A package that links Qt private API has to be rebuilt whenever qt6-base moves, because Qt_6_PRIVATE_API symbols are not covered by the soname and pacman upgrades Qt out from under the installed binary while the dependency stays unversioned. Nothing here noticed. Both version gates ask whether the package's own source moved, and for a VCS package pinned to a commit that answer stays no through every Qt release.
Unlocking the build gate would not have been enough on its own. A rebuild that reuses the published version string produces a package pacman never offers anyone, so the trigger has to edit git and bump pkgrel, which is why it sits beside sync-aur and sync-upstream rather than inside check-versions or the builder. Once pkgrel moves, both existing gates already do the right thing untouched.
Packages opt in with rebuild_on in .omarchy/package.json. bin/sync-rebuilds records what each was last bumped for in rebuilt_against and compares that to core, extra and multilib, ignoring testing and kde-unstable because those are not what the builder links against. A package with no record yet is only recorded, never bumped: what its published build linked against is not knowable from here, so the first run establishes the baseline. For an AUR-synced package the bump is written as the dotted Omarchy pkgrel suffix in the metadata as well, since the next sync replaces the PKGBUILD wholesale and would otherwise drop it.
🤖 Generated by Opus 5 in Claude Code.
A second review pass found the PKGBUILD rewriting could still go wrong in ways
the pattern matching did not anticipate: an array element carrying a ")" in a
comment left the tail of the old array behind, and jq's "$" also matches before
a trailing newline, so a pkgver of "1.0\n" passed validation and then broke sed
after the checksum arrays had already been written.
Rather than chase each shape, prove the result. Every edit now lands on a
scratch copy that is parsed with bash -n and read back to confirm it holds the
version and checksums we meant to write, and only then replaces the PKGBUILD in
a single rename. Corruption that slips past the matching fails loudly with the
original untouched instead of landing in a pull request.
The validation anchors are \A and \z accordingly, empty checksum lists are
rejected rather than written as '', and the hook picks the newest stanza with
vercmp so it agrees with the comparator the updater uses.
Also stop the launcher probing /.config when HOME and XDG_CONFIG_HOME are both
unset, and require a regular file, so a directory at that path is skipped
instead of crashing the app on startup.
Co-Authored-By: Claude Opus 5 (1M context) <noreply@anthropic.com>
Some vendors publish a release feed of their own that is faster and more
precise than anyone's packaging of it. A package opts in with an
.omarchy/upstream.sh hook that reports the newest release as JSON, and the
driver rewrites pkgver, the checksum arrays the hook names, and pkgrel.
Writes are guarded on both ends: every assignment the update will touch is
verified to exist before anything is written, so a hook naming an array the
PKGBUILD lacks fails with the file untouched rather than half rewritten; and
pkgver is held to pacman's character set, because it lands in a file makepkg
sources as shell.
Ordering is vercmp's, not sort -V's -- they disagree about whether 1.0a
precedes 1.0, and pacman is what decides if a published package is an upgrade.
That is also why the workflow runs in an Arch container rather than straight on
the runner.
Co-Authored-By: Claude Opus 5 (1M context) <noreply@anthropic.com>
The first version checked for pacman and refused anything else, so it would
have declined to run on the actual repository host. Nothing about that host
needs to be Arch: makepkg, repo-add and signing all happen inside containers.
Setup now detects apt or pacman and installs the right names for each --
bsdtar is libarchive-tools on Debian and libarchive on Arch. The requirement
list drops gnupg and the Arch build tools, which the host never runs directly,
leaving Docker, rclone, bsdtar, jq, git and rsync.
Docker is checked before being installed. A host may be running a version from
Docker's own repository, and replacing that underneath a working builder would
be a poor trade for consistency; setup starts it if stopped and otherwise
leaves it alone.
Verified both paths: apt installs the five dependencies and docker.io on a
bare Ubuntu 24.04 container, and an Arch host with Docker already running is
left untouched. A missing systemctl now reports that a container cannot be a
repository host instead of failing on an unknown command.
