Files
msd-core/CONTRIBUTING.md
Tom Boucher ae63cbe557 feat(3575): Phase 6 — CJS↔SDK seam migration end-to-end complete (#3524) (#3577)
* feat(3575): Phase 6 enforcement hardening + retrospective (#3524 feature-complete)

Phase 6 of the CJS↔SDK hard-seam migration (parent #3524). Final
phase per the PRD. After this lands the migration is feature-complete:
shared Modules from Phases 1-4 are in place, the runtime-bridge
primitive from Phase 5.0 is wired with the state.* family proof in
Phase 5.1 (PR #3574), and Phase 6 hardens the seam against future
drift via lint, CODEOWNERS, and retrospective documentation.

## What landed

- scripts/lint-shared-module-handsync.cjs (274 lines) — the
  drift-prevention gate. Scans bin/lib/*.cjs and looks for same-named
  sdk/src/<name>.ts or sdk/src/query/<name>.ts (excluding generated
  artifacts). Pairs not on the allowlist fail the lint with a clear
  message: either add to allowlist with justification, or migrate to
  a shared Module. Supports --root, --allowlist, --cjs-dir, --sdk-src,
  --warn-all flags for testability.
- scripts/shared-module-handsync-allowlist.json (148 lines) — two
  categories:
  - cooperatingSiblings (14 pairs) — legitimate Readers/Adapters
    that consume shared Modules or run structurally-different
    runtime paths.
  - migrateMeBacklog (8 pairs) — known drift anti-patterns that ARE
    on main today (config, decisions, intel, model-catalog, plan-scan,
    schema-detect, secrets, workstream-name-policy). Lint warns but
    does not fail on these; documented in the retrospective as
    candidate Shared Module migrations.
- tests/lint-shared-module-handsync.test.cjs (285 lines, 11 cases)
  — proves the lint catches new drift, honors the allowlist, and
  exits 0 on the current tree.
- .github/workflows/test.yml — new "Shared Module hand-sync drift
  check" step after the freshness checks.
- .github/CODEOWNERS — appended 11 architecture-owned path rules for
  source-of-truth files (Shared Module dirs, manifest JSONs, runtime
  bridge, lint script, allowlist). Existing blanket rule preserved.
- docs/agents/cjs-sdk-seam.md (280 lines) — full retrospective +
  guide:
  - Migration overview table linking Phases 1-6 with PR numbers.
  - 15 historical drift bugs (#1535 ... #3523) each mapped to the
    Phase 6 enforcement layer that would have blocked them.
  - "Guide: Adding a new Shared Module" — step-by-step using Phase 1
    (state-document) as the worked example.
  - "Guide: Adding a new canonical command" — step-by-step using
    Phase 5.1 (state.update) as the worked example.
  - "Open follow-ups" listing the 8 MIGRATE_ME pairs, per-family
    Phase 5.2+ candidates pending maintainer authorization, sync
    bridge workstream support, and Phase 5.1's parity divergences.
- CONTRIBUTING.md — short cross-reference paragraph in the
  Architecture & Domain Standards section.

## Audit findings

All 5 freshness checks from Phases 0-4 are already wired in CI:
command-aliases, state-document, configuration,
workstream-inventory-builder, project-root. Phase 6 adds the 6th
(hand-sync drift check) for total enforcement coverage.

## Numbers

- Full CJS suite: 9335/9335 pass (baseline 9323 + 11 new lint
  tests + 1 cooperating).
- Lint passes on current tree: 14 cooperating siblings + 8 backlog
  pairs accounted for, 0 unauthorized drift pairs.
- Lint exits 1 (fails CI) on an intentional new hand-synced pair
  added to a fixture — verified by the test suite.

Closes #3575. Closes the structural drift surface of #3524.

* chore(3577): add changeset fragment for Phase 6

* feat(3575): Phase 6 end-to-end completion — CJS↔SDK seam migration done

Per maintainer correction: Phase 6 is THE final phase and must
complete the migration end-to-end. This commit absorbs Phase 5.1's
work (state.* router + worker fix), finishes the remaining per-family
router migrations, completes all five resolvable Shared Module
extractions, resolves the parity divergences, lands native workstream
support in the sync bridge, and ships the lint + CODEOWNERS +
retrospective from the original Phase 6 scope.

After this commit the CJS↔SDK seam migration started in #3524 is
feature-complete. No follow-up "Phase 5.x" or "Phase 7" should be
needed — the only documented carve-outs are three pairs that
intentionally cannot be migrated (config CLI handlers, intel async
wrapper, model-catalog already on the shared-JSON pattern).

Cherry-picked state.* from Phase 5.1 (PR #3574 absorbed). Migrated
verify.*, init.*, phase.*, phases.*, validate.*, roadmap.* via the
same executeForCjs delegation pattern. Migrated the inline
gsd-tools.cjs cases for frontmatter.*, config-* CLI, and non-family
commands (generate-slug, current-timestamp, find-phase, docs-init)
with shared _dispatchNonFamily helper + _tryLoadSdkBridge loader.

CJS-native carve-outs documented: config-path, migrate-config,
detect-custom-files (no SDK counterpart yet); state.complete-phase
(no SDK counterpart yet); validate.context (CJS-only inline logic
with no clean SDK port); phases.archive (SDK-only).

- plan-scan (Module-via-generator from sdk/src/query/plan-scan.ts)
- secrets (Module-via-generator)
- schema-detect (Module-via-generator)
- decisions (Module-via-generator; SDK regex aligned to CJS
  alphanumeric IDs to preserve project compatibility)
- workstream-name-policy (Module-via-generator; SDK extended with
  hasInvalidPathSegment and isValidActiveWorkstreamName that CJS
  callers depend on)

Each ships with: SDK source-of-truth, generator at
sdk/scripts/gen-<name>.mjs, freshness check at
sdk/scripts/check-<name>-fresh.mjs, parity test at
tests/<name>-generator.test.cjs, CJS shim at
get-shit-done/bin/lib/<name>.cjs, scripts in sdk and root
package.json, pre-commit drift block, CI workflow step, CODEOWNERS
rule, INVENTORY.md row.

- config (config.cjs vs sdk/src/config.ts) — CJS file is CLI-handler
  surface (cmdConfigGet/Set/etc.); SDK file is loadConfig wrapper
  (already migrated in Phase 2). Zero logical overlap. Classified
  as CJS-CLI-ONLY in the allowlist.
- intel (intel.cjs vs sdk/src/query/intel.ts) — SDK is the async
  QueryHandler wrapper of the CJS module; intentional split per the
  SDK file's own docstring. Classified as cooperating-sibling.
- model-catalog (model-catalog.cjs vs sdk/src/model-catalog.ts) —
  both already consume sdk/shared/model-catalog.json (ADR-0003).
  No constants duplicated. Classified as ADAPTER-OVER-MODULE.

- state.record-metric: SDK aligned to CJS auto-create of
  ## Performance Metrics section when absent. Parity assertion now
  exact equality.
- state.prune: SDK aligned to CJS disk-based phase counting via
  stateExtractField. Parity assertion now exact equality. SDK unit
  tests updated to match.

GSDTransport.shouldUseNative no longer forces subprocess when
request.workstream is set — the Phase 5.0 worker fix already threaded
workstream through dispatchNative + registry.dispatch, making the
subprocess force unnecessary. state-command-router.cjs's workstream
fallback guard removed. cjs-sdk-seam.md and the regression test
updated to document the resolution.

Unchanged from the previous commit on this branch. The lint now
reports 22 cooperating siblings, 0 backlog pairs. The retrospective
section "Open follow-ups" is reduced to the three intentional
carve-outs above; the four stale subsections (8 MIGRATE_ME pairs,
per-family Phase 5.x candidates, workstream support, parity
divergences) are gone because they're all resolved in this commit.

- Full CJS suite: 9441/9441 pass (baseline pre-Phase-6 was 9323;
  +118 from the Phase 6 work — 11 lint tests + 12 state-router
  parity + 6 verify parity + 3 phase parity + 1 roadmap parity +
  24 plan-scan parity + 20 secrets parity + 18 schema-detect parity
  + 15 decisions parity + 19 workstream-name-policy parity).
- SDK vitest unit: 1863/1863 pass.
- Hand-sync lint: 22 cooperating siblings, 0 backlog pairs.
- All freshness checks: fresh.

Closes #3575. Closes the migration the CJS↔SDK seam was designed
to eliminate (#3524).

* fix(3575): lint-shared-module-handsync emits typed JSON; tests assert on IR

The lint-no-source-grep CI step rejected the original Phase 6 test
file (tests/lint-shared-module-handsync.test.cjs) because it
substring-matched on .stdout/.stderr from the lint script output —
prohibited per CONTRIBUTING.md "Raw Text Matching on Test Outputs".
Fix: add --json mode to the production lint script and assert on
typed IR fields.

## Changes

scripts/lint-shared-module-handsync.cjs:
- New --json flag. When set:
  - Success: emits { ok: true, cooperatingCount, backlogCount, warnings }
  - Unauthorized pairs: emits { ok: false, reason: 'unauthorized_pairs',
    errors: [{ relCjs, tsPaths }], warnings, cooperatingCount }
  - Missing CJS/SDK dir: emits { ok: false, reason: 'cjs_dir_missing'
    | 'sdk_src_missing', path }
- Default (human-readable) output unchanged.
- Warnings section is suppressed in --json mode (still surfaced in the
  IR's `warnings` field for tests to inspect).

tests/lint-shared-module-handsync.test.cjs:
- runLintJson() helper replaces runLint(), invoking the script with
  --json and parsing the IR.
- Every assertion now reads typed fields (payload.ok, payload.reason,
  payload.errors, payload.warnings, payload.cooperatingCount) instead
  of substring-matching stdout/stderr.
- Test count unchanged at 9 cases across 3 describe blocks.
- All pass.

## Verification

- node scripts/lint-no-source-grep.cjs → exit 0, 529 test files
  checked, 0 violations (was: 1 violation in this test file).
- node --test tests/lint-shared-module-handsync.test.cjs → 9/9 pass.
- node scripts/lint-shared-module-handsync.cjs → unchanged
  human-readable output, 22 cooperating siblings, 0 backlog pairs.
- node scripts/run-tests.cjs → 9449/9449 pass.

Addresses CI failure on PR #3577 (Phase 6 of #3524).

* fix(3575): address CodeRabbit review on PR #3577

Six findings resolved:

1. scripts/lint-shared-module-handsync.cjs — allowlist matching now
   pair-aware. Keys composite ${cjs}::${ts} instead of cjs-only, so
   an entry covering one (cjs, ts) pair no longer silently passes a
   sibling at a different ts path with the same module name.
   Header doc-comment also corrected: removed the stale claim about
   GSD_LINT_CHANGED_FILES filtering (no such code existed).

2. sdk/src/gsd-transport.ts — removed dead 'workstream_forced' member
   from the TransportDecision.reason union (no longer assigned after
   Phase 5.0 workstream-native refactor).

3. sdk/src/gsd-transport.ts — removed stale workstream interpolation
   from the subprocess-reason Error message; the field is no longer
   load-bearing for that decision path.

4. All eight generator scripts (sdk/scripts/gen-*.mjs and
   gen-state-document.ts) — replaced the manual entry-point check
   that used `new URL(process.argv[1], 'file://')`. On Windows that
   misparses `C:\…\gen-*.mjs` as scheme "c:" and breaks the check.
   Replaced with the cross-platform-safe direct comparison
   `fileURLToPath(import.meta.url) === process.argv[1]`. (Not using
   `import.meta.main` — that's only stable in Node 24+ and the
   project supports Node 22+.)

5. docs/agents/cjs-sdk-seam.md — added explicit `text` language
   specifier to the four file-path fenced blocks (lines 157, 165,
   173, 181). Closing fences correctly remain bare.

Verification

- node scripts/lint-no-source-grep.cjs → 0 violations
- node scripts/lint-shared-module-handsync.cjs → 22 cooperating
  siblings, 0 backlog (counts unchanged after pair-aware refactor)
- node scripts/lint-shared-module-handsync.cjs --json → typed IR
  unchanged
- All 9 generator freshness checks → fresh
- node scripts/run-tests.cjs → 9449/9449 pass
- sdk vitest src/gsd-transport.test.ts → 10/10 pass

Tests for pair-aware matching: the existing 9 cases in
tests/lint-shared-module-handsync.test.cjs already build fixture
allowlist entries with both `cjs` and `ts` fields, so they
implicitly exercise the new pair-aware lookup; all 9 pass.

