* fix(windows): resolve npm/pnpm .cmd shims past cmd.exe
A `.cmd` target forces every spawn through `cmd.exe /c` with each argument
caret-escaped, and Microsoft Defender for Endpoint scores a long `cmd.exe /c`
line carrying caret-escaped natural language as obfuscation. `codex.cmd` is
named in the spawn cluster of the MDE incident this addresses.
npm's `cmd-shim` and pnpm's `@zkochan/cmd-shim` generate files whose whole body
is "find node, run this script". Read one, and the spawn can go straight to
`node.exe <script> <args>` — no cmd.exe, no caret escaping. Anything the parser
does not recognise exactly, or whose target cannot be confirmed on disk, keeps
the existing cmd.exe path.
Incidentally fixes a real bug: cmd ends its command at a raw CR/LF whatever the
quote state, so a multi-line agent prompt through a `.cmd` shim had to be
rejected. Resolved shims have no such limit.
* fix(windows): refuse drive-relative shim paths and run the win32 tests in CI
Two blocking findings from review.
A drive-relative path defeated the absolute-path guard:
`win32.isAbsolute('D:evil.js')` is false, but `win32.resolve` reads the drive
letter and lands on `D:\evil.js`, outside the shim directory. cmd would have
built `C:\shim\D:evil.js` and failed; we would have executed the wrong file.
Adding `:` to the unsafe-character set closes it, and the alternate-data-stream
spelling `a.js:zone` with it. It costs no coverage: 84 of the 91 real shims on
this box still resolve, the same seven fall back.
Neither `windows-cmd-shim-resolution.test.ts` nor its `.win32` sibling was in
the Windows package job's file list, so the whole filesystem/resolution half and
the real-spawn equivalence suite ran nowhere. Both are now in
`WINDOWS_PACKAGE_TESTS` and in the pr.yml step.
Also from review: clear `windowsVerbatimArguments` explicitly on the resolved
branch rather than inheriting it, since there is no caller-built command line
there; document the kill switch and the PTY/hook-wrapper scope limits in
docs/reference; and cover drive-relative, BOM, line-ending, casing and `%*`
tampering in the platform-independent half of the tests.
* docs(windows): justify the shim-path colon guard from the filesystem rule
The guard was argued empirically ("none of the 91 shims on this box has one"),
which invites a future reader to relax it for a shim we have not seen. Windows
reserves `:` within a path segment, so a relative path cannot carry one at all:
the only spellings that can are drive-qualified, an alternate data stream, or a
`\?\` device path, and the last is already refused as absolute. That makes a
false refusal impossible rather than unobserved.
* refactor(child-process): move resolveSpawn into its own module
The merge with main pushed run-process.ts one line past the 300-line cap:
both sides grew it. The spawn-argv decision is already a pure, separately
tested unit, so it moves out rather than the cap moving up. run-process.ts
re-exports it, so no caller changes.
* perf(child-process): cache the shim interpreter lookup
The parse cache spared the shim read but not the PATH walk, so a second
resolution of the same .cmd did 0 reads and one statSync per PATH entry --
30 on a 30-entry PATH, synchronous on resolveSpawn, where one dead network
mount blocks the calling thread on every spawn.
Keyed by shim directory AND PATH, since the shim's own rule is
%~dp0\node.exe first then PATH, and a PATH edit between spawns must miss.
Corrects the stat comment, which accounted only for the shim itself.
* fix(child-process): revalidate a cached shim interpreter before using it
The node cache was held for process life and never rechecked, so a cached
node.exe that was later uninstalled -- or dropped from PATH by a version
manager -- was still handed to resolveSpawn, failing the spawn with ENOENT.
An uncached process in the same state returns null and falls back to
cmd.exe successfully, so the cache was strictly worse than no cache.
One statSync on a non-null hit, not one per PATH entry, so the walk this
cache exists to skip is still skipped. The stale-null direction stays
uncorrected on purpose: it only keeps the working cmd.exe fallback. Both
directions are now stated in the comment, along with the known miss for
callers that vary PATH per spawn.
* fix(child-process): honour PATHEXT when resolving the shim interpreter
The doc claimed a node.com/.bat/.cmd on PATH returned null and fell back to
cmd.exe. The scan actually skipped those entries and kept looking for a
node.exe, so PATH=C:\A;C:\B with C:\A\node.com and C:\B\node.exe resolved to
B's node.exe while the shim runs A's node.com -- a different binary, chosen
silently, on the one axis this module must not get wrong.
