Commit Graph
5 Commits
Author SHA1 Message Date
Neil 5127d1eb3b refactor(windows): vendor the registry addon as @orca/windows-registry (#20438)
* refactor(windows): vendor the registry addon as @orca/windows-registry

windows-native-registry@3.2.2 was last published in 2023 by a single
maintainer. Orca called two of its exports, both read-only, so the whole
dependency is replaced by a local N-API addon under native/.

The vendored addon is read-only by construction: setValue, createKey and
deleteKey are gone, so RegDeleteTreeW no longer ships in the app. Two
upstream defects are also fixed rather than carried over — the name/data
scratch buffers were file-scope statics that concurrent reads would
scribble over, and createKey/deleteKey called .c_str() on a temporary.

Build wiring keeps the existing shape: still an optionalDependency gated
to win32, still excluded from pnpm's allowBuilds so only Orca's own
Windows rebuild runs node-gyp for it, still copied into the packaged
resources. The CI native caches now key on the vendored sources so an
addon.cc edit cannot restore a stale .node.

* test(windows): check the vendored registry addon against reg.exe

The addon is vendored source, so no upstream release proves it still
decodes values the way Orca's PATH readers expect. reg.exe is the only
independent oracle on the box.

* ci(windows): register the registry addon test on the Windows runner

A Windows-gated file self-skips on ubuntu, so without both registrations
it reports success while running on no machine at all.

* fix(build): link the registry addon as a workspace package, not file:

As a `file:` dependency pnpm re-resolved and re-linked the package on
every install, including `--frozen-lockfile` (measured: "added 1" on a
repeat no-op install). That virtual-store churn ran concurrently with
node-gyp reading the same tree and cost @vscode/windows-process-tree its
binding.gyp mid-rebuild, failing package (windows) whenever the native
cache hit and only that module needed building. The linux packaging job
hit the same race from the other side, as a pnpm staging move failure.

A workspace link resolves once and leaves the store alone; repeat
installs are now 55ms no-ops. native/windows-registry is listed
explicitly so `packages:` still does not auto-discover mobile/.

* fix(build): stop tracking node-gyp output for the vendored addon

The build/ tree is generated per host and ABI; the committed copy was
macOS-specific gyp scaffolding from a local build and would have shipped
stale Makefiles to every checkout.

* chore: ignore the vendored addon's node-gyp bin output too

node-gyp also emits bin/<platform>-<abi>/ beside build/; both are per-host
generated output that must never be committed.
2026-09-12 20:10:49 -07:00
a899f92402 feat(windows): enable structured Codex chat on native Windows (#18519)
* feat(native-chat): enable Windows structured sessions

* fix(codex): prove native Windows process identity

* style(codex): format Windows session seam

* fix Windows structured Codex admission

* fix(windows): reprobe missing process identity capability

* fix(windows): decide folder-workspace WSL routing before the click

Review found pathUsesWslUnc exported but unused, and the folder composer
hardcoding worktreeUsesWslPath:false. Together those meant a folder picked
under a \\wsl.localhost\ parent routed to structured chat, then got refused
by the host and fell back AFTER the click -- which defeats the lane's own
design goal that create cannot fail after the click.

The group's parentPath is in scope at submit and the workspace is created
under it, so the parent decides WSL-ness pre-click. Wires pathUsesWslUnc
there and adds tests for the helper, including the unhydrated-store case
that previously threw.

* fix(windows): collapse the gate derivation to one call, restoring max-lines

CI static analysis failed: launch-agent-in-new-tab.ts crossed the 300-line
oxlint ceiling. Adding a max-lines disable is forbidden, so the two gate
derivations collapse into one readWindowsStructuredGateInputs() call --
a store-backed site now adds one line and one import name instead of two.
Better shape anyway: one derivation entry point rather than two reads a
call site must remember to pair.

