mirror of
https://github.com/stablyai/orca.git
synced 2026-09-22 08:02:28 +00:00
* fix(windows): sign the NSIS uninstaller via SignPath
`Uninstall Orca.exe` ships NotSigned, and MDE's whole update cluster is
that one file: electron-builder copies it to `old-uninstaller.exe` and
runs it silently during every update.
The cause is narrower than "NSIS generates the uninstaller at install
time". app-builder-lib already builds the uninstaller in its own makensis
pass and calls `packager.signIf(uninstallerPath)` on it before embedding
it (NsisTarget.computeScriptAndSignUninstaller). Orca signs nothing during
electron-builder — SignPath signs afterwards, behind a human approval — so
that hook is a no-op and the file is deleted before CI can reach it.
Use the hook as a relay instead of a signer: the first Windows build
exports the uninstaller, it rides the existing inner-binaries SignPath
request (no third approval wait), and the rebuild-from-signed-tree pass
swaps the signed bytes back in before makensis embeds them.
Every added step is fail-open. A missing export, a SignPath artifact
configuration that does not cover `uninstaller/`, or a relay error costs
only the uninstaller signature — the inner-binary chain and the shipped
installer are unchanged.
* fix(windows): keep the uninstaller relay out of the packed checkout
Review fixes on the uninstaller signing chain.
The export path lived at `${{ github.workspace }}\uninstaller-signing\`.
`files` in the electron-builder config is all-negation, so app-builder
prepends `**/*` and packs whatever is left in the checkout root, and the
build step retries up to three times — attempt 1 wrote the file after
packing, attempts 2 and 3 would have packed an unsigned `.exe` into
app.asar. All seven relay sites move to `runner.temp`, and a contract test
now fails if any of them points back into the checkout.
The uninstaller staging block guarded with `Test-Path` but left `New-Item`
and `Copy-Item` able to throw. That step's outcome gates the upload of
every inner binary, so a locked file there would have cost all of them
their signatures — worse than before the chain existed. It is wrapped in
try/catch, asserted.
Also: test `signWindowsUninstallerViaSignPath` itself (it runs in a step
with no continue-on-error, so its no-throw property is load-bearing) and
the sha1+sha256 double invocation; make the rehearsal verify the
uninstaller the installer actually writes to disk rather than only the
relay receipt, whose digest comparison is equal by construction; correct
the staged-name comment, which asserted a collision that does not
reproduce; count what was reported rather than what was extracted; and
note two traps — a custom sign hook replaces signtool outright, and the
single-env-var relay would race if a second NSIS target or arch is added.
* fix(windows): stop the signing rehearsal failing on its own artefact
The rehearsal is the merge gate for this chain, so it must not be able to
fail on something that is not the thing under test.
It trusted whatever 7-Zip's NSIS handler emitted. That handler produces
partial or garbled output on some NSIS builds, and a truncated extract
would score NotSigned and be reported as "the shipped uninstaller is
unsigned" when nothing was wrong. It now has to reproduce the digest the
sign hook recorded before its output is trusted; otherwise it falls
through to the silent-install route, which is ground truth. A name miss
falls through the same way.
The install route only checked the signature. Comparing the on-disk file
against the receipt is what actually proves the shipped installer embedded
the SignPath-signed bytes — the release job's own comparison is equal by
construction, so this is the only place the claim is really tested.
Also: bound the silent install (a bare `-Wait` on an installer that ever
prompts hangs to the 360-minute job cap) and poll before stopping Orca,
since the oneClick installer launches the app as it finishes and the
process can appear after the installer has already exited.
Two smaller ones: `-ErrorAction Stop` on the staging New-Item/Copy-Item so
the catch above them does not depend on GitHub's $ErrorActionPreference
default; and the relay-path test now counts every occurrence rather than
the first, so a step carrying two paths cannot root one in RUNNER_TEMP and
leave the other bare-relative — the exact shape of the bug it guards.
* test(windows): stop a pre-existing elevate.exe defect masking the gate
The first real rehearsal (run 33484703381) proved the uninstaller relay
works end to end — the 7-Zip route read the embedded uninstaller, the
digest guard did not trip, SignPath accepted the new uninstaller/ zip
entry, and the shipped `Uninstall Orca.exe` came back signed.
It also failed, on `resources\elevate.exe`, for a reason that predates
this PR. app-builder-lib re-copies the pristine cached elevate.exe over
`resources\elevate.exe` on every nsis pack — `AppPackageHelper.packArch`
calls `elevateHelper.copy()` before `buildAppPackage`, and
`CopyElevateHelper.copy` does `copyFile(elevatePath, outFile, false)` then
`signIf(outFile)`, which signs nothing because this build configures no
certificate. The signed copy restored into win-unpacked is clobbered by
the rebuild.
That is not the sign hook displacing a signtool call: with no `sign` hook,
`signFile` already returned false at "no signing info identified", so
nothing was signing elevate.exe before either. release-cut.yml mitigates
it separately by pre-seeding the electron-builder cache; this workflow has
no such step, which is why the clobber is visible here and not there.
Downgrade elevate.exe alone to advisory so it cannot mask the uninstaller
result, and record it in the evidence artifact so downgrading stays
distinguishable from deleting the check. Both uninstaller verdicts stay
fatal, pinned by a contract test that also holds the escape hatch to
exactly one file. The underlying defect gets its own PR — it is a UAC
elevation helper and deserves more scrutiny than a footnote here.
* docs(windows): warn against relaxing the elevate.exe cache guard
The tempting edit, for anyone who finds the rehearsal red on
resources\elevate.exe, is to relax release-cut's `Valid` +
`CN=SignPath Foundation` guard so the cache swap runs under test-signing
and the rehearsal goes green.
