* Keep clicking a notification working after a shell restart
Notification actions lived only in the sending process: `-a` appended
`-A default=default`, so notify-send blocked on a D-Bus ActionInvoked signal and
the caller ran the command when it arrived. Nothing about that reached disk, so a
restored popup had no action to run and its sender stayed blocked forever.
Replace `-a` with `--exec <command>`, carried as an `omarchy-exec` hint into the
snapshot's `exec` role. It travels through the popup files and history, and the
shell runs it on click, so restored toasts behave exactly like live ones and the
sender exits immediately.
That drops the scaffolding whose only job was keeping a blocked sender alive: the
first-run invitations lose their `--show` re-entry and two transient units each,
omarchy-migrate-notify loses its transient service, and the screenshot,
recording, download, and taildrop toasts lose their wrapper subshells.
Co-Authored-By: Claude Opus 5 (1M context) <noreply@anthropic.com>
* Keep a failed toast from failing the work it announces
Moving these sends out of their backgrounded subshells put a fallible command
on the foreground path, where the `&` used to swallow its exit status. A
notification outage — including the shell restart this branch targets — now
propagates:
- taildrop's receiver dies under `set -e` mid-delivery
- omarchy-capture-screenshot reports failure for a screenshot it already saved
- a completed download exits before scheduling its thumbnail cleanup, leaking
the mktemp file
Announcing is best-effort in all three: the work is already done by the time
the toast goes out.
Also drop the first-run sleep that spaced out the welcome and Wi-Fi toasts.
It compensated for the background notify-send processes this branch removes;
each send now returns only once the server has taken the toast, so sending in
order is enough to stack them newest-on-top.
Co-Authored-By: Claude Opus 5 (1M context) <noreply@anthropic.com>
* Stop tying the preview cleanup to the toast's expiry
The shell loads a notification thumbnail into memory when the toast appears and
never re-reads the file, so the preview only has to outlive that load. Deriving
the cleanup delay from the expiry was false precision, and it turned -t into a
variable for no reason: -t is already the helper's expiry setting.
Co-Authored-By: Claude Opus 5 (1M context) <noreply@anthropic.com>
---------
Co-authored-by: Claude Opus 5 (1M context) <noreply@anthropic.com>
omarchy-update-user-notify.path watched /usr/share/omarchy/migrations, but
pacman writes that directory during every update, including the blessed
omarchy update, which runs omarchy-migrate a step later. The watcher fired a
critical notification for the migrations the update was already applying in
the visible terminal. A watcher cannot tell that apart from a bypassed
pacman -Syu, so the only trigger that never collides with a running update is
a once-per-login check.
The service that already ran at graphical-session.target is now the whole
mechanism, renamed after the command it runs. That is also all the second-user
case needs: markers are per-user, so anyone who did not run the update finds
them missing at their next login.
Login timing means the toast can be sent before the shell has claimed
org.freedesktop.Notifications, so the notifier waits for a live server first.
The wait is omarchy-first-run's, lifted into omarchy-notification-wait rather
than duplicated.
The package keeps omarchy-update-user-notify.service as a symlink onto the new
unit. Existing users hold an absolute wants symlink to the old path, and the
migration that repoints it only runs for users who run an update, which is the
opposite of who the notifier is for.
Co-Authored-By: Claude Opus 5 (1M context) <noreply@anthropic.com>
Laptop speakers ship voiced by the vendor's Windows DSP layer, which Linux does
not get. A tuning restores that as a PipeWire filter-chain in front of the
internal speaker sink, matched to the machine by DMI string and expected sink.
Adding a laptop is a directory under default/audio/tunings with two files and no
new code: matching is data. The XPS 14 DA14260 tuning included here was derived by
measuring the xps-audio-linux EasyEffects profile (MIT) and fitting a biquad chain
to it, so no impulse response or other upstream asset is redistributed. It measures
1.24 dB RMS against that reference, and matches its dynamic range within 0.1 LU --
the reference's multiband compressor turned out to contribute nothing, so a linear
chain replaces it. Bass Q is capped deliberately: a closer magnitude fit swung
group delay 31 ms across 63-80 Hz, which smears bass transients.
The graph runs as its own PipeWire client under its own config name rather than
loading into the audio daemon. The daemon only reads its config at startup, so a
daemon-loaded tuning could only be switched by restarting PipeWire -- which drops
every PulseAudio client's connection, and applications that do not reconnect
(Spotify) then have to be restarted by hand. Hosting it separately also contains
failure, since a malformed tuning breaks only that service.