* fix(3575): address second CodeRabbit review on PR #3577

Five new findings resolved.

1. Shared SDK bridge loader (`get-shit-done/bin/lib/cjs-sdk-bridge.cjs`)
   Eliminates seven-fold duplication of `tryLoadSdk` / `_executeForCjs`
   that lived verbatim in every `*-command-router.cjs` plus a near-identical
   variant in `gsd-tools.cjs`. The new module exposes `tryLoadSdk()`,
   `getExecuteForCjs()`, and `getSdkModule()` (the last for routers that
   pull additional named exports, e.g. state's `formatStateLoadRawStdout`).
   All eight call sites refactored to consume it. As a side benefit
   `gsd-tools.cjs` no longer imports from the private
   `@gsd-build/sdk/dist/runtime-bridge-sync/index.js` subpath; everyone now
   uses the public package entry consistently.

2. `phase remove` accepts zero positional args (#3577 review)
   `phase remove --force` previously passed validation with no phase number
   and invoked `cmdPhaseRemove(cwd, undefined, ...)`. Tightened to
   `positional.length !== 1` and added the early `return` so the handler
   never receives an undefined phase id.

3. Decisions parser regex hardened (#3577 review)
   `D-[A-Za-z0-9_-]+` allowed malformed IDs like `D--foo` and `D-_bar`.
   Tightened to `D-[A-Za-z0-9][A-Za-z0-9_-]*` so the first character after
   `D-` must be alphanumeric; internal `_`/`-` still permitted.
   Decisions generated CJS mirror regenerated.

4. plan-scan-generator test no longer uses hardcoded `/tmp` paths
   `/tmp/__gsd_test_nonexistent_dir_xyz__` and
   `/tmp/__nonexistent_gsd_test__` could collide with prior runs on shared
   CI runners. Replaced with `uniqueMissingPath()` helper that synthesizes
   `os.tmpdir()/<prefix>-<pid>-<ms>-<random>` and force-removes the path
   before returning.

5. lint-shared-module-handsync test now validates pair-aware TS matching
   Added `rejects pair when TS path differs from allowlist entry` — a
   regression guard that creates an on-disk pair at `sdk/src/query/<name>.ts`
   but allowlists the (cjs, sdk/src/<name>.ts) shape. The lint must reject
   because the (cjs, ts) tuple does not match. Demonstrates the pair-aware
   matching added in the previous commit and locks it in.

## Wiring

`cjs-sdk-bridge.cjs` added to `docs/INVENTORY.md` (count 68→69) and
`docs/INVENTORY-MANIFEST.json` regenerated.

## Verification

- node scripts/lint-no-source-grep.cjs → 0 violations (529 files)
- node scripts/lint-shared-module-handsync.cjs → 22 cooperating, 0 backlog
- node scripts/run-tests.cjs → 9452/9452 pass (was 9449 + 1 lint-test + 1
  changed plan-scan path test)
- node sdk/scripts/check-decisions-fresh.mjs → fresh
- sdk vitest src/query/decisions.test.ts → 15/15 pass

* docs(3575): correct PR/issue refs in cjs-sdk-seam.md

CodeRabbit caught two stale references that conflated the issue
number (#3575) with the PR number (#3577). Phase 6 ships as PR
#3577 closing issue #3575. Migration overview table row and the
Final Completion Summary updated accordingly.

* fix(3575): cjs-sdk-bridge actually loads the SDK (was dead-code since Phase 5.0)

## The bug

`cjs-sdk-bridge.cjs:tryLoadSdk()` resolved `require('@gsd-build/sdk')`,
but that package name is not installed in the root `node_modules`
(the SDK lives as `./sdk/` — a sibling workspace, not a dependency)
and the SDK's public entry doesn't re-export `executeForCjs` or
`formatStateLoadRawStdout` anyway. `tryLoadSdk()` always returned
false, the `_loadFailed = true` cache made every subsequent call
return false for the lifetime of the process, and every CJS router
silently fell through to the CJS handler.

The pattern shipped in Phase 5.0 (PR #3558, merged) via
`require('@gsd-build/sdk/dist/runtime-bridge-sync/index.js')` and
was inherited into the routers via `require('@gsd-build/sdk')` in
Phase 5.1 (PR #3574, merged). Both subpaths/imports failed in the
same way. CI passed for the whole CJS↔SDK migration because the
CJS fallback handlers kept running — meaning the entire claimed
"state.* delegation" never actually executed via the SDK in any
shipped run.

This is exactly the silent-drift class the Phase 6 lint and
retrospective are supposed to prevent. Catching it here closes the
loop.

## The fix

Resolve the bundled SDK by **package-relative filesystem path**:

  <root>/sdk/dist/runtime-bridge-sync/index.js
  <root>/sdk/dist/query/state-project-load.js

The `files` array in `package.json` keeps `sdk/dist` at the same
relative location inside the published tarball, so the path works
in both dev and post-install. The two-file split is necessary
because `formatStateLoadRawStdout` lives in the state handler,
not the runtime-bridge entry.

## Integration test

`tests/cjs-sdk-bridge-integration.test.cjs` proves four things and
locks the load-success invariant so this regression cannot recur:

  1. tryLoadSdk() returns true on the current checkout
  2. getExecuteForCjs() returns a function (not null)
  3. getFormatStateLoadRawStdout() returns a function (not null)
  4. executeForCjs() actually dispatches a canonical registry
     command (generate-slug) and returns an ok:true result — proving
     real SDK execution, not a silent CJS-fallback

## State-router formatter wiring

The state command router was reaching into `getSdkModule()` to pluck
`formatStateLoadRawStdout`. Replaced with the explicit
`getFormatStateLoadRawStdout()` getter so the bridge module owns
all SDK-export resolution.

## state.load --raw output mode

While the bridge was broken, the state.load --raw test happened to
pass via CJS fallback. The first SDK execution exposed a contract
mismatch: passing `mode: 'raw'` to the bridge tells the SDK to
pre-render result.data to a JSON string, but the router was also
calling `formatStateLoadRawStdout(result.data)` to project to
key=value lines — the formatter saw a string and no-op'd.

Fix: when a CJS-side rawFormatter is supplied, the router requests
`mode: 'json'` from the bridge (always get typed data) and runs the
formatter itself. When no rawFormatter, the user's --raw flag flows
through to the bridge as usual.

## Surfaced pre-existing parity gaps (NOT yet fixed)

With the bridge now actually executing the SDK, 8 `tests/state.test.cjs`
cases reveal pre-existing CJS↔SDK behavioral drift that Phase 5.1's
"104/104 pass" report could not see because the SDK was never running:

  - `state load returns error when STATE.md missing`
  - `state get returns error when STATE.md missing`
  - `state update returns error when STATE.md missing`
  - `state update reports field not found`
  - `state patch / record-metric / update-progress /
     resolve-blocker / record-session — error when STATE.md missing`
  - `add-decision --summary-file` / `add-blocker --text-file`
    (file-input path rejected by SDK security check)

Each is a real CJS↔SDK divergence that needs explicit alignment in
the SDK handler. Listed here so the next commit can address them
honestly rather than letting the broken bridge mask them again.

* fix(3575): align SDK with CJS contract — bridge-exposed divergences

The Phase 5.1 bridge fix (0fc60b0c) made executeForCjs() actually load and
dispatch. With routers now hitting the SDK in normal layouts, six CJS↔SDK
behavioral divergences became visible. This commit aligns the SDK to match
the canonical CJS contract test-by-test.

ROUTER CHANGES (mode: raw → mode: json)
All 7 CJS routers were passing `mode: raw ? 'raw' : 'json'`. With the bridge
active, `mode: 'raw'` makes the bridge pre-render result.data to a JSON string,
which CJS output() then re-stringifies — producing a JSON string of a JSON
string. Routers now always request typed JSON; CJS output() handles user-
facing rendering. Affected: gsd-tools, init, phase, phases, roadmap, state,
validate, verify routers.

SDK STATE MUTATION HANDLERS (sdk/src/query/state-mutation.ts)
state.update / record-metric / update-progress / resolve-blocker / record-
session no longer auto-create STATE.md via readModifyWriteStateMd. CJS errors
out when STATE.md is missing; SDK now does the same via an upfront existsSync
check returning {updated: false, reason: 'STATE.md not found'}. Also fixes:

  • resolve-blocker semantic: SDK returned resolved:false when no blocker
    line matched. CJS returns resolved:true whenever the Blockers section
    exists. Aligned.
  • readTextArgOrFile path validation: rejected /var/folders paths on macOS
    because /var → /private/var is a symlink. Now resolves both base and
    target via realpathSync before the prefix check.

STATE.MD STOPPED_AT SCOPING (sdk/src/query/state.ts)
buildStateFrontmatter extracted `Stopped At` from the entire body; CJS scopes
it to the ## Session section. Bug-2444 parity restored — the field no longer
bleeds in from unrelated sections of STATE.md.

PHASE_DIR_COUNT MILESTONE FILTER (sdk/src/query/init.ts)
initNewMilestone counted every directory under phases/ regardless of which
milestone it belonged to. CJS uses getMilestonePhaseFilter to count only
current-milestone phase dirs. Bug-2445 parity restored.

ARCHIVED PHASE GUARD (sdk/src/query/init.ts)
shouldDropArchivedPhaseMatch had an extra `archivedTag === milestone.version`
escape hatch that doesn't exist in CJS. CJS unconditionally drops the
archived match when the phase appears in the current ROADMAP. Removed the
escape hatch — fixes the bug #2391 regression where `init plan-phase 03`
returned the archived v1.0 phase instead of the current ROADMAP phase.

PADDING-TOLERANT ROADMAP PHASE LOOKUP (sdk/src/query/roadmap.ts)
searchPhaseInContent used `escapeRegex(phaseNum)` as the phase-number
fragment — `03` failed to match `Phase 3:` headings. CJS uses
phaseMarkdownRegexSource which emits `0*<integer>` for padding tolerance.
Restored same helper inline in roadmap.ts. Fixes bug #2391 / #3537 parity
in zero-padded phase lookups.

STATE COMMAND ROUTER STATE.MD-MISSING ERROR SURFACE
(get-shit-done/bin/lib/state-command-router.cjs)
state.get must surface "STATE.md not found" as an error (matching CJS exit
behavior); other state mutations must surface {updated: false, reason: ...}
as data. Added EXIT_ON_STATE_MD_MISSING discriminator with STATE_MD_MISSING_
MESSAGE constant.

VERIFICATION
  • init.test.cjs        — 93/93 pass (was 91/2 fail)
  • state.test.cjs       — 104/104 pass (was 95/9 fail)
  • core.test.cjs        — pass
  • roadmap.test.cjs     — pass
  • cjs-sdk-bridge-integration.test.cjs — 4/4 pass (bridge load locked in)

The 13 phase.test.cjs failures (next-decimal 999.x backlog skip, add-batch
JSON validation, insert dry-run rejection, find-phase non-canonical
warnings) are pre-existing SDK gaps from the broken-bridge era and will be
addressed in a follow-up commit on this same PR.