That guard is the only thing stopping a test certificate from being seeded
into a cache a real release restores from — both workflows share the key
`electron-builder-win-<lockfile hash>`. Shipping users a binary signed by
"Test certificate for 'Orca agent ide [OSS]'" is worse than shipping it
unsigned, so say so at the place someone would make that edit.
---------
Co-authored-by: Orca Worker <orca-worker@localhost>
782 lines
34 KiB
JavaScript
782 lines
34 KiB
JavaScript
const { chmodSync, existsSync, readdirSync, readFileSync, writeFileSync } = require('node:fs')
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const { execFileSync } = require('node:child_process')
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const { join, resolve } = require('node:path')
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const electronBuilderNativeRebuild = require('./scripts/electron-builder-native-rebuild.cjs')
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const {
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assertPackagedDaemonEntryExists,
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verifyPackagedDaemonEntryBoots
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} = require('./scripts/verify-packaged-daemon-entry.cjs')
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const {
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createPackagedRuntimeNodeModuleResources,
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prunePackagedRuntimeNodeModules,
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verifyPackagedMainRuntimeDeps
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} = require('./packaged-runtime-node-modules.cjs')
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const { verifyLinuxGlibcFloor } = require('./scripts/verify-linux-glibc-floor.cjs')
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const { writeMacBuildCompatibility } = require('./scripts/mac-build-compatibility.cjs')
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const { verifyPackagedPluginResources } = require('./scripts/verify-packaged-plugin-resources.cjs')
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const {
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verifyPackagedNodePtyJobOwnership
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} = require('./scripts/verify-packaged-node-pty-job-ownership.cjs')
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const { verifySkillsCliRuntime } = require('./scripts/verify-skills-cli-runtime.cjs')
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const { verifyStaticAppImagePackage } = require('./scripts/static-appimage-package-contract.cjs')
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const { signWindowsUninstallerViaSignPath } = require('./scripts/windows-uninstaller-signing.cjs')
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// Why: dev-channel builds must carry the *release* identity — same bundle id,
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// Developer ID signature, and notarization ticket — or Squirrel.Mac refuses to
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// swap them over an installed Orca and macOS treats each build as a new app.
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const isMacHourly = process.env.ORCA_MAC_HOURLY === '1'
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const isMacDaily = process.env.ORCA_MAC_DAILY === '1'
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const isMacAdhoc = process.env.ORCA_MAC_ADHOC === '1'
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// Why a second set of variables rather than making the mac ones platform-neutral:
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// the mac ones gate `isMacRelease` below, which turns on hardened runtime,
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// notarization, and root-level `forceCodeSigning`. A Windows dev build that
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// reused them would fail packaging outright for want of a cert it is
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// deliberately not using.
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const isWinHourly = process.env.ORCA_WIN_HOURLY === '1'
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const isWinDaily = process.env.ORCA_WIN_DAILY === '1'
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const isWinAdhoc = process.env.ORCA_WIN_ADHOC === '1'
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const isWinDevChannel = isWinHourly || isWinDaily || isWinAdhoc
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const isMacRelease = process.env.ORCA_MAC_RELEASE === '1' || isMacHourly || isMacDaily || isMacAdhoc
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const isLinuxArm64Release = process.env.ORCA_LINUX_ARM64_RELEASE === '1'
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const localBuildVersion =
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isMacRelease || isWinDevChannel ? undefined : process.env.ORCA_LOCAL_BUILD_VERSION
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const isHourlyChannel = isMacHourly || isWinHourly
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const isDailyChannel = isMacDaily || isWinDaily
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const isAdhocChannel = isMacAdhoc || isWinAdhoc
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const devChannelBuildVersion = isHourlyChannel
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? process.env.ORCA_HOURLY_BUILD_VERSION
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: isDailyChannel
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? process.env.ORCA_DAILY_BUILD_VERSION
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: isAdhocChannel
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? process.env.ORCA_ADHOC_BUILD_VERSION
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: undefined
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// Why each dev channel gets its own repo rather than tagging into the main one:
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// the releases atom feed exposes only the 10 newest entries, so 24 hourly tags a
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// day would evict every stable/RC entry and strand users on a feed with nothing
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// to install. Keeping adhoc/daily separate from hourly too means a branch build
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// or a once-a-day cut cannot be picked up by someone who only meant to ride
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// main's hourlies.
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const devChannelRepo = isHourlyChannel
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? 'orca-hourly'
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: isDailyChannel
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? 'orca-daily'
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: isAdhocChannel
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? 'orca-adhoc'
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: null
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const appId = 'com.stablyai.orca'
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const featureWallResources = {
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from: 'resources/onboarding/feature-wall',
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to: 'onboarding/feature-wall'
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}
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// Why: freshness detection needs immutable identity metadata from this exact
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// app build, but never needs the skill package bytes or a runtime network read.
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const skillFreshnessResources = {
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from: 'resources/skills',
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to: 'skills'
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}
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// Why: SSH relay deploy resolves bundles from process.resourcesPath in packaged
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// apps. Keeping relay assets as extraResources makes them real directories
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// instead of paths hidden inside app.asar.
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const relayExtraResource = {
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from: 'out/relay',
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to: 'relay'
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}
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// Why: bundled plugins are immutable install inputs and must remain ordinary
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// directories so the startup bootstrap can verify and publish exact bytes.
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const bundledPluginResources = {
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from: 'resources/plugins/launch',
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to: 'plugins/launch'
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}
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// Why: the main bundle, packaged CLI, SSH paths, and speech worker all execute
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// from package directories where pnpm's symlink farm is absent. Copy the exact
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// runtime dependency closure to Resources/node_modules so bare require() calls
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// do not fall through to a developer checkout's node_modules.
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// Why the single file rather than the package root: app.asar carries no node_modules, so main's
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// lazy require in deferred-emoji-shortcode-dataset.ts resolves only out of Resources/node_modules,
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// but emojibase-data is 49 MB of locale datasets and worktree naming reads exactly this 166 KB file.
