseline.cjs's own rev-parse (now reusing that same wrapper instead of a second execFileSync, so the fix has one source of truth). Each call declares -c safe.directory=<the exact directory it already operates on>, never the * wildcard. Audited every other helper on this surface (emitted-diff.cjs, emitted-baseline.cjs, install-shared.cjs) for the same gap: none of them shell out to git at all. Co-Authored-By: Claude Opus 5 (1M context) <noreply@anthropic.com> Claude-Session: https://claude.ai/code/session_01W5kQs6ZufZDySC6zDJfYP6 --------- Co-authored-by: Claude Opus 5 (1M context) <noreply@anthropic.com>
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Testing Suites
This project's tests/ directory uses filename suffix markers to group tests into named suites. The harness scripts/run-tests.cjs filters by suite when given --suite <name>. Without a flag it runs every *.test.cjs file (the historical default — unchanged).
Tracked by issue #3597.
Suites
| Suite | Filename pattern | What goes here |
|---|---|---|
unit |
*.test.cjs (no other marker) |
Default fast lane. Pure logic, no network, no external processes beyond gsd-tools. Most tests live here. |
integration |
*.integration.test.cjs |
Cross-module flows: full installer end-to-end, multi-tool orchestration, anything that crosses two or more bin entry points. |
install |
*.install.test.cjs |
Tests that perform a real install/uninstall against a sandbox project. Slower; PR CI skips these on PRs and runs them on main push only. |
security |
*.security.test.cjs |
Adversarial input, prompt-injection guards, fixture-driven hostile-payload sweeps. |
slow |
*.slow.test.cjs |
Anything that routinely takes >5s wall-clock or holds significant memory. |
all |
(any) | Explicit alias for "no filter". Equivalent to running with no --suite flag. |
How to place a new test
- Pick the most specific bucket above.
- Name the file with the matching suffix:
tests/<feature>.<suite>.test.cjs. - If unsure, leave the suffix off — the file lands in
unit, the default fast lane.
Examples:
tests/agent-frontmatter.test.cjs—unittests/prompt-injection-guards.security.test.cjs—securitytests/installer-end-to-end.install.test.cjs—installtests/sdk-mutation-stress.slow.test.cjs—slow
The suite-suffix convention was chosen over a directory layout (tests/security/) so the 545+ existing test files don't need to move. Existing files all classify as unit until someone explicitly retags them.
Regression tests
Do not create new top-level tests/bug-NNNN-*.test.cjs files. Add the
regression case to the owning module's main test file instead (e.g. a
describe('regressions') block in tests/<module>.test.cjs).
node --test spawns one child process per FILE, so file count — not test
count — is the unit of CI overhead, and it is worst on Windows lanes where
every spawn is Defender-scanned. The 2026-06 CI audit found 244 one-off
bug-* files (~38% of the suite). That population is grandfathered in
scripts/lint-regression-test-names.allowlist.json and enforced by an
identity ratchet (npm run lint:regression-names, part of npm run lint:ci):
- A new
bug-*file fails CI — fold it into the owning module's file. - Deleting/consolidating a grandfathered file requires pruning its allowlist entry, so the baseline only ever shrinks.
- Inherited drift (the failure names files your PR didn't add — e.g. the
base branch merged
bug-*files without feeding the allowlist, or you rebased and carried a pre-rebase allowlist): runnode scripts/lint-regression-test-names.cjs --updateand commit the regenerated allowlist. Snapshot artifacts like this allowlist (anddocs/INVENTORY.md) must be regenerated after rebasing, never carried through a rebase.
The ratchet deliberately covers only bug-*. Files named feat-NNNN-* /
enh-NNNN-* are feature test files — one (or one per suite) per feature is
the sanctioned layout (see the #443 strategy below), not a one-off regression
pattern. If issue-*/perf-* one-offs start accumulating the same way
bug-* did, extend the ratchet's regex and regenerate the allowlist.
Workflow & agent size budget
Tracked by issue #1074. Bytes (not lines) per #717; LF-normalized per #683.
