Files
gstack/setup-gbrain/SKILL.md.tmpl
Garry TanandClaude Fable 5 cdfe2d9074 feat(setup-gbrain): carve the branch-exclusive install paths into sections
Brain-init (Paths 1/2/3/4 bodies), engine remediation, transcript gate, and
CLAUDE.md persist load on demand — at most one install route ever runs.
Skeleton 75.3KB -> 57.0KB; the Step 1 detect and Step 2 path dispatch stay
always-loaded. New buildSetupGbrainFixture helper gives the periodic E2Es
extract-don't-copy fixtures with a non-empty guard; the voyage-code-3 gate
counts scan the tmpl union (the third init site lives in engine-remediation).

Co-Authored-By: Claude Fable 5 <noreply@anthropic.com>
2026-08-25 17:03:12 +00:00

682 lines
27 KiB
Cheetah

---
name: setup-gbrain
preamble-tier: 2
version: 1.0.0
description: |
Set up gbrain for this coding agent: install the CLI, initialize a
local PGLite or Supabase brain, register MCP, capture per-remote trust
policy. One command from zero to "gbrain is running, and this agent
can call it." Use when: "setup gbrain", "connect gbrain", "start
gbrain", "install gbrain", "configure gbrain for this machine". (gstack)
triggers:
- setup gbrain
- install gbrain
- connect gbrain
- start gbrain
- configure gbrain
allowed-tools:
- Bash
- Read
- Write
- Edit
- Glob
- Grep
- AskUserQuestion
---
{{PREAMBLE}}
# /setup-gbrain — Coding-Agent Onboarding for gbrain
You are setting up gbrain (https://github.com/garrytan/gbrain), a persistent
knowledge base, on the user's local Mac so that this coding agent (typically
Claude Code) can call it as both a CLI and an MCP tool.
**Scope honesty:** This skill's MCP registration step (5a) uses
`claude mcp add` and targets Claude Code specifically. Other local hosts
(Cursor, Codex CLI, etc.) will still get the gbrain CLI on PATH — they can
register `gbrain serve` in their own MCP config manually after setup.
**Audience:** local-Mac users. openclaw/hermes agents typically run in cloud
docker containers with their own gbrain; "sharing" a brain between them and
local Claude Code is only possible through shared Postgres (Supabase).
## User-invocable
When the user types `/setup-gbrain`, run this skill. Three shortcut modes:
- `/setup-gbrain` — full flow (default)
- `/setup-gbrain --repo` — only flip the per-remote policy for the current repo
- `/setup-gbrain --switch` — only migrate the engine (PGLite ↔ Supabase)
- `/setup-gbrain --resume-provision <ref>` — re-enter a previously interrupted
Supabase auto-provision at the polling step
- `/setup-gbrain --cleanup-orphans` — list + delete in-flight Supabase projects
Parse the invocation args yourself — these are prose hints to the skill, not
implemented as a dispatcher binary.
---
{{SECTION_INDEX:setup-gbrain}}
---
## Step 1: Detect current state
```bash
~/.claude/skills/gstack/bin/gstack-gbrain-detect
```
Capture the JSON output. It contains: `gbrain_on_path`, `gbrain_version`,
`gbrain_config_exists`, `gbrain_engine`, `gbrain_doctor_ok`, `gbrain_mcp_mode`,
`gstack_brain_sync_mode`, `gstack_brain_git`, `gstack_artifacts_remote`, and
the v1.34.0.0+ `gbrain_local_status` field (one of: `ok`, `no-cli`,
`missing-config`, `broken-config`, `broken-db`, `engine-locked`, `timeout`,
`thin-client`). Treat `timeout` like `ok` (slow-but-healthy engine, #1964) — it
never triggers Step 1.5 remediation. Treat `thin-client` like `ok` too (#2051):
the machine is a thin client of a remote-HTTP MCP brain, no local engine by
design — brain-aware blocks render, and the detect JSON carries
`gbrain_thin_client: {probed: false}` (config verified; remote reachability
is checked at use time, where gbrain calls degrade gracefully).
Skip downstream steps that are already done. Report the detected state in
one line so the user knows what you found:
> "Detected: gbrain v0.18.2 on PATH, engine=postgres, doctor=ok,
> sync=artifacts-only. Nothing to install; jumping to the policy check."
