pacman refuses to install over a file it doesn't own, so any path an
Omarchy package starts shipping that a script had already written by
hand aborts the whole upgrade:
omarchy-settings-dev: /usr/lib/systemd/user/omarchy-fcitx5.service exists in filesystem
Errors occurred, no packages were upgraded.
The mitigation was a hand-maintained --overwrite allowlist, and it only
worked with foresight: an entry had to ship a release before the package
took the path, because pacman checks conflicts during transaction
prepare, so the script running the upgrade is the one already on disk. A
missed entry left people hard-stuck, since the upgrade that would
deliver the entry is the one refusing to run.
So react instead. omarchy-update-system-pkgs now does the ordinary thing
and hands a failed transaction to omarchy-update-system-pkgs-when-
conflicted, which moves the offending files out of the way and runs the
upgrade again. Nothing has to be predicted, and the allowlist is gone.
Moving rather than overwriting is what makes it small: no --overwrite
argument to build, no glob escaping, no separate backup step, and a
leftover directory is cleared too, which --overwrite cannot do at all.
Files go to /var/lib/omarchy/replaced/<original path>, not next to the
original. A sibling copy is not inert -- SDDM reads every file in
sddm.conf.d whatever its extension, and systemd-sleep runs every
executable in system-sleep -- and the directory a future path lives in
is unknowable, which is the whole point of a mechanism for paths nobody
predicted.
What it will not do:
- Take a file another package owns. pacman reports those with a
"(owned by x)" suffix, so the end anchor excludes them, and pacman -Qo
re-checks the live database before anything moves.
- Move a subset. If any reported conflict isn't recoverable the retry is
doomed anyway, and moving leaves that config inactive for nothing --
worse than the stuck-but-intact state.
- Leave anything inactive that was live. A failed retry, a failed move
partway through the loop, or an interrupt all put back whatever the
upgrade didn't install.
- Act on a report handed to it by hand. It is internal to the update,
and an old report would clear live files for an upgrade that isn't
happening.
Also adds a test that fails when a script writes a path under /usr that
no PKGBUILD installs, since not creating these is cheaper than
recovering from them. It reads the destination off the command, so a
path assembled from variables still slips through; the two known cases
are recorded with their reasons.
Co-Authored-By: Claude Opus 5 (1M context) <noreply@anthropic.com>
omarchy-migrate-notify handed its notification to `systemd-run --scope`,
which is synchronous: the calling process becomes the payload, so
systemd-run does not return until the toast has been answered -- and if
the toast is clicked, not until the migration terminal it opens has been
closed.
omarchy-migrate-notify.service is Type=oneshot, which defaults to
TimeoutStartUSec=infinity, so the unit sat in activating for exactly that
long. On a machine that had not yet picked up c7e327b0, which orders the
notifier after graphical-session.target, that held the target open --
and wayland-wm-app-daemon.service is ordered after the same target, so it
never started. Every keybinding goes through uwsm-app, which waits ten
seconds for that daemon's pipes and then reports "App failure -- Timed
out waiting for pipes!" instead of launching anything. Keybindings were
dead for two minutes and seventeen seconds, until a pacman hook ran
`systemctl reload user@*.service`, whose re-exec of the user manager
broke the scope's bus connection and let the oneshot finish. That also
made systemd-run exit non-zero, so the notifier fell through to the
terminal fallback meant for having no user manager at all, and printed
the migration list into the journal.
Hand the notification to a transient service instead. systemd-run
returns once the unit has started rather than once the payload is done,
so the oneshot completes in milliseconds and nothing ordered after the
target waits on a toast. Put it in background-graphical.slice, which
systemd ships with PartOf=graphical-session.target, so an unanswered
toast ends at logout rather than outliving the session.
The terminal a clicked toast opens is unaffected: uwsm-app re-registers
it into app-graphical.slice, outside this unit's cgroup.
Co-Authored-By: Claude Opus 5 (1M context) <noreply@anthropic.com>
fcitx5 is what turns the CapsLock compose sequences in ~/.XCompose into
text for Wayland clients -- CapsLock m s for an emoji, CapsLock space n
for your name. It was launched fire-and-forget from Hyprland's autostart
via uwsm-app, so nothing supervised it, nothing restarted it, and it
logged nowhere. When it went away, every compose sequence stopped
working for the rest of the session with no visible symptom beyond
"emoji input is busted", and no record of why.
That is not hypothetical: it was found dead on a running machine with no
coredump, no OOM kill, and nothing in the journal to explain it.
