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orchestration-dispatch-error-codes
11
Commits
| Author | SHA1 | Message | Date | |
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fd9125ea8c |
feat(native-chat): Codex structured native chat restructure (#16729)
* feat(native-chat): port structured Codex sessions from restructure-recovery Rebuilds the desktop structured native-chat implementation from brennanb2025/native-chat-restructure-recovery (tip 4e31c08db3) on top of current main as a single commit, scoped to the local Codex path. Ported: - Structured agent-session core: durable record store + single-writer lease, canonical journal, agent-session wire host/attach/eviction/subscribers, `agentSession.*` RPC surface (registered via ALL_RPC_METHODS; host-side mobile allowlist included for wire compat), pty write gate, transcript additions, and the Codex app-server adapter/launch resolution. - Renderer: NativeChatStructuredSession view/composer stack, structured launch path with the single-flight guard, local structured session tabs sync, activation gate + structured inventory (read-only `agentSession.handoffStatus` probe), agent-session tabs in the tab strip, AI-vault structured session activation, and the settings pane with the parent Experimental Chat UI toggle plus the nested "Use updated structured native chat" toggle. New sessions require both flags, agent codex, no prompt, and a local non-WSL, non-Windows-host execution host (structured-native-chat-availability). - Fixes 72c013cea6 (verified Codex launch recovery), 8ddbaf5e3d (defer native terminal view switching affordances), and 4e31c08db3 (release the launch gate after a visibility retry) with their regression tests, including the third-launch-after-retry guard case. - Cross-version agent-session wire test + CI lane, packaging entries (proper-lockfile, agent-tooling asar excludes), and the wire-compat doc section. Deliberately not ported: mobile/ changes, the Claude structured runtime (only the claude-transcript-branch-proof and claude-structured-owner-identity leaf modules remain, backing the kept TUI-recovery arms), the terminal↔chat adoption/handoff flow (`agentSession.adoptTerminal`/`requestHandoff`, the handoff request engine, TUI adoption machinery, orca-runtime adoption methods), renderer switching affordances and their dead leftovers, the hook/subagent-status refactor cluster, and unrelated branch changes. The crash-during-acquisition recovery path (restart handoff adjudication, restore/reverse re-acquire, lease schema handoff keys) is kept because every plain direct launch depends on it; a trimmed handoff coordinator exposes only status/restore/close. Branch edits that targeted files main has since split (ipc/pty.ts, worktrees.ts, rpc/methods/terminal.ts, useIpcEvents, pty-connection, store/slices/terminals.ts, runtime-types, web preload) were re-applied to the split modules, preserving main's newer logic (Windows CIM fallback, browser tab close rework, cold-restore resume flow, dispatcher threading). Known seam: the mobile clipboard image-provenance CONSUMER gate ships (agentSession.send refuses unproven mobile image refs with agent_session_image_untrusted) but the producer hunk in rpc/methods/clipboard.ts stays with the unported mobile cluster, so mobile image sends into structured chat fail closed until that side ports. * fix(native-chat): trust only authenticated local image uploads * fix(build): preserve Windows process-tree patch application * test(windows): include process creation time in addon fixture * fix(build): run windows-process-tree node-gyp from the physical package dir gyp expands the node-addon-api dependency by probing node, whose cwd resolves to the package's physical directory in the store, so the emitted target is a store-relative ../../../../node-addon-api@... hop. gyp then resolves that hop against the rebuild cwd; from the node_modules symlink/junction it escapes the store and configure fails with "node_addon_api.gyp not found" (run 32999886072). Rebuild from realpath(package dir) so both bases agree, matching how the package manager itself runs native install scripts. The regression test replays gyp's expansion+resolution against the planned cwd and fails without the fix. * fix(native-chat): keep chat tabs visible through terminal closes and empty-worktree launches Two proven blockers in the native Codex tab contract: closeTerminalTab pre-empted the canonical unified close. With one terminal left it deactivated the worktree on a terminal/editor/browser-only check, blanking a workspace that still held a renderable agent-session tab; with two or more it pre-picked a successor from terminal entities only, re-stamping the group active before closeUnifiedTab's MRU/neighbor repair could land on the chat tab. Successor choice now defers to the unified contract whenever the terminal has a unified row, and deactivation is gated on the unified renderable count (matching leaveWorktreeIfEmpty), with the legacy pre-pick kept only for terminals without a unified row. A structured session created on an empty worktree was published into the host's headless group while preserveLocalLayout froze the local layout, leaving the tab in store but permanently off screen. A preserveLocalLayout owner now always takes client-owned placement — repairing a rendered leaf whose group record is missing, or materializing a rendered group on a truly empty worktree — and applies the client-derived layout repair while still rejecting host-authored layout. Regression tests drive the real store through closeTerminalTab (git worktree and folder workspace) and the real snapshot applier for the empty-worktree adoption states; all fail without the fixes. * fix(native-chat): close stale turns and retry rejected sends * fix(native-chat): retire hosted rows on structured tab activation * fix(native-chat): preserve rpc defaults across main merge * chore: format remote wire compatibility guide * test(native-chat): cover retry after unconfirmed send * fix(native-chat): reload outbox on session switch * docs(settings): disclose structured chat platform limits * fix(native-chat): await Codex launch-home preparation * fix(codex): align child-process allowlist with async trust bridge * test(identity): update inventory for tab surface refactor * fix(windows): preserve process-tree CRLF patch sources * fix(native-chat): anchor an unmatched chat echo where it was sent (#16117) * fix(native-chat): anchor an unmatched chat echo where it was sent The reported symptom was old user messages replaying below every new turn, so the conversation read as scrambled. The cause was not that the echo failed to match a transcript row. Claude consumes a mid-turn send through a `queued_command` attachment and writes no `type:"user"` record for it, so some echoes can never match, and no amount of matching will change that. The cause was WHERE an unmatched echo rendered: buildMobileNativeChatTransientData appended every pending item after the entire transcript, so it re-read below each turn that landed afterwards. Render each echo directly after the transcript row it was sent against, using the baseline the send already captures. An unmatched echo is then at worst a duplicate in the right position rather than a scrambled one, and it stays visible. Echoes sharing an anchor keep send order; a send with no baseline, or one whose anchor folding dropped, still falls back to the tail. Deliberately NOT fixed by deleting the echo. Inferring from send ordering that an echo can never match, then removing it, loses the user's own text for a message the agent did receive, and it cannot fire in the common case anyway - measured drain groups are 1,017 of size 1 against 55 larger. It also escalates an existing gap: the count pass has no baseline-tail guard, unlike the glue pass, while `messages` is a 40-row window that head-trims, resets on reconnect and grows at the front on loadEarlier, so a false landing there would license deleting a DIFFERENT outstanding message. That count-pass gap is real and left for a separate change; anchoring makes its worst case a duplicate in place rather than a scrambled conversation. * fix(native-chat): preserve folded echo anchors * fix(native-chat): preserve forward-folded echo anchors * fix(native-chat): keep leading folded echoes in place * fix(workspace-cleanup): show git status for every row (#16690) * fix(native-chat): refuse structured chat on every Windows execution path canUseStructuredNativeChat only refused win32 when a project runtime resolved, so folder-workspace keys (and other keys with no project runtime) failed open into structured chat on Windows. Fail closed on win32 unconditionally after the host check, matching the settings copy: local macOS/Linux only; Windows/WSL/SSH stay on terminal chat. * fix(native-chat): restore runtime refusals behind the win32 gate |
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f975035809 |
refactor(ipc): split preflight and SSH registry out of the ipcMain modules (#15927)
* refactor(preflight): split agent detection out of the ipcMain registration
First of the IPC extractions the revised design requires. `src/main/ipc/preflight.ts`
mixed 285 lines of agent/tool detection with 35 lines of `ipcMain.handle`
registration, and the runtime calls that detection during normal operation
(`orca-runtime.ts:573`, plus the preflight RPC methods). So the runtime dragged
`ipcMain` into its graph to reach pure logic.