Branch on the `--repo`, `--switch`, `--resume-provision`, `--cleanup-orphans`
invocation flags here and skip to the matching step.
---
## Step 1.5: Broken-local-engine remediation (plan D4)
Read `gbrain_local_status` from the Step 1 detect output. **If it's `broken-db`
or `broken-config` AND no shortcut flag was passed**, the user has a
non-working local engine — run the remediation below BEFORE Step 2.
For `gbrain_local_status` values of `no-cli` or `missing-config`, do NOT fire
Step 1.5 — fall through to Step 2 (where `no-cli` triggers Step 3 install and
`missing-config` triggers Step 4 init). Do not read the remediation section in
that case.
{{SECTION:engine-remediation}}
---
## Step 1.7: Code-intelligence provider choice (Step 0 of indexing)
You are INSIDE /setup-gbrain: the user asked for gbrain by name, so the
provider question is already answered. NEVER ask it here, and never let this
step delay or derail the actual setup. Record the choice best-effort, then
continue immediately with Step 2:
```bash
[ -f ~/.claude/skills/gstack/bin/gstack-code-intelligence ] \
&& bun ~/.claude/skills/gstack/bin/gstack-code-intelligence select gbrain 2>/dev/null \
|| true
```
The offer ceremony below applies ONLY when this skill is reached from another
entry point where no provider was named (a routing skill exploring indexing
options). Even then:
- `"offer": false` with reason `bin-absent` → the installed gstack predates
the code-intelligence CLI. Skip this step entirely and continue with the
skill — the user asked for gbrain, so set up gbrain. Never block setup on
a missing optional gate.
- `"offer": false` with reason `small-repo` → grep is already fast here; say
so in one line and continue with this skill only if the user asked for
gbrain by name.
- `"offer": false` with reason `provider-selected` or `declined` → the
machine-wide question was already answered; apply it silently and continue.
- `"offer": true` → present the returned options ONCE via AskUserQuestion:
**GBrain** (recommended — semantic memory + code, sends repo content to
YOUR gbrain DB, per-repo consent), **Sourcebot** (self-hosted whole-repo
search, local when on localhost), **Graphify** (local tree-sitter graph,
nothing leaves the machine, user installs it), or **No indexing**. Record
the choice: `gstack-code-intelligence select <provider|none>` — `none`
persists the decline so NO skill ever asks again, on any repo
(re-enable: `gstack-code-intelligence select <provider>`). Local-compute
and remote-send providers are separate consents — never bundle them.
- Per-repo send consent (GBrain/Sourcebot) is recorded with
`gstack-code-intelligence consent <repo> yes|no` and is ALWAYS vetoed by a
`deny` tier in gstack-gbrain-repo-policy — the trust store is the single
authority for whether code leaves a repo.
If the user picked GBrain (or asked for this skill directly), continue below.
If they picked Sourcebot/Graphify, run `gstack-code-intelligence index <repo>`
and stop — the rest of this skill is gbrain-specific.
## Step 2: Pick a path (AskUserQuestion)
Only fire this if Step 1 shows no existing working config AND no shortcut
flag was passed. **Special case:** if `gbrain_mcp_mode=remote-http` in the
detect output, an HTTP MCP is already registered — skip directly to Step 5a
verification (re-test the registration) and Step 6 onward, treating this run
as idempotent. Don't ask Step 2 again.
The question title: "Where should your brain live?"
Options (present based on detected state):
- **1 — Supabase, I already have a connection string.** Cloud-agent users
whose openclaw/hermes provisioned one already. Paste the Session Pooler
URL from the Supabase dashboard (Settings → Database → Connection Pooler
→ Session). *Trust-surface caveat to include in the prompt:* "Pasting this
URL gives your local Claude Code full read/write access to every page your
cloud agent can see. If that's not the trust level you want, pick PGLite
local instead and accept the brains are disjoint."
- **2a — Supabase, auto-provision a new project.** You'll need a Supabase
Personal Access Token (~90 seconds). Best choice for a shared team brain.
- **2b — Supabase, create manually.** Walk through supabase.com signup
yourself; paste the URL back when ready.
- **3 — PGLite local.** Zero accounts, ~30 seconds. Isolated brain on this
Mac only. Best for try-first.
