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pocketshell

Unified server-side Python utility for the PocketShell Android client. The app probes for this single helper on each remote host and uses its subcommands for usage, aplexer session lifecycle, agent conversations, QR host setup, repository discovery, environment files, hooks, logs, and daemon lifecycle checks.

Durable workspaces

The Quiet workspace-first client uses the host-side workspace membership contract before it has any live session to enumerate:

pocketshell workspaces list --host <host> --json
pocketshell workspaces add <path> --host <host> --json
pocketshell workspaces remove <path> --host <host> --json

Membership is stored in the existing private tree registry. Each entry has a canonical absolute path for identity and a separate display_path for the path spelling shown in the UI. Adding or removing the same path repeatedly is safe, and list retains empty workspaces.

Install

The recommended path is uv tool install, which lands the binary on PATH under ~/.local/bin/:

uv tool install pocketshell

For local development from a clone:

cd tools/pocketshell
uv venv
uv pip install -e .
pocketshell --help

pipx install pocketshell works the same way for users who prefer pipx. Both install paths produce a pocketshell binary that the PocketShell app's bootstrap probe detects.

Optional extras

pocketshell qr-share requires the qrcode[pil] package (Pillow) to render QR images. Because Pillow is heavy and not needed by any other subcommand, it ships behind an optional qr extra:

uv tool install pocketshell --with qrcode[pil]
# or
pip install pocketshell[qr]

Without the extra, every other subcommand keeps working; only pocketshell qr-share exits 127 with a friendly install hint.

Usage

Top-level commands in the current helper:

pocketshell usage [provider] [--json]       # provider quota / usage
pocketshell sessions list --json           # schema-3 aplexer session rows
pocketshell sessions create NAME --json      # create or reuse a session
pocketshell sessions attach NAME             # attach to a live session
pocketshell sessions kill NAME --json        # stop and reap a session
pocketshell agent-log ...                   # agent conversation logs
pocketshell repos list ...                  # local / GitHub repositories
pocketshell github status [--json]          # gh install / auth state
pocketshell env ...                         # .env / .envrc management
pocketshell hooks ...                       # Claude/Codex/OpenCode hooks
pocketshell logs ...                        # server-side trace sink
pocketshell daemon ...                      # IPC daemon lifecycle
pocketshell serve --dir PATH [--port N]     # foreground static HTTP server
pocketshell qr-share ...                    # SSH host QR import payloads

Run pocketshell --help or pocketshell <command> --help for the live flag set. Some parity subcommands still proxy through the existing host tools internally so their output remains byte-identical to what the app already parses.

pocketshell sessions

The session group is deliberately aplexer-only. list, create, attach, and kill all use the bundled a executable resolved next to the installed PocketShell interpreter; a missing or unusable aplexer is reported as an error instead of an empty session list.

pocketshell sessions list --json
pocketshell sessions create my-session --cwd ~/git/project --mem none --json
pocketshell sessions attach my-session
pocketshell sessions kill my-session --json

The list and lifecycle responses use schema 3. Rows carry the aplexer id, workspace, tag, phase, attachment state, and agent metadata; there is no backend discriminator or legacy session socket. Create is idempotent for the same workspace and tag. Kill stops the workload and reaps the aplexer record before returning its JSON result.

pocketshell usage

pocketshell usage           # human-readable lines, one per provider
pocketshell usage --json    # machine-readable JSON (consumed by the app)
pocketshell usage codex     # filter to a single provider

The output shape is byte-identical to quse [provider] [--json]. When the IPC daemon is running, usage --json dispatches usage.fetch over the daemon socket and uses the daemon's short TTL cache; otherwise an absent/unavailable daemon or explicitly supported method skew falls through to the one-shot subprocess path. Timeout, malformed-response, and daemon-internal failures are surfaced instead of being retried locally.

All daemon-backed wrappers (usage, repos, tree, sessions, and agents kind) use one typed fallback boundary. It emits the safe pocketshell.daemon_call event with reason, method, phase, RPC code, and available CLI/daemon versions. It never logs RPC parameters or command output.