Detection moves to `src/main/preflight/agent-detection.ts` — named for what it
contains, per AGENTS.md. `ipc/preflight.ts` keeps only the handler registration and
re-exports the domain module so existing importers are unaffected. The runtime and
its RPC methods now import the domain module directly.
Ratchet baseline 36 → 35: `src/main/ipc/preflight.ts` is no longer reachable from
the runtime. The gate detected the improvement and refused to pass until the
baseline tightened, which is the behaviour it was built for.
Verified: 2 files / 1,187 tests pass across every suite touching preflight;
`pnpm typecheck` clean; `oxlint` clean.
* refactor(ssh): split the SSH target registry out of the ipcMain module
Second IPC extraction, and by far the biggest win: this removes **eight** modules
from the runtime's Electron graph, taking the ratchet baseline 35 → 27.
The runtime needed five thin accessors from `src/main/ipc/ssh.ts` —
`connectRegisteredSshTarget`, `getRegisteredSshState`, `listRegisteredSshTargets`,
`listRegisteredRemovedSshTargetLabels`, `getActiveMultiplexer`. Each is a one-line
read over module-level state. Importing them dragged in `ipcMain`, `powerMonitor`
and a `BrowserWindow` accessor — and, transitively, `ipc/pty.ts` (8,031 lines),
`ssh-browse`, `ssh-passphrase`, `ssh-relay-deploy`, `ssh-remote-cli-host-passthrough`,
`wsl-hook-relay-launch` and `user-data-path`.
`src/main/ssh/ssh-target-registry.ts` now holds that state plus its accessors.
`registerSshHandlers` populates it; the runtime reads it. The indirection is kept
deliberately: SSH providers register after construction and may reconnect, so
callers must resolve the current generation rather than freeze one.
`ipc/ssh.ts` re-exports all five, so non-test importers are unaffected.
`connectRegisteredSshTarget` still throws `ssh_handlers_not_registered` when no
handler layer registered — a headless host must fail loudly rather than report a
target as unreachable, which would read as `exited` (see ssh-execution-boundary.md).
Verified: 9 files / 59 tests across the ssh, automations and trust-preset suites;
orca-runtime.test.ts 1,183 pass; `pnpm typecheck` clean; `oxlint` clean.
* refactor(host): resolve the app root through the port in fork-reachable modules
`parcel-watcher-entry-path.ts` and `session-scanner-service-entry-path.ts` read the
app root via `require('electron').app` inside a try/catch that already returns null
when Electron is absent. They were therefore correct under plain Node at runtime and
only failed the *static* text check — which is real, not pedantic: the comment in
`ports/port-scan-command-client.ts:19` records that the plain-node-entry-guard fails
on that literal text, try/catch or not.
`hasAppEnvironment() ? getAppEnvironment() : null` gives the identical "no app root
here" answer without the text. That restores `hasAppEnvironment`, which an earlier
commit in this stack deleted as unused — it now has the caller it was waiting for.
Ratchet baseline 27 → 25.
Verified: 74 files / 458 tests; `pnpm typecheck` clean; `oxlint` clean.
* test(ssh): mock the SSH target registry alongside the ipc/ssh mock
Thirty-eight suites mocked `vi.mock('./ssh')` for `getActiveMultiplexer`. That
factory went inert when production started importing the accessor from
`../ssh/ssh-target-registry`, so the real module loaded and the assertions drifted.
Adds a companion registry mock returning the same stub, plus a
`sshTargetRegistryModuleMock` builder beside the existing `sshModuleMock` so the
shared harness stays one place. No assertion changed.
Found by a full-suite run: the targeted ssh/runtime suites were green while
30 tests in ipc/worktrees and ipc/repos were not.
* refactor(runtime): read app paths and the packaged flag through the port
`orca-runtime.ts` is the last module in its own graph that imports `electron`
directly. Nineteen of its uses were `app.getPath` (12) and `app.isPackaged` (7) —
exactly what the AppEnvironment port already covers.
Also removes a dead `const { app } = require('electron')` inside
`getOrchestrationDb`. It was left unused once the path came from the port, and it
is precisely the dynamic-require pattern `plain-node-entry-guard.ts` exists to
catch, sitting in the runtime's own constructor path.
What still binds `orca-runtime.ts` to Electron is now three sites, not nineteen:
`new Notification(...)` (one), `BrowserWindow.fromId` (one), and the
`ipcMain.on('terminal:tabCreateReply')` renderer round-trip — which is the browser
tab path, and the same one that would hang a headless host for ten seconds.