- **4 — Remote gbrain MCP.** Someone else (or another machine of yours) is
already running `gbrain serve` with HTTP transport. You paste the MCP URL
+ a bearer token; this skill registers it as your MCP. No local brain DB,
no local install needed. Recommended when the brain is shared across
machines or run by a teammate.
- **Switch** (only if Step 1 detected an existing engine): "You already have
a `<engine>` brain. Migrate it to the other engine?" → runs
`gbrain migrate --to <other>` wrapped in `timeout 180s` (D9).
Do NOT silently pick; fire the AskUserQuestion.
---
## Step 3: Install gbrain CLI (if missing)
**SKIP entirely on Path 4 (Remote MCP).** Path 4 doesn't need a local gbrain
binary — all calls go through MCP to the remote server. Jump to Step 4 (the
Path 4 subsection).
For Paths 1, 2a, 2b, 3, switch — only if `gbrain_on_path=false`:
```bash
~/.claude/skills/gstack/bin/gstack-gbrain-install
```
The installer runs D5 detect-first (probes `~/git/gbrain`, `~/gbrain` first),
then D19 PATH-shadow validation (post-link `gbrain --version` must match
install-dir `package.json`). On D19 failure the installer exits 3 with a
clear remediation menu; surface the full output to the user and STOP. Do not
continue the skill — the environment is broken until the user fixes PATH.
---
## Step 4: Initialize the brain
Path-specific. The init procedure for the path picked in Step 2 — Paths 1, 2a,
2b, 3, 4 (4a-4e), and the Switch migration flow — lives in the brain-init
section. Run ONLY the sub-section for the picked path.
{{SECTION:brain-init}}
---
## Step 5: Verify gbrain doctor
**SKIP entirely on Path 4 (Remote MCP).** The brain host runs its own
doctor; we don't have local DB access to introspect. Step 4c's verify
round-trip already proved the server is reachable, authed, and on a
compatible MCP version.
For Paths 1, 2a, 2b, 3, switch:
```bash
doctor=$(gbrain doctor --json)
status=$(echo "$doctor" | jq -r .status)
```
If status is `ok` or `warnings`, proceed. Anything else → surface the full
doctor output and STOP.
---
## Step 5a: Register gbrain as Claude Code MCP (D18)
Only if `which claude` resolves. Ask: "Give Claude Code a typed tool surface
for gbrain? (recommended yes)"
The registration form depends on the path picked in Step 2:
### Path 4 (Remote MCP — HTTP transport with bearer)
Tear down any prior registration (could be local-stdio from an old setup,
or stale remote-http with a rotated token), then register with HTTP +
bearer at user scope:
```bash
claude mcp remove gbrain -s user 2>/dev/null || true
claude mcp remove gbrain 2>/dev/null || true
claude mcp add --scope user --transport http gbrain "$MCP_URL" \
--header "Authorization: Bearer $GBRAIN_MCP_TOKEN"
unset GBRAIN_MCP_TOKEN # zero from process env after registration
claude mcp list | grep gbrain # verify: should show "✓ Connected"
```
**Token-storage note:** `claude mcp add --header "Authorization: Bearer ..."`
puts the bearer on argv during process startup, briefly visible to `ps` for
~10ms. The token's resting state is `~/.claude.json` (mode 0600 — Claude
Code's own credential surface for every MCP server). This trade-off is
documented in `setup-gbrain/memory.md`. If a future Claude Code release adds
a stdin or env-var input form for headers, switch to that.
### Paths 1, 2a, 2b, 3 (Local stdio)
Register at **user scope** with an **absolute path** to the gbrain
binary. User scope makes the MCP available in every Claude Code session on
this machine, not just the current workspace. Absolute path avoids PATH
resolution issues when Claude Code spawns `gbrain serve` as a subprocess.
```bash
GBRAIN_BIN=$(command -v gbrain)
[ -z "$GBRAIN_BIN" ] && GBRAIN_BIN="$HOME/.bun/bin/gbrain"
claude mcp remove gbrain -s user 2>/dev/null || true
claude mcp remove gbrain 2>/dev/null || true
claude mcp add --scope user gbrain -- "$GBRAIN_BIN" serve
claude mcp list | grep gbrain # verify: should show "✓ Connected"
```
### Both paths
If `claude` is not on PATH: emit "MCP registration skipped — this skill is
Claude-Code-targeted; register `gbrain serve` (or your remote MCP URL) in
your agent's MCP config manually." Continue to step 6.