Workflow files (gsd-core/workflows/*.md) and agent files (agents/gsd-*.md)
both ship in the installed runtime and are loaded into context — workflows on
every command, agents on every subagent dispatch — so their byte size is a real
cost. Two sibling guards (tests/workflow-size-budget.test.cjs and
tests/agent-size-budget.test.cjs) keep that cost from creeping up invisibly,
sharing one byte-counter (measureMdFiles). Growth is caught by two independent
layers:
| Layer | What it does | Where |
|---|---|---|
| Differential attribution size ratchet (primary, #2724 / ADR-2719 §4) | The same computed-attribution check that replaced the golden-install-parity fixtures also reports growth in any gsd-core/workflows/*.md or agents/gsd-*.md file, with the exact byte delta, comparing PR HEAD against next. Unacknowledged growth is a hard failure; shrinkage needs no acknowledgment. No committed snapshot — nothing to regenerate by hand. |
tests/emitted-attribution.test.cjs (real-tree test) via tests/helpers/emitted-diff.cjs |
| Loose tier hard caps (backstop) | Absolute outer red lines per tier — workflows: XL ≤ 98304, LARGE ≤ 61440, DEFAULT ≤ 40960 bytes; agents: XL ≤ 57344, LARGE ≤ 49152, DEFAULT ≤ 24576 bytes. A cap is never raised when a file approaches it: crossing it means extract, not bump. Independent of the ratchet above — unaffected by #2724. |
XL/LARGE/DEFAULT_CAP in each guard file |
discuss-phase.md additionally has a thin-dispatcher target of < 32000 bytes
(the discuss-phase progressive-disclosure split, #717). A net-new agent is
DEFAULT-tier and already bounded by the DEFAULT cap — no separate new-agent cap
is needed. (This tier-cap machinery is distinct from the separate 45 KB-char
extraction-evidence threshold on gsd-planner enforced by
tests/planner-decomposition.test.cjs — that one proves mode sections were
extracted; this one bounds total agent bytes.)
How-to: a workflow or agent grew and CI is red
The differential attribution check reports the file and the byte delta. To resolve:
- Justify the growth in your PR (a sentence in the description is enough) — the acknowledgment entry (below) is the review record that the larger size was a deliberate, seen decision, not silent drift.
- Add an acknowledgment entry in
tests/emitted-drift-ack.jsonnaming the file and the reason, perCONTEXT.md's### Emitted Artifact Provenanceentry. This is deliberately a committed file, not a flag — the entry appears in your PR diff, so touching it is the visible signal. - Or shrink it instead of acknowledging. Prefer extraction when the growth
is incidental: for a workflow, move per-mode bodies to
workflows/<name>/modes/, templates toworkflows/<name>/templates/, and shared prose togsd-core/references/; for an agent, lift shared boilerplate intogsd-core/references/and@-reference it — then load it LAZILY. Do not convert them to eager@-required_readingincludes: that shrinks the file's bytes without shrinking loaded context, so it games the guard while making the real cost worse. Seeworkflows/discuss-phase/for the progressive-disclosure pattern.
If a hard cap (not the ratchet) is what failed, an acknowledgment will not help — that is the signal to extract, per step 3.
Reference
| Artifact | Role |
|---|---|
scripts/workflow-size.cjs |
Single source of truth — LF-normalized byte counter (lfByteCount) + generic measureMdFiles(dir, predicate) (backs both workflows and agents) + workflow enumeration (listWorkflowStems, measureWorkflows). Imported by both guards and by tests/helpers/emitted-runtime.cjs's currentSizes() so they can never measure differently. |
tests/emitted-attribution.test.cjs + tests/helpers/emitted-diff.cjs |
The differential attribution check and its size ratchet (ADR-2719). The sole mechanism for both emitted-content propagation AND per-file size growth as of #2724. |
tests/emitted-drift-ack.json |
Committed acknowledgment file for unattributable emitted-content ripples and for size growth. Absent = no acks; its presence is the alarm. |
npm run regen:derived |
Runs every remaining generator in dependency order (build → registry → ADR index → capability matrix → inventory manifest → manifest versions → tests/fixtures/install-tree/*.json). |
tests/workflow-size-budget.test.cjs |
The workflow tier hard-cap guards, plus the discuss-phase progressive-disclosure checks. |
tests/agent-size-budget.test.cjs |
The agent tier hard-cap guards (the agent analog). |
tests/workflow-size-baseline.json, tests/agent-size-baseline.json,
tests/fixtures/golden-install-parity/*.json, scripts/update-size-baseline.cjs
(npm run size:baseline), and scripts/git-merge-regen-driver.cjs
(npm run setup:merge-driver) are all removed by
#2724: they were pure
functions of the source tree, conflicted on every merge that touched them, and
their functions are now served by the differential attribution check above.
tests/fixtures/install-tree/*.json is the one artifact family that stays
committed and normally-merged (ADR-2719 §7) — it conflicts on 0 of 7, its diffs
are readable, and it preserves "the installer stopped shipping X" as a hard
absolute failure with no attribution reasoning involved. Regenerate it with
npm run gen:install-tree (folded into npm run regen:derived).
