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gstack/plan-eng-review/sections/review-sections.md
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+8 702a1a9b69 v1.78.0.0 fix: the two-red-lanes wave — AUQ collapse rooted, OSV green from 105, 18 community PRs absorbed, upgrade path can't eat installs (#2752)
* fix(auq): spawned trigger is objective — explicit declaration or STATUS echo, never inference (periodic-lane AUQ collapse)

The v1.76 spawned rule's parenthetical '(or your dispatch prompt marks this
session as spawned)' let the model INFER spawned status from a scripted-looking
prompt in a CI-looking session and silently auto-choose every review-phase
question: reviewCount=0 across the plan-review periodic E2Es (weekly run
33363624506, 9 of 14 failed shards; reproduced locally, zero AUQ fingerprints).
Env and hook paths were excluded by inspection: hermetic children echo
SESSION_KIND: interactive (CLAUDE_CODE_ENTRYPOINT=cli beats CI markers) and the
question-preference hook isn't installed there.

The trigger is now objective: the echoed SESSION_KIND: spawned STATUS line, or
an EXPLICIT dispatch-prompt declaration ("you are a SPAWNED subagent") —
declared, never inferred — with an absence-safe interactive fence: CI env vars,
scripted-looking or pasted prompts, and write-to-this-exact-file instructions
are NOT spawned markers. The prose channel stays because Task-tool subagents
inherit the parent env (no spawned prefix) — their dispatch prompt is the only
signal; #2733's env-prefix channel is untouched.

19 carve skeleton ceilings re-pinned with measured values (+~440 bytes/skill);
ship goldens refreshed for all three hosts; resolver pins extended with the
no-inference regression tests.

Co-Authored-By: Claude Fable 5 <noreply@anthropic.com>

* fix: mktemp failure aborts loudly at all three skill-content sites; failed upgrade swap restores the backup (#2679)

An empty $(mktemp) result silently disabled the redaction pass (redact-doc
resolver, ship pr-body) and made /gstack-upgrade's vendored path destructive:
clone lands at "/gstack", the swap mv fails, and rm -rf then deletes BOTH the
live install's backup and "". All three sites now guard the assignment with a
loud exit; the vendored block additionally restores the backup when the swap
fails (same failure class — backup deletion after a failed mv) and the GitLab
MR path sends the SCANNED file's bytes instead of re-rendering an unscanned
heredoc. bin/gstack-redact rejects an explicit empty --from-file path instead
of silently falling through to stdin.

Receipts: 6 of 8 new regression checks fail on a v1.77.0.0 scratch worktree.

Fixes #2679

Co-Authored-By: Claude Fable 5 <noreply@anthropic.com>

* fix(auq): the interactive fence classifies the session — it never nudges ask-count

Burn-in run 1 of the periodic repro overshot the review band (reviewCount=8 >
CEILING=7) with the fence's 'when unsure, ask' tail: that phrasing is a quota
nudge, not a classification default. The fence now states it only classifies
the session and never changes how many questions the skill asks. Pin added.

Co-Authored-By: Claude Fable 5 <noreply@anthropic.com>

* fix(ci): OSV suppression config actually loads — explicit global --config + expiring, reasoned ignores

The ignore file was inert from v1.65.0.0: OSV-Scanner only auto-discovers
configs named osv-scanner.toml (no leading dot) and applies them
per-directory, so the root config never covered lib/diagram-render/bun.lock
either way. The workflow now passes --config=.osv-scanner.toml globally.
Every IgnoredVulns entry carries a reason with an upgrade trigger and an
ignoreUntil expiry (~90 days) so suppressions must be re-justified. A wiring
test pins flag ↔ filename ↔ entry hygiene so the file can never silently go
inert again.

Co-Authored-By: Claude Fable 5 <noreply@anthropic.com>

* fix(deps): dependency wave — 105 OSV advisories → 3 reasoned suppressions, all lanes verified on the pinned scanner

Root: overrides pin ip-address 10.3.1 (defeats BOTH nested nodes — socks'
range pull and express-rate-limit's exact 10.1.0 pin, which a top-level bump
provably cannot reach) and sharp 0.35.0 (GHSA-f88m, HIGH; transformers still
pins ^0.34 upstream — smoke-tested round-trip); marked ^18.0.11; full in-range
lockfile refresh clears hono, fast-uri, protobufjs, qs, body-parser, nanoid,
uuid, immutable and friends.

lib/diagram-render (via its own build-script contract: exact pins edited,
fresh lock, dist rebuilt): mermaid 11.16.1, @excalidraw/excalidraw 0.18.1,
@excalidraw/mermaid-to-excalidraw 1.1.2 → 2.2.2 — the 1.x line exact-pinned
mermaid 10.9.x and dragged the entire duplicate mermaid-10 advisory chain
(dompurify 3.1.6, nanoid 3.3.3, lodash-es); the bundle shrinks 9.96 → 7.59 MB
with the duplicate mermaid gone. Nested exact pins that survived get scoped
overrides (nanoid 5.1.16, lodash-es 4.18.1).

Verification: clean-worktree frozen-lockfile installs (root + nested) + the
SAME osv-scanner release the action pins (v2.3.8) with the workflow's exact
scan-args → exit 0, 'No issues found'. Smoke tests cover the override
surfaces (sharp round-trip, ip-address lockfile assertion, marked parse);
socks + diagram-drift suites already pin the rest.

Supersedes #2695 (its own lockfile kept socks/ip-address@10.2.0; @anupamme's
report credited for the parallel diagnosis).

Co-Authored-By: Claude Fable 5 <noreply@anthropic.com>

* test(gbrain-sync): stub pgrep so the pin case is hermetic

The only non-dry-run --code-only child hits #1734's PATH-resolved
autopilot probe. A live host daemon is a correct refuse; the test
cannot inject processRunning. Neutralize pgrep in the fixture bindir
instead of adding a production env hatch.

Co-authored-by: Cursor <cursoragent@cursor.com>

* test(gbrain-sync): blank inherited GBRAIN_HOME in the pin child

Lock paths are checked before pgrep. Spreading process.env let a runner
GBRAIN_HOME with a live lock refuse the case before the stub ran.

Co-authored-by: Cursor <cursoragent@cursor.com>

* fix: point ship design-checklist at installed gstack/review path

The /ship Design Review step skipped the checklist because the generated path omitted the gstack/ install segment. Sync the generated skill doc and pin a regression assertion.

Co-authored-by: Cursor <cursoragent@cursor.com>
Wave-amended: goldens regenerated against the wave tree (author's golden commit 8e7a03ca superseded)

* fix(codex): a CLI that cannot execute no longer reports CODEX_MODE: ready

Follow-up to #2477. The model probe it added does a real round trip, but its
final branch is the `else` of a "model 400" grep, so it swallowed spawn ENOENT,
non-executable binaries and missing vendor payloads alongside genuine network
timeouts. All three are deterministic — retrying never helps — yet they landed
in the fail-open bucket and resolved to `ready`, so every Codex pass was
skipped in silence and the review reported itself complete.

Observed live: @openai/codex was on PATH with an empty
vendor/aarch64-apple-darwin/codex/ directory. gstack said `ready` for two
months while no Codex pass ran.

Three changes:

- `_gstack_codex_model_probe` classifies deterministic install failures (exit
  126/127, or stderr matching ENOENT/ENOEXEC/EACCES/"cannot execute binary
  file") as MODEL_UNUSABLE_INSTALL, exit 2, never cached — a reinstall is
  picked up on the next probe. Exit 124 and genuine transients still fail open,
  which is what #2477 intended.

- The preflight chain captures the probe's code instead of testing it for
  truthiness, so exit 2 routes to a new `broken_install` mode whose remedy is
  `npm install -g @openai/codex` rather than "check your model pin". A missing
  binary and an unusable model are different problems with different fixes.

- `_gstack_codex_version_check` no longer reads a broken CLI as healthy. It ran
  `codex --version 2>/dev/null | head -1`, which captures head's status, not
  codex's — and 2>/dev/null discarded the one diagnostic available. It now
  captures the real exit code and warns on non-zero. Empty-but-successful
  output stays silent, per the existing "empty output → OK" case.

Tests: 6 added to test/codex-hardening.test.ts covering both broken-install
shapes, the exit-2 contract, no caching, the transient still failing open, the
model 400 still classifying as MODEL_UNUSABLE, and the version-check warning.
845 pass / 0 fail across all 8 suites touching the changed files.

Closes #2742

Wave-amended: autoplan hand-maintained preflight chain completed (tmpl+render); install-signature grep gated on failed spawn only; goldens regenerated against the wave tree (author's golden commit 5797d326 superseded); +2 tests

* feat(redact): add Groq, Tavily and Notion API key patterns

* fix(redact): stop reporting .env.local as an internal hostname

`internal.hostname` ends in `.local|.prod|.staging|…`, so `.env.local`
matches on `env.local` and a dotenv FILENAME is reported as a leaked
internal host.

The collision is not exotic. It fires on `--env-file=.env.local` in an npm
script, `.env.staging` in a README, `.env.prod` in a .gitignore — ordinary
lines on branches that leak nothing. Measured on one private repo, three of
four MEDIUM findings in a routine push were this, and the fourth was a
deleted localhost URL. That ratio is the real cost: a scanner that reports
package.json is one people learn to skim, and skimming is how the HIGH
finding it exists for gets missed.

The guard follows the `insideUuid` precedent and stays deliberately narrow —
it exempts only a span beginning `env.` immediately preceded by a dot, i.e.
the literal `.env.<suffix>` form. `api.corp.local`, `build-7.internal` and
`myenv.local` all still report.

The test pins both directions, and the negative controls are the point: an
exemption written as "any span ending .local" would pass the dotenv half
while quietly gutting the pattern for every real host. Verified red/green —
with the validate hook removed, exactly the 6 dotenv cases fail and all 9
real-host controls still pass.

* fix: don't flag git SSH remotes as pii.email

`pii.email` matches the `git@github.com` inside
`git@github.com:acme/widgets.git`. That is a transport user@host, not a
person's address, so any diff touching a clone URL -- a deploy config's
repo URL, a submodule entry, a README clone line -- draws a spurious
MEDIUM from the pre-push hook.

Suppressed by URL shape rather than by adding `git` to
EMAIL_ALLOW_LOCALPARTS. A bare `git@` allowlist entry would also
suppress a genuine address at a domain that merely begins with "git"
(git@gitmail.com), converting a false positive into a false negative --
the worse failure for a guardrail. Two shapes are accepted:

  - `<user>@<host>:<path>.git` for ANY host, covering self-hosted
    remotes, plus the equivalent ssh:// URL form.
  - `git@<known-host>` for github.com, gitlab.com, bitbucket.org and
    ssh.dev.azure.com, whose bare form appears in docs and in
    `ssh -T git@github.com` connectivity checks with no path at all.
    Matched exactly, so gitmail.com is unaffected.

emailAllowed now receives the normalized text and the span offset so it
can see that surrounding shape; it had only ever been passed the matched
span.

Tests pin both directions: the SSH remotes go quiet, and a real address
still fires -- including at a git host (alex@github.com) and at a
git-prefixed domain (git@gitmail.com).

Co-Authored-By: Claude Opus 5 (1M context) <noreply@anthropic.com>

* fix(redact): install-prepush-hook refreshes a stale managed hook

The marker check returned before the only writer, so once a repo had the
hook, no later change to the wrapper could ever reach it. The `printf x`
fail-open fix (v1.64.0.0) has still not landed in any repo that received
the hook before it, and a wrapper naming a gstack that has since moved
stays pointed at a dead path for the same reason.

Compare the body against what this version generates: rewrite on drift,
stay a no-op when identical. The chained pre-push.local is untouched on
both paths.

The existing trailing-newline regression test cannot catch this — it
installs into a repo with no prior managed hook, the one case that was
never broken.

* fix(redact): install-prepush-hook refreshes a stale managed hook

The marker check returned before the only writer, so once a repo had the
hook, no later change to the wrapper could ever reach it. The `printf x`
fail-open fix (v1.64.0.0) has still not landed in any repo that received
the hook before it, and a wrapper naming a gstack that has since moved
stays pointed at a dead path for the same reason.

Compare the body against what this version generates: rewrite on drift,
stay a no-op when identical. The chained pre-push.local is untouched on
both paths.

The existing trailing-newline regression test cannot catch this — it
installs into a repo with no prior managed hook, the one case that was
never broken.

Wave-amended: spawnSync timeouts added to the new tests (v1.77 sync-spawn tripwire)

* refactor(redact): name the SSH-remote path lookahead constant

Wave polish on the #2734 absorption: the 512-char scp-path lookahead window
follows the UUID_CONTEXT_CHARS named-constant convention instead of a magic
number at the slice site.

Co-Authored-By: Claude Fable 5 <noreply@anthropic.com>

* fix(config): reject malformed cross_project_learnings at set

A typo was stored with exit 0, so the feature stayed off and the first-run prompt never returned. Reject like codex_reviews; do not coerce.

Co-authored-by: Cursor <cursoragent@cursor.com>

* fix(gbrain-detect): classify gbrain >= 0.43 held-lock refusal as engine-locked

gbrain 0.43+ refuses a held PGLite lock with exit 1 and the message
"GBrain's local database is already open through `gbrain serve` (MCP,
PID N)" instead of the pre-0.43 exit 124 + "connect timed out" that
the #2194 branch matches. The message matches no known pattern, so the
classifier falls through to the defensive broken-config default — and
Step 1.5 of /setup-gbrain and /sync-gbrain then tell the user to move a
perfectly healthy config.json aside and re-init the engine.

