omarchy
REQUIRED for end-user customization of Linux desktop, window manager, or system config. Use when editing ~/.config/hypr/, ~/.config/omarchy/,…
Diagnose why a program crashed on this machine, from a systemd-coredump core dump. Use when a process has segfaulted, aborted, or otherwise dumped core, when asked why an application crashed or disappeared, or when a "Process crashed:" desktop notification is acted on. Triggers:
$ npx -y skills add basecamp/omarchy --skill diagnose-crash --agent claude-codeHow it fires
How this skill gets triggered: by you, by Claude, or both.
/diagnose-crashContext preview
The summary Claude sees to decide when to auto-load this skill.
Diagnose why a program crashed on this machine, from a systemd-coredump core dump. Use when a process has segfaulted, aborted, or otherwise dumped core, when asked why an application crashed or disappeared, or when a "Process crashed:" desktop notification is acted on. Triggers:
name: diagnose-crash description: > Diagnose why a program crashed on this machine, from a systemd-coredump core dump. Use when a process has segfaulted, aborted, or otherwise dumped core, when asked why an application crashed or disappeared, or when a "Process crashed:" desktop notification is acted on. Triggers: crash, segfault, SIGSEGV, SIGABRT, core dump, coredumpctl, "why did X crash", "X keeps crashing", backtrace symbolization. Covers reporting a confirmed Omarchy bug upstream — see reporting.md.
Work from evidence. The goal is an honest account of what happened, not a plausible-sounding story.
`coredumpctl info <pid>` is the starting point. Beyond the backtrace, note the **command line** the process was started with — it usually reveals what the program was working on when it died, which is often the whole answer.
`coredumpctl list` shows whether this crash is a one-off or a pattern. Repeated crashes of the same program, or several programs dying together, point somewhere different than a single failure does.
Check resource exhaustion before blaming the program: `free -h`, and the journal for OOM kills. A process killed by the OOM killer is not a bug in that process.
The crash timestamp is the most underused piece of evidence. Compare it against:
as the crash strongly suggests what triggered it.
neighbouring processes.
the update.
Thread stacks other than the crashing one show what work was **in flight** — thumbnailers, image loaders, IPC readers, GPU queues. That context often explains the trigger even when the crashing frame itself cannot be symbolized.
Note any third-party code in the address space: file-manager or browser extensions, plugins, out-of-tree drivers. In-process third-party code is a common crash source and worth flagging — but do not pin blame on it without evidence that it is actually implicated.
This is Arch, which runs a public debuginfod server:
core=$(mktemp -t crash-XXXXXX.core) trap 'rm -f "$core"' EXIT coredumpctl dump <pid> --output="$core" DEBUGINFOD_URLS="https://debuginfod.archlinux.org" \ gdb -q <executable> "$core" \ -batch -ex 'set debuginfod enabled on' -ex 'bt'
A core is a verbatim copy of the process's memory and can hold passwords, tokens, and private documents. Write it to a fresh `mktemp` path rather than a predictable shared one, and delete it when you are done — never leave it lying in `/tmp`.
Many packages publish no debug symbols. When frames stay unresolved, say so — never invent function names to fill the gap. An unsymbolized stack still has shape: which library each frame belongs to, and whether the crash came from a signal handler, a main loop, or a worker thread.
1. What crashed, and what it was doing at the time. 2. The most likely mechanism — separating clearly what the evidence **proves** from what you are **inferring**. 3. Whether any user data was lost, and where it can be recovered from. Check the trash before concluding anything is gone. 4. Whether it is likely to recur, and what would avoid or fix it.
Be straight about the limits of the evidence. If the cause is genuinely ambiguous, say so rather than assembling confidence out of guesswork.
**Leave the system as you found it.** Diagnosis reads; it does not fix, tidy, or reconfigure. The one thing to clean up is your own: delete the core you extracted above, which is a copy of the crashed process's memory. The single change a diagnosis may make is the mute below, and only when the user asks for it.
A crash you have explained often keeps happening anyway. Finish by offering to silence notifications for **that one program**, and never run it unprompted. Say how to lift it in the same breath, so it is not a one-way door.
omarchy-crash-mute '<program>' # silence it omarchy-crash-mute '<program>' off # let it speak again omarchy-crash-mute # list what is muted
Pass the `binary:` path from the crash facts, or the `process:` name where no binary was recorded; the command reduces either to the name the watcher keys on. A diagnosis run by hand from `omarchy agent crash <pid>` has neither, so take them from `coredumpctl info`. Prefer the binary: a process name is truncated to 15 characters and a basename is not, so muting the truncated form matches nothing, forever, while looking like it worked.
Quote it. The name is whatever the crashed program's author called a file, and a single quote inside one closes yours and runs the rest as your shell.
The key is a bare name, so anything run through an interpreter is keyed as the interpreter: muting `python3.13` silences every Python program on the machine. Say so rather than quietly doing it.
None of this fixes anything, and a mute offered in place of a fix that was within reach is the wrong answer. For every program rather than one, the switch is _Trigger > Toggle > Crash Capture_.
Most application crashes are upstream bugs in those applications, not Omarchy's doing. In the minority of cases where the cause really does sit within Omarchy's sphere of control, read [`reporting.md`](reporting.md) before offering to file anything.
Omarchy is a beautiful, fun & agentic Linux distribution by DHH. Read more at omarchy.org.
Repo: basecamp/omarchy