If quse is not installed, pocketshell usage exits with code 127 and prints an install hint to stderr.

pocketshell repos list

Enumerate git repositories — either cloned on this host (--local) or owned by the authenticated GitHub user (--remote). The two modes share one unified JSON schema so a future merged view can interleave them transparently.

pocketshell repos list --local            # scan ~/git for clones (human)
pocketshell repos list --local --json     # same, JSON output
pocketshell repos list --remote --json    # via owner-only `gh api user/repos`
pocketshell repos list --remote --limit 20

Schema (every entry):

{
  "owner": "alexeygrigorev",          // null when remote URL is non-GitHub
  "name": "pocketshell",              // local dir basename, or GH repo name
  "full_name": "alexeygrigorev/pocketshell",  // null when owner unknown
  "local": {                          // populated by --local scans
    "path": "/home/alexey/git/pocketshell",
    "head": "main"
  },
  "remote": {                         // populated by --remote scans
    "default_branch": "main",
    "html_url": "https://github.com/alexeygrigorev/pocketshell",
    "ssh_url": "git@github.com:alexeygrigorev/pocketshell.git",
    "updated_at": "2026-05-27T12:00:00Z"
  }
}

--local scans ~/git by default (override with one or more --root flags or the colon-separated POCKETSHELL_REPOS_ROOTS env var) and populates local for every entry. owner and full_name are best-effort from the parsed remote.origin.url; non-GitHub remotes leave them null.

--remote delegates to gh api 'user/repos?affiliation=owner&sort=updated' --paginate --slurp. Requires gh on PATH (apt install gh on Debian/Ubuntu, brew install gh on macOS) authenticated via gh auth login -s repo:read. Sorted by updated_at descending so the picker shows the most-recently-touched repos first. Missing gh exits 127 with an install hint; a non-zero gh exit (auth missing, rate-limit, etc.) propagates the exit code and stderr verbatim.

With neither flag, defaults to --local and prints a one-line discoverability hint mentioning --remote.

Daemon mode caches repos.list_local for 10 s and repos.list_remote for 5 min. --no-daemon forces the in-process path; --no-cache forces the daemon to re-run upstream on the next call.

pocketshell github status

Reports whether the GitHub CLI (gh) is installed and authenticated, as structured JSON the app consumes to gate GitHub features and prompt the user to configure gh when it is missing (epic #644, slice #645).

pocketshell github status          # human-readable summary
pocketshell github status --json   # machine-readable JSON (consumed by the app)

Schema:

{
  "installed": true,             // shutil.which("gh") found the binary
  "authenticated": true,         // `gh auth status` exited 0
  "account": "alexeygrigorev",   // logged-in username, or null
  "hint": null                   // actionable hint when something is missing
}

The command always exits 0 — "gh missing" and "not authenticated" are normal, reportable states (not probe failures), so the app can poll the status without treating it as an error. When gh is absent the hint tells the user to install it and run gh auth login; when present but unauthenticated the hint tells them to run gh auth login. The only network access is whatever gh auth status itself performs (a token-validity check); the command does NOT call the GitHub API.

pocketshell serve

Serve a folder over HTTP for a client-owned SSH port forward:

pocketshell serve --dir /path/to/site
pocketshell serve --dir /path/to/site --port 8080 --bind 127.0.0.1

The server binds 127.0.0.1 by default. Omitting --port (or passing --port 0) lets the OS select a free port; after binding, stdout contains exactly one stable JSON line with the selected port:

{"port":43123}

The process stays in the foreground so the caller owns its lifetime: keep the SSH exec channel alive while the site is needed and terminate that process when the view closes or the connection is lost. There is no detached server registry or --stop command in this contract. HTTP access logs and errors go to stderr, keeping stdout parseable.

Requests serve static files with stdlib MIME detection. A directory resolves to its index.html when present; paths are resolved before the containment check, so parent traversal and symlinks that leave the selected directory are rejected rather than served.

pocketshell qr-share

Builds a pocketshell.ssh-import.v1 payload from an ~/.ssh/config alias (resolved via ssh -G) or from explicit flags, wraps it in one or more pocketshell.qr.v1 chunked envelopes (matching the Kotlin QrChunkCodec byte-for-byte), and emits QR codes for the phone-side scanner to consume (issue #129).

pocketshell qr-share prod                           # ssh-config alias
pocketshell qr-share --host h --user u --key ~/.ssh/id_ed25519 --name h
pocketshell qr-share prod --png --out-dir /tmp/qr   # write PNGs
pocketshell qr-share prod --print-only --id deadbeef  # debug envelopes

When stdout is a TTY the QRs are drawn inline as Unicode blocks; between multi-part transmissions the command pauses on "Press Enter for next QR" so the user can scan each in turn. When stdout is not a TTY (or --png is passed) a numbered PNG sequence (qr-share-01.png, qr-share-02.png, ...) is written to --out-dir.

Requires the optional qr extra (see Optional extras). Without it, the command exits 127 with the install hint and every other subcommand keeps working.