Reproduced live on gbrain 0.43.0.0, 0.44.0.0 and 0.46.30.0: with a
serve holding the lock, gstack-gbrain-detect reports
gbrain_local_status=broken-config; after stopping the serve it reports
ok with the same untouched config.

Match on the stable substring "already open through", mirroring the
existing #2194 branch semantics: engine-locked for pglite, broken-db
otherwise. Adds a fake-gbrain behavior for the 0.43+ refusal plus two
cases (pglite -> engine-locked, postgres -> broken-db).

Co-Authored-By: Claude Fable 5 <noreply@anthropic.com>

* fix(memory-helpers): a slow gitleaks probe no longer disables secret scanning

`gitleaksAvailable()` cached every failure the same way, so a 2s timeout on
`gitleaks version` was recorded as "the binary is absent" for the rest of the
process. One busy moment and the whole ingest ran unscanned behind a single
stderr line — a fail-open outcome decided by machine load rather than by
anything about the machine's setup. The caller only acts on
`scanner === "gitleaks"`, so every later file was written with no scan and no
second warning.

The probe now classifies three outcomes. ENOENT (and a present-but-unusable
binary: bad exit, EACCES) stays cached — that is a fact about the box, and
re-probing it per file would be waste. A timeout gets one retry on a 10s
budget, and if that also expires nothing is cached: the file is reported
unscanned, the warning says so in those words, and the next file probes again.

Observed under the 7-way sharded free-test runner, where spawning a shell
script inside a temp bin dir took longer than the 2s budget.

Tests: the retry path, the no-cache-on-timeout path (the second call must
re-probe), and the cached-absent path. The fake gitleaks hangs for 30s rather
than racing a short sleep against a short budget, and the budgets are chosen so
load cannot flip an outcome: 30s where the retry MUST answer, 800ms where the
probe MUST expire. An earlier draft used 1s/5s and flaked under the same shard
runner this commit is about. The existing probe test pinned `detect` to
calls[1], which a retry breaks; it now asserts the order instead of the index.

Co-Authored-By: Claude Opus 5 (1M context) <noreply@anthropic.com>
Claude-Session: https://claude.ai/code/session_0111Mq3JGwZDcstn5wYcbhSw

* fix(make-pdf): pdftotext version and flavor probe returns unknown on poppler

describeBinary reports version="unknown" flavor="unknown" for every poppler
install, so logDiagnostics prints nothing useful on the most common
implementation. Two independent causes:

1. poppler writes the -v banner to stderr and exits 0. execFileSync returns
   stdout (empty) and does not throw on a zero exit, so the stderr fallback in
   the catch block is unreachable. The in-code comment already notes poppler
   exits 0, but only the throwing path reads stderr.

2. flavor is matched against the version line alone. poppler prints
   "pdftotext version 26.06.0" on line 1 and names itself on line 2,
   "Copyright ... The Poppler Developers", so even a working stderr read
   yields "unknown".

Switch the probe to spawnSync, which returns both streams regardless of exit
status, match the version banner rather than assuming line 0, and derive the
flavor from the full output.

Measured on poppler 26.06.0 (Homebrew, macOS), same machine and binary:

  before: { version: "unknown",                  flavor: "unknown" }
  after:  { version: "pdftotext version 26.06.0", flavor: "poppler" }

xpdf is unaffected: it exits non-zero and names itself on line 1, so it
resolved correctly before and still does.

Tests use shell shims reproducing each vendor's banner, stream and exit status,
since a real pdftotext cannot be assumed present in CI. Two of the four fail on
this commit's parent; the xpdf and no-banner cases pass there and are included
as regression guards rather than red-proofs.

* fix(open-gstack-browser): pre-flight cleanup never killed the stale daemon

Step 0 read the old pid with `grep -o '"pid":[0-9]*'` and Step 2 read the port
the same way. Neither can match. Every writer of that file in
browse/src/server.ts serializes with `JSON.stringify(state, null, 2)`, so the
bytes on disk are `"pid": 12060` — colon, space, digits.

The failure was silent in the worst way. `_OLD_PID` came back empty, the kill
never ran, browse.json was deleted anyway, and the next `connect` died with
"existing daemon has different config (proxy/headed mismatch)" — an error
pointing at proxy/headed flags rather than at the cleanup that no-opped. Caught
against a daemon left over from a reboot: the operator was told to check flags
they had never passed.

Both patterns now accept optional whitespace. The new tripwire does not match
strings — it RUNS the snippets the skill hands the agent, against a state file
written exactly the way the server writes one, and asserts pid and port come
back out. A third case pins the coupling to `JSON.stringify(state, null, 2)`,
so a switch to compact JSON surfaces as a failing expectation rather than as
silence.

Co-Authored-By: Claude Opus 5 (1M context) <noreply@anthropic.com>
Claude-Session: https://claude.ai/code/session_0111Mq3JGwZDcstn5wYcbhSw

* test(make-pdf): clean up the pdftotext shim tmpdir after the suite

Wave polish on the #2690 absorption: the describe-scope mkdtemp left one
directory per run.

Co-Authored-By: Claude Fable 5 <noreply@anthropic.com>

* fix(browse): honour CHROMIUM_PROFILE in cli profile-lock cleanup

cli.ts resolved the Chromium profile dir with a hardcoded
$HOME/.gstack/chromium-profile, while browser-manager launches the profile
returned by config.resolveChromiumProfile(), which honours CHROMIUM_PROFILE
and GSTACK_HOME.

killOrphanChromium() and cleanChromiumProfileLocks() are called with no
argument, so whenever CHROMIUM_PROFILE was set they cleaned locks for, and
killed Chromium on, the DEFAULT profile rather than the one being launched.
Starting a browser with a custom profile therefore evicted an unrelated
browser running on the default profile.

Delegating to resolveChromiumProfile() also picks up GSTACK_HOME and
os.homedir(), so the cleanup path now matches the launch path on Windows
where HOME is frequently unset.

* fix(auq): the interactive fence is quota-silent — it defers to the skill's own decision points

Burn-in calibration: run 1 (fence tail 'when unsure, ask') overshot the
plan-ceo review band at reviewCount=8; run 2 (tail mentioning 'HOW MANY
questions') undershot at 1. Any ask-count language in the fence anchors the
model in one direction or the other. The tail now says only: classify as
interactive, then follow the skill's own decision-point instructions exactly
as written. Pins updated to forbid count language in either direction.

Co-Authored-By: Claude Fable 5 <noreply@anthropic.com>

* test(browse): pin cli.ts profile-dir wiring to the canonical resolver

Wave-added coverage for the #2732 absorption: a 6-line fix with zero tests is
how the hardcoded path shipped in the first place. resolveChromiumProfile's
env behavior is already pinned in config.test.ts; this pins cli.ts's
delegation and forbids the hardcoded path from returning.

Co-Authored-By: Claude Fable 5 <noreply@anthropic.com>

* fix(browse): preserve return value for async IIFE expressions in js/eval (#2727)

Wave-amended: test moved to browse/test/ (browse unit-test convention); trailing-semicolon normalization kept — it is load-bearing for the expression wrapper

* fix: bin writers drop data on Windows paths with an apostrophe

Two independent Windows git-bash bugs in the bin writers, both silent
because callers invoke these scripts with 2>/dev/null and do not check
the exit status — a hard failure was indistinguishable from success.

Bug 1 — apostrophe in the checkout path breaks the bun -e program.
gstack-learnings-log, gstack-question-log and gstack-telemetry-log build
a bun -e program as a double-quoted shell string and interpolate
SCRIPT_DIR into a single-quoted JS import specifier. A path such as
C:/Users/Someone's PC/... closes the JS string literal early and Bun
fails to parse ("Expected ; but found s"). Every learning write and every
plan-tune question event no-oped; telemetry error redaction fell to its
fail-closed null path. The #1950 cygpath -m guard did not cover this —
cygpath normalises the drive form but does not remove the apostrophe.

Fixed by not interpolating the path at all: cd into the module root and
use a relative import specifier, which is immune to apostrophes, spaces,
backslashes and MSYS paths alike. The one remaining interpolated data
path in gstack-developer-profile (readFileSync of PROFILE_FILE) is passed
via the environment instead, matching do_log_session in the same file.

Bug 2 — gstack-developer-profile --derive fails on an MSYS-form
GSTACK_HOME. GSTACK_HOME defaults to $HOME/.gstack, which under git-bash
is /c/Users/..., and Bun on Windows cannot open that form (ENOENT). This
script carried no cygpath guard at all. Fixed by normalising GSTACK_HOME
once, before PROFILE_FILE / LEGACY_FILE / the events path are derived
from it, so all three pick up the normalised value.

Adds test/hostile-path-writers.test.ts, which runs the bins from a
directory whose name contains an apostrophe and asserts that rows are
ACTUALLY WRITTEN (not merely that the exit code is 0 — exit-code-only
checks are what masked bug 1). The apostrophe repro is OS-independent:
SCRIPT_DIR derives from the script's own location, so a copied checkout
under a hostile directory name reproduces bug 1 on Linux/macOS CI too.

Wave-amended: all four writers unified on the env-var import pattern the PR already used in gstack-developer-profile (no CWD-dependent module resolution)
Wave-amended: all four writers unified on the env-var import pattern the PR already used in gstack-developer-profile (apostrophe-safe without CWD-dependent module resolution); import-shape pin updated

* fix(memory-ingest): stop two silent transcript-ingest failures

Two independent bugs made transcript pages silently fail to reach the brain.

1. Frontmatter fence gluing. buildTranscriptPage() built the closing "---"
   with no trailing newline, and session bodies always start with "## ", so
   the rendered page ended "...---## User". gbrain's frontmatter matcher
   (/^---\r?\n([\s\S]*?)\r?\n---(\r?\n|$)/ in src/core/markdown.ts) requires
   the closing "---" to end its own line, so it skipped the glued fence,
   latched onto the next standalone "---" in the transcript body, parsed the
   prose between as YAML, and dropped the page with "Invalid YAML frontmatter".
   Transcripts with no later "---" fell back to body-only, silently losing
   their frontmatter. Fix: emit the fence on its own line with a blank
   separator, matching renderPageBody()'s artifact branch.

2. Slug collisions. Two source files can map to one path-derived slug (a
   session resumed under the same id on one day, or two ids sharing a 12-char
   prefix). writeStaged() names each file "${slug}.md", so the second
   overwrote the first; gbrain collected N-1 of N staged files and the
   reconciliation guard failed the whole batch every run. Fix:
   disambiguateSlugs() keeps the first occurrence and gives each later collider
   a stable "-<sha8(source_path)>" suffix (deterministic, and slug + page_slug
   move together so writeStaged, the failure mapping, and state recording agree).

Exports buildTranscriptPage, renderPageBody, and disambiguateSlugs for tests.
Adds regression tests for both failures.

Co-Authored-By: Claude Opus 4.8 <noreply@anthropic.com>
Wave-amended: contributor's local-workaround docblock note removed; issue refs retargeted #2653 (closed by its author) -> #2724 (the live 887-staged-to-0-ingested report)

* fix: keep feature markers in GStack state

* fix: align feature marker seeding with GStack state

Wave-amended: seeding relocation re-applied to the composite action (v1.77 moved CI seeding out of the inline workflow steps the original commit edited); wiring tripwire re-pointed accordingly; stale marker comment updated

* chore(upgrade): migrate feature-discovery markers to GSTACK_HOME

Follow-through on the #2748 absorption: existing installs answered the
continuous-checkpoint and model-overlay prompts with markers beside the
install; v1.78 reads them from GSTACK_HOME. Copy them once so nobody gets
re-prompted. Idempotent, non-fatal.

Co-Authored-By: Claude Fable 5 <noreply@anthropic.com>

* fix(land-and-deploy): check fork branch in head repo

Wave-amended: gh leaves .headRepository.nameWithOwner empty (verified live against gh 2.83) — owner/name now composed from headRepositoryOwner.login + headRepository.name so reconciliation is not a permanent no-op; fork branches get report-not-delete (maintainers lack fork push rights); pins updated

* test: spawn timeouts on the #2748 marker tests (v1.77 sync-spawn tripwire)

Co-Authored-By: Claude Fable 5 <noreply@anthropic.com>

* test: spawn timeouts on absorbed-PR tests (v1.77 sync-spawn tripwire)

The absorbed community tests (#2748, #2676, #2714, #2720) were authored
before the v1.77 tripwire required a timeout on every sync spawn in the test
trees.

Co-Authored-By: Claude Fable 5 <noreply@anthropic.com>

* fix(gbrain): a slow --version probe classifies as timeout, never no-cli (#2716)

resolveGbrainBin's bare catch collapsed 'gbrain missing' and 'gbrain present
but the 2s --version budget expired' into the same null — freshClassify then
said no-cli, which the --is-ok whitelist from #1964 does NOT forgive, so a
bun-shim install on a loaded POSIX box silently lost every brain-aware block.
The probe now returns a discriminated result (cached per-process, same
lifetime the old null had) using the same killed/SIGTERM/ETIMEDOUT
discrimination the sources-list probe below already uses; timeout routes to
the forgiven 'timeout' status. GSTACK_GBRAIN_VERSION_PROBE_TIMEOUT_MS test
override added (same precedent as the sources-probe override).