Two suites drove `electronMocks.app.isPackaged` directly; they now install a fake
AppEnvironment reading the same mutable field, so their per-test toggles work
unchanged and no assertion moved.
Verified: 376 files / 4,717 tests across src/main/runtime; typecheck and oxlint clean.
* test(serve): add the built-artifact terminal round-trip acceptance smoke
"The server started" proves almost nothing. Terminal creation dispatches into
OrcaRuntimeService, and without an installed headless PTY controller that path
falls through to a renderer reply that never arrives and times out after ten
seconds. A boot probe, a port bind, and a `host.platform` call all pass against a
server whose terminals are dead — which is exactly the gap the design doc's own
boot proof was retracted for.
This boots the BUILT `out/main/index.js --serve`, parses its ready payload, pairs a
real client over the advertised endpoint, lists worktrees, creates a terminal, runs
a command through the PTY, asserts the output comes back, and asserts clean
shutdown. It drives nothing but the public pairing + RPC surface, so the same
script is the acceptance gate a future Node-only backend must pass unchanged.
The sentinel invokes `process.execPath` rather than `echo`, because the shell
differs per platform and node does not.
Verified both directions: passes against the real server, and fails with an
actionable message when the command produces no output — a smoke that cannot fail
is worthless.
* fix(ssh): fail loudly when the multiplexer resolver was never installed
`getActiveMultiplexer` resolves through a resolver that `ipc/ssh.ts` installs at
module scope. A process that never loads the SSH layer — which is the whole point
of the Node-only backend — would get `undefined` from every call.
`undefined` already means something specific here: "not connected". So a missing
resolver and a disconnected target were indistinguishable, and a host with no SSH
layer would quietly report every target as not connected. That is the
unverifiable-reported-as-exited conflation `docs/reference/ssh-execution-boundary.md`
exists to prevent — the doc is explicit that absence of contact is never evidence
of absence of the thing.
A missing resolver is a wiring error, not a connection state, so it throws, matching
what `connectRegisteredSshTarget` already does for unregistered handlers.
Verified: 432 files / 4,759 tests across ipc, ssh, preflight, automations and trust
presets; typecheck and oxlint clean.
* refactor(pty): stop faking a BrowserWindow for the headless PTY path
`registerHeadlessPtyRuntime` passed `registerPtyHandlers` a stub object cast to
`BrowserWindow` whose `isDestroyed()` returned true and whose `webContents.send`
was a no-op — a window-shaped thing that lied about being a window, purely to
satisfy the type. Adversarial review named it as the same "looks fine, silently
returns a lie" pattern this codebase rejects elsewhere, and it is the shape that
keeps `electron` on a path that otherwise needs none.
`registerPtyHandlers` now takes `BrowserWindow | null`. An absent renderer is
semantically identical to a destroyed one — all 42 call sites already guarded on
`isDestroyed()` and skipped — so `src/main/ipc/pty-renderer-surface.ts` states that
directly: `isRendererGone`, `sendToRenderer`, `rendererWebContents`. The compound
`isDestroyed() || webContents.isDestroyed()` guards collapse into one predicate.
`isPtyWriteEventFromMainWindow` becomes null-tolerant and fails closed: with no
renderer no sender can legitimately match, so every write is rejected. Those
handlers cannot fire headless today, but failing closed is the right answer if that
ever changes.
This is the precondition for installing a PTY controller without Electron, which is
what a Node-only backend needs and what `terminal.create` actually calls.
Verified: 129 files / 2,473 tests across ipc/pty, providers and orca-runtime; the
built-artifact acceptance smoke still passes end-to-end (boot → pair →
terminal.create → sentinel → close), which is the check that matters most here
since this changes the headless PTY path itself; typecheck and oxlint clean.
* refactor(pty): read app paths and the packaged flag through the port
Follows the fake-window removal. `ipc/pty.ts` had nine `app.*` reads — all
`getPath`, `getVersion` or `isPackaged` — which the AppEnvironment port already
covers. The `BrowserWindow` import was also dead after the null-window change.
What still binds this file to Electron is now `ipcMain` (75 uses, all handler
registration) and `powerMonitor` (2). That is a clean statement of the remaining
job: split logic from registration, the same shape already applied to preflight
and the SSH registry.
Test wiring: the shared `pty-ipc-suite-environment` beforeEach installs a fake
AppEnvironment that reads through the existing `vi.mock('electron')` app object
rather than freezing values — suites toggle `app.isPackaged` mid-test to exercise
dev-mode spawn paths, so the port has to observe the same mutable field. One edit
in the shared harness covers every pty suite.
Verified: 128 files / 1,290 tests across ipc/pty and providers; the built-artifact
acceptance smoke passes; typecheck and oxlint clean; ratchet unchanged at 25.
* refactor(pty): inject the ipcMain surface so the PTY module loads without Electron
This closes the round-3 blocker: "the doc never says how orcad installs
setPtyController without Electron."
`registerPtyHandlers` owns the `RuntimePtyController` that `terminal.create`
actually spawns through — the thing a Node backend needs and cannot get from the
provider thunks. The module was otherwise host-agnostic already; the only thing
pinning 8,031 lines to Electron was a static `ipcMain` / `powerMonitor` import used
purely to register renderer handlers that no headless host will ever receive.
`src/main/ipc/pty-host-bindings.ts` makes those surfaces settable, defaulting to
no-ops. Unlike AppEnvironment and SecretStore, the default does NOT throw: a host
with no renderer legitimately has nothing to register against, so not registering
handlers nobody can call is correct rather than a hidden downgrade. The desktop
installs the real objects in `attach-main-window-services` before its handlers run.
Also converts the remaining electron import to a top-level `import type`. oxlint's
`no-import-type-side-effects` caught that inline `type` specifiers still leave a
side-effect import — precisely the "type-only is not enough if esbuild still emits
require('electron')" trap a reviewer flagged.
**`src/main/ipc/pty.ts` now bundles with zero `require("electron")`.** A Node entry
can call `registerPtyHandlers(null, runtime, …)` and get a working PTY controller.
