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gstack/ARCHITECTURE.md
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1d41ee3ab3 v1.63.0.0 feat: GStack 2 fork port wave — egress receipts, context-bill, sharded gate, /health fix (#2541)
* test(helpers): shared skill-census helper with three explicit counts

physicalSkillFiles (symlinked dirs included, root router included),
authoredSkills (realpath-deduped, router excluded), registryEntries
(what ./setup registers: unique frontmatter names + _gstack-command).

One counting authority for the hermetic seeder, context-bill ground
truth, and the catalog-budget test — connect-chrome's dir symlink and
the root router otherwise produce three subtly different hand-rolled
censuses. Ported-wave foundation (C11).

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

* fix(evals): stop the harness grading itself

findPreviousRun excluded only the file being written, by name, so every
suite compared against _partial-e2e.json — the current run's own
accumulator, relabelled with the current tier just before each flush.
That is why every block read '+$0.00, +0s, Stable run, no regressions.'
This harness has never been able to detect a regression, and reassuring
output that cannot fail is worse than none. In-progress runs are now
excluded by role, and a run with nothing to compare against says NO
BASELINE instead of claiming stability.

Co-Authored-By: Claude Fable 5 <noreply@anthropic.com>
(cherry picked from commit f3140b5245221fff7fb9411c7ec07c2ca11587b5)

* refactor(evals): shared partial-run predicate + finalized-run lookup

isPartialEval(data, filename) is the one place that decides what counts
as an in-progress accumulator (the _partial flag OR a _partial-prefixed
filename), and findLatestFinalizedRun(evalDir, tier) is the one place
that finds the newest real run — scanning the eval dir plus one level of
shards/<slug>/ subdirs, where the sharded paid runner points each
shard's collector. skill-budget-regression.test.ts's hand-rolled
findLatestRun (flag-blind: a flagged-but-renamed accumulator passed its
name check) is replaced by the shared helper.

Co-Authored-By: Claude Fable 5 <noreply@anthropic.com>
(cherry picked from commit b55fcf6966366fd21a8cdc46de61aab6e1b1d100)

* feat(evals): register shipped skills for hermetic PTY children

Hermetic children get a config dir that deliberately seeds no skills —
right for children that install their own, fatal for the PTY family that
TYPES /office-hours or /plan-ceo-review: claude rejects the command as
Unknown before any model turn, so the plan-family gate smokes measure
nothing. hermeticSkillsConfigDir() is a second, opt-in config dir under
the same runRoot that mirrors ./setup's registration exactly (real dir
per registry name, SKILL.md + sections/ symlinks, frontmatter-name
resolution, _gstack-command root alias), driven by the shared
skill-census so connect-chrome's dir symlink collapses the same way
setup's idempotent overwrite does.

Ported from fork commit 03c4eca2, tree walk rewritten for the upstream
layout (top-level <skill>/SKILL.md dirs, no skills/ tree). Unit tests
are new: seed shape, census parity, symlink resolution, connect-chrome
collapse, idempotence, no-API-key seed.

Co-Authored-By: Claude Fable 5 <noreply@anthropic.com>
(cherry picked from commit 93dae6107b30ce453a07c2d342b60262bba6ce0b)

* feat(evals): seedSkills opt-in for PTY slash-command tests + tripwire

Wire ClaudePtyOptions.seedSkills through launchClaudePty: when set (and
hermetic, and no per-test CLAUDE_CONFIG_DIR override), the child gets
hermeticSkillsConfigDir() so typed /skill slash commands resolve instead
of dying as Unknown command before any model turn. Opted in at the three
runPlanSkill* helpers and the four direct-launch slash-command tests
(plan-design-with-ui, plan-ceo-mode-routing, autoplan-chain,
ship-idempotency).

New static tripwire (test/pty-skill-seeding-wiring.test.ts): any test
file that sends a slash command over the PTY must route through a
runPlanSkill* helper or pass seedSkills: true — an unseeded slash-command
test spends money and measures nothing. hermetic-wiring.test.ts now
blesses the repo-tree seeding path explicitly (config dir under runRoot,
symlinks into the repo checkout, never operator ~/.claude).

The CI "Register gstack skills for PTY smoke" step keeps a keep-me note:
container cross-mount symlinks defeat the TUI scanner and HOME is not
hermeticized, so the real-file copies there must survive this change.

Co-Authored-By: Claude Fable 5 <noreply@anthropic.com>
(cherry picked from commit 63c52269daaffb833b3105ea9b4b99be6df8fec7)

* refactor(evals): single shared paid-test-set module

test/helpers/paid-test-set.ts is now the one definition of which test
files are paid (the exact globs package.json's test:gate expands).
scripts/test-free-shards.ts derives its free/paid exclusion from it
instead of a private regex list, dropping the dead
browse/test/security-review-fullstack.test.ts pattern (file no longer
exists). The sharded paid runner derives its enumeration from the same
module, so a file added to one list can no longer silently miss the
other.

Co-Authored-By: Claude Fable 5 <noreply@anthropic.com>
(cherry picked from commit a7f36479a6a1f3656452370f5883371f3cb65623)

* feat(evals): env-driven lazy eval dir + shard-aware store and tooling

Importing eval-store no longer spawns the gstack-slug subprocess: the
module-level DEFAULT_EVAL_DIR constant is now a memoized defaultEvalDir()
resolved at collector construction. Resolution order: explicit
constructor arg, then GSTACK_EVAL_DIR, then slug detection — so the
sharded paid runner can point each shard child at its own
<evalDir>/shards/<slug>/ dir with plain env, no --preload.

Runs collected under a shards/ subdir record their slug in the eval
JSON (EvalResult.shard). findPreviousRun scans one shards/<slug>/ level
and prefers same-slug priors, so each shard baselines against its own
history instead of whichever shard flushed last. eval:list,
eval:summary, and eval:compare enumerate the same one level of shard
subdirs; eval:compare's no-arg mode also stops picking an in-progress
accumulator as the after-run.

eval-watch stays flat (documented follow-up): it tails a single dir for
live progress and gains nothing from per-shard baselines until the
runner emits a merged stream.

Co-Authored-By: Claude Fable 5 <noreply@anthropic.com>
(cherry picked from commit e1f53f7d9c7fe6b65877d843f2e25bd2e2d12ffd)

* feat(evals): sharded paid tier runner

scripts/test-paid-shards.ts runs the gate/periodic tier one Bun process
per test file, with an EXTERNAL wall-clock timeout that SIGKILLs the
shard's detached process group and an aggregate that distinguishes
passed / failed / timed-out / never-started — partial execution can no
longer read as a pass. Bun's native --shard/--isolate covers none of
this: no process-group kill (hung claude/codex PTY grandchildren
survive in-process isolation), no never-started taxonomy, no per-shard
env. Each shard child gets GSTACK_EVAL_DIR=<evalDir>/shards/<slug>/
(slug = test filename sans extension, stable across runs) so shard
baselines compare against their own prior runs.

Output classification lives in scripts/test-strict-output.ts (strict
exit-code derivation, incremental fail-line classifier, child signal
forwarding) so the runner and any future strict bun-test wrapper share
one implementation. Enumeration derives from the shared paid-test-set
module; tier exclusion fires only on an explicit whole-file
EVALS_TIER === '<other>' guard.

package.json gains test:gate:sharded / test:periodic:sharded, and
eval:bg:gate / eval:bg:periodic now run the sharded scripts with detach
timeouts sized to the worst case (gate: 49 shards x 30min / 4 jobs ~
6.2h -> 25200s; periodic: 59 -> 28800s).

test/paid-shards.test.ts pins enumeration, tier classification, and the
kill-and-continue property with a real busy-loop shard.

Co-Authored-By: Claude Fable 5 <noreply@anthropic.com>
(cherry picked from commit 5e76bd5931836257f896cedfe4e93912cb759c70)

* feat(security): hash-chained egress receipt ledger (core)

Port lib/egress-receipt from the v2 fork as TypeScript: writeReceipt
(sync, fail-closed via typed EGRESS_RECEIPT_FAILED), best-effort
writeOutcome, readLedger/listReceipts/verifyLedger, GSTACK_HOME ->
GSTACK_STATE_DIR -> ~/.gstack resolution, 0600 ledger under a 0700
security dir, and an mkdir spin lock (2.5s budget) with documented
>10s-mtime stale-lock reclaim.

