* docs(designs): agent-bootstrap plan + design docs (normative, review-absorbed) The scrubbed, in-repo sources of truth for the gbrain bootstrap wave: AGENT_BOOTSTRAP_DESIGN.md (product scope/sequencing) and AGENT_BOOTSTRAP_PLAN.md (implementation; all review-finding IDs inlined). Co-Authored-By: Claude Fable 5 <noreply@anthropic.com> * feat(bootstrap): format spec, question bank, identity templates, bundled assets agent.json manifest (format_version 1, initialized sentinel) + machine-local install receipt [CX2-1, CX2-12]; 12-question/6-required interview bank with consent keys and a persist:false sink for the optional provider key [CX2-13]; ten {{TOKEN}} identity templates (generic, adapted to gbrain ops — gates call recall/query/put_page, write-through-ops rule, keyless agent-authored facts, silence contract); assets embedded compiled-binary-safe via file-type imports [ENG-6]. Co-Authored-By: Claude Fable 5 <noreply@anthropic.com> * feat(bootstrap): runbook, README paste block, bootstrap guide, TODOS entries BOOTSTRAP_FOR_AGENTS.md (agent-driven install runbook: CLI phase list is the source of truth, never-invent rules, Codex approvals preflight, keyless posture, failure-modes table, version stamp for the skew check); README gains the full-agent paste block pinned to latest-stable inside the Claude Code/Codex quick start (memory-only tier stays); docs/guides/bootstrap.md carries the full install/security/consent/degradation/uninstall contract. Co-Authored-By: Claude Fable 5 <noreply@anthropic.com> * docs(designs): spike instrument for the bootstrap wave (build order 0) Co-Authored-By: Claude Fable 5 <noreply@anthropic.com> * feat(bootstrap): interview + render engines Interview gate with read-back confirm-hash (any later answer change clears the confirmation — the hostile single-batch case is structurally impossible), per-answer provenance, caps + escaping at set time, config-sink routing for the provider key; renderer with hard-fail token sweep, subordinate fencing of principal input, never-clobber + backups, deterministic minimal mode for the template repo, scaled byte floors. 58 unit tests. Co-Authored-By: Claude Fable 5 <noreply@anthropic.com> * feat(bootstrap): private-repo lifecycle — repo create, attach, uninstall, run lock gh-gated private repo creation with API-verified privacy (rate-limit distinct from public), refuse-foreign-origin with attach as the sanctioned path, atomic bootstrap mutex (pid liveness + age + token), receipt-keyed uninstall that never wholesale-deletes the gbrain home and only offers --delete-brain for a brain it created; read-only PGLite lock probe (never opens the engine). 54 unit tests, injectable exec seam throughout. Co-Authored-By: Claude Fable 5 <noreply@anthropic.com> * feat(release): latest-stable ref, template-repo publish job, bootstrap CI guards release.yml advances the latest-stable tag only after assets publish (the paste block's permanent ref — copies in the wild never rot) and gains a PAT-gated publish-template job verified against the vendored tree; two skip-graceful guards (sanctioned-ref + runbook stamp; template/token bijection + placeholder assertion + generator byte-diff) wired into verify; README + runbook re-admitted to the CI cache hash; vendored deterministic template tree generated. Co-Authored-By: Claude Fable 5 <noreply@anthropic.com> * feat(context): IPC v2 turn_context + 8KB assembly + visibility resolver + session identity Discriminated-union IPC with handler map, protocol echo (stale-serve detection), shared-secret gate, server-side source binding, per-kind budgets; turn-context assembly (reflex pointers + volunteered pages + world-only hot facts) under a data-not-instructions envelope trimmed to the harness's 10KB hook-output cap; facts.default_visibility resolved through one helper at all four sites (explicit caller wins, typos fail closed); typed sessionId threads _meta.session_id into the hot-memory cache key. 50 new tests; 180 adjacent tests confirmed green. Co-Authored-By: Claude Fable 5 <noreply@anthropic.com> * feat(persistence): secret-scan, gbrain sources push, durability unification Pattern secret scanner (own runtime allowlist, redacted previews, corpus-write redaction mode); sources push runs the whole scan→stage→commit→pull→push sequence under one cross-platform lock (mkdir-atomic, pid+age+token) with a deny-glob backstop, commit-first divergence-safe pull, refuse-unverifiable visibility, and push-status telemetry; gbrain-home choke point unifies GBRAIN_HOME semantics with config (0700); durability is parent-repo-aware and rotates its push log at 0600. 35 new tests; 200 existing green. Co-Authored-By: Claude Fable 5 <noreply@anthropic.com> * fix(sources): harden/pull gates accept sources inside a parent git repo The bootstrap workspace registers brain/ (a subdirectory) as the source; the durability core already resolves the repo root, so the command gates now check inside-a-repo rather than .git-right-here [CX2-3]. Co-Authored-By: Claude Fable 5 <noreply@anthropic.com> * feat(serve): resident maintenance sweep + keyless capability probe The lock-owning serve process now closes the persistence loop: startup (3s post-connect, best-effort, unref'd) and idle (10-min quiet intervals through the injectable timer seam) sweeps run facts-fence reconciliation, deterministic link/timeline extraction over recent workspace pages, and spend-gated corpus ingest (skipped keyless — agent-authored fences cover it). gbrain sweep --once is the trusted CLI seam bootstrap verify uses. Capability probe renders the honest keyless/keyed report. Full reuse of the cycle extractor + extract cores; 26 new tests, neighbors green. Co-Authored-By: Claude Fable 5 <noreply@anthropic.com> * feat(hooks): engine-free gbrain hook command, settings writers, transcript parser Four hook events (session-start digest + crashed-session recovery push, user-prompt turn-context injection under an 800ms deadline and the 10KB cap, stop buffers, session-end corpus write with redaction/retention/dedup + best-effort push); structural JSON settings merger keyed by a _gbrain marker (foreign hooks and permissions survive); dated host-spec registry; Claude Code .jsonl parser as a spec-target with a scrubbed 7-shape fixture. Heartbeat is counters-only by construction. 59 tests; zero engine modules in the import graph. Co-Authored-By: Claude Fable 5 <noreply@anthropic.com> * docs(bootstrap): cross-link the full-agent path from the connection docs Co-Authored-By: Claude Fable 5 <noreply@anthropic.com> * feat(bootstrap): dispatcher, verify, status — the command assembled gbrain bootstrap {status,interview,render,repo,hooks,verify,uninstall,attach}: engine-free except verify (owns its engine, in-process sweep — no live-serve conflict); phase list is the TS source of truth with install.jsonl telemetry and the support blob; verify's fail-soft check suite covers the real write path (put_page → write-through file → sweep → graph floor → recall), passes keyless, persists snapshots, and ends with the first-run tour. cli.ts wired per the three-touchpoint rule; doctor gains the bootstrap check group (silent on machines with no bootstrap state). 