Tangential, but does anyone know why in 2026 and on Debian 13, my machine still hangs when some process exhausts RAM?
Is there really no higher-priority kernel process to prevent total freeze of the system and send a SIGKILL to the culprit process when such a scenario happens?
There used to be a time when not only the OS required using partitions for optimum performace (swapfiles) but also applications.
In the late 90s databases were regularly set up in a way to store their data on raw partitions. There were other types of applications too that required partitions but for databases it was really common.
The practice really only died with OSes allowing apps to bypass the normal filesystem cache.
In Linux this is O_DIRECT and interestingly Linux was super late to the party because Linus hated it with a passion. Now, he was far from the only one, at least Alan Cox and Andrew Morton were skeptical, others as well. Linus was unusually extreme about it and that particular discussion is probably the single source of the majority of quotes people use against him.
swap files make setting up hibernation a bit more complicated - in most cases the file has to be contiguous, e.g. you have to defragment it once after allocating. Then, you need to tell the bootloader the byte offset of the file on the partition.
Every rule has an exception. Beware of this advice on zfs, for instance.
Meanwhile zswap (of no relation with zfs) is free performance. Is it a rule that everything starting with a 'z' must be cool?
Stop using partitions. Use LVM!
Interestingly I always use swapfiles and this page made me realise there can be a performance impact if the filesystem is old - the lkml link says as long as the swap file isn't fragmented there's no impact
In practice, there’s a potentially tremendous impact if you’re using a spinning metal disk. Sectors at the beginning of the disk (which is at the outer edge) are read/written way faster than sectors at the end. File systems tend to prefer writing files at the beginning. If the file system has been used for ‘a long time’ then it’s either fragmented - or it’s been defragmented and the free space is at the slow end of the drive.
One nice thing about swap partitions is that they can be fixed in place even before OS installation.
(Of course, if you’re using swap enough for this to be a huge factor, you probably have bigger problems. But I haven’t done the math.)
Indeed. I'd always put swap near the beginning, then a small root partition, then the rest. This reduced head movement for often-accessed data, and used the higher bandwidth of the outer tracks.
Swap files are also much easier to set up than partitions if you're using full disk encryption.
Swap files are very fragile if you are using hibernation. For FDE I prefer LVM-over-LUKS and a dedicate partition
MacOS seems to have no problem with hibernating and it and its predecessor NeXT have been using swap files for over 30 years.
Linux distros that do use swap files do so statically. It doesn't handle dynamically growing and shrinking it like other operating systems.
Unless you use the Linux package that does manage swap files dynamically.
OS are designed to fully exploit available resources, Linux tries its best before triggering an OOM kill.
I recommend using the earlyoom if you want more aggresive oom kill:
https://github.com/rfjakob/earlyoom
The README contains a lot of interesting information.
This is called an oomkiller. The kernel has one but it kicks in very late and the kernel prefers to do page trashing instead of killing processes.
systemd-oomd should be integrated in systemd, you can configure it to your liking and see if it improves your problem.
I always install earlyoom for that reason