Running suites locally
npm test # everything (backcompat — same as before)
npm run test:unit # only unit
npm run test:integration # only integration
npm run test:install # only install
npm run test:security # only security
npm run test:slow # only slow
npm run test:coverage # backcompat — coverage over EVERY test
npm run test:coverage:unit # fast coverage signal — only unit suite
npm run test:coverage:all # alias for test:coverage
Direct harness invocation also works:
node scripts/run-tests.cjs --suite security
node scripts/run-tests.cjs --suite=security
node scripts/run-tests.cjs --files "tests/command-contract.test.cjs tests/core.test.cjs"
node scripts/run-tests.cjs --files-from .ci-selected-tests.txt
npm run test:affected (scripts/run-affected-tests.cjs) is a local-only
convenience that selects tests via the require() dependency graph of your
working-tree diff. CI does not use it — CI selection is the rule table in
scripts/ci-test-scope.cjs, which is the authoritative mapping. If the two
disagree, trust (and fix) the rule table.
Unknown suites exit non-zero with the list of valid suites. Empty suites (e.g. --suite security before any security-tagged file exists) exit 0 with a no tests in suite "..." notice on stderr so CI lanes don't go red while a suite is being populated.
CI matrix
The Tests workflow runs every PR through a scoped gate generated by
scripts/ci-test-scope.cjs.
| Lane | Node 22 | Node 24 |
|---|---|---|
ubuntu-latest |
scoped tests | unit + integration + security |
windows-latest |
— | scoped Windows/path/shell tests |
macos-latest |
full parity when required | full parity when required |
- Node 22 is the
engines.nodefloor (>=22.0.0) — must stay green. - Node 24 is the default development lane.
- Scoped tests are selected from the changed paths, plus a small CLI/package smoke set. They are for confidence on the affected surface, not for counting tests.
The default PR gate runs the broad unit (under the c8 coverage gate),
integration, and security suites once on Ubuntu / Node 24, scoped tests on
Ubuntu / Node 22, and scoped tests on Windows / Node 24. "Scoped" means the
diff-selected list from the rule table — not the full suite and not a fixed
smoke set (the fixed smoke list is only the empty-selection fallback). The
Windows lane's list is the Windows-sensitive subset of the selection, plus
every changed test file, unconditionally (the #494 invariant, narrowed): a
modified test is exercised on the divergent OS before merge at per-file cost,
without paying for the three full parity lanes.
PRs touching workflow, package, test-runner, install, release, or
Windows-sensitive surfaces also run the full parity matrix on macOS and the
older Windows runtime, plus install and slow on the primary Ubuntu lane.
Everything (including the full parity matrix) runs on every push to next,
which covers the residual macOS / Windows-Node-22 cross-product for scoped PRs.
Coverage runs inside the Ubuntu / Node 24 full lane (not a separate job — that
duplicated the entire unit run) and stays single-lane because multiplying
coverage across OS/runtime lanes adds cost without improving the threshold
signal. Note the gate's deliberate blind spot: it measures
gsd-core/bin/lib/*.cjs only — scripts/, hooks/, and bin/ are
unenforced, and stryker.config.mjs additionally excludes ~48% of lib lines
from mutation testing (see the UNMUTATED list there). Widening either gate is
tracked work, not an accident to "fix" silently by raising thresholds.
To inspect the scope locally:
npm run ci:test-scope -- --files "commands/gsd/plan-phase.md"
node scripts/ci-test-scope.cjs --base origin/next --head HEAD
Chunk packing and the test timing table
scripts/run-tests.cjs does not hand the whole selected file list to one
node --test process. It packs the files into chunks, each spawned
separately, because Windows caps a command line at 32,767 characters and because
each chunk gets its own 600s timeout (RUN_TESTS_CHUNK_TIMEOUT_MS) and a fresh
process, which bounds memory pressure.