Three things about the surrounding audio graph needed fixing for this to behave:
- Volume must live downstream of the tuning. omarchy-audio-output-sink is now the
single definition of which sink an output's volume really uses, shared by the
volume keys, the output switcher's OSD and the audio panel, so they cannot
disagree. It resolves the current default output, which keeps it correct when
headphones are selected while a tuning exists.
- The tuning's own output is a movable sink input, so rerouting "all streams" to a
newly selected output would drag the processing onto headphones, or into the
tuning's own sink, which is a cycle. It is pinned, and stream moves are limited
to streams carrying an application.name.
- The physical sink a tuning fronts is not independently selectable, since picking
it would only bypass the tuning, so it is kept out of the output list.
Applying happens at first-run, not finalize-user, because finalize-user also runs
in the ISO chroot where there is no audio server and nothing would retry.
Co-Authored-By: Claude Opus 5 (1M context) <noreply@anthropic.com>
The setup installs packages (libfprint-git, fprintd, usbutils), which
isn't reliable on a fresh install before the databases have been
synced. Defer the invitation with a post-update hook, like Voxtype.
Co-Authored-By: Claude Fable 5 <noreply@anthropic.com>
Add a first-run notification, alongside the keybindings/Wi-Fi toasts, that
invites anyone with a fingerprint sensor to enable it. Clicking launches
omarchy-setup-security-fingerprint in a floating terminal.
Detection lives in a new omarchy-hw-fingerprint helper that reads sysfs
(device product descriptor plus a fingerprint-vendor allowlist), so it
works before fprintd/usbutils are installed and without nagging machines
that have no reader. The setup script reuses the same helper as an early
gate, bailing before installing any packages when no reader is found
(replacing the old post-install fprintd-list probe).
Co-Authored-By: Claude Opus 4.8 (1M context) <noreply@anthropic.com>
Reorganizes Omarchy 4 around three layers for populating $HOME:
Seed: omarchy-settings ships defaults to /etc/skel; useradd -m
copies them on user creation
Finalize: omarchy-finalize-user (renamed from omarchy-setup-user)
handles only the runtime tweaks /etc/skel can't do — skill
symlinks, xdg-user-dirs, default browser/mailto, vconsole→hypr
keyboard sync, and install/user/all.sh
Resync: omarchy-reinstall-configs is the explicit, destructive
resync of /etc/skel into an existing user's $HOME
Package-owned files move out of config/ into default/, where the
omarchy-settings PKGBUILD installs them to real system paths:
config/environment.d/fcitx.conf -> /usr/lib/environment.d/
config/fontconfig/fonts.conf -> /usr/share/fontconfig/conf.avail/
config/mimeapps.list -> /usr/share/applications/
config/omarchy.ttf -> /usr/share/fonts/omarchy/
config/systemd/user/*.service -> /usr/lib/systemd/user/
config/uwsm/default -> /usr/share/omarchy/default/uwsm/
config/uwsm/env -> /usr/share/uwsm/env.d/10-omarchy
config/xdg-terminals.list -> /usr/share/xdg-terminal-exec/
omarchy-upgrade-to-4 grows a 'retire' action (renamed from 'move' to
clarify nothing is copied — the system path is owned by the new package
once the user's hash-matched ~/.config copy is removed). Mismatched
copies are kept as backups so user overrides survive the upgrade.
Other simplifications:
- Single env bootstrap at default/bash/env-bootstrap sourced by
/etc/profile.d/omarchy.sh, /etc/skel/.bashrc,
/usr/share/uwsm/env.d/10-omarchy, and default/bash/envs. PATH
prepend only in dev-link mode (production uses /usr/bin/omarchy-*).
- omarchy-refresh-config reads from /etc/skel/.config so refresh
means 'snap to skel'.
- omarchy-reinstall-configs collapses to 'cp -af /etc/skel/. ~/'
plus limine/plymouth/nvim refresh.
- omarchy-font-set uses awk against our own 30-omarchy.conf instead
of xmlstarlet; xmlstarlet dropped from omarchy-base.packages.
- Defer user systemd enables (bt-agent, sleep-lock,
recover-internal-monitor) to first-run via
install/user/first-run/enable-user-units.sh; delete
omarchy-user-systemctl-enable and the per-hardware install
scripts that called it.
- Wireplumber bluetooth-a2dp-autoconnect.conf moves to config/ so
/etc/skel ships it; install/user/hardware/bluetooth.sh deleted.
- Default terminal switched to foot.desktop.
- docs/file-layout.md documents the three-layer model and the
build-time repo→path map.
Remove legacy online installer entrypoints, collapse migrations for 4.0, and move setup responsibilities into target-side system, hardware, and user commands.