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const emojiShortcodeDatasetResource = {
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from: 'node_modules/emojibase-data/en/shortcodes/emojibase.json',
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to: 'node_modules/emojibase-data/en/shortcodes/emojibase.json'
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}
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const commonExtraResources = [
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relayExtraResource,
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bundledPluginResources,
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skillFreshnessResources,
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emojiShortcodeDatasetResource
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]
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// Why: native speech addons must be real files outside app.asar; copy only the
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// package matching the artifact target instead of every optional variant.
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const macSpeechNativeResource = {
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from: 'node_modules/sherpa-onnx-darwin-${arch}',
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to: 'node_modules/sherpa-onnx-darwin-${arch}'
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}
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const linuxSpeechNativeResource = {
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from: 'node_modules/sherpa-onnx-linux-${arch}',
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to: 'node_modules/sherpa-onnx-linux-${arch}'
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}
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const winSpeechNativeResource = {
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from: 'node_modules/sherpa-onnx-win-x64',
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to: 'node_modules/sherpa-onnx-win-x64'
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}
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// electron-builder replaces these defaults when `depends` is configured; retain
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// Electron's loader requirements alongside Orca's headless-host dependencies.
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const debElectronRuntimeDependencies = [
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'libgtk-3-0',
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'libnotify4',
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'libnss3',
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'libxss1',
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'libxtst6',
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'xdg-utils',
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'libatspi2.0-0',
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'libuuid1',
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'libsecret-1-0'
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]
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const rpmElectronRuntimeDependencies = [
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'gtk3',
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'libnotify',
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'nss',
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'libXScrnSaver',
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'(libXtst or libXtst6)',
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'xdg-utils',
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'at-spi2-core',
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'(libuuid or libuuid1)'
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]
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// Why mirrored, not imported: this config is CJS loaded by electron-builder outside the TS build.
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// Keep in sync with isMarkdownDocumentName() in src/main/ipc/markdown-documents.ts and with
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// config/nsis/orca-installer-hooks.nsh, which registers the same set on Windows.
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const MARKDOWN_FILE_EXTENSIONS = ['md', 'markdown', 'mdx']
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/** @type {import('electron-builder').Configuration} */
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module.exports = {
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appId,
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productName: 'Orca',
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protocols: [{ name: 'Orca', schemes: ['orca'] }],
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toolsets: { appimage: '1.0.3' },
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...(devChannelBuildVersion
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? { extraMetadata: { version: devChannelBuildVersion } }
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: localBuildVersion
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? { extraMetadata: { version: localBuildVersion } }
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: {}),
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directories: {
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buildResources: 'resources/build'
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},
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files: [
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'!**/.vscode/*',
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// Why: these repo-only inputs are either bundled into out/ or copied via
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// extraResources. Shipping them in app.asar bloats the desktop bundle.
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'!src{,/**/*}',
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'!config{,/**/*}',
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'!docs{,/**/*}',
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'!mobile{,/**/*}',
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'!native{,/**/*}',
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'!skills{,/**/*}',
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// Why: guide/stub authoring sources are compiled into runtime artifacts; shipping
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// either source tree would duplicate content without a runtime consumer.
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'!skill-guides{,/**/*}',
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'!skill-stubs{,/**/*}',
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'!tests{,/**/*}',
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// Why: examples/ is plugin authoring documentation with no runtime consumer —
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// bundled plugins ship via extraResources from resources/plugins/launch/. It also
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// carries hostile-panel, the adversarial fixture the containment tests point at,
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// which must never reach a user's install.
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'!examples{,/**/*}',
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// Why: pr-evidence/ is a local e2e screenshot output (ORCA_CAPTURE_EVIDENCE);
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// it is gitignored, but exclude it defensively so a stray local capture at
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// package time never bloats app.asar.
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'!pr-evidence{,/**/*}',
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// Why: local agent/tooling directories may contain worktree symlink loops;
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// they are never runtime inputs and must not be traversed by electron-builder.
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'!{.claude,.grok,.agents,.codex}{,/**/*}',
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'!Casks{,/**/*}',
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'!{AGENTS.md,CLAUDE.md,DEVELOPING.md,bundle-size-progress.md,ORCHESTRATION_IMPLEMENTATION_CHECKLIST.md,ORCHESTRATION_STRUCTURED_OUTPUT_DESIGN.md}',
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'!out/**/*.test.js',
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// Why: main builds with sourcemap:'hidden' so release CI can publish maps
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// for decoding minified crash traces. The app never loads them (no
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// sourceMappingURL is emitted), and packing them would add ~34MB to app.asar.
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'!out/**/*.map',
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// Why: Vite's manifest is only used to project the paired web client.
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'!out/renderer/.vite{,/**/*}',
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// Why: out/electron-dev caches `pnpm dev`'s per-branch Electron.app copies (~270MB each).
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// CI never creates it, but packaging on a machine that has run dev would pack them all.
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'!out/electron-dev{,/**/*}',
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'!electron.vite.config.{js,ts,mjs,cjs}',
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'!{.eslintcache,eslint.config.mjs,.prettierignore,.prettierrc.yaml,CHANGELOG.md,README.md}',
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'!{.env,.env.*,.npmrc,pnpm-lock.yaml}',
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'!tsconfig.json',
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// Why: feature-wall media is copied via extraResources so runtime can read
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// it from process.resourcesPath; exclude the source copy from app.asar.
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'!resources/onboarding/feature-wall/**',
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'!resources/skills/**',
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// Why: bundled plugins ship via extraResources to resources/plugins/launch;
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// packing the source tree into app.asar would duplicate those exact bytes.