* fix(windows): engage the legacy fallback when the host THROWS a refusal

Review found a P1 this merge composes: neither parent could reach it. At the
lane head the only structured entry was launch-agent-in-new-tab (full
store-backed WSL check); on main all win32 was refused. The merge enables
win32 in creation flows that pass no projectRuntime, so a WSL folder
workspace, a WSL-configured repo, or a repair-required runtime now routes
structured -- and the host refuses correctly, but by THROWING rather than
returning {ok:false, refusal}.

Callers engage their legacy-terminal fallback on the refusal CLASS, so an
unmapped throw arrives as a generic RPC rejection: no fallback, empty
workspace, error toast, prompt stranded in the launch outbox. Pre-merge the
same action opened a legacy terminal agent.

Map the host's thrown definitive refusals onto the refusal class at the
launch boundary, so every creation flow -- present and future -- degrades to
the legacy terminal instead of stranding. Narrow predicate: unrelated
failures (ECONNRESET, empty message, non-Error) still propagate untouched.

Ablation-proven: removing the mapping reddens the fallback test.

* fix(windows): teach the mobile RPC double the status probe the lane added

CI's first-ever run on this lane caught a pre-existing lane defect. The lane
changed status.get to resolve through
runtime.getStatusAfterWindowsProcessStartTimeProbe(), but never taught the
mobile-surface runtime double about it, so status.get failed for mobile
clients with "not a function". The lane's own test list did not include this
file and the lane had zero CI, so nothing ever ran it.

The real runtime always implements the method; the double omitted it.

* chore: merge current main and regenerate the localization runtime catalog

CI static analysis failed on a stale en-runtime-required.json: main added
onboarding integration-capability keys, and the generated catalog is checked
against the PR MERGE result, not the branch alone -- so it read clean locally
while failing in CI. Merging current main (90780acb85) and regenerating.

Gates after the merge: pnpm tc 0, oxlint 0, changed-code quality 0/56,
7 gate/lane test files 69 tests green.

* fix: route structured launches by execution host platform

* fix: recover paired structured session mirror on host swap

* Revert "fix: recover paired structured session mirror on host swap"

This reverts commit 81bfca0007.

* Revert "fix: route structured launches by execution host platform"

This reverts commit 47abbd354a.

* fix(windows): refuse structured chat in a paired web client

Reverts the two review-loop commits (restoring a tree byte-identical to the
validated head) and closes the hole they were aiming at, without their cost.

A paired web client's `platform` describes the browser's machine, not the host
that will run the agent, so the Windows gate cannot be evaluated there. Before
this, a browser on macOS driving a Windows runtime read "not win32", skipped the
creation-time proof entirely and allowed structured chat — fail-OPEN, the
dangerous direction, bypassing the guarantee this lane is built on.

`isWebClient` is a required input like the other gate fields, so the compiler
enumerated all seven call sites. Refusal is synchronous and fail-closed: no
async round-trip, no null window, no cache to invalidate — unlike keying on an
asynchronously-fetched host platform, which would have made every desktop
launch wait on a round-trip to fix a paired-web-only hole.

Paired web therefore gets the legacy chat until the host publishes eligibility
itself; that is the proper fix and belongs in its own PR.

Ablation-proven: removing the guard reddens both refusal tests; the
desktop-unaffected test is a preservation check and passes either way.
Gates: tc 0, oxlint 0.

Known open: repos-onboarding-folder-startup.test.ts fails on this branch and
passes on plain main — under investigation, NOT caused by this commit.

* test(onboarding): mock the web-client check the store path now reaches

The web-client refusal added `isWebClientLocation()` to the launch-route
inputs, which this suite's store path reaches while adding the FIRST folder.
The suite stubs `window` as `{ api }` with no `location`, so the function
cleared its `typeof window === 'undefined'` guard and then threw on
`window.location.pathname`.

That threw inside addNonGitFolder's own catch, so folder-1 never activated;
folder-2 then returned early (a project already existed) before reaching the
call at all, leaving exactly one activation with no startup seed.

Test artifact, not a product defect: a real renderer always has
`window.location`, so the seeding path is intact for users. Mocking the module
is the convention 7 other suites already use, and keeps product code free of
defensive branches that only exist to satisfy a stub.

Ablation-proven: removing the mock reproduces the original failure exactly.