How files are distributed across those chunks decides whether the slowest chunk
sits near that timeout while the others idle. The packer weights each file by its
measured duration, read from tests/test-timings.json, and places files with
LPT (longest-processing-time-first: heaviest file first, each into the currently
lightest chunk). Before #2456 the weight was guessed from the filename, which
mis-ranked files badly enough that the slowest chunk ran ~3.9x the lightest.
Reference
| Knob | Default | Meaning |
|---|---|---|
RUN_TESTS_MAX_FILES_PER_CHUNK |
60 |
Per-chunk weight budget. Weights are normalized so an average-cost file weighs 1, so this still reads as "about 60 average files". |
RUN_TESTS_MAX_CMDLINE_CHARS |
28000 |
argv ceiling per chunk, with headroom under the Windows 32,767 limit. |
RUN_TESTS_TIMINGS_FILE |
tests/test-timings.json |
Path to the timing table. Tests override it to inject a synthetic cost profile. |
RUN_TESTS_CHUNK_TIMEOUT_MS |
600000 |
Per-chunk timeout. |
The timing table is advisory and deliberately un-gated. There is no --check
mode and no CI lint that fails on staleness, because timing data legitimately
varies run to run. A file missing from the table falls back to the table's median
weight, and a missing or unparseable table falls back to uniform weight — so
drift costs chunk balance, never a red build. A count-based floor additionally
guarantees the packer never produces fewer chunks than plain count-based packing
would, so a badly stale table cannot collapse the suite into a few fat chunks.
How-to: regenerate the timing table
Regenerate when the suite's cost profile has visibly drifted — after adding or
removing expensive tests, not on a schedule. The input is a node:test reporter
event stream from a gsd-test run:
node scripts/gen-test-timings.cjs \
~/.local/state/gsd-test/runs/<run-id>/test-events-linux-node22.jsonl \
~/.local/state/gsd-test/runs/<run-id>/test-events-linux-node24.jsonl
Pass every lane you have. A file's recorded time is the max across the supplied streams, not the mean: the packer exists to keep the slowest lane's slowest chunk away from the timeout, so the conservative bound is the right one. Keys are sorted so a regeneration diff shows only the files whose cost moved.
Best practices for forward-compat (Node 24/26)
- Use
process.execPathwhen spawning Node in tests so each matrix lane exercises the lane's Node version. - Avoid stack-trace or error-message prose assertions. Assert
err.code, structured JSON fields, or enums — Node minor releases routinely tweak error wording. - Prefer
node:test,node:assert/strict, andnode:testmocks. No external test frameworks. - Coverage uses
c8and propagatesNODE_V8_COVERAGEthrough the harness's child process.
Test strategy: #443 effort + fast_mode engine
Feature: unified cross-provider effort and fast_mode knobs (issue #443). Test files:
tests/model-resolver.test.cjs(unit),tests/model-resolver.test.cjs(integration).
Testing pyramid
| Layer | File | What it covers |
|---|---|---|
| Unit | feat-443-effort-fast-mode.test.cjs |
Pure logic: cascade rules, clamping, escalation math, malformed config handling, schema key validation. No CLI subprocess. |
| Integration | feat-443-effort-fast-mode.integration.test.cjs |
Architecture-level invariants: cross-provider validity, totality across the 33-agent registry, CLI JSON contract, config round-trip, fast-mode honesty. Real subprocesses via runGsdTools. |
| E2E (pending) | (not yet wired) | Propagation layer: effort frontmatter / CLAUDE_CODE_EFFORT_LEVEL env actually reaching a spawned Claude Code subagent. See "Gaps" below. |
Architectural invariants
Each invariant exists to prevent a specific class of production failure.
(a) Cross-provider validity
What: renderEffortForRuntime(runtime, universalEffort).value must always
be a member of the runtime's real provider enum. Ground-truth enums are defined
as local constants in the test — not sourced from the implementation.
PROVIDER_EFFORT_ENUMS = {
claude: Set { 'low', 'medium', 'high', 'xhigh', 'max' } // Anthropic output_config.effort
codex: Set { 'minimal', 'low', 'medium', 'high', 'xhigh' } // OpenAI model_reasoning_effort
}
Why: Passing a value outside these sets results in a 400 from the real API.
The clamping logic (max -> xhigh for codex; minimal -> low for claude) must
hold for every cell of the VALID_EFFORTS × runtimes matrix.