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'!resources/plugins/launch/**',
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// Why: speech packages are copied selectively through the platform
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// extraResources entry below; keeping them in app.asar would ship every
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// native variant (and duplicate the selected one).
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'!node_modules/sherpa-onnx*{,/**/*}',
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// Why: the Windows CLI shim ships via extraResources to resources/bin/orca.cmd
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// (beside the native resources/bin/orca.exe). Packing the source tree into
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// app.asar too lets asarUnpack:['resources/**'] extract a second copy at
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// app.asar.unpacked/resources/win32/bin/orca.cmd with no adjacent orca.exe,
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// which fails to launch the CLI (#7351).
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'!resources/win32{,/**/*}'
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],
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// Why: the CLI entry-point lives in out/cli/ but imports shared modules
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// from out/shared/ and local hook mutators from out/main/. These paths must be
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// unpacked so that Node's require() can resolve the cross-directory imports
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// when the CLI runs outside the asar archive.
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// Why: daemon-entry.js is forked as a separate Node.js process and must be
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// accessible on disk (not inside the asar archive) for child_process.fork().
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// Why: the CLI is compiled by tsc (not bundled), so its runtime imports
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// resolve at runtime via Node's normal module lookup. The shim launches
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// the CLI with ELECTRON_RUN_AS_NODE, which bypasses Electron's asar
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// integration — dependencies inside the asar archive are invisible to
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// require(). Unpack CLI runtime deps so they resolve from
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// app.asar.unpacked/node_modules/.
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// Why: remote runtime connections use WebSocket + E2EE from the packaged CLI
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// before the GUI process starts, so those deps need the same treatment.
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// Why: out/package.json pins compiled output to CommonJS so parent
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// package.json files with type=module cannot change the packaged CLI loader.
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// Why: the OpenCode SQLite worker entry is also spawned by the scanner
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// service, which runs under ELECTRON_RUN_AS_NODE and so cannot see into
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// app.asar. Left packed, that spawn fails closed and every OpenCode session
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// disappears from Agent Session History in packaged builds only. Worker
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// entries reached solely from the Electron main process stay packed, since
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// asar redirects their app.asar paths.
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asarUnpack: [
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'out/package.json',
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'out/cli/**',
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'out/shared/**',
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'out/main/agent-hooks/**',
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'out/main/antigravity/**',
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'out/main/claude/**',
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'out/main/claude-accounts/keychain.js',
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'out/main/codex/**',
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'out/main/copilot/**',
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'out/main/cursor/**',
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'out/main/droid/**',
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'out/main/gemini/**',
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'out/main/grok/**',
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'out/main/hermes/**',
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'out/main/daemon-entry.js',
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'out/main/session-scanner-service-entry.js',
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'out/main/wsl-transcript-fs-process-entry.js',
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'out/main/session-scanner-opencode-sqlite-worker-entry.js',
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'out/main/plugin-host-entry.js',
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'out/main/computer-sidecar.js',
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'out/main/parcel-watcher-process-entry.js',
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'out/main/chunks/**',
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'resources/**',
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'node_modules/ws/**',
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'node_modules/tweetnacl/**',
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'node_modules/zod/**',
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'node_modules/yaml/**'
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],
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artifactBuildCompleted: ({ file, arch }) => {
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if (file.endsWith('.AppImage')) {
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verifyStaticAppImagePackage(file, arch)
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}
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},
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afterPack: async (context) => {
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// Why: a Linux runner-image glibc bump silently shipped a node-pty pty.node
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// requiring GLIBC_2.34, crashing the app on startup on Ubuntu 20.04 (#9902).
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// Fail packaging if any bundled native binary exceeds the supported floor.
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if (context.electronPlatformName === 'linux') {
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// Why the arch is passed: symbol-version checks pass happily on a wrong-architecture binary,
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// so a cross-built slice could ship the host's pty.node and only fail at runtime.
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verifyLinuxGlibcFloor(context.appOutDir, {
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targetArch: { 1: 'x64', 3: 'arm64' }[context.arch]
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})
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}
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const resourcesDir =
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context.electronPlatformName === 'darwin'
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? join(
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context.appOutDir,
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`${context.packager.appInfo.productFilename}.app`,
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'Contents',
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'Resources'
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)
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: join(context.appOutDir, 'resources')
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if (!existsSync(resourcesDir)) {
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throw new Error(`Missing packaged resources directory: ${resourcesDir}`)
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}
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// FpmTarget replaces this with deb/rpm while building those artifacts from the shared app tree.
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if (context.electronPlatformName === 'linux') {
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writeFileSync(join(resourcesDir, 'package-type'), 'AppImage')
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}
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if (context.electronPlatformName === 'darwin') {
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|
const architectureByEnum = { 1: 'x64', 3: 'arm64' }
|
|
const architecture = architectureByEnum[context.arch]
|
|
if (!architecture) {
|
|
throw new Error(`Unsupported local-build compatibility architecture: ${context.arch}`)
|
|
}
|
|
const version = context.packager.appInfo.version
|
|
let commit = process.env.ORCA_BUILD_COMMIT || process.env.GITHUB_SHA || 'unknown'
|
|
if (commit === 'unknown') {
|
|
try {
|
|
commit = execFileSync('git', ['rev-parse', '--short=12', 'HEAD'], {
|
|
encoding: 'utf8'
|
|
}).trim()
|
|
} catch {
|
|
// Source archives can still produce a signed build with an explicit version.