28 new tests; 353 adjacent green. Co-Authored-By: Claude Fable 5 <noreply@anthropic.com> * docs: KEY_FILES bootstrap cluster + CLAUDE.md dispatcher row (+ build:llms) Co-Authored-By: Claude Fable 5 <noreply@anthropic.com> * test(bootstrap): e2e pins — hook-under-live-serve, attach, degraded modes, compiled binary, Docker harness The permanent pins: a real serve holds the PGLite lock while the engine-free hook completes (and a direct engine open provably throws LiveServeLockError); stale-socket fail-open; machine-2 attach with marker-keyed hook repair; decline-everything installs verify green with every degradation named; the compiled binary renders bundled templates in an empty cwd. Offline Docker harness (networkless, read-only) gated into heavy-tests. Co-Authored-By: Claude Fable 5 <noreply@anthropic.com> * fix(bootstrap): register doctor check categories + system-of-record allow comments The six bootstrap doctor checks join OPS_CHECK_NAMES; the sweep's batch link/ timeline inserts carry the explicit extract-path allow comments (the sweep IS the extraction path for workspace pages). Co-Authored-By: Claude Fable 5 <noreply@anthropic.com> * fix(test): shard wedge cap tracks suite growth (1500s -> 1800s) At ~9000 tests a healthy shard finished at 1466s and two progressing shards were false-killed at the old cap; 1800s restores ~25% headroom over the slowest observed healthy shard. Real hangs still hit it. Co-Authored-By: Claude Fable 5 <noreply@anthropic.com> * test(ci): cache-hash policy — README + runbook edits must invalidate [C2] The old deny-list assertion predates the paste block; README.md and BOOTSTRAP_FOR_AGENTS.md are policy-doc re-admissions now, so their edits must change the hash (a paste-block edit shipping under a cached green was the C2 hole). Co-Authored-By: Claude Fable 5 <noreply@anthropic.com> * fix(test): classify post-suite exit-hangs as warn-pass; file the leak forensics A shard killed by the wedge watchdog with every assigned file started and zero fail markers did all its work and leaked a handle at exit — pre-existing and master-reproducible (P1 TODO carries the full bisect forensics). Bun's per-test timeout turns a hung test into a (fail), so the classifier cannot mask one. Co-Authored-By: Claude Fable 5 <noreply@anthropic.com> * fix(test): shard cap 2400s — the count-balanced heavy shard needs it under contention Observed: the heavy shard still progressing 22s before an 1800s kill while siblings finish at 1150-1550s (split balances file count, not weight). Filed the load-sensitive WAL-repair flake (pre-existing, master's v0.42.75.0 wave). Co-Authored-By: Claude Fable 5 <noreply@anthropic.com> * test(bootstrap): quarantine env-mutating suites to the serial lane check-test-isolation R1: six new files mutate GBRAIN_HOME/env at module scope — the serial lane (one process per file) is the guard's prescribed home for them. All 114 tests pass post-rename. Co-Authored-By: Claude Fable 5 <noreply@anthropic.com> * docs(readme): per-harness install sections — Codex, Claude Code, then OpenClaw/Hermes Each harness gets its own complete paste-block section (desktop app first, terminal noted — Claude Code CLI is the identical harness; Codex CLI works pull-based today); the OpenClaw/Hermes platform path keeps equal weight with its one-click deploys and INSTALL_FOR_AGENTS block intact; memory-only and remote-connect tiers consolidated under 'Lighter ways in'. Supersedes the review's D5 ordering by user direction; stale heading references updated. Co-Authored-By: Claude Fable 5 <noreply@anthropic.com> * docs(readme): Codex as the recommended first step; OpenClaw/Hermes framed as-intended, high-cost The install section now routes newcomers explicitly: Codex first (subscription-priced, nothing to deploy), OpenClaw/Hermes as GBrain used the way it was designed — always on, at real server + API cost. Co-Authored-By: Claude Fable 5 <noreply@anthropic.com> * fix: doc-audit code chasers — broken recovery hints, stale op description, auto_link key Four small code fixes surfaced by the markdown accuracy audit: - doctor's auto-RLS recovery hint pointed at `apply-migrations --force-retry 35`, which cannot work (--force-retry targets the vX.Y.Z orchestrator registry, not the numeric schema MIGRATIONS array). Hint now points at the recreate SQL in docs/guides/rls-and-you.md; test pins against regression. - v0_11_0 migration printed the same broken-mechanism class of hint (`config set minion_mode` writes DB config nothing reads); now names `apply-migrations --mode` + preferences.json, the real setter. - submit_job's op description hardcoded a stale handler list; now points at registerBuiltinHandlers as the source plus the --follow discovery trick. - `auto_link` added to KNOWN_CONFIG_KEYS: read by link-extraction, reconcile-links, and sweep, and documented as the off-switch in brain-ops/maintain, but the allowlist rejected `config set auto_link false`. Co-Authored-By: Claude Fable 5 <noreply@anthropic.com> * docs: repo-wide accuracy + MECE reform from the 9-bucket markdown audit A code-grounded audit of every markdown file (root, architecture, guides, mcp, tutorials, docs-root, operations/eval/designs, skills, recipes) followed by a fix wave with per-bucket ownership. Four classes of change: Accuracy — every documented command/flag verified against src/ before writing: dead commands replaced with working ones (pages purge-deleted, jobs watch --follow, gbrain restore, import-based Obsidian flow, space-separated --scopes, real thin-client recipes, working isolation verification, real supervisor restart procedure, curl-based ngrok health check, real minion_mode setter); count drift fixed with rot-proof phrasing (100+ ops, 50+ bundled skills via skills/manifest.json, 140+ engine methods, KNOBS_HASH_VERSION pointer instead of hardcoded versions); stale claims corrected (search-mode defaults, RETRIEVAL pipeline order incl. autocut, sentinel rules, refusal-list mechanism, engine snapshot, shard cap 2400s + EXIT-HANG classifier in TESTING.md, latest-stable + publish-template documented in RELEASING.md as release.yml promises). MECE — one home per concept, pointers elsewhere: test isolation → TESTING.md; OAuth registration + --bind/--public-url lore → DEPLOY.md; mode bundles → guides/search-modes.md (the home the CLAUDE.md dispatcher always promised); merge contract → schema-packs.md; WAL ladder → ENGINES.md; quiet-hours → quiet-hours.md; capture taxonomy → entity-detection.md; person-page taxonomy → compiled-truth.md; brain-first protocol → brain-first-lookup.md; refresh semantics → refresh-algorithm.md; KEY_FILES.md deduplicated (58 extension entries merged, one entry per file); infra-layer.md rewritten as a pointer page. Privacy — placeholder sweep across guides, docs, skills, and recipes per the iron rule; per-release narration stripped from reference docs (current-state prose only). Bootstrap coverage — AGENTS.md pointer, RESOLVER routing row, INSTALL.md path, tutorial cross-links, keyless-mode sections in spend-controls/headless-install. skills.lock.json regenerated; llms.txt/llms-full.txt rebuilt. Gates: verify 36/36, typecheck clean, doctor 96/96, skills-integrity + resolver + build-llms + config-set + migrations all green. Co-Authored-By: Claude Fable 5 <noreply@anthropic.com> * docs(readme): refresh production-brain stats to current brain-repo counts 155,795 pages / 24,589 people / 5,340 companies, counted from the brain repo's current HEAD; the "100K-page brain" framing moves to 150K to match. Cron-fleet count unchanged (its store lives on the deployment host, not in the repos available for verification). Co-Authored-By: Claude Fable 5 <noreply@anthropic.com> * fix(scan,push): modern OpenAI/Voyage key patterns, scan staged blobs not disk - secret-scan matches sk-proj-/sk-svcacct-/sk-None- and pa- Voyage keys (the bare sk- pattern missed every current OpenAI key format). - workspacePush stages first, then scans the staged index blobs via git cat-file, closing the scan-then-stage TOCTOU where a file changed between snapshot and commit shipped unscanned. - shared binary-sniff helper, memoized glob regexes, atomic push-status write, and tests for pull_conflict + gitignored deny-match paths. Co-Authored-By: Claude Fable 5 <noreply@anthropic.com> * fix(ci): regenerate flag registry for new commands, harden shard classifier + release token - cli-flag-registry.generated.ts regenerated: bootstrap/hook/sweep and sources push --message/--allow-unverified-remote were missing, so the strict #2185 validator rejected real invocations and skipped the new commands entirely. - EXIT-HANG shard classifier now requires every assigned file to have started before warn-passing a watchdog kill (was fail-open). - release.yml passes TEMPLATE_REPO_PAT via http.extraheader, off the argv. - compiled-binary e2e fails loud in CI instead of a silent permanent skip. Co-Authored-By: Claude Fable 5 <noreply@anthropic.com> * fix(hook,sweep,ipc): non-blocking hook pushes, bounded sweep + cache, source-bound resolve - session-start/session-end no longer run synchronous git + inline push inside their self-deadline; a detached child does the push and the hook returns immediately (blocked Claude Code startup for minutes on a dirty tree before). - serve sweep drops the unbounded listAllPageRefs, resolves only candidate targets, claims corpus files atomically (no double-LLM-spend race), and caps the fence LIKE scan; heartbeat writes are O_APPEND with rare compaction. - hot-memory cache evicts expired entries and bounds entry count (the key is caller-controlled via _meta.session_id). - v1 resolve IPC honors boundSourceId like turn_context; turn-context runs its arms concurrently. doctor reads push/heartbeat thresholds from hook.ts. - new tests: doctor bootstrap checks, hook push-gate + deadline, concurrent sweep claims, cache eviction, bound-source resolve. Co-Authored-By: Claude Fable 5 <noreply@anthropic.com> * fix(bootstrap): origin-ownership gate, world visibility, collision-safe source id, consent + templates - repo adoption requires an exact receipt repo_url match or authed-owner check (undefined repo_url was a wildcard); create verifies privacy BEFORE the first push. - verify sets facts.default_visibility=world if unset, so agent-authored facts surface in per-turn context (they defaulted private before). - source_id derives a path-hash suffix when 'workspace' is taken by another checkout; every consumer reads manifest.source_id. - skipped HOOKS_CONSENT now declines (was falling through to default yes); --minimal refuses on an initialized manifest; tilde fences escaped. - MCP registration pins --surface full; status hard-fails a public origin (template door); receipt writers guard against newer/corrupt receipts; uninstall only claims brain-deleted after a real rm. - templates ship jobs disabled + provider-consent + support-relay lines; soul-audit re-runs over the shared interview bank. TODOS: 11 follow-ups. Co-Authored-By: Claude Fable 5 <noreply@anthropic.com> * fix(security): close adversarial-review findings — scan fails closed, whole-PEM redaction, bound repo push Cross-model adversarial pass (Claude + Codex) on the bootstrap wave: - secret scan fails CLOSED: an unreadable, oversized, or binary staged blob now blocks the push (blocked_unscannable, exit 5) instead of committing unscanned; only a confirmed staged deletion is skipped. This was the headline "block secrets before they leave the machine" property failing open. - private-key redaction spans the whole PEM block (header+body+footer), not just the header line — the base64 body no longer survives into the corpus the sweep sends to an extraction provider. - bootstrap repo commits the workspace (secret-scan-gated) before the first push and verifies the remote actually received it, so a push-fail retry can't adopt an empty remote as success. - privacy verify is re-bound to origin immediately before push (a concurrent origin rewrite between verify and push is refused). - session-end corpus write is atomic and clears the stale ingested/in-progress sidecars so a resumed session's appended transcript is re-ingested. - public-origin refusal enforced at render (not only status); MCP "already registered" is verified to target this workspace, not blessed blindly; verify probe cleanup scopes deletes to its own slugs, not a token substring; allowlist fingerprint floor raised 8→16 hex. Co-Authored-By: Claude Fable 5 <noreply@anthropic.com> * v0.45.0.0 feat(bootstrap): paste-in personal-agent install for Codex + Claude Code Turns a Codex or Claude Code session into a persistent personal agent: interview-rendered identity files, a local PGLite brain, per-turn context via serve IPC (Claude Code hooks / Codex pull protocol), session-triggered persistence, and a private GitHub repo as the agent's portable body. Keyless- first (the harness model is the LLM; one optional key adds embeddings + extraction). New `gbrain bootstrap` command family + `gbrain hook` + `gbrain sweep`; doctor bootstrap health checks; latest-stable distribution ref + template-repo publish job. Opt-in, additive — existing installs untouched. Co-Authored-By: Claude Fable 5 <noreply@anthropic.com> * fix: regenerate flag registry for security-fix flags; drop fabricated gbrain capabilities doc ref CI caught two real failures under the merged state: - the flag registry lagged the blocked_unscannable/exit-5 flags the security round added, tripping the #2185 freshness