Might be late to the party, but I just discovered you can do this. Super simple and easy to do.

After having a read of the linked page, I backed up and just used this option:

https://wiki.archlinux.org/title/Profile-sync-daemon

Installed, created config, and enabled service:

systemctl --user enable psd.service systemctl --user enable psd-resync.service

I definitely notice an increase in speed and less SSD usage should hopefully increase lifespan.

I’m sure there would be options for alternative distros, anything using Systemd should be able to use the daemon.

  • SuperIce@lemmy.world
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    8 months ago

    I used to use this when I still had a hard drive, but this does nothing for performance if you’re on an SSD and profile writes are so few with browsers that it doesn’t significantly affect drive wear. In the end, all this does is make it more likely that something will break.

      • Valmond@lemmy.mindoki.com
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        8 months ago

        Can someone back up my claim that 10-20GB writes per day is nothing for a modern SSD?

        Edit: with a 256 TBW and a 20GB write/day it gives some 13.000 days so the lifespan of an SSD will largely be the limiting factor.

    • MonkderZweite@feddit.ch
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      8 months ago

      Wrong. Using inotify-wait (inotify-tools), you see that FF has a bunch of read and write access on every page load (mostly in /storage). This is with the about:config option to use RAM as cache enabled.

      Every single webbrowser is one giant clusterfuck.

    • JustinA
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      8 months ago

      Yeah, messing around with this stuff is how you break firefox. SSDs are plenty fast and durable, and that’s not even mentioning how the Linux page cache means that you’re already technically running in ram anyways. This program will just break things.

  • ulterno@lemmy.kde.social
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    8 months ago

    Finally, a way to use the loads of RAM I have other than Compiling and Blendering.
    Well, I guess we also have RAM drives

    • ∟⊔⊤∦∣≶@lemmy.nzOP
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      8 months ago

      Just reconfigured /etc/makepkg.conf to use extra cores and tmpfs… I’ve been compiling on the SSD with one core for so long it’s embarrassing.

      • d3Xt3r@lemmy.nzM
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        8 months ago

        While you’re still in your makepkg.conf, don’t forget to set march=native (and remove mtune) in your CFLAGS! (unless you’re sharing your compiled packages with other systems)

          • d3Xt3r@lemmy.nzM
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            8 months ago

            A ton of difference! march stands for microarchitecture levels (or feature levels). “x86-64” is the baseline feature set targeting common x86_64 instructions found in early 64-bit CPUs, circa 2003. Since 2003 obviously there have been several advancements in CPUs and the x86_64 arch, and these have been further classified as:

            • x86-64-v2 (2008; includes the SSE3, SSE4 instructions and more)
            • x86-64-v3 (2013; includes AVX, AVX2 and more)
            • x86-64-v4 (2017; includes AVX512 mainly)

            So if you’re still on x86-64, you’re missing out on some decent performance gains by not making use of all the newer instructions/optimisations made in the past two decades(!).

            If you’re on a recent CPU (2017+), ideally you’d want to be on at least x86-64-v3 (v4 has seemingly negligible gains, at least on Intel). There’s also CPU-family specific marches such as znver4 for AMD Zen 4 CPUs, which would be an even better choice than x86-64-v4.

            But the best march you want use is of course native - this makes available all instructions and compiler optimisations that’s specific to your particular CPU, for the best performance you can possibly get. The disadvantage of native is that any binaries compiled with this can run only on your CPU (or a very similar one) - but that’s only an issue for those who need to distribute binaries (like software developers), or if you’re sharing your pkg cache with other machines.

            Since the flags defined in makepkg.conf only affect AUR/manual source builds (and not the default core/extra packages), I’d recommend also reinstalling all your main packages from either the ALHP or CachyOS repos, in order to completely switch over to x86-64-v3 / v4.

            Further reading on microarchitectures:

            Benchmarks:

            cc: @[email protected]

            • Helix 🧬@feddit.de
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              8 months ago

              Can I also compile a list of selected packages from the repositories fresh easily? E.g. Firefox? Or do I have to download their PKGBUILD to makepkg?

              • d3Xt3r@lemmy.nzM
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                8 months ago

                The repositories already contain pre-compiled packages. To install them, just add the repository before the Arch repos, and then simply reinstall the packages to install their optimised versions.

            • ∟⊔⊤∦∣≶@lemmy.nzOP
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              8 months ago

              Oh boy…

              Total Download Size: 3390.65 MiB Total Installed Size: 13052.08 MiB Net Upgrade Size: 291.24 MiB

              I wonder if I’m going to notice any better performance…

  • Pantherina@feddit.de
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    8 months ago

    Btw the private browsing mode is also RAM-only which is a hard requirement for the Tor browser (“no disk policy”)

  • Helix 🧬@feddit.de
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    8 months ago

    thanks for reminding me. Didn’t activate this on my new install since I got 64G of RAM :)

    systemctl --user enable psd-resync.service
    

    I think this is not needed since psd.service has the following in it:

    [Unit]
    …
    Wants=psd-resync.service