|
|
}
|
|
}
|
|
writeMacBuildCompatibility(resourcesDir, { version, commit, architecture })
|
|
}
|
|
stampPackagedCliVersion(resourcesDir, context.packager.appInfo.version)
|
|
prunePackagedRuntimeNodeModules(resourcesDir, context.electronPlatformName, context.arch)
|
|
verifyPackagedMainRuntimeDeps(resourcesDir)
|
|
// Why: boot the packaged daemon-entry under plain Node, but only for the
|
|
// slice matching the packaging host's arch — daemon-entry.js is JS, yet it
|
|
// require()s the native (N-API) node-pty for the TARGET arch, which the host
|
|
// Node cannot load cross-arch. `Arch` enum: ia32=0, x64=1, armv7l=2,
|
|
// arm64=3, universal=4 (universal contains the host slice, so run it).
|
|
const archEnumByNodeArch = { ia32: 0, x64: 1, armv7l: 2, arm64: 3 }
|
|
const hostArchEnum = archEnumByNodeArch[process.arch]
|
|
const canExecuteTargetArch = context.arch === hostArchEnum || context.arch === 4
|
|
if (context.electronPlatformName === 'win32') {
|
|
if (process.platform === 'win32' && canExecuteTargetArch) {
|
|
verifyPackagedNodePtyJobOwnership(resourcesDir)
|
|
} else {
|
|
console.log('[verify-packaged-node-pty] skipped cross-platform or cross-arch package')
|
|
}
|
|
}
|
|
verifySkillsCliRuntime(join(resourcesDir, 'app.asar.unpacked', 'out'), resourcesDir, {
|
|
executeCommands: canExecuteTargetArch
|
|
})
|
|
if (!canExecuteTargetArch) {
|
|
console.log(
|
|
`[verify-skills-cli-runtime] skipped command probes on cross-arch slice (target ${context.arch}, host ${process.arch})`
|
|
)
|
|
}
|
|
if (canExecuteTargetArch) {
|
|
verifyPackagedDaemonEntryBoots(resourcesDir)
|
|
} else {
|
|
// Why: a cross-arch slice can't be booted by the host Node, but the
|
|
// unpacked entry must still exist — its absence is a layout regression
|
|
// regardless of arch, so only the boot is skipped, not the check.
|
|
assertPackagedDaemonEntryExists(resourcesDir)
|
|
console.log(
|
|
`[verify-packaged-daemon-entry] skipped boot on cross-arch slice (target ${context.arch}, host ${process.arch})`
|
|
)
|
|
}
|
|
// Why: inspect electron-builder's real output so a broken extraResources
|
|
// mapping fails packaging before bundled content reaches users.
|
|
verifyPackagedPluginResources(resourcesDir)
|
|
chmodUnixCliLaunchers(resourcesDir, context.electronPlatformName)
|
|
chmodMacServeSimHelpers(resourcesDir, context.electronPlatformName)
|
|
for (const filename of readdirSync(resourcesDir)) {
|
|
if (!filename.startsWith('agent-browser-')) {
|
|
continue
|
|
}
|
|
// Why: the upstream package has inconsistent executable bits across
|
|
// platform binaries (notably darwin-x64). child_process.execFile needs
|
|
// the copied binary to be executable in packaged apps.
|
|
chmodSync(join(resourcesDir, filename), 0o755)
|
|
}
|
|
if (context.electronPlatformName === 'darwin') {
|
|
await signMacComputerUseHelper(join(resourcesDir, 'Orca Computer Use.app'), context.packager)
|
|
await signMacStandaloneHelper(
|
|
join(resourcesDir, '..', 'MacOS', 'orca-notification-status'),
|
|
'orca-notification-status',
|
|
context.packager
|
|
)
|
|
await signMacStandaloneHelper(
|
|
join(resourcesDir, '..', 'MacOS', 'orca-keyboard-layout'),
|
|
'orca-keyboard-layout',
|
|
context.packager
|
|
)
|
|
}
|
|
},
|
|
win: {
|
|
executableName: 'Orca',
|
|
// Why: Windows installers are signed after electron-builder packaging by
|
|
// SignPath, so the packager cannot infer the updater publisherName.
|
|
//
|
|
// Why dev channels drop it instead: they ship unsigned, because SignPath's
|
|
// approval waits are budgeted in hours and cannot fit an hourly cadence.
|
|
// electron-updater Authenticode-verifies every installer it downloads
|
|
// against the publisherName baked into the *installed* app's app-update.yml
|
|
// (NsisUpdater.verifySignature), and skips verification entirely when that
|
|
// name is absent. An unsigned build that still claimed 'SignPath Foundation'
|
|
// would therefore reject its own channel's next build — and its way back to
|
|
// stable with it. Dropping it is what makes dev→dev and dev→stable work.
|
|
// Why a sign hook on a build that does not sign: it is the only moment
|
|
// electron-builder exposes the NSIS uninstaller (built in its own makensis
|
|
// pass, embedded, then deleted). The hook signs nothing — it relays the file
|
|
// to and from the CI SignPath request, and is inert when the relay env vars
|
|
// are unset, so local and dev builds are unaffected. publisherName stays on
|
|
// its existing channel split above.
|
|
signtoolOptions: {
|
|
sign: signWindowsUninstallerViaSignPath,
|
|
...(isWinDevChannel ? {} : { publisherName: 'SignPath Foundation' })
|
|
},
|
|
...(isWinDevChannel ? { verifyUpdateCodeSignature: false } : {}),
|
|
extraResources: [
|
|
...commonExtraResources,
|
|
...createPackagedRuntimeNodeModuleResources('win32'),
|
|
winSpeechNativeResource,
|
|
{
|
|
from: 'resources/win32/bin/orca.cmd',
|
|
to: 'bin/orca.cmd'
|
|
},
|
|
{
|
|
from: 'native/windows-cli-launcher/.build/orca.exe',
|
|
to: 'bin/orca.exe'
|
|
},
|
|
{
|
|
from: 'node_modules/agent-browser/bin/agent-browser-win32-x64.exe',
|
|
to: 'agent-browser-win32-x64.exe'
|
|
},
|
|
{
|
|
from: 'native/computer-use-windows/runtime.ps1',
|
|
to: 'computer-use-windows/runtime.ps1'
|
|
},
|
|
featureWallResources
|
|
]
|
|
},
|
|
nsis: {
|
|
artifactName: 'orca-windows-setup.${ext}',
|
|
shortcutName: '${productName}',
|
|
uninstallDisplayName: '${productName}',
|
|
createDesktopShortcut: 'always',
|
|
// Why: electron-builder allows one include, so both Windows installer hooks live in it -
|
|
// the relocated-daemon uninstall sweep (guarded by ${isUpdated} so it never runs during an
|
|
// update's uninstallOldVersion) and the additive markdown "Open with" registration.