guard. - headless-install.md described the keyless capability report as a `gbrain capabilities` command, which the #3502 doc-command resolver rejects — reworded to prose (the real surface is bootstrap verify's report). Co-Authored-By: Claude Fable 5 <noreply@anthropic.com> * docs: sync KEY_FILES + bootstrap plan to security-fix behavior Cross-referenced the security-fix round against the reference docs and corrected the drift those commits introduced: - workspace-push.ts entry: stage-FIRST-then-scan order (the TOCTOU fix), fail-closed blocked_unscannable, and the sources-push status -> exit-code map. - hooks.ts entry: MCP registration pins `serve --surface full`. - hook.ts entry: session-start/session-end pushes run in a detached child (non-blocking); atomic corpus write clears stale sidecars. - bootstrap.ts entry: render hard-refuses a public origin (template door). - verify.ts entry: source_id collision resolution (workspace-<path-hash>). - AGENT_BOOTSTRAP_PLAN as-shipped delta note for the scan/stage reorder. llms bundle unchanged (KEY_FILES is link-only); build:llms and test/build-llms.test.ts green. Co-Authored-By: Claude Fable 5 <noreply@anthropic.com> * fix(ci): silence SC2016 on the intentional askpass literal in release.yml The one-shot GIT_ASKPASS script must contain literal $1 and $TEMPLATE_REPO_PAT so they expand when /bin/sh runs it at git's credential prompt, not when the outer shell writes the file — single quotes are correct. Add a scoped shellcheck disable so actionlint passes. Co-Authored-By: Claude Fable 5 <noreply@anthropic.com> * fix(skills): declare 'bootstrap my data' trigger in cold-start frontmatter The doc reform added 'bootstrap my data' to cold-start's RESOLVER.md row (to disambiguate data-bootstrap from agent-bootstrap) but not to the skill's own frontmatter triggers, tripping the RESOLVER↔frontmatter round-trip contract (resolver.test.ts). Declare it; regenerate skills.lock.json. Co-Authored-By: Claude Fable 5 <noreply@anthropic.com> * feat(bootstrap): default per-turn hooks + search mode ON without a prompt Installing gbrain for your coding agent IS the consent for the behaviors that make it work, so stop re-litigating them with install-time questions whose "no" defeats the product: - Per-turn hooks (Claude Code) install ON by default — no prompt. Off-ramps: `--no-hooks` at install, `GBRAIN_HOOKS=0` at runtime, `bootstrap uninstall`. The "hooks installed" line now surfaces the kill switch so default-on is never silent. A persisted HOOKS_CONSENT=no (interview --skip) still declines. - Search mode defaults to `balanced` silently (nobody knows the modes at install; `gbrain search modes` changes it any time). - MCP scope stays the ONE deliberate prompt — project vs user is a real cross-repo privacy choice, not friction. Marks the two consents `silent: true` in the question bank (new QuestionSpec field), rewrites the runbook phases so the agent no longer asks them, adds the `--no-hooks` flag (+ registry regen), and adds default-on / opt-out tests. Co-Authored-By: Claude Fable 5 <noreply@anthropic.com> * test(bootstrap): real end-to-end coverage — cross-session recall, per-turn content, Codex door, realistic corpus Closes the seven e2e gaps a coverage audit surfaced: the plumbing was well-unit-tested but the product claims ("Codex works, context shows up every turn with real content, it remembers across restarts, machine two recovers, Postgres works") were unproven end to end. Test-only wave — zero src changes. - Hermetic synthetic corpus (test/fixtures/bootstrap-corpus/ + a loader helper): 12 interlinked pages (52 edges, timelines), 12 world/private beliefs, 8 gold queries — curated from the gbrain-evals synthetic corpora, 100% placeholder names, so recall is asserted on a real multi-entity brain instead of a 2-node self-planted probe. - GAP1 magic moment: author a fact via the real write path, disconnect the engine, reopen against the same DB, recall it — a real session boundary, not verify.ts's same-connection SQL read-back. Plus a source-isolation assertion. - GAP2 per-turn content: hook-under-serve Pin 1 now seeds a known fact and asserts its text lands in the injected block AND private beliefs never do (was: empty brain, empty_block accepted as a pass). - GAP3 Codex door: assert the rendered AGENTS.md carries the Gate-3 brain-first pull protocol; make the fake codex shim implement `mcp get` so the [FIX7] target-verification can actually fail; the Docker cold-machine harness now exercises the hooks/MCP registration step instead of skipping it. - GAP4 corpus recall: turn-context + verify graph-floor/qrels run on the real multi-entity brain with real edges. - GAP5 attach: machine-two now re-ingests the cloned brain/ into a fresh DB and recalls a fact authored only on machine one — the multi-device payoff. - GAP6 keyed + Postgres (env-gated): real embeddings prove semantic recall a paraphrase query can reach but keyless BM25 cannot; bootstrap verify drives a real Postgres engine (skipIf DATABASE_URL/keys absent). - GAP7 persistence: session-end runs the REAL push (not the mocked seam) to a local bare remote and the remote receives the content; a planted secret is blocked at the gate; the 15-min cron installs and fires a scan-gated push. Co-Authored-By: Claude Fable 5 <noreply@anthropic.com> * test(bootstrap): real-agent e2e — drive the actual claude + codex binaries end to end Closes the audit's biggest gap ("no real harness ever drives a turn"). Adapts gstack's PTY/headless agent harness to prove the bootstrap install + smoke work against the REAL binaries, not PATH shims. Test/CI/docs only — zero src changes. - test/helpers/agent-harness.ts: hermetic clean-room child env (ported from gstack; drops CONDUCTOR_/CLAUDE_/GSTACK_/MCP_/GBRAIN_, promotes GSTACK_ANTHROPIC_API_KEY→ANTHROPIC_API_KEY), real-binary resolvers + auth probes, headless `claude -p --output-format stream-json` and `codex exec --json` turn runners, a gbrain stdio MCP-config writer, and a keyless brain seeder. + a fixture-parse unit test (no binary needed). - test/e2e/bootstrap-real-claude.serial.test.ts: real `gbrain bootstrap` install → REAL `claude mcp add` (verified via `claude mcp get`) → verify exit 0 → a real `claude -p --mcp-config --strict-mcp-config` turn that invokes mcp__gbrain__search and answers from the brain (proven: toolCalls include mcp__gbrain__search, final text carries the seeded fact). - test/e2e/bootstrap-real-codex.serial.test.ts: same install with REAL `codex mcp add` into a real ~/.codex/config.toml + Gate-3 pull-protocol assertion, then a real `codex exec --json` turn surfacing the fact (MCP or the pull- protocol shell path). Bounded retry absorbs codex's occasional MCP-call cancellation without softening the fact-requiring assertion. - Everything hermetic (temp HOME/CLAUDE_CONFIG_DIR/CODEX_HOME/GBRAIN_HOME; real ~/.codex auth copied read-only) and