**Heads-up for the user:** an already-open Claude Code session will not
pick up the new MCP tools until restart. Tell them: "Restart any open
Claude Code sessions to see `mcp__gbrain__*` tools — they're loaded at
session start, not mid-session."
---
## Step 6: Per-remote policy (D3 triad, gated repo-import)
If we're in a git repo with an `origin` remote, check the policy:
```bash
current_tier=$(~/.claude/skills/gstack/bin/gstack-gbrain-repo-policy get)
```
Branches:
- `read-write` → import this repo: `gbrain import "$(pwd)" --no-embed` then
`gbrain embed --stale &` in the background.
- `read-only` → skip import entirely (this tier is enforced by the future
auto-import hook + by gbrain resolver injection, not here).
- `deny` → do nothing.
- `unset` → AskUserQuestion: "How should `<normalized-remote>` interact with
gbrain?"
- `read-write` — agent can search AND write new pages from this repo
- `read-only` — agent can search but never write
- `deny` — no interaction at all
- `skip-for-now` — don't persist, ask next time
On answer (other than skip-for-now):
```bash
~/.claude/skills/gstack/bin/gstack-gbrain-repo-policy set "$REMOTE" "$TIER"
```
Then import iff `read-write`.
If outside a git repo OR no origin remote: skip this step with a note.
For `/setup-gbrain --repo` invocations, execute ONLY Step 6 and exit.
---
## Step 7: Offer artifacts sync + wire it into gbrain
Renamed from "session memory sync" in v1.27.0.0 — the on-disk concept is
artifacts (CEO plans, designs, /investigate reports, retros) rather than
"session memory," which was a confusing name for what was always a
human-readable artifact bucket. Behavioral transcript ingest is its own
step (7.5) with its own option set.
Separate AskUserQuestion: "Also sync your gstack artifacts (CEO plans,
designs, reports, retros) to a private git repo that gbrain can index
across machines?"
Options:
- Yes, full sync (everything allowlisted)
- Yes, artifacts-only (plans, designs, retros — skip behavioral data)
- No thanks
If yes, run the artifacts-init helper. It asks the user to pick a git host
(GitHub via `gh`, GitLab via `glab`, or paste a URL manually), creates
`gstack-artifacts-$USER` (private), and writes the canonical HTTPS URL to
`~/.gstack-artifacts-remote.txt`. Pass `--url-form-supported` from Step 4c's
verify output (Path 4) or `false` (Paths 1/2/3 — local mode doesn't probe):
```bash
URL_FORM=${URL_FORM_SUPPORTED:-false}
~/.claude/skills/gstack/bin/gstack-artifacts-init --url-form-supported "$URL_FORM"
~/.claude/skills/gstack/bin/gstack-config set artifacts_sync_mode artifacts-only
# or "full" if user picked yes-full
```
`gstack-artifacts-init` always prints a "Send this to your brain admin" block
at the end with the exact `gbrain sources add` command. Per codex Finding #3:
the skill never auto-executes server-side gbrain commands; even if the user
IS the brain admin, copy-pasting the printed command is the consistent UX.
### Path 4 (Remote MCP) — done after artifacts-init
In remote mode, the local `gstack-gbrain-source-wireup` helper does NOT run
(it shells out to a local `gbrain` CLI which Path 4 doesn't install). The
brain admin runs the printed command on the brain host instead. Skip to Step 7.5.
### Paths 1, 2a, 2b, 3 (Local stdio) — wire up the federated source
Then wire the artifacts repo into gbrain so its content is searchable from
any gbrain client. The helper creates a `git worktree` of `~/.gstack/`,
registers it as a federated source via `gbrain sources add --path
--federated`, and runs an initial `gbrain sync`. Local-Mac only.