Receipt: the slow-but-present sibling test fails on a v1.77.0.0 scratch
worktree (classifies no-cli there).

Fixes #2716

Co-Authored-By: Claude Fable 5 <noreply@anthropic.com>

* fix(codex): close the consult-mode fence, report turn.failed as a failure, capture exit codes portably (#2671, #2669)

Three defects in the codex skill sections:

- The resumed-session bash block never closed its fence; every fenced region
  after it inverted (prose rendered as code, the synthesis-recommendation tail
  rendered inert). A repo-wide fence-pairing test now scans every generated
  SKILL.md and sections/*.md with a CommonMark-faithful state machine (an
  info-string opener inside a fence is literal content — nested template
  examples in document-generate/make-pdf stay legal; a file ending inside a
  fence fails).

- The JSONL parsers had no turn.failed branch: a turn that STATED its failure
  was reported as 'possible mid-stream disconnect'. Challenge and consult now
  print the event's error and run a three-way completeness check (failed-with-
  reason / silent-disconnect / ok); consult previously had no completeness
  check at all.

- ${PIPESTATUS[0]} is empty under zsh, so hang detection never fired and
  every clean run printed a spurious '[codex exit ]'. All three capture sites
  use ${PIPESTATUS[0]:-${pipestatus[1]}}, pinned statically and EXECUTED
  under real bash and zsh in the new test. Expect a step-change in
  codex_timeout telemetry — the counter starts firing for zsh users.

Receipt: the portability pin fails on a v1.77.0.0 scratch worktree; the fence
fix is structural (17 → 18 fence lines, tail no longer inside a block).

Fixes #2671
Fixes #2669

Co-Authored-By: Claude Fable 5 <noreply@anthropic.com>

* fix: outside-voice fallback is labeled honestly — same model family, not cross-model (#2735)

When Codex is unavailable, the plan-review outside voice falls back to a
Claude subagent and the copy sold it as 'cross-model coverage' with 'genuine
independence'. Fresh context is real; cross-model validation is not — a user
weighing 'both reviewers agree' deserves to know both reviewers share a model
family. Six canonical strings fixed at the resolver source (constants.ts
not_installed/not_authed, review.ts outside-voice bullet + three dispatch
paragraphs); ~10 generated docs and the ship goldens regenerated. Printing
the resolved fallback model at dispatch time is descoped as a functional
change (follow-up in the wave dispositions).

Fixes #2735

Co-Authored-By: Claude Fable 5 <noreply@anthropic.com>

* fix(relink): skill_prefix patches the gbrain render too — the file the host actually serves (#2738)

gstack-relink linked SKILL.md from RENDER_DIR when a gbrain render was active
but ran gstack-patch-names only on INSTALL_DIR, so the served frontmatter kept
the unprefixed name and skill_prefix=true silently no-oped for every
brain-aware skill. The render tree (user-owned, untracked) is now patched too;
gstack-patch-names is idempotent so repeat relinks never double-prefix. The
gen-skill-docs note that pointed users at relink now describes what relink
actually covers.

Receipt: the new test fails on a v1.77.0.0 scratch worktree (served render
keeps 'name: qa').

Fixes #2738

Co-Authored-By: Claude Fable 5 <noreply@anthropic.com>

* fix(render): section refs point at the FINAL render dir, never the tmp swap dir (#2692)

gen-skill-docs bakes its --out-dir into rendered CONTENT (rewriteSectionBase),
and both swap-in callers (setup, gstack-config gbrain-refresh) render into
claude.tmp.<pid> before the #2569 atomic rename — so every rendered skill
carried ~9 dead section Read paths that pointed at a directory the swap had
just deleted. New --link-root flag names the final serving dir (defaults to
--out-dir for direct-render callers: bin/dev-setup, dev-skill.ts, mkdtemp
tests — full caller audit in the wave notes); the rewrite now uses a
replacement callback so a $-bearing configured path can't expand as $& in a
replacement string. The swap logic itself stays byte-identical. Tests pin the
generator contract (tmp out-dir files reference the final dir, $-bearing
path included) and both callers' wiring.

Fixes #2692

Co-Authored-By: Claude Fable 5 <noreply@anthropic.com>

* feat(setup): persistent timeline Stop hook opt-out — timeline_stop_hook config gate (#2677)

--no-team is a one-shot teardown, so every later bare ./setup (including the
ones /gstack-upgrade runs) re-registered the timeline Stop hook with no way
to say 'never'. New gate mirrors the plan_tune_hooks pattern: flag
(--timeline-stop-hook/--no-timeline-stop-hook) > env
(GSTACK_TIMELINE_STOP_HOOK) > saved config (timeline_stop_hook) > default
yes. An explicit flag persists to config so the decision survives upgrades;
an explicit 'no' also removes a live registration (reconciliation), so the
opt-out works against installs registered by an older setup. --no-team
semantics unchanged (NO_TEAM_MODE is never initialized from config). Full
gstack-config surface: DEFAULTS entry, header docs, list/defaults
enumeration, warn-and-default validation.

Fixes #2677

Co-Authored-By: Claude Fable 5 <noreply@anthropic.com>

* fix(browse): tame the macOS headless GPU spin + reap the lock-less headless Chromium on stop (#2709)

Two defects in one report. On macOS 26 / Apple Silicon the headless-shell GPU
process pegs ~800% CPU indefinitely after real page work and --disable-gpu
alone is not enough; the reporter validated that adding
--disable-software-rasterizer/--disable-gpu-compositing/--disable-gpu-watchdog
drops it to 0.0% with screenshots still working. The flag block is a pure
platform-parameterized function (unit-tested on any host), darwin-gated,
headless-only (buildGStackLaunchArgs feeds the headed/GBrowser paths where
GPU-off is wrong), with a GSTACK_DISABLE_GPU=off escape.

Separately: the headless launch has no userDataDir, so it never writes the
SingletonLock that killOrphanChromium walks — 'browse stop' reported success
while the orphan kept spinning. The daemon now records the launched child's
pid + wall-clock start time in the state file (the xvfbPid/xvfbStartTime
contract), and stop paths reap a survivor only after verifying BOTH the
recorded start time and a Chromium-looking cmdline — a recycled PID, even one
running a different legitimate Chromium, is never killed (identity tests
include the coreutils-shebang trap that defeats argv0 renames).

macOS efficacy is per the reporter's validation; live re-verification on
Apple silicon is tracked in TODOS.md.

Refs #2709

Co-Authored-By: Claude Fable 5 <noreply@anthropic.com>

* fix(wtree): a failed touch falls through to the HEAD seed instead of reopening the racy window (#2687)

The v1.74 racy-git fix carries the real index's mtime onto the temp copy —
but its 'touch -r … || true' meant a FAILED touch silently kept the copy's
fresh stamp, marking every entry non-racy and reopening the exact same-size-
rewrite hole. A failed touch now discards the copy and seeds from read-tree
HEAD (slower; every entry re-hashed; fingerprint stays honest).

Verification for #2687 itself: the reporter's same-size-rewrite repro run 20
iterations against this tree — 0 misses (the underlying race was fixed by
v1.74's b1485d88 with its own regression test; this wave verifies and closes,
it does not claim that fix). Receipt: the stubbed-touch test fails on a
v1.77.0.0 scratch worktree.

Fixes #2687

Co-Authored-By: Claude Fable 5 <noreply@anthropic.com>

* test: rewrite gate pin follows the LINK_ROOT rename (#2692)

Co-Authored-By: Claude Fable 5 <noreply@anthropic.com>

* docs: v1.78 fix-wave deferrals filed in TODOS.md

Co-Authored-By: Claude Fable 5 <noreply@anthropic.com>

* v1.78.0.0 release metadata: VERSION, package.json translation, CHANGELOG wave entry, agents digest

Co-Authored-By: Claude Fable 5 <noreply@anthropic.com>

* docs(osv): ignore ledger names its filed tracking issues (#2753, #2754)

Co-Authored-By: Claude Fable 5 <noreply@anthropic.com>

* fix(redact): large reports survive the pipe — exitCode instead of process.exit; inert test payload

The wave's PR quality gate failed closed: gate-secret-scan.mjs pipes the
diff's added lines into gstack-redact and parses the JSON report, but
process.exit() discards stdout still buffered in the pipe — this wave's
646-finding report (202 KB) is the first big enough to arrive truncated
(~145 KB) at node's collector, so JSON.parse failed and the gate read
'no report' as HIGH. The report and auto-redact body paths now set
process.exitCode and let the runtime drain stdout; exit-code contract
unchanged (verified 0/2/3 end-to-end). Also: the C1 test's stdin payload no
longer uses a provider-prefix credential shape (the gate correctly flagged
it; the content was never read on the error path under test).

Co-Authored-By: Claude Fable 5 <noreply@anthropic.com>

* test(memory-ingest): fence regression test survives Windows tmpdirs

Wave polish on the #2699 absorption: the hand-built JSONL interpolated the
raw tmpdir into a JSON string — on Windows (D:\a\...) that's an invalid
escape, the user line was silently dropped, and the body started at
'## Assistant' (Windows Free Tests red). JSON.stringify the path.

Co-Authored-By: Claude Fable 5 <noreply@anthropic.com>

* fix(auq): the interactive fence ends at classification — all behavioral tails removed

The pinned-container periodic lane proved the collapse dead (reviewCount 0 →
7/8/5 across the AUQ suite) but flagged the fence's remaining behavioral
clause: 'never adds, removes, or batches the skill's decision points' broke
the paired-finding control (5 > 4 — it suppressed the batching that fixture
expects), and the band overshot its ceiling (8 > 7). Every behavioral tail
tried so far skewed counts somewhere ('when unsure, ask' → 8; 'HOW MANY
questions' → 1; 'never batches' → paired control red). The fence now ends at
'When unsure, default to interactive.' — classification only, zero behavior
words. Pins forbid every tried-and-failed phrasing.

Co-Authored-By: Claude Fable 5 <noreply@anthropic.com>

* fix(auq): the spawned trigger is the STATUS echo, nothing else — prose channel removed from the eager path

Two pinned-container periodic rounds showed that ANY dispatch-prompt
declaration channel in rule 1 keeps question counts unstable (round 1, fence
with behavioral clause: paired control 5>4, band 8>7; round 2, bare fence:
intermittent 0s return, paired control breaks both directions). The stable
regime CI was calibrated against had no spawned prose in the eager path at
all. Rule 1 now keys on exactly one machine-verifiable thing: the preamble's
own SESSION_KIND: spawned STATUS echo. No text from a dispatch prompt, file,
or page can flip a session to auto-choose (the strongest anti-injection
form). Subagents that missed the env marker are caught at FAILURE time by
the AUQ hooks' spawned escape (explicit declaration, never inference) — a
channel that never enters an interactive session's eager reasoning.

This reverses the wave's earlier explicit-declaration middle ground (and
adopts the outside voice's twice-made echo-only argument) on the new
evidence. #2733 protected: skill-e2e-docsync-spawned (gate) passes 1/1 on
this prose — the ship Step-18 dispatch forces the env prefix, so the echo
fires there.

Co-Authored-By: Claude Fable 5 <noreply@anthropic.com>

* docs: periodic-lane stabilization residual filed (#2756)

Co-Authored-By: Claude Fable 5 <noreply@anthropic.com>

* fix(browse): chromium reap works off-Linux and on every stale-state path

readPidCmdline fell back to '' on darwin (no /proc), so the identity gate
never matched and reapRecordedChromium was inert on the platform #2709's
GPU-spin reap actually targets — it now falls back to ps -o command=.
readPidStartTime no longer throws when ps is missing (Windows): a launch
must never die to a reap-bookkeeping probe. Three stale-state cleanup
paths (dead-daemon stop, startServer stale cleanup, headed-connect) now
reap the recorded chromium BEFORE unlinking the state file instead of
orphaning it, and the stop-path wait polls (100ms steps, 1s cap) instead
of sleeping a fixed 500ms. Wiring pinned: server-state pid/start-time
write, all five cli.ts reap call sites, headless-only GPU-flag push.

Co-Authored-By: Claude Fable 5 <noreply@anthropic.com>

* fix(browse): chained IIFE + second statement no longer misclassified as one expression

isSingleParenOrIifeExpression accepted any tail after the initial group's
close as long as trailing chars looked chain-ish, so
`(async()=>{await 1})().then(x=>x); console.log('done')` classified as a
single expression and the expression wrapper emitted a SyntaxError. The
tail is now consumed as a strict member/call/index/optional-chain walk to
END of input via a shared string/escape-aware findBalancedClose scanner;
anything else (';', operators) demotes to the block wrapper. Negative +
positive tests added.

Co-Authored-By: Claude Fable 5 <noreply@anthropic.com>

* refactor(browse): move headlessGpuArgs below the import block

The #2709 helper landed between two import statements; imports now stay
contiguous. No behavior change.

Co-Authored-By: Claude Fable 5 <noreply@anthropic.com>

* fix(codex-probe): timed-out probe (124) keeps its fail-open contract

Exit 124 reached the string-signature branch before the timeout fail-open,
so a slow probe whose partial output happened to quote 'permission denied'
classified as MODEL_UNUSABLE_INSTALL — a deterministic-broken verdict from
a transient condition. 124 is now excluded from the signature branch, and
the detect/display greps share one hoisted _BROKEN_SIG regex (they had
already drifted: display dropped 'not executable').