* fix(renderer): make the web-client check total over a partial window

isWebClientLocation() guarded `typeof window === 'undefined'` and then assumed
`window.location` existed. A window stubbed without a location cleared the
guard and threw on `.pathname`.

That matters because this branch put the call on the launch-routing path,
where the throw is swallowed by the caller's catch and silently becomes a
FAILED LAUNCH rather than a visible error. CI caught it as 9 failures in
launch-work-item-direct.test.ts.

I previously "fixed" this by mocking the module in the one suite I knew about.
That was whack-a-mole against an unbounded set, and it missed this one. The
defect is the partial-window assumption, so fix it there: the mock is removed
from the onboarding suite and both suites now pass on the hardening alone.

Ablation-proven: reverting to the unguarded form reddens 11 tests across the
new unit suite and launch-work-item-direct.

Gates: tc 0, oxlint 0, changed-code quality 0/58.

* Move Codex's Windows structured-chat eligibility onto the host createSupport probe

The renderer no longer decides Codex win32 eligibility: launchStructuredAgentSession
probes agentSession.createSupport for both providers, the host answers via
supportsCodexStructuredLocation (process start-time proof + WSL refusal), and the
create path re-checks live. Deletes the client-side windows gate module and its
routing inputs (windowsProcessStartTime, worktreeUsesWslPath, isWebClient, platform)
from six call sites. Splits killCodexAppServerProcessTree out of
codex-app-server-session to hold the max-lines ceiling without a disable.

* fix(ci): keep pnpm lockfile stable

* test(windows): align foreground snapshot flags

* Restore main's pane-snapshot flag contract

Main asks for CreationTime on both projections; this branch's hot-path
isolation went away with the async probe it served.

---------

Co-authored-by: Orca Worker <orca-worker@localhost>
Co-authored-by: Merge Sim <sim@local>
Co-authored-by: Merge Sim <merge@localhost>
2026-09-07 09:18:38 -07:00
bfc6a262a7 fix(windows): read command lines from the kernel, not each process's PEB (#17886)
* fix(windows): read command lines from the kernel, not each process's PEB

MDE incident D scored Orca for suspicious memory activity: the vendored
`@vscode/windows-process-tree` recovered every process's command line by
opening it with `PROCESS_QUERY_INFORMATION | PROCESS_VM_READ` and chaining
three `ReadProcessMemory` calls through the PEB and
`RTL_USER_PROCESS_PARAMETERS`. On a 750ms/2s cadence over the whole table that
is the credential-dumping primitive, whatever the intent.

Windows 8.1 added `NtQueryInformationProcess`'s `ProcessCommandLineInformation`
class (60), which returns the same string as a kernel-built `UNICODE_STRING`
under `PROCESS_QUERY_LIMITED_INFORMATION` alone. Electron's floor is Windows
10, so every supported OS has it. The PEB reader stays behind a process-wide
latch that only `STATUS_INVALID_INFO_CLASS`/`NOT_SUPPORTED`/`NOT_IMPLEMENTED`
can set; a pid that merely denied a handle does not re-arm it, because
`PROCESS_QUERY_INFORMATION` implicitly grants the limited right and so cannot
be obtained where the weaker open already failed.

The same hunk drops `PROCESS_VM_READ` from `GetProcessMemoryUsage` and
`GetCpuUsage`, which acquired it and never read an address space.

Measured on Windows 11 (514 processes), counted in-process by swapping the
addon's import table entries for counting stubs, per CommandLine scan:
`ReadProcessMemory` 1128 -> 0, desired access 0x0410 -> 0x1000, p50 12.7ms ->
9.3ms. Command lines were byte-identical on every process both readers
recovered (376/376, 379/379 across runs), including a 24,068-character argv
with quotes, non-ASCII and trailing whitespace, and a WOW64 target. Three
processes that refused the old rights granted the new one; none went the other
way.

* chore(deps): refresh the windows-process-tree patch hash in the lockfile

* fix(windows): drop the PEB fallback and detect the unpatched prebuilt

Review of #17886 found three ways the reader could still perform, or silently
resume, the primitive it exists to remove.

