podbench
A development seat — editor, gdb, a Python inner loop — inside a Kubernetes pod, reached over nothing but your kubeconfig.
podbench launches a debug container into a running pod (or into a sacrificial
clone of one), tunnels ssh through kubectl exec, and hands you the config
stanza that VS Code Remote-SSH needs. There is no port-forward to babysit, no
pod IP to reach, no file sync and no traffic interception: the editor is already
inside the cluster.
laptop
VS Code · Remote-SSH · kubectl
|
| ssh over kubectl exec (API server only)
|
+--------------+--------------------------------------+
| pod |
| |
| +----------------------+ +----------------------+ |
| | app container | | podbench | |
| | | | | |
| | workload process | | sshd · vscode-server | |
| | (maybe distroless) | | gdb · git · uv | |
| | fs visible at | | | |
| | /proc/<pid>/root | | | |
| +----------------------+ +----------------------+ |
| |
| shared: PID namespace (via the target) |
| network namespace (always) |
+------------------------------------------------------+
Two artefacts: a debug container image (ghcr.io/gilesknap/podbench) and a
launcher you never have to install — uvx podbench runs it straight from
PyPI, uses your kubeconfig, and shells out to kubectl for everything it does
to a cluster.
| Observe mode | Iterate mode | Hotfix mode | |
|---|---|---|---|
| Command | uvx podbench attach pod/foo |
uvx podbench dev pod/foo |
uvx podbench hotfix init pod/foo |
| What it does | adds an ephemeral container to the live pod | authors a sacrificial clone with the app idled and podbench as a real sidecar | puts the app's venv on a claim, so an edit survives the restart — and the restart is the relaunch |
| Built for | distroless targets with no shell of their own; gdb against the running workload | edit → relaunch → see the change through the Service | an emergency fix that has to outlive the session, with provenance |
| Resources | shares the workload's limits, cannot reserve its own | has its own cpu, memory and ephemeral-storage requests | a ReadWriteOnce claim, mounted at the same path on both sides |
| Needs | nothing at deploy time | nothing at deploy time | deploy-time chart cooperation, and it is Python-only and single-replica-only |
| Risk to the workload | real — see below | none by default; the origin pod is never touched | it rolls the workload: that is how the fix takes |
| Explained in | What attach does |
What dev does |
What hotfix does |
Try it
$ uvx podbench doctor
$ uvx podbench attach pod/web-7d9f8c5b4-x2k9p -n demo
doctor checks the prerequisites, the cluster-side RBAC and the one-time ssh
Include line — the only thing podbench leaves behind — and names whatever is
missing; --fix adds the Include. attach then walks a capability ladder,
lands the best seat the cluster will admit, and runs its probe inside the
container it just created, so the report is measured rather than inferred from
the spec it asked for:
rung full - uid 0, gid 0, CapEff 00000000a80c25fb
supports
[x] live attach (gdb -p <pid>)
[x] read-only inspect (/proc/<pid>/root, maps, environ)
root, maps and environ readable
[x] debug launched processes (podbench dbg --launch ./prog)
[ ] iterate (edit, relaunch, verify through the Service)
[x] ssh seat (Remote-SSH: editor, shell, git, sftp)
measured
verdict live attach available
blocker none
ssh config written to ~/.podbench/config.d/demo-web-7d9f8c5b4-x2k9p.conf
then: ssh podbench-demo-web-7d9f8c5b4-x2k9p
Connect that alias with Remote-SSH: Connect to Host…, or let
podbench vscode do the whole thing — seat, pod sizing, debugpy and window — in
one command.
The other two modes are a table row away. For the inner loop, podbench dev
authors the dev pod and podbench run relaunches the app inside it: measured
end to end, 1.18 s per edit → relaunch → verified-through-the-Service
cycle. When the fix has to survive the pod, podbench hotfix moves the venv
onto a claim so a restart no longer restores the image's code, and records
where the change came from.
Only prereleases are published so far, so
uvx podbenchresolves the newest beta today. To run an unreleased checkout instead, put--from git+https://github.com/gilesknap/podbenchin front of the verb.
Read this before you attach to a live pod
Not fine print — each of these has bitten a spike on a real cluster.
- A seat shares the pod's limits and cannot reserve its own — and it is a VS
Code session, not the seat, that spends them. An ephemeral container may not
declare
resourcesat all, so the seat lives in the pod's cgroup: exceed memory and the kernel OOM-kills something in it, exceed ephemeral storage and the kubelet evicts the whole pod. How much that matters is now measured rather than assumed. Ten live seats on a Diamond beamline (2026-08-19) cost 13–23 MiB each, against 170–3858 MiB of headroom per pod, three seats to a pod, no OOM anywhere — soattachreads this pod's headroom, prints it on the report'smemoryrow, and warns only when it is genuinely thin. A vscode-server is the case that still bites: 1215 MiB live with a single extension, which does not fit in most of those pods, sopodbench vscodeis checked against the same number — and raises the target's limit in place to cover the shortfall, since it is about to spend it.attach --resize MEMORYis the same lever by hand, andpodbench devgives the seat limits of its own. One beamline at one moment: that falsifies "always warn", it does not prove no cluster is tight. - Being refused
SYS_PTRACEis normal, not an error. It is outside both the baseline and the restricted Pod Security Standards, so podbench walks a ladder with two valid rungs and lands the better one the cluster admits. Four unrelated subsystems deny attach with the sameEPERM, so it probes and names the blocker instead of leaving you an errno. - Ephemeral containers are permanent. They cannot be removed, restarted or
edited, and a name once used is burnt for the life of the pod. So
attachreconnects by default, nothing may live only in the writable layer, and--newis for when you mean it. - A dev pod never joins a Service by accident.
podbench devdrops the origin's selector labels unless you pass--take-traffic, and--cutoverrecords the original selector for an exact restore.
The docs carry the reasoning and the measurements behind all four, and What is proven, and what is not is candid about the gaps — every memory figure is still a lower bound, and Hotfix mode has never been run against a cluster.
| What | Where |
|---|---|
| Source | https://github.com/gilesknap/podbench |
| Launcher | https://pypi.org/project/podbench (prereleases only) |
| Image | ghcr.io/gilesknap/podbench |
| Chart | oci://ghcr.io/gilesknap/charts/podbench |
| Documentation | https://gilesknap.github.io/podbench |
| Releases | https://github.com/gilesknap/podbench/releases |
Documentation
See https://gilesknap.github.io/podbench for the full documentation.
- Tutorials — setup, your first session
- How-to — attach to a pod, debug with gdb, iterate on Python, VS Code Remote-SSH, the container image
- Reference — CLI, glossary
- Explanations — architecture, security, what is proven, and what is not, design brief, Phase 0 report
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