Move it to a systemd user service:
- Restart=always, not on-failure. fcitx5 exits 0 when it finds another
instance already owning org.fcitx.Fcitx5, and a clean exit still
leaves the user with no input method.
- After=/PartOf=graphical-session.target. It needs WAYLAND_DISPLAY and
DISPLAY, which uwsm imports into the user manager before reaching the
target, and its wayland connection dies with the compositor.
- ConditionEnvironment=WAYLAND_DISPLAY. After= is ordering only and does
not stop the unit from being started while the target is inactive. An
update over SSH has a live user manager (pam_systemd) and no graphical
session, and a fcitx5 started there comes up blind -- then stays
active, so the later target activation won't pull in a working one,
because Wants= does not restart what is already running. Skipping the
start leaves the unit enabled and healthy for the next graphical login.
The migration hands over inside a live session only: it enables without
--now, and only when graphical-session.target is active does it drop the
autostart-launched process and start the unit. Because that kills a
fcitx5 that was working a moment ago, a failed start is reported instead
of leaving the session mute with the migration marked complete.
omarchy-restart-xcompose now drives the unit. It still clears any fcitx5
running outside it first: that process owns the bus name, so the unit's
instance would exit on arrival and the stale one would keep serving the
old table -- a restart that reports success and changes nothing.
Side benefit: fcitx5 now logs to the journal under its own unit, so the
next disappearance leaves a record.
Co-Authored-By: Claude Opus 5 (1M context) <noreply@anthropic.com>
The retired omarchy-update-user-notify.path stays loaded in sessions that
started before the update removing it, and pacman writes the migrations
directory mid-transaction, so it fired a critical toast for migrations that
omarchy-migrate was about to apply a step later. Migration 1785095882 stops
that watcher, but migrations run after pacman, so it lands 11 seconds too
late to prevent the toast it exists to retire.
Check the lock omarchy-update holds for its whole pipeline instead of
trusting that no trigger exists. That covers the stale watcher and anything
added later: during an update every pending migration is by definition
already being applied. The check repeats after waiting for the notification
server, which is long enough for an update to start underneath it.
Only this user's runtime directory is read, never the /tmp path the updater
falls back to without XDG_RUNTIME_DIR. A shared lock file belongs to whoever
created it first, so honouring it would let one user silence another user's
notification; a redundant toast is the better failure.
The sleep inhibitor now starts with the lock descriptor closed. It outlives
the step that starts it, so an update killed before restore_update_inhibitors
left it holding the flock indefinitely. That already blocked later updates,
and now that the notifier reads the same lock it would have silenced
migration notices at every login.
Co-Authored-By: Claude Opus 5 (1M context) <noreply@anthropic.com>
Chromium ships in the base packages, so it never goes through
omarchy-install-browser, and a first install stamps every migration as
already applied without running it. That left both bundled extensions
loaded from chromium-flags.conf with no host to talk to: Copy URL did
nothing at all, since the clipboard write and the toast both live in the
host.
The user install now registers both hosts itself, and a migration
repairs the installs that already missed out — Copy URL since 1784763917
landed, Download Video since 1780517689, unless installing a browser or
refreshing Chromium happened to fix them along the way.
Co-Authored-By: Claude Opus 5 (1M context) <noreply@anthropic.com>
Claude-Session: https://claude.ai/code/session_01VeAd2iERgi7bRSxq2gA1hp
The migration went away in 88ef6ca5, and the test resolved it by grepping
migrations/ for its banner, so it could only fail from that commit on. It
used the shipped 90-omarchy.conf as a fixture only; config-test and
zram-migration-test still cover that file.
Co-Authored-By: Claude Opus 5 (1M context) <noreply@anthropic.com>
omarchy-migrate-notify.service is a Type=oneshot wanted by
graphical-session.target, and systemd complements a target's Wants= with an
implicit After=, so the target waited for the notifier to exit. The notifier
does not exit quickly: it sends the notification through systemd-run --scope,
which is synchronous, and omarchy-notification-send -a blocks until the user
clicks. The target stayed in activating for as long as the toast was up.
wayland-wm-app-daemon.service is After=graphical-session.target and nothing
wants it, so uwsm-app starts it on demand. Clicking the notification runs
omarchy-launch-floating-terminal-with-presentation, which execs uwsm-app,
which blocks on a systemctl --user restart of that daemon -- a job queued
behind the very target the clicked notifier was holding open. The terminal
never opened; uwsm-app gave up on its own pipe timeout instead.
