resumeSession hand-rolls $messages (it paints before a runtime id is bound), and
only cleared the old transcript on the cold path at entry. But a warm-cache hit
can bail down to the full resume — an empty-transcript drop, or the cache being
purged during the profile-swap await — without ever clearing, so the previous
session's array leaked into the next one. Symptom: switching sessions kept
showing the same messages (deterministic once tiling pre-warms the cache on
boot). Clear $messages at the single point every cold/bail path converges, so
carryover is structurally impossible; the warm fast-path still repaints in place.
Self-review nits on the Thinking-widget fix:
- type ReasoningTextPart as ReasoningMessagePartComponent and read the
typed useMessagePartReasoning() directly, dropping the ad-hoc cast
(the hook already returns text/status).
- remove useRef, now unused after deleting useSmoothReveal.
- trim the autopsy comments; the PR body carries the narrative.
The Thinking disclosure rendered blank for every reasoning-emitting model
(Fable, DeepSeek, GPT-5.5, ...). Two causes:
1. ReasoningTextPart read a `text` prop that assistant-ui never populates —
reasoning parts arrive via context, same as text parts — so it always got
an empty string. Read the text via useMessagePartReasoning() instead,
mirroring how MarkdownText uses useMessagePartText().
2. The reasoning-only SmoothStreamingText / useSmoothReveal layer stalled at
revealed="": the reasoning part stays isRunning for the whole message while
the answer streams and thrashes re-renders, so the char-reveal never
advanced past 0. Render reasoning through the same DeferStreamingText →
surface path the assistant answer uses, and drop the dead smoothing code.
alelpoan's fix (emit hermes:zoom:changed after restore) is correct, but the
bug's root is duplication: setAndPersistZoomLevel and restorePersistedZoomLevel
each independently did setZoomLevel + send, and restore forgot the send.
Collapse both (and the lifecycle re-assert) into a single applyZoomLevel()
helper in zoom.ts that always applies-then-notifies — the regression can't
recur by omitting a send. Replace the source-grep test (which broke on main:
the sibling source-assertion pet test it copied was refactored to a behavioral
one, dropping the fs/path imports it relied on) with behavioral coverage of the
funnel, matching zoom.ts's "unit-testable without booting a BrowserWindow"
convention.
Co-authored-by: alelpoan <alelpoan@proton.me>
classifyNativeBinary only checked big-endian Mach-O/Fat magic bytes
(feedfacf, feedface, cafebabe). Real Darwin .node files from node-pty
prebuilds are stored little-endian on disk (cffaedfe = MH_CIGAM_64),
so every Darwin prebuild classified as null, and validateStagedBinaries
threw a platform mismatch on macOS — breaking npm run check for every
macOS contributor. CI didn't catch it because runners are Linux (ELF
path was correct) and tests only planted big-endian fake headers.
Add recognition for all six Mach-O/Fat byte orderings:
- MH_CIGAM (cefaedfe) — LE 32-bit
- MH_CIGAM_64 (cffaedfe) — LE 64-bit [the one real prebuilds use]
- FAT_CIGAM (bebafeca) — LE universal
Update makeFakeNode to write LE CIGAM_64 bytes for the darwin fixture
(matching real on-disk format) and add regression tests for all new
magic forms.
stageNodePty received electron-builder's { platform, arch } but unconditionally
copied host build/Release, staging a host binary (e.g. macOS Mach-O) for a
foreign target (e.g. linux-arm64). The fallback rebuild also didn't pass the
target arch to electron-rebuild.
Now:
- build/Release is only staged when target platform+arch match the host
- cross-platform targets with no matching prebuild fail closed
- same-platform different-arch rebuild passes --arch to electron-rebuild
- post-staging validation reads .node magic bytes (ELF/Mach-O/PE) and rejects
any binary whose platform doesn't match the target
Adds stageNodePtyInto() (testable core) and classifyNativeBinary() (pure),
plus 11 regression tests covering the cross-target scenarios.
Move setGatewayState + rerender calls inside act() blocks and make the
synchronous soft-switch test async so all state updates are wrapped.
Eliminates the last 4 act() warnings (44 → 0).
Extracted zoomWiringForWindowKind() + ZOOM_WINDOW_CONFIG into zoom.ts so
the pet-overlay-
opts-out / chat-windows-keep-zoom contract is tested via the pure
config,
not by reading source. Callers in main.ts now use
zoomWiringForWindowKind()
instead of inline { zoom: false } / default { zoom: true }.