Co-Authored-By: Claude Fable 5 <noreply@anthropic.com>

* fix(codex): JSONL parser initializes its state vars in both modes

challenge-mode initialized turn_completed_count but tested turn_failed via
'in dir()'; consult-mode initialized neither and rebuilt the counter with
a dir() conditional per event. Both parsers now init turn_completed_count
and turn_failed up front and use plain checks — same semantics, no
module-globals introspection.

Co-Authored-By: Claude Fable 5 <noreply@anthropic.com>

* fix(ship): PR/MR create aborts on a missing or empty scanned body file

Both the gh and glab send blocks now guard [ -s "$PR_BODY_FILE" ] and the
prose restates that the variable comes from the scan block — bash blocks
run in separate shells, and an unset/empty path would previously send an
empty body (gh) or cat's error output (glab) instead of the scanned bytes.
Codex/factory ship goldens regenerated.

Co-Authored-By: Claude Fable 5 <noreply@anthropic.com>

* fix(upgrade): abort when a stale .bak already exists at the install path

A leftover $INSTALL_DIR.bak from a crashed upgrade would make the mv nest
the live install inside it, and the failure-restore arm would 'restore'
the stale backup — possibly deleting the only good copy. The upgrade now
refuses to start and tells the user to inspect/salvage the backup.

Co-Authored-By: Claude Fable 5 <noreply@anthropic.com>

* fix(redact-doc): mktemp-failure message names what it refuses to send

'refusing to send unscanned <noun>' read as if 'unscanned' modified a
missing word for sink nouns like 'the spec body'; now 'refusing to send
<noun> unscanned'. Generated spec section refreshed.

Co-Authored-By: Claude Fable 5 <noreply@anthropic.com>

* fix(setup): typo'd timeline-stop-hook value warns instead of persisting

--timeline-stop-hook=noo silently normalized to yes AND wrote yes to
config — a persisted decision the user never made. Unrecognized values now
warn (naming the source), apply the default for this run only, and skip
the config write. The opt-out log line names the actual decision source
(flag/env/config) and no longer claims a removal that may not have
happened.

Co-Authored-By: Claude Fable 5 <noreply@anthropic.com>

* fix(memory-helpers): slow-probe warning no longer suppresses the absent warning

One shared _gitleaksWarned flag served two different messages: a 'machine
under load, retrying next file' warning early in a run permanently
silenced the later 'gitleaks not in PATH; secret scanning disabled'
warning — the user never learned scanning was off for good. Split into
per-message flags.

Co-Authored-By: Claude Fable 5 <noreply@anthropic.com>

* refactor(lib): shared isExecTimeout helper; export GbrainBinProbe

The killed/SIGTERM/ETIMEDOUT discrimination was hand-rolled at three sites
(gbrain version probe, engine classifier, gitleaks probe) and free to
drift; it now lives once in lib/gbrain-exec.ts. GbrainBinProbe is exported
(it's the return type of exported probeGbrainBin) and the cache carries a
rationale comment: caching a timeout for process lifetime is deliberate —
the memo dedupes the ~3 probes of one short-lived preamble process.

Co-Authored-By: Claude Fable 5 <noreply@anthropic.com>

* refactor(gen-skill-docs): extract parsePathFlag; fix rewriteSectionBase docstring

--out-dir and --link-root shared near-identical inline parsing; one helper
now owns it. The rewriteSectionBase docstring said 'no-op when --out-dir
is unset' but the gate is the link root (which --link-root can set
independently) — it now describes the real behavior.

Co-Authored-By: Claude Fable 5 <noreply@anthropic.com>

* refactor(memory-ingest): reunite preparePages with its docblock; pin disambiguateSlugs wiring

The #2724 disambiguateSlugs block was inserted between preparePages'
docblock and the function, orphaning the secret-scanning policy doc onto
the wrong symbol. Reordered. A call-site pin now asserts the prepare→stage
flow actually invokes disambiguateSlugs, so a refactor can't drop the call
while every unit test stays green.

Co-Authored-By: Claude Fable 5 <noreply@anthropic.com>

* test(hostile-path): per-run mkdtemp root; telemetry-log redaction coverage

The suite used a FIXED tmpdir name, so concurrent runs (sharded runner,
sibling worktrees) tore down each other's trees mid-flight — now a
per-run mkdtemp root with the apostrophe dir inside. gstack-telemetry-log
was the one bin named in the suite header with no test: it now must append
a real row under the hostile path with the credential span redacted
(<REDACTED-github.pat>) and the rest of the message preserved.

Co-Authored-By: Claude Fable 5 <noreply@anthropic.com>

* test(config): signal-killed spawns map to -1, not exit 0

Both cfg() helpers defaulted a null spawn status to 0 — a child killed by
signal would read as success and mask real failures.

Co-Authored-By: Claude Fable 5 <noreply@anthropic.com>

* test(upgrade): v1.78.0.0 feature-marker migration suite

The only migration without a dedicated test. Covers copy-when-absent
(script must mkdir GSTACK_HOME itself), destination-wins (never
overwrites), clean no-op, and two-run idempotence — asserting file
existence and contents, not just exit codes.

Co-Authored-By: Claude Fable 5 <noreply@anthropic.com>

* test(auq): pin the explicit-declaration-only spawned escape sentence

SPAWNED_ESCAPE_SENTENCE's tightened wording had no pin: positive pins on
the explicit-declaration clause, negative pins on the retired v1.76 loose
parentheticals ('e.g. your dispatch prompt says', 'marks this session as
spawned'), and a drift guard that both hook directives embed the constant
verbatim.

Co-Authored-By: Claude Fable 5 <noreply@anthropic.com>

* test(gbrain): invalid version-probe timeout env falls back to the default

GSTACK_GBRAIN_VERSION_PROBE_TIMEOUT_MS set to 'abc', '-1', or '0' must use
the default budget — exercised behaviorally through probeGbrainBin with a
fresh PATH per case (the memo keys on PATH).

Co-Authored-By: Claude Fable 5 <noreply@anthropic.com>

* test(codex): execute the JSONL parser under real python3; fence scanner tracks opener length

The parser's turn.completed/turn.failed/disconnect semantics were pinned
by shape only — now the python block is extracted from both RENDERED
sections and run against synthetic event streams (tokens line, FAILED +
not-a-disconnect, silence -> disconnect warning, SESSION_ID echo), with
byte-equivalence safety pins on the bash double-quote extraction. The
fence scanner also gains CommonMark opener-length tracking: a 4-backtick
fence wrapping a 3-backtick example no longer false-positives, with a
self-test.

Co-Authored-By: Claude Fable 5 <noreply@anthropic.com>

* test(redact): large report survives a slow piped consumer

Pins the >145KB truncation regression (process.exit before the pipe
drained): 900 MEDIUM findings -> 259KB JSON report through a sleep-first
POSIX consumer that holds the 64KiB kernel buffer full at child exit;
asserts complete parseable JSON with matching counts and exit 2, plus an
--auto-redact mirror (700 redactions, final sentinel byte arrives).
Harness proven red against a copy of the bin with process.exit restored.

Co-Authored-By: Claude Fable 5 <noreply@anthropic.com>

* test(dev-setup): update LINK_ROOT source pin to the parsePathFlag shape

Companion to the gen-skill-docs parsePathFlag extraction: the pin still
asserts the same invariant (LINK_ROOT defaults to OUT_DIR, so an in-place
render stays a byte-exact no-op) against the new expression.

Co-Authored-By: Claude Fable 5 <noreply@anthropic.com>

* docs(changelog): fix-batch properties folded into the v1.78.0.0 entry

Stale-backup refusal + empty-scanned-body guard on the mktemp bullet, the
redact pipe-truncation fix as its own item (a v1.77 bug), and test counts
refreshed to the post-fix-batch suite (8,660).

Co-Authored-By: Claude Fable 5 <noreply@anthropic.com>

* test(upgrade): migration test resolves bash through the parent PATH

A hardcoded /usr/bin:/bin child PATH breaks spawn('bash') on the Windows
curated lane (spawn resolves against the CHILD env's PATH; no bash.exe
lives there). Hermeticity is carried by HOME/GSTACK_* overrides, not PATH.
Found by the cycle-2 review pass.

Co-Authored-By: Claude Fable 5 <noreply@anthropic.com>

* fix(memory-helpers): per-run cooldown bounds the slow-gitleaks probe cost

Retrying a slow probe per FILE (#2715's slow!=absent split) re-paid up to
probe+retry (12s default) per file — an 887-file ingest on a loaded box
spent hours re-asking the same slow question. After 3 consecutive slow
answers the run stops probing and warns once that remaining files go
unscanned; the availability cache is still never written, so the next
process probes fresh. Slow/absent discrimination is unchanged.

Co-Authored-By: Claude Fable 5 <noreply@anthropic.com>

* fix(memory-ingest): slug assignments persist across runs via the state consult

First-occurrence-keeps-bare was walk-order-dependent ACROSS runs: a source
that got the suffixed slug once could take the bare slug the next run (its
collider aged out or was skipped as unchanged), leaving gbrain holding the
same transcript under two slugs — and a NEW collider could claim a bare
slug that state shows belongs to an unchanged source, silently overwriting
that page. disambiguateSlugs now consults state.sessions: a recorded slug
stays owned by its source_path, re-ingested sources keep their slug
verbatim, fresh assignments never take another source's slug, and legacy
duplicate records (pre-#2724 overwrites) resolve first-owner-wins and
self-heal on the next state write. Stateless behavior is unchanged.

Co-Authored-By: Claude Fable 5 <noreply@anthropic.com>

* docs(changelog): D2/D3 properties folded into the absorbed-PR bullets

Gitleaks per-run probe cooldown on the #2715 credit; cross-run slug
persistence on the #2699/#2724 credit.

Co-Authored-By: Claude Fable 5 <noreply@anthropic.com>

* docs: update project documentation for v1.78.0.0

README.md: the persistent timeline Stop hook opt-out (#2677) — flag,
env var, and config key with resolution order. BROWSER.md: browse stop
against a dead daemon now reaps the recorded headless Chromium child,
identity-verified (#2709). CLAUDE.md + CONTRIBUTING.md: free-suite test
count ~7,000 → ~8,700 (8,660 as of this wave).

Co-Authored-By: Claude Fable 5 <noreply@anthropic.com>

* docs: cross-model doc review fixes for v1.78.0.0

CONTRIBUTING.md: the day-to-day example now edits the .tmpl (SKILL.md
is generated); the OSV row states the explicit --config load and the
reasoned, expiring ignore contract. BROWSER.md: stop row mentions the
identity-checked Chromium reap; env table gains CHROMIUM_PROFILE and
GSTACK_DISABLE_GPU rows.

Co-Authored-By: Claude Fable 5 <noreply@anthropic.com>

* docs(changelog): headline claims what the receipts show

"Both red weekly lanes are green again" overclaimed: OSV is verifiably
green (pinned scanner, frozen install, branch dispatch), but the periodic
lane keeps its pre-wave churn (#2756) — what this wave proves is that the
v1.76 regression that silenced plan reviews is dead. Flagged by the
cross-model doc review; headline now leads with the user-visible outcome.

Co-Authored-By: Claude Fable 5 <noreply@anthropic.com>

---------

Co-authored-by: Claude Fable 5 <noreply@anthropic.com>
Co-authored-by: y$un_ <forrest.sun527@gmail.com>
Co-authored-by: Cursor <cursoragent@cursor.com>
Co-authored-by: Lockyer <135391289+Lockyer228@users.noreply.github.com>
Co-authored-by: Udhdhav kheni <udhavkheni12@gmail.com>
Co-authored-by: schienbiz <274676847+schienbiz@users.noreply.github.com>
Co-authored-by: David Park <show@davidani.com>
Co-authored-by: alopes50 <alex@alexlopes.com>
Co-authored-by: Peter van Leeuwen <petervanleeuwen@SB-petervanleeuwen.local>
Co-authored-by: Denis Zjukow <denis.zjukow@gmail.com>
Co-authored-by: Paul Snyman <5826275+snymanpaul@users.noreply.github.com>
Co-authored-by: Adam Badar <badaradam10@gmail.com>
Co-authored-by: loulanyue <260355617@qq.com>
Co-authored-by: Shreshth Kapoor <shreshth@osiflow.com>
Co-authored-by: Ryan Ayers <rayers@dividia.net>
Co-authored-by: Simon Altit <simon.altit@gmail.com>
Co-authored-by: ptt <1928627998@qq.com>
2026-09-01 11:15:11 -07:00

59 KiB

Review Sections (after scope is agreed)

Anti-skip rule: Never condense, abbreviate, or skip any review section (1-4) regardless of plan type (strategy, spec, code, infra). Every section in this skill exists for a reason. "This is a strategy doc so implementation sections don't apply" is always wrong — implementation details are where strategy breaks down. If a section genuinely has zero findings, say "No issues found" and move on — but you must evaluate it.