Declaring After= on the wanted unit suppresses the implicit dependency rather
than forming a cycle, so the target is reached without waiting and the
notifier runs behind it.
Co-Authored-By: Claude Opus 5 (1M context) <noreply@anthropic.com>
The bar is instantiated once per screen, so each widget registers its IPC
handler once per screen and Quickshell reports a collision for every screen
past the first. Failing on any collision would have failed the suite on
multi-monitor desktops for behaviour that is correct; allow one per screen
and fail only beyond that, which is still what duplicate component loads
produce.
Co-Authored-By: Claude Opus 5 (1M context) <noreply@anthropic.com>
Qt.createComponent is asynchronous, but a widget was only recorded in
pluginWidgetComponents once its component finished. syncPluginWidgets runs
several times while the shell starts, and every pass that ran while a load
was still in flight could not tell it apart from one that had never
happened — so it started a second load of the same URL. All twenty bar
widgets were loaded twice.
The duplicate component then replaced the first in the registry, and
swapping a slot's component makes its Loader build the replacement before
dropping the original. Both were briefly live, and both registered the
widget's IPC handler, which is where the "another handler is registered
for target" warnings came from.
Claim the key when the load starts instead, and release it if the
component fails so a later rescan can retry.
Co-Authored-By: Claude Opus 5 (1M context) <noreply@anthropic.com>
Both sides tightened the same center-layout assertion. Taking quattro's:
it asserts the weather/update adjacency the test name is about instead of
pinning the whole row, which is what kept breaking it.
Co-Authored-By: Claude Opus 5 (1M context) <noreply@anthropic.com>
The center section declares both an anchored and an unanchored
arrangement and shows whichever fits, but a hidden ModuleList is still a
loaded Loader. With a center anchor set — the default — every center
module was therefore mounted twice for the life of the session: two IPC
handlers registered for the same target, two clocks ticking, two of every
timer and network fetch behind them, one set of which nothing could
reach.
Co-Authored-By: Claude Opus 5 (1M context) <noreply@anthropic.com>
Double-tapping the year bar asks for a birth year and a life expectancy,
and a second bar appears below measuring one against the other. Tab moves
between the two, Enter commits the pair, Escape drops them. Hovering the
bar names the thing, and double-tapping it puts it away again.
A birth year rather than an age, so the bar keeps counting on its own
instead of going stale the moment it is entered. Expectancy defaults to
ninety and falls back to it when what is entered makes no sense, so the
bar always has something to measure against; a birth year that makes no
sense leaves the bar hidden instead, which is also where it starts.
Putting the bar away keeps the expectancy, so setting a birth year again
brings your own number back rather than the default.
Co-Authored-By: Claude Opus 5 (1M context) <noreply@anthropic.com>
The resize guard reads the Used column for /dev/zram0 out of /proc/swaps
and treats a missing row as an empty device, which is right for a device
that doesn't exist yet: the restart is what brings it up against the
config daemon-reload just generated. A device that exists and is merely
swapped off reads the same, and there the restart resets it first, which
returns EBUSY for as long as anything still holds it open. That leaves a
bare "Job failed. See 'journalctl -xe' for details." in the migration
output and falls through to asking for the reboot that would have
resized it anyway.
Tell the two apart by whether /sys/block/zram0/disksize is there at all.
The test modelled an absent device as a blank disksize file, which no
longer stands in for one, so it removes the file instead.
Co-Authored-By: Claude Opus 5 (1M context) <noreply@anthropic.com>
Its setup check grepped omarchy-setup-system for config/snapper.sh, which
the config phase has run since the install was split into phases.
The omarchy-pkgs and omarchy-iso lookups also missed the sibling checkout
layout that f375113f taught config-test about, so they failed on machines
where config-test passed. Both now take an explicit path override.
Co-Authored-By: Claude Opus 5 (1M context) <noreply@anthropic.com>
updatedb refuses to run at all on a config that defines a variable twice
("variable `PRUNEPATHS' was already defined"), so any rewrite that misses
an existing line and appends a second one takes the locate index down
rather than fixing it. Two shapes updatedb accepts got missed: a trailing
comment after the value, and a setting indented by whitespace.
Read the existing paths out of the quoted value and write the whole
setting back canonically instead of splicing into a line of unknown
shape. Quotes are not optional to updatedb ("value in quotes expected
after `='"), so a bare value is already a broken config: rewriting it
quoted repairs the file as a side effect.
The tests now hand every rewritten file to the real parser through
`updatedb --config-file`, which is what caught this.