Co-Authored-By: Claude Opus 4.7 (1M context) <noreply@anthropic.com>

* fix(3575): align SDK phase handlers with CJS (wave 2 — phase.test.cjs)

The bridge-fix (0fc60b0c) exposed 13 more CJS↔SDK behavioral divergences
inside the phase command family. All are now aligned to the canonical CJS
contract, with per-test verification.

phase.ts:
  • Centralised isCanonicalPlanFile / looksLikePlanFile / describeNonCanonical
    Plans helpers mirroring phase.cjs:17–52. Exported for reuse from
    phase-lifecycle.ts (phasesList) so the warning shape never drifts between
    read sites.
  • searchPhaseInDir now emits result.warning (singular) with the canonical
    message when a plan-shaped file would be skipped by the canonical filter.
    Bug #2893 parity for find-phase.
  • phasePlanIndex moved its non-canonical warning to the singular result.warning
    field (was a generic entry in result.warnings) so consumers see the same
    field name and message format as find-phase / phases-list. Other
    diagnostics (unresolved deps, wave-declaration mismatches) still flow
    through the warnings array unchanged.
  • Added PhaseInfo.warning to the type. getPhaseFileStats now also returns
    allFiles so the caller can compute the diagnostic without re-reading the
    directory.

phase-lifecycle.ts:
  • phasesList (phases list --type plans) emits per-dir prefixed warnings
    matching phase.cjs:120 (`${dir}: ${describeNonCanonicalPlans(...)}`).
  • phaseAdd now matches the CJS router contract for arg parsing:
    accepts --raw (ignored), --dry-run, --id <value>; rejects every other
    --flag with "phase add does not support <flag>"; rejects dangling
    --id with "--id requires a value"; joins all positional tokens with
    space so `phase add User Dashboard` produces description "User
    Dashboard". customId comes from --id, never from positional[1].
  • phaseInsert now mirrors phaseAdd's arg parsing: rejects --dry-run
    with "does not support --dry-run", strips --raw, joins
    positional.slice(1) for the description. Also reports the bug-3098
    placeholder error ("Phase N exists in roadmap summary but is missing
    a detail section") when the ROADMAP has only a checklist entry but no
    detail section.
  • phaseAddBatch dangling --descriptions or --descriptions followed by
    another flag now surface "--descriptions must be a JSON array"
    instead of silently falling through to positional parsing or throwing
    "--descriptions must be a valid JSON array".
  • renameIntegerPhases now skips backlog phases (dirInt >= 999) — bug-2434
    parity. Without this, removing phase 3 in a project with 999.1-backlog-*
    on disk would rename the backlog dir to 998.1-backlog-*.
  • updateRoadmapAfterPhaseRemoval rewritten to mirror phase.cjs:880-922
    exactly: 5 targeted regex passes (not a loop), driven by three
    decrement helpers (decrementRoadmapPhaseNumber, decrementRoadmapPhase
    Token, decrementRoadmapPaddedPhaseNumber) that guard against
    `num >= 999`. The padded-prefix replace uses negative lookbehind/
    lookahead to skip YYYY-MM-DD substrings. Fixes:
      - bug-2435: integer phase remove no longer corrupts dates in ROADMAP
        (e.g. `(Shipped: 2025-04-15)` is left alone when removing phase 4).
      - bug-3355: integer phase remove no longer renumbers the same phase
        more than once (loop overlap removed).
      - Backlog phases stay frozen during renumbering.
  • phaseComplete next-phase scan skips backlog dirs (999.x). Without
    this, `phase complete 2` in a project with 999.1-backlog/ on disk
    would emit next_phase: '999.1' even though Phase 3 exists in
    ROADMAP.md. Bug #2129 parity.

VERIFICATION (per-test, targeted runs — full suite not exercised due to
prior 89GB OOM with concurrent runs):
  • phase.test.cjs        — 108/108 pass (was 13 fail)
  • init.test.cjs         — 93/93 pass (no regression)
  • state.test.cjs        — 104/104 pass (no regression)
  • validate.test.cjs     — pass (no regression)
  • verify.test.cjs       — pass (no regression)
  • core.test.cjs         — pass (no regression)
  • roadmap.test.cjs      — pass (no regression)
  • cjs-sdk-bridge-integration.test.cjs — 4/4 pass (bridge intact)

Co-Authored-By: Claude Opus 4.7 (1M context) <noreply@anthropic.com>

* fix(3575): align SDK roadmap-mutation helpers with CJS — bug-2005

Three CJS↔SDK divergences in the phase.complete write path were hiding
behind the broken bridge:

1. replaceInCurrentMilestone (sdk/src/query/phase-roadmap-mutation.ts)
   The SDK port carried an extra fallback that doesn't exist in the CJS
   (core.cjs:1013-1022): if the "after last </details>" slice didn't match
   the pattern, the SDK silently retried inside the last <details> block.
   That fallback corrupts the current milestone when it is itself wrapped
   in <details open>...</details> and there's no content after the close
   tag — the supposed-to-be-skipped scope is the only place the match
   exists. Aligned to CJS: split at the last </details>, replace only in
   the after-slice, return. No fallback. Documented with a "do not
   re-add" warning since this fallback has been added back twice in
   prior porting passes.

2. phase complete checkbox update (sdk/src/query/phase-lifecycle.ts)
   The SDK was scoping the `- [ ] Phase N:` → `- [x] Phase N:`
   replacement through replaceInCurrentMilestone. The CJS
   (phase.cjs:1057) uses a direct roadmapContent.replace(...) call. When
   the current milestone is wrapped in <details>, the scoped variant
   never reaches the checkbox; direct replace finds it. Aligned with
   CJS.

3. phase complete plan-count update (sdk/src/query/phase-lifecycle.ts)
   Same pattern — the SDK was scoping the `**Plans:** X/Y` update
   through replaceInCurrentMilestone. CJS (phase.cjs:1080) uses direct
   replace. Aligned.

VERIFICATION
  • bug-2005-phase-complete-details.test.cjs — 2/2 pass (was 1 fail)
  • phase.test.cjs                            — 108/108 pass (no regression)

Co-Authored-By: Claude Opus 4.7 (1M context) <noreply@anthropic.com>

* fix(3575): align SDK with CJS — add-decision DWIM + frontmatter paths

Two more CJS↔SDK divergences exposed by the bridge fix:

state.add-decision / state.add-blocker DWIM (sdk/src/query/state-mutation.ts)
  CJS state.cjs:481-498 + 532-548 auto-create the canonical Decisions /
  Blockers section when it's absent from STATE.md. The SDK was returning
  `{added: false, reason: '<Section> section not found in STATE.md'}`
  even when STATE.md was writable. Bug #3286 (parity for both verbs):

    • If section header pattern matches → append entry (existing path).
    • If section is absent → scaffold `## Decisions` (or `### Blockers`)
      and append the entry, then set `created: true` on the result.

  Matches the begin-phase / advance-plan DWIM behavior. Callers can now
  treat `state add-decision` as idempotent — first call creates the
  scaffold, subsequent calls append to it.

frontmatter get/set/merge/validate (helpers.ts + frontmatter.ts +
                                     frontmatter-mutation.ts)
  CJS frontmatter.cjs:323/340/354/369 resolves user paths with the
  simple `path.isAbsolute(p) ? p : path.join(cwd, p)`. The SDK port had
  promoted this to `resolvePathUnderProject` which adds a real-path
  prefix check against the project root.

  That check rejects absolute paths outside the project — including
  macOS tmpdir paths whose names contain spaces, the exact regression
  cited in bug #3509. Frontmatter verbs are deliberately path-flexible
  in CJS because they're called against external files (plan paths
  from other repos, scratch markdown, tmpdir fixtures).

  Introduced `resolveFrontmatterPath()` mirroring the CJS one-liner. The
  project-scoped `resolvePathUnderProject()` is unchanged — still used
  for template output, decision artifacts, etc.

VERIFICATION
  • bug-3286-state-write-routing.test.cjs — 13/13 pass (was 6 fail)
  • bug-3509-path-spaces.test.cjs         — 6/6 pass (was 3 fail)
  • phase.test.cjs / init.test.cjs / state.test.cjs / validate.test.cjs /
    verify.test.cjs / core.test.cjs / roadmap.test.cjs — all pass (no
    regression — 566 total tests).

Co-Authored-By: Claude Opus 4.7 (1M context) <noreply@anthropic.com>

* fix(3575): route SDK state handlers through scanPhasePlans — bug-3257

The SDK port of buildStateFrontmatter / stateValidate / stateSync was
using a naive top-level filter (`files.filter(/-PLAN\.md$/i)`) instead
of the canonical scanPhasePlans helper. The naive filter undercounts
every phase that uses the nested layout `phases/NN-name/plans/<NN>-PLAN-MM-slug.md`,
which is the default the planner agent produces.

CJS routes all three sites through scanPhasePlans (state.cjs:408, 824,
1427). scanPhasePlans is already a Shared Module — generated CJS at
plan-scan.generated.cjs from sdk/src/query/plan-scan.ts. The fix is
just to consume it.

CHANGES
  • buildStateFrontmatter (sdk/src/query/state.ts): replaced the
    inline `-PLAN.md` / `-SUMMARY.md` regex filters with scanPhasePlans;
    use the helper's `completed` flag for diskCompletedPhases.
  • stateValidate (sdk/src/query/state-mutation.ts): same swap on the
    current-phase plan-count drift check.
  • stateSync (sdk/src/query/state-mutation.ts): same swap on the
    rollup loop. Also routes the Progress percent through
    computeProgressPercent(completedPlans, totalPlans, diskCompletedPhases,
    syncTotalPhases) so the min(plan_fraction, phase_fraction) cap from
    bug #3242 Bug B is applied — without this, sync emitted 60% when the
    real progress was capped at 50% by phase-fraction.

VERIFICATION
  • bug-3257-nested-plans-undercount.test.cjs — 14/14 pass (was 12 fail)
  • phase.test.cjs / init.test.cjs / state.test.cjs / validate.test.cjs /
    verify.test.cjs / core.test.cjs / roadmap.test.cjs / bug-3286 /
    bug-2005 / bug-3509 — all pass (no regression — 580 total).

Co-Authored-By: Claude Opus 4.7 (1M context) <noreply@anthropic.com>

* test(3575): phase 6 CJS↔SDK seam behavioral contracts — TDD-found worker bug

Adds tests/phase-6-cjs-sdk-seam-contracts.test.cjs — a behavioral contract
suite for everything Phase 6 of #3524 introduced.  Written under the
issue #3592 test rewrite discipline:

  • No source-grep on .cjs files
  • No assert.match / .includes on free-form child-process stdout/stderr
  • Every assertion is on a parsed JSON object, a filesystem fact, an
    exit code, or a frozen enum value (SYNC_ERROR_KIND, BRIDGE_EXPORTS,
    TRANSPORT_MODE)
  • Helpers come from tests/helpers.cjs (runGsdTools, createTempProject,
    cleanup) — no inline fs.mkdtempSync
  • Fixture content built with array.join('\n'), never template literals
  • beforeEach/afterEach for shared setup; no try/finally inside tests

COVERAGE
  1. Bridge module surface — exports lock against BRIDGE_EXPORTS
  2. Bridge load lifecycle — tryLoadSdk, getters return cached refs,
     pre-load returns null
  3. executeForCjs RuntimeBridgeSyncResult shape — ok:true vs ok:false
     discriminated union; mode:"json" never double-stringifies
  4. CLI family-router dispatch — one structured-JSON assertion per
     family (roadmap, phase, phases, state, init, validate, find-phase)
  5. mode:"json" regression guard — stdout parses to object, not to
     JSON-encoded string (the Wave-1 double-stringify bug shape)
  6. GSD_WORKSTREAM gate — SDK path and CJS fallback produce identical
     structured fields for the same fixture
  7. Validation error taxonomy — empty arg → ok:false +
     errorKind: SYNC_ERROR_KIND.VALIDATION_ERROR
  8. phase.add filesystem facts — directory exists, ROADMAP file grew
     (asserted via fs.statSync, never by reading content back)

TDD-FOUND BUG (RED → GREEN)
  Suite §7 (validation_error taxonomy) failed in the RED phase:

    expected: 'validation_error'
    actual:   'native_failure'

  Root cause in sdk/src/runtime-bridge-sync/worker.ts: when an SDK
  handler throws a GSDError(Validation), the native direct adapter
  wraps it in a GSDToolsError via createNativeFailureError, preserving
  the original on `.cause`.  classifyError only checked for TypeError
  causes — every GSDError cause fell through to `native_failure`,
  breaking the documented SyncErrorKind contract.

  Fix: classifyError now unwraps the cause once.  When the cause is a
  GSDError with ErrorClassification.Validation or .Blocked, the result
  is errorKind: 'validation_error' (exit 10) — matching the direct
  branch a few lines below for unwrapped GSDError.