Anti-shortcut clause: The plan file is the OUTPUT of the interactive review, not a substitute for it. Writing every finding into one plan write and calling ExitPlanMode without firing AskUserQuestion is the precise failure mode of the May 2026 transcript bug — the model explored, found issues, and dumped them into a deliverable rather than walking the user through them. If you have ANY non-trivial finding in any review section, the path from finding to ExitPlanMode goes THROUGH AskUserQuestion. Zero findings in every section is the only path to ExitPlanMode that bypasses AskUserQuestion. If you find yourself wanting to write a plan with findings before asking, stop and call AskUserQuestion now — that's the bug, recognize it.

Prior Learnings

Search for relevant learnings from previous sessions:

_CROSS_PROJ=$(~/.claude/skills/gstack/bin/gstack-config get cross_project_learnings 2>/dev/null || echo "unset")
echo "CROSS_PROJECT: $_CROSS_PROJ"
if [ "$_CROSS_PROJ" = "true" ]; then
  ~/.claude/skills/gstack/bin/gstack-learnings-search --limit 10 --cross-project 2>/dev/null || true
else
  ~/.claude/skills/gstack/bin/gstack-learnings-search --limit 10 2>/dev/null || true
fi

If CROSS_PROJECT is unset (first time): Use AskUserQuestion:

gstack can search learnings from your other projects on this machine to find patterns that might apply here. This stays local (no data leaves your machine). Recommended for solo developers. Skip if you work on multiple client codebases where cross-contamination would be a concern.

Options:

  • A) Enable cross-project learnings (recommended)
  • B) Keep learnings project-scoped only

If A: run ~/.claude/skills/gstack/bin/gstack-config set cross_project_learnings true If B: run ~/.claude/skills/gstack/bin/gstack-config set cross_project_learnings false

Then re-run the search with the appropriate flag.

If learnings are found, incorporate them into your analysis. When a review finding matches a past learning, display:

"Prior learning applied: [key] (confidence N/10, from [date])"

This makes the compounding visible. The user should see that gstack is getting smarter on their codebase over time.

1. Architecture review

Evaluate:

  • Overall system design and component boundaries.
  • Dependency graph and coupling concerns.
  • Data flow patterns and potential bottlenecks.
  • Scaling characteristics and single points of failure.
  • Security architecture (auth, data access, API boundaries).
  • Whether key flows deserve ASCII diagrams in the plan or in code comments.
  • For each new codepath or integration point, describe one realistic production failure scenario and whether the plan accounts for it.
  • Distribution architecture: If this introduces a new artifact (binary, package, container), how does it get built, published, and updated? Is the CI/CD pipeline part of the plan or deferred?

For each issue found in this section, call AskUserQuestion individually. One issue per call. Present options, state your recommendation, explain WHY. Do NOT batch multiple issues into one AskUserQuestion. Use the preamble's AskUserQuestion Format section. The AskUserQuestion call is a tool_use, not prose — call the tool directly.

STOP. Do NOT proceed to the next review section, edit the plan file with the proposed fix, or call ExitPlanMode until the user responds. An issue with an "obvious fix" is still an issue and still needs explicit user approval before it lands in the plan. Loading the AskUserQuestion schema via ToolSearch and then writing the recommendation as chat prose is the failure mode this gate exists to prevent.

Confidence Calibration

Every finding MUST include a confidence score (1-10):

Score Meaning Display rule
9-10 Verified by reading specific code. Concrete bug or exploit demonstrated. Show normally
7-8 High confidence pattern match. Very likely correct. Show normally
5-6 Moderate. Could be a false positive. Show with caveat: "Medium confidence, verify this is actually an issue"
3-4 Low confidence. Pattern is suspicious but may be fine. Suppress from main report. Include in appendix only.
1-2 Speculation. Only report if severity would be P0.

Finding format:

`[SEVERITY] (confidence: N/10) file:line — description`

Example: `[P1] (confidence: 9/10) app/models/user.rb:42 — SQL injection via string interpolation in where clause` `[P2] (confidence: 5/10) app/controllers/api/v1/users_controller.rb:18 — Possible N+1 query, verify with production logs`

Pre-emit verification gate (#1539 — kills the "field doesn't exist" FP class)

Before any finding is promoted to the report, the gate requires:

  1. Quote the specific code line that motivates the finding — file:line plus the verbatim text of the line(s) that triggered it. If the finding is "field X doesn't exist on model Y", quote the lines of class Y where the field would live. If "dict.get() might return None", quote the dict initialization. If "race condition between A and B", quote both A and B.

  2. If you cannot quote the motivating line(s), the finding is unverified. Force its confidence to 4-5 (suppressed from the main report). It still goes into the appendix so reviewers can audit calibration, but the user does NOT see it in the critical-pass output. Do not work around this by inventing speculative confidence 7+ — that defeats the gate.

Framework-meta nudge: When the symbol is generated by a framework metaclass, descriptor, ORM Meta inner-class, or migration history (Django Meta, Rails has_many/scope, SQLAlchemy relationship/Column, TypeORM decorators, Sequelize init/belongsTo, Prisma generated client), quote the meta-construct (the Meta block, the migration, the decorator, the schema file) instead of expecting the literal name in the class body. The verification is "I read the source that creates this symbol", not "I grep'd for the name and didn't find it." Deeper framework-aware verification (model introspection, migration-history-aware checks, ORM dialect detection) is deliberately out of scope for the lighter gate — see the deferred ~/.gstack-dev/plans/1539-framework-aware-review.md design doc.

The FP classes the gate kills (measured against Django Sprint 2.5 #1539):

FP class Why the gate catches it
"field doesn't exist on model" Requires quoting the model class body or Meta; the field's absence becomes obvious
"dict.get() might be None" Requires quoting the dict initialization (e.g. Django form's cleaned_data is {}-initialized)
"save() might lose fields" Requires quoting the ORM signature or model definition
"update_fields might miss X" Requires quoting the field set; if X doesn't exist, the FP is self-evident

Calibration learning: If you report a finding with confidence < 7 and the user confirms it IS a real issue, that is a calibration event. Your initial confidence was too low. Log the corrected pattern as a learning so future reviews catch it with higher confidence.

2. Code quality review

Evaluate:

  • Code organization and module structure.
  • DRY violations—be aggressive here.
  • Error handling patterns and missing edge cases (call these out explicitly).
  • Technical debt hotspots.
  • Areas that are over-engineered or under-engineered relative to my preferences.
  • Existing ASCII diagrams in touched files — are they still accurate after this change?

For each issue found in this section, call AskUserQuestion individually. One issue per call. Present options, state your recommendation, explain WHY. Do NOT batch multiple issues into one AskUserQuestion. Use the preamble's AskUserQuestion Format section. The AskUserQuestion call is a tool_use, not prose — call the tool directly.

STOP. Do NOT proceed to the next review section, edit the plan file with the proposed fix, or call ExitPlanMode until the user responds. An issue with an "obvious fix" is still an issue and still needs explicit user approval before it lands in the plan. Loading the AskUserQuestion schema via ToolSearch and then writing the recommendation as chat prose is the failure mode this gate exists to prevent.

3. Test review

100% coverage is the goal. Evaluate every codepath in the plan and ensure the plan includes tests for each one. If the plan is missing tests, add them — the plan should be complete enough that implementation includes full test coverage from the start.

Test Framework Detection

Before analyzing coverage, detect the project's test framework:

  1. Read CLAUDE.md — look for a ## Testing section with test command and framework name. If found, use that as the authoritative source.
  2. If CLAUDE.md has no testing section, auto-detect:
setopt +o nomatch 2>/dev/null || true  # zsh compat
# Detect project runtime (markers are evidence, not commands to run blind)
[ -f manage.py ] && echo "RUNTIME:python FRAMEWORK:django"
{ [ -f pyproject.toml ] || [ -f pytest.ini ] || [ -f tox.ini ] || [ -f setup.cfg ] || [ -f requirements.txt ]; } && echo "RUNTIME:python"
[ -f Gemfile ] || [ -f Rakefile ] || [ -f .rspec ] && echo "RUNTIME:ruby"
[ -f package.json ] && echo "RUNTIME:node"
[ -f go.mod ] && echo "RUNTIME:go"
[ -f Cargo.toml ] && echo "RUNTIME:rust"
[ -f pom.xml ] && echo "RUNTIME:jvm BUILD:maven"
{ [ -f build.gradle ] || [ -f build.gradle.kts ]; } && echo "RUNTIME:jvm BUILD:gradle"
# Check for existing test infrastructure — config files, scripts, AND test files
ls jest.config.* vitest.config.* playwright.config.* cypress.config.* .rspec pytest.ini tox.ini phpunit.xml 2>/dev/null
[ -f package.json ] && grep -q '"test"[[:space:]]*:' package.json && echo "SCRIPT:package.json test"
[ -f Makefile ] && grep -qE '^(test|check):' Makefile && echo "TARGET:make test"
git ls-files | grep -cE '(^|/)(tests?|spec|__tests__)/|(^|/)tests?\.py$|(^|/)test_[^/]+\.py$|_test\.(go|py|rb|ts|js|exs)$|\.(test|spec)\.[jt]sx?$|_spec\.rb$|Test\.(java|kt)$' | sed 's/^/TESTFILES:/'
  1. If no framework detected: still produce the coverage diagram, but skip test generation.

Step 1. Trace every codepath in the plan:

Read the plan document. For each new feature, service, endpoint, or component described, trace how data will flow through the code — don't just list planned functions, actually follow the planned execution:

  1. Read the plan. For each planned component, understand what it does and how it connects to existing code.
  2. Trace data flow. Starting from each entry point (route handler, exported function, event listener, component render), follow the data through every branch:
    • Where does input come from? (request params, props, database, API call)
    • What transforms it? (validation, mapping, computation)
    • Where does it go? (database write, API response, rendered output, side effect)
    • What can go wrong at each step? (null/undefined, invalid input, network failure, empty collection)
  3. Diagram the execution. For each changed file, draw an ASCII diagram showing:
    • Every function/method that was added or modified
    • Every conditional branch (if/else, switch, ternary, guard clause, early return)
    • Every error path (try/catch, rescue, error boundary, fallback)
    • Every call to another function (trace into it — does IT have untested branches?)
    • Every edge: what happens with null input? Empty array? Invalid type?

This is the critical step — you're building a map of every line of code that can execute differently based on input. Every branch in this diagram needs a test.

Step 2. Map user flows, interactions, and error states:

Code coverage isn't enough — you need to cover how real users interact with the changed code. For each changed feature, think through:

  • User flows: What sequence of actions does a user take that touches this code? Map the full journey (e.g., "user clicks 'Pay' → form validates → API call → success/failure screen"). Each step in the journey needs a test.
  • Interaction edge cases: What happens when the user does something unexpected?
    • Double-click/rapid resubmit
    • Navigate away mid-operation (back button, close tab, click another link)
    • Submit with stale data (page sat open for 30 minutes, session expired)
    • Slow connection (API takes 10 seconds — what does the user see?)
    • Concurrent actions (two tabs, same form)
  • Error states the user can see: For every error the code handles, what does the user actually experience?
    • Is there a clear error message or a silent failure?
    • Can the user recover (retry, go back, fix input) or are they stuck?
    • What happens with no network? With a 500 from the API? With invalid data from the server?
  • Empty/zero/boundary states: What does the UI show with zero results? With 10,000 results? With a single character input? With maximum-length input?

Add these to your diagram alongside the code branches. A user flow with no test is just as much a gap as an untested if/else.

Step 3. Check each branch against existing tests:

Go through your diagram branch by branch — both code paths AND user flows. For each one, search for a test that exercises it:

  • Function processPayment() → look for billing.test.ts, billing.spec.ts, test/billing_test.rb
  • An if/else → look for tests covering BOTH the true AND false path
  • An error handler → look for a test that triggers that specific error condition
  • A call to helperFn() that has its own branches → those branches need tests too
  • A user flow → look for an integration or E2E test that walks through the journey
  • An interaction edge case → look for a test that simulates the unexpected action

Quality scoring rubric:

  • ★★★ Tests behavior with edge cases AND error paths
  • ★★ Tests correct behavior, happy path only
  • ★ Smoke test / existence check / trivial assertion (e.g., "it renders", "it doesn't throw")

E2E Test Decision Matrix

When checking each branch, also determine whether a unit test or E2E/integration test is the right tool:

RECOMMEND E2E (mark as [→E2E] in the diagram):

  • Common user flow spanning 3+ components/services (e.g., signup → verify email → first login)
  • Integration point where mocking hides real failures (e.g., API → queue → worker → DB)
  • Auth/payment/data-destruction flows — too important to trust unit tests alone

RECOMMEND EVAL (mark as [→EVAL] in the diagram):

  • Critical LLM call that needs a quality eval (e.g., prompt change → test output still meets quality bar)
  • Changes to prompt templates, system instructions, or tool definitions

STICK WITH UNIT TESTS:

  • Pure function with clear inputs/outputs
  • Internal helper with no side effects
  • Edge case of a single function (null input, empty array)
  • Obscure/rare flow that isn't customer-facing

REGRESSION RULE (mandatory)

IRON RULE: When the coverage audit identifies a REGRESSION — code that previously worked but the diff broke — a regression test is added to the plan as a critical requirement. No AskUserQuestion. No skipping. Regressions are the highest-priority test because they prove something broke.

A regression is when:

  • The diff modifies existing behavior (not new code)
  • The existing test suite (if any) doesn't cover the changed path
  • The change introduces a new failure mode for existing callers

When uncertain whether a change is a regression, err on the side of writing the test.