(b) Param/channel contract
What: Each runtime exposes a stable param string (the native API field
name) and channel (how the value is propagated). Unknown runtimes return
param: null, channel: null and pass the effort value through unchanged.
Why: Callers read .param to construct the dispatch payload. A regression
here would silently drop effort from subagent invocations.
(c) Resolve-execution JSON contract
What: The gsd-tools resolve-execution <agent> command emits a JSON object
with all eight keys present and typed correctly: model (string), profile
(string), effort (VALID_EFFORTS member), effort_rendered (string),
effort_param (string|null), effort_propagation (string|null), fast_mode
(boolean), fast_mode_supported (boolean).
Why: Orchestrators and workflow dispatchers parse this JSON. A missing or mistyped field silently breaks downstream consumers.
(d) Totality across the real registry
What: For every agent in the 33-agent registry, resolveEffortInternal
returns a VALID_EFFORTS member (never undefined/null), resolveFastModeInternal
returns a strict boolean, and renderEffortForRuntime('claude', effort) stays
within the claude provider enum.
Why: A catalog addition that introduces a missing routingTier mapping
would otherwise produce undefined and propagate silently.
(e) Fast-mode honesty invariant
What: When the runtime is claude, fast_mode_supported in
resolve-execution output is always false, regardless of the fast_mode config.
RUNTIMES_WITH_FAST_MODE contains only 'api'.
Why: Claude Code's /fast toggle is session-level only. Emitting
fast_mode: true as frontmatter on a Claude subagent is a silent no-op.
Advertising fast_mode_supported: true for claude would cause orchestrators to
believe the knob was wired when it is not.
(f) Precedence first-valid-wins
What: Both effort and fast_mode use a layered cascade. The test table covers all four effort layers (invocation override → agent_overrides → routing_tier_defaults → default) and all five fast_mode layers, including the case where an invalid value at a higher layer correctly falls through.
Why: Silent precedence bugs (e.g., a numeric value in agent_overrides not being rejected) would override intentional user config.
(g) Dynamic-routing composition
What: resolveEffortForTier escalates effort by attempt number
independently of the model tier mapping. The test verifies the effort ladder
(low -> medium -> high -> xhigh -> max), the max clamp, the
max_escalations cap, and that escalate_on_failure: false suppresses
escalation entirely.
Why: Effort escalation and model escalation share configuration
(dynamic_routing) but must operate independently; coupling them would cause
over-escalation or under-escalation.
(h) Config-tooling round-trip
What: gsd-tools config-set accepts all new key namespaces
(effort.default, effort.routing_tier_defaults.<tier>,
effort.agent_overrides.<agent>, fast_mode.enabled,
fast_mode.routing_tier_defaults.<tier>, fast_mode.agent_overrides.<agent>)
without an "Unknown config key" error, and values set via config-set are
reflected in resolve-execution output.
Why: The schema validation gate (VALID_CONFIG_KEYS + DYNAMIC_KEY_PATTERNS)
is separate from the resolver logic. A key missing from the schema would produce
a silent write failure and appear as a bug only at runtime.
Coverage targets
| Suite | Target |
|---|---|
| Unit | Every cascade rule, every fallthrough, every clamp. All function branches in resolveEffortInternal, resolveFastModeInternal, resolveEffortForTier, renderEffortForRuntime. |
| Integration | All 8 architectural invariants. All 33 registered agents. All 6 provider × effort combinations for the valid-enum check. Full config-set key namespace. |
Gaps / not yet covered
E2E orchestrator-spawn-propagation layer (pending follow-up wiring): The integration tests verify that GSD resolves and renders effort values correctly. They do NOT verify that the rendered values actually reach a spawned Claude Code or Codex subagent at runtime. Specifically uncovered:
CLAUDE_CODE_EFFORT_LEVELenv var being set and read by a spawned claude subprocessoutput_config.effortfrontmatter key surviving the AGENTS.md template substitutionmodel_reasoning_effortfield surviving serialization into a Codex API request body- Fast-mode
speed: "fast"field reaching anapi-runtime request whenfast_mode_supported: true
These require spawning real subagents (or stubs thereof) and asserting on the
process environment / request payload — a scope that belongs in a future E2E
suite under *.slow.test.cjs or dedicated fixture-driven integration work.