The lua-based monitors config (~/.config/hypr/monitors.lua) ships from
skel with sensible defaults (omarchy_gdk_scale = 2, omarchy_monitor_scale
= "auto"). Hyprland handles the dynamic monitor scale at runtime via
"auto"; 'omarchy hyprland monitor scaling <N>' already updates both
omarchy_monitor_scale and omarchy_gdk_scale in monitors.lua when the
user wants to adjust.
The first-run 'detect what hyprland picked and write it back' dance
was leftover from the .conf-based config; it's redundant on the lua
flow and was the script that aborted omarchy-first-run under set -e
when it sed'd a missing monitors.conf.
Two bugs caused fresh users to land without branding files / AI skill
symlinks / nautilus extensions / xdg dirs / etc.:
1. install/first-run/gdk-scale.sh sed-edited ~/.config/hypr/monitors.conf,
but the lua-based config flow uses ~/.config/hypr/monitors.lua. sed -i
on the missing .conf returned non-zero, set -e fired, omarchy-first-run
aborted mid-block AFTER deleting ~/.local/state/omarchy/first-run.mode.
omarchy-setup-user (called at the bottom of the script, outside the
if-block) never ran, so setup-user.done never got written and the
per-user defaults (~/.config/omarchy/branding/*, ~/.agents/skills/omarchy,
xdg dirs, etc.) never got created.
Replace the .conf sed with a call to omarchy-hyprland-monitor-scaling
which already knows how to persist into monitors.lua.
2. Move 'omarchy-setup-user || true' to the TOP of omarchy-first-run, before
the privileged first-run block. setup-user is idempotent and gated on
its own marker, so running it first is safe and means a failure in any
of the privileged steps can't prevent user setup from completing.
User-level files (~/.config, ~/.local/share, ~/.agents, etc.) shouldn't
be written by install.sh — it runs as root or with system-level sudo,
and in offline (ISO chroot) mode the user doesn't exist yet. Moved into
a per-user idempotent command, called from omarchy-first-run.
Moved into bin/omarchy-setup-user (deleted from install/config/):
- omarchy-ai-skill.sh AI skill symlinks
- omarchy-toggles.sh hypr toggle flags
- nautilus-python.sh nautilus extensions
- branding.sh ~/.config/omarchy/branding/{about,screensaver}.txt
- user-dirs.sh xdg-user-dirs-update + gtk bookmarks
- detect-keyboard-layout.sh layout/variant sed into ~/.config/hypr/input.lua
- toggles.sh ~/.local/state/omarchy/toggles mkdir
- mimetypes.sh omarchy-refresh-applications + xdg-mime/xdg-settings
Kept in install/config/ (rely on OMARCHY_USER_NAME / OMARCHY_USER_EMAIL
that only exist during install):
- git.sh git config --global user.{name,email}
- xcompose.sh ~/.XCompose with name/email substituted
omarchy-setup-user:
- Refuses to run as root
- Idempotent via ~/.local/state/omarchy/setup-user.done marker
- --force escape hatch for re-running after dev-link or upstream changes
- Defaults OMARCHY_PATH to /usr/share/omarchy so it works outside install
bin/omarchy-first-run now invokes omarchy-setup-user unconditionally
(it self-gates), so first user login picks up the user setup.
install/config/all.sh: dropped the eight deleted entries.
All three packages (omarchy, omarchy-settings, omarchy-installer) still
build clean.
* Run SwayOSD as a session service
* Restart SwayOSD after clean exits
* We don't need the input backend (as we manage the hotkeys in Hyprland)
* Ensure we cleanup the old service starter
* Not needed
* Not needed either
* Clean up migration
---------
Co-authored-by: David Heinemeier Hansson <david@hey.com>
* Enable middle-click primary paste for GTK/Chromium apps
gsettings-desktop-schemas 50.x ships gtk-enable-primary-paste=false as
the default. GTK4 apps (Ghostty 1.3.0+) and Chromium-family browsers
honor that setting and silently no-op middle-click paste, even though
the primary selection itself works (wl-paste --primary returns text,
Firefox/LibreOffice paste fine because they implement primary paste
themselves rather than going through GTK).
Flip the GSetting to true so middle-click paste behaves the way Linux
desktop users expect across Ghostty, Brave, and Chromium.
Closes#5371
* Address Copilot review on #5577
Move install-time GSetting from install/config/ to install/first-run/
so it runs after login when a session D-Bus is guaranteed (matching the
existing gnome-theme.sh convention). Make the migration's gsettings
call best-effort with `|| true` so a missing dconf service doesn't
trigger the omarchy-migrate skip prompt.