Read the Snapper config as root when the running user cannot read it.
snapper create-config leaves the config root-only, and a config the user
cannot read was passing for one that wants its timeline snapshots kept.
Report the snapshots the drain could not delete. omarchy-migrate writes
the completion marker whether or not the batches succeeded, so there is
no later run to pick up the remainder, whatever the comment claimed.
Co-Authored-By: Claude Opus 5 (1M context) <noreply@anthropic.com>
A cloned bar widget is copied out on its own, so a relative JS import
lands in a directory without the file and the clone fails to load. Point
those imports back at the bundled module, the same way Qt.resolvedUrl()
references were already rewritten.
Co-Authored-By: Claude Opus 5 (1M context) <noreply@anthropic.com>
Claiming the shared suppression flag before showing meant the outgoing
panel's close cleared it again, leaving the incoming panel open with the
indicators still revealed. Guarding the clear instead only moved the
problem: handing off to a panel that does not manage the flag left it
stuck on, and the center indicators stopped revealing on hover for good.
Claim it after the handoff instead. The panel taking over always wins,
and a handoff to a panel that knows nothing about the flag still leaves
it cleared.
Co-Authored-By: Claude Opus 5 (1M context) <noreply@anthropic.com>
Clicking the clock reveals a month grid with ISO week numbers, a year
progress meter, and month stepping. Right click walks the common label
formats and writes the chosen one back to shell.json, so the bar shows
what the config stores. The week start toggles from the grid's "W"
heading and persists as weekStartDay, defaulting to the locale's own
first day.
Rich popup widgets live in their own plugin directories, so the clock
moves out of bar/widgets/ into panels/clock/. The id is unchanged, so
existing layouts and centerAnchor keep working.
Co-Authored-By: Claude Opus 5 (1M context) <noreply@anthropic.com>
The bar identifies a panel by the widget mounted in its slot, but the
nested panel handed the popout coordinator itself. The open-panel mark
never lit under the weather pill, and Tab could not leave the panel.
Closing for a popout switch also cleared the shared hover-reveal flag the
incoming panel had just set.
Co-Authored-By: Claude Opus 5 (1M context) <noreply@anthropic.com>
A center-anchored module is mounted twice: the copy that is drawn, and a
zero-size placeholder holding its place in the flow beside the anchor.
findPanelWidget returned whichever registered first, and that order is
not stable across a live bar reconfiguration, so a panel could open
anchored to the invisible copy -- mispositioned, with the drawn slot
never lighting up and switchPanelFrom unable to find it again.
The mark was also always 55% of the slot, which fits an icon but
underlines only a fraction of a text label, and runs the full height of a
multi-line module on a vertical bar. Modules can now say how long the
mark should be along the bar; anything that does not answer keeps the old
proportion.
Co-Authored-By: Claude Opus 5 (1M context) <noreply@anthropic.com>
The center layout was reordered when the indicators moved next to the
clock, but the assertion kept the old order, so this has been failing on
quattro since.
Co-Authored-By: Claude Opus 5 (1M context) <noreply@anthropic.com>
* Send files to a tailnet machine with Taildrop
The panel gets a send button next to the copy one on every machine that
Tailscale grades as a Taildrop target, and `s` does the same from the
keyboard. Picking runs through the XDG portal chooser, so it looks like
the file dialog every other app opens.
Co-Authored-By: Claude Opus 5 (1M context) <noreply@anthropic.com>
Claude-Session: https://claude.ai/code/session_01TJQJfHXXApUk6En8EZisHg
* Save incoming Taildrop files and say so
Linux keeps Taildrop files in the daemon's inbox until someone asks for
them, so nothing arrived until you ran `tailscale file get` by hand. A
user service now stages each delivery next to the downloads directory,
hands it over under a free name, and announces it — with a preview when
it's an image, and a click to open it.
Co-Authored-By: Claude Opus 5 (1M context) <noreply@anthropic.com>
Claude-Session: https://claude.ai/code/session_01TJQJfHXXApUk6En8EZisHg
* Float every portal dialog, not just the titled ones
The portal only ever shows dialogs, and the title regex missed any
chooser an app names something else — ours included.
Co-Authored-By: Claude Opus 5 (1M context) <noreply@anthropic.com>
Claude-Session: https://claude.ai/code/session_01TJQJfHXXApUk6En8EZisHg
* Re-run the Taildrop enable now that the unit ships
The unit was never installed to /usr/lib/systemd/user/, so the enable had
nothing to act on and machines that already ran the migration carry a marker
for a no-op. Rename it so they get a working pass, and report what systemctl
says instead of a bare failure line.
