nodejs / nodejs/node

test_runner: `--watch` with `--test-isolation=none` reruns every test file, not the affected one

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Langage dominant
JavaScript
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Description

Version

v26.5.0

Platform
Darwin 25.5.0 arm64

(Not platform-specific — it falls out of lib/internal/test_runner/runner.js.)

Subsystem

test_runner

What steps will reproduce the bug?

Two test files; edit only the first and see which ones re-run.

mkdir -p /tmp/probe && cd /tmp/probe
printf 'const {test}=require("node:test");\ntest("A-ran",()=>{});\n' > a.test.js
printf 'const {test}=require("node:test");\ntest("B-ran",()=>{});\n' > b.test.js

# Run once with, once without --test-isolation=none.
# After the first run settles, append a comment to a.test.js and watch the output.
node --test --watch a.test.js b.test.js
node --test --test-isolation=none --watch a.test.js b.test.js

Output produced after touching a.test.js only:

=== default isolation ('process') ===
✔ A-ran (1.202958ms)
ℹ tests 1

=== --test-isolation=none ===
✔ A-ran (0.673791ms)
✔ B-ran (0.116333ms)
ℹ tests 2
How often does it reproduce? Is there a required condition?

Every time. The required condition is --watch together with --test-isolation=none
(equivalently run({ watch: true, isolation: 'none' })).

What is the expected behavior? Why is that the expected behavior?

Only a.test.js re-runs. That is what the documentation promises, without an
isolation caveat — Watch mode:

In watch mode, the test runner will watch for changes to test files and their
dependencies. When a change is detected, the test runner will rerun the tests
affected by the change.

The isolation option's own docs describe it purely as where tests run ("all
test files run in the current process"), so nothing signals that it also changes
which files a change re-runs.

What do you see instead?

Every test file in the run re-runs on every change.

The two modes take different branches in watchFiles' 'changed' handler
(lib/internal/test_runner/runner.js#L659-L672):

if (opts.isolation === 'none') {
  PromisePrototypeThen(restartTestFile(kIsolatedProcessName), undefined, (error) => {
    triggerUncaughtException(error, true /* fromPromise */);
  });
} else {
  watcher.unfilterFilesOwnedBy(owners);
  PromisePrototypeThen(SafePromiseAllReturnVoid(testFiles, async (file) => {
    if (!owners.has(file)) {
      return;
    }
    await restartTestFile(file);
  }, ...));
}

kIsolatedProcessName is the sentinel for the single child that runs the whole
file list, set up in run() under the matching isolation === 'none' && watch
branch — so owners (the set of files the change actually affects) is computed
and then discarded.

Additional information

This looks fixable rather than inherent. The isolation: 'none' watch path
still spawns a fresh child process per change, so there is no ESM
module-cache obstacle to re-running a subset — the child could be given
owners instead of the full testFiles.

The obvious counter-argument, and the reason this might be deliberate: under isolation: 'none' files share a process and can therefore share module-level state, so a subset run is not always equivalent to the full run. Although that probably indicates an unintended coupling between test suites! If that is the rationale, it would be worth stating in the docs — as written they promise the incremental behavior unconditionally.

The practical cost is that --test-isolation=none and --watch pull in opposite directions. Isolation none exists to amortize an expensive import graph across many files, which pays off for a whole-suite run. Watch mode's value is that a save costs one file. Combining them gives you neither: in a suite where the shared import cost is what motivated isolation: 'none' in the first place (ours is ~575 files behind a large DI container), every keystroke-save re-runs everything.

Happy to open a PR for whichever direction maintainers prefer (scope the child to owners, or document the difference). I've opened a docs-only PR for the second in the meantime.

Guide de contribution

Ouvrir le guide de contribution

Par où commencer

  1. Lisez l'issue en entier, puis le guide de contribution du projet.
  2. Signalez en commentaire que vous la prenez — cela évite que deux personnes fassent le même travail.
  3. Forkez le dépôt et travaillez sur une branche.
  4. Ouvrez une pull request qui référence le numéro de l'issue.

Piste de recherche

Commencez dans lib/internal/test_runner/runner.js, en particulier dans le gestionnaire 'changed' de watchFiles autour des lignes 659-672 et dans la configuration de watch de isolation-none dans run(). Reproduisez le problème avec les commandes à deux fichiers du rapport, puis suivez la manière dont owners et testFiles sont transmis au nouveau processus enfant. Le travail est terminé lorsque le comportement prévu pour les fichiers affectés est implémenté ou que le comportement d’isolation documenté est explicitement résolu et couvert par des tests.

Rédigé par le modèle d'indexation à partir du texte de l'issue.

Évaluation

Stack technique
javascript
Domaine
testing
Type d'issue
Bug
Difficulté
4/5
Temps estimé
3-5 jours
Activité
Calme
Clarté
Plutôt claire
Accessibilité débutants
45/100

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