The scan now follows cmd's rule: first PATH directory holding any PATHEXT
spelling wins, PATHEXT order decides within it, and only an .exe winner is
returned. Anything else gives up and keeps the cmd.exe path, which restores
the strict-subset-of-cmd property everywhere except the documented cwd case.
PATHEXT is read from the child's env and joined into the cache key, since it
now changes the answer. Costs one stat per PATHEXT entry per node-less
directory, paid once per process behind the cache.
---------
Co-authored-by: Orca Worker <orca-worker@localhost>
9.7 KiB
Design System
All UI work — layout, color, typography, spacing, component selection, UX behavior — must follow docs/STYLEGUIDE.md. Use the tokens defined in src/renderer/src/assets/main.css (the canonical source) and the shadcn primitives in src/renderer/src/components/ui/. Don't invent new color values, font sizes, or shadow tiers when a documented one already covers the role. When STYLEGUIDE.md is silent, follow the resolution order in its final section.
Electron UI Validation
Always run tests and agent-launched apps in the background with ORCA_BACKGROUND_LAUNCH=1.
Never steal monitor focus or reveal test windows: no show(), showInactive(), bringToFront(),
app.focus(), or OS activation. Use CDP screenshots of hidden renderers. Keep native-focus and
visible-window tests paused on the user's desktop; run them on an isolated display or CI.
Rebuild modified launch-policy code before running an app; stale build wrappers are not safe.
Use the $electron skill and Playwright CDP for rendered Orca UI checks. Do not use computer-use for Orca UI validation.
Style
Reuse Before Reimplementing
Before writing new logic at any scale — a function, component, IPC channel, state store, or whole subsystem/flow — check whether an existing implementation already does the job (or nearly does). Extend or generalize it instead of building a parallel version; only write from scratch when nothing fits. Keep the check proportionate: a quick search for trivial code, a real one before building anything substantial.
Concise/Brief Non-obvious Comments ONLY
- DO NOT: be verbose, explain the obvious, walk through the code ("WHY not HOW")
- BE CONCISE. 1 LINE if possible
Lint Rules: Do Not Disable Max Lines
NEVER add a max-lines disable (eslint-disable max-lines, oxlint-disable max-lines, or line-specific variants), and never add a per-file max-lines bump in mobile/.oxlintrc.json.
File and Module Naming
Never use vague names like helpers, utils, common, misc, or shared-stuff for files, folders, or modules. They carry zero info and tend to become dumping grounds. Name files after what they actually contain — prefer the concrete domain concept (e.g. tab-group-state.ts, terminal-orphan-cleanup.ts) over the generic role (tabs-helpers.ts, terminal-utils.ts). If you find yourself reaching for helpers, the file probably has more than one responsibility and should be split, or there's a better name hiding in the code that describes what the functions operate on.
Type Declarations: Prefer .ts Over .d.ts
Verifying Changes
- Typecheck:
pnpm tc(ortc:node/tc:cli/tc:web) - Test:
pnpm test [path/to/file.test.ts] - Lint:
oxlint, orpnpm run check:code-quality:changedfor changed files (fullpnpm lintis slow); format withpnpm format
Considerations
Worktree Safety
Always use the primary working directory (the worktree) for all file reads and edits. Never follow absolute paths from subagent results that point to the main repo.