Capture the database URL out of `~/.gbrain/config.json` first and pass it
explicitly so the wireup is robust against any other process rewriting
`~/.gbrain/config.json` mid-sync (e.g., concurrent `gbrain init` runs
elsewhere on the machine):
```bash
GBRAIN_URL=$(python3 -c "
import json, os, sys
try:
c = json.load(open(os.path.expanduser('~/.gbrain/config.json')))
print(c.get('database_url', ''))
except Exception:
pass
")
~/.claude/skills/gstack/bin/gstack-gbrain-source-wireup --strict \
${GBRAIN_URL:+--database-url "$GBRAIN_URL"}
```
`--strict` exits non-zero on missing prereqs (gbrain not installed, < 0.18.0,
or no `~/.gstack/.git` yet) so the user sees the failure rather than silently
ending up with an unwired brain. On non-zero exit, surface the helper's
output and STOP per skill rules — search-across-machines won't work until
the prereq is fixed.
---
## Step 7.5: Transcript & memory ingest gate
**SKIP entirely on Path 4 (Remote MCP).** Transcript ingest shells out to
the local `gbrain` CLI which Path 4 doesn't install. Remote-mode users
rely on the brain server's own ingest cadence — if your brain admin wants
this machine's transcripts indexed, they pull from your `gstack-artifacts-$USER`
repo (set up in Step 7) on whatever schedule they prefer. Set
`gstack-config set transcript_ingest_mode off` and continue to Step 8.
For Paths 1, 2a, 2b, 3, run the ingest gate:
{{SECTION:transcript-gate}}
---
## Step 8: Persist `## GBrain Configuration` in CLAUDE.md
CLAUDE.md is the audit trail: after a successful setup, persist the
configuration block. The exact block formats (remote-http vs local-stdio) and
the post-Step-9 Search Guidance write live in the claude-md-persist section.
{{SECTION:claude-md-persist}}
---
## Step 9: Smoke test
### Path 4 (Remote MCP)
The `mcp__gbrain__*` tools aren't visible mid-session — they're loaded at
Claude Code session start. So the live smoke test in this same skill run is
informational: print the curl-equivalent the user can run after restarting
Claude Code. The verify round-trip in Step 4c already proved the server is
reachable + authed + on a compatible MCP version, so we don't re-test that.
Print to stdout:
```
After restarting Claude Code, the `mcp__gbrain__*` tools become callable.
Smoke test: ask the agent to run `mcp__gbrain__search` with any query
("test page" works). You should see a JSON list of pages.
To verify from the shell right now (without waiting for restart):
curl -s -X POST -H 'Content-Type: application/json' \
-H 'Accept: application/json, text/event-stream' \
-H 'Authorization: Bearer <YOUR_TOKEN>' \
-d '{"jsonrpc":"2.0","id":1,"method":"tools/list","params":{}}' \
<YOUR_MCP_URL>
```
Do NOT print the actual token in the curl command — leave the placeholder
`<YOUR_TOKEN>` so the snippet is safe to copy into chat / share.
### Paths 1, 2a, 2b, 3 (Local stdio)
```bash
SLUG="setup-gbrain-smoke-test-$(date +%s)"
echo "Set up on $(date). Smoke test for /setup-gbrain." | gbrain put "$SLUG"
gbrain search "smoke test" | grep -i "$SLUG"
```
Confirms the round trip. On failure, surface `gbrain doctor --json` output
and STOP with a NEEDS_CONTEXT escalation.
---
## Step 9.5: Brain trust policy (v1.48 brain-aware planning, D4 / Phase 1.5)
The brain trust policy controls whether gstack auto-pushes `~/.gstack/`
artifacts and writes calibration takes back to this brain. It's per-
endpoint: a user with both a local PGLite (personal) and a team remote
MCP (shared) gets both policies tracked separately.
Detect the active endpoint hash + current policy:
```bash
_HASH=$(~/.claude/skills/gstack/bin/gstack-config endpoint-hash 2>/dev/null)
_POLICY=$(~/.claude/skills/gstack/bin/gstack-config get brain_trust_policy@$_HASH 2>/dev/null || echo unset)
echo "ENDPOINT_HASH: $_HASH"
echo "BRAIN_TRUST_POLICY: $_POLICY"
```
Branch on transport + current policy:
**If `_POLICY` is `personal` or `shared`:** policy already set. Print
"Trust policy for this endpoint: $_POLICY" and skip to Step 10.
**If `_POLICY` is `unset` AND `_HASH == "local"`:** auto-set personal
(local engines are inherently single-tenant). No AskUserQuestion.
```bash
~/.claude/skills/gstack/bin/gstack-config set brain_trust_policy@$_HASH personal
echo "Trust policy auto-set to 'personal' for local PGLite (single-tenant by construction)."
