| name | run-nx-checks |
| description | Run nx format, lint, test, and build on affected or specified projects, then fix unambiguous failures |
| context | fork |
| allowed-tools | Bash, Read, Edit, Write, Grep, Glob |
| license | MIT |
| metadata | {"author":"Francesco Borzì","version":"1.6"} |
Run Nx Checks
Run format, lint, test, build. Fix unambiguous failures. Report anything judgment-laden.
Arguments
$ARGUMENTS — optional, space-separated: [cpuCount] [projectName] [--remote-cache]. Number token
→ cpuCount. Non-number, non-flag token → projectName. --remote-cache flag → opt back into the
remote cache by dropping the remote-cache-off prefix. Default cpuCount = cores - 4 (min 1);
count cores with getconf _NPROCESSORS_ONLN (nproc is GNU-only).
Default project scope = affected. Default remote-cache state = off (see Steps).
Workspace
Run nx commands from wherever nx.json lives in this repo (commonly the root; in some repos a
subdirectory).
Setup (before step 1)
Keep the Nx daemon warm so the project graph is reused across targets:
NX_DAEMON=true npx nx daemon --start >/dev/null 2>&1 || true
Do not rely on export for the remote-cache-off env vars (or any other nx env var) — each Bash
tool call is a fresh shell, so exports do not carry across calls. Always inline env vars on the
command line of each nx invocation (see Steps below).
Fix rule
- Apply only mechanical/unambiguous fixes: lint auto-fix output, missing imports/types, obvious type
errors, test expectations that mirror a clear code change.
- Never guess on anything judgment-laden: test failure that could be a real bug vs. an outdated
assertion, errors pointing at unrelated areas, pre-existing failures unrelated to recent work,
anything where multiple plausible fixes exist. Running forked, you can't ask mid-run: leave such
failures unfixed and carry them, with your analysis, into the final report.
- Keep changes minimal and scoped to the failure. No drive-by refactors.
- After fixing, re-run the check. Repeat until clean or only judgment-laden failures remain.
Affected scope — sanity-check before build/test
Affected runs can balloon. Before steps 3–4, check scope with the graph-only
npx nx show projects --affected (fast, no build):
- Sandbox
.env false positives. The sandbox denies reading **/.env; nx affected hashes
changed files, so an unreadable .env reads as changed and marks its project affected. Repos
with .env-bearing apps (e.g. apps/*-api) thus drag those into every affected run and build
them for nothing. Tell-tale: git status prints <path>/.env: Operation not permitted for
exactly those projects. Fix: rerun the nx commands with the sandbox disabled so .env reads
succeed, or --exclude those projects.
- Large fan-out. If the set is large (e.g. a widely-shared lib change rippling across the
workspace), don't build the world unprompted: skip steps 3–4 and report the project count and
scope in the final report so the user can re-run with an explicit scope.
Steps
Scope is mandatory — never narrow it yourself. With no $projectName argument, every target
runs at full scope — nx affected for lint/test/build, whole-changeset format:write. The
single-project forms in the steps below apply only when the user explicitly passed
$projectName. Never substitute nx run <proj>:<target>, nx <target> <changedLib>, or
file-scoped format --files for the affected sweep: that skips every other affected project —
exactly where a shared-lib change regresses (a dependent project whose tests import the changed
lib). And never add --skip-nx-cache (see below).
Always prefix each nx command with both remote-cache-off env vars inline. They're additive and
the unrecognized one is a no-op, so this is safe regardless of which remote-cache backend (if any)
the repo uses:
NX_POWERPACK_CACHE_MODE=no-cache — disables Nx Powerpack remote caches (@nx/azure-cache,
@nx/s3-cache, @nx/gcs-cache — all read the same env var via shared powerpack-utils).
NX_NO_CLOUD=true — disables Nx Cloud's remote read-through cache.
The invariant: remote cache always off (unless the user passed --remote-cache), local cache
always on. A remote read-through cache gains little locally, and its cloud SDKs' credential
probing can hang every nx call for seconds in a sandbox; a shell-side auth check (e.g.
az account show) doesn't predict the in-process credential chain — always disable, never
autodetect. Full rationale: remote-cache-rationale.md.
If the user explicitly passed --remote-cache, drop both prefixes.
Always keep the local cache on. The env vars above disable only the remote read-through cache;
the local Nx cache must stay enabled so unchanged targets are replayed instead of re-run. Do not
add --skip-nx-cache (nor NX_SKIP_NX_CACHE=true) to any command — it bypasses the local cache
too, making every run slower for no benefit. The only valid reason to pass --skip-nx-cache is a
specific, stated need to bypass the local cache — e.g. investigating a failure you suspect is caused
by a stale cache entry. In that case, scope it to the single command under investigation and say
why; never use it as the default.
Write both env vars literally at the start of each nx command, exactly as in the steps below.
Never stash the prefix in a shell variable (NX_OFF="…"; $NX_OFF npx nx … fails with "command not
found": expanded variables are not parsed as assignments).
- Lint —
NX_POWERPACK_CACHE_MODE=no-cache NX_NO_CLOUD=true npx nx affected -t lint --parallel=$cpuCount --fix
(or NX_POWERPACK_CACHE_MODE=no-cache NX_NO_CLOUD=true npx nx lint $projectName --fix).
- Format —
NX_POWERPACK_CACHE_MODE=no-cache NX_NO_CLOUD=true npx nx format:write
- Test —
NX_POWERPACK_CACHE_MODE=no-cache NX_NO_CLOUD=true npx nx affected -t test --parallel=$cpuCount --maxWorkers=1
(or NX_POWERPACK_CACHE_MODE=no-cache NX_NO_CLOUD=true npx nx test $projectName).
- Build —
NX_POWERPACK_CACHE_MODE=no-cache NX_NO_CLOUD=true npx nx affected -t build --parallel=$cpuCount
(or NX_POWERPACK_CACHE_MODE=no-cache NX_NO_CLOUD=true npx nx build $projectName --parallel=$cpuCount).
Apply the fix rule on any failure in steps 1–4.
--maxWorkers=1 on the test step
--parallel caps concurrent projects; each test task still fans out to ~all cores internally, so
without this the cores oversubscribe (CPU pegs at 100%). --maxWorkers=1 pins each task to one
worker → --parallel=$cpuCount ≈ $cpuCount cores. Both Vitest and Jest accept the flag.
- Test step only. Forwarding
--maxWorkers to lint (ESLint) or build (esbuild) fails as an
unknown option.
- Affected/run-many only, not single-project. With one project there's no project-level fan-out,
so capping to one worker just serializes it — let a single project use all cores.
Same reason, --parallel is dropped from single-project lint and test (one task each — no
fan-out). It stays on single-project build, because build has dependsOn: ["^build"], so
building one project fans out across its whole dependency chain.
Flaky tests — retry once to classify
A failed test target may be flaky, not a real break. On a test failure, re-run that one target
once: NX_POWERPACK_CACHE_MODE=no-cache NX_NO_CLOUD=true npx nx test <project>. If it then
passes, or Nx prints NX detected a flaky task, it's flaky — don't try to "fix" it; record it as
a flaky project:target for the report. If it fails the same way again, treat it as real under
the Fix rule.
Final report (mandatory)
This skill runs in a forked context, so its final message is the only channel back to the caller.
End by listing, per target (lint / format / test / build): clean, skipped (with the reason — for
large fan-out, the project count and scope), or each failing project:target with its cause, plus
any flaky project:target. Never report a bare "checks passed" — an unlisted failure or skipped
target reads as green and the caller can't act on it.