skipIf-gated so it self-skips cleanly where the binaries/auth are absent. - heavy-tests.yml: gated `real-agent-e2e` job (nightly/label, never the PR shard; no-op on a runner without authed binaries). - TODOS: compiled `gbrain` binary can't serve a PGLite brain (bun compile omits the WASM/extension payloads); harness falls back to `bun run` serve. Verified against live claude 4.6 + codex 0.147.0: 15 pass / 0 fail; verify 36/36; typecheck clean. Co-Authored-By: Claude Fable 5 <noreply@anthropic.com> * fix(ci): real-agent-e2e job — bash array + --timeout (actionlint SC2086 + bun-test-timeout guard) The real-agent-e2e job's file loop used an unquoted $FILES (SC2086) and ran `bun test` without --timeout (check-bun-test-timeout guard). Switch to a bash array and add --timeout=600000 (real-agent turns are slow; the tests self-skip without authed binaries so it's a no-op elsewhere). Co-Authored-By: Claude Fable 5 <noreply@anthropic.com> * fix(pglite): embed WASM + extension assets so the compiled binary can serve A `bun build --compile` gbrain binary could not `serve` a PGLite brain: the compile bundles JS but not PGLite's runtime payload (pglite.wasm, initdb.wasm, pglite.data, vector/pg_trgm tarballs), so `serve` on PGLite died with a bunfs/ENOENT. Now the assets ride inside the binary. - src/core/pglite-embedded-assets.ts: embeds the five assets via `import … with { type: 'file' }` (the ENG-6 idiom) and exposes getEmbeddedPgliteOptions() → { pgliteWasmModule, initdbWasmModule, fsBundle, extensions:{vector,pg_trgm} }. WASM/fsBundle are consumed as bytes; the two extension tarballs are materialized to a content-addressed temp file (atomic, size-verified reuse) because PGLite reads them via fs.createReadStream, which cannot read a /$bunfs path. Unconditional (works in bun-run and compiled), so no fragile mode branch. - src/core/pglite-engine.ts: static-import getEmbeddedPgliteOptions (engine path stays static per the engine-dynamic-import invariant); spread into both PGlite.create sites (initial + WAL-repair retry). The bunfs classifier stays as a backstop but no longer fires for a correct binary. - scripts/check-pglite-embedded.sh (+ smoketest): compiles a focused binary and asserts it boots PGLite, CREATE EXTENSION vector/pg_trgm, and round-trips a page — wired into `bun run verify` (now 37 checks), check:all, and check:pglite-embedded. Fail-soft only when compile is unavailable. - agent-harness.ts probeCompiledPglite now passes → the real-agent e2e uses the fast compiled MCP server. TODOS: the P2 "can't serve PGLite" item is closed. Verified: fresh compiled binary ran `search`/`query` against a PGLite brain and returned the seeded row (no bunfs/ENOENT); verify 37/37; pglite-engine 120/0 source-mode; typecheck clean; engine-dynamic-import + parity guards pass. Co-Authored-By: Claude Fable 5 <noreply@anthropic.com> --------- Co-authored-by: Claude Fable 5 <noreply@anthropic.com>
27 KiB
Releasing & contributing (gbrain)
The full release + contributor process. CLAUDE.md keeps the ship-critical IRON RULES
inline (the Version-locations table, branch=workspace, post-ship /document-release,
the Privacy + Responsible-disclosure rules, PR-title-version-first, never-hand-roll-ship)
and points here for everything else. Before any ship, read this in full. Use /ship —
never hand-roll a release.
Pre-ship requirements
Before shipping (/ship) or reviewing (/review), always run the full test suite. Two equivalent paths:
Path A — local CI gate (recommended, v0.23.1+):
bun run ci:localruns the entire stack inside Docker: gitleaks (host), guards + typecheck, then 4-shard parallel unit + E2E against four pgvector containers plus a transaction-mode PgBouncer service (unit phase keepsDATABASE_URLunset;--no-shardfor the legacy sequential flow). Stronger than PR CI's 2-file Tier 1 set; closer to what nightly Tier 1 catches. Spins up + tears down postgres automatically viadocker-compose.ci.yml. Override the host port withGBRAIN_CI_PG_PORT=5435 bun run ci:localif 5434 collides.bun run ci:local:diffruns only the E2E files matched by the diff selector (scripts/select-e2e.ts), falling back to ALL E2E files on unmapped src/ paths or schema/skills/package.json changes. Fast iteration during a focused branch.
Path B — manual lifecycle (still supported):
bun test— unit tests (no database required)- Follow the "E2E test DB lifecycle" steps in
docs/TESTING.md to spin up the test DB, run
bun run test:e2e, then tear it down.
Both must pass. Do not ship with failing E2E tests. Do not skip E2E tests.
Always run typecheck before pushing. Neither bun test (the bun runner)
nor bun run test gates on types — bun run test is just
bash scripts/run-unit-parallel.sh (the sharded unit runner; no typecheck,
no shell pre-checks — see the test-tier table in docs/TESTING.md).
Three ways to actually gate on types:
bun run verify— runs the shell guard checks (privacy, jsonb, source-id, progress-to-stdout, …) plusbun run typecheckin parallel (scripts/run-verify-parallel.sh). Use this mid-branch.bun run typecheck—tsc --noEmitstandalone. Fast (~5s on this repo).bun run ci:local— the full local CI gate from Path A.
The trap is: writing a new test, running bun test test/foo.test.ts,
seeing it pass, pushing — and CI's separate typecheck stage rejects an
invalid type literal that the runner accepted. Caught one of these
shipping the v0.23.2 round-trip E2E (type: 'reflection' is not a
member of PageType). Run bun run typecheck once before push, even
when only test files changed.
CHANGELOG + VERSION are branch-scoped
VERSION and CHANGELOG describe what THIS branch adds vs master, not how we got here. Every feature branch that ships gets its own version bump and CHANGELOG entry. The entry is product release notes for users; it is not a log of internal decisions, review rounds, or codex findings.
Write the CHANGELOG entry at /ship time, not during development. Mid-branch
iterations, review rounds (CEO/Eng/Codex/DX), and implementation detours belong
in the plan file at ~/.claude/plans/, not in the CHANGELOG. One unified entry
per branch, covering what the branch added vs the base branch.
Never edit a CHANGELOG entry that already landed on master. If master has v0.18.2 and your branch adds features, bump to the next version (v0.19.0, not editing master's v0.18.2). When merging master into your branch, master may bring new CHANGELOG entries above yours — push your entry above master's latest and verify:
- Does CHANGELOG have your branch's own entry separate from master's entries?
- Is VERSION higher than master's VERSION?
- Is your entry the topmost
## [X.Y.Z]entry? grep "^## \[" CHANGELOG.mdshows a contiguous version sequence?
If any answer is no, fix it before continuing.
CHANGELOG is for users, not contributors. Write like product release notes:
- Lead with what the user can now do that they couldn't before. Sell the capability.