Verified: 128 files / 1,290 tests across ipc/pty and providers; the built-artifact
acceptance smoke passes end-to-end — which is the check that matters, since this
changes how every PTY handler registers; typecheck and oxlint clean.
* fix(pty-bindings): drop two unused eslint-disable directives
CI runs oxlint with unused-disable reporting; the two
`@typescript-eslint/no-explicit-any` suppressions I added were never triggered by
any enabled rule, so they failed static analysis as dead directives. The `any[]`
rest args stay — they mirror electron's own IpcMain signature, and narrowing them
would reject the real object at the desktop call site.
Verified with the exact CI invocation: `oxlint --format github` reports 0 warnings,
0 errors across the repo.
* fix(pty): install the host bindings per process, not per window
A real regression my own change introduced, caught by the SSH docker E2E
(`paired-startup-exec-readiness` — "recovers startup exec through a headed paired
desktop owner"). It reproduced on rerun, so it was not a flake.
`setPtyHostBindings` was called inside `attachMainWindowServices`, i.e. when a
window attaches. But `registerHeadlessPtyRuntime` (index.ts:3163) calls
`registerPtyHandlers` on the serve path *before* any window exists — so those
handlers registered against the no-op default and never reached the real `ipcMain`.
A paired desktop owner then attached to a runtime whose PTY handlers were wired to
nothing.
The bindings describe the *host*, not the *window*: an Electron main process always
has `ipcMain`, whether or not a window is open. Installing them beside
`setAppEnvironment`/`setSecretStore` at the top of bootstrap fixes both paths.
Verified: 128 files / 1,290 tests; the built-artifact acceptance smoke passes;
typecheck clean; `oxlint --format github` (the exact CI invocation) reports 0/0.
* feat(orcad): de-electron the runtime core and add the Node entry + build gate
**`src/main/runtime/orca-runtime.ts` — 41,048 lines — no longer imports electron.**
Its last three sites go through `runtime-desktop-surface.ts`: a native notification,
the authoritative-window lookup, and the one `ipcMain` channel used by the
renderer-backed tab-create fallback. All three are unreachable without a renderer —
`createTerminal` already takes the background branch when no window exists (#10333) —
so a Node host installs none and the runtime relays notifications to paired clients,
which is the better destination anyway. Ratchet 25 → 24.
Adds `src/main/orcad/orcad-entry.ts`: Node host adapters plus a `startOrcad` that
constructs the runtime, installs the PTY controller via `registerPtyHandlers(null, …)`,
and serves RPC. It sets two defaults the constructor gets wrong for a headless host —
`canRecoverPersistentLocalPtys: false` (no daemon here) and
`getDesktopWindowStatus: 'blocked'` (a Node host can never be promoted to a desktop
window, which is what `'openable'` claims).
Adds `config/scripts/build-orcad.mjs`, which **currently fails, on purpose**: 25
modules still import electron (browser and speech clusters, plugins, jira/proxy,
filesystem-watcher, and four `require('electron').app` one-liners). It names them.
Two bugs found while building it, both worth recording:
- The first bundle looked clean and was not. `electron` was bundleable, so esbuild
rewrote the metafile `path` to the resolved file under node_modules and a check for
`path === 'electron'` passed while the package was in the bundle — it failed at
runtime with electron's own installer message. The check now reads `original`, and
electron is marked external so a residual import fails loudly instead.
- `jsonc-parser`'s UMD build breaks the bundle at load; aliased to its ESM entry, the
same fix `build-relay.mjs` already carries.
Verified: desktop unchanged — the built-artifact acceptance smoke passes, runtime/pty/
provider suites green, typecheck clean, `oxlint --format github` 0/0.
* refactor(host): drop the last two require('electron') app lookups
`computer/sidecar-client.ts` and `ports/port-scan-command-client.ts` read the app
root through `require('electron').app` inside a try/catch. Both were already correct
under plain Node at runtime — they return null when it throws — but the literal text
fails the plain-Node entry guard regardless, which is why port-scan carried a comment
warning it must never become reachable from a fork entry.
Reading the AppEnvironment port gives the identical "no app root here" answer without
the text, so that warning is now obsolete and the comment says so.
Ratchet 24 → 22. Every remaining entry is a real coupling: the browser cluster (15,
which variant B does not ship), speech (2), plugins (2), and jira/proxy-settings (2,
needing an HttpClient port for Chromium session partitions).
Verified: 25 files / 209 tests; acceptance smoke passes; typecheck and
`oxlint --format github` clean.
* docs(orcad): record that the ratchet under-counts orcad's graph
The ratchet reports 22 electron importers; the orcad build reports 23. The extra is
agent-hooks/wsl-hook-relay-launch.ts, and the cause is a gap in the gate rather than
a rounding error: the ratchet measures what orca-runtime + runtime-rpc reach, while
orcad's entry also imports ipc/pty directly to install the PTY controller.
Once orcad ships it must become a ratchet entry point, or the two numbers drift and
the gate quietly stops covering the artifact it exists for.
* refactor(runtime): inject the browser commands factory
Drops 14 modules from the runtime's Electron graph in one change — the whole Chromium
browser cluster. Ratchet 22 → 8.
`OrcaRuntimeService` constructed `RuntimeBrowserCommands` as a field initializer, and
that construction is what pulled in `BrowserWindow`, `session`, `webContents` and the
cookie jars. Importing the class for its *type* is free; only building it costs.
So the class import becomes `import type`, and the instance comes from
`runtime-browser-commands-factory.ts`. The desktop installs the real factory at the
Electron entry. **All ~80 existing `this.browserCommands.*.bind(...)` delegations are
untouched** — a review round specifically warned that rewriting those was the
expensive, risky part, and this avoids it entirely.
With no factory installed, browser commands reject per call with `browser_unavailable`
rather than resolving to a stub that silently succeeds. The runtime already filters
browser capabilities out of `getStatus()` when no backend exists, so clients do not
offer the affordance in the first place.
Also corrects a stale comment in `pty-renderer-surface.ts` that still described the
fake window as present tense; it was deleted two commits ago.
Verified: 451 files / 5,513 tests across `src/main/browser` and `src/main/runtime` —
the entire browser automation suite; the built-artifact acceptance smoke passes;
`pnpm typecheck` and `oxlint --format github` clean.