Running from a repo clone (no install)

To run qr-share straight from a checkout without installing the tool, use uv run from tools/pocketshell and include the qr extra:

cd tools/pocketshell
uv run --extra qr pocketshell qr-share prod

The first run creates .venv and installs the QR dependency; later runs are instant. Run it in an interactive terminal so stdout is a TTY and the QR renders inline — otherwise it falls back to writing PNGs (add --png --out-dir ./qr to force PNGs). Omitting --extra qr makes the command exit 127 with the install hint.

pocketshell hooks

Installs agent stop / idle-detection hooks across Claude Code, Codex, and OpenCode and normalizes their events into a single append-only JSONL bus the app can read back. Server-side only; integration only — no "tell the agent to continue" action yet (deferred; see issue #267 and locked decision D26 in docs/decisions.md).

pocketshell hooks install [--engine claude|codex|opencode|all]   # default: all
pocketshell hooks status  [--engine ...] [--json] [--last N]
pocketshell hooks events  [--since ISO8601] [--limit N] [--json]
pocketshell hooks uninstall [--engine ...]

install is non-destructive — it merges, it never clobbers:

  • Claude Code — adds a {type: "command", command: "python3 <handler>"} entry under the Stop, SubagentStop, and Notification hook events in ~/.claude/settings.json, only when absent. All other top-level keys and any pre-existing user hooks are preserved.
  • Codex — sets the top-level notify program in ~/.codex/config.toml to our handler (Codex hooks do not fire under codex exec, so notify is the headless-safe signal). If notify is already set to something else, it warns and skips rather than overwriting. The rest of the TOML is preserved.
  • OpenCode — drops a pocketshell-idle-signal.js plugin into ~/.config/opencode/plugin/ without disturbing other plugins.

install is idempotent (running twice adds nothing new). Generated handler scripts and .installed ownership metadata are durable data under $XDG_DATA_HOME/pocketshell/hooks/ (default ~/.local/share/pocketshell/hooks/). The volatile event bus stays at $XDG_CACHE_HOME/pocketshell/hooks/events.jsonl (default ~/.cache/pocketshell/hooks/events.jsonl). A routine cache cleanup therefore starts a fresh bus without breaking the absolute commands retained by Claude or Codex; the next event recreates the cache directory and bus.

Path overrides are intentionally separate:

  • $POCKETSHELL_HOOKS_HANDLER_DIR overrides the durable generated-handler dir.
  • $POCKETSHELL_HOOKS_EVENTS_FILE overrides the event bus file.
  • The historical $POCKETSHELL_HOOKS_DIR remains an alias for the handler directory only when the new handler variable is unset. It no longer moves the bus. Use both new variables and rerun hooks install when both paths need customization.

Each generated handler embeds the resolved bus path and appends a normalized record {ts, engine, state, source, session_id, cwd, ...} there. install also migrates PocketShell-owned Claude/Codex commands from the old cache path to the durable path even when cache cleanup already removed the old scripts; foreign hooks and foreign Codex notify programs remain untouched.

Per-engine uninstall (pocketshell hooks uninstall) removes only what we added and is idempotent:

  • Claude Code — drops our command group from each hook event; an event key (and the top-level hooks object) is deleted only if we created it and it ends up empty. A user's pre-existing hooks always survive, so a pre-populated settings.json comes back byte-equivalent for the unrelated parts.
  • Codex — removes the top-level notify line only when it still points at our handler. A notify the user pointed elsewhere is left alone.
  • OpenCode — deletes our plugin file; other plugins and the dir itself are left in place.

The event bus (events.jsonl) is preserved on uninstall so already-emitted records stay readable; only PocketShell-owned current/legacy config entries, generated executables, and durable ownership metadata are cleaned up.

Development

cd tools/pocketshell
uv venv
uv pip install -e ".[dev]"
uv run pytest

Or via the dependency-group:

uv sync --group dev
uv run pytest

The tests stub subprocess boundaries and the bundled aplexer resolver so they run in seconds without invoking a real host session.

Release flow

pocketshell ships in lockstep with the Android app. Every time the maintainer cuts an Android release tag (vX.Y.Z), the Build workflow assembles the APK and also builds the Python sdist + wheel and publishes them to PyPI.