The class-missing latch was a permanent, process-wide, one-way downgrade back
to the PEB read, and any single target returning STATUS_INVALID_INFO_CLASS /
NOT_SUPPORTED / NOT_IMPLEMENTED could trip it. On an EDR-hooked ntdll -- the
entire premise of this change -- a hook that does not recognise class 60 would
have restored PROCESS_VM_READ plus three ReadProcessMemory per pid per scan for
the life of the process, unobservably, on precisely the machines this was
written for. The fallback is deleted rather than guarded: GetProcessCommandLine
now returns false and leaves the command line empty, which callers already
handle, so the addon imports no ReadProcessMemory at all.

That absence is what makes the property checkable on the artifact. The
published 0.8.0 tarball ships a loadable prebuilt built from unpatched source;
it is node-addon-api, so a bare require() accepts it, allowBuilds is false and
CI installs with --ignore-scripts, and a rebuild that soft-exits on a Windows
file lock leaves it in place. Source-text guards could never see it.
windowsProcessTreeAddonReadsProcessMemory() checks the compiled binary instead,
and is wired into the install check, the rebuild, and the relay build.

The repair itself never worked: `git apply` run inside a work tree prefixes
patch paths with the cwd-relative prefix, skips what does not match, and exits
0, so the branch always fell through to its own post-check throw. The package
dir is always under the project root, while the fixture that covered it was in
%TEMP%, outside any repo. Blinding git with GIT_DIR fixes it, and the test now
runs inside a real work tree.

Also from review: bounds-check the returned UNICODE_STRING against the
allocation (not the size the second query clobbers) and cap the probe so a
bogus length cannot bad_alloc a whole scan; test NT_SUCCESS explicitly; value-
initialize ProcessInfo, which left `memory` as stack garbage -- measured, 82
processes reported the same bogus working set; and correct a comment in
windows-process-table.ts that still described the command line as a PEB read.

Re-measured on Windows 11 (543 processes): ReadProcessMemory 1128 -> 0, with
the symbol absent from the import table so the IAT hook finds no slot to
count; desired access 0x0410 -> 0x1000 on all 543 opens; p50 13.5 -> 12.3ms;
405/405 command lines byte-identical including a 24,087-character quoted
non-ASCII argv and a WOW64 target; 3 processes recovered only by the new path,
0 only by the old.

* chore(deps): refresh the windows-process-tree patch hash in the lockfile

* test(scripts): stage a script's local imports into the native-runtime fixture

ensure-native-runtime.mjs gained an import of windows-process-tree-gyp-rebuild.mjs,
but the fixture copied only the script itself, so every case in the suite died
with ERR_MODULE_NOT_FOUND before reaching its own assertions. copyScriptWithLocalModules
already walks a script's co-located imports for exactly this reason -- its own doc
comment names this failure -- so use it rather than listing files by hand.

The two Windows cases still fail here, on a missing node-pty ConPTY runtime that
also fails on main; this only stops a resolution error from standing in front of
whatever they were meant to catch.

* fix(windows): route a locked stale addon to the Windows file-lock message

`pnpm install` with Orca running aborted with a raw EPERM stack. The stale-binary
guard -- which deletes an addon that still imports ReadProcessMemory so a skipped
rebuild cannot use it -- ran outside the try whose catch classifies Windows file
locks, and whose message is literally "Close running Orca/Electron/dev processes
for this worktree": exactly this situation.

Measured rather than assumed: rmSync against a loaded (memory-mapped) addon throws
EPERM, and `force: true` does not help, since it only swallows ENOENT. Cold copies
of the same file delete fine. So the delete threw a page before the handler that
knows what it means.

Moving the guard inside the try is the whole fix; the classifier already matches
the EPERM text. The new case runs the real script against a temp project whose
stale addon is held open by a live child process, and fails against the old
placement with the raw `syscall: 'rm'` stack the report described.