Co-Authored-By: Claude Opus 5 (1M context) <noreply@anthropic.com>
* Wait for the file chooser on the connection that asked for it
The portal answers a request with a Response signal directed at the connection
that made it, and dbus-daemon delivers directed signals only to that
connection. gdbus monitor registers with AddMatch rather than BecomeMonitor, so
it never saw the reply: every pick left omarchy-file-select blocked on a read
that could not arrive, taking omarchy-tailscale-send down with it before it
reached either its notification or the transfer.
Make the call and wait for the signal on one connection, and give up after ten
minutes so an unanswered dialog cannot strand the caller.
Drop the "Sending to" notification while here, so a send reports once.
Co-Authored-By: Claude Opus 5 (1M context) <noreply@anthropic.com>
* Mark Taildrop notifications with the panel's send glyph
Co-Authored-By: Claude Opus 5 (1M context) <noreply@anthropic.com>
* Stop a hung tailscale poll from freezing the panel
Each poll is skipped while its own process is still running, so one that never
exits leaves the panel showing whatever it last read, for good: the peer list
keeps a woken machine missing, and opening the panel cannot help because open
runs the same refresh that hits the same guard.
Reap anything still running fifteen seconds after a refresh, well inside the
thirty second interval, so the next tick starts clean.
Co-Authored-By: Claude Opus 5 (1M context) <noreply@anthropic.com>
* Place a moved widget where an added one lands
'move omarchy.media left' named a section, not a slot, but the section went
through as an explicit target, which resolves a missing index by appending. The
widget landed on the far end of the row instead of after the section anchor
where 'add' puts it.
Its test has never run: the assertion covering this went in four hours after an
unrelated layout change had already stopped the file, and the runner stops the
whole suite at the first failure.
Co-Authored-By: Claude Opus 5 (1M context) <noreply@anthropic.com>
* Keep the config test from failing on things it is not about
The center layout assertion pinned the whole row, so parking the indicators
left of the clock broke a test named for update sitting next to weather. Assert
that adjacency instead.
The package-defaults check reads PKGBUILDs from the omarchy-pkgs repo and blew
up with a traceback wherever that is not a sibling checkout. Skip it when the
checkout is absent, honour OMARCHY_PKGS_ROOT when it is somewhere else, and
keep failing when it is present and wrong.
Between them these stopped the suite eighty files early.
Co-Authored-By: Claude Opus 5 (1M context) <noreply@anthropic.com>
* Make the file chooser a Python command rather than a bash host for one
The portal work was a heredoc wedged inside a bash script that existed only to
parse two flags. Drop the host: argparse covers the flags, and the file says at
the top why it is the one command here not written in bash.
Co-Authored-By: Claude Opus 5 (1M context) <noreply@anthropic.com>
* Tell a chooser that never opened apart from one that was dismissed
Three fixes from review:
The poll watchdog rearmed on every refresh, so a refresh interval shorter than
its timeout — the setting goes down to five seconds — pushed the deadline ahead
of a hung process forever. Arm it on the launch that needs watching and leave
it alone.
omarchy-file-select exited 1 both for nothing picked and for a chooser that
could not run, and omarchy-tailscale-send read it through a process
substitution, which drops the status anyway. A session bus that was not there
looked exactly like someone changing their mind. Separate the two exits and
read them with a command substitution.
Delivery picked a free name and then renamed, which overwrites anything that
takes the name in between. Link to the name instead: link(2) refuses one that
is taken, so the check and the claim are the same step.
Co-Authored-By: Claude Opus 5 (1M context) <noreply@anthropic.com>
---------
Co-authored-by: Claude Opus 5 (1M context) <noreply@anthropic.com>
The machines this targets are the ones with an updatedb already grinding
through every snapshot, and `systemctl start` on an active unit is a
no-op. updatedb reads /etc/updatedb.conf once at startup, so a run that
began before the rewrite keeps burning CPU on the old config until it
finishes. Restart the service instead: it's Type=oneshot and plocate
builds into a temp db, so nothing is lost by replacing the run.
Quotes are optional in updatedb.conf, so parse the existing paths out of
whatever quoting the file uses and write the setting back in one
canonical form. `PRUNEPATHS=/tmp` previously fell through to the append
branch and got a second PRUNEPATHS line, which drops /tmp from the
pruned set. Comparing whole paths rather than substrings also keeps a
config that already prunes something like /var/lib/machines/.snapshots
from being mistaken for one that prunes /.snapshots.