Changes vs the fork:
- lastRawLine tail-reads the final 4KB instead of loading the whole
  ledger, so appends stay O(1) as the file grows.
- WARN-at-size: past 25MB writeReceipt emits one self-explanatory
  stderr warning per process (what the ledger is, how to inspect it,
  rotation TODO); verifyLedger gains a sizeWarning field. Rotation
  TODO carries the chain-genesis sketch (new generation's first record
  embeds the prior file's tail hash).

bin/gstack-egress-receipt is a bun script bridging shell callers:
write|outcome subcommands, exit 3 + EGRESS_RECEIPT_FAILED on stderr on
failure; --no-payload records sha256:null for git-class ops.

Co-Authored-By: Claude Fable 5 <noreply@anthropic.com>
(cherry picked from commit 619726a3d77d987a2e50151a5727b3faaaf5fc6a)

* chore(bin): delete dead brain-consumer/reader scripts

bin/gstack-brain-consumer and bin/gstack-brain-reader are byte-identical
dead scripts that POST the repo URL + a Bearer token to a /ingest-repo
endpoint gbrain removed (docs/gbrain-sync.md already documents the
removal in past tense). No live references remain; CHANGELOG mentions
are historical.

Co-Authored-By: Claude Fable 5 <noreply@anthropic.com>
(cherry picked from commit 254ddc69fc5a0270fcc973e36b6a81766d835d2d)

* feat(security): shared shell receipt helpers

bin/gstack-egress-lib.sh (sourced library, gstack-gbrain-lib.sh
precedent) provides _receipted_curl and _receipted_git: write the
egress receipt BEFORE the send via gstack-egress-receipt, hand curl the
SAME payload file via --data-binary @file so the receipt hash matches
the wire bytes exactly, then append a best-effort outcome. Per-call
fail policy: 'closed' refuses the send (return 3, problem/cause/fix
message on stderr) and 'open' warns and proceeds. Payload temp files
are consumed immediately per call — no EXIT traps, since callers like
gstack-telemetry-sync own their own EXIT trap and a sourced trap would
clobber it.

Tested end-to-end against a local Bun.serve listener: receipt sha256
equals the sha256 of the bytes the listener received, fail-closed
refusal never touches the network and carries the problem/cause/fix
stderr shape, fail-open warns and proceeds.

Co-Authored-By: Claude Fable 5 <noreply@anthropic.com>
(cherry picked from commit 6d067dce2d4c8815dec98be551763c85a3671357)

* feat(security): receipt core shell sinks

Wire the three core bash egress sinks through gstack-egress-lib.sh:

- gstack-telemetry-sync: the batch POST now writes the payload to a
  temp file, receipts those exact bytes fail-closed, and hands curl the
  SAME file. On refusal nothing is sent and the cursor does not
  advance, so the batch stays buffered for the next run. The HTTP
  status is recorded as the receipt outcome.
- gstack-update-check: fail-open receipts (warn + proceed) on the
  Supabase ping POST, both VERSION curls (via a local
  _receipted_version_fetch helper that skips non-network schemes), and
  git ls-remote. The ping receipt is written inside the backgrounded
  subshell, so it can never block the script's exit.
- gstack-brain-sync: fail-closed git-class receipts. The push receipt
  is written BEFORE the commit consumes the queue, so a refused receipt
  leaves the queue intact and the next run retries the whole drain
  (pinned by a new queue-intact-on-refusal test, including the
  problem/cause/fix refusal message shape). The retry-path fetch and
  retry push carry their own fail-closed receipts.

Co-Authored-By: Claude Fable 5 <noreply@anthropic.com>
(cherry picked from commit 3c60f699acceaf1c92a218874711e05fc17dca5d)

* feat(security): receipt TS module sinks + tunnel

writeReceipt (fail-closed, sha256:null — a subprocess or SDK owns the
wire bytes) before every TS-module network-bearing operation:

- bin/gstack-gbrain-sync.ts: before the gbrain code walk that ships
  repo content to the user's gbrain DB (may be remote Postgres). A
  refused receipt fails the stage with status refused-egress-receipt.
- bin/gstack-memory-ingest.ts: before the gbrain batch import of
  transcript pages. A refused receipt returns a system_error verdict
  without spawning the import.
- browse/src/server.ts: before both ngrok.forward call sites (start-up
  BROWSE_TUNNEL=1 path and the /tunnel/start endpoint). A receipt
  failure lands in the existing catch that tears the tunnel listener
  back down and refuses the start.

Co-Authored-By: Claude Fable 5 <noreply@anthropic.com>
(cherry picked from commit 5677d618a48fcd0ae2b068bf868781d90f809cb5)

* feat(design): receipted fetch for OpenAI calls

design/src/receipted-fetch.ts wraps every api.openai.com call: a
content-free egress receipt (sink design-openai, sha256 of the JSON
body — hash only, never the body) is written BEFORE the send. Polarity
is FAIL-OPEN: user-facing generation must not die because an audit log
hiccuped, so a receipt failure warns on stderr and the call proceeds.
Streams pass through untouched (response bodies returned as-is;
non-string request bodies receipted as sha256:null rather than drained
to hash).

All ten call sites converted with per-command payload classes:
generate, variants (injected fetchFn passes through), iterate (both
threaded and fresh paths), evolve (image + screenshot analysis), check,
diff, design-to-code, memory.

Unit-tested with injected fetch: receipt-before-send ordering, stream
passthrough, and fail-open on an unwritable ledger.

Co-Authored-By: Claude Fable 5 <noreply@anthropic.com>
(cherry picked from commit c0e5ff6639414ac2fd98e8ac3affb51401746b55)

* feat(security): receipt admin scripts + user git-ops (zero exceptions)

Wire the remaining shell egress through gstack-egress-lib.sh:

- gstack-gbrain-mcp-verify: both JSON-RPC probe POSTs (initialize +
  tools/list) receipted fail-closed via payload files (hash == wire
  bytes). A refused receipt lands in the NETWORK class — no send.
- gstack-security-dashboard / gstack-community-dashboard: the
  community-pulse GETs receipted fail-open (read-only stats must not
  break over an audit hiccup).
- gstack-gbrain-supabase-provision: api_call receipted fail-closed.
  Each retry attempt hands the helper a fresh copy of the body file
  (the helper consumes its payload). The receipt hashes the request
  body only — the PAT never reaches the ledger or any log. Refusal
  exits 8 without retrying.
- git-class sha256:null receipts, fail-open: gstack-artifacts-init
  (ls-remote, initial push, fetch/pull recovery, retry push),
  gstack-brain-restore (staging clone, existing-repo fetch),
  gstack-session-update (self-update pull).

gstack-team-init needs no wiring: every git clone in it is inside an
echoed instruction string, not an executed command.

The lib now self-locates with shell builtins only (no dirname), so
sourcing works under the whitelist-PATH test harnesses.

Co-Authored-By: Claude Fable 5 <noreply@anthropic.com>
(cherry picked from commit b8c5e2055b21ab72878b3e46f8047782ee65a11c)

* test(security): egress wiring tripwire + polarity contract

Static-grep tripwire pinning the egress-receipt wiring (threat model in
the header: the ledger is forensic observability of ATTEMPTED egress,
not an exfiltration control):

- Per-sink assertions: every wired TS module imports egress-receipt and
  calls writeReceipt; every wired shell sink sources
  gstack-egress-lib.sh with each network op under a receipt;
  ngrok-proximity check for server.ts; every design api.openai.com call
  routes through receiptedFetch.
- Absence assertions: the dead brain-consumer/reader scripts stay
  deleted (lstat, so a dangling symlink also fails).
- Polarity table pinned as data (fail-closed: brain-sync,
  memory-ingest, gbrain-sync, telemetry-sync, ngrok, mcp-verify,
  supabase-provision; fail-open: design-openai, update-check,
  dashboards, git-class user ops, context-bill --exact) plus per-file
  polarity spot-checks.
- NEW-SINK SCANNER with zero KNOWN_UNWIRED: sweeps bin/, lib/,
  scripts/, design/src, browse/src for curl, absolute-URL fetch(, and
  git remote ops (never local rev-parse/get-url; heredoc bodies and
  message strings excluded) and requires every hit to be receipted or
  in a REASONED exemption list where each entry carries its why.
  Preamble-generated skill prose documented out-of-scope in the header.
- Shebang tripwire: no bin/gstack-* file may carry a node shebang.