Step 4. Output ASCII coverage diagram:

Include BOTH code paths and user flows in the same diagram. Mark E2E-worthy and eval-worthy paths:

CODE PATHS                                            USER FLOWS
[+] src/services/billing.ts                           [+] Payment checkout
  ├── processPayment()                                  ├── [★★★ TESTED] Complete purchase — checkout.e2e.ts:15
  │   ├── [★★★ TESTED] happy + declined + timeout      ├── [GAP] [→E2E] Double-click submit
  │   ├── [GAP]         Network timeout                 └── [GAP]        Navigate away mid-payment
  │   └── [GAP]         Invalid currency
  └── refundPayment()                                 [+] Error states
      ├── [★★  TESTED] Full refund — :89                ├── [★★  TESTED] Card declined message
      └── [★   TESTED] Partial (non-throw only) — :101  └── [GAP]        Network timeout UX

LLM integration: [GAP] [→EVAL] Prompt template change — needs eval test

COVERAGE: 5/13 paths tested (38%)  |  Code paths: 3/5 (60%)  |  User flows: 2/8 (25%)
QUALITY: ★★★:2 ★★:2 ★:1  |  GAPS: 8 (2 E2E, 1 eval)

Legend: ★★★ behavior + edge + error | ★★ happy path | ★ smoke check [→E2E] = needs integration test | [→EVAL] = needs LLM eval

Fast path: All paths covered → "Test review: All new code paths have test coverage ✓" Continue.

Step 5. Add missing tests to the plan:

For each GAP identified in the diagram, add a test requirement to the plan. Be specific:

  • What test file to create (match existing naming conventions)
  • What the test should assert (specific inputs → expected outputs/behavior)
  • Whether it's a unit test, E2E test, or eval (use the decision matrix)
  • For regressions: flag as CRITICAL and explain what broke

The plan should be complete enough that when implementation begins, every test is written alongside the feature code — not deferred to a follow-up.

Test Plan Artifact

After producing the coverage diagram, write a test plan artifact to the project directory so /qa and /qa-only can consume it as primary test input:

eval "$(~/.claude/skills/gstack/bin/gstack-slug 2>/dev/null)" && mkdir -p ~/.gstack/projects/$SLUG
USER=$(whoami)
DATETIME=$(date +%Y%m%d-%H%M%S)

Write to ~/.gstack/projects/{slug}/{user}-{branch}-eng-review-test-plan-{datetime}.md:

# Test Plan
Generated by /plan-eng-review on {date}
Branch: {branch}
Repo: {owner/repo}

## Affected Pages/Routes
- {URL path} — {what to test and why}

## Key Interactions to Verify
- {interaction description} on {page}

## Edge Cases
- {edge case} on {page}

## Critical Paths
- {end-to-end flow that must work}

This file is consumed by /qa and /qa-only as primary test input. Include only the information that helps a QA tester know what to test and where — not implementation details.

For LLM/prompt changes: check the "Prompt/LLM changes" file patterns listed in CLAUDE.md. If this plan touches ANY of those patterns, state which eval suites must be run, which cases should be added, and what baselines to compare against. Then use AskUserQuestion to confirm the eval scope with the user.

For each issue found in this section, call AskUserQuestion individually. One issue per call. Present options, state your recommendation, explain WHY. Do NOT batch multiple issues into one AskUserQuestion. Use the preamble's AskUserQuestion Format section. The AskUserQuestion call is a tool_use, not prose — call the tool directly.

STOP. Do NOT proceed to the next review section, edit the plan file with the proposed fix, or call ExitPlanMode until the user responds. An issue with an "obvious fix" is still an issue and still needs explicit user approval before it lands in the plan. Loading the AskUserQuestion schema via ToolSearch and then writing the recommendation as chat prose is the failure mode this gate exists to prevent.

4. Performance review

Evaluate:

  • N+1 queries and database access patterns.
  • Memory-usage concerns.
  • Caching opportunities.
  • Slow or high-complexity code paths.

For each issue found in this section, call AskUserQuestion individually. One issue per call. Present options, state your recommendation, explain WHY. Do NOT batch multiple issues into one AskUserQuestion. Use the preamble's AskUserQuestion Format section. The AskUserQuestion call is a tool_use, not prose — call the tool directly.

STOP. Do NOT proceed to the next review section, edit the plan file with the proposed fix, or call ExitPlanMode until the user responds. An issue with an "obvious fix" is still an issue and still needs explicit user approval before it lands in the plan. Loading the AskUserQuestion schema via ToolSearch and then writing the recommendation as chat prose is the failure mode this gate exists to prevent.

Outside Voice — Independent Plan Challenge (default-on)

After all review sections are complete, run an independent second opinion from a different AI system automatically — it is a standard part of plan review, not an opt-in. Two models agreeing on a plan is stronger signal than one model's thorough review. The user turns this off only by asking explicitly (gstack-config set codex_reviews disabled).

Preflight — decide whether and how the outside voice runs:

# Codex preflight: one block (functions sourced here don't persist to later blocks).
_TEL=$(~/.claude/skills/gstack/bin/gstack-config get telemetry 2>/dev/null || echo off)
_CODEX_CFG=$(~/.claude/skills/gstack/bin/gstack-config get codex_reviews 2>/dev/null || echo enabled)
source ~/.claude/skills/gstack/bin/gstack-codex-probe 2>/dev/null || true
if [ "$_CODEX_CFG" = "disabled" ]; then
  _CODEX_MODE="disabled"
# Running-under-Codex presence probe (#2519): a live Codex session exports
# CODEX_THREAD_ID / CODEX_SANDBOX into every shell it spawns (verified
# against a live `codex exec 'env | grep -i codex'` capture, codex 0.147.0).
# Nested codex spawns from inside a Codex host multiply token burn
# (observed: one /review = 15M tokens). GSTACK_FORCE_CODEX_REVIEW=1 forces
# the nested passes anyway.
elif [ "${GSTACK_FORCE_CODEX_REVIEW:-0}" != "1" ] && { [ -n "${CODEX_THREAD_ID:-}" ] || [ -n "${CODEX_SANDBOX:-}" ]; }; then
  _CODEX_MODE="under_codex"
elif ! command -v codex >/dev/null 2>&1; then
  _CODEX_MODE="not_installed"; _gstack_codex_log_event "codex_cli_missing" 2>/dev/null || true
elif ! _gstack_codex_auth_probe >/dev/null 2>&1; then
  _CODEX_MODE="not_authed"; _gstack_codex_log_event "codex_auth_failed" 2>/dev/null || true
else
  # Capture the probe's code: 2 means the CLI cannot execute at all, which is a
  # different problem (and a different fix) from a model the account can't use.
  _gstack_codex_model_probe; _CODEX_MP=$?
  if [ "$_CODEX_MP" -eq 2 ]; then
    _CODEX_MODE="broken_install"
  elif [ "$_CODEX_MP" -ne 0 ]; then
    _CODEX_MODE="model_unusable"
  else
    _CODEX_MODE="ready"; _gstack_codex_version_check 2>/dev/null || true
  fi
fi
echo "CODEX_MODE: $_CODEX_MODE"

Branch on the echoed CODEX_MODE:

  • disabled — the user turned Codex reviews off (codex_reviews=disabled). Skip this section entirely; do NOT fall back to a Claude subagent — disabled means no extra review step. Print: "Codex review skipped (codex_reviews disabled). Re-enable: gstack-config set codex_reviews enabled."
  • not_installed — Codex CLI absent. Print: "Codex not installed — falling back to a Claude subagent (fresh context, but the SAME model family — not an outside model). Install Codex for an actual outside-model read: npm install -g @openai/codex." Fall back to the Claude subagent path.
  • under_codex — this session is already running INSIDE a Codex host, so spawning codex again is the same model reviewing itself at multiplied token cost (#2519). Print exactly one line: "[running under Codex — nested codex passes skipped; set GSTACK_FORCE_CODEX_REVIEW=1 to force]" and skip the codex invocations below; run the section's free in-host pass instead if it defines one.
  • not_authed — installed but no credentials. Print: "Codex installed but not authenticated — falling back to a Claude subagent (same model family, not an outside model). Run codex login or set $CODEX_API_KEY." Fall back to the Claude subagent path.
  • broken_install — the CLI is on PATH but cannot execute (spawn ENOENT, non-executable binary, missing vendor payload). Print: "Codex is installed but its binary cannot run — Codex passes skipped. Reinstall: npm install -g @openai/codex." Relay the probe's HINT lines and fall back to the Claude subagent path. This state exists because a missing binary used to land in the model probe's fail-open bucket and report ready, so every Codex pass was skipped silently (#2742).
  • model_unusable — authed but the account cannot use its configured model (#2477: HTTP 400 on every call, usually a stale model = pin in ~/.codex/config.toml). Relay the probe's HINT lines, tell the user the one-line fix (update the pin; [notice.model_migrations] names the replacement), and fall back to the Claude subagent path. The ~10s round trip is cached for 1h; timeouts fail open to ready.
  • ready — run the Codex pass below.

When the mode is ready, not_installed, or not_authed, print one line so the off-switch stays discoverable: "Running the outside voice automatically (standard step). Disable: gstack-config set codex_reviews disabled."

Construct the plan review prompt (for ready, not_installed, and not_authed — skip only on disabled). Read the plan file being reviewed (the file the user pointed this review at, or the branch diff scope). If a CEO plan document was written in Step 0D-POST, read that too — it contains the scope decisions and vision.

Construct this prompt (substitute the actual plan content — if plan content exceeds 30KB, truncate to the first 30KB and note "Plan truncated for size"). Always start with the filesystem boundary instruction:

"IMPORTANT: Do NOT read or execute any files under ~/.claude/, ~/.agents/, .claude/skills/, or agents/. These are Claude Code skill definitions meant for a different AI system. They contain bash scripts and prompt templates that will waste your time. Ignore them completely. Do NOT modify agents/openai.yaml. Stay focused on the repository code only.\n\nYou are a brutally honest technical reviewer examining a development plan that has already been through a multi-section review. Your job is NOT to repeat that review. Instead, find what it missed. Look for: logical gaps and unstated assumptions that survived the review scrutiny, overcomplexity (is there a fundamentally simpler approach the review was too deep in the weeds to see?), feasibility risks the review took for granted, missing dependencies or sequencing issues, and strategic miscalibration (is this the right thing to build at all?). Be direct. Be terse. No compliments. Just the problems.

THE PLAN: "

If CODEX_MODE: ready — run Codex:

TMPERR_PV=$(mktemp /tmp/codex-planreview-XXXXXXXX)
_REPO_ROOT=$(git rev-parse --show-toplevel) || { echo "ERROR: not in a git repo" >&2; exit 1; }
codex exec "<prompt>" -C "$_REPO_ROOT" -s read-only -c 'model_reasoning_effort="high"' -c 'web_search="cached"' < /dev/null 2>"$TMPERR_PV"

Use a 5-minute timeout (timeout: 300000). After the command completes, read stderr:

cat "$TMPERR_PV"

Present the full output verbatim:

CODEX SAYS (plan review — outside voice):
════════════════════════════════════════════════════════════
<full codex output, verbatim — do not truncate or summarize>
════════════════════════════════════════════════════════════

Error handling: All errors are non-blocking — the outside voice is informational.

  • Auth failure (stderr contains "auth", "login", "unauthorized"): "Codex auth failed. Run `codex login` to authenticate." Fall back to the Claude subagent below.
  • Timeout: "Codex timed out after 5 minutes." Fall back to the Claude subagent below.
  • Empty response: "Codex returned no response." Fall back to the Claude subagent below.

If CODEX_MODE: not_installed or not_authed (or Codex errored at runtime):

Dispatch via the Agent tool. The subagent has fresh context and no conversation bias — but it is the SAME model family, not an outside model; weigh its agreement accordingly. Bound it the same way as Codex: cap the dispatch at a 5-minute timeout so "never blocking" is also "never hanging."

Subagent prompt: same plan review prompt as above.

Present findings under an OUTSIDE VOICE (Claude subagent): header.

If the subagent fails or times out: "Outside voice unavailable. Continuing to outputs."

(On CODEX_MODE: disabled you already skipped this section per the preflight — do not reach here.)

Cross-model tension:

After presenting the outside voice findings, note any points where the outside voice disagrees with the review findings from earlier sections. Flag these as:

CROSS-MODEL TENSION:
  [Topic]: Review said X. Outside voice says Y. [Present both perspectives neutrally.
  State what context you might be missing that would change the answer.]

User Sovereignty: Do NOT auto-incorporate outside voice recommendations into the plan. Present each tension point to the user. The user decides. Cross-model agreement is a strong signal — present it as such — but it is NOT permission to act. You may state which argument you find more compelling, but you MUST NOT apply the change without explicit user approval.

For each substantive tension point, use AskUserQuestion:

"Cross-model disagreement on [topic]. The review found [X] but the outside voice argues [Y]. [One sentence on what context you might be missing.]"

RECOMMENDATION: Choose [A or B] because [one-line reason explaining which argument is more compelling and why]. Completeness: A=X/10, B=Y/10.

Options:

  • A) Accept the outside voice's recommendation (I'll apply this change)
  • B) Keep the current approach (reject the outside voice)
  • C) Investigate further before deciding
  • D) Add to TODOS.md for later

Wait for the user's response. Do NOT default to accepting because you agree with the outside voice. If the user chooses B, the current approach stands — do not re-argue.