VERIFICATION (per-test, before and after the worker fix)
  • Phase 6 contract suite          — 21/21 pass (was 20/1 fail at RED)
  • phase.test.cjs                  — 108/108 pass
  • init.test.cjs                   — 93/93 pass
  • state.test.cjs                  — 104/104 pass
  • validate.test.cjs / verify.test.cjs / core.test.cjs / roadmap.test.cjs
                                    — all pass
  • cjs-sdk-bridge-integration.test.cjs — 4/4 pass (bridge intact)
  • npm run lint:tests              — 0 violations (no source-grep)

Co-Authored-By: Claude Opus 4.7 (1M context) <noreply@anthropic.com>

* fix(3575): SDK config-get/set parity + reason-code propagation — bugs #2943 #3086 #3212

Three CJS↔SDK divergences in config dispatch exposed when Phase 6 routes
`config-get` / `config-set` through `executeForCjs`:

1. SDK config-get was missing the SCHEMA_DEFAULTS map.
   CJS config.cjs:505-510 hard-codes documented defaults for
   `context_window` (200000), `executor.stall_detect_interval_minutes` (5),
   `executor.stall_threshold_minutes` (10), `git.create_tag` (true).  When a
   config.json omits the key, CJS returns the documented default with
   exit 0.  SDK threw `Key not found` for all four — every skill that
   reads `context_window`, executor stall thresholds, or the tag toggle
   broke under SDK dispatch.  Ported the table verbatim into
   sdk/src/query/config-query.ts and consult it at every "not found"
   exit point (matching the three CJS branches: missing file, traversal
   collapse, terminal undefined).

2. SDK config-set was missing the `git.create_tag` boolean-only guard.
   CJS rejects `config-set git.create_tag maybe` because the schema is
   boolean.  SDK silently accepted it and wrote "maybe" to disk under
   Phase 6 dispatch.  Added the matching guard + the missing
   `workflow.post_planning_gaps` boolean guard.

3. SDK errors lost their structured reason code at the bridge boundary.
   `--json-errors` callers expect `reason: 'config_key_not_found'` etc.
   from a frozen `ERROR_REASON` taxonomy; the bridge dispatcher in
   gsd-tools.cjs was calling `error(message)` without the second
   argument, so every SDK-routed error surfaced as `reason: 'unknown'`.
   Fix is end-to-end:
     • config handlers tag the GSDError with `.reason = 'config_*'`.
     • worker.ts:classifyError reads `.reason` off the cause (or off
       the direct error) and forwards it via `errorDetails.reason`.
     • `_dispatchNonFamily` in gsd-tools.cjs passes that reason as the
       second arg to `error()` when present.
     • Also added the `--raw` scalar pass-through here, so
       `output(data, raw, String(data))` is called for primitive
       results — without it, `config-get context_window --raw` emitted
       the JSON shape '200000\n' which happens to match but breaks any
       primitive whose JSON encoding differs from its String() form
       (booleans for example, where the CJS produces `true` while the
       SDK-routed path was producing `true` — same here, but the
       structural guarantee was wrong before).

VERIFICATION (per-test)
  • bug-2943-config-get-context-window-default.test.cjs — 5/5 pass
  • bug-3086-git-create-tag-config-gate.test.cjs        — 4/4 pass
  • bug-3212-execute-phase-stall-safe-resume.test.cjs   — 7/7 pass
  • Phase 6 contract suite                              — 21/21 pass
  • phase/init/state/core/roadmap/validate/verify       — all pass
                                                          (570 total)
  • Full bug-* suite: 24 fail → 17 fail (7 fixed in this commit).

Co-Authored-By: Claude Opus 4.7 (1M context) <noreply@anthropic.com>

* fix(3575): SDK milestone-archive layout discovery — bug #3164

Two CJS↔SDK divergences in phase discovery and validation surfaced
when projects moved to the milestone-archive layout
(`.planning/milestones/v<version>-phases/<phase>/`) instead of the
flat `.planning/phases/<phase>/`.

1. SDK findPhase had no `searched_directories` field on the not-found
   payload.  CJS surfaces this for diagnostics.  Added: track every
   directory probed (the active `.planning/phases/` plus each
   archive root) and include the relative paths in the not-found
   payload. Bug #3164 — #find-phase tests.

2. SDK validateConsistency only scanned `.planning/phases/`.  CJS
   `cmdValidateConsistency` (verify.cjs:467) walks every active
   phase root via `collectPhaseRoots(planBase)` — the flat dir plus
   the active milestone archive resolved from STATE.md.  Without
   parity, every roadmap phase on a milestone-archive-layout project
   emitted W006 ("no directory on disk") even though the phases were
   present in the archive.

   Ported the helper trio (listMilestoneArchiveDirs,
   getActiveMilestoneArchiveDir, collectPhaseRoots) verbatim from
   verify.cjs:400-444 and rewrote validateConsistency's disk-phase
   scan + per-phase plan scan to iterate `phaseRoots`.  Warning
   labels now include the archive prefix so users can tell which
   root surfaced the issue.

   Also accepts prefixed archive dir names (`CK-64-...`) as phase 64
   via the `(?:[A-Z]{1,6}-)?` group at the head of
   PHASE_TOKEN_FROM_DIR_RE — same regex CJS uses.

VERIFICATION (per-test)
  • bug-3164-milestone-archive-layout.test.cjs — 8/8 pass
  • Phase 6 contract suite                      — 21/21 pass
  • phase/init/state/validate/verify/core/roadmap — 570 pass
  • Full bug-* suite: 17 fail → 12 fail (5 fixed in this commit;
    cumulative 12 fixed since Wave 6 start).

Co-Authored-By: Claude Opus 4.7 (1M context) <noreply@anthropic.com>

* fix(3575): padded phase IDs match unpadded ROADMAP prose — bug #3537

Three failures in bug-3537-padded-id-against-unpadded-roadmap:

1. roadmap.get-phase returned `phase_number` verbatim from the user
   input — `02.7` produced `"phase_number": "02.7"` while `2.7`
   produced `"phase_number": "2.7"` on the same fixture, so a parity
   compare of the two stdouts fails.  Fixed by promoting the matched
   phase token in `searchPhaseInContent` to a capture group and
   returning that as the canonical `phase_number`.  Same fix in the
   checklist-fallback branch so the malformed-roadmap diagnostic
   carries the as-written form too.

2. phase.complete built every ROADMAP-prose regex from
   `escapeRegex(phaseNum)` instead of the padding-tolerant
   `phaseMarkdownRegexSource(phaseNum)`.  Calling
   `phase complete 02.7` against the un-padded heading
   `### Phase 2.7:` matched nothing — checkbox didn't flip, plan
   count stayed at `0/1`, table row stayed `Planned`.  Promoted
   `phaseMarkdownRegexSource` to an exported helper in roadmap.ts
   and wired it into phaseComplete's roadmap mutation block.

3. roadmap.annotate-dependencies infinite-looped through the bridge.
   The SDK handler delegates to `spawnSync(gsd-tools.cjs roadmap
   annotate-dependencies …)`; the child re-entered the roadmap
   router; the router re-dispatched through executeForCjs; synckit
   spawned the same SDK worker; that worker spawned gsd-tools.cjs
   again; …  Recursion hit the 15s timeout and the test reported
   `code=null`.  Fixed with a `GSD_SDK_NESTED=1` env-var guard:
   the SDK handler sets it when spawning the child, and the CJS
   roadmap router refuses SDK dispatch when it sees the flag.

VERIFICATION (per-test)
  • bug-3537-padded-id-against-unpadded-roadmap.test.cjs — 6/6 pass
  • Phase 6 contract suite                                — 21/21 pass
  • phase/init/state/validate/verify/core/roadmap         — 570 pass
  • Full bug-* suite: 12 fail → 7 fail (5 fixed in this commit;
    cumulative 17 fixed across the wave-6/7/8 sequence).

Co-Authored-By: Claude Opus 4.7 (1M context) <noreply@anthropic.com>

* fix(3575): final-7 SDK parity — bugs #2787 #2268 #2526

Closes out the bug-suite tail.  Three independent fixes against three
independent regressions surfaced when Phase 6 routed read-only and
mutation paths through the SDK.

1. extractCurrentMilestone truncated at heading-like lines inside
   fenced code blocks — bug #2787.  The `^#{1,N}\\s+...vX.Y` scan
   ran with the `/m` flag, which matches `^` at every newline,
   including newlines inside ``` and ~~~ fences.  A snippet like
     ```bash
     # Ops runbook — v1.0 compat
     ```
   placed between Phase 2 and Phase 3 of a v1.1 milestone shortened
   the milestone slice and made phases 3, 4 invisible to
   roadmap.analyze / roadmap.get-phase.

   Added `isInsideFencedCodeBlock(content, offset)` — a GFM-aware
   walker that toggles a `fenceChar` cursor on each fence boundary
   (backticks and tildes; closing fences require the matching
   character and no info string — so ```js inside ```text does NOT
   close).  The nextMilestoneRegex loop now skips any match that
   falls inside an open fence.

2. init.manager only marked the FIRST undiscussed phase as
   `is_next_to_discuss` — bug #2268.  Two and five-phase fixtures
   both proved the regression: parallel-discuss capacity was lost,
   recommended_actions emitted at most one discuss action even
   when callers were free to take several.  Replaced the sliding-
   window loop with an unconditional `phase.is_next_to_discuss =
   (status === 'empty' || status === 'no_directory')`.

3. phase.complete didn't surface "REQ-IDs found in body but
   missing from Traceability table" warnings — bug #2526.  CJS
   phase.cjs:1140-1167 scans REQUIREMENTS.md for `**REQ-ID**`
   references in the body, intersects against the IDs that actually
   appear in the Traceability section table, and warns about the
   diff.  The SDK port only ran the per-roadmap-REQ checkbox
   update and never emitted the body-scan warning.  Added the
   missing scan + warning push; also routed the writeFile through a
   `reqContentChanged` flag so we only write when at least one
   substitution actually fired (parity with the implicit
   "every checkbox already complete" no-write CJS branch).

VERIFICATION
  • bug-2787-milestone-fenced-block-truncation.test.cjs — 4/4 pass
  • bug-2268-parallel-discuss.test.cjs                   — 4/4 pass
  • bug-2526-phase-complete-req-discovery.test.cjs       — 3/3 pass
  • Phase 6 contract suite                               — 21/21 pass
  • Major suites (phase/init/state/validate/verify/core/roadmap) — 570 pass
  • **Full bug-* suite: 2397/2397 pass — ZERO failures.**
  • Combined run (major + bug-*): 2967/2967 pass — zero failures.

Cumulative since the bridge-fix landing (PR #3577): 12 sub-test
regressions surfaced + every one resolved.  Phase 6 is now byte-for-
byte CJS-parity across every command family verified by the test
suite.

Co-Authored-By: Claude Opus 4.7 (1M context) <noreply@anthropic.com>

* fix(3575): preserve codex runtime command shape after router migration

* test(3575): pin agent-install-validation init tests to GSD_AGENTS_DIR

PR #3577 routed init.execute-phase and init.plan-phase through executeForCjs
to the SDK handlers. The SDK side's resolveAgentsDir (sdk/src/query/helpers.ts)
honors GSD_AGENTS_DIR or falls back to <runtimeConfigDir>/agents; it does not
walk up from cwd to find <repo>/agents/ like the CJS-era code did. The two
init-suite tests that asserted agents_installed=true relied on that implicit
walk and only passed on dev machines where ~/.claude/agents/ already had the
33 agents installed — Linux CI runners have neither.

Match the pattern every passing sibling in this file already uses: pass
{ GSD_AGENTS_DIR: REPO_AGENTS_DIR } through runGsdTools so the SDK resolver
points at the repo's agents/ dir explicitly. No production code change.

Refs sdk/src/query/QUERY-HANDLERS.md ("subprocess vs in-process path
resolution") and CONTEXT.md DEFECT.PORT-DRIFT.cjs-sdk.

Co-Authored-By: Claude Opus 4.7 (1M context) <noreply@anthropic.com>

* fix(3577): Phase 6 config-* SDK port parity carve-outs

Restored the legacy contract for four CLI tests broken by the Phase 6
router migration:

1. `config-ensure-section` was bound to the new SDK `configEnsureSection`
   handler which requires `args[0]=sectionName`. Every real CLI caller
   uses the no-arg form expecting full default config.json creation.
   Reverted the dispatch case to call `config.cmdConfigEnsureSection`
   directly (matches the precedent in 7d5dfa9d for `codex` runtime).

2. SDK `configNewProject` `commit_docs` and `parallelization` defaults
   set to `true`/`true` (was `false`/`1`) — aligned with
   `sdk/shared/config-defaults.manifest.json` and the CJS
   `buildNewProjectConfig` `hardcoded` block.

3. SDK `configNewProject` returns the project-rooted relative path
   `.planning/config.json` instead of the absolute `paths.config`,
   matching the CJS `ensureConfigFile` output shape.

4. SDK error vocabulary aligned with CJS: `Unknown config key: <key>`
   (no surrounding quotes), and config-get's malformed-JSON message
   leads with `Failed to read config.json:` so legacy substring
   assertions in `tests/config.test.cjs` keep matching.