Co-Authored-By: Claude Fable 5 <noreply@anthropic.com>
(cherry picked from commit ff69ceeafaf9c017d539b6ad77ff8f95b680b979)

* feat(cli): gstack-egress reader

bin/gstack-egress (bun) — the auditor's view of the receipts ledger:

- list: one row per receipt (what gstack ATTEMPTED to send), with
  --since/--host/--sink filters and --json.
- verify: recompute the hash chain; exit 3 on tamper naming the first
  broken line; prints the sizeWarning when the ledger passes 25MB.
- grants: what CAN leave, built on the upstream config keys only
  (telemetry, artifacts_sync_mode, redact_repo_visibility,
  redact_prepush_hook via gstack-config get) — each grant names its
  file, key, and the exact revoke command.

CLI smoke tests spawn the real bin against a temp GSTACK_HOME,
including a broken-chain fixture asserting exit 3.

Co-Authored-By: Claude Fable 5 <noreply@anthropic.com>
(cherry picked from commit 9e24eca0f1069fea2ea69e7df4e9b256e93d59a3)

* feat(cli): context-bill — token bill-of-materials (stripped port)

lib/context-bill.ts, ported from the v2 fork and STRIPPED to the tiers
this repo's skills can exercise: ALWAYS-ON (per-skill frontmatter bytes
with dead-key and foreign-host-file flags), EAGER (SKILL.md + any
forced 'for every invocation' references), on-disk totals, --diff,
--budget, and --exact with the calibration table. The fork's
CONDITIONAL/TRANSITIVE/LAZY/FAST-PATH parsers understand only its
dispatcher layout and were dropped; the tier fields stay in the report
shape (empty/zero/null) so re-adding a parser is additive.
TOKEN_DIVISORS and their provenance docblock kept; --help notes
recalibration via --exact's calibration block.

Three upstream fixes over the fork:
(a) findSkillDirs treats the walk ROOT as a container — the repo root's
    router SKILL.md is billed AND its children are walked (the fork
    short-circuited and billed one skill); walkMd skips node_modules
    and dot-directories.
(b) installed-tree layout: subdirs that are their own repo checkout
    (a gstack/ clone inside ~/.claude/skills, detected by .git) are
    skipped, and directory symlinks (connect-chrome) are followed with
    a container-recursion cycle guard.
(c) ROUTER_KEYS widened to the upstream frontmatter contract {name,
    description, version, allowed-tools, triggers, preamble-tier}.

--exact writes an egress receipt (sink context-bill-exact, host
api.anthropic.com) BEFORE any count_tokens POST; if the receipt cannot
be written the run degrades to the offline estimate with a warning —
nothing is sent unrecorded. bin/gstack-context-bill is the bun shim.

Tests: fixture-tree ledgers, the three fixes, --diff/--budget exit
codes, --exact with injected fetch (envelope subtraction, receipt
ordering, fail-open degradation), CLI smoke test, and ground truth
against THIS repo via test/helpers/skill-census.ts.

Co-Authored-By: Claude Fable 5 <noreply@anthropic.com>
(cherry picked from commit 675c19876b87ec927b555f5f64c7f93130b3de90)

* test(catalog): aggregate discovery-surface budget with ratchet protocol

Every host loads every skill's frontmatter name + description at
discovery, every session. applyCatalogTrim in scripts/gen-skill-docs.ts
shapes each description and the 160KB per-file warn covers body size,
but nothing capped the aggregate frontmatter — the catalog could grow
one reasonable-looking description at a time. This test is that
enforcement layer.

Measures the catalog via test/helpers/skill-census.ts authoredSkills
(symlink-deduped, root router counted separately as the _gstack-command
alias line item): 53 skills + router = 4,420 bytes = 1,105
token-equivalents today, asserted <= 1,150 (~4% headroom). Per-skill
sub-cap of 260 bytes (largest today: design-consultation at 229), plus
a non-empty-description check.

Failure messages are self-service ratchets: they print the new total,
the delta, and the update protocol (bump the constant AND the
derivation comment in the same commit; trim instead of grow for
existing descriptions). Parser handles folded block scalars
(description: >-) for fork parity; import-free by design so it
survives generator refactors.

Co-Authored-By: Claude Fable 5 <noreply@anthropic.com>
(cherry picked from commit c106fb36f768181b80c257e5cff1cde4f435f9c0)

* fix(browse): extension token bootstrap moves to pinned-origin POST; /health carries no token

GET /health is now liveness/status only in every mode — both token
carve-outs (headed-mode disjunct AND chrome-extension:// Origin
disjunct) are removed. Token bootstrap is POST /extension-token on the
local listener: the Origin header must be exactly
chrome-extension://<GSTACK_EXTENSION_ID> and the Host header's hostname
must parse to 127.0.0.1 or localhost (parsed via new URL, never literal
equality — Host arrives as '127.0.0.1:34567'). Wrong origin/host → 403
with no detail. The tunnel surface 404s the endpoint (not in
TUNNEL_PATHS, verified by test).

The extension ID is pinned by a new "key" field (RSA public key) in
extension/manifest.json; browse/scripts/extension-id.ts reproduces the
ID derivation (first 16 bytes of SHA-256 of the DER public key, hex
mapped 0-9a-f → a-p). The private key is not committed anywhere —
unpacked/baked-in loads only need the public key.

Extension side: background.js bootstraps and refreshes the token via
POST /extension-token (403 → disconnected state); sidepanel.js direct
connect path does the same; sidepanel-terminal.js's dead /health token
fallback (read AUTH_TOKEN/authToken keys the server never sent,
hardcoded port) is replaced with the window.gstackAuthToken path.

MIGRATION NOTE: the manifest key pins the extension ID, so existing
installs' side-panel local state (saved port, snoozes) resets once —
explained in-product via a one-time notice (flag
gstack_id_migrated_v162). After upgrading the server, restart the
browser so the old service worker stops polling for a token GET /health
no longer serves.

Co-Authored-By: Claude Fable 5 <noreply@anthropic.com>
(cherry picked from commit e9a0b6847a2d17fe6656a4686b4efd0c8380eb09)

* docs: correct stale compiled-binaries claim; file three egress/eval follow-ups

CLAUDE.md's compiled-binaries section claimed browse/dist binaries are
tracked by git and appear as modified in git status — false since
64d5a3e4 (v0.11.16.0) untracked them, and actively harmful: it trained
agents to ignore dist binaries in git status. The section now states
the truth (untracked + gitignored; a dist binary in git status means
someone force-added it) and covers make-pdf/dist too.

TODOS.md gains the three follow-ups filed by the v1.62 port-wave
reviews: ledger rotation with chain-genesis records, launch-nonce
token bootstrap, and eval-watch shard-awareness.

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

* fix: pre-landing review fixes for the v2 port wave

Review army (checklist + 5 specialists) + coverage/plan audits on the
assembled branch. Genuine correctness/security/hygiene fixes:

- test-paid-shards: strictTestExitCode now receives expectedFiles on the
  real bun path, so a shard that runs fewer files than planned (harness
  crash, nothing loaded) with exit 0 is no longer recorded 'passed' — the
  invisible-non-execution class the runner exists to kill. Pinned by the
  new test/strict-output.test.ts (also covers the chunk-boundary classifier).
- test-paid-shards: EVALS_TIER env is validated (gate|periodic) like the
  --tier flag, so a typo can't self-skip every test and exit 0 green.
- package.json: test:periodic:sharded sets EVALS_ALL=1, restoring the
  full-tier semantics the pre-shard script had (CI already set it; local
  eval:bg:periodic silently under-measured without it).
- brain-sync.test: run() pins HOME to the temp home so gstack-artifacts-init
  stops writing/clobbering the operator's real ~/.gstack-artifacts-remote.txt
  every free-suite run; afterEach now also scrubs the current filename.
- egress-receipt: cap each receipt field at 512B so a serialized line always
  fits the 4KB tail-read window — a longer line would make the next append
  hash a truncated prior line and verifyLedger report a permanent false
  TAMPER. warnLedgerSize short-circuits before statSync once fired (append
  hot path).
- gstack-egress: import.meta.dir (Windows-safe) instead of new URL().pathname
  so grants doesn't silently report defaults on Windows; strip control chars
  from ledger-derived fields on render so a crafted receipt can't spoof the
  auditor's view.
- extension/background.js + CLAUDE.md: renumber the identity-pin migration
  refs v1.62 -> v1.63 (main claimed 1.62.0.0; this wave queue-advances).
- egress-receipt-wiring: pin lib/context-bill.ts unconditionally (both land
  together now); drop the dead RunShardsOptions.tier field.