* feat(windows): warn once when command-line recovery is refused host-wide

Removing the PEB fallback removed a total-defeat vector, but it left a cliff: if
NtQueryInformationProcess(ProcessCommandLineInformation) is refused -- a hooked
ntdll that does not know class 60 -- every command line comes back empty and
agent identity matching silently degrades to image names. The addon still loads
and still enumerates, so every health check the app has stays green. A cliff
nobody can see is the failure mode this area keeps producing.

The querying process is the unambiguous probe. A process can always open itself
with PROCESS_QUERY_LIMITED_INFORMATION, so its own command line coming back empty
means the query is refused for every process -- not that some target denied a
handle, which is normal for roughly a quarter of the table. Keying on our own row
rather than a fraction means no threshold to tune and no false positive on a
hardened box where most processes deny.

One warning per session, gated on the CommandLine flag actually being requested so
a future identity-only reader cannot trip it. The suite's own SELF fixture gains a
command line for the same reason: a self row without one is the alarm, not a
detail.

* fix(windows): check the relay's staged addon at load, and answer tri-state

Two gaps in the ReadProcessMemory check, both about what it does not see.

It only ever looked at node_modules/@vscode/windows-process-tree. A relay host
has no node_modules of ours: it loads ./windows-process-tree.node staged beside
the bundle. The relay build asserts the symbol on the artifact it produces, but a
bundle and the addon beside it redeploy independently, so a host that has not
taken a new bundle keeps whatever binary is already there -- and the published
prebuilt is node-addon-api, so it binds cleanly and then walks every process's
address space. loadWindowsProcessTree now checks that file too and refuses it,
falling back to the CIM scan: slower, but not the thing an EDR quarantines a host
for. The predicate is duplicated rather than imported, because the config-script
copy is install-time tooling that drags in node-gyp and child_process, and this
module is bundled into the app and the relay.

And it returned false for a binary that is not there. All three callers happened
to be safe, but the name read as a safety predicate, so a future caller would take
a missing binary as verified. inspectWindowsProcessTreeAddon() now answers
clean/unpatched/missing over an explicit binary path -- which is also what lets
the relay's staged addon be checked at all -- and each caller states which state
it acts on.

Both are covered by cases that fail against the old code: without the load-time
check the unpatched staged addon is bound and the CIM fallback never runs, and
with 'missing' folded back into 'clean' the absence case fails outright.

* test(windows): load the addon in beforeAll, not at collection time

loadAddon() ran while the file was being collected, so on a Windows checkout with
no built addon the require threw before any case existed and took the seven
patch-text cases down with it -- cases that read only the patch file and need no
binary at all. Verified both ways against a deliberately unresolvable addon path:
at collection time vitest reports "no tests" for the file; from beforeAll the
seven text cases pass and only the three addon cases go.

* fix(deps): normalize the windows-process-tree patch to LF and let pnpm own its hash

`pnpm install --frozen-lockfile` failed on this branch on every platform with
ERR_PNPM_LOCKFILE_CONFIG_MISMATCH, which breaks CI and the release build.

Two coupled defects. The patch file was committed with CRLF -- 174 CR bytes,
against zero on main -- and `.gitattributes` pins `/config/patches/*.patch -text`
precisely so checkout cannot convert it, so those bytes reached every runner. And
pnpm hashes a patch **LF-normalized**, so the raw sha256 of a CRLF file is a value
pnpm never computes:

  raw sha256      322965470c05f63d8527f7d8e892ee26ee444136b66b57fd64c362a9f2ff05d1
  LF-normalized   f8ea245391c94da5770045aeea01fa6de466c2199c6ef46b5b769b398aa9823e

The lockfile carried the raw one, at all three sites. It is the only one of the
seven patches where the two digests differ, which is why the other six passed.

Normalized the patch to LF and took pnpm's own value from
`pnpm install --no-frozen-lockfile`; nothing here is hand-computed. With the file
LF-only the two interpretations coincide, so the lockfile, the contract test's
no-CR assertion and its hash assertion all agree at one number -- and
`config/scripts/windows-process-tree-patch-contract.test.mjs`, which was red on
this branch for the same reason, is green again. The lockfile diff is exactly the
three hash lines.