Co-Authored-By: Claude Opus 5 (1M context) <noreply@anthropic.com>
The sync guard could not read the repository database because bsdtar was not
installed on the host, and the first fix was to parse around its absence. The
better answer is for the host to have what the tooling needs: libarchive ships
the library pacman links against without necessarily installing the binary, so
bsdtar being present was an assumption, not a fact.
bin/setup installs the dependencies, enables Docker, creates the state
directory, and installs and enables the release timers -- the steps the README
previously listed by hand. It is idempotent and takes --check to report without
changing anything. Signing credentials and the rclone remote hold secrets, so
it reports on those rather than creating them.
sync-repo goes back to reading the database with bsdtar alone, and says to run
bin/setup when it is missing.
Co-Authored-By: Claude Opus 5 (1M context) <noreply@anthropic.com>
The partial-tree guard parsed omarchy.db with bsdtar, which is not installed on
the repository host. Every sync there aborted with "the remote database exists
but could not be read" -- a guard meant to catch a partial tree instead blocked
a complete one, stopping a publish after sign, promote and update had already
succeeded.
GNU tar reads the database fine when it is a seekable file; the pipe was what
defeated it originally, and that is already downloaded to a temp file. tar now
leads, with bsdtar as a fallback for a tar too old to detect zstd.
Co-Authored-By: Claude Opus 5 (1M context) <noreply@anthropic.com>
--package meant a pkgbase to bin/build and a literal package name to
bin/push-build, so deploy --package nvidia-580xx-utils built three packages and
published one, leaving nvidia-580xx-dkms and opencl-nvidia-580xx behind with no
indication anything was missing. Hit while deploying exactly that package.
Selection now matches on the pkgbase recorded in .PKGINFO as well as on the
package name, so a pkgbase ships all of its outputs and an individual name
still selects just that one.
Co-Authored-By: Claude Opus 5 (1M context) <noreply@anthropic.com>
bin/build asks the local repository database which packages are already built.
A build machine has no such database, so every package looks out of date: an
unscoped 'bin/repo deploy' on this laptop would have built all 108 packages and
published them. Verified with a dry run.
deploy now refuses to run unscoped when that database is absent, and push
refuses the same combination under --yes, where nobody would see the list it
prints before publishing. Both are allowed on the repository host, which has
the database that makes the comparison meaningful.
Also states the split in the README: build, push and deploy are the three
commands that may run off the repository host; everything else works on the
published tree directly.
Co-Authored-By: Claude Opus 5 (1M context) <noreply@anthropic.com>
Builds now happen wherever the operator likes, so naming the destination after
building described the old arrangement rather than the current one. What the
push and deploy commands reach is the machine that serves pkgs.omarchy.org and
holds the signing key: the repository host. It also runs the scheduled builds,
which is why the trigger in omarchy-pkgs release points at the same place.
Resolution moves into helpers/host-helpers.sh, which all three commands now
share instead of repeating: --host, then OMARCHY_REPO_HOST, then .repo-host.
OMARCHY_BUILD_HOST and .build-host keep working as fallbacks, so existing
environments and checkouts are unaffected.
Co-Authored-By: Claude Opus 5 (1M context) <noreply@anthropic.com>
The worst was fatal: push passed --skip-prod-check to upload-prebuilt, which
forwards every argument to sign, promote and update as well, and sign rejects
unknown options. Every non-dry-run push and deploy would have uploaded and
verified its artifacts and then failed before signing. upload-prebuilt now
routes publishing flags to sync alone.
The partial-tree guard was weaker than it looked:
- it counted archive files locally against package names in the remote
database, and this tree keeps two versions per package, so a checkout with
a spare version of half the repository could pass while still hiding
hundreds of packages. It now compares package-name sets and lists what
would be hidden.