- Plain language, not implementation details. "You can now..." not "Refactored the..."
- Never mention internal artifacts: plan file IDs, decision tags (D-CX-#, F-ENG-#), review rounds, codex findings, subcontractor credits. These are invisible to users.
- Put contributor-facing changes in a separate
### For contributorssection at the bottom. - Every entry should make someone think "oh nice, I want to try that."
What to omit:
- "Codex caught X that the CEO review missed" — private process detail.
- "D-CX-3 split errors/warnings" — tag is meaningless to users; name the feature instead.
- "Fix-wave PR #N supersedes #M" — supersede chains belong in PR bodies, not release notes.
- "215 new cases, 3 decisions applied, 7 reviews cleared" — these are planning-mode metrics.
What to keep:
- The user-facing change: what commands exist now, what flag was added, what behavior fixed.
- Numbers that mean something to the user: TTHW, commands that timed out before, detection counts.
- Upgrade instructions:
gbrain upgrade+ any manual step if needed. - Credit to external contributors when a community PR was incorporated.
CHANGELOG voice + release-summary format
IRON RULE: the CHANGELOG describes what the user gets, not how the work
happened. Nobody reading release notes cares that codex caught a bug, that
the plan went through CEO + eng review, that the migration was originally
numbered v68 and renumbered to v79 during master merge, or that two
review rounds caught architectural mistakes. The reader cares what
gbrain brainstorm does and how to use it. If a fact only exists because
of the development process, it does NOT belong in the CHANGELOG.
Specifically forbidden in CHANGELOG entries:
- Any mention of review processes (CEO review, eng review, codex review, plan-eng-review, outside voice, adversarial review, autoplan, /review).
- "What we caught and fixed before merging" sections. Bugs found pre-merge are not changes — they're things that didn't ship.
- Plan file references, plan IDs, plan decision tags (D1, D14, D-CDX-3).
- Migration version drama ("originally v68", "renumbered to v77", "claimed by parallel waves") — just say "Migration v79 adds X." If the user cares about migration ordering, they read the diff.
- Round counts, finding counts, decision counts ("25 findings across 2 rounds", "8 architectural decisions", "5/6 expansions accepted").
- Names of internal collaborators ("codex caught", "the reviewer flagged", "Claude noticed").
- "Plan + reviews" summary bullets. The plan lives in
~/.claude/plans/; if a future reader wants the backstory they can grep there. - Any wording that frames a shipped feature as a recovery from a planning mistake ("the first plan was wrong", "we corrected the approach", "the shipped version supersedes the original design").
Smell test: read the entry as a stranger who has never touched gbrain. If any sentence makes them think "why are you telling me this?", cut it. Every sentence in the release-summary AND in the itemized changes must answer one of three questions: What can I now do? How do I use it? What should I watch for after I upgrade?
Every version entry in CHANGELOG.md MUST start with a release-summary section in
the GStack/Garry voice — one viewport's worth of prose + tables that lands like a
verdict, not marketing. The itemized changelog (subsections, bullets, files) goes
BELOW that summary, separated by a ### Itemized changes header.
The release-summary section gets read by humans, by the auto-update agent, and by anyone deciding whether to upgrade. The itemized list is for agents that need to know exactly what changed.
Release-summary template
Iron rule: lead ELI10, get precise after. The first ~150 words of every entry must be readable by someone who does NOT know gbrain's internals. No file paths, no function names, no internal constants, no acronyms (no "RRF", no "knobsHash", no "MODE_BUNDLES", no "CDX-4"), no jargon that requires reading the codebase to parse. Lead with the user-visible behavior change, in everyday English, like you're explaining it to a smart engineer who has never opened the repo.
THEN, once the reader knows what shipped and why they'd care, drill into the precise details: real file paths, real function names, real config keys, real numbers. The precision part is required (the entry is also the technical record of what changed), but it lives AFTER the plain-English lead, never before it.
The shape:
- One-line bold headline. What changed for the user, in human English. No jargon. No internal terms. Example good: "Your search stops boosting weak pages just because they have a lot of links pointing at them." Example bad: "PostFusionOpts gains floorRatio; KNOBS_HASH_VERSION bumped 2→3."
- Plain-English opener (~3-5 sentences). Describe the problem this fixes in everyday terms. Pretend the reader has a brain full of meeting notes and people pages and wants to know if this release helps them. Concrete example beats abstract description.
- A "How to turn it on" or "How to use it" section with paste-ready commands. Real flags, real config keys. This is where precision starts.
- A "What you'd see in a concrete example" or "The X numbers that matter" section with a table. Use everyday-language column headers ("Page", "Match quality", "Has many backlinks?") even when the underlying mechanism is technical. The table teaches what the feature does without requiring the reader to understand how.
- A "What's safe to know about" or "Things to watch" section for caveats, side effects, cache invalidation, mid-deploy notes. Still in plain language.
- A "What we caught and fixed before merging" section if the work went through review (CEO/eng/codex/outside-voice). Translate review findings into plain English. "We caught a stale-cache bug" beats "knobsHash() did not include floorRatio in the v=2 hash input."
### Itemized changes(precision lives here). File paths, function names, types, constants, line numbers. This section is for engineers who need to know exactly what moved.
Voice rules (apply throughout):
- No em dashes (use commas, periods, "...").
- No AI vocabulary (delve, robust, comprehensive, nuanced, fundamental, etc.) or banned phrases ("here's the kicker", "the bottom line", etc.).
- Real numbers, real file names, real commands AFTER the ELI10 lead. Not "fast" but "~30s on 30K pages." In the ELI10 lead, "fast enough that you won't notice" or "~30 seconds even on a big brain."
- Short paragraphs, mix one-sentence punches with 2-3 sentence runs.
- Connect to user outcomes: "the agent does ~3x less reading" beats "improved precision."
- Be direct about quality. "Well-designed" or "this is a mess." No dancing.
The smell test: if someone who has never opened gbrain reads the first 150 words and walks away knowing what shipped and whether they care, the entry passes. If they need to grep the codebase to follow along, rewrite the lead.
Canonical examples in this CHANGELOG: v0.35.6.0 (floor-ratio gate, written ELI10-lead-first), v0.34.4.0 (embed stale fix wave). Use those shapes when in doubt. Avoid the shape of entries that lead with internal constants or release mechanics; those exist in older history but should not be the model for new work.
Source material to pull from:
- CHANGELOG.md previous entry for prior context
- Latest
gbrain-evals/docs/benchmarks/[latest].mdfor headline numbers (sibling repo) - Recent commits (
git log <prev-version>..HEAD --oneline) for what shipped - Don't make up numbers. If a metric isn't in a benchmark or production data, don't include it. Say "no measurement yet" if asked.