All fix-affected test files green; gate failures triaged as external-env
(codex/gemini CLI drift) or pre-existing (hermetic-canary fails identically
on base). Deferred polish tracked in the PR body + decision store.

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

* chore: bump version and changelog (v1.63.0.0)

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

* docs: file TODO to harden plan-design-with-ui PTY detection

The v1.63 seedSkills change made this gate test execute for the first
time; it reliably times out because its terminal scraper can't parse the
(correctly-rendered) scope-gate AskUserQuestion out of a spinner-mangled
PTY buffer. Shipped skill behavior is correct — test-harness limitation.

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

* chore: re-slot release as v1.62.1.0 (PATCH per user)

Main claimed 1.62.0.0 while the wave was in flight; the user chose the
PATCH slot over queue-advancing MINOR. Renumbers the identity-pin
migration notice (now version-free flag name so a re-slot never orphans
an already-set flag), the CLAUDE.md /health note, the CHANGELOG heading,
and the TODOS section titles.

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

* fix(test): stop hard-requiring the literal ok) case label in gbrain-refresh guards

The extractor grepped for 'ok)' but the case label grew to
ok|timeout|thin-client) (#1964, #2051), so the whole file errored on
import — the free suite's only red for months. The extractor now matches
any label starting with ok and its alternations; all 7 guard assertions
run again.

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

* fix(test): hermetic-canary probes with ${VAR:-} so nounset shells can't fail success

The probe echoed bare $CONDUCTOR_WORKSPACE_PATH — when scrubbing WORKS
the var is unset, and under a nounset shell the echo errors, failing the
canary exactly when isolation succeeds. Defaulted expansions assert
identically under any shell. Fails identically on base; fixed here.

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

* fix(evals): absorb codex/gemini CLI drift; external-service tests go periodic-tier

- codex exec gains --skip-git-repo-check: newer CLIs refuse exec in an
  untrusted non-git dir (our temp skill dirs) — empirically verified.
- gemini: --skip-trust was removed in gemini-cli 0.34 (argv parse error);
  dropped from the session runner and the benchmark adapter. A present-
  but-unusable CLI (deprecated individual code-assist auth path) now
  classifies as SKIP, not a false adapter failure; the benchmark live
  smoke skips on auth/rate_limit error codes (environmental) while still
  failing on timeout/unknown (the drift classes it exists to catch).
- codex-e2e, gemini-e2e, and benchmark-providers gain the canonical
  whole-file EVALS_TIER === 'periodic' guard per CLAUDE.md tiering rule 3
  (external service -> periodic) — the sharded gate runner now excludes
  all three (gate: 45 -> 42 shards).

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

* fix(evals): parse single-logical-line AskUserQuestions in the PTY runner

When the PTY reflows a boxed AUQ, ALL options land on ONE logical line
after stripAnsi — parseNumberedOptions parsed one option per line, found
only '1.', and the >=2 check failed forever while the correct question
sat on screen (plan-design-with-ui timed out this way twice, with the
rendered scope-gate AUQ visible in both failure buffers). The cursor
line is now parsed as a stream of ascending N. tokens; DEC cursor-
visibility residue is stripped before matching; plan-design-with-ui's
budgets grow to fit observed ~6min preamble+thinking latency. Pinned by
test/pty-auq-single-line.test.ts using the real failure buffers; all 142
existing parser-consumer unit tests still green.

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

* chore: restore v1.63.0.0 (MINOR — user-confirmed final slot)

The wave ships new capability (egress receipts + two CLIs, sharded paid
runner, hermetic skill seeding) at ~8K lines — MINOR scale per the
scale-aware bump rules. Supersedes the brief v1.62.1.0 re-slot; the
version-free migration flag means no state churn from the renumber.

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

* test: spell out AskUserQuestion in the PTY single-line fixture

Rename test/pty-auq-single-line.test.ts to
test/pty-askuserquestion-single-line.test.ts and expand the AUQ
abbreviation in identifiers and comments. House style writes
AskUserQuestion in full in filenames, identifiers, and comments.

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

* docs: sync every doc surface with the v1.63 release

/document-release audit (4-lane, all claims verified against branch code):

- README: gstack-egress + gstack-context-bill rows in the standalone-binaries
  table; Privacy & Telemetry gains the receipted-egress bullet (attempted-
  egress framing per the shipped threat model).
- ARCHITECTURE: /health is liveness-only, POST /extension-token endpoint row
  + bootstrap mechanics paragraph; new Egress receipt ledger subsection under
  Security model; eval persistence covers the sharded runner, GSTACK_EVAL_DIR,
  and the finalized-run baseline rule.
- CLAUDE.md: sharded test scripts in Commands; sharded semantics in the
  detached-evals section; PTY skill seeding in the hermetic section; egress
  invariant block beside the other server-egress invariants; catalog-budget
  ceiling beside the 160KB token ceiling; project-tree entries for
  lib/egress-receipt.ts, lib/context-bill.ts, scripts/test-paid-shards.ts.
- CONTRIBUTING: seedSkills + live-tree seeding in the hermetic paragraph;
  sharded runner in detached runs; catalog-budget in the Tier 1 list.
- BROWSER: extension token bootstrap section, tunnel egress receipts section,
  identity-pin migration note in manual install.
- REMOTE_BROWSER_ACCESS: tunnel-start receipt bullet in the security model.
- gbrain docs: /sync-gbrain + brain-sync egress-receipt behavior documented;
  dead consumer-token instructions removed (consumer machinery deleted this
  release); new fail-closed refusal added to the error catalog.
- CHANGELOG: measured-vs-ceiling catalog numbers, contributor notes for the
  external-service tier move and the PTY single-line AskUserQuestion parser,
  release date.
- TODOS: /health token-distribution TODO resolved by this release, removed;
  port-wave follow-up sections re-labeled to the shipped version.

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

* docs: sweep drift that predates this release

Surfaced by the /document-release audit; every fix verified against the
current binaries:

- gstack-brain-init was replaced by gstack-artifacts-init in v1.27.0.0
  (hard-delete, no compat shim), but README, USING_GBRAIN_WITH_GSTACK,
  docs/gbrain-sync.md, and docs/gbrain-sync-errors.md still instructed
  users to run it — command-not-found on every follow. Same sweep updates
  ~/.gstack-brain-remote.txt to the canonical ~/.gstack-artifacts-remote.txt
  (legacy name still honored on restore, noted where users copy the file).
- gbrain-sync-errors.md headings re-matched to the literal messages the
  binaries print today (the doc's whole value is grep-by-exact-message):
  'gstack-artifacts-init: ~/.gstack/ is already a git repo pointing at:',
  'Remote not reachable via SSH:', 'Failed to create or find ...'. The
  already-a-repo fix now leads with the command's own set-url suggestion.
- docs/gbrain-sync.md 'Under the hood' linked a plan file that does not
  exist in the repo; replaced with the decisions themselves.
- SIDEBAR_MESSAGE_FLOW startup timeline: /pty-session responds with
  {terminalPort, sessionId, attachToken, leaseExpiresAt} (v1.44 shape,
  verified at browse/src/server.ts:1860), not the retired
  {terminalPort, ptySessionToken} pair.

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

* docs: fold the Codex accuracy review of the release docs

Six findings, all verified against source before fixing:

1. 'Every send writes a receipt' overclaimed — fail-open sinks proceed with
   a stderr warning when the receipt write fails, so a fail-open send can go
   unrecorded (lib/egress-receipt.ts:8-14). Descriptive prose now says so;
   the receipted framing keeps 'attempted'.
2. 'Receipts hash the request body' is wrong for subprocess-owned sends —
   git pushes record sha256: null (lib/egress-receipt.ts:71).
3. 'grants shows every consent in force' overclaimed — it reports the four
   standing config settings (bin/gstack-egress:139-181). Reworded in
   README, ARCHITECTURE, and the CHANGELOG entry.
4. 'Zero-exception scanner' vs reality: the new-sink scanner carries a
   reasoned SCANNER_EXEMPT list (user-directed fetches, probes, instruction
   strings, skill prose). CLAUDE.md now names it.
5. Error-catalog cause/fix for the receipt refusal: the writer mkdirs the
   ledger dir itself, so 'missing' isn't a cause and bare chmod fails when
   it is absent — cause reworded, fix is mkdir -p && chmod.
6. gbrain-sync first-run steps described the retired binary's behavior:
   default repo is gstack-artifacts-$USER, and init PRINTS the gbrain
   hookup command (never auto-executes; bin/gstack-artifacts-init:384-419).

