* fix(ci): address reviewer findings across the perf-lever batch
Seven follow-ups from Codex review feedback on the landed CI perf PRs:
docker packaging switches to the full build profile (the ciArtifacts
step env clobbered its canonical-dts requirement); the boundary sticky
restore gates on generative source tree OIDs in both lanes, making
restored artifacts valid by construction (kills the clock-skew mtime
false-skip and ghost declarations from deleted sources); the node-test
worker budget derives from nproc instead of the runner label (labels
over-promise under load) and keeps the 2-worker cap when plans can
overlap; the deadcode task falls back to serial Knip below 8 cores;
the lint-lane i18n verify also runs for any ui-touching diff (keys are
extracted from all ui sources, not just ui/src/i18n); the oxlint
concurrency diagnostic moves to stderr; and workspace packages join
the prompt-snapshot always-run surface.
* fix(ci): fingerprint every generative source the boundary artifacts consume
Autoreview flagged inputs outside the tree-OID gate; toolchain, config,
and script inputs were already covered by the sticky key hash, but the
old actions/cache key also fingerprinted src/plugins/types.ts and
src/video-generation sources the OID list missed. Add those plus
src/channels (the plugin-sdk declaration graph reaches its public
types) to the fingerprint in all three sites.
* fix(ci): fold runner toolchain identity into the boundary sticky fingerprint
Autoreview: the sticky key hashes config/scripts/package.json/lockfile,
but a node/pnpm toolchain bump (pinned in the workflow, not the key)
could leave the key unchanged and bless artifacts built with the prior
toolchain. Record node/pnpm versions alongside the source tree OIDs in
all three fingerprint sites so a toolchain-only change forces a cold
build.
Platform-aware install kinds: Linux AppImage and macOS self-install in place;
Windows defers — the update downloads and verifies in the background, then the
NSIS installer runs only from the user-confirmed restart (Tauri's installer
launch exits the process, so it must never fire behind a silent auto-check).
Linux system packages stay notify-only.
The release workflow gains dispatch-gated unsigned macOS/Windows test bundles
signed with the same minisign key, and a separate desktop-test update channel:
latest.json stays Linux-only on every release, while an opt-in fixed
'desktop-test' prerelease hosts latest-desktop-test.json (monotonic version
guard) so Linux-only releases can never strand distributed test builds. Build
jobs check out the SHA the validation job resolved, closing the tag-move race.
* perf(ci): run the deadcode Knip scans concurrently
check-dependencies spent ~194s running seven Knip child processes
strictly serially (three package scripts, each iterating its scans).
The scans are independent processes over separate configs: both
deadcode scripts now Promise.all their scans, the CI task launches the
three package scripts concurrently with buffered logs, and the lane
moves to the 16 vCPU class for core/memory headroom. The
missing-exports-script contract violation now fails fast before
launching scans. Local: unused-files 218% CPU, 37s wall.
* test(ci): align prerelease plan with the 16 vCPU dependencies lane
* feat(android): add Wear proxy protocol
Introduce a bounded, versioned phone/watch RPC contract and wire its test, lint, and build gates before either runtime endpoint lands.
Co-authored-by: Sebastian Schubotz <git@sibbl.de>
* test(android): lock Wear wire names
Cover every supported RPC method and event discriminator so phone and watch cannot silently drift.
Co-authored-by: Sebastian Schubotz <git@sibbl.net>
* fix(android): bound Wear JSON depth
Reject excessively nested Data Layer envelopes before kotlinx.serialization can recurse through them.
* fix(android): enforce Wear depth on encode
Keep outbound messages inside the same JSON nesting contract enforced by the decoder.
* fix(android): preflight Wear payload depth
Traverse arbitrary JSON payloads iteratively before serialization so deeply nested local trees fail safely.
---------
Co-authored-by: Sebastian Schubotz <git@sibbl.de>
Co-authored-by: Sebastian Schubotz <git@sibbl.net>
* feat(migrate): add Hermes memory-only import and a shared memory-import core
* feat(onboarding): offer detected memory imports during CLI setup and guided onboarding
* feat(ui): show a first-run memory-import offer in Control UI onboarding mode
* feat(linux-app): open the first-run dashboard in onboarding mode
* feat(macos): add the onboarding memory-import page
* docs: document the onboarding memory-import page across surfaces
* chore(i18n): translate onboarding memory-import strings for control-ui and native locales
* refactor: keep memory-import internals unexported for deadcode gates
* fix(ci): resolve lint findings in onboarding memory import
* chore(i18n): refresh native inventory after lint refactor
* fix(ci): skip updater artifacts in the unsigned Linux companion PR lane
* chore(i18n): reconcile locale artifacts after rebase
* perf(ci): carry extension boundary artifacts on a Blacksmith sticky disk
The boundary lane spends ~113s of its 214s rebuilding plugin-sdk
declaration artifacts that an actions/cache was meant to carry — but
that cache is evicted so fast under the repo quota that even its prefix
restore never hits. Same-repo runs now keep the artifacts on a sticky
disk with a coarse toolchain key (source changes intentionally hit a
stale snapshot: restored mtimes predate the fresh checkout, so the
mtime-based freshness predicate always routes into the incremental
rebuild — a stale snapshot can never false-skip the compile). Fork PRs
keep the GitHub cache path and can never write repository-global
snapshots. Seed/restore round-trip verified locally with rsync -aR
layout mirroring.