Target length: ~250-350 words for the summary. Should render as one viewport.
"To take advantage of v[version]" block (required, v0.13+)
After the release-summary and BEFORE ### Itemized changes, every ## [X.Y.Z]
entry MUST include a human-readable self-repair block under the heading
## To take advantage of v[version].
Why: gbrain upgrade runs gbrain post-upgrade which runs gbrain apply-migrations.
This chain has a known weak link — upgrade.ts catches post-upgrade failures as
best-effort (so the binary still works). When that chain silently fails, users end
up with half-upgraded brains. The self-repair block gives them a paste-ready
recovery path; the v0.13+ ~/.gbrain/upgrade-errors.jsonl trail + gbrain doctor
integration close the loop.
Template (adapt the verify commands per release):
## To take advantage of v[version]
`gbrain upgrade` should do this automatically. If it didn't, or if `gbrain doctor`
warns about a partial migration:
1. **Run the orchestrator manually:**
```bash
gbrain apply-migrations --yes
-
Your agent reads
skills/migrations/v[version].mdthe next time you interact with it. [One sentence on whether headless agents need manual action, or whether the orchestrator already handled the mechanical side.] -
Verify the outcome:
[release-specific verify commands, e.g. `gbrain graph ... --depth 2`] gbrain stats -
If any step fails or the numbers look wrong, please file an issue: https://github.com/garrytan/gbrain/issues with:
- output of
gbrain doctor - contents of
~/.gbrain/upgrade-errors.jsonlif it exists - which step broke
This feedback loop is how the gbrain maintainers find fragile upgrade paths. Thank you.
- output of
**Skip this block** for patches that are pure bug fixes with zero user-facing action
(rare). If the release has a schema migration, data backfill, or new feature the
user needs to verify, the block is required.
The v0.13.0 entry in CHANGELOG.md is the canonical example.
### Itemized changes (the existing rules)
Below the release summary, write `### Itemized changes` and continue with the
detailed subsections (Knowledge Graph Layer, Schema migrations, Security hardening,
Tests, etc.). Same rules as before:
- Lead with what the user can now DO that they couldn't before
- Frame as benefits and capabilities, not files changed or code written
- Make the user think "hell yeah, I want that"
- Bad: "Added GBRAIN_VERIFY.md installation verification runbook"
- Good: "Your agent now verifies the entire GBrain installation end-to-end, catching
silent sync failures and stale embeddings before they bite you"
- Bad: "Setup skill Phase H and Phase I added"
- Good: "New installs automatically set up live sync so your brain never falls behind"
- **Always credit community contributions.** When a CHANGELOG entry includes work from
a community PR, name the contributor with `Contributed by @username`. Contributors
did real work. Thank them publicly every time, no exceptions.
### Reference: v0.12.0 entry as canonical example
The v0.12.0 entry in CHANGELOG.md is the canonical example of the format. Match its
structure for every future version: bold headline, lead paragraph, "numbers that
matter" with BrainBench-style before/after table, "what this means" closer, then
`### Itemized changes` with the detailed sections below.
## Version migrations
Create a migration file at `skills/migrations/v[version].md` when a release
includes changes that existing users need to act on. The auto-update agent
reads these files post-upgrade (see `docs/guides/upgrades-auto-update.md`)
and executes them.
**You need a migration file when:**
- New setup step that existing installs don't have (e.g., v0.5.0 added live sync,
existing users need to set it up, not just new installs)
- New SKILLPACK section with a MUST ADD setup requirement
- Schema changes that require `gbrain init` or manual SQL
- Changed defaults that affect existing behavior
- Deprecated commands or flags that need replacement
- New verification steps that should run on existing installs
- New cron jobs or background processes that should be registered
**You do NOT need a migration file when:**
- Bug fixes with no behavior changes
- Documentation-only improvements (the agent re-reads docs automatically)
- New optional features that don't affect existing setups
- Performance improvements that are transparent
**The key test:** if an existing user upgrades and does nothing else, will their
brain work worse than before? If yes, migration file. If no, skip it.
Write migration files as agent instructions, not technical notes. Tell the agent
what to do, step by step, with exact commands. See `skills/migrations/v0.5.0.md`
for the pattern.
## Migration is canonical, not advisory
GBrain's job is to deliver a canonical, working setup to every user on upgrade.
Anything that looks like a "host-repo change" — AGENTS.md, cron manifests,
launchctl units, config files outside `~/.gbrain/` — is a GBrain migration
step, not a nudge we leave for the host-repo maintainer. Migrations edit host
files (with backups) to make the canonical setup real. Exceptions: changes
that require human judgment (content edits, renames that break semantics,
host-specific handler registration where shell-exec would be an RCE surface).
Everything mechanical ships in the migration.
**Test:** if shipping a feature requires a sentence that starts with "in
your AGENTS.md, add…" or "in your cron/jobs.json, rewrite…", the migration
orchestrator should be doing that edit, not the user.
**The exception is host-specific code.** For custom Minion handlers
(host-specific integrations like inbox sweeps or third-party API scanners), shipping them as a
data file the worker would exec is an RCE surface. Those get registered in
the host's own repo via the plugin contract (`docs/guides/plugin-handlers.md`);
the migration orchestrator emits a structured TODO to
`~/.gbrain/migrations/pending-host-work.jsonl` + the host agent walks the
TODOs using `skills/migrations/v0.11.0.md` — stays host-agnostic, still
canonical.
## Schema state tracking
`~/.gbrain/update-state.json` tracks which recommended schema directories the user
adopted, declined, or added custom. The auto-update agent
(`docs/guides/upgrades-auto-update.md`) reads this during upgrades to suggest new schema additions without re-suggesting
things the user already declined. The setup skill writes the initial state during
Phase C/E. Never modify a user's custom directories or re-suggest declined ones.
## GitHub Actions SHA maintenance
All GitHub Actions in `.github/workflows/` are pinned to commit SHAs. Before shipping
(`/ship`) or reviewing (`/review`), check for stale pins and update them:
```bash
for action in actions/checkout oven-sh/setup-bun actions/upload-artifact actions/download-artifact softprops/action-gh-release gitleaks/gitleaks-action; do
tag=$(grep -r "$action@" .github/workflows/ | head -1 | grep -o '#.*' | tr -d '# ')
[ -n "$tag" ] && echo "$action@$tag: $(gh api repos/$action/git/ref/tags/$tag --jq .object.sha 2>/dev/null)"
done
If any SHA differs from what's in the workflow files, update the pin and version comment.