|
|
// Windows markdown association is deliberately NOT done via `fileAssociations`; see the
|
|
// header comment in that file for why that would steal the user's default .md handler.
|
|
include: resolve(__dirname, 'nsis', 'orca-installer-hooks.nsh')
|
|
},
|
|
mac: {
|
|
// Why rank Alternate: Orca joins Finder's "Open With" list for Markdown without claiming
|
|
// LSHandlerRank ownership, so whichever editor the user already prefers stays the default.
|
|
// Why one entry per extension: app-builder-lib globs `*.${ext}`, which an array would break.
|
|
fileAssociations: MARKDOWN_FILE_EXTENSIONS.map((ext) => ({
|
|
ext,
|
|
name: 'Markdown Document',
|
|
description: 'Markdown Document',
|
|
role: 'Editor',
|
|
rank: 'Alternate'
|
|
})),
|
|
icon: 'resources/build/icon.icns',
|
|
entitlements: 'resources/build/entitlements.mac.plist',
|
|
entitlementsInherit: 'resources/build/entitlements.mac.plist',
|
|
extendInfo: {
|
|
NSAppleEventsUsageDescription:
|
|
'Orca allows terminal-launched developer tools to automate local apps when you request it.',
|
|
NSBluetoothAlwaysUsageDescription:
|
|
'Orca allows terminal-launched developer tools to access Bluetooth devices when you request it.',
|
|
NSBluetoothPeripheralUsageDescription:
|
|
'Orca allows terminal-launched developer tools to access Bluetooth devices when you request it.',
|
|
NSCameraUsageDescription: "Application requests access to the device's camera.",
|
|
NSLocationUsageDescription:
|
|
'Orca allows terminal-launched developer tools to access location when you request it.',
|
|
NSLocalNetworkUsageDescription:
|
|
'Orca allows terminal-launched developer tools to discover and connect to local development servers when you request it.',
|
|
NSMicrophoneUsageDescription: "Application requests access to the device's microphone.",
|
|
NSAudioCaptureUsageDescription:
|
|
'Orca allows terminal-launched developer tools to capture desktop audio when you request it.',
|
|
NSBonjourServices: ['_http._tcp', '_https._tcp'],
|
|
NSDocumentsFolderUsageDescription:
|
|
"Application requests access to the user's Documents folder.",
|
|
NSDownloadsFolderUsageDescription:
|
|
"Application requests access to the user's Downloads folder."
|
|
},
|
|
// Why: local macOS validation builds should launch without Apple release
|
|
// credentials. Hardened runtime + notarization stay enabled only on the
|
|
// explicit release path so production artifacts remain strict while dev
|
|
// artifacts do not fail with broken ad-hoc launch behavior.
|
|
hardenedRuntime: isMacRelease,
|
|
// Why dev builds notarize too, despite the ~10min notary round trip: TCC
|
|
// anchors a notarized Developer ID app's permission grants on identifier +
|
|
// team, which is cdhash-independent and so survives an update. Without a
|
|
// ticket there is no such stable identity, so every build reads as a
|
|
// different client — the grant row stays but stops matching, and file access
|
|
// under Documents/Desktop/Downloads fails with EPERM and no re-prompt. At 24
|
|
// builds a day that revokes the user's grants faster than they can re-grant.
|
|
notarize: isMacRelease,
|
|
extraResources: [
|
|
...commonExtraResources,
|
|
...createPackagedRuntimeNodeModuleResources('darwin'),
|
|
macSpeechNativeResource,
|
|
{
|
|
from: 'resources/darwin/bin/orca',
|
|
to: 'bin/orca'
|
|
},
|
|
{
|
|
from: 'node_modules/agent-browser/bin/agent-browser-darwin-${arch}',
|
|
to: 'agent-browser-darwin-${arch}'
|
|
},
|
|
{
|
|
from: 'native/computer-use-macos/.build/release/Orca Computer Use.app',
|
|
to: 'Orca Computer Use.app'
|
|
},
|
|
featureWallResources
|
|
],
|
|
// Why: the notification-status helper must execute from Contents/MacOS —
|
|
// on macOS 26 UNUserNotificationCenter aborts (bundleProxyForCurrentProcess
|
|
// is nil) for executables launched out of Contents/Resources (#7929).
|
|
extraFiles: [
|
|
{
|
|
from: 'native/notification-status-macos/.build/release/orca-notification-status',
|
|
to: 'MacOS/orca-notification-status'
|
|
},
|
|
{
|
|
from: 'native/keyboard-layout-macos/.build/release/orca-keyboard-layout',
|
|
to: 'MacOS/orca-keyboard-layout'
|
|
}
|
|
],
|
|
target: [
|
|
{
|
|
target: 'dmg',
|
|
arch: ['x64', 'arm64']
|
|
},
|
|
{
|
|
target: 'zip',
|
|
arch: ['x64', 'arm64']
|
|
}
|
|
]
|
|
},
|
|
// Why: release builds should fail if signing is unavailable instead of
|
|
// silently downgrading to ad-hoc artifacts that look shippable in CI logs.