* refactor(host): extract the plugin client list and port two app lookups
Ratchet 8 → 5.
- `listPluginsForClients` moves to `src/main/plugins/plugin-client-list.ts`. It needed
only three `plugins/*` helpers, none of them Electron — it was colocated with
`ipcMain.handle` registrations, so the runtime's `plugins.list` RPC dragged all of
Electron in to call a function that reads a lockfile. Same shape as preflight.
Dropping it also releases `ipc/plugin-marketplaces.ts`.
- `agent-hooks/wsl-hook-relay-launch.ts` and `speech/stt-service.ts` read `getAppPath`
and `isPackaged` through the AppEnvironment port.
The five that remain are all genuinely Chromium and need the HttpClient port or a
watcher split, not another mechanical swap: `browser/cdp-bridge` (webContents),
`ipc/filesystem-watcher` (ipcMain), `jira/authenticated-request` and
`network/proxy-settings` (net + session partitions), `speech/model-manager`
(`net.request`, which honors app proxy settings that Node https does not — replacing
it is a behaviour change, not a rename).
Verified: 219 files / 1,922 tests across plugins, speech, agent-hooks and the runtime
RPC methods; the built-artifact acceptance smoke passes; typecheck and
`oxlint --format github` clean.
* refactor(network): resolve the default proxy session lazily
Ratchet 5 → 4.
`proxy-settings.ts` needed exactly one Electron value: `session.defaultSession`, as
the fallback when a caller does not pass `options.proxySession`. Callers could already
inject a session; only the default was hard-wired. It now comes from a settable
resolver, so the module loads under plain Node.
**A resolver rather than a Session, because a Session eagerly throws.** The first
attempt installed `session.defaultSession` directly in pre-ready bootstrap and broke
startup outright — `TypeError: Session can only be received when app is ready`. The
acceptance smoke caught it before commit. Deferring to first use is always after ready.
Behaviour with no session is not a degradation: there is no Chromium proxy config to
discover, so `resolveProxy` is skipped and the environment variables become the whole
answer rather than a fallback. Applying rules to a session that does not exist is
likewise skipped; settings are still honoured because outbound requests read the env.
This reaches past Jira — a review round noted `ensureElectronProxyFromEnvironment` is
also on the Claude HTTP path via `oauth-refresh.ts` and `rate-limits/claude-fetcher.ts`.
Verified: 48 files / 526 tests across network, jira and rate-limits; the
built-artifact acceptance smoke passes; typecheck and `oxlint --format github` clean.
* fix(index): merge the duplicate proxy-settings import
CI's code-quality lint (`oxlint --config config/oxlint-code-quality-native-plugins.json
--deny-warnings`) flags a module imported twice in one file. My earlier insertion added
a second `./network/proxy-settings` import beside the existing one.
Verified with CI's exact invocation: exit 0.
* refactor(network): add the HttpClient port and lift BrowserError out of cdp-bridge
Ratchet 4 → 2.
Two unrelated couplings, both of the same shape — a small thing living inside a
Chromium-heavy file.
`BrowserError` is a seven-line error class with no dependencies, but it lived in
`browser/cdp-bridge.ts`, which imports `webContents`. The runtime catches that type on
paths with nothing to do with CDP, so one import kept a Node host from loading the
runtime at all. Moved to `browser/browser-error.ts`; cdp-bridge re-exports it.
`jira/authenticated-request.ts` fetches through `net.fetch` and reads
`session.defaultSession`. `network/http-client.ts` makes both settable. This one is a
**named port rather than a silent fallback, because the fallback is not transparent**:
Electron's net follows Chromium session/proxy state, avoids undici's stale keep-alive
sockets after a VPN path change, and sends a Chrome user agent that Jira's XSRF check
depends on. A Node host gets `globalThis.fetch`, reads proxy config from the
environment, and sends Node's user agent. That difference is documented at the port.
`session.defaultSession` is read per call, not captured at install — it throws before
the app is ready, which is the mistake the previous commit made and the acceptance
smoke caught.
Test wiring: `jira/client.test.ts` installs the port *inside* `loadClientModule`, after
its `vi.resetModules()`, since the reset gives the module a fresh singleton.
Verified: 461 files / 5,616 tests across jira, browser, network and runtime; the
built-artifact acceptance smoke passes; typecheck, `oxlint --format github` and the
code-quality lint with `--deny-warnings` all clean.
* fix(http-client): register the Node fetch fallback with the call-site audit
`global-fetch-call-site-audit.test.ts` guards every global-fetch use, because the
global runs on undici where an unread response body can crash the whole process
(orca#8695). The HttpClient port's Node fallback is a new such call site and was
unregistered — the guard caught it in a full-suite run.
Registered with the reasoning, and the port's doc comment now states the body-safety
contract explicitly: it hands the Response straight to its caller and never inspects
it, so the consume/cancel obligation stays exactly where it already was — with the
caller, unchanged from when they called Electron's net directly.
Two comments elsewhere mentioned the global by name and tripped the line scan as false
positives; reworded to describe the behaviour rather than name the API.
Verified: audit passes; typecheck and `oxlint --format github` clean.