* perf(ci): restore boundary artifacts for the lint lane too
check-lint's shard runner spawns the same plugin-sdk boundary artifact
prep the boundary lane snapshots (~72s of its wall clock); it now
mounts the shared sticky read-only-by-convention (only the boundary
lane seeds) and restores before the run step.
* fix(ci): make the lint boundary-sticky mount strictly read-only
Autoreview caught a first-hydration race: with commit if-missing, a
cold-key lint job racing the boundary lane could commit an empty,
marker-less snapshot that if-missing then never repairs. commit false
makes lint a pure reader; only the boundary lane can seed.
* perf(ci): unblock parallel oxlint shards and gate the lint-lane i18n verify
check-lint is the slowest static lane (median 252s): the control-UI
i18n verify runs 86s unconditionally and the three oxlint shards run
serially (89s) because the parallel gate demands 48GB of memory — a
local-Mac threshold that Blacksmith's 32GB 16 vCPU class can never
meet. CI now parallelizes shards at 8+ cores / 24GB+, and the lint case
reuses the existing run_control_ui_i18n manifest gate so diffs that
cannot affect generated catalogs skip the verify while oxlint always
runs.
* chore(ci): print oxlint shard concurrency decision
The lint-lane validation run still executed shards serially on a 16
vCPU runner; one log line exposes the resolved concurrency and the
host resources the decision saw.
check-prompt-snapshots costs 200-310s per PR regenerating real prompt
stacks, but snapshots only change when the generator's import graph or
its fixtures do. The manifest now computes that reach (same pattern as
QA smoke gating: always-run surface regex incl. the codex extension
whose test API loads via a dynamic module id, plus import-graph walk
from the snapshot helper; deletions and null diffs fail safe to
running). Unaffected PR diffs skip the lane with an explicit log line;
pushes and dispatches always run.
The arm64 Homebrew xcodegen bottle is corrupt on current runner images
(pour fails with 'Cellar/xcodegen/<ver> is not a directory'), and
reinstalling re-pours the same broken tarball. Use the repo's pinned,
checksummed scripts/install-xcodegen.sh like ci.yml already does.
Periphery scans fail org-wide when the runner image ships a broken
Cellar entry (pour errors with 'Cellar/xcodegen/<ver> is not a
directory'). Pre-clean the path and retry the install once.
* perf(ci): scale Vitest workers with runner class and share serial module cache
Compact node-test jobs pinned OPENCLAW_VITEST_MAX_WORKERS=2 regardless of
runner size, so import-bound suites (30-45s of module-graph import per
file) crawled: runner-cli spent 284s on 5s of tests, commands-1 296s on
10s. With serial plans the budget now scales with the class (6 on 8vcpu,
3 on 4vcpu); timing-sensitive groups (tooling, tui-pty, infra-process)
stay pinned to 2 via plan-level env. Serial bins share one Vitest
fs-module-cache path so later plans reuse the first plan's transforms.
The import-bound commands stripes and security suite move to the 8vcpu
class, and packing hints refresh from serial-run measurements (run
29481835688).
* perf(ci): stripe cli-runner suite and pin media-ui worker budget
The agents-core config runs files serially (fileParallelism false guards
shared module state), so raising the worker budget cannot help its
import-heavy cli-runner suite (~35s module import per file, 213s serial).
Stripe it three ways so bins parallelize the imports instead. media-ui
hosts browser locator tests that timed out at 6 workers on the first
validation run; pin it to the proven 2-worker budget. commands-1's hint
drops to its measured 6-worker runtime.
Sparkle-parity self-update for the apps/linux companion: tauri-plugin-updater +
process, checked silently on launch and from a "Check for Updates" tray item /
manual trigger. AppImage installs download, verify the signed update, and wait
for a user-confirmed restart; package-managed (deb) installs get a release-page
notice instead of replacing files the system package manager owns. The
linux-app release workflow signs the AppImage and publishes a signed latest.json
manifest that the app verifies with the committed minisign public key.