|
|
forceCodeSigning: isMacRelease,
|
|
dmg: {
|
|
artifactName: 'orca-macos-${arch}.${ext}'
|
|
},
|
|
linux: {
|
|
// Why mimeTypes and not fileAssociations: shared-mime-info already maps *.md/*.markdown to
|
|
// text/markdown, so reusing that type puts Orca in the Open With list without shipping a glob
|
|
// override. A desktop entry's MimeType only adds a handler - mimeapps.list still owns the
|
|
// default. .mdx is deliberately absent: Ubuntu 24.04's mime database maps it to
|
|
// application/x-genesis-32x-rom, so claiming it here would need a glob override.
|
|
mimeTypes: ['text/markdown'],
|
|
// Why: Ubuntu desktop ships GNOME Orca as the `orca` package and /usr/bin/orca.
|
|
// The Linux installer should not claim those system package/file names.
|
|
executableName: 'orca-ide',
|
|
// Why: the icns source lets electron-builder emit standard hicolor PNG
|
|
// sizes; a single 1024px PNG is ignored by some Linux docks/launchers.
|
|
icon: 'resources/build/icon.icns',
|
|
desktop: {
|
|
entry: {
|
|
// Why: Electron reports WM_CLASS=orca for the visible Linux window;
|
|
// GNOME docks need an exact match to group it with orca-ide.desktop.
|
|
StartupWMClass: 'orca'
|
|
}
|
|
},
|
|
extraResources: [
|
|
...commonExtraResources,
|
|
...createPackagedRuntimeNodeModuleResources('linux'),
|
|
linuxSpeechNativeResource,
|
|
{
|
|
from: 'resources/linux/bin/orca-ide',
|
|
to: 'bin/orca-ide'
|
|
},
|
|
{
|
|
from: 'node_modules/agent-browser/bin/agent-browser-linux-${arch}',
|
|
to: 'agent-browser-linux-${arch}'
|
|
},
|
|
{
|
|
from: 'native/computer-use-linux/runtime.py',
|
|
to: 'computer-use-linux/runtime.py'
|
|
},
|
|
featureWallResources
|
|
],
|
|
// Keep local artifacts aligned with the release pipeline.
|
|
target: ['AppImage', 'deb', 'rpm'],
|
|
maintainer: 'stablyai',
|
|
category: 'Utility'
|
|
},
|
|
appImage: {
|
|
artifactName: isLinuxArm64Release ? 'orca-linux-arm64.${ext}' : 'orca-linux.${ext}'
|
|
},
|
|
deb: {
|
|
packageName: 'orca-ide',
|
|
artifactName: 'orca-ide_${version}_${arch}.${ext}',
|
|
// Why: xvfb lets the bundled `orca serve` CLI run browser panes on a headless
|
|
// Linux host — Chromium needs a display server even for offscreen rendering,
|
|
// and serve starts Xvfb itself when present (see ensure-virtual-display.ts).
|
|
depends: [
|
|
...debElectronRuntimeDependencies,
|
|
'python3',
|
|
'python3-gi',
|
|
'gir1.2-atspi-2.0',
|
|
'at-spi2-core',
|
|
'xdotool',
|
|
'xclip',
|
|
'xvfb'
|
|
],
|
|
// Why: symlink the bundled CLI onto PATH at install time so `orca-ide serve`
|
|
// works on a headless host. The in-app CLI registration (CliInstaller) is
|
|
// GUI-triggered and can never run on a server, so without this the CLI is
|
|
// unreachable from the shell on exactly the hosts that need it.
|
|
afterInstall: 'resources/linux/packaging/after-install.sh',
|
|
afterRemove: 'resources/linux/packaging/after-remove.sh'
|
|
},
|
|
rpm: {
|
|
packageName: 'orca-ide',
|
|
artifactName: 'orca-ide-${version}.${arch}.${ext}',
|
|
// Why: see deb depends. RPM distros ship Xvfb as xorg-x11-server-Xvfb (there
|
|
// is no `xvfb` package), so the name differs from the deb here.
|
|
depends: [
|
|
...rpmElectronRuntimeDependencies,
|
|
'python3',
|
|
'python3-gobject',
|
|
'xdotool',
|
|
'xclip',
|
|
'xorg-x11-server-Xvfb'
|
|
],
|
|
// Why: same headless CLI-on-PATH registration as deb; rpm runs these via fpm.
|
|
afterInstall: 'resources/linux/packaging/after-install.sh',
|
|
afterRemove: 'resources/linux/packaging/after-remove.sh'
|
|
},
|
|
beforeBuild: electronBuilderNativeRebuild,
|
|
// Why: must be true so that electron-builder rebuilds native modules
|
|
// (node-pty) for each target architecture when producing dual-arch macOS
|
|
// builds (x64 + arm64). With npmRebuild disabled, CI on an arm64 runner
|
|
// packages arm64 binaries into the x64 DMG, causing "posix_spawnp failed"
|
|
// on Intel Macs. The beforeBuild hook performs Orca's targeted rebuild and
|
|
// returns false so electron-builder does not rebuild optional cpu-features.
|
|
npmRebuild: true,
|
|
publish: {
|
|
provider: 'github',
|
|
owner: 'stablyai',
|
|
repo: devChannelRepo ?? 'orca',
|
|
releaseType: devChannelRepo ? 'prerelease' : 'release'
|
|
}
|
|
}
|
|
|
|
// Stamp the effective channel version where node-mode CLI code can read it.