* fix(app-environment): read hasAppEnvironment through the realm slot
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77f23b013f |
refactor(shared): drop the shared/types barrel and import from the real modules (#14447)
#14397 split `shared/types.ts` into 46 per-domain modules but kept the path as a re-export barrel so the import sites did not have to change. This removes the barrel: every consumer now imports from the module that actually declares the type, and `src/shared/types.ts` is deleted. Barrels hide where a type lives, make every consumer look like it depends on the whole domain, and let an unrelated edit invalidate a module that ~2,000 files transitively import. 2,323 import declarations across 2,321 files. Rewritten mechanically: each specifier was resolved to an absolute path via the TypeScript AST and recomputed, rather than string-substituted, so alias forms (`@/../../shared/ types`) and per-specifier `type` modifiers survive. Four cases the mechanical pass had to handle, each found by a gate rather than by reading the diff: - Modules inside `src/shared` import the barrel as `./types`, not `shared/types`. A pre-filter on the latter string skipped 176 of them and left imports dangling at a deleted file, which surfaced as confusing `Property 'x' is optional in type 'Repo' but required in Pick<Repo, ...>` errors rather than "module not found". - The barrel RENAMED one type on the way through (`WorkspaceSource as WorkspaceCreateTelemetrySource`), so the original name in the owning module has to be re-aliased at each consumer. - Three test files put `;(globalThis as ...)` on the line after the import. TypeScript parses that `;` as the import statement's terminator, so replacing through `statement.getEnd()` deletes it and breaks ASI. The rewrite now stops at the module specifier. - A file that already imported directly from a module got a SECOND import from it, because the barrel re-exported those same names — which trips `import/no-duplicates` under `--deny-warnings`. A post-pass merges declarations sharing a specifier and type-only-ness; the `import type` plus `import` pair from one module is left alone, since that form is allowed. Splitting one barrel import into several genuinely adds lines, which pushed `terminal-layout-pty-ownership.ts` to 301 counted lines: its 107-character import must wrap, and neither local type collapses onto one line (101 and 116 characters). Rather than contort a type declaration to fit a line budget, `collectLeafIds` and `pruneLeaves` move to `terminal-pane-layout-tree.ts` — they are pure structural operations on the layout tree and independent of PTY ownership. `visible-worktrees.ts` similarly loses its own mini-barrel re-export of `isDefaultBranchWorkspace`, with the four real consumers repointed at the declaring module. No `max-lines` bypass added. Verified: cold `tsc --noEmit` green on node, cli, and web (buildinfo deleted first — these projects are `composite: true` and reuse stale caches); the full `pnpm lint` green, not just bare oxlint — the narrower local check is what let the duplicate imports reach CI; max-lines ratchet OK at 344. |
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991a3fe963 |
chore(lint): update oxlint to 1.77 and enable no-op cleanup rules (#13901)
Enable eleven oxlint rules that simplify code without changing behavior, and fix
every existing violation. Each candidate was gated on measured cost rather than
assumption, so rules that regressed runtime performance or type checking were
dropped instead of suppressed.
typescript/no-redundant-type-constituents is the largest addition: 113 sites, no
autofix. Dead constituents are deleted. Where the redundant literal existed to
document intent (`string | 'all'`), it is preserved as `(string & {})`, which
keeps the autocomplete hint the original code was reaching for instead of
flattening it away. The rule also caught a broken import —
remote-shared-control-retirement-probe.ts pulled RuntimeStatus from
src/shared/types, which does not export it, so the type silently degraded to
`any`; no tsconfig covers that file, so tsc never saw it.
oxlint stays at 1.77.0 rather than 1.78.0 because .npmrc sets
minimum-release-age=4320 and 1.78.0 is younger than that window.
Rules evaluated and rejected, with what disqualified each:
- prefer-string-raw: String.raw is a runtime call, not a literal (184x slower)
- prefer-string-replace-all: 26% slower
- text-encoding-identifier-case: ~5% slower, reproducible
- prefer-spread: [...str] is 110% slower than split('') and differs on surrogates
- no-implicit-coercion: `!!x` narrows types and `Boolean(x)` does not (22 tsc errors)
- prefer-arrow-callback: arrows are not constructible, breaking `new` on mocks
- object-shorthand: rewrites source text asserted by a tracked reliability gate
- switch-case-braces: pushes ten files past max-lines, which cannot be suppressed
- no-useless-switch-case: drops `case undefined:` that switch-exhaustiveness-check needs
- arrow-body-style: 115 violations have no fix, and it breaks max-lines
- newline-after-import: false-positives on the leading-semicolon ASI idiom
electron-vite-output-contract asserted on the literal
Object.prototype.hasOwnProperty.call text; retarget it to Object.hasOwn, which
rejects inherited keys identically.
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e790266546 | fix(windows): show first window before shell PATH hydration (#13799) | ||
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39c3c58d55 |
perf(runtime): gate terminal.list visual layouts (#12450)
* perf(runtime): gate terminal.list visual layouts and stop the false writable claim visualLayouts is ~31% of a large terminal.list payload (44,208 B of 137,412 B on a live 134-terminal remote runtime) and has exactly one consumer: the human-readable CLI formatter. Gate it behind an includeVisualLayouts request param that defaults to included, so pre-flag clients are unaffected, and have every --json/internal caller opt out. Also drop the record-backed builder's writable, which was a verbatim copy of connected. terminal.show now states writability explicitly as exactly what terminal.send's PTY gate enforces. * test(runtime): type the payload-size fixture arrays for tsc * fix(runtime): preserve terminal list compatibility * test(runtime): guard terminal list optimization * fix(cli): preserve agent access to terminal layouts |
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8c5371ebad |
fix(worktrees): respect Windows shell for setup runners (#6967)
* Honor configured shells during worktree setup
* Align setup launch paths with selected Windows shells
* Carry setup shell selection through deferred launches
* Prove Windows setup shell routing at its real adapters
* Ground remote PowerShell proof in the real writer
* Preserve Git Bash across deferred setup launches
* Harden Windows setup runner shell selection
- Resolve remote PowerShell binary without local pwsh probe: for SSH/remote
Windows worktrees, isPwshAvailable() reflects only the LOCAL host, so an
'auto' implementation could route the remote runner to a pwsh.exe the remote
lacks. Add resolveSetupRunnerShell(..., { probeLocalPwsh: false }) so remote
auto keeps the always-present powershell.exe; explicit pwsh.exe still honored.
- Preserve native exit codes in the PowerShell runner by checking
$LASTEXITCODE before $?, so a failing native command surfaces its real code
instead of a generic exit 1; $? still catches cmdlet soft-failures.
- Write the PowerShell runner with a UTF-8 BOM so Windows PowerShell 5.1 (the
new default powershell.exe) reads it as UTF-8 instead of ANSI, preventing
non-ASCII setup-script corruption.
- Add unit tests for the remote-probe behavior.
* Restore setup-shell scope narrowing over the rebase
The force-pushed rebase dropped five review-fix commits that were already
on this branch; this reapplies their combined effect on top of the new
base and the hardening commit:
- Keep SSH setup shell selection remote-owned (no local terminalWindowsShell
or pwsh routing for remote hosts; supersedes the probeLocalPwsh guard)
- Preserve cmd setup compatibility outside POSIX shells (no .ps1 runner
family, so the BOM/exit-code hardening is no longer applicable)
- Route WSL setup runners from the project runtime
- Avoid blocking PowerShell probes during setup creation
- Correct SSH and WSL background setup fixtures
* Satisfy the changed-code gates for the setup-shell runner
- createWorktreeRunnerScript took 7 positional parameters, tripping the
changed-code max-params gate; move it to a single options object.