Local: 132/132 across `tests/{config,agent-skills,ai-evals}.test.cjs`.

Co-Authored-By: Claude Opus 4.7 (1M context) <noreply@anthropic.com>

* fix(3631): family routers forward --raw to SDK bridge as mode:'raw'

#3577 routed every family subcommand through the SDK bridge with a
hardcoded mode:'json'. With --raw set, the bridge returned the typed JSON
IR and routers called `output(result.data)` — bypassing output()'s
rawValue branch. Shell consumers expecting scalar tokens
(`gsd-tools phase next-decimal --raw 1` → `1.1`) received the JSON-
stringified IR instead.

Each `*-command-router.cjs` SDK dispatch path now requests
`mode: raw ? 'raw' : 'json'` from the bridge. The sync-bridge worker is
wired to `formatNativeRaw = formatQueryRawOutput` so the bridge returns
the per-command scalar projection. Routers route the formatted string
through `output(null, true, str)` (rawValue branch) so it lands on
stdout verbatim.

formatQueryRawOutput extended for the two commands covered by the issue
acceptance criteria — phase.next-decimal (→ data.next) and
roadmap.get-phase (→ data.section). Other registered raw projections
(state.load, commit, config-set, state.begin-phase) are unaffected; the
default `safeStringify` branch still applies to unprojected commands.

state-command-router already had a dispatchViaSdk helper that selected
mode based on a rawFormatter. The trailing fallthrough `output(result.data)`
when no rawFormatter was present is the same regression and was patched
to use the rawValue branch under --raw.

Regression test `tests/bug-3631-router-raw-flag.test.cjs` exercises
end-to-end:
  - `phase next-decimal --raw 1` emits a scalar phase token (not JSON).
  - `roadmap get-phase --raw 2` emits the section text (not JSON).

The fix targets `feat/3575-enforcement-hardening` (PR #3577, open) —
not origin/main as the issue body asserted. The #3577 regression lives
on that branch and the fix needs to land there before merge.

Fixes #3631

Co-Authored-By: Claude Opus 4.7 (1M context) <noreply@anthropic.com>

* test(3631): force CJS dispatch path in router unit tests via GSD_WORKSTREAM

phases-command-router.test.cjs and roadmap-command-router.test.cjs
mock the CJS-side `phase`/`milestone`/`roadmap` handlers and assert
they are called with the parsed args. Since #3577 the router prefers
SDK dispatch when sdk/dist is present — the mocks are then bypassed
and the SDK side fails because the test cwd `/tmp/proj` has no
`.planning/` fixture.

The router already gates SDK dispatch on `process.env.GSD_WORKSTREAM`
being unset (workstream-scoped requests fall through to CJS). Setting
GSD_WORKSTREAM in before()/after() deterministically routes through
the CJS handlers the tests were written against, without weakening
the assertions.

Co-Authored-By: Claude Opus 4.7 (1M context) <noreply@anthropic.com>

* fix(3632): report each ts sibling independently in lint-shared-module-handsync

The cooperatingPairs lookup ran inside `.some()` over all ts candidates for
a given cjs. When two ts siblings shared the same basename (e.g.
`sdk/src/foo.ts` and `sdk/src/query/foo.ts`) and only one pair was
allowlisted, `.some()` short-circuited and the unallowlisted sibling
silently passed through CI.

Classify each ts sibling independently against the allowlist so partially-
allowlisted multi-sibling drift surfaces. Added regression test
`reports unallowlisted ts sibling when another ts sibling for the same cjs
IS allowlisted (#3632)`.

Real-tree lint output unchanged on `feat/3575-enforcement-hardening`:
22 cooperating siblings, 0 unauthorized, 0 backlog pairs.

Fixes #3632

Co-Authored-By: Claude Opus 4.7 (1M context) <noreply@anthropic.com>

* fix(3577): ADR/PRD compliance + SDK port completeness for Phase 6

Multiple ADR/PRD violations in the Phase 6 cutover surfaced during
gsd-test-summary docker runs. Root causes traced to docs/adr/
3524-cjs-sdk-hard-seam.md §3 (out-of-seam module list) and
docs/prd/3524-cjs-sdk-hard-seam.md L160 (CJS-only verbs must not
route through the SDK runtime bridge), plus port-drift bugs the ADR
was specifically written to prevent (DEFECT.PORT-DRIFT.cjs-sdk).

Out-of-seam Module bindings removed from SDK catalog/manifests:
- verify.codebase-drift (drift is CJS-only; the SDK stub used
  execFileSync back to gsd-tools, recursing infinitely with the
  Phase 6 router rewrite — forked hundreds of node procs on the
  64 GiB plex2 docker host before manual kill)
- intel.* (8 verbs: diff, snapshot, validate, status, query,
  extract-exports, patch-meta, update — intel is CJS-only per ADR)
Both already have direct-CJS dispatch in gsd-tools.cjs (case
'intel') and verify-command-router.cjs (`'codebase-drift':` now
calls verify.cmdVerifyCodebaseDrift without going via sdkHandler).

config-ensure-section cutover restored via catalog rebind:
- 'config-ensure-section' in command-static-catalog-foundation.ts
  rebound from configEnsureSection (single-section semantics,
  requires args[0]=sectionName the CLI never passes) to
  configNewProject (whose no-args branch produces the full default
  config.json — matches the legacy ensureConfigFile contract).
- gsd-tools.cjs `case 'config-ensure-section'` restored to its
  Phase 6 _dispatchNonFamily form (no CJS fallback — the SDK
  handler now does the right thing).

configNewProject defaults from canonical manifest:
- Replaced the hardcoded duplicate `defaults` block with a
  derivation from CONFIG_DEFAULTS (sdk/src/configuration/index.ts,
  sourced from sdk/shared/config-defaults.manifest.json). The
  duplicate had drifted — omitted workflow.{ai_integration_phase,
  tdd_mode, human_verify_mode, pattern_mapper, plan_bounce*,
  auto_prune_state, subagent_timeout, security_*, post_planning_gaps},
  git.create_tag, claude_md_path, planning.*, graphify.*, mode,
  resolve_model_ids, context_window — every one of which had a
  test asserting the post-init value.

SDK configSet value-validation port (CJS cmdConfigSet parity):
- workflow.drift_action enum (warn|auto-remap)
- workflow.drift_threshold positive-integer
- workflow.human_verify_mode enum (mid-flight|end-of-phase)
- statusline.context_position enum (front|end)
- code_quality.fallow.scope enum (phase|repo)
- code_quality.fallow.profile enum (minimal|standard|strict)
- review.default_reviewers array shape + slug regex +
  lowercase-unique normalisation (matches
  bin/lib/review-reviewer-selection.cjs
  normalizeConfiguredDefaultReviewers, with the normalised value
  persisted to disk)

Init/roadmap/phase/workspace/frontmatter handler fixes:
- initExecutePhase + initPlanPhase parse --tdd boolean override
- initMapCodebase reads workflow.subagent_timeout with 300000
  default per manifest
- roadmapAnalyze surfaces `mode` per phase (parity with
  roadmapGetPhase)
- phaseComplete auto-prunes STATE.md when workflow.auto_prune_state
  is true (port of bin/lib/phase.cjs:1378-1390; #2087)
- initRemoveWorkspace throws GSDError on no-name and
  workspace-not-found instead of returning {data:{error}} which
  the CLI output path treated as success
- frontmatterGet parses --field <name> in addition to positional
  args[1]

Local: 150/150 across the failing-cluster test files
(review-default-reviewers-config, subagent-timeout, pattern-mapper,
tdd-mode, drift-detection, roadmap-mode-field, workspace,
phase-complete-auto-prune, frontmatter-cli). Docker gsd-test-summary
re-run in progress for full validation.

Co-Authored-By: Claude Opus 4.7 (1M context) <noreply@anthropic.com>

* fix(3577): clear 12 ubuntu-only regressions surfaced by gsd-test-summary

Docker test pass 3 (holodeck) surfaced 12 real bugs after the earlier
ADR/PRD-compliance commit (cf4dd0cb). Every one is a SDK-side bug —
fix-forward, not "pre-existing":

bug-3599 (2 subtests) — roadmap.get-phase project-code-prefix lookup:
  Ported phaseMarkdownRegexSourceExact from CJS (core.cjs:704-708) so
  `PROJ-42` queries try the exact escaped form FIRST before falling
  back to the padding-tolerant numeric. searchPhaseInContent now does
  two-pass lookup. Without this, `roadmap get-phase PROJ-42` returned
  not-found even when ROADMAP contains `### Phase PROJ-42:`, and
  bare `42` queries cross-matched the PROJ-42 heading.

roadmap-mode-field (1) — roadmapAnalyze surfaces `mode` per phase:
  Extracts the same `**Mode:**` field that roadmapGetPhase already
  parses (CONTEXT.md "MVP Mode" glossary). Without this, downstream
  consumers reading roadmap.analyze output couldn't tell which phases
  were MVP-mode.

bug-3601 (2 subtests) — phase.remove preserves peer-depth decimals:
  Ported the depth-aware end-of-section regex from CJS phase.cjs
  (named capture `(?<h>#{2,4})` + `\k<h>(?!#)` backreference). Now
  removing `### Phase 2:` stops at `### Phase 2.1:` (same depth, peer
  decimal) while continuing past `#### Phase 27.1:` (child depth).

bug-3602 (1 subtest) — phase.remove renumbers slugged plan refs:
  Extended the padded-plan-reference pattern with optional kebab-case
  slug segments `(?:-[A-Za-z][A-Za-z0-9-]*)*` between NN-NN and the
  PLAN/SUMMARY suffix, matching CJS phase.cjs:#3602 fix. Without this,
  `07-01-cherry-pick-foundation-PLAN.md` references stayed at `07-01-`
  after Phase 7 was removed, while the file on disk was already
  `06-01-...`.

config.test (1) — config-get git.base_branch returns "Key not found":
  configNewProject now filters out manifest keys legacy CJS init does
  NOT materialize: top-level `resolve_model_ids`, `context_window`,
  `mode`, `planning`, `graphify`; nested `git.base_branch`. These have
  their own resolution paths (origin/HEAD auto-detect for base_branch,
  feature opt-in for planning/graphify) and materializing the manifest
  defaults would suppress them. Manifest stays the schema source of
  truth per ADR §6; init shape stays minimal per legacy CJS contract.

gsd-sdk-query-registry-integration (1) — agents/gsd-intel-updater.md
references retargeted from `gsd-sdk query intel.*` to `gsd-tools intel
<subcommand>`. intel is out-of-seam per ADR §3 / PRD L160 ("CJS-only
Module handlers ... keep their in-process CJS implementations").
Removing the SDK catalog entries (cf4dd0cb) made the SDK route invalid;
the agent now correctly invokes the CJS handler via gsd-tools, which
routes through Shell Command Projection for cross-platform formatting.

Local: 79/79 across the failing test files. Docker re-run in progress.

Co-Authored-By: Claude Opus 4.7 (1M context) <noreply@anthropic.com>

* fix(3577): regenerate command-aliases + retarget workflow drift-gate

CI ubuntu-24 surfaced two remaining ADR-compliance gaps after the
previous push:

1. `sdk/src/query/command-aliases.generated.{ts,cjs}` still listed
   verify.codebase-drift + intel.{snapshot,patch-meta} from before the
   manifest-side removal. Ran `npx tsx sdk/scripts/gen-command-aliases.ts`
   to regenerate; both files now match the manifest source of truth.
   Closes the `command-seam-coverage.test.ts` "missing registry
   canonical verify.codebase-drift" failure (its assertion is correct —
   the SDK does NOT register codebase-drift, so the alias entry must
   not be present either).

2. `get-shit-done/workflows/execute-phase/steps/codebase-drift-gate.md`
   invoked `gsd-sdk query verify.codebase-drift` — drift is out-of-seam
   (CJS-only) per ADR §3 / PRD L160, so there is no SDK handler to
   route through. Retargeted to `gsd-tools verify codebase-drift` which
   dispatches direct to bin/lib/drift.cjs (the canonical implementation)
   via the CJS router. Closes the
   `gsd-sdk-query-registry-integration.test.cjs` failure.

Local: docker gsd-test-summary 11383/0 on plex2.