Prefer $OMARCHY_PATH over the packaged copy when locating the config
script, per docs/migrations.md, so the migration test exercises the
checked-out script rather than whatever release is installed. Skip when
neither exists: omarchy-migrate runs under set -e, so a missing script
would take down every migration queued behind it.
Co-Authored-By: Claude Opus 5 (1M context) <noreply@anthropic.com>
Prepending us whenever the layout wasn't already us would have demoted
every Latin layout — de, fr, dk — to a secondary group, so those users
would have booted into a US layout they never asked for. Latin layouts
resolve the default keysym bindings fine, so only the layouts that can't
type Latin letters need us in front. That list already exists for the
initramfs hook, and a test keeps the two copies in sync.
Also match on the first layout rather than looking for us anywhere in
the list: Hyprland resolves bindings against the leading entry, so
"il,us" needed the fix just as much as "il" did.
Co-Authored-By: Claude Opus 5 (1M context) <noreply@anthropic.com>
* Anchor the webcam overlay to the recorded region, not the monitor
Recording a single window on an ultrawide put the camera outside the frame.
The overlay is placed twice, and neither placement knows what is being
captured: the window rules in default/hypr/apps/webcam-overlay.lua position it
from monitor_w/monitor_h, and omarchy-capture-webcam-resize recomputes the same
corner from hyprctl monitors. Both resolve to the monitor's bottom-right, so a
window anywhere but the far right of the display records without the camera in
it, and dragging it into frame by hand is undone by the next resize.
The geometry is already known. select_capture_target resolves the picked window
to a region rectangle before start_webcam_overlay runs, and a bare click in
smart mode snaps that rectangle to the window's own bounds. gpu-screen-recorder
takes the region in the compositor's logical coordinate space, which is the
same space window moves take, so the value needs no conversion to be reused as
an anchor.
Publish it for the resize helper, which becomes the single place that positions
the overlay. It anchors to the region when one is recorded and falls back to
the monitor otherwise, so full-monitor captures, the portal backend, and manual
resizes outside a recording all keep their current behaviour. A malformed or
empty file falls back the same way.
Presets scale from the anchor's height rather than the monitor's, so the camera
keeps its proportion of the frame instead of covering a small capture outright.
A tall, narrow region cannot fit a preset derived from its height, so widths are
capped to the space available and heights follow at the same 8:9 aspect.
Placement happens inside start_webcam_overlay rather than after it returns.
Correcting the position once that function had returned left the move adjacent
to gpu-screen-recorder starting, and the camera was recorded sliding the last
stretch into its corner over the opening frames. The overlay is waited for
explicitly instead, positioned, and only then does capture start.
Waiting for the map is what the blind second was partly guessing at, so the
remainder is trimmed to hold the delay before capture where it was. Starting
later is not free: it eats the opening words of whatever is being narrated.
* Keep the webcam size ladder usable in a narrow region
Capping each preset's width to the region separately collapsed small,
medium and large onto the same width, so Super + Alt + [ and ] had
nothing to step between, and integer division left small taller than
medium. Cap the height the presets scale from instead, which shrinks
the ladder as a whole and keeps the three sizes ordered and distinct.
Cover the anchoring in the test suite: a region the camera follows, the
fallback for an unreadable one, and the narrow-region ladder. Point
XDG_RUNTIME_DIR at the test's own directory while doing so — the resize
helper now reads a region file from there, and the existing geometry
assertions would pick up a real one from a live recording.
Co-Authored-By: Claude Opus 5 (1M context) <noreply@anthropic.com>
---------
Co-authored-by: David Heinemeier Hansson <david@hey.com>
Co-authored-by: Claude Opus 5 (1M context) <noreply@anthropic.com>
The three hardcoded candidates are all relative to a sibling of the omarchy
checkout, so a clone anywhere else, such as ~/Work/omacom/omarchy-pkgs, found
nothing. The block then crashed on read_text() and the whole test exited on an
unhandled traceback, which reads as an unrelated failure rather than a missing
checkout.
Add the omacom layouts, an OMARCHY_PKGS_PATH override taking either the
checkout or its pkgbuilds directory, and a named failure listing where it
looked.
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>
zram-generator creates no device at all when nothing configures one, so the
/etc copy is the only thing holding up swap until the vendor drop-in lands.
Removing it early costs a machine its zram entirely, not just its tuning.
The update pipeline installs packages before it runs migrations, so a packaged
machine always has the drop-in by then. A dev checkout does not: omarchy-update-dev
pulls migrations from a release the installed package has never seen, and no
ordering of the pipeline can produce a file that has not been built yet.