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

---------

Co-authored-by: Claude Fable 5 <noreply@anthropic.com>
Co-authored-by: Sinabina <sinabina@Sinabinas-MacBook-Pro-4.local>
2026-08-14 09:28:56 -07:00

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# Architecture
This document explains **why** gstack is built the way it is. For setup and commands, see CLAUDE.md. For contributing, see CONTRIBUTING.md.
## The core idea
gstack gives Claude Code a persistent browser and a set of opinionated workflow skills. The browser is the hard part — everything else is Markdown.
The key insight: an AI agent interacting with a browser needs **sub-second latency** and **persistent state**. If every command cold-starts a browser, you're waiting 3-5 seconds per tool call. If the browser dies between commands, you lose cookies, tabs, and login sessions. So gstack runs a long-lived Chromium daemon that the CLI talks to over localhost HTTP.
```
Claude Code gstack
───────── ──────
┌──────────────────────┐
Tool call: $B snapshot -i │ CLI (compiled binary)│
─────────────────────────→ │ • reads state file │
│ • POST /command │
│ to localhost:PORT │
└──────────┬───────────┘
│ HTTP
┌──────────▼───────────┐
│ Server (Bun.serve) │
│ • dispatches command │
│ • talks to Chromium │
│ • returns plain text │
└──────────┬───────────┘
│ CDP
┌──────────▼───────────┐
│ Chromium (headless) │
│ • persistent tabs │
│ • cookies carry over │
│ • 30min idle timeout │
└───────────────────────┘
```
First call starts everything (~3s). Every call after: ~100-200ms.
## Why Bun
Node.js would work. Bun is better here for three reasons:
1. **Compiled binaries.** `bun build --compile` produces a single ~58MB executable. No `node_modules` at runtime, no `npx`, no PATH configuration. The binary just runs. This matters because gstack installs into `~/.claude/skills/` where users don't expect to manage a Node.js project.
2. **Native SQLite.** Cookie decryption reads Chromium's SQLite cookie database directly. Bun has `new Database()` built in — no `better-sqlite3`, no native addon compilation, no gyp. One less thing that breaks on different machines.
3. **Native TypeScript.** The server runs as `bun run server.ts` during development. No compilation step, no `ts-node`, no source maps to debug. The compiled binary is for deployment; source files are for development.
4. **Built-in HTTP server.** `Bun.serve()` is fast, simple, and doesn't need Express or Fastify. The server handles ~10 routes total. A framework would be overhead.
The bottleneck is always Chromium, not the CLI or server. Bun's startup speed (~1ms for the compiled binary vs ~100ms for Node) is nice but not the reason we chose it. The compiled binary and native SQLite are.
## The daemon model
### Why not start a browser per command?
Playwright can launch Chromium in ~2-3 seconds. For a single screenshot, that's fine. For a QA session with 20+ commands, it's 40+ seconds of browser startup overhead. Worse: you lose all state between commands. Cookies, localStorage, login sessions, open tabs — all gone.
The daemon model means:
- **Persistent state.** Log in once, stay logged in. Open a tab, it stays open. localStorage persists across commands.
- **Sub-second commands.** After the first call, every command is just an HTTP POST. ~100-200ms round-trip including Chromium's work.
- **Automatic lifecycle.** The server auto-starts on first use, auto-shuts down after 30 minutes idle. No process management needed.
### State file
The server writes `.gstack/browse.json` (atomic write via tmp + rename, mode 0o600):
```json
{ "pid": 12345, "port": 34567, "token": "uuid-v4", "startedAt": "...", "binaryVersion": "abc123" }
```
The CLI reads this file to find the server. If the file is missing or the server fails an HTTP health check, the CLI spawns a new server. On Windows, PID-based process detection is unreliable in Bun binaries, so the health check (GET /health) is the primary liveness signal on all platforms.
### Port selection
Random port between 10000-60000 (retry up to 5 on collision). This means 10 Conductor workspaces can each run their own browse daemon with zero configuration and zero port conflicts. The old approach (scanning 9400-9409) broke constantly in multi-workspace setups.
### Version auto-restart
The build writes `git rev-parse HEAD` to `browse/dist/.version`. On each CLI invocation, if the binary's version doesn't match the running server's `binaryVersion`, the CLI kills the old server and starts a new one. This prevents the "stale binary" class of bugs entirely — rebuild the binary, next command picks it up automatically.
## Security model
### Localhost only
The HTTP server binds to `127.0.0.1`, not `0.0.0.0`. It's not reachable from the network.
### Dual-listener tunnel architecture (v1.6.0.0)
When a user runs `pair-agent --client`, the daemon starts an ngrok tunnel so a remote paired agent can drive the browser. Exposing the full daemon surface to the internet (even behind a random ngrok subdomain) meant `/health` leaked the root token on any Origin spoof, and `/cookie-picker` embedded the token into HTML that any caller could fetch.
The fix is **two HTTP listeners**, not one:
- **Local listener** (`127.0.0.1:LOCAL_PORT`) — always bound. Serves token bootstrap (`POST /extension-token`, released only to the pinned extension identity), `/health` (liveness/status only — never a token), `/cookie-picker`, `/inspector/*`, `/welcome`, `/refs`, the sidebar-agent API, and the full command surface. Never forwarded.
- **Tunnel listener** (`127.0.0.1:TUNNEL_PORT`) — bound lazily on `/tunnel/start`, torn down on `/tunnel/stop`. Serves a locked allowlist: `/connect` (pairing ceremony, unauth + rate-limited), `/command` (scoped tokens only, further restricted to a browser-driving command allowlist), and `/sidebar-chat`. Everything else 404s.
ngrok forwards only the tunnel port. The security property comes from **physical port separation**: a tunnel caller cannot reach `/health` or `/cookie-picker` because those paths don't exist on that TCP socket. Header inference (check `x-forwarded-for`, check origin) is unreliable (ngrok header behavior changes; local proxies can add these headers); socket separation isn't.
| Endpoint | Local listener | Tunnel listener | Notes |
|---|---|---|---|
| `GET /health` | public (liveness/status only — never a token) | 404 | Token bootstrap moved to `POST /extension-token` (v1.63) |
| `POST /extension-token` | pinned Origin (`chrome-extension://<GSTACK_EXTENSION_ID>`) + loopback Host | 404 | The only endpoint that hands out the root token |
| `GET /connect` | public (`{alive:true}`) | public (`{alive:true}`) | Probe path for tunnel liveness |
| `POST /connect` | public (rate-limited 300/min) | public (rate-limited) | Setup-key exchange for pair-agent |
| `POST /command` | auth (Bearer root OR scoped) | auth (scoped only, allowlisted commands) | Root token on tunnel = 403 |
| `POST /sidebar-chat` | auth | auth | Lets remote agent post into local sidebar |
| `POST /pair` | root-only | 404 | Pairing mint — local operator action |
| `POST /tunnel/{start,stop}` | root-only | 404 | Daemon configuration |
| `POST /token`, `DELETE /token/:id` | root-only | 404 | Scoped token mint/revoke |
| `GET /cookie-picker`, `GET /cookie-picker/*` | public UI, auth API | 404 | Local-only — reads local browser DBs |
| `GET /inspector`, `/inspector/events`, etc. | auth | 404 | Extension callback, local-only |
| `GET /welcome` | public | 404 | GStack Browser landing page, local-only |
| `GET /refs` | auth | 404 | Ref map — internal state |
| `GET /activity/stream` | Bearer OR HttpOnly `gstack_sse` cookie | 404 | SSE. ?token= query param no longer accepted |
| `GET /inspector/events` | Bearer OR HttpOnly `gstack_sse` cookie | 404 | SSE. Same cookie as /activity/stream |
| `POST /sse-session` | auth (Bearer) | 404 | Mints the view-only 30-min SSE session cookie |