Version coupling (tag-derived, issue #2356)

Neither side is a hand-maintained literal any more. Both derive from the git tag being built, via the single shared script scripts/derive-version.sh:

  • app/build.gradle.kts computes versionCode/versionName at Gradle configuration time by shelling out to scripts/derive-version.sh.
  • tools/pocketshell/pyproject.toml's committed version field is a placeholder. The release workflow's "Stamp pyproject.toml version from tag" step overwrites it (in the ephemeral CI checkout, never committed) from scripts/derive-version.sh version-name --ref <tag> immediately before building the sdist/wheel.

scripts/check-version-coupling.sh verifies the derivation script is the SOLE source of truth (its own self-test, Gradle's resolved version matching a direct script invocation, and both consumers referencing the script by path rather than an independent reimplementation) — it runs per-push in tests.yml. scripts/check-pypi-version.sh verifies, at tag-publish time, that the freshly-stamped pyproject.toml version equals what scripts/derive-version.sh derives for the tag being published:

scripts/check-pypi-version.sh --check-tag vX.Y.Z

Cutting a release

There is no version-bump commit or PR. The tag itself is the version declaration:

  1. Pick the next semantic version after the latest GitHub Release/tag.
  2. Run the emulator release validation gate (scripts/release-emulator-validation.sh) against the current main HEAD, as described in process.md -> "Release Builds".
  3. Push the tag with scripts/push-release-tag.sh vX.Y.Z .... It creates the tag locally FIRST and verifies scripts/derive-version.sh derives the expected versionName (and a strictly-monotonic versionCode versus the previous tag) from it before pushing — so a derivation bug is caught before the tag ever reaches origin. The tag-triggered Build workflow then:
    • builds and uploads the APK (its versionCode/versionName come from the tag via app/build.gradle.kts's own derivation) + creates the GitHub Release
    • stamps tools/pocketshell/pyproject.toml's version from the tag
    • runs scripts/check-pypi-version.sh --check-tag vX.Y.Z
    • builds the Python sdist + wheel
    • publishes them to PyPI via OIDC trusted publishing

The PyPI publish job depends on the APK build job, so a broken APK build also aborts the PyPI publish. If only the PyPI publish fails the maintainer can re-trigger the workflow at the same tag from the Actions tab; the APK build is idempotent against an existing release (softprops/action-gh-release updates the existing release rather than failing).

PyPI trusted publishing setup (one-time)

The publish-pypi job uses GitHub's OIDC token instead of a long-lived API token. This avoids storing a PYPI_API_TOKEN secret in the repo and means there is nothing to rotate. The trade-off is that the project owner must complete one configuration step on pypi.org before the first automated tag publish:

  1. Sign in to https://pypi.org/ with the project owner account.
  2. Open the pocketshell project page -> Manage -> Publishing.
  3. Under Trusted publishers, click Add a new pending publisher (if the project is empty) or Add a new publisher, then fill in:
    • PyPI Project Name: pocketshell
    • Owner: alexeygrigorev
    • Repository name: pocketshell
    • Workflow name: build.yml
    • Environment name: pypi
  4. Save the publisher.
  5. In this repository on GitHub, open Settings -> Environments -> New environment -> name it pypi. No secrets or reviewers are required; the environment exists purely to scope the OIDC token. (If the environment already exists, confirm it has no protection rules that would block the workflow from running.)
  6. Push the next release tag. The Publish to PyPI via trusted publishing step should succeed without any token configuration.

Why trusted publishing (and not PYPI_API_TOKEN)?

  • No long-lived secret to rotate, leak, or accidentally print in logs.
  • The OIDC subject is scoped to repo=alexeygrigorev/pocketshell, workflow=build.yml, environment=pypi, so a compromised fork or a different workflow file in this repo cannot reuse it.
  • D22 (no backwards-compat): we do not also maintain a token-fallback path. If trusted publishing breaks, fix it; do not add a token branch alongside.

If trusted publishing is ever unavailable for a tag (e.g. PyPI outage on the OIDC verifier), the recommended manual escape hatch is:

cd tools/pocketshell
python -m build
python -m twine upload dist/*

with the maintainer's account. Do not re-add a PYPI_API_TOKEN secret as a permanent fallback.

Why a unified CLI?

The PocketShell app previously depended on multiple host-side tools. That meant separate installs to keep up to date, separate probes to surface failures from, and multiple PATH-discovery edge cases. A single pocketshell binary collapses that app-facing contract into one install, one probe, and one bootstrap row. The Android bootstrap probe now derives PATH from the user's shell rc and prepends $HOME/.local/bin, $HOME/bin, and $HOME/.cargo/bin before probing, so cloned-repo or venv installs can be discovered without a manual app-side PATH field.

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