- it treated any unreadable remote as an empty one, so an auth failure or a
corrupt database disabled it. Only rclone's "directory not found" now
counts as a fresh mirror; every other failure aborts.
Also:
- sync had no set -e, so a failed package upload fell through to publishing
the database, advertising packages that were never uploaded. Each transfer
is now checked before the next step.
- --package with no names silently meant "every package", which under --yes
could publish everything from one unset variable in a script.
- push now refuses to run when the host has packages staged from an earlier
failure, since publishing would sign and promote those too.
- epoch versions contain a colon, which rsync reads as host:path, so no
package with an epoch could be transferred. Sources are ./-prefixed.
- remote paths are quoted for the remote shell.
- sync spun forever on a missing option value.
Co-Authored-By: Claude Opus 5 (1M context) <noreply@anthropic.com>
deploy runs build then push, which is the whole workflow on a local build
machine. It resolves the build host before building so a missing --host fails
in a second rather than after a long compile.
--host now overrides $OMARCHY_BUILD_HOST and .build-host on deploy, push, and
the build trigger in omarchy-pkgs release, so a server can be named per
invocation without arming the release auto-trigger.
Co-Authored-By: Claude Opus 5 (1M context) <noreply@anthropic.com>
Heavy packages build faster on a local machine, but there was no way to get
the artifacts to the server: bin/upload-prebuilt publishes to the rclone
remote from whatever tree it runs in, so the local -> host hop was manual.
bin/repo push rsyncs build-output artifacts to the host, verifies checksums,
and runs upload-prebuilt over ssh. Signing stays on the host, which is the
only machine with the key and the only one holding a complete repository.
Publishing from a local checkout was worse than merely unsupported. sync ran
rclone sync --delete-after against a tree that pkgs.omarchy.org/ gitignores,
so on any machine that had not run a full release it would have deleted the
production repository -- guarded only by a y/N prompt that --skip-prod-check
turns off. Package uploads are now additive, deletion moves behind --prune,
and sync refuses to publish a database built from a tree holding fewer
packages than the remote already lists.
Co-Authored-By: Claude Opus 5 (1M context) <noreply@anthropic.com>
One-command releases for the omarchy + omarchy-settings pair:
bin/omarchy-pkgs release v4.0.0 | latest | rc [--commit sha] [--base X.Y.Z]
Rewrites both PKGBUILDs in lockstep (same _tag/_commit/pkgver/sha256sums,
pkgrel reset to 1), normalizes upstream tag forms to the vercmp-safe
attached rcN convention, refuses downgrades against the published edge DB,
regenerates and verifies checksums from a cached mirror clone, commits and
pushes to master, and triggers the build host when OMARCHY_BUILD_HOST is
configured. RCs stay on edge; finals are promoted with bin/repo migrate.
Includes a self-test covering tag normalization and pacman ordering, and a
README runbook.
A transient network failure cloning retroarch-joypad-autoconfig-git took
the whole sync workflow red. Clones now retry up to 3 times, and the
failure message includes git's actual error instead of guessing "may not
exist in AUR" — which was never the cause anyway: AUR serves an empty
repo for unknown package names, so that case is now detected explicitly
by the missing PKGBUILD.
Co-Authored-By: Claude Fable 5 <noreply@anthropic.com>
The dev packages are versioned off the quattro tip, so rebuilding the
same upstream commit yields the same filename. Promotion treated any
pre-existing filename as fatal, which wedged the release loop whenever a
run promoted but died before update-repo rebuilt the database: the stale
database kept advertising the older hash, so every later run rebuilt the
identical package and failed here again, retaining the state file each
time.
Compare the bytes instead. Identical packages are skipped and the run
continues, so the following update-repo step fixes the database and the
loop unsticks itself. Differing content under a published filename still
aborts. Signatures are judged by the package they sign, since gpg stamps
a timestamp into every signature and a re-signed package never matches.
Co-Authored-By: Claude Opus 5 (1M context) <noreply@anthropic.com>