**Extension token bootstrap (v1.63.0.0).** `GET /health` never carries a token in any mode — it is liveness/status only. The sidebar extension obtains the root token via `POST /extension-token`, which releases it only when the caller's Origin is exactly `chrome-extension://<GSTACK_EXTENSION_ID>` (pinned by the `key` field in `extension/manifest.json`; reproduce the derivation with `bun browse/scripts/extension-id.ts`) and the Host header parses to a loopback hostname — parsed with `new URL()`, never compared raw, because Host carries the port. Web pages cannot forge a `chrome-extension://` Origin, and the endpoint is never added to the tunnel allowlist, so the tunnel surface 404s it by default-deny.
**Tunnel surface denial logs.** Every rejection on the tunnel listener (`path_not_on_tunnel`, `root_token_on_tunnel`, `missing_scoped_token`, `disallowed_command:*`) is recorded asynchronously to `~/.gstack/security/attempts.jsonl` with timestamp, source IP (from `x-forwarded-for`), path, and method. Rate-capped at 60 writes/min globally to prevent log-flood DoS. Shares the attempt log with the prompt-injection scanner.
**SSE session cookies.** EventSource can't send Authorization headers, so the extension POSTs `/sse-session` once at bootstrap with the root Bearer and receives a 30-minute view-only cookie (`gstack_sse`, HttpOnly, SameSite=Strict). The cookie is valid ONLY for `/activity/stream` and `/inspector/events` — it is NOT a scoped token and cannot be used on `/command`. Scope isolation is enforced by the module boundary: `sse-session-cookie.ts` has no imports from `token-registry.ts`.
**Non-goal in this wave** (tracked as #1136): the cookie-import-browser path launches Chrome with `--remote-debugging-port=<random>`. On Windows with App-Bound Encryption v20, a same-user local process can connect to that port and exfiltrate decrypted v20 cookies — an elevation path relative to reading the SQLite DB directly (which can't decrypt v20 without DPAPI context). Fix direction is `--remote-debugging-pipe` instead of TCP; requires restructuring the CDP client.
### Bearer token auth
Every server session generates a random UUID token, written to the state file with mode 0o600 (owner-only read). Every HTTP request that mutates browser state must include `Authorization: Bearer <token>`. If the token doesn't match, the server returns 401.
This prevents other processes on the same machine from talking to your browse server. The cookie picker UI (`/cookie-picker`) and health check (`/health`) are exempt on the local listener — they're 127.0.0.1-bound and don't execute commands. On the tunnel listener nothing is exempt except `/connect`.
### Cookie security
Cookies are the most sensitive data gstack handles. The design:
1. **Keychain access requires user approval.** First cookie import per browser triggers a macOS Keychain dialog. The user must click "Allow" or "Always Allow." gstack never silently accesses credentials.
2. **Decryption happens in-process.** Cookie values are decrypted in memory (PBKDF2 + AES-128-CBC), loaded into the Playwright context, and never written to disk in plaintext. The cookie picker UI never displays cookie values — only domain names and counts.
3. **Database is read-only.** gstack copies the Chromium cookie DB to a temp file (to avoid SQLite lock conflicts with the running browser) and opens it read-only. It never modifies your real browser's cookie database.
4. **Key caching is per-session.** The Keychain password + derived AES key are cached in memory for the server's lifetime. When the server shuts down (idle timeout or explicit stop), the cache is gone.
5. **No cookie values in logs.** Console, network, and dialog logs never contain cookie values. The `cookies` command outputs cookie metadata (domain, name, expiry) but values are truncated.
### Shell injection prevention
The browser registry (Comet, Chrome, Arc, Brave, Edge) is hardcoded. Database paths are constructed from known constants, never from user input. Keychain access uses `Bun.spawn()` with explicit argument arrays, not shell string interpolation.
### Egress receipt ledger (v1.63.0.0)
Every enumerated gstack-initiated off-machine sink writes a hash-chained, tamper-evident receipt to `~/.gstack/security/egress.jsonl` BEFORE the send — `writeReceipt` in `lib/egress-receipt.ts` for TypeScript callers, `_receipted_curl` / `_receipted_git` from `bin/gstack-egress-lib.sh` for shell scripts. Receipts record a sha256 of the exact bytes sent when the caller owns them (subprocess-owned sends like git pushes record `sha256: null`); they never store the body.
Failure polarity is per-class and pinned by tests. Sensitive sinks are fail-closed: brain-sync pushes, memory-ingest, gbrain-sync, telemetry, ngrok tunnel starts, mcp-verify, and supabase-provision refuse to send if the receipt can't be written (each refusal prints problem + cause + fix). User-facing sinks fail open with a stderr warning — the design binary's OpenAI calls, update-check, the read-only dashboards, and git-class receipts proceed even when the receipt write failed, so a fail-open send can go unrecorded (warned, by design). The new-sink scanner in `test/egress-receipt-wiring.test.ts` fails CI when an off-machine sink ships unwired; its only exemptions are enumerated with reasons (user-directed page fetches, reachability probes, install-doc strings, skill prose).
Inspect the ledger with `bin/gstack-egress`: `list` (what gstack attempted to send), `verify` (recompute the chain, exit 3 on tamper), `grants` (the standing consent settings and how to revoke each). Threat model: the ledger is forensic observability of ATTEMPTED egress — it records what gstack tried to send so accidents are auditable; it is not an exfiltration control.
### Unicode sanitization at server egress (v1.38.0.0)
Page content harvested by CDP can contain lone UTF-16 surrogate halves (orphaned high or low surrogates from broken JavaScript string handling on the page). When those reach `JSON.stringify`, Bun emits them as `\uD800`-style escape sequences that the downstream consumer's `JSON.parse` accepts, but the Anthropic API rejects with a 400 — turning a single weird page into a session-killing error. Defense is single-point, applied at every server egress that ships page-derived strings.
| Egress path | Module | Sanitization point |
|---|---|---|
| `POST /command` (HTTP) | `browse/src/server.ts` | `handleCommandInternal` wrapper (sanitizes the result of `handleCommandInternalImpl`) |
| `POST /command/batch` | `browse/src/server.ts` | Same wrapper — batch consumers inherit it |
| `GET /activity/stream` (SSE) | `browse/src/server.ts` | `sanitizeReplacer` passed to `JSON.stringify` |
| `GET /inspector/events` (SSE) | `browse/src/server.ts` | `sanitizeReplacer` passed to `JSON.stringify` |
`sanitizeReplacer` is a `JSON.stringify` replacer function that cleans every string value during encoding. Post-stringify regex doesn't work here — `JSON.stringify` has already converted `\uD800` into the literal escape sequence `"\\ud800"` before the regex could match, so the replacer must run inside the encoding pipeline. The pure-string helper `sanitizeLoneSurrogates` is used directly for `text/plain` responses.
**Architectural invariant.** Every new SSE/WebSocket writer or HTTP response that ships page-content-derived strings MUST go through one of two paths: `JSON.stringify(payload, sanitizeReplacer)` for object payloads, or `sanitizeLoneSurrogates(body)` for text bodies. New surfaces that bypass both will desync the system. Inline comments at both SSE producers in `server.ts` say so; `browse/test/server-sanitize-surrogates.test.ts` pins wiring with bug-repro + invariant tests (`handleCommandInternalImpl` rename, central sanitization line, replacer existence, SSE producers stringify with replacer).
### Prompt injection defense (sidebar agent)
The Chrome sidebar agent has tools (Bash, Read, Glob, Grep, WebFetch) and reads hostile web pages, so it's the part of gstack most exposed to prompt injection. Defense is layered, not single-point.
1. **L1-L3 content security (`browse/src/content-security.ts`).** Runs on every page-content command and every tool output: datamarking, hidden-element strip, ARIA regex, URL blocklist, and a trust-boundary envelope wrapper. Applied at both the server and the agent.
2. **L4 ML classifier — TestSavantAI (`browse/src/security-classifier.ts`).** A 22MB BERT-small ONNX model (int8 quantized) bundled with the agent. Runs locally, no network. Scans every user message and every Read/Glob/Grep/WebFetch tool output before Claude sees it. Opt-in 721MB DeBERTa-v3 ensemble via `GSTACK_SECURITY_ENSEMBLE=deberta`.
3. **L4b transcript classifier.** A Claude Haiku pass that looks at the full conversation shape (user message, tool calls, tool output), not just text. Gated by `LOG_ONLY: 0.40` so most clean traffic skips the paid call.