GitHub releases (binary assets + self-update) — #3521
.github/workflows/release.yml publishes a GitHub release automatically for
every VERSION bump that lands on master (trigger: push to master touching
VERSION, plus workflow_dispatch for a manual first run or repair). No
manual tag push is part of the ship flow — the workflow reads VERSION (the
single source of truth), mints tag v<VERSION> at the pushed commit, titles
the release the same, uses that version's CHANGELOG.md entry as the notes
(scripts/changelog-entry.sh; falls back to a CHANGELOG link if the entry is
missing), and attaches the compiled binaries.
The latest-stable tag
The final step of the release job force-advances the latest-stable tag to
the release commit (git push origin "+${GITHUB_SHA}:refs/tags/latest-stable").
latest-stable is the single sanctioned distribution ref: the README paste
block, the BOOTSTRAP_FOR_AGENTS.md fetch URL, and
bun install -g github:garrytan/gbrain#latest-stable all reference it
permanently, so paste blocks copied into the wild never rot and there is no 404
window between VERSION landing and assets publishing.
scripts/check-bootstrap-tag.sh keeps the entry docs pinned to this ref.
Because it moves ONLY after binaries + provenance attestation have fully published, a half-built release never advances it. If the tag-advance step alone fails, re-advance by hand (a full workflow re-run would skip — the release already exists with all assets):
git push origin "+refs/tags/v<VERSION>^{commit}:refs/tags/latest-stable"
The publish-template job
After the release job, a publish-template job force-pushes the rendered
agent-workspace template repo (the GitHub "Use this template" door,
vars.TEMPLATE_REPO, default garrytan/gbrain-agent-template) from CI only —
no human pushes it by hand, so what adopters clone is exactly what this repo
reviewed. It is guarded three ways: the release above fully published; the
vendored tree templates/bootstrap/template-repo/ exists (skip, never fail,
if not); and the TEMPLATE_REPO_PAT secret is configured (skip if not).
Before pushing, it regenerates the template tree
(bun run scripts/generate-template-repo.ts) and byte-diffs it against the
vendored copy — a mismatch fails the job; regenerate + commit the vendored
tree (scripts/check-bootstrap-templates.sh runs the same diff offline in
bun run verify).
TEMPLATE_REPO_PAT scope: a fine-grained PAT with contents: write on
the template repository ONLY — no other repositories, no other permissions.
Configure it as a repo secret; when absent, template publishing is disabled
and the job skips cleanly.
Why every bump, not selective: gbrain check-update resolves the latest
version from VERSION on master, while binary self-update
(src/core/binary-self-update.ts) downloads assets from releases/latest.
Any release that lags VERSION tells binary installs an upgrade exists that
self-update cannot apply. releases/latest must track VERSION.
Invariants:
- Asset names are a contract. The build matrix's
artifact:names must equal whatexpectedAssetName()insrc/core/binary-self-update.tsreturns (gbrain-darwin-arm64,gbrain-linux-x64today). Adding a platform means updating BOTH plus the version job's completeness check;test/release-workflow.test.tspins all of it. - Idempotent + self-repairing. The version job skips when a release for
v<VERSION>already exists with all expected assets; a partial release (tag but no release, or missing assets) is completed on re-run. Racing master pushes queue via thereleaseconcurrency group — a skipped intermediate version is fine, latest is what matters. - Historical tags are never rewritten. Old 3-segment versions keep their
history; every new 4-segment
VERSIONmints a fresh tag. - Permissions stay scoped.
contents: writelives on the release job only; everything else runs read-only. - Never advance
latest-stableon a partial release. The tag moves only as the final release-job step, after every asset has published. Manual re-advances must point at a fully publishedv<VERSION>release.
PR descriptions cover the whole branch
Pull request titles and bodies must describe everything in the PR diff against the
base branch, not just the most recent commit you made. When you open or update a
PR, walk the full commit range with git log --oneline <base>..<head> and write the
body to cover all of it. Group by feature area (schema, code, tests, docs) — not
chronologically by commit.
This matters because reviewers read the PR body to understand what's shipping. If the body only covers your last commit, they miss everything else and can't review properly. A 7-commit PR with a body that describes commit 7 is worse than no body at all — it actively misleads.
When in doubt, run gh pr view <N> --json commits --jq '[.commits[].messageHeadline]'
to see what's actually in the PR before writing the body.
Community PR wave process
Never merge external PRs directly into master. Instead, use the "fix wave" workflow:
- Categorize — group PRs by theme (bug fixes, features, infra, docs)
- Deduplicate — if two PRs fix the same thing, pick the one that changes fewer lines. Close the other with a note pointing to the winner.
- Collector branch — create a feature branch (e.g.
garrytan/fix-wave-N), cherry-pick or manually re-implement the best fixes from each PR. Do NOT merge PR branches directly — read the diff, understand the fix, and write it yourself if needed. - Test the wave — verify with
bun test && bun run test:e2e(full E2E lifecycle). Every fix in the wave must have test coverage. - Close with context — every closed PR gets a comment explaining why and what (if anything) supersedes it. Contributors did real work; respect that with clear communication and thank them.
- Ship as one PR — single PR to master with all attributions preserved via
Co-Authored-By:trailers. Include a summary of what merged and what closed.
Community PR guardrails:
- Always AskUserQuestion before accepting commits that touch voice, tone, or promotional material (README intro, CHANGELOG voice, skill templates).
- Never auto-merge PRs that remove YC references or "neutralize" the founder perspective.
- Preserve contributor attribution in commit messages.
Checking out PRs from garrytan-agents
garrytan-agents is the AI-authored PR account and is NOT a collaborator on
this repo. Its PRs live in a fork, so GitHub Actions triggered by
pull_request events on those PRs do not receive base-repo secrets. Any CI
job that needs ANTHROPIC_API_KEY, OPENAI_API_KEY, or similar will fail
with empty-env auth errors, regardless of what's set on the base repo. This
is a GitHub security default, not a config bug.
When the user says "check out " and the PR is from garrytan-agents
(or any other non-collaborator fork), move the branch into the base repo
before running CI:
gh pr checkout <N>— pull down the fork's branch. Note the PR number and head branch name (gh pr view <N> --json headRefName --jq .headRefName).git push origin HEAD:<branch-name>— push the same branch to the base repo (origin points atgarrytan/gbrain, not the fork). This is the move that gives CI access to secrets.gh pr close <N> --comment "moving to base-repo branch for secret access"— close the fork PR so the queue stays clean.gh pr create --base master --head <branch-name>— open the replacement PR from the base-repo branch. Preserve the original PR's title and body verbatim (gh pr view <N> --json title,body); contributor attribution moves to aCo-Authored-By:trailer if needed.
Why this over alternatives: adding garrytan-agents as a collaborator, or
flipping the repo-wide "send secrets to fork PRs" toggle, both broaden
secret distribution to every fork PR from that account or any fork. Moving
the branch keeps secret scope tight to just the one PR being shipped.