- hooks-runner.test.ts deep-equals the createSetupRunnerScript result, so
assert the cmd shell now returned for native Windows worktrees.
* Carry the setup launch shell through observed and issue runners
- buildObservedSetupCommand takes the runner's launch shell so WSL-routed
Windows-drive setup replays use /mnt/c instead of Git Bash /c
- resolveSetupRunnerShell gates the posix runner on the same Git Bash
resolution the PTY uses, so a missing or non-MSYS bash keeps the cmd runner
- issue-command runners carry their launch shell, and the renderer passes it
when building the queued command
- treat a bare `bash` shell setting as POSIX like `bash.exe`
Co-authored-by: Orca <help@stably.ai>
* fix(worktrees): close counsel P1 gaps for Windows setup shells
Route windowless/headless creates through the shell-aware setup runner when a
PTY controller is available, existence-check explicit Git Bash paths before
committing to .sh runners, thread the resolved shell into issue-command
runners, and document the intentional Git Bash interpreter flip with a narrow
scope table.
* Convert setup env to MSYS form and harden the bare cmd runner launch
C3: a Git Bash setup runner now receives ORCA_*/CONDUCTOR_*/GHOSTX_* path
values in /c/... form, matching the runner path and the shell's own HOME/PWD.
C5: extension-less `bash` resolves to Git Bash everywhere, matching how
resolveWindowsShellStartupFamily already classifies it.
C7: runner paths carrying characters that cannot be quoted on a cmd command
line launch through a delayed-expansion PowerShell shim instead, and the batch
runner disables inherited delayed expansion so `!` in setup lines survives.
Co-authored-by: Orca <help@stably.ai>
* docs: note MSYS ORCA_* paths and bare bash Git Bash resolution
Keep the setup-shell release note aligned with C3 env conversion and C5 bare
bash resolution so the published claim matches runtime behavior.
* revert: drop windows-setup-shell doc allowlist and AGENTS link
Keep the counsel P1/P2 product fixes without expanding the docs allowlist
or AGENTS.md guidance surface.
* fix(plugins): contain Parcel unsubscribe rejections under Vitest
Dev plugin watchers fire-and-forget unsubscribe, and in-process Parcel
can reject when temp watch roots are already deleted. Catch those
rejections so they cannot fail the suite as unhandled errors.
* fix(plugins): keep in-process unsubscribe rejection surface
Swallowing Parcel unsubscribe errors broke mocked unsubscribe tests
that return non-Promises and expect rejections. Contain failures only
in PluginDevWatcher fire-and-forget paths.
---------
Co-authored-by: OrcaWin <alpha-eng@stably.ai>
Co-authored-by: Brennan Benson <79079362+brennanb2025@users.noreply.github.com>
Co-authored-by: Jinjing <6427696+AmethystLiang@users.noreply.github.com>
Co-authored-by: Orca <help@stably.ai>
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73c5009b82 |
chore(dead-code): drop ~2k lines of unreachable exports and orphan modules (#12077)
* chore(dead-code): drop 2k lines of unreachable exports and orphan modules Ran knip across every build entry (main, preload, renderer, popout, web, cli, relay, workers, forked sidecars, config scripts) and removed what no entry graph can reach. - 11 orphan modules nothing imported, plus one test that only covered them - 159 unused exports/types, with their now-dead helpers, imports and tests Each candidate was verified against dynamic references before deletion. 42 knip hits were false positives and are kept: shared modules consumed by the mobile/ workspace, the src/shared/plugins/** public API, vendored shadcn primitives, and relay wire-protocol constants held for compatibility. Adds knip.json + `pnpm audit:dead-code` so this stays measurable. Verified: pnpm typecheck, pnpm lint, and 2081 tests across the 73 affected test files all pass. * chore(dead-code): move knip config under config/ Root-level additions are blocked by the root directory guard. Co-authored-by: Orca <help@stably.ai> --------- Co-authored-by: Orca <help@stably.ai> |
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5c59c84c7a |
fix(plugins): close four trust-boundary holes in the plugin system (#11232)
* fix(plugins): close trust-boundary holes in the plugin system
Move five security decisions to their chokepoints rather than leaving them
enumerated at individual call sites.
- Kill-list revocation reaches content packs: PluginContentPackRegistry now
takes an isKilled predicate and intersects it with any caller-supplied
approval, so a killed plugin's VM recipes can no longer reach
spawn(..., { shell: true }) through either reconcile() call site.
- Bound kill-list generatedAt to a 24h future skew at the parse chokepoint.
A far-future timestamp previously made every genuine later list look
"older" and disabled revocation permanently, persisted across restarts.
- Protect the whole auto.components.settings.Plugin* translation subtree
instead of an enumerated prefix list, so language packs cannot forge the
consent provenance badge or rewrite install-error security copy.
- Resolve manifest panel icons by own-key only; "constructor"/"__proto__"
previously yielded non-component prototype members that crashed the
right sidebar to its error boundary.
- Give panel liveness frames a reserved control budget so a panel that
saturates its action budget can still answer the watchdog.
Co-authored-by: Orca <help@stably.ai>
* fix(plugins): keep the kill-list future bound off the cache read path
The schema-level generatedAt bound re-judged the on-disk cache against the
device clock at every launch, so a client whose clock ran behind the last
genuine publication discarded its whole cached kill list and started with
zero revocations. Move the bound to the two fetch chokepoints instead.
Co-authored-by: Orca <help@stably.ai>
* fix(plugins): remove the reserved-lane starvation window and the revocation TOCTOU
Review follow-ups on the trust-boundary fixes:
- The reserved liveness lane had a per-window count equal to the ping
interval, so a panel's own pong-shaped traffic could spend it and drop
the next genuine reply — reintroducing the starvation the lane exists to
prevent. The lane is now size-bounded only; rate stays bounded because
every pong is also charged to the data budget.