4. **L5 canary token (`browse/src/security.ts`).** A random token injected into the system prompt at session start. Rolling-buffer detection across `text_delta` and `input_json_delta` streams catches the token if it shows up anywhere in Claude's output, tool arguments, URLs, or file writes. Deterministic BLOCK — if the token leaks, the attacker convinced Claude to reveal the system prompt, and the session ends.
5. **L6 ensemble combiner (`combineVerdict`).** BLOCK requires agreement from two ML classifiers at >= `WARN` (0.75), not a single confident hit. This is the Stack Overflow instruction-writing false-positive mitigation. On tool-output scans, single-layer high confidence BLOCKs directly — the content wasn't user-authored, so the FP concern doesn't apply.
**Critical constraint:** `security-classifier.ts` runs only in the sidebar-agent process, never in the compiled browse binary. `@huggingface/transformers` v4 requires `onnxruntime-node`, which fails `dlopen` from Bun compile's temp extract directory. Only the pure-string pieces (canary inject/check, verdict combiner, attack log, status) are in `security.ts`, which is safe to import from `server.ts`.
**Env knobs:** `GSTACK_SECURITY_OFF=1` is a real kill switch (skips ML scan, canary still injects). Model cache at `~/.gstack/models/testsavant-small/` (112MB, first run) and `~/.gstack/models/deberta-v3-injection/` (721MB, opt-in only). Attack log at `~/.gstack/security/attempts.jsonl` (salted sha256 + domain, rotates at 10MB, 5 generations). Per-device salt at `~/.gstack/security/device-salt` (0600), cached in-process to survive FS-unwritable environments.
**Visibility.** The sidebar header shows a shield icon (green/amber/red) polled via `/sidebar-chat`. A centered banner appears on canary leak or BLOCK verdict with the exact layer scores. `bin/gstack-security-dashboard` aggregates local attempts; `supabase/functions/community-pulse` aggregates opt-in community telemetry across users.
## The ref system
Refs (`@e1`, `@e2`, `@c1`) are how the agent addresses page elements without writing CSS selectors or XPath.
### How it works
```
1. Agent runs: $B snapshot -i
2. Server calls Playwright's page.accessibility.snapshot()
3. Parser walks the ARIA tree, assigns sequential refs: @e1, @e2, @e3...
4. For each ref, builds a Playwright Locator: getByRole(role, { name }).nth(index)
5. Stores Map<string, RefEntry> on the BrowserManager instance (role + name + Locator)
6. Returns the annotated tree as plain text
Later:
7. Agent runs: $B click @e3
8. Server resolves @e3 → Locator → locator.click()
```
### Why Locators, not DOM mutation
The obvious approach is to inject `data-ref="@e1"` attributes into the DOM. This breaks on:
- **CSP (Content Security Policy).** Many production sites block DOM modification from scripts.
- **React/Vue/Svelte hydration.** Framework reconciliation can strip injected attributes.
- **Shadow DOM.** Can't reach inside shadow roots from the outside.
Playwright Locators are external to the DOM. They use the accessibility tree (which Chromium maintains internally) and `getByRole()` queries. No DOM mutation, no CSP issues, no framework conflicts.
### Ref lifecycle
Refs are cleared on navigation (the `framenavigated` event on the main frame). This is correct — after navigation, all locators are stale. The agent must run `snapshot` again to get fresh refs. This is by design: stale refs should fail loudly, not click the wrong element.
### Ref staleness detection
SPAs can mutate the DOM without triggering `framenavigated` (e.g. React router transitions, tab switches, modal opens). This makes refs stale even though the page URL didn't change. To catch this, `resolveRef()` performs an async `count()` check before using any ref:
```
resolveRef(@e3) → entry = refMap.get("e3")
→ count = await entry.locator.count()
→ if count === 0: throw "Ref @e3 is stale — element no longer exists. Run 'snapshot' to get fresh refs."
→ if count > 0: return { locator }
```
This fails fast (~5ms overhead) instead of letting Playwright's 30-second action timeout expire on a missing element. The `RefEntry` stores `role` and `name` metadata alongside the Locator so the error message can tell the agent what the element was.
### Cursor-interactive refs (@c)
The `-C` flag finds elements that are clickable but not in the ARIA tree — things styled with `cursor: pointer`, elements with `onclick` attributes, or custom `tabindex`. These get `@c1`, `@c2` refs in a separate namespace. This catches custom components that frameworks render as `<div>` but are actually buttons.
## Logging architecture
Three ring buffers (50,000 entries each, O(1) push):
```
Browser events → CircularBuffer (in-memory) → Async flush to .gstack/*.log
```
Console messages, network requests, and dialog events each have their own buffer. Flushing happens every 1 second — the server appends only new entries since the last flush. This means:
- HTTP request handling is never blocked by disk I/O
- Logs survive server crashes (up to 1 second of data loss)
- Memory is bounded (50K entries × 3 buffers)
- Disk files are append-only, readable by external tools
The `console`, `network`, and `dialog` commands read from the in-memory buffers, not disk. Disk files are for post-mortem debugging.
## SKILL.md template system
### The problem
SKILL.md files tell Claude how to use the browse commands. If the docs list a flag that doesn't exist, or miss a command that was added, the agent hits errors. Hand-maintained docs always drift from code.
### The solution
```
SKILL.md.tmpl (human-written prose + placeholders)
gen-skill-docs.ts (reads source code metadata)
SKILL.md (committed, auto-generated sections)
```
Templates contain the workflows, tips, and examples that require human judgment. Placeholders are filled from source code at build time:
| Placeholder | Source | What it generates |
|-------------|--------|-------------------|
| `{{COMMAND_REFERENCE}}` | `commands.ts` | Categorized command table |
| `{{SNAPSHOT_FLAGS}}` | `snapshot.ts` | Flag reference with examples |
| `{{PREAMBLE}}` | `gen-skill-docs.ts` | Startup block: update check, session tracking, contributor mode, AskUserQuestion format |
| `{{BROWSE_SETUP}}` | `gen-skill-docs.ts` | Binary discovery + setup instructions |
| `{{BASE_BRANCH_DETECT}}` | `gen-skill-docs.ts` | Dynamic base branch detection for PR-targeting skills (ship, review, qa, plan-ceo-review) |
| `{{QA_METHODOLOGY}}` | `gen-skill-docs.ts` | Shared QA methodology block for /qa and /qa-only |
| `{{DESIGN_METHODOLOGY}}` | `gen-skill-docs.ts` | Shared design audit methodology for /plan-design-review and /design-review |
| `{{REVIEW_DASHBOARD}}` | `gen-skill-docs.ts` | Review Readiness Dashboard for /ship pre-flight |
| `{{TEST_BOOTSTRAP}}` | `gen-skill-docs.ts` | Test framework detection, bootstrap, CI/CD setup for /qa, /ship, /design-review |
| `{{CODEX_PLAN_REVIEW}}` | `gen-skill-docs.ts` | Optional cross-model plan review (Codex or Claude subagent fallback) for /plan-ceo-review and /plan-eng-review |
| `{{DESIGN_SETUP}}` | `resolvers/design.ts` | Discovery pattern for `$D` design binary, mirrors `{{BROWSE_SETUP}}` |
| `{{DESIGN_SHOTGUN_LOOP}}` | `resolvers/design.ts` | Shared comparison board feedback loop for /design-shotgun, /plan-design-review, /design-consultation |
| `{{UX_PRINCIPLES}}` | `resolvers/design.ts` | User behavioral foundations (scanning, satisficing, goodwill reservoir, trunk test) for /design-html, /design-shotgun, /design-review, /plan-design-review |
| `{{GBRAIN_CONTEXT_LOAD}}` | `resolvers/gbrain.ts` | Brain-first context search with keyword extraction, health awareness, and data-research routing. Injected into 10 brain-aware skills. Suppressed on non-brain hosts. |
| `{{GBRAIN_SAVE_RESULTS}}` | `resolvers/gbrain.ts` | Post-skill brain persistence with entity enrichment, throttle handling, and per-skill save instructions. 8 skill-specific save formats. |
This is structurally sound — if a command exists in code, it appears in docs. If it doesn't exist, it can't appear.
### The preamble
Every skill starts with a `{{PREAMBLE}}` block that runs before the skill's own logic. It handles five things in a single bash command:
1. **Update check** — calls `gstack-update-check`, reports if an upgrade is available.