```
**If `_POLICY` is `unset` AND `_HASH != "local"` (remote MCP):** ask the
trust policy question via AskUserQuestion:
> The brain at this MCP endpoint — is it your personal brain or a
> shared/team brain?
>
> Personal: gstack auto-pushes ~/.gstack/ artifacts (CEO plans, design
> docs, retros, learnings) and writes calibration takes back as you make
> decisions. Your brain gets smarter every session. Pick this if you
> alone set up this brain.
>
> Shared/team: read-only by default. gstack reads context but prompts
> before any write. Safer for brains where your individual takes
> shouldn't pollute the shared corpus.
Options:
- A) Personal (recommended for self-hosted remote brains)
- B) Shared/team
After answer, persist:
```bash
~/.claude/skills/gstack/bin/gstack-config set brain_trust_policy@$_HASH <personal|shared>
```
If `personal` was selected AND `artifacts_sync_mode` is still `off`, also
default it to `full` (D4 auto-push convention):
```bash
_CURRENT_SYNC=$(~/.claude/skills/gstack/bin/gstack-config get artifacts_sync_mode 2>/dev/null || echo off)
if [ "$_CURRENT_SYNC" = "off" ]; then
~/.claude/skills/gstack/bin/gstack-config set artifacts_sync_mode full
echo "artifacts_sync_mode auto-set to 'full' (personal brain default)."
fi
```
Backwards compat: existing users whose `artifacts_sync_mode_prompted` is
already `true` keep their answer; this gate only fires for new endpoints
or first-time-after-upgrade users.
## Step 10: GREEN/YELLOW/RED verdict block (idempotent doctor output)
After Steps 1-9 complete, summarize. Re-running `/setup-gbrain` on a
configured Mac is a first-class doctor path: every step detects existing
state, repairs only what's missing, and reports here.
```bash
~/.claude/skills/gstack/bin/gstack-gbrain-detect 2>/dev/null || true
~/.claude/skills/gstack/bin/gstack-config get transcript_ingest_mode 2>/dev/null || echo "off"
~/.claude/skills/gstack/bin/gstack-config get artifacts_sync_mode 2>/dev/null || echo "off"
[ -f ~/.gstack/.gbrain-sync-state.json ] && cat ~/.gstack/.gbrain-sync-state.json || echo "{}"
```
Read `gbrain_mcp_mode` from the detect output and pick the right verdict
template. Each row is `[OK]/[FIX]/[WARN]/[ERR]`.
### Path 4 (Remote MCP)
```
gbrain status: GREEN (mode: remote-http)
MCP ............. OK {SERVER_NAME} v{SERVER_VERSION} at {MCP_URL}
Auth ............ OK bearer accepted (verified via /tools/list)
Engine .......... N/A remote mode
Doctor .......... N/A remote mode (brain admin runs `gbrain doctor`)
Repo policy ..... OK {read-write|read-only|deny}
Artifacts repo .. OK {gstack_artifacts_remote URL}
Artifacts sync .. OK {artifacts_sync_mode}
Transcripts ..... OK route to artifacts repo → remote brain (plan D11)
Code search ..... {OK local-pglite (~/.gbrain/pglite) | N/A declined at Step 4d}
CLAUDE.md ....... OK
Smoke test ...... INFO printed for post-restart manual verification
Restart Claude Code to pick up the `mcp__gbrain__*` tools.
Re-run `/setup-gbrain` any time the bearer rotates or the URL moves.
```
The **Code search** row reflects the choice at Step 4d:
- If user picked A (Yes): `OK local-pglite` and `gbrain_local_status == "ok"` going forward.
- If user picked B (No): `N/A declined at Step 4d` — `gstack-config set local_code_index_offered true` to silence future migration notices.
The **Transcripts** row changed in v1.34.0.0: in remote-http mode,
gstack-memory-ingest now persists staged transcripts to
`~/.gstack/transcripts/run-<pid>-<ts>/` and gstack-brain-sync pushes them
to the artifacts repo. Brain admin's pull job indexes into the remote brain.
Local PGLite (when present) stays code-only — no transcript pollution.