|
|
function stampPackagedCliVersion(resourcesDir, version) {
|
|
const packageJsonPath = join(resourcesDir, 'app.asar.unpacked', 'out', 'package.json')
|
|
if (!existsSync(packageJsonPath)) {
|
|
throw new Error(`Missing unpacked CLI package boundary: ${packageJsonPath}`)
|
|
}
|
|
const packageJson = JSON.parse(readFileSync(packageJsonPath, 'utf8'))
|
|
writeFileSync(packageJsonPath, `${JSON.stringify({ ...packageJson, version }, null, 2)}\n`)
|
|
}
|
|
|
|
function chmodUnixCliLaunchers(resourcesDir, electronPlatformName) {
|
|
if (electronPlatformName === 'win32') {
|
|
return
|
|
}
|
|
for (const launcherName of ['orca', 'orca-ide']) {
|
|
const launcherPath = join(resourcesDir, 'bin', launcherName)
|
|
if (!existsSync(launcherPath)) {
|
|
continue
|
|
}
|
|
// Why: packaged Unix installs expose these extraResources as public shell
|
|
// commands, and source/packager mode drift must not ship a non-executable CLI.
|
|
chmodSync(launcherPath, 0o755)
|
|
}
|
|
}
|
|
|
|
function chmodMacServeSimHelpers(resourcesDir, electronPlatformName) {
|
|
if (electronPlatformName !== 'darwin') {
|
|
return
|
|
}
|
|
const helperPaths = [
|
|
join(resourcesDir, 'serve-sim', 'bin', 'serve-sim-bin'),
|
|
join(resourcesDir, 'serve-sim', 'dist', 'simcam', 'serve-sim-camera-helper'),
|
|
join(resourcesDir, 'node_modules', 'serve-sim', 'bin', 'serve-sim-bin'),
|
|
join(resourcesDir, 'node_modules', 'serve-sim', 'dist', 'simcam', 'serve-sim-camera-helper')
|
|
]
|
|
for (const helperPath of helperPaths) {
|
|
if (existsSync(helperPath)) {
|
|
chmodSync(helperPath, 0o755)
|
|
}
|
|
}
|
|
}
|
|
|
|
async function signMacComputerUseHelper(helperAppPath, packager) {
|
|
if (!existsSync(helperAppPath)) {
|
|
if (isMacRelease) {
|
|
throw new Error(`Missing Orca Computer Use helper app at ${helperAppPath}`)
|
|
}
|
|
return
|
|
}
|
|
const codeSigningInfo =
|
|
isMacRelease && process.env.CSC_LINK && packager?.codeSigningInfo?.value
|
|
? await packager.codeSigningInfo.value
|
|
: null
|
|
const identity =
|
|
process.env.ORCA_COMPUTER_MACOS_SIGN_IDENTITY ??
|
|
process.env.CSC_NAME ??
|
|
findInstalledMacSigningIdentity(codeSigningInfo?.keychainFile) ??
|
|
(isMacRelease ? null : '-')
|
|
if (!identity) {
|
|
throw new Error('Missing signing identity for Orca Computer Use helper app')
|
|
}
|
|
// Why: TCC grants attach to this nested app's code identity. Sign it before
|
|
// the outer Orca.app is sealed so production builds preserve that identity.
|
|
execFileSync('codesign', codesignArgs(identity, helperAppPath), { stdio: 'inherit' })
|
|
execFileSync('codesign', ['--verify', '--deep', '--strict', helperAppPath], {
|
|
stdio: 'inherit'
|
|
})
|
|
}
|
|
|
|
async function signMacStandaloneHelper(helperPath, helperName, packager) {
|
|
if (!existsSync(helperPath)) {
|
|
if (isMacRelease) {
|
|
throw new Error(`Missing ${helperName} helper at ${helperPath}`)
|
|
}
|
|
return
|
|
}
|
|
const codeSigningInfo =
|
|
isMacRelease && process.env.CSC_LINK && packager?.codeSigningInfo?.value
|
|
? await packager.codeSigningInfo.value
|
|
: null
|
|
const identity =
|
|
process.env.CSC_NAME ??
|
|
findInstalledMacSigningIdentity(codeSigningInfo?.keychainFile) ??
|
|
(isMacRelease ? null : '-')
|
|
if (!identity) {
|
|
throw new Error(`Missing signing identity for ${helperName} helper`)
|
|
}
|
|
// Why: nested executables must be signed before the outer app bundle is sealed.
|
|
const args = ['--force', '--sign', identity]
|
|
if (isMacRelease) {
|
|
args.push('--options', 'runtime', '--timestamp')
|
|
}
|
|
args.push(helperPath)
|
|
execFileSync('codesign', args, { stdio: 'inherit' })
|
|
execFileSync('codesign', ['--verify', '--strict', helperPath], { stdio: 'inherit' })
|
|
}
|
|
|
|
function codesignArgs(identity, targetPath) {
|
|
const args = ['--force', '--deep', '--sign', identity]
|
|
if (isMacRelease) {
|
|
args.push(
|
|
'--options',
|
|
'runtime',
|
|
'--timestamp',
|
|
'--entitlements',
|
|
resolve(__dirname, '../resources/build/entitlements.computer-use.mac.plist')
|
|
)
|
|
}
|
|
args.push(targetPath)
|
|
return args
|
|
}
|
|
|
|
function findInstalledMacSigningIdentity(keychainFile) {
|
|
try {
|
|
const output = execFileSync(
|
|
'security',
|
|
['find-identity', '-v', '-p', 'codesigning', ...(keychainFile ? [keychainFile] : [])],
|
|
{
|
|
encoding: 'utf8'
|
|
}
|
|
)
|
|
const releaseMatch =
|
|
output.match(/"([^"]*Developer ID Application:[^"]+)"/) ??
|
|
output.match(/"([^"]*Apple Distribution:[^"]+)"/)
|
|
if (releaseMatch?.[1]) {
|
|
return releaseMatch[1]
|
|
}
|
|
if (!isMacRelease) {
|
|
return output.match(/"([^"]*Apple Development:[^"]+)"/)?.[1] ?? null
|
|
}
|
|
} catch {}
|
|
return null
|
|
}
|