2. **Session tracking** — touches `~/.gstack/sessions/$PPID` and counts active sessions (files modified in the last 2 hours). When 3+ sessions are running, all skills enter "ELI16 mode" — every question re-grounds the user on context because they're juggling windows.
3. **Operational self-improvement** — at the end of every skill session, the agent reflects on failures (CLI errors, wrong approaches, project quirks) and logs operational learnings to the project's JSONL file for future sessions.
4. **AskUserQuestion format** — universal format: context, question, `RECOMMENDATION: Choose X because ___`, lettered options. Consistent across all skills.
5. **Search Before Building** — before building infrastructure or unfamiliar patterns, search first. Three layers of knowledge: tried-and-true (Layer 1), new-and-popular (Layer 2), first-principles (Layer 3). When first-principles reasoning reveals conventional wisdom is wrong, the agent names the "eureka moment" and logs it. See `ETHOS.md` for the full builder philosophy.
### Why committed, not generated at runtime?
Three reasons:
1. **Claude reads SKILL.md at skill load time.** There's no build step when a user invokes `/browse`. The file must already exist and be correct.
2. **CI can validate freshness.** `gen:skill-docs --dry-run` + `git diff --exit-code` catches stale docs before merge.
3. **Git blame works.** You can see when a command was added and in which commit.
### Template test tiers
| Tier | What | Cost | Speed |
|------|------|------|-------|
| 1 — Static validation | Parse every `$B` command in SKILL.md, validate against registry | Free | <2s |
| 2 — E2E via `claude -p` | Spawn real Claude session, run each skill, check for errors | ~$3.85 | ~20min |
| 3 — LLM-as-judge | Sonnet scores docs on clarity/completeness/actionability | ~$0.15 | ~30s |
Tier 1 runs on every `bun test`. Tiers 2+3 are gated behind `EVALS=1`. The idea is: catch 95% of issues for free, use LLMs only for judgment calls.
## Command dispatch
Commands are categorized by side effects:
- **READ** (text, html, links, console, cookies, ...): No mutations. Safe to retry. Returns page state.
- **WRITE** (goto, click, fill, press, ...): Mutates page state. Not idempotent.
- **META** (snapshot, screenshot, tabs, chain, ...): Server-level operations that don't fit neatly into read/write.
This isn't just organizational. The server uses it for dispatch:
```typescript
if (READ_COMMANDS.has(cmd)) handleReadCommand(cmd, args, bm)
if (WRITE_COMMANDS.has(cmd)) handleWriteCommand(cmd, args, bm)
if (META_COMMANDS.has(cmd)) handleMetaCommand(cmd, args, bm, shutdown)
```
The `help` command returns all three sets so agents can self-discover available commands.
## Error philosophy
Errors are for AI agents, not humans. Every error message must be actionable:
- "Element not found" → "Element not found or not interactable. Run `snapshot -i` to see available elements."
- "Selector matched multiple elements" → "Selector matched multiple elements. Use @refs from `snapshot` instead."
- Timeout → "Navigation timed out after 30s. The page may be slow or the URL may be wrong."
Playwright's native errors are rewritten through `wrapError()` to strip internal stack traces and add guidance. The agent should be able to read the error and know what to do next without human intervention.
### Crash recovery
The server doesn't try to self-heal. If Chromium crashes (`browser.on('disconnected')`), the server exits immediately. The CLI detects the dead server on the next command and auto-restarts. This is simpler and more reliable than trying to reconnect to a half-dead browser process.
## E2E test infrastructure
### Session runner (`test/helpers/session-runner.ts`)
E2E tests spawn `claude -p` as a completely independent subprocess — not via the Agent SDK, which can't nest inside Claude Code sessions. The runner:
1. Writes the prompt to a temp file (avoids shell escaping issues)
2. Spawns `sh -c 'cat prompt | claude -p --output-format stream-json --verbose'`
3. Streams NDJSON from stdout for real-time progress
4. Races against a configurable timeout
5. Parses the full NDJSON transcript into structured results
The `parseNDJSON()` function is pure — no I/O, no side effects — making it independently testable.
### Observability data flow
```
skill-e2e-*.test.ts
│ generates runId, passes testName + runId to each call
┌─────┼──────────────────────────────┐
│ │ │
│ runSkillTest() evalCollector
│ (session-runner.ts) (eval-store.ts)
│ │ │
│ per tool call: per addTest():
│ ┌──┼──────────┐ savePartial()
│ │ │ │ │
│ ▼ ▼ ▼ ▼
│ [HB] [PL] [NJ] _partial-e2e.json
│ │ │ │ (atomic overwrite)
│ │ │ │
│ ▼ ▼ ▼
│ e2e- prog- {name}
│ live ress .ndjson
│ .json .log
│ on failure:
│ {name}-failure.json
│ ALL files in ~/.gstack-dev/
│ Run dir: e2e-runs/{runId}/
│ eval-watch.ts
│ │
│ ┌─────┴─────┐
│ read HB read partial
│ └─────┬─────┘
│ ▼
│ render dashboard
│ (stale >10min? warn)
```
**Split ownership:** session-runner owns the heartbeat (current test state), eval-store owns partial results (completed test state). The watcher reads both. Neither component knows about the other — they share data only through the filesystem.
**Non-fatal everything:** All observability I/O is wrapped in try/catch. A write failure never causes a test to fail. The tests themselves are the source of truth; observability is best-effort.
**Machine-readable diagnostics:** Each test result includes `exit_reason` (success, timeout, error_max_turns, error_api, exit_code_N), `timeout_at_turn`, and `last_tool_call`. This enables `jq` queries like:
```bash
jq '.tests[] | select(.exit_reason == "timeout") | .last_tool_call' ~/.gstack-dev/evals/_partial-e2e.json
```
### Eval persistence (`test/helpers/eval-store.ts`)
The `EvalCollector` accumulates test results and writes them in two ways:
1. **Incremental:** `savePartial()` writes `_partial-e2e.json` after each test (atomic: write `.tmp`, `fs.renameSync`). Survives kills.
2. **Final:** `finalize()` writes a timestamped eval file (e.g. `e2e-20260314-143022.json`). The partial file is never cleaned up — it persists alongside the final file for observability.
`eval:compare` diffs two eval runs. `eval:summary` aggregates stats across all runs in `~/.gstack-dev/evals/`. Both are shard-aware (v1.63.0.0): the sharded paid runner (`scripts/test-paid-shards.ts`, run via `test:gate:sharded` / `test:periodic:sharded` — the `eval:bg:gate` / `eval:bg:periodic` scripts now point at these) gives each shard's collector its own directory at `<evalDir>/shards/<slug>/` through the `GSTACK_EVAL_DIR` env var (honored by the `EvalCollector` constructor), and `eval:list` / `eval:compare` / `eval:summary` scan one level of `shards/<slug>/` subdirectories. Baseline lookups exclude `_partial` accumulators (`isPartialEval` / `findLatestFinalizedRun` in `eval-store.ts`), so auto-comparison never uses the current run's own partial file as its baseline.
### Test tiers
| Tier | What | Cost | Speed |
|------|------|------|-------|
| 1 — Static validation | Parse `$B` commands, validate against registry, observability unit tests | Free | <5s |
| 2 — E2E via `claude -p` | Spawn real Claude session, run each skill, scan for errors | ~$3.85 | ~20min |
| 3 — LLM-as-judge | Sonnet scores docs on clarity/completeness/actionability | ~$0.15 | ~30s |
Tier 1 runs on every `bun test`. Tiers 2+3 are gated behind `EVALS=1`. The idea: catch 95% of issues for free, use LLMs only for judgment calls and integration testing.
## What's intentionally not here
- **No WebSocket streaming.** HTTP request/response is simpler, debuggable with curl, and fast enough. Streaming would add complexity for marginal benefit.
- **No MCP protocol.** MCP adds JSON schema overhead per request and requires a persistent connection. Plain HTTP + plain text output is lighter on tokens and easier to debug.
- **No multi-user support.** One server per workspace, one user. The token auth is defense-in-depth, not multi-tenancy.
- **No Windows/Linux cookie decryption.** macOS Keychain is the only supported credential store. Linux (GNOME Keyring/kwallet) and Windows (DPAPI) are architecturally possible but not implemented.
- **No iframe auto-discovery.** `$B frame` supports cross-frame interaction (CSS selector, @ref, `--name`, `--url` matching), but the ref system does not auto-crawl iframes during `snapshot`. You must explicitly enter a frame context first.