Checking for the drop-in is what makes the removal safe rather than well
sequenced.
The tests pinned the drop-in path to a fixture as well. Left at the real path
they would pass or fail on whether the machine running them happened to carry
the packaged copy.
Co-Authored-By: Claude Opus 5 (1M context) <noreply@anthropic.com>
zram-size = min(ram, 8192) is Fedora's default since F34, where
zram-fraction=1.0 with max-zram-size=8192 has run on desktops for five
years. The previous min(ram / 2, 8192) halved that on every machine
below 16G with nothing behind the fraction; at 16G and above the two
already agree.
A changed size only reaches a running device on the next boot, so the
migration resizes an empty device now and asks for a reboot otherwise.
It asks the generator what the config evaluates to rather than
repeating the expression here, and does neither when the device already
matches.
Co-Authored-By: Claude Opus 5 (1M context) <noreply@anthropic.com>
Say it once and match mergeAppRows: app rows sort after all menu items,
not interleaved among them.
Co-Authored-By: Claude Opus 5 (1M context) <noreply@anthropic.com>
Searching the menu for an installed app buried it: "brave" listed Setup >
Defaults > Browser, Install > Browser and Remove > Browser ahead of the
Brave app itself. All four are exact label matches scoring 0, so the
tiebreak falls to declaration order, and mergeAppRows appends app rows
after every static item.
Bias app rows ahead of menu entries that match equally well. The bias is
smaller than the gap between match tiers, so a menu entry that matches the
query better still sorts first.
Co-Authored-By: Claude Opus 5 (1M context) <noreply@anthropic.com>
pacman checks file conflicts during transaction prepare, so the --overwrite
entry added alongside /etc/systemd/zram-generator.conf never got to run: the
copy of omarchy-update-system-pkgs driving the upgrade is the one already on
disk. Every machine carrying archinstall's copy aborted the transaction.
zram-generator.conf(5) reserves /etc for the local admin and has vendors ship
snippets under /usr/lib/systemd/zram-generator.conf.d/, where drop-ins outrank
the main config file. Nothing collides, and the tuning wins whether or not
archinstall's file is still around.
Co-Authored-By: Claude Opus 5 (1M context) <noreply@anthropic.com>
Claude-Session: https://claude.ai/code/session_01LjeyQZsNBxqyYy9z8KaKm7
Closing the lid could suspend the machine with the session still exposed.
omarchy-sleep-lock held a delay inhibitor and waited for Quickshell to report
the session secure, but a delay inhibitor is a timer rather than a promise:
logind suspends once InhibitDelayMaxSec expires, locked or not. The default is
five seconds, and closing the lid also reconfigures displays -- exactly when
the lock service is waiting for the screen set to settle before it can secure.
The race is now off the critical path. switch:on:Lid Switch runs
omarchy-system-lid-close, which requests the lock the moment the lid closes,
before logind has decided to suspend at all, so the inhibitor window usually
finds the session already secure. A docked lid close does not suspend
(HandleLidSwitchDocked defaults to ignore) and must not lock either, since that
is clamshell mode still in use on the external display, so the handler gates on
the same closed-and-undocked pair logind itself keys on.
Suspends that never touch the lid -- idle timeout, the system menu, low battery
-- still arrive through the inhibitor, so that path gets room to work too. The
shipped drop-in raises InhibitDelayMaxSec to 15s, and the helper derives its
budget from logind's live InhibitDelayMaxUSec rather than assuming the drop-in
landed: a machine that has not reloaded logind yet, or that carries its own
override, gets a budget that fits what logind will actually allow. It leaves
logind a fifth of its own window and caps at 12s, so a hand-raised window
cannot strand a closed laptop awake in a bag.
The wait itself had three defects. Its deadline arithmetic read EPOCHREALTIME
assuming a period, so under any comma-decimal locale the subtraction parsed as
bash's comma operator and silently voided the deadline, leaving only the
attempt counter to stop it. The lock request shared the status polls' timeout
and exited on first failure, so a shell 300ms slow meant suspending unlocked;
it now has its own budget and is simply retried, since asking again is
idempotent. And a refusal the shell reports on stdout with a zero exit --
missing-pam -- read as success, burning the whole window on a lock that could
never happen.
Every call is bounded by what is left of the budget rather than by an estimate
of what the step should cost, so the deadline holds on hardware slower than
anything the constants were fitted to.