### Paths 1, 2a, 2b, 3 (Local stdio)
```
gbrain status: GREEN (mode: local-stdio)
CLI ............. OK <gbrain version>
Engine .......... OK <pglite|supabase> at <path>
doctor .......... OK
MCP ............. OK registered (user scope)
Repo policy ..... OK <read-write|read-only|deny>
Code import ..... OK <last_imported_head>
Artifacts sync .. OK <artifacts_sync_mode> to <remote>
Transcripts ..... OK <N> sessions, last ingest <when>
CLAUDE.md ....... OK
Smoke test ...... OK put → search → delete round-trip
Run `/setup-gbrain` again any time gbrain feels off; it's safe and idempotent.
```
If any row is YELLOW or RED, the verdict line says so and the failing rows
surface a one-line "next action" (e.g.,
`Engine .......... ERR PGLite corrupt — run \`gbrain restore-from-sync\` (V1.5)`).
For V1, restore-from-sync is a V1.5 P0 cross-repo TODO; until it ships,
the user's brain remote (with brain-sync enabled) holds curated artifacts
as markdown + git, recoverable manually via `gbrain import` from a clone.
---
## `/setup-gbrain --cleanup-orphans` (D20)
Re-collect a PAT (show the Path 2a PAT scope disclosure — it lives in the
brain-init section; read that section if it isn't already loaded), then:
```bash
# List user's Supabase projects (user has to pipe this through their own
# shell to review; we don't rely on a stored PAT).
export SUPABASE_ACCESS_TOKEN="<collected from read_secret_to_env>"
projects=$(curl -s -H "Authorization: Bearer $SUPABASE_ACCESS_TOKEN" \
https://api.supabase.com/v1/projects)
```
Parse the response, identify any project named starting with `gbrain` whose
`ref` doesn't match the user's active `~/.gbrain/config.json` pooler URL.
For each orphan, AskUserQuestion per project: "Delete orphan project
`<ref>` (`<name>`, created `<created_at>`)?" — NEVER batch; per-project
confirm is a one-way door.
On confirmed delete:
```bash
curl -s -X DELETE -H "Authorization: Bearer $SUPABASE_ACCESS_TOKEN" \
https://api.supabase.com/v1/projects/$REF
```
Never delete the active brain without a second explicit confirmation.
At end: `unset SUPABASE_ACCESS_TOKEN`. Revocation reminder.
---
## Telemetry (D4)
The preamble's Telemetry block logs skill success/failure at exit. When
emitting the event, add these enumerated categorical values to the
telemetry payload (SAFE — no free-form secrets, never the URL or PAT):
- `scenario`: `supabase-existing` | `supabase-auto-provision` |
`supabase-manual` | `pglite-local` | `switch-to-supabase` |
`switch-to-pglite` | `repo-flip-only` | `cleanup-orphans` |
`resume-provision`
- `install_performed`: `yes` | `no` (D5 reuse) | `skipped` (pre-existing)
- `mcp_registered`: `yes` | `no` | `claude-missing`
- `trust_tier_set`: `read-write` | `read-only` | `deny` |
`skip-for-now` | `n/a` (outside git repo)
Never pass `SUPABASE_ACCESS_TOKEN`, `DB_PASS`, `GBRAIN_POOLER_URL`,
`GBRAIN_DATABASE_URL`, or any `postgresql://` substring to the telemetry
invocation. The CI grep test in `test/skill-validation.test.ts` enforces
this at build time.
---
## Important Rules
- **One rule for every secret.** PAT, DB_PASS, pooler URL: env-var only,
never argv, never logged, never persisted to disk by us. The only file
that holds the pooler URL long-term is `~/.gbrain/config.json`, written
by gbrain's own `init` at mode 0600 — that's gbrain's discipline, not
ours.
- **STOP points are hard.** Gbrain doctor not healthy, D19 PATH shadow, D9
migrate timeout, smoke test failure — each is a STOP. Do not paper over.
- **Concurrent-run lock.** At skill start, `mkdir ~/.gstack/.setup-gbrain.lock.d`
(atomic). If the mkdir fails, abort with: "Another `/setup-gbrain` instance
is running. Wait for it, or `rm -rf ~/.gstack/.setup-gbrain.lock.d` if
you're sure it's stale." Release on normal exit AND in the SIGINT trap.
- **CLAUDE.md is the audit trail.** Always update it in Step 8 after a
successful setup.