When neither a prebuild nor a compiled build/Release/*.node is found for
the target platform-arch, stage-native-deps.mjs now runs
electron-rebuild -f -w node-pty to compile one from source before
re-copying build/Release into the staged dist.
This makes the staging script self-sufficient — it always produces a
working native binary dir regardless of whether npm ci --ignore-scripts
skipped postinstall or whether node-pty publishes prebuilds for the
target (e.g. linux-x64 has no prebuild).
Add vitest.setup.ts with IS_REACT_ACT_ENVIRONMENT=true + auto-cleanup,
and wrap render()/fireEvent() calls in act() across 8 test files:
- provider-config-panel.test.tsx: wrap renderPanel + fireEvent in act
- providers-settings.test.tsx: wrap renderProvidersSettings + fireEvent
in act
- use-prompt-actions/index.test.tsx: add actRender helper, wrap all 38
render
calls, wrap Harness handle methods (submitText/cancelRun/steerPrompt/
restoreToMessage) in act at the onReady callback level
- attachments.test.tsx: make renderWithI18n async + wrap in act
- skills/index.test.tsx: make renderSkills async + wrap fireEvent in act
- messaging/index.test.tsx: make renderMessaging async + wrap fireEvent
in act
- gateway-connecting-overlay.test.tsx: wrap all render/rerender in act
- preview-pane.test.tsx: wrap render calls in act, make tests async
Reduces act warnings from 44 to 4 (remaining are fake-timer + pre-render
store mutation edge cases). All 146 test files / 1180 tests still pass.
oauth-session-request.test.ts regexed main.ts source text (extracting the
fetchJsonViaOauthSession function body and matching regexes against it) to
check Electron net.request doesn't set the forbidden Content-Length header
and does call request.write(body).
That behavior is already covered for real by oauth-net-request.test.ts,
which imports the actual serializeJsonBody/setJsonRequestHeaders helpers
from oauth-net-request.ts and asserts on a mock request object's setHeader
calls -- it only needed its relative import corrected to include the .ts
extension (Node's ESM loader doesn't resolve extensionless relative
specifiers). Removed the now-fully-superseded oauth-session-request.test.ts
and its dangling package.json wiring.
profile-delete-respawn.test.ts regexed main.ts source text to check that
prepareProfileDeleteRequest returns the torn-down profile name, and that
the hermes:api ipcMain handler captures that return value and routes to
the primary backend instead of respawning a pool backend for the just-
deleted profile.
Extract the pure decision logic into profile-delete-routing.ts (no
Electron import):
- profileNameFromDeleteRequest(request): parses a DELETE
/api/profiles/<name> path, moved verbatim (already pure).
- decideProfileDeleteAction(profile, deps): the branch decision (noop /
teardown-primary / teardown-pool) and the profile name to return,
parameterized over isDefaultProfile/isValidProfileName/primaryProfileKey.
- resolveRouteProfile(tornDownProfile, profile): the
routing ternary from the hermes:api
handler.
prepareProfileDeleteRequest in main.ts now calls decideProfileDeleteAction
for the decision and only performs the async side effects (teardown +
writeActiveDesktopProfile) the decision calls for.
profile-delete-routing.test.ts replaces profile-delete-respawn.test.ts
(which was never wired into test:desktop:platforms), importing the pure
functions directly and asserting real return values across every branch
-- no readFileSync, no regex-on-source. Wired the new test file into
test:desktop:platforms in package.json.
windows-hermes-resolution.test.ts regexed main.ts source text to check
three Windows resolution bugs that caused desktop reinstall loops:
1. findOnPath()'s PATHEXT extension order (must try real extensions before
the empty one, or an extensionless Git-Bash hermes shim shadows
hermes.cmd/.exe).
2. handOffWindowsBootstrapRecovery()'s --update vs --repair choice (must
gate on any real-install signal, not just the hermes.exe shim).
3. unwrapWindowsVenvHermesCommand()'s probe-before-trust behavior (must
canImportHermesCli() before returning a venv python, or a broken venv
gets re-selected forever).
Extract all three into pure, dependency-injected functions in
windows-hermes-path.ts (no Electron import): buildPathExtCandidates(),
chooseUpdaterArgs(), resolveVenvHermesCommand(). main.ts's
findOnPath/handOffWindowsBootstrapRecovery/unwrapWindowsVenvHermesCommand
now call these with their existing helpers (fileExists, canImportHermesCli,
getVenvPython, etc.) passed through as deps.
windows-hermes-path.test.ts replaces windows-hermes-resolution.test.ts,
importing the pure functions directly and asserting real return values
with fake/injected dependencies (fake venvs, fake probes) -- no readFileSync,
no regex-on-source.