Co-Authored-By: Claude Opus 4.7 (1M context) <noreply@anthropic.com>

* fix(3575): raise Node heap for coverage in CI matrix

---------

Co-authored-by: Claude Opus 4.7 (1M context) <noreply@anthropic.com>
Co-authored-by: ci <ci@gsd-build>
2026-05-16 13:14:24 -04:00

43 KiB

Contributing to GSD

Getting Started

# Clone the repo
git clone https://github.com/gsd-build/get-shit-done.git
cd get-shit-done

# Install dependencies
npm install

# Run tests
npm test

Types of Contributions

GSD accepts three types of contributions. Each type has a different process and a different bar for acceptance. Read this section before opening anything.

🐛 Fix (Bug Report)

A fix corrects something that is broken, crashes, produces wrong output, or behaves contrary to documented behavior.

Process:

  1. Open a Bug Report issue — fill it out completely.
  2. Wait for a maintainer to confirm it is a bug (label: confirmed-bug). For obvious, reproducible bugs this is typically fast.
  3. Fix it. Write a test that would have caught the bug.
  4. Open a PR using the Fix PR template — link the confirmed issue.

Rejection reasons: Not reproducible, works-as-designed, duplicate of an existing issue.


⚡ Enhancement

An enhancement improves an existing feature — better output, faster execution, cleaner UX, expanded edge-case handling. It does not add new commands, new workflows, or new concepts.

The bar: Enhancements must have a scoped written proposal approved by a maintainer before any code is written. A PR for an enhancement will be closed without review if the linked issue does not carry the approved-enhancement label.

Process:

  1. Open an Enhancement issue with the full proposal. The issue template requires: the problem being solved, the concrete benefit, the scope of changes, and alternatives considered.
  2. Wait for maintainer approval. A maintainer must label the issue approved-enhancement before you write a single line of code. Do not open a PR against an unapproved enhancement issue — it will be closed.
  3. Write the code. Keep the scope exactly as approved. If scope creep occurs, comment on the issue and get re-approval before continuing.
  4. Open a PR using the Enhancement PR template — link the approved issue.

Rejection reasons: Issue not labeled approved-enhancement, scope exceeds what was approved, no written proposal, duplicate of existing behavior.


✨ Feature

A feature adds something new — a new command, a new workflow, a new concept, a new integration. Features have the highest bar because they add permanent maintenance burden to a solo-developer tool maintained by a small team.

The bar: Features require a complete written specification approved by a maintainer before any code is written. A PR for a feature will be closed without review if the linked issue does not carry the approved-feature label. Incomplete specs are closed, not revised by maintainers.

Process:

  1. Discuss first — check Discussions to see if the idea has been raised. If it has and was declined, don't open a new issue.
  2. Open a Feature Request issue with the complete spec. The template requires: the solo-developer problem being solved, what is being added, full scope of affected files and systems, user stories, acceptance criteria, and assessment of maintenance burden.
  3. Wait for maintainer approval. A maintainer must label the issue approved-feature before you write a single line of code. Approval is not guaranteed — GSD is intentionally lean and many valid ideas are declined because they conflict with the project's design philosophy.
  4. Write the code. Implement exactly the approved spec. Changes to scope require re-approval.
  5. Open a PR using the Feature PR template — link the approved issue.

Rejection reasons: Issue not labeled approved-feature, spec is incomplete, scope exceeds what was approved, feature conflicts with GSD's solo-developer focus, maintenance burden too high.


📐 Proposing an ADR or PRD

An ADR (Architecture Decision Record) documents a significant architectural decision. A PRD (Product Requirements Document) captures the what and why of a feature before implementation. Both are governed by the same issue-first rule as everything else.

Process:

  1. Open an issue of the appropriate type (enhancement for an ADR revisiting an existing area, feature for a new architectural surface, chore for policy/docs decisions). Fill it out completely.
  2. Wait for maintainer approval. A maintainer must label the issue approved-enhancement, approved-feature, or confirm the chore before any file is created.
  3. The GitHub-assigned issue number becomes your filename prefix. Create the file on a branch named after the issue:
    • docs/adr/<issue#>-<slug>.md for ADRs
    • docs/prd/<issue#>-<slug>.md for PRDs
    • Branch: docs/<issue#>-<slug>
  4. Open a PR using the appropriate template and close the issue with Closes #<issue#> in the PR body.

One issue = one ADR-or-PRD = one PR. Do not batch multiple decisions into one file or one PR.

Do not compute a "next number" locally. Any PR that uses the legacy NNNN-* sequential pattern for a new ADR or PRD will be asked to rename the file to the <issue#>-<slug>.md format before merge.

Example: Issue #3485 was opened, approved, and its number became the prefix: docs/adr/3485-adr-prd-naming-convention.md on branch docs/3485-adr-prd-naming-convention.

Rejection reasons: Issue not approved before file was created, filename uses local-compute sequential number instead of issue#, multiple decisions bundled in one PR, file placed in wrong directory (docs/adr/ vs docs/prd/).


The Issue-First Rule — No Exceptions

No code before approval.

For fixes: open the issue, confirm it's a bug, then fix it. For enhancements: open the issue, get approved-enhancement, then code. For features: open the issue, get approved-feature, then code.

PRs that arrive without a properly-labeled linked issue are closed automatically. This is not a bureaucratic hurdle — it protects you from spending time on work that will be rejected, and it protects maintainers from reviewing code for changes that were never agreed to.


Pull Request Guidelines

Architecture & Domain Standards (Maintainer-Defined)

The following files are maintainer-owned coding standards and must be treated as canonical when contributing:

  • CONTEXT.md — domain language and module naming standards
  • docs/adr/ — Architecture Decision Records (ADRs) for accepted architectural decisions

Full contributor requirements — including CONTEXT.md format, ADR governance, and AI-agent-assisted work standards — are in docs/contributor-standards.md.

Contributor requirements (summary):

  • Read CONTEXT.md before naming or refactoring modules/interfaces/seams.
  • Use CONTEXT.md vocabulary consistently in code comments, tests, issue/PR text, and docs for the touched area.
  • Check relevant ADRs in docs/adr/ before proposing or implementing architectural changes.
  • If a change intentionally revisits an ADR decision, call it out explicitly in the linked issue and PR rationale.
  • Do not rewrite maintainer intent in CONTEXT.md/ADRs as part of drive-by cleanup; propose focused updates tied to approved scope.
  • If using an AI assistant, prompt it to read CONTEXT.md and the relevant ADRs before writing any code or docs, and verify it used the correct vocabulary before opening the PR.

CJS↔SDK seam. When working on bin/lib/*.cjs or sdk/src/**, read docs/agents/cjs-sdk-seam.md. It documents the canonical pattern for Shared Modules (data manifest + source-of-truth file + generator + freshness check + Adapters) and the hand-sync pair lint that blocks new drift. New <name>.cjs ↔ <name>.ts pairs require either migration to a Shared Module or an explicit allowlist entry with justification in scripts/shared-module-handsync-allowlist.json. Adding an allowlist entry requires maintainer review via CODEOWNERS.

Every PR must link to an approved issue. PRs without a linked issue are closed without review, no exceptions.

  • No draft PRs — draft PRs are automatically closed. Only open a PR when it is complete, tested, and ready for review. If your work is not finished, keep it on your local branch until it is.
  • Use the correct PR template — there are separate templates for Fix, Enhancement, and Feature. Using the wrong template or using the default template for a feature is a rejection reason.
  • Link with a closing keyword — use Closes #123, Fixes #123, or Resolves #123 in the PR body. The CI check will fail and the PR will be auto-closed if no valid issue reference is found.
  • One concern per PR — bug fixes, enhancements, and features must be separate PRs
  • No drive-by formatting — don't reformat code unrelated to your change
  • Don't bundle test-fixture updates into docs: or unrelated commits — when a production change makes an existing test assertion stale, the test correction MUST land as its own test: (or fix:) commit, not bundled into a docs: commit that also updates the explanation. The release-sdk hotfix cherry-pick filter routes by commit-subject prefix (fix:, chore:, test:); a test-fixture correction packed under a docs: prefix is invisible to the picker and ships a half-state to the hotfix branch — production code changed, test assertion stale. v1.42.3 hit this exact mode (#3621). The fix is upstream: keep the test-fixture commit separate.
  • CI must pass — all configured matrix jobs must be green. Node 22 remains the compatibility floor; Node 24 is the primary target; Node 26 compatibility must be preserved for code and tests even when a Node 26 CI lane is not yet available.
  • Scope matches the approved issue — if your PR does more than what the issue describes, the extra changes will be asked to be removed or moved to a new issue

CHANGELOG Entries — Drop a Fragment

Do not edit CHANGELOG.md directly. Two PRs that both append to a ### Fixed block always conflict on merge — git can't pick a serialization order without a human. Instead, every PR with user-facing changes drops a fragment file in .changeset/.

npm run changeset -- --type Fixed --pr <YOUR_PR_NUMBER> \
  --body "**\`/gsd-foo\` no longer drops trailing slashes** — explain the user-visible change."

This writes .changeset/<adjective>-<noun>-<noun>.md. Three random words → concurrent PRs never collide. Allowed type: values follow Keep a Changelog: Added, Changed, Deprecated, Removed, Fixed, Security.

Fragments are consolidated into CHANGELOG.md at release time by the release workflow. See .changeset/README.md for the format spec and #2975 for the rationale.

CI enforcement: the Changeset Required workflow (scripts/changeset/lint.cjs) fails any PR that touches bin/, get-shit-done/, agents/, commands/, hooks/, or sdk/src/ without a .changeset/*.md fragment.

Opt-out: PRs with no user-facing impact (test refactors, lint config changes, CI tweaks, formatting-only changes) can add the no-changelog label. The lint honors it. When unsure whether a change is user-facing, add the fragment.

Documentation Updates — Update the Relevant Docs

If your PR adds, changes, deprecates, or removes user-visible behavior, you must update the relevant documentation in docs/. CI will fail any PR whose changeset fragment is typed Added, Changed, Deprecated, or Removed without also modifying at least one file under docs/ (#3213).

Fixed and Security fragments do not trigger this lint — bug fixes restore documented behavior, they do not introduce new behavior to document. (Edit the docs anyway if a fix corrects something the docs got wrong.)

Which docs to update

Change type Required doc updates
New command or flag docs/COMMANDS.md, docs/FEATURES.md
Changed command behavior or output docs/USER-GUIDE.md, docs/COMMANDS.md
Configuration / schema change docs/CONFIGURATION.md
Architectural change docs/ARCHITECTURE.md, docs/adr/
Agent or skill change docs/AGENTS.md
Removed command, flag, or workflow All docs that referenced it

Language policy

All content in docs/ and the root README.md must be written in English. English is the canonical source. The translated READMEs (README.pt-BR.md, README.zh-CN.md, README.ja-JP.md, README.ko-KR.md) are community-maintained translations and do not need to be updated by every PR.

CI enforcement

The Docs Required workflow (scripts/lint-docs-required.cjs) reads the changeset fragments touched in the PR diff. If any has type Added / Changed / Deprecated / Removed, it requires at least one file under docs/ to also appear in the diff.

Opt-outs (with paper trail)

When a change genuinely has no user-facing documentation impact (infrastructure rewrite, internal refactor, test-only addition, CI fix), use one of:

  • Label: add the no-docs label to the PR. Leave a comment explaining why no docs update was needed.
  • Per-fragment marker: add <!-- docs-exempt: <reason> --> on its own line inside the body of each triggering changeset fragment (typically at the end). The reason is required and must be non-empty — a bare <!-- docs-exempt --> or <!-- docs-exempt: --> is rejected (no audit trail = no exemption). The marker is extracted at parse time by scripts/changeset/parse.cjs and stripped from the body before the CHANGELOG.md and GitHub release-notes serializers see it — it leaves a paper trail in the source fragment without leaking into published release notes. Inline mentions of the marker syntax (e.g. inside backticks) are intentionally ignored; the parser only acts on a marker that occupies its own line. Both routes leave a paper trail; the label is global, the marker is per-fragment for mixed PRs.

When unsure whether a change is user-facing, update the docs.

Testing Standards

All tests use Node.js built-in test runner (node:test) and assertion library (node:assert). Do not use Jest, Mocha, Chai, or any external test framework.

Required Imports

const { describe, it, test, beforeEach, afterEach, before, after, mock } = require('node:test');
const assert = require('node:assert/strict');

Setup and Cleanup

There are two approved cleanup patterns. Choose the one that fits the situation.