Failure is still possible and it used to be silent. It now writes to the
journal and raises a critical notification, which lands on the screen the user
unlocks into.
Incidentally, monitor-recovery-test asserted lid probing against
omarchy-hw-clamshell after that logic moved to omarchy-hw-laptop-closed. It
aborted the file under set -e, skipping the nine assertions behind it.
Co-Authored-By: Claude Opus 5 (1M context) <noreply@anthropic.com>
tmux only raises an activity flag for windows that are not currently
selected, so a long-running command in the window you left selected --
the common case, since you switch away by moving your Hyprland focus
elsewhere rather than by selecting another tmux window -- finished
silently and the indicator never lit.
Windows now also count as waiting when they are selected in an attached
client, every client showing them is unfocused, and their window_activity
is newer than an @omarchy_unfocused_activity watermark. The watermark is
stamped by a new `track` subcommand wired to client-focus-in/out and the
existing select-window hooks, so it records where attention last was.
The hooks pass #{window_id} and #{window_activity} as arguments, which
tmux expands when the hook fires; run-shell -b would otherwise let output
arriving during the handoff be swallowed by the new watermark. The focus
hooks take index 100 to leave a user's own bindings alone.
That state has no hook of its own, so it needs polling to be noticed.
The probe therefore moves out of the indicator and into a service plugin,
alongside nightlight and battery. A bar surface exists per monitor and
each one instantiates every indicator twice, once per block, so a timer
on the indicator meant a shell-out per instance per tick -- four probe
processes every three seconds on a two-monitor machine, forever. One
service polls for the whole shell instead.
Sharing the state also fixes what per-instance polling would have papered
over: each indicator used to own its own count, so a timer-driven update
only refreshed the bar it ran on and left the other monitors stale.
Refreshes still arrive over the existing indicator broadcast, which now
coalesces into a single run no matter how many bars relay it.
Co-Authored-By: Claude Opus 5 (1M context) <noreply@anthropic.com>
Claude-Session: https://claude.ai/code/session_018CC9kSQv8ZEogaxDoeKBzL
The tmux alert hooks fire omarchy-shell through run-shell, and run-shell
builds its own environment rather than passing the server's along, so the
hook ran without WAYLAND_DISPLAY. qs matches instances by display, so every
refresh from a bell died at "omarchy-shell is not running", which -q then
swallowed by design.
That left the indicator with no way to turn itself on. Its five second poll
only runs while the indicator is already active, so an alert raised after
startup was invisible until the shell happened to restart with the window
still flagged. The icon appeared roughly never.
Recovering the display from the socket in XDG_RUNTIME_DIR fixes it in the
one place that needs it, and covers any other caller reaching the shell from
a stripped environment rather than just the tmux hooks.
Co-Authored-By: Claude Opus 5 (1M context) <noreply@anthropic.com>
The apps list rebuilt its rows by writing into the maps held by the menu's
items and itemOrder var properties. Writing into an object owned by a QML var
property is not reliable: the same row object written into a plain JS object
always lands, but written through the property it occasionally arrives with the
key created and the value undefined. One write per rescan was lost, on a
different app each time.
A lost write left an id in itemOrder with no item behind it. The old purge only
deleted app rows it could find in items, so the orphan survived the next merge,
the add loop appended a second row for the same app, and the list grew by one --
permanently, and again on every later rescan. Touching a single desktop file
fires around a dozen merges, because the entry model emits valuesChanged per
insert and removal while it reconciles, so duplicates piled up quickly: nine
YouTube rows on the reporting machine, and Alacritty doubled before that.
The bookkeeping moves into MenuModel as two pure functions that build fresh maps
for the caller to assign in one shot, so the fragile write disappears. They also
make the merge self-healing rather than merely correct-when-nothing-is-lost: an
id with no item is dropped instead of carried forward, and an id is listed once
even when two desktop entries claim it -- so no single dropped write can compound
into a duplicate row again. The bash-backed providers behind the font and power
profile lists had the same latent bug and get the same treatment.
Co-Authored-By: Claude Opus 5 (1M context) <noreply@anthropic.com>
Claude-Session: https://claude.ai/code/session_01TJQJfHXXApUk6En8EZisHg
Clicking the Voxtype or fingerprint invitation did nothing. The launcher
execs setsid, which forks because the transient unit's main process is
already a process group leader, so the unit exits within milliseconds and
systemd's default control-group kill took the still-starting terminal down
with it. Run those units with KillMode=process instead.
The invitation tests had also drifted from the two-unit design and were
failing; teach the systemd-run mock to run the command it is given.