- Only schema-valid pongs take the lane now, so near-miss pong-shaped junk
cannot drain it. readPanelPongId replaces the zod parse on this
guest-controlled path (a rejected safeParse allocates an issue list, ~90x
the accepted-path cost) and is pinned to the schema by a parity test.
- Re-read the kill list inside approveAtomically: approvedKeys is snapshotted
before an awaited verification phase, so a plugin killed during that wait
could still publish VM recipes and language packs.
- Assert the curated icon resolves to FileText; the old equality also passed
when both sides fell back to Plug.
Co-authored-by: Orca <help@stably.ai>
* fix(plugins): match zod's safe-integer bound in the pong reader
readPanelPongId used Number.isInteger, but zod's .int() rejects anything
above 2**53-1, so pingIds like 1e100 took the reserved lane the schema
would have refused. The parity test never probed that boundary.
Co-authored-by: Orca <help@stably.ai>
---------
Co-authored-by: Orca <help@stably.ai>
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badf91101b |
fix(quality): enforce performance-safe lint baseline (#11074)
* fix(quality): clear safe existing lint findings * fix(quality): keep lint cleanup allocation-free * fix(quality): enforce performance-safe baseline * test(terminal): drain deferred confirmation cleanup |
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97e4776dfe |
feat(plugins): Orca plugin system — kernel, content packs, panels, workers, marketplace v0 (experimental) (#8549)
* feat(plugins): Orca plugin system — kernel, content packs, panels, workers, marketplace v0 (experimental) Adds Orca's experimental plugin system behind a settings flag: a supervised kernel, declarative content packs (VM recipes, commands and keybindings, language packs), sandboxed iframe panels, forked worker hosts, and a Git-backed marketplace v0 with consent, provenance and kill-list enforcement. Theme, icon-theme and terminal-theme contributions are deferred to a follow-up pass. * fix(plugins): make unsupported marketplace listings unreachable by key findPlugin() backs preview/install/previewInstalledUpdate via requireListing(), so filtering only listPlugins() hid the catalog card while leaving the dead install path reachable one click later. * fix(plugins): fan Pi session-only status out to plugin subscribers The providerSessionOnly early-return in applyNormalizedStatus emitted to onAgentStatus (main-window fanout) but skipped enrichedStatusListeners, so plugins subscribed to agent.status.changed silently missed every Pi session_start event. Route both emit sites through one helper so a future early return cannot drop the plugin tap again. Co-authored-by: Orca <help@stably.ai> * plugins: drop dead code and hoist duplicated trust-boundary patterns Cleanup pass over the P1 diff, no behavior change: - Delete `readPluginTreeSnapshot`/`readSnapshotFile` and their types, plus the now-vestigial `directories`/`signal` plumbing in `collectFiles`. - Delete `resolveContainedPluginDirectory` (no callers). - Delete `plugin-content-load-pool.ts`; it reimplemented the existing `mapWithConcurrency`, whose index arg also removes the pairing wrapper in `buildPluginList`. - Hoist `PLUGIN_CONTENT_HASH_PATTERN` and `PLUGIN_COMMIT_PATTERN` into the install-lockfile module; 11 sites hand-rolled these identically. - Point the new reliability gate at the PR instead of gitignored docs paths, matching every other gate's link form. * fix(plugins): retry plugin state renames on Windows AV/EPERM locks Six plugin write paths (lockfile, provenance, current pointer, kill list, marketplace cache, staged install dir) did a plain rename, so an antivirus or indexer holding the target open surfaced as a failed install. The repo already retries this hazard for issue #1507, but only through a sync helper; these paths are all async. Adds one bounded async retry + atomic write used by all six, and trims a consent-provenance header that restated its own JSX. * test(plugins): cover the Windows rename retry path The retry loop shipped untested: both existing cases hit the non-retry path, and the temp-cleanup test passed identically with the `finally` removed. Mock `rename` to queue errno codes so CI can exercise locks it cannot provoke. Co-authored-by: Orca <help@stably.ai> * fix(plugins): pin bundled plugin resources to LF Windows CI checks out with autocrlf, so the byte-hashed launch tree arrived as CRLF and verify-packaged-plugin-resources rejected it — the packaged build could never pass on Windows. Reproduced locally: CRLF yields the exact CI error, LF verifies clean. Files are already LF, so nothing renormalizes. Co-authored-by: Orca <help@stably.ai> * test: guard the bundled-plugin LF pin against a CRLF checkout The byte-hash mismatch only surfaced in Windows packaging CI. Assert the .gitattributes pin and that a CRLF tree is rejected, so a regression fails on any platform instead of waiting for a packaged Windows build. Co-authored-by: Orca <help@stably.ai> * ci: trigger packaged-build check on bundled plugin resource changes The launch tree is byte-hashed during packaging, but no trigger path covered it — so the CRLF fix for that check would not have re-run the check. Add the resources, verifier and .gitattributes paths that can break packaging. Co-authored-by: Orca <help@stably.ai> * perf(plugins): rebuild the panel frame only when its baked theme values change The revision keys the panel iframe, so every bump destroys the sandboxed frame and its in-panel state. It counted root attribute mutations, but --workspace-sidebar-live-width is written every rAF of a sidebar drag, so dragging with a panel open blanked it ~60x/sec. Compare the two values the shell actually bakes in instead. Co-authored-by: Orca <help@stably.ai> * test: stop pinning a plugin name in the CRLF guard The CRLF case rewrites every launch file, so the reported mismatch is whichever plugin sorts first. P2 adds theme plugins that sort ahead of orca-navigation-shortcuts, which broke the assertion there. Co-authored-by: Orca <help@stably.ai> * style: drop stray blank lines left by the rebase resolutions Both sides of the agent-hooks and orca-runtime conflicts contributed a trailing blank, which oxfmt rejects. Whitespace only. Co-authored-by: Orca <help@stably.ai> * test(plugins): stop the startup budget failing on machine load P95 runs 16-34ms idle but exceeds the 50ms bound under full-suite parallelism, so the gate flaked. Widen it to catch an order-of-magnitude regression instead; the no-worker/no-plugin-code assertions are the real guarantee. Verified a 400ms regression still fails. Co-authored-by: Orca <help@stably.ai> --------- Co-authored-by: Orca <help@stably.ai> |