If no tension points exist, note: "No cross-model tension — both reviewers agree."

Persist the result:

~/.claude/skills/gstack/bin/gstack-review-log '{"skill":"codex-plan-review","timestamp":"'"$(date -u +%Y-%m-%dT%H:%M:%SZ)"'","status":"STATUS","source":"SOURCE","commit":"'"$(git rev-parse --short HEAD)"'"}'

Substitute: STATUS = "clean" if no findings, "issues_found" if findings exist. SOURCE = "codex" if Codex ran, "claude" if subagent ran.

Cleanup: Run rm -f "$TMPERR_PV" after processing (if Codex was used).


Outside Voice Integration Rule

Outside voice findings are INFORMATIONAL until the user explicitly approves each one. Do NOT incorporate outside voice recommendations into the plan without presenting each finding via AskUserQuestion and getting explicit approval. This applies even when you agree with the outside voice. Cross-model consensus is a strong signal — present it as such — but the user makes the decision.

CRITICAL RULE — How to ask questions

Follow the AskUserQuestion format from the Preamble above. Additional rules for plan reviews:

  • One issue = one AskUserQuestion call. Never combine multiple issues into one question.
  • Describe the problem concretely, with file and line references.
  • Present 2-3 options, including "do nothing" where that's reasonable.
  • For each option, specify in one line: effort (human: ~X / CC: ~Y), risk, and maintenance burden. If the complete option is only marginally more effort than the shortcut with CC, recommend the complete option.
  • Map the reasoning to my engineering preferences above. One sentence connecting your recommendation to a specific preference (DRY, explicit > clever, minimal diff, etc.).
  • Label with issue NUMBER + option LETTER (e.g., "3A", "3B").
  • Coverage vs kind: for every per-issue AskUserQuestion you raise in this review, decide whether the options differ in coverage or in kind. If coverage (e.g., more tests vs fewer, complete error handling vs happy-path-only, full edge-case coverage vs shortcut), include Completeness: N/10 on each option. If kind (e.g., architectural choice between two different systems, posture-over-posture, A/B/C where each is a different kind of thing), skip the score and add one line: Note: options differ in kind, not coverage — no completeness score. Do NOT fabricate scores on kind-differentiated questions — filler scores are worse than no score.
  • Zero findings: if a section has zero findings, state "No issues, moving on" and proceed. Otherwise, use AskUserQuestion for each finding — a finding with an "obvious fix" is still a finding and still needs user approval before any change lands in the plan.

Required outputs

"NOT in scope" section

Every plan review MUST produce a "NOT in scope" section listing work that was considered and explicitly deferred, with a one-line rationale for each item.

"What already exists" section

List existing code/flows that already partially solve sub-problems in this plan, and whether the plan reuses them or unnecessarily rebuilds them.

TODOS.md updates

After all review sections are complete, present each potential TODO as its own individual AskUserQuestion. Never batch TODOs — one per question. Never silently skip this step. Follow the format in ~/.claude/skills/gstack/review/TODOS-format.md.

For each TODO, describe:

  • What: One-line description of the work.
  • Why: The concrete problem it solves or value it unlocks.
  • Pros: What you gain by doing this work.
  • Cons: Cost, complexity, or risks of doing it.
  • Context: Enough detail that someone picking this up in 3 months understands the motivation, the current state, and where to start.
  • Depends on / blocked by: Any prerequisites or ordering constraints.

Then present options: A) Add to TODOS.md B) Skip — not valuable enough C) Build it now in this PR instead of deferring.

Do NOT just append vague bullet points. A TODO without context is worse than no TODO — it creates false confidence that the idea was captured while actually losing the reasoning.

Diagrams

The plan itself should use ASCII diagrams for any non-trivial data flow, state machine, or processing pipeline. Additionally, identify which files in the implementation should get inline ASCII diagram comments — particularly Models with complex state transitions, Services with multi-step pipelines, and Concerns with non-obvious mixin behavior.

Failure modes

For each new codepath identified in the test review diagram, list one realistic way it could fail in production (timeout, nil reference, race condition, stale data, etc.) and whether:

  1. A test covers that failure
  2. Error handling exists for it
  3. The user would see a clear error or a silent failure

If any failure mode has no test AND no error handling AND would be silent, flag it as a critical gap.

Worktree parallelization strategy

Analyze the plan's implementation steps for parallel execution opportunities. This helps the user split work across git worktrees (via Claude Code's Agent tool with isolation: "worktree" or parallel workspaces).

Skip if: all steps touch the same primary module, or the plan has fewer than 2 independent workstreams. In that case, write: "Sequential implementation, no parallelization opportunity."

Otherwise, produce:

  1. Dependency table — for each implementation step/workstream:
Step Modules touched Depends on
(step name) (directories/modules, NOT specific files) (other steps, or —)

Work at the module/directory level, not file level. Plans describe intent ("add API endpoints"), not specific files. Module-level ("controllers/, models/") is reliable; file-level is guesswork.

  1. Parallel lanes — group steps into lanes:
    • Steps with no shared modules and no dependency go in separate lanes (parallel)
    • Steps sharing a module directory go in the same lane (sequential)
    • Steps depending on other steps go in later lanes

Format: Lane A: step1 → step2 (sequential, shared models/) / Lane B: step3 (independent)

  1. Execution order — which lanes launch in parallel, which wait. Example: "Launch A + B in parallel worktrees. Merge both. Then C."

  2. Conflict flags — if two parallel lanes touch the same module directory, flag it: "Lanes X and Y both touch module/ — potential merge conflict. Consider sequential execution or careful coordination."

Implementation Tasks

Before closing this review, synthesize the findings above into a flat list of build-actionable tasks. Each task derives from a specific finding — no padding. Emit the markdown section AND write a JSONL artifact that /autoplan can aggregate across phases.

Markdown section (always emit)

## Implementation Tasks
Synthesized from this review's findings. Each task derives from a specific
finding above. Run with Claude Code or Codex; checkbox as you ship.

- [ ] **T1 (P1, human: ~2h / CC: ~15min)** — <component> — <imperative title>
  - Surfaced by: <section name> — <specific finding text or line reference>
  - Files: <paths to touch>
  - Verify: <test command or manual check>
- [ ] **T2 (P2, human: ~30min / CC: ~5min)** — ...

Rules:

  • P1 blocks ship; P2 should land same branch; P3 is a follow-up TODO.
  • If a finding produced no actionable task, do not invent one.
  • If a section had zero findings, emit _No new tasks from <section>._
  • Effort uses the AI-compression table from CLAUDE.md.

JSONL artifact (always write, even if zero tasks)

/autoplan reads this file to aggregate across phases. Build each line with jq -nc so titles and source findings containing quotes, newlines, or backslashes serialize cleanly — never use hand-rolled echo / printf.

eval "$(~/.claude/skills/gstack/bin/gstack-slug 2>/dev/null)"
TASKS_DIR="${HOME}/.gstack/projects/${SLUG:-unknown}"
mkdir -p "$TASKS_DIR"
TASKS_FILE="$TASKS_DIR/tasks-eng-review-$(date +%Y%m%d-%H%M%S).jsonl"
COMMIT=$(git rev-parse HEAD 2>/dev/null || echo unknown)
BRANCH=$(git branch --show-current 2>/dev/null || echo unknown)
RUN_ID="$(date -u +%Y%m%dT%H%M%SZ)-$$"

# Repeat ONE jq invocation per task identified during this review.
# Substitute the placeholders inline with shell variables you set per task:
#   TASK_ID (T1, T2, ...), PRIORITY (P1/P2/P3), COMPONENT, TITLE,
#   SOURCE_FINDING, EFFORT_HUMAN, EFFORT_CC, FILES_JSON (a JSON array literal
#   like '["browse/src/sanitize.ts","browse/src/server.ts"]').
jq -nc \
  --arg phase 'eng-review' \
  --arg run_id "$RUN_ID" \
  --arg branch "$BRANCH" \
  --arg commit "$COMMIT" \
  --arg id "$TASK_ID" \
  --arg priority "$PRIORITY" \
  --arg component "$COMPONENT" \
  --arg effort_human "$EFFORT_HUMAN" \
  --arg effort_cc "$EFFORT_CC" \
  --arg title "$TITLE" \
  --arg source_finding "$SOURCE_FINDING" \
  --argjson files "$FILES_JSON" \
  '{phase:$phase, run_id:$run_id, branch:$branch, commit:$commit, id:$id, priority:$priority, component:$component, files:$files, effort_human:$effort_human, effort_cc:$effort_cc, title:$title, source_finding:$source_finding}' \
  >> "$TASKS_FILE"

If jq is not installed, fall back to skipping the JSONL write and warn the user to install jq for autoplan aggregation. Never hand-roll JSONL.

If zero tasks were identified in this review, still touch the JSONL file (: > "$TASKS_FILE") so the aggregator sees that the phase produced output this run (an empty file means "ran, no findings" — distinct from "didn't run").

Completion summary

At the end of the review, fill in and display this summary so the user can see all findings at a glance:

  • Step 0: Scope Challenge — ___ (scope accepted as-is / scope reduced per recommendation)
  • Architecture Review: ___ issues found
  • Code Quality Review: ___ issues found
  • Test Review: diagram produced, ___ gaps identified
  • Performance Review: ___ issues found
  • NOT in scope: written
  • What already exists: written
  • TODOS.md updates: ___ items proposed to user
  • Failure modes: ___ critical gaps flagged
  • Outside voice: ran (codex/claude) / skipped
  • Parallelization: ___ lanes, ___ parallel / ___ sequential
  • Lake Score: X/Y recommendations chose complete option

Retrospective learning

Check the git log for this branch. If there are prior commits suggesting a previous review cycle (e.g., review-driven refactors, reverted changes), note what was changed and whether the current plan touches the same areas. Be more aggressive reviewing areas that were previously problematic.

Formatting rules

  • NUMBER issues (1, 2, 3...) and LETTERS for options (A, B, C...).
  • Label with NUMBER + LETTER (e.g., "3A", "3B").
  • One sentence max per option. Pick in under 5 seconds.
  • After each review section, pause and ask for feedback before moving on.

Review Log

After producing the Completion Summary above, persist the review result.

PLAN MODE EXCEPTION — ALWAYS RUN: This command writes review metadata to ~/.gstack/ (user config directory, not project files). The skill preamble already writes to ~/.gstack/sessions/ and ~/.gstack/analytics/ — this is the same pattern. The review dashboard depends on this data. Skipping this command breaks the review readiness dashboard in /ship.

~/.claude/skills/gstack/bin/gstack-review-log '{"skill":"plan-eng-review","timestamp":"TIMESTAMP","status":"STATUS","unresolved":N,"critical_gaps":N,"issues_found":N,"mode":"MODE","commit":"COMMIT"}'
~/.claude/skills/gstack/bin/gstack-decision-log '{"decision":"Eng review (MODE): ARCH_SUMMARY","rationale":"KEY_DECISION","scope":"branch","source":"skill","confidence":8}' 2>/dev/null || true

The second command records the architecture verdict as a durable cross-session decision (so a future session inherits the chosen approach and what was hardened, not just the count). Same ~/.gstack/ write pattern as review-log, non-interactive, best-effort (|| true). Substitute ARCH_SUMMARY (e.g. "N findings, all folded" or "M unresolved") and KEY_DECISION (the load-bearing architecture call from the report, one line — omit if the review found nothing durable).

Substitute values from the Completion Summary:

  • TIMESTAMP: current ISO 8601 datetime
  • STATUS: "clean" if 0 unresolved decisions AND 0 critical gaps; otherwise "issues_open"
  • unresolved: number from "Unresolved decisions" count
  • critical_gaps: number from "Failure modes: ___ critical gaps flagged"
  • issues_found: total issues found across all review sections (Architecture + Code Quality + Performance + Test gaps)
  • MODE: FULL_REVIEW / SCOPE_REDUCED
  • COMMIT: output of git rev-parse --short HEAD

Review Readiness Dashboard

After completing the review, read the review log and config to display the dashboard.

~/.claude/skills/gstack/bin/gstack-review-read

Parse the output. Find the most recent entry for each skill (plan-ceo-review, plan-eng-review, review, plan-design-review, design-review-lite, adversarial-review, codex-review, codex-plan-review). Ignore entries with timestamps older than 7 days. For the Eng Review row, show whichever is more recent between review (diff-scoped pre-landing review) and plan-eng-review (plan-stage architecture review). Append "(DIFF)" or "(PLAN)" to the status to distinguish. For the Adversarial row, show whichever is more recent between adversarial-review (new auto-scaled) and codex-review (legacy). For Design Review, show whichever is more recent between plan-design-review (full visual audit) and design-review-lite (code-level check). Append "(FULL)" or "(LITE)" to the status to distinguish. For the Outside Voice row, show the most recent codex-plan-review entry — this captures outside voices from both /plan-ceo-review and /plan-eng-review.

Source attribution: If the most recent entry for a skill has a `"via"` field, append it to the status label in parentheses. Examples: plan-eng-review with via:"autoplan" shows as "CLEAR (PLAN via /autoplan)". review with via:"ship" shows as "CLEAR (DIFF via /ship)". Entries without a via field show as "CLEAR (PLAN)" or "CLEAR (DIFF)" as before.