Cross-Platform Support
Orca targets macOS, Linux, and Windows. Keep all platform-dependent behavior behind runtime checks:
- Keyboard shortcuts: Never hardcode
e.metaKey. Use a platform check (navigator.userAgent.includes('Mac')) to pickmetaKeyon Mac andctrlKeyon Linux/Windows. Electron menu accelerators should useCmdOrCtrl. - Shortcut labels in UI: Display
⌘/⇧on Mac andCtrl+/Shift+on other platforms. - File paths: Use
path.joinor Electron/Node path utilities — never assume/or\. - Windows setup scripts: the setup/issue-command runner is a
.cmdbatch file unless the script starts with a#!line — never derive that from the user's terminal-shell preference, and never launch a.cmdrunner with a barecmd.exe /cfrom a Git Bash pane (MSYS rewrites the/c). Seedocs/reference/windows-setup-shell.md. - Windows child processes: start them through
runProcess/spawnProcessinsrc/shared/child-process/— neverchild_processdirectly. It pinswindowsHide, refusesshell: true, and encodes.cmd/.batarguments so neitherCommandLineToArgvWnorcmd.exemangles them. A ratchet test fails on any new direct import. Recognised npm/pnpm.cmdshims are resolved to their real target so the spawn skipscmd.exeentirely; seedocs/reference/windows-cmd-shim-resolution.mdbefore adding a shim shape or debugging one. - Windows process enumeration: read the table through
src/main/windows/windows-process-table.ts, never by forkingpowershell.exe. Seedocs/reference/windows-process-enumeration.md. - Windows daemon-host relocation: the terminal daemon runs from a copy of the app runtime under
%LOCALAPPDATA%, which is what survives an auto-update. Before touching that copy, its exe name, or the NSIS uninstall macro, readdocs/reference/windows-daemon-host-relocation.md. - Windows EDR signal: don't add
-ExecutionPolicy Bypass,-EncodedCommand,cmd.exe /cwith escaped free text, per-operation interpreter spawning, or runtimeAdd-Typecompilation without readingdocs/reference/windows-edr-posture.mdfirst — behavioural EDR scores each of those, and being signed does not clear them. - WSL commands: build argv with
buildWslExecArgs(always--exec— under--,wsl.exeexpands$namein every argument and silently rewrites the script), and fence anything whose stdout you parse withbuildWslCapturedLoginShellCommand, because the interactive login shell prints the distro banner to stdout. Seedocs/reference/wsl-command-execution.md. - Linux native modules: keep the glibc floor at Ubuntu 20.04 / glibc 2.31. A module compiled from source on a newer runner can reference symbol versions absent on the floor and crash the app on startup. See
docs/reference/linux-glibc-compatibility.md; packaging fails if a bundled native binary needs newer glibc.
SSH Use Case
All changes must consider the SSH use case. Don't assume local-only execution. Before changing anything that reports on, stops, or lists remote work, follow docs/reference/ssh-execution-boundary.md: the execution host owns everything that touches execution, and loss of contact is never evidence of process death — the verdict vocabulary is live / unverifiable / exited, with no synonyms.
Folder Workspace Use Case
All changes must consider folder workspaces as well as git worktrees. Don't assume every workspace is a git worktree.
Remote Wire Compatibility
Clients and remote Orca servers update independently, so mixed versions are the normal state. Before changing anything a paired client and host exchange — RPC params, stream frames, or the content either side publishes over them — follow docs/reference/remote-wire-compatibility.md. A new optional field is safe; a new stream opcode must be capability-negotiated because decoders drop unknown opcodes silently; and changing what the host publishes reaches old clients even with no wire change.
Git Binary Compatibility
Orca runs the user's Git binary on native, WSL, and SSH hosts, which may all have different versions. Treat Git 2.25 as the core-workflow baseline and follow docs/reference/git-compatibility.md.
When adding or changing a Git command:
- Check when every subcommand and option was introduced. For newer behavior, keep a baseline-compatible fallback or degrade safely.
- Use
GitCapabilityCachewith a narrow unsupported-error predicate so recurring operations do not retry a known-invalid command. Do not rely only ongit --version; wrappers such assimple-gitdo not remove host-version differences. - Scope capability state to the host that executes Git: native, WSL distro, SSH provider, or relay connection. Cover the first fallback, later cached calls, concurrent probes, and relevant host isolation in tests.
- Keep the real-binary compatibility contract in PR CI current. When adopting a newer Git feature, add its version boundary so the preferred command and fallback both run against representative Git releases.
- Preserve commands that begin with global Git options such as
-cbefore the subcommand, including auto-maintenance suppression used by worktree-create fetches.
Git Scan Safety
- Never enumerate every ref and then run
git ls-tree -rorgit showonce per ref. That ref × tree fan-out can retain gigabytes of output before a downstreamsort -uor search can make progress. - Prefer
rgover the checked-out files for source searches. For history or refs, use a named ref, an explicit namespace/path,--max-count, and a bounded output; do not use an unqualified--allscan as a first diagnostic. - Keep repository-wide commands targeted to the current repository and worktree. If an unbounded scan is genuinely required, measure the ref count first, explain the cost, and get confirmation before running it.
Git Provider Compatibility
Source-control and review changes must consider GitLab and other supported git providers, not only GitHub. Keep provider-specific behavior behind explicit checks, and avoid GitHub-only naming for generic review concepts.
GitHub CLI Usage
Be mindful of the user's gh CLI API rate limit — batch requests where possible and avoid unnecessary calls. All code, commands, and scripts must be compatible with macOS, Linux, and Windows.