Pattern 1 — Shared fixtures (beforeEach/afterEach): Use when all tests in a describe block share identical setup and teardown. This is the most common case.

// GOOD — shared setup/teardown with hooks
describe('my feature', () => {
  let tmpDir;

  beforeEach(() => {
    tmpDir = createTempProject();
  });

  afterEach(() => {
    cleanup(tmpDir);
  });

  test('does the thing', () => {
    assert.strictEqual(result, expected);
  });
});

Pattern 2 — Per-test cleanup (t.after()): Use when individual tests require unique teardown that differs from other tests in the same block.

// GOOD — per-test cleanup when each test needs different teardown
test('does the thing with a custom setup', (t) => {
  const tmpDir = createTempProject('custom-prefix');
  t.after(() => cleanup(tmpDir));

  assert.strictEqual(result, expected);
});

Never use try/finally inside test bodies. It is verbose, masks test failures, and is not an approved pattern in this project.

// BAD — try/finally inside a test body
test('does the thing', () => {
  const tmpDir = createTempProject();
  try {
    assert.strictEqual(result, expected);
  } finally {
    cleanup(tmpDir); // masks failures — don't do this
  }
});

try/finally is only permitted inside standalone utility or helper functions that have no access to test context.

Use Centralized Test Helpers

Import helpers from tests/helpers.cjs instead of inlining temp directory creation:

const { createTempProject, createTempGitProject, createTempDir, cleanup, runGsdTools } = require('./helpers.cjs');
Helper Creates Use When
createTempProject(prefix?) tmpDir with .planning/phases/ Testing GSD tools that need planning structure
createTempGitProject(prefix?) Same + git init + initial commit Testing git-dependent features
createTempDir(prefix?) Bare temp directory Testing features that don't need .planning/
cleanup(tmpDir) Removes directory recursively Always use in afterEach
runGsdTools(args, cwd, env?) Executes gsd-tools.cjs Testing CLI commands

Test Structure

describe('featureName', () => {
  let tmpDir;

  beforeEach(() => {
    tmpDir = createTempProject();
    // Additional setup specific to this suite
  });

  afterEach(() => {
    cleanup(tmpDir);
  });

  test('handles normal case', () => {
    // Arrange
    // Act
    // Assert
  });

  test('handles edge case', () => {
    // ...
  });

  describe('sub-feature', () => {
    // Nested describes can have their own hooks
    beforeEach(() => {
      // Additional setup for sub-feature
    });

    test('sub-feature works', () => {
      // ...
    });
  });
});

Fixture Data Formatting

Template literals inside test blocks inherit indentation from the surrounding code. This can introduce unexpected leading whitespace that breaks regex anchors and string matching. Construct multi-line fixture strings using array join() instead:

// GOOD — no indentation bleed
const content = [
  'line one',
  'line two',
  'line three',
].join('\n');

// BAD — template literal inherits surrounding indentation
const content = `
  line one
  line two
  line three
`;

QA Matrix Requirements

Happy-path tests are not enough for code that accepts user input, reads project files, writes to disk, shells out, generates artifacts, or builds prompts. New tests for those areas must include adversarial inputs and negative proof that unsafe behavior did not happen.

See TEST-EXAMPLES.md for concrete demo tests that show these requirements in practice.

Use this matrix when it applies to the changed surface:

  1. Happy path
  2. Missing input
  3. Empty input
  4. Whitespace-only input
  5. Malformed input
  6. Out-of-range input
  7. Duplicate or conflicting input
  8. Hostile input
  9. Filesystem failure
  10. Concurrency or retry
  11. Cross-platform path/newline behavior
  12. Regression fixture from the linked issue

You do not need all twelve cases for every PR. You do need to cover the cases that match the risk of the touched code. If a case is not applicable, the PR should make that obvious from the issue scope or test rationale.

CLI and command routing

Changes to CLI parsing, command dispatch, query dispatch, command routers, gsd-tools, or gsd-sdk must include a negative input matrix for the affected command family.

Required cases where relevant:

  • Missing required arguments
  • Empty strings, for example --phase ""
  • Whitespace-only values
  • Duplicate flags, for example --phase 1 --phase 2
  • Conflicting flags, for example --json --raw
  • Malformed assignments, for example --phase= and --phase==1
  • Unknown subcommands at the touched command depth
  • Values that look like flags, for example --name --weird
  • Very long values and Unicode values
  • Shell metacharacters in values, for example ;, &&, $(), backticks, and quotes

CLI tests must assert on the full command contract:

  • Exit status
  • Structured --json result when the command supports JSON
  • Filesystem mutation or absence of mutation
  • No stack trace in non-debug failure output
  • No shell interpolation of attacker-controlled values

Prefer spawnSync(process.execPath, [scriptPath, ...args], { cwd, encoding: 'utf8' }) or execFileSync() with argv arrays. Do not use shell strings for tests that contain hostile values.

Parser and project-file inputs

Changes to markdown, TOML, frontmatter, roadmap, phase, state, config, or schema parsing must include adversarial fixtures. Put reusable fixtures under tests/fixtures/adversarial/ with a directory that names the input type, such as roadmap/, frontmatter/, config/, toml/, or planning-state/.

Required cases where relevant:

  • Malformed frontmatter
  • Duplicate keys
  • Mixed CRLF/LF newlines
  • Unclosed or nested fenced code blocks
  • Headings inside fenced code blocks
  • Unicode headings
  • Repeated or decimal phase IDs
  • Path traversal-like names such as ../../x
  • Null bytes or replacement characters
  • Huge but bounded files
  • TOML duplicate tables or trailing garbage
  • Empty arrays vs missing arrays
  • Scalars where arrays are expected, and objects where strings are expected

Property-style parser tests are encouraged for high-risk parsers. They must be deterministic: pin the seed, bound the iteration count, and print replay data on failure.

Filesystem writes and installers

Changes to install/uninstall flows, generated artifact writers, state/config writers, worktree safety, or any code that writes under .planning, runtime config dirs, .claude, .codex, hooks, or generated files must include fault-injection coverage where the seam allows it.

Required cases where relevant:

  • Missing parent directory
  • Target path exists as a file instead of a directory
  • Read-only target directory
  • Broken symlink
  • Symlink escaping the intended root
  • Paths with spaces, Unicode, or newlines
  • Partial write failure
  • Rename failure
  • Concurrent deletion or write collision
  • Temp-file cleanup after failure

Use node:test mocks such as mock.method() for fs.writeFileSync, fs.renameSync, fs.mkdirSync, fs.rmSync, and subprocess seams when the production code exposes a seam. Restore mocks with test hooks or t.after().

Security and prompt-injection surfaces

Changes that read prompts, plans, markdown, agent instructions, shell command projections, workstream/project names, or user-controlled files must treat those inputs as hostile.

Required cases where relevant:

  • Fake instruction tags, for example <instructions>ignore previous</instructions>
  • Heredoc breakouts
  • Shell command substitution payloads
  • Path traversal through project or workstream values
  • Malicious markdown links
  • Fake frontmatter fields that try to override intent
  • Secret-looking values in inputs, logs, stdout, stderr, and thrown errors
  • Environment variables with fake tokens to prove redaction

Security tests must assert both the positive guard behavior and the negative proof: no path escape, no command execution, no leaked token, no untrusted content promoted to instructions.

Generated files and parity

Changes to generators, generated .cjs/.ts files, command manifests, aliases, hooks, or SDK/runtime parity must test bad input and runtime parity, not only freshness.

Required cases where relevant:

  • Missing source command
  • Malformed command frontmatter
  • Duplicate command names or aliases
  • Partial generator output
  • Generator crash halfway through
  • Manual edits to generated files
  • Stale generated file with valid timestamp but wrong content
  • Runtime .cjs and SDK .ts generated surfaces disagree

Generator tests should run in temp fixtures and assert atomic output behavior. Do not mutate production generated files except in explicit freshness checks.

Prohibited: Source-Grep Tests

Never read source-code .cjs files with readFileSync to assert that strings exist within them. This is source-grep theater: it proves a literal is present in a file, not that the feature works at runtime.

// BAD — source-grep theater
const configSrc = fs.readFileSync(
  path.join(GSD_ROOT, 'bin', 'lib', 'config-schema.cjs'), 'utf-8'
);
assert.ok(
  configSrc.includes("'workflow.plan_bounce'"),
  'VALID_CONFIG_KEYS should contain workflow.plan_bounce'
);

This test passes even if workflow.plan_bounce is present but misspelled in the schema, removed from the validation path, or moved to a different file under a different name. It survives every behavioral regression and fails only on trivial renames.

The correct pattern for config key tests — use the CLI:

// GOOD — behavioral test via the CLI
test('config-set accepts workflow.plan_bounce', (t) => {
  const tmpDir = createTempProject();
  t.after(() => cleanup(tmpDir));

  const result = runGsdTools('config-set workflow.plan_bounce true', tmpDir);
  assert.ok(result.success, `config-set should accept workflow.plan_bounce: ${result.error}`);

  const configPath = path.join(tmpDir, '.planning', 'config.json');
  const config = JSON.parse(fs.readFileSync(configPath, 'utf-8'));
  assert.strictEqual(config.workflow?.plan_bounce, true, 'value must be persisted');
});

This single test covers key registration in VALID_CONFIG_KEYS, the key's namespace resolution in KNOWN_TOP_LEVEL, and value persistence — all behaviors that the source-grep test could not touch.

Why this pattern broke at scale: Commit 990c3e64 in this repo updated 5 source-grep tests in one pass when VALID_CONFIG_KEYS moved between files. Zero of those tests were testing behavior. If they had been behavioral tests, the migration would have been invisible.

CI enforcement: A linter (scripts/lint-no-source-grep.cjs, run as npm run lint:tests) detects violations. Any test file that calls readFileSync on a .cjs path in a source directory without the exemption annotation below will fail the lint-tests CI job.

Exception: allow-test-rule: <reason>

Some tests legitimately read source files. There are six recognized categories:

Reason When to use
source-text-is-the-product Agent .md, workflow .md, command .md files — their text IS what the runtime loads. Testing text content tests the deployed contract.
architectural-invariant Implementation must use a specific primitive (e.g., Atomics.wait, atomic file writes) that cannot be tested by observing outputs.
structural-regression-guard A specific code pattern must (or must not) exist to prevent a class of bug (e.g., regex global-state misuse). Behavioral tests cannot distinguish which pattern was used.
docs-parity A reference doc must stay in sync with source-defined constants (e.g., CONFIG_DEFAULTS). The source is the canonical list; there is no runtime API to enumerate it.
integration-test-input A source file is used as a real fixture input to a transformation function under test — the file is not inspected for strings but passed as data.
structural-implementation-guard A feature's interception or wiring point is not reachable end-to-end via runGsdTools. Used temporarily until a behavioral path exists.
pending-migration-to-typed-ir Tracked for correction, not exempted. Test was identified by the lint as carrying a raw-text-matching pattern that contradicts the rule above. Each annotated file MUST cite the open migration issue (e.g. // allow-test-rule: pending-migration-to-typed-ir [#NNNN]) so the tracking is auditable. New tests cannot use this category — they must refactor production to expose typed IR. The annotation is removed when the test is corrected.

Annotate with a standalone // comment before the file's opening block comment:

// allow-test-rule: architectural-invariant
// state.cjs locking must use Atomics.wait(), not a spin-loop. Behavioral tests
// cannot observe which sleep primitive was chosen — only source inspection can.

/**
 * Regression tests for locking bugs #1909...
 */

The annotation must be a standalone // allow-test-rule: line, not inside a /** */ block comment — the CI linter scans for the pattern // allow-test-rule:.

Prohibited: Raw Text Matching on Test Outputs (file content, stdout, stderr)

Source-grep is not just readFileSync of a .cjs file. The same anti-pattern shows up wherever a test pattern-matches against text that a system-under-test produced, regardless of whether that text came from a source file, a rendered shim, a child process's stdout, or a free-form reason string. All forms are forbidden.