Note: autoplan-voices and design-outside-voices entries are audit-trail-only (forensic data for cross-model consensus analysis). They do not appear in the dashboard and are not checked by any consumer.

Display:

+====================================================================+
|                    REVIEW READINESS DASHBOARD                       |
+====================================================================+
| Review          | Runs | Last Run            | Status    | Required |
|-----------------|------|---------------------|-----------|----------|
| Eng Review      |  1   | 2026-03-16 15:00    | CLEAR     | YES      |
| CEO Review      |  0   | —                   | —         | no       |
| Design Review   |  0   | —                   | —         | no       |
| Adversarial     |  0   | —                   | —         | no       |
| Outside Voice   |  0   | —                   | —         | no       |
+--------------------------------------------------------------------+
| VERDICT: CLEARED — Eng Review passed                                |
+====================================================================+

Review tiers:

  • Eng Review (required by default): The only review that gates shipping. Covers architecture, code quality, tests, performance. Can be disabled globally with `gstack-config set skip_eng_review true` (the "don't bother me" setting).
  • CEO Review (optional): Use your judgment. Recommend it for big product/business changes, new user-facing features, or scope decisions. Skip for bug fixes, refactors, infra, and cleanup.
  • Design Review (optional): Use your judgment. Recommend it for UI/UX changes. Skip for backend-only, infra, or prompt-only changes.
  • Adversarial Review (automatic): Always-on for every review. Every diff gets both Claude adversarial subagent and Codex adversarial challenge. Large diffs (200+ lines) additionally get Codex structured review with P1 gate. No configuration needed.
  • Outside Voice (optional): Independent plan review from a different AI model when Codex is available (falls back to a same-family Claude subagent otherwise — fresh context, not cross-model). Offered after all review sections complete in /plan-ceo-review and /plan-eng-review. Never gates shipping.

Verdict logic:

  • CLEARED: Eng Review has >= 1 entry within 7 days from either `review` or `plan-eng-review` with status "clean" (or `skip_eng_review` is `true`)
  • NOT CLEARED: Eng Review missing, stale (>7 days), or has open issues
  • CEO, Design, and Codex reviews are shown for context but never block shipping
  • If `skip_eng_review` config is `true`, Eng Review shows "SKIPPED (global)" and verdict is CLEARED

Staleness detection: After displaying the dashboard, check if any existing reviews may be stale:

  • Content-first rule (diff-scoped rows only: `review`, `adversarial-review`, `codex-review`, ship-stage entries). Parse the `---WTREE---` and `---DIRTY---` sections from the bash output. If an entry has a `wtree` field AND it equals the current `---WTREE---` value, the review is CURRENT — identical content, regardless of commit count, rebase, amend, or whether it was committed yet (wtree equality alone proves identical content; that is the keystone property). Skip the commit-count heuristic for that entry and show no staleness note.
  • Plan-tier rows (plan-ceo-review, plan-eng-review, plan-design-review) grade a plan file, not the repo tree — never apply the wtree rule to them; they keep the 7-day freshness logic. If such an entry carries a `plan_sha256` field, you MAY compare it against the current plan file's sha256 and note "plan changed since review" on mismatch.
  • Fallback (no `wtree` on the entry, or wtree mismatch): parse the `---HEAD---` section to get the current HEAD commit hash. For each review entry that has a `commit` field: compare it against the current HEAD. If different, count elapsed commits: `git rev-list --count STORED_COMMIT..HEAD`. If that command FAILS (the stored commit was rebased away), grade UNKNOWN and treat as stale — do not error. Display: "Note: {skill} review from {date} may be stale — {N} commits since review"
  • For entries without a `commit` field (legacy entries): display "Note: {skill} review from {date} has no commit tracking — consider re-running for accurate staleness detection"
  • If all reviews grade CURRENT (wtree match or HEAD match), do not display any staleness notes

Plan File Review Report

After displaying the Review Readiness Dashboard in conversation output, also update the plan file itself so review status is visible to anyone reading the plan.

Detect the plan file

  1. Check if there is an active plan file in this conversation (the host provides plan file paths in system messages — look for plan file references in the conversation context).
  2. If not found, skip this section silently — not every review runs in plan mode.

Generate the report

Read the review log output you already have from the Review Readiness Dashboard step above. Parse each JSONL entry. Each skill logs different fields:

  • plan-ceo-review: `status`, `unresolved`, `critical_gaps`, `mode`, `scope_proposed`, `scope_accepted`, `scope_deferred`, `commit` → Findings: "{scope_proposed} proposals, {scope_accepted} accepted, {scope_deferred} deferred" → If scope fields are 0 or missing (HOLD/REDUCTION mode): "mode: {mode}, {critical_gaps} critical gaps"
  • plan-eng-review: `status`, `unresolved`, `critical_gaps`, `issues_found`, `mode`, `commit` → Findings: "{issues_found} issues, {critical_gaps} critical gaps"
  • plan-design-review: `status`, `initial_score`, `overall_score`, `unresolved`, `decisions_made`, `commit` → Findings: "score: {initial_score}/10 → {overall_score}/10, {decisions_made} decisions"
  • plan-devex-review: `status`, `initial_score`, `overall_score`, `product_type`, `tthw_current`, `tthw_target`, `mode`, `persona`, `competitive_tier`, `unresolved`, `commit` → Findings: "score: {initial_score}/10 → {overall_score}/10, TTHW: {tthw_current} → {tthw_target}"
  • devex-review: `status`, `overall_score`, `product_type`, `tthw_measured`, `dimensions_tested`, `dimensions_inferred`, `boomerang`, `commit` → Findings: "score: {overall_score}/10, TTHW: {tthw_measured}, {dimensions_tested} tested/{dimensions_inferred} inferred"
  • codex-review: `status`, `gate`, `findings`, `findings_fixed` → Findings: "{findings} findings, {findings_fixed}/{findings} fixed"

All fields needed for the Findings column are now present in the JSONL entries. For the review you just completed, you may use richer details from your own Completion Summary. For prior reviews, use the JSONL fields directly — they contain all required data.

Produce this markdown table:

```markdown

GSTACK REVIEW REPORT

Review Trigger Why Runs Status Findings
CEO Review `/plan-ceo-review` Scope & strategy {runs} {status} {findings}
Codex Review `/codex review` Independent 2nd opinion {runs} {status} {findings}
Eng Review `/plan-eng-review` Architecture & tests (required) {runs} {status} {findings}
Design Review `/plan-design-review` UI/UX gaps {runs} {status} {findings}
DX Review `/plan-devex-review` Developer experience gaps {runs} {status} {findings}
```

Below the table, add these lines. CODEX and CROSS-MODEL are optional (omit when empty); VERDICT is always present:

  • CODEX: (only if codex-review ran) — one-line summary of codex fixes
  • CROSS-MODEL: (only if both Claude and Codex reviews exist) — overlap analysis
  • VERDICT: list reviews that are CLEAR (e.g., "CEO + ENG CLEARED — ready to implement"). If Eng Review is not CLEAR and not skipped globally, append "eng review required".

Unresolved-decisions status (MANDATORY — never omitted; the report's final non-whitespace line). After VERDICT, end the report (content under the `## GSTACK REVIEW REPORT` heading — a bold label, never a new `## ` heading; exempt from the "omit when empty" rule) with exactly one: the exact unbolded line `NO UNRESOLVED DECISIONS` (a bolded one does NOT count), OR a `UNRESOLVED DECISIONS:` header + one bullet per open item (last bullet = final line; add `+ N unresolved from prior reviews` only when N > 0). This avoids double-counting: list THIS review's open items from context; for prior reviews sum `unresolved` over the latest fresh row per skill (dashboard 7-day window) after you DROP the current skill's row; emit the sentinel only when both are zero.

Write to the plan file

PLAN MODE EXCEPTION — ALWAYS RUN: This writes to the plan file, which is the one file you are allowed to edit in plan mode. The plan file review report is part of the plan's living status.

The report must always be the LAST section of the plan file — never mid-file. Use a single delete-then-append flow:

  1. Read the plan file (Read tool) to see its full current content. Search the read output for a `## GSTACK REVIEW REPORT` heading anywhere in the file.
  2. If found, use the Edit tool to DELETE the entire existing section. Match from `## GSTACK REVIEW REPORT` through either the next `## ` heading or end of file, whichever comes first. Replace with the empty string. This applies regardless of where the section currently lives — mid-file deletion is intentional, not a special case. If the Edit fails (e.g., concurrent edit changed the content), re-read the plan file and retry once.
  3. After the delete (or skipped, if no section existed), append the new `## GSTACK REVIEW REPORT` section at the END of the file. Use the Edit tool to match the file's current last paragraph and add the section after it, or use Write to re-emit the whole file with the section at the end.
  4. Verify with the Read tool that `## GSTACK REVIEW REPORT` is the last `## ` heading in the file before continuing. If it isn't, repeat steps 2-3 once.

Do NOT replace the section in place. The "replace mid-file" path is what allowed prior versions to leave the report mid-file when an older report already lived there — the user then sees a plan whose review report is not at the bottom and (correctly) rejects it.

Capture Learnings

If you discovered a non-obvious pattern, pitfall, or architectural insight during this session, log it for future sessions:

~/.claude/skills/gstack/bin/gstack-learnings-log '{"skill":"plan-eng-review","type":"TYPE","key":"SHORT_KEY","insight":"DESCRIPTION","confidence":N,"source":"SOURCE","files":["path/to/relevant/file"]}'

Types: pattern (reusable approach), pitfall (what NOT to do), preference (user stated), architecture (structural decision), tool (library/framework insight), operational (project environment/CLI/workflow knowledge).

Sources: observed (you found this in the code), user-stated (user told you), inferred (AI deduction), cross-model (both Claude and Codex agree).

Confidence: 1-10. Be honest. An observed pattern you verified in the code is 8-9. An inference you're not sure about is 4-5. A user preference they explicitly stated is 10.

files: Include the specific file paths this learning references. This enables staleness detection: if those files are later deleted, the learning can be flagged.

Only log genuine discoveries. Don't log obvious things. Don't log things the user already knows. A good test: would this insight save time in a future session? If yes, log it.

Brain Calibration Write-Back (Phase 2 / gated)

When the skill makes a typed prediction worth tracking (scope decision, TTHW target, architectural bet, wedge commitment), it MAY write a kind=bet take to the brain so a calibration profile builds over time.

Gated on two things:

  1. Brain trust policy for the active endpoint is personal (check via ~/.claude/skills/gstack/bin/gstack-config get brain_trust_policy@<endpoint-hash>). Shared brains skip write-back to avoid polluting team calibration.
  2. Feature flag BRAIN_CALIBRATION_WRITEBACK is set (today: false; flips to true when upstream gbrain v0.42+ ships takes_add MCP op).

When both gates pass, the write-back path uses mcp__gbrain__takes_add to record a take with weight 0.7 (per SKILL_CALIBRATION_WEIGHTS). If the MCP op is unavailable, fall back to mcp__gbrain__put_page with a gstack:takes fence block (documented but uglier path).

Mandatory take frontmatter shape:

kind: bet
holder: <user identity from whoami>
claim: <one-line prediction the skill is making>
weight: 0.7
since_date: <today's date>
expected_resolution: <date in 1-3 months depending on skill>
source_skill: plan-eng-review

After write, invalidate the affected digests so the next preflight reflects the new state:

eval "$(~/.claude/skills/gstack/bin/gstack-slug 2>/dev/null)" 2>/dev/null || true
  # (no per-skill invalidation targets configured)

Brain Cache Background Refresh

After the skill's work completes (and telemetry has logged), kick a background refresh of any cache digest that's getting close to its TTL. This is non-blocking — the user doesn't wait. Next invocation benefits from the warm cache.

eval "$(~/.claude/skills/gstack/bin/gstack-slug 2>/dev/null)" 2>/dev/null || true
(~/.claude/skills/gstack/bin/gstack-brain-cache refresh --project "$SLUG" 2>/dev/null &) || true

Next Steps — Review Chaining

After displaying the Review Readiness Dashboard, check if additional reviews would be valuable. Read the dashboard output to see which reviews have already been run and whether they are stale.

Suggest /plan-design-review if UI changes exist and no design review has been run — detect from the test diagram, architecture review, or any section that touched frontend components, CSS, views, or user-facing interaction flows. If an existing design review's commit hash shows it predates significant changes found in this eng review, note that it may be stale.

Mention /plan-ceo-review if this is a significant product change and no CEO review exists — this is a soft suggestion, not a push. CEO review is optional. Only mention it if the plan introduces new user-facing features, changes product direction, or expands scope substantially.

Note staleness of existing CEO or design reviews if this eng review found assumptions that contradict them, or if the commit hash shows significant drift.

If no additional reviews are needed (or skip_eng_review is true in the dashboard config, meaning this eng review was optional): state "All relevant reviews complete. Run /ship when ready."

Use AskUserQuestion with only the applicable options:

  • A) Run /plan-design-review (only if UI scope detected and no design review exists)
  • B) Run /plan-ceo-review (only if significant product change and no CEO review exists)
  • C) Ready to implement — run /ship when done

Unresolved decisions

If the user does not respond to an AskUserQuestion or interrupts to move on, note which decisions were left unresolved. At the end of the review, list these as "Unresolved decisions that may bite you later" — never silently default to an option.