module: compile cache leaks temporary files when persistence fails
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Descripción
Version
v24.15.0
Platform
Linux pike 7.0.0-29-generic #29-Ubuntu SMP PREEMPT_DYNAMIC Fri Jul 17 20:52:35 UTC 2026 x86_64 GNU/Linux
Subsystem
module compile cache
What steps will reproduce the bug?
This uses RLIMIT_FSIZE=0 to make mkstemp() succeed and the subsequent write fail. It requires no third-party dependencies or elevated privileges.
tmp="$(mktemp -d)"
mkdir -p "$tmp/cache"
printf '%s\n' 'module.exports = 42;' >"$tmp/fixture.cjs"
(
cd "$tmp"
ulimit -f 0
trap '' XFSZ
NODE_COMPILE_CACHE="$tmp/cache" node -e "require('./fixture.cjs')"
)
find "$tmp/cache" -type f -printf '%P %s bytes\n'
Example output:
v24.15.0-x64-cf738c9d-1000/712488c2.LuhsmB 0 bytes
v24.15.0-x64-cf738c9d-1000/8e9c99c2.hwlSas 0 bytes
v24.15.0-x64-cf738c9d-1000/9fb526e9.wPP9zO 0 bytes
The Node process exits with status 0.
How often does it reproduce? Is there a required condition?
Every run on the Linux system above. The required condition is that creation of the temporary cache file succeeds but a later write, close, or rename fails. EDQUOT, ENOSPC, and EFBIG are representative failure modes.
What is the expected behavior? Why is that the expected behavior?
The compile cache should continue to fail gracefully, but it should close the temporary file descriptor and unlink the temporary file whenever persistence does not complete. A failed cache write is disposable internal state and should not consume additional filesystem space or inodes.
What do you see instead?
Each failed entry leaves its random-suffix temporary file in the compile-cache directory. On the write-error path, its file descriptor also remains open until process teardown.
In a real EDQUOT incident, one Node process left 3,424 zero-byte compile-cache temporary files in one minute. This amplified a block-quota failure into substantial inode consumption.
Additional information
Current main creates the temporary file, then immediately continues on write, close, or rename errors without unlinking it:
The same control flow is present in v24.15.0.
A possible fix is an RAII cleanup guard established immediately after successful uv_fs_mkstemp() that:
- closes the descriptor if it is still open;
- unlinks the temporary path unless the rename succeeded;
- is disarmed only after successful rename;
- preserves the original persistence error.
A regression test can use the same RLIMIT_FSIZE technique on supported POSIX platforms and assert that no random-suffix temporary files remain.
Guía de contribución
Primeros pasos
- Lee el issue completo y luego la guía de contribución del proyecto.
- Comenta en el issue que vas a ocuparte — evita que dos personas hagan lo mismo.
- Haz un fork del repositorio y trabaja en una rama.
- Abre un pull request que haga referencia al número del issue.
Línea de trabajo
Comienza en src/compile_cache.cc alrededor de las líneas 478-516 y ejecuta la reproducción proporcionada de RLIMIT_FSIZE para rastrear el manejo de archivos temporales a través de los fallos de write, close y rename. Añade una prueba de regresión en las plataformas POSIX compatibles que verifique que una persistencia fallida no deja archivos temporales con sufijo aleatorio. Se considera terminado cuando las escrituras fallidas de la caché cierran los descriptores, eliminan las rutas temporales y conservan el fallo controlado de la caché.
Escrito por el modelo de indexación a partir del texto del issue.
Evaluación
- Stack tecnológico
- cpp, javascript, nodejs
- Área
- backend, performance, testing
- Tipo de issue
- Error
- Dificultad
- 4/5
- Tiempo estimado
- 3-5 días
- Estado de actividad
- Activo
- Claridad
- Bien especificado
- Aptitud para principiantes
- 74/100