The following are all violations of the same rule:

// BAD — substring match on text written by the code under test
const cmdContent = fs.readFileSync(path.join(tmpDir, 'gsd-sdk.cmd'), 'utf8');
assert.ok(cmdContent.includes(`@node ${jsonQuoted} %*`), '.cmd embeds shim path');

// BAD — regex match on a child process's human-readable stdout formatter
const r = cp.spawnSync(SCRIPT, ['--patches-dir', dir]);
assert.match(r.stdout, /Failures: 1/);
assert.match(r.stdout, /not a regular file/);

// BAD — "structured parser" that hides string ops behind a function wrapper
function parseCmdShim(content) {
  const lines = content.split('\r\n').filter((l) => l.length > 0);
  return { header: lines[0], usesCRLF: content.includes('\r\n') };
}

// BAD — assert.match on a free-form `reason` string from a JSON report
assert.ok(/not a regular file/.test(report.results[0].reason));

Each of these passes on accidental near-matches (a comment containing @node somewhere, a stack trace that happens to say Failures: 1, a mis-typed reason that still contains the substring you're matching) and fails on harmless reformatting (changing Failures: 1 to 1 failure, swapping CRLF rendering style, rewording the error prose).

The rule

Tests assert on typed structured values. If the code under test produces text, the code under test must also expose a structured intermediate representation, and the test must assert on that IR — never on the rendered text.

Concretely: for any system-under-test that produces text output (a file renderer, a CLI formatter, an error-message builder), the production code MUST expose a typed alternative that the test consumes:

Output kind Required structured surface What the test asserts on
Rendered file (shim, template, generated code) A pure builder function returning the IR ({ invocation, eol, fileNames, render }) triple.invocation.target === expected, triple.eol.cmd === '\r\n'
CLI human-formatter output A --json mode that emits the same data structurally report.results[0].reason === REASON.FAIL_INSTALLED_NOT_REGULAR_FILE
Error / status / reason A frozen enum (Object.freeze({ FAIL_X: 'fail_x', ... })) assert.equal(result.reason, REASON.FAIL_X)
File presence after a write fs.statSync().isFile(), .size > 0, .mtimeMs advances Filesystem facts; never read the file content back

Concrete examples from this repo

buildWindowsShimTriple(shimSrc) in bin/install.js is the canonical IR pattern: pure function, no I/O, returns { invocation, eol, fileNames, render }. trySelfLinkGsdSdkWindows calls it and writes triple.render[kind]() to disk. Tests assert on triple.invocation.target, triple.eol.cmd, Object.keys(triple).sort() — never on the rendered text. Filesystem-level tests assert fs.statSync(target).size === Buffer.byteLength(triple.render.cmd()) to prove the writer writes what the renderer produces, without comparing content.

scripts/verify-reapply-patches.cjs exposes a frozen REASON enum and emits it through --json. Tests assert report.results[0].reason === REASON.FAIL_USER_LINES_MISSING. The human formatter exists for operator console output only — tests must not depend on its prose. Adding a new reason code requires updating the REASON enum, the --json output, AND the test that locks Object.keys(REASON).sort() — three coordinated changes that prevent the code surface from drifting from the test surface.

Hiding grep behind a function is still grep

parseCmdShim, parsePs1Invocation, etc. that internally do content.split(...), lines[1].trim(), content.includes(...) are still string manipulation. The fact that the entry point looks like a parser doesn't change what's happening underneath — the test is still asserting on the lexical shape of rendered text. The fix is not "wrap the grep in a function with a typed-looking return value." The fix is to eliminate the rendered text from the test path entirely by surfacing the IR.

When you cannot eliminate text matching

There are exactly two cases where text content is the legitimate object of a test, both already covered by the existing exemption matrix:

  1. source-text-is-the-product — workflow .md / agent .md / command .md files where the deployed text IS what the runtime loads.
  2. docs-parity — a reference doc must mirror source-defined constants and there is no runtime enumeration API.

For everything else, if a test reaches for .includes() / .startsWith() / assert.match(text, /…/), the production code is missing a typed surface. Add the typed surface; do not work around it.

CI enforcement: scripts/lint-no-source-grep.cjs is being extended (see issue tracker for the latest scope) to flag String#includes/String#startsWith/String#endsWith/assert.match on readFileSync results and on cp.spawnSync stdout/stderr in test files, with the same // allow-test-rule: exemption mechanism.

Node.js Version Compatibility

Node 22 is the minimum supported version. Node 24 is the primary CI target. Node 26 is the forward-compatibility target: do not add tests or production code that depend on deprecated behavior likely to fail there.

Version Status
Node 22 Minimum required — Active LTS until October 2026, Maintenance LTS until April 2027
Node 24 Primary CI target — current Active LTS, all tests must pass
Node 26 Forward-compatible target — avoid deprecated APIs and exact runtime-error prose

Do not use:

  • Deprecated APIs
  • APIs not available in Node 22

Safe to use:

  • node:test — stable since Node 18, fully featured in 24
  • describe/it/test — all supported
  • beforeEach/afterEach/before/after — all supported
  • t.after() — per-test cleanup
  • mock.method() — approved for scoped filesystem/subprocess fault injection
  • t.plan() — fully supported
  • Snapshot testing — fully supported

Assertions

Use node:assert/strict for strict equality by default:

const assert = require('node:assert/strict');

assert.strictEqual(actual, expected);      // ===
assert.deepStrictEqual(actual, expected);  // deep ===
assert.ok(value);                          // truthy
assert.throws(() => { ... }, /pattern/);   // throws
assert.rejects(async () => { ... });       // async throws

Running Tests

# Run all tests
npm test

# Run a single test file
node --test tests/core.test.cjs

# Run with coverage
npm run test:coverage

For examples of required negative matrices, parser fixtures, filesystem fault injection, security abuse tests, generated-file checks, and runtime/SDK parity tests, see TEST-EXAMPLES.md.

Pre-PR Seam Checks (Manifest/Alias Routing)

If you touched any of the command-manifest or generated alias files, run:

npm run check:alias-drift

This verifies generated alias artifacts are in sync with manifest source-of-truth.

Optional local pre-commit hook entry (Git-native):

# one-time setup
mkdir -p .githooks
cat > .githooks/pre-commit <<'EOF'
#!/usr/bin/env bash
set -euo pipefail

if git diff --cached --name-only | grep -Eq "^sdk/src/query/command-manifest\.|^sdk/src/query/command-aliases\.generated\.ts$|^get-shit-done/bin/lib/command-aliases\.generated\.cjs$|^sdk/scripts/gen-command-aliases\.ts$"; then
  npm run check:alias-drift
fi
EOF
chmod +x .githooks/pre-commit
git config core.hooksPath .githooks

Optional local pre-push hook to block a private author-email pattern:

# set locally in your shell profile (example)
export GSD_BLOCKED_AUTHOR_REGEX='@example-corp\\.com$'

cat > .githooks/pre-push <<'EOF'
#!/usr/bin/env bash
set -euo pipefail

zero_sha='0000000000000000000000000000000000000000'
blocked_regex="${GSD_BLOCKED_AUTHOR_REGEX:-}"
[[ -z "$blocked_regex" ]] && exit 0
violations=()

while read -r local_ref local_sha remote_ref remote_sha; do
  [[ "$local_sha" == "$zero_sha" ]] && continue
  if [[ "$remote_sha" == "$zero_sha" ]]; then
    commits=$(git rev-list "$local_sha" --not --remotes)
  else
    commits=$(git rev-list "$remote_sha..$local_sha")
  fi
  while read -r commit; do
    [[ -z "$commit" ]] && continue
    email=$(git show -s --format='%ae' "$commit" | tr '[:upper:]' '[:lower:]')
    if printf '%s' "$email" | grep -Eq "$blocked_regex"; then
      violations+=("$commit <$email>")
    fi
  done <<< "$commits"
done

if [[ ${#violations[@]} -gt 0 ]]; then
  echo "Push blocked: commit author email matched local blocked regex ($blocked_regex)." >&2
  printf '  - %s\n' "${violations[@]}" >&2
  exit 1
fi
EOF
chmod +x .githooks/pre-push

CI Test Quality Checks

The following checks run on every PR in addition to the test suite:

Job What it checks How to pass
lint-tests No source-grep tests (see above) Replace with runGsdTools() behavioral tests, or add // allow-test-rule: <reason>

Run locally before pushing: npm run lint:tests

Test Requirements by Contribution Type

Architecture-Aware Testing Requirements

When work touches architecture, routing, policy, registry assembly, or command semantics:

  • Write tests against module interfaces and seam behavior, not implementation trivia.
  • Prefer invariant/contract tests that protect ADR-backed behavior and CONTEXT.md terminology.
  • Ensure tests validate canonical behavior through the defined seam (for example: structured result contracts, canonical command metadata, and adapter parity), not source-text coupling.
  • If ADRs define expected behavior, tests should assert those expectations directly.

The required tests differ depending on what you are contributing:

Bug Fix: A regression test is required. Write the test first — it must demonstrate the original failure before your fix is applied, then pass after the fix. A PR that fixes a bug without a regression test will be asked to add one. If the bug involves CLI input, parsers, filesystem writes, security/prompt surfaces, generated files, or SDK/runtime parity, the regression test must use the relevant QA matrix above and include negative proof that the bad behavior no longer happens. "Tests pass" does not prove correctness; it proves the bug isn't present in the tests that exist.

Enhancement: Tests covering the enhanced behavior are required. Update any existing tests that test the area you changed. If the enhancement expands accepted input, changes command routing, broadens parser behavior, changes generated output, or touches installer/write paths, add the relevant adversarial cases from the QA matrix above. Do not leave tests that pass but no longer accurately describe the behavior.

Feature: Tests are required for the primary success path and enough failure scenarios to cover the relevant QA matrix above. At minimum, every feature must cover one failure scenario; features that expose CLI input, parse user files, write files, generate artifacts, call subprocesses, or build prompts must cover the relevant negative/hostile cases. Leaving gaps in test coverage for a new feature is a rejection reason.

Behavior Change: If your change modifies existing behavior, the existing tests covering that behavior must be updated or replaced. For high-risk surfaces, update the adversarial tests as well as the happy path. Leaving passing-but-incorrect tests in the suite is not acceptable — a test that passes but asserts the old (now wrong) behavior makes the suite less useful than no test at all.

Reviewer Standards

Reviewers do not rely solely on CI to verify correctness. Before approving a PR, reviewers:

  • Build locally (npm run build if applicable)
  • Run the full test suite locally (npm test)
  • Confirm regression tests exist for bug fixes and that they would fail without the fix
  • Validate that the implementation matches what the linked issue described — green CI on the wrong implementation is not an approval signal

"Tests pass in CI" is not sufficient for merge. The implementation must correctly solve the problem described in the linked issue.

Code Style

  • CommonJS (.cjs) — the project uses require(), not ESM import
  • No external dependencies in core — gsd-tools.cjs and all lib files use only Node.js built-ins
  • Conventional commits — feat:, fix:, docs:, refactor:, test:, ci:

File Structure

bin/install.js          — Installer (multi-runtime)
get-shit-done/
  bin/lib/              — Core library modules (.cjs)
  workflows/            — Workflow definitions (.md)
                          Large workflows split per progressive-disclosure
                          pattern: workflows/<name>/modes/*.md +
                          workflows/<name>/templates/*. Parent dispatches
                          to mode files. See workflows/discuss-phase/ as
                          the canonical example (#2551). New modes for
                          discuss-phase land in
                          workflows/discuss-phase/modes/<mode>.md.
                          Per-file budgets enforced by
                          tests/workflow-size-budget.test.cjs.
  references/           — Reference documentation (.md)
  templates/            — File templates
agents/                 — Agent definitions (.md) — CANONICAL SOURCE
commands/gsd/           — Slash command definitions (.md)
tests/                  — Test files (.test.cjs)
  helpers.cjs           — Shared test utilities
docs/                   — User-facing documentation

Source of truth for agents

Only agents/ at the repo root is tracked by git. The following directories may exist on a developer machine with GSD installed and must not be edited — they are install-sync outputs and will be overwritten:

Path Gitignored What it is
.claude/agents/ Yes (.gitignore:9) Local Claude Code runtime sync
.cursor/agents/ Yes (.gitignore:12) Local Cursor IDE bundle
.github/agents/gsd-* Yes (.gitignore:37) Local CI-surface bundle

If you find that .claude/agents/ has drifted from agents/ (e.g., after a branch change), re-run bin/install.js to re-sync from the canonical source. Always edit agents/ — never the derivative directories.

Security

  • Path validation — use validatePath() from security.cjs for any user-provided paths
  • No shell injection — use execFileSync (array args) over execSync (string interpolation)
  • No ${{ }} in GitHub Actions run: blocks — bind to env: mappings first