The regression check is the installer, not a digest. Two separate reviews
"verified" the shipped hash by recomputing sha256(patchBytes) and matching the
lockfile; both were wrong, because both repeated the same wrong assumption about
which bytes pnpm hashes. A check that reproduces the original mistake is not
independent. So the new case runs `pnpm install --frozen-lockfile --lockfile-only
--ignore-scripts` against a copy of the manifest, lockfile and patches, and
asserts exit 0 -- verified by deletion: restoring the shipped hash fails it with
the exact ERR_PNPM_LOCKFILE_CONFIG_MISMATCH from the branch's package (windows)
job.

Also corrected the `.gitattributes` comment claiming pnpm hashes patches
byte-for-byte. The `-text` setting is right -- `git apply` needs the exact bytes --
but that sentence is the claim that produced the wrong hash twice.

* ci(windows): run the process-tree patch suites in CI

Both suites only self-skip off Windows, so the binary-level check that the
addon carries no ReadProcessMemory passed vacuously in every lane.

* fix(windows): force core.autocrlf=input for the patch repair

My LF normalization of the windows-process-tree patch broke the `git apply`
repair path introduced in this PR. The two are coupled and I checked only one.

Those 174 CR bytes were not editor noise. They sat on exactly the pre-image
lines and nowhere else -- 107/107 in src/process.cc, 67/67 in
src/process_commandline.cc, 0 on every added or context line -- because
@vscode/windows-process-tree@0.8.0 ships those two sources as CRLF. Normalizing
the patch made its pre-image stop matching the file it is applied against.

Measured, reconstructing the true CRLF pre-image from the pre-normalization
blob and applying the current LF patch:

  core.autocrlf   plain   -c core.autocrlf=input
  true            exit 0  exit 0
  input           exit 0  exit 0
  false           exit 1  exit 0

`false` is Git's own built-in default and what "checkout as-is" selects in the
Git for Windows installer -- on this box the `true` that hides it comes from the
installer's system gitconfig, not from anything in the repo. There the repair
throws, ensureWindowsProcessTreeCommandLinePatch reports "still reads the PEB,
and repairing it ... failed", isWindowsNativeLockError does not match that text,
and `pnpm install` dies with no path forward.

Forcing the mode rather than `--ignore-whitespace`: both fix every cell and both
leave the applied file fully LF, but `input` relaxes line endings only, so a hunk
whose real content drifted is still rejected. The repair rewrites a
security-relevant source file; it should stay strict about everything except the
thing that is legitimately ambiguous.

Not reverting the patch to CRLF: windows-process-tree-patch-contract.test.mjs
(pre-existing on main) forbids CR bytes in it, and pnpm computes the same hash
either way. LF plus the forced mode is the end state.

The suite could not have caught this. The fixture built its pre-image from the
patch itself and joined with '\n', so fixture and patch agreed by construction on
any encoding -- once again a test that passes without its fix. It now emits the
CRLF the real package ships, and the case runs under both autocrlf modes pinned
through a temp HOME gitconfig, because the repair blinds git to the repo and so
reads global config. Verified by deletion in both directions: with the flag
removed the autocrlf=false case fails with the exact "still reads the PEB" dead
end while autocrlf=true still passes, and with the fixture back on LF all eight
cases pass with no fix present at all.

Also corrected the .gitattributes comment I added last commit. It said `git
apply` needs the bytes the patch was written against, which is now false -- the
pinned bytes are LF and the bytes it was written against are CRLF. That is the
same class of confident-and-wrong claim that produced the bad hash twice.

* fix(windows): assert the rebuilt addon, and install the patch for real in tests

Three follow-ups from review.

**The packaged binary had no check.** The relay build asserts its own artifact
and ensure-native-runtime asserts what it loads, but nothing looked at the addon
copied into the packaged app -- so a rebuild that silently produced the upstream
reader shipped. `rebuild-native-deps.mjs` now asserts `clean` on it after
`rebuild()`. This is also the caller D4's tri-state was missing: every existing
site branches on `=== 'unpatched'`, so `missing` still behaved exactly like
`clean` everywhere, which was the thing making it a state rather than a boolean.
Here both non-clean states fail, and they fail differently: after a rebuild that
reported success, an absent binary is a broken build, not an absence to shrug at.

The fake `rebuild()` had to start producing a binary for that to mean anything,
so it now emits stand-in bytes and takes `addon: 'clean' | 'unpatched' | 'none'`.
Verified by deletion: with the assertion removed both new cases pass.

**The frozen-install case could not see a patch at all.** `--lockfile-only`
resolves and never applies one, so its coverage stops at hash consistency. Added
a case that installs `@vscode/windows-process-tree@0.8.0` for real with the patch
and asserts the materialized `src/process_commandline.cc` carries the marker and
no longer carries `ReadProcessMemory` -- about 1.5s for the pair.

Correcting the brief on that one: it does **not** catch the `git apply` breakage
from the previous commit. Measured -- with `-c core.autocrlf=input` removed it
passes cleanly, because `pnpm install` uses pnpm's own patch applier and never
runs our repair script. What it does catch is a patch pnpm can no longer apply:
corrupting one pre-image line fails both cases. The repair path stays covered by
the CRLF fixture in rebuild-native-deps-node-pty.test.mjs.

Worth recording, since it decides whether the LF normalization was safe at all:
pnpm applies the LF patch to the CRLF tarball sources without complaint, and
materializes them as LF with the marker present and `ReadProcessMemory` absent.
The primary install path was never affected -- only the `git apply` fallback was.

**Dead timeout.** The frozen-install case passed `timeoutMs: 300_000` to the
spawn while vitest capped the case itself at 30s, so on a cold runner vitest
would have killed it first. Both cases now declare the budget they use.

* test(windows): route the frozen-install check through the pnpm invocation owner

The new patched-dependencies check hand-rolled a PATH walk naming 'pnpm.cmd',
which the windows batch shim spawn boundary ratchet rejects: pnpm-cli-invocation
already owns that decision for every other script, and its allowlist only
shrinks.

Reuse resolvePnpmCliInvocation for the command and prefixArgs, and the shared
resolveCliCommand for the presence check, so no shim name is spelled here. Its
`shell` flag is dropped because runProcessSync refuses it and already drives a
shim through the interpreter itself.

---------

Co-authored-by: Orca Worker <orca-worker@localhost>
Co-authored-by: Neil <4138956+nwparker@users.noreply.github.com>
2026-09-05 21:12:47 -07:00
Neil f116d2ca2a test(ci): retry Windows teardown EPERM and restart evaluate misses (#17780)
Restart-survival polls treated a recycled renderer as a hard failure.
Wrap those evaluates so "Execution context was destroyed" is a pending
miss. Windows package-lane teardowns after a force-kill used rmSync
with force:true only, which does not absorb EPERM; put them on the
shared maxRetries:8 policy.
2026-08-31 18:53:01 -07:00
Neil b261f4005c fix(build): preserve Electron during binary repair (#17334)
* fix(build): preserve Electron during binary repair

* refactor(build): split native dependency fixtures

* fix(build): resolve one Electron install target for child and check

runElectronPackageBinaryInstall forced ELECTRON_INSTALL_PLATFORM/ARCH to the
host-derived rebuild target, clobbering inherited installer env, while the
parent usability check still honored the inherited value. A bare
`node config/scripts/rebuild-native-deps.mjs` under ELECTRON_INSTALL_PLATFORM=win32
on Linux therefore installed the Linux binary and then rejected it as
unavailable. Resolve the target once (CLI, ELECTRON_INSTALL_*, npm config, host)
and use it for both the child env and getElectronPlatformPath.

* fix(build): keep Electron install transaction cleanup best-effort

The finally-block rmSync could throw after a fully successful publish (Windows
EPERM when another process still holds the discarded old electron.exe open),
turning a correct install into exit 1. On the rollback path it could also
replace the in-flight publishError with an unrelated temp-dir error. Retry the
removal and downgrade a persistent failure to a warning.
2026-08-29 23:12:25 -07:00