Files
punktfunk/sdk
enricobuehler d237646c66 fix(host,sdk,kit): library scanners sat in the nav, could not sync local art, and so never got their settings
Three symptoms on .21, two defects. Lutris and Heroic appeared in the console sidebar
they explicitly opt out of; Lutris's settings were unreachable from the Library
screen; and Lutris and Steam logged `sync (startup) failed: HostRequestError`.

**The sidebar is a publish gap.** The console is correct — it keeps
`category: "library"` plugins out of the nav (`uiPlugins`, app-shell.tsx) — but the
host reports no category for them at all. `defineLibraryPlugin` sets it and
`sdk/src/ui.ts` forwards it; what SHIPS does not. `@punktfunk/host` was bumped to
0.1.2 on 2026-07-20 and `category` landed 2026-08-05 without a bump, so the registry's
0.1.2 is the pre-category build and every installed scanner registers without one.
Bumps the SDK to 0.1.3 — **inert until it is published**.

Because the field rides the untyped `pf.request` seam so an older host ignores it
rather than rejecting the registration, dropping it is silent by design. `serveUi` now
reads its own directory entry back and warns once when a requested category did not
land, the same way `defineLibraryPlugin` already warns when a store claim did not take.
That is what turns the next occurrence into a log line instead of a bug report.

**The missing settings and the failed sync are ONE defect: a write/read disagreement
about `file://`.** `local_art_bytes` decodes a `file://` value before testing
containment; `validate_art_paths` handed the raw value to `Path::new`, where
`file:///home/u/c.jpg` is a RELATIVE path whose first component is `file:`. It
canonicalized against the cwd, failed, and read as "outside every art root". So the
host refused every cover the kit's own `fileUrl` helper emits — the documented way for
a plugin to publish local art — while the read path would have served those same files.

That the two symptoms share a cause is not obvious and is why this is one commit: the
Library screen's settings control renders only for `origin: "plugin"`, and a source
becomes `plugin` only once it holds a store CLAIM, which is taken during a successful
reconcile. Lutris failed at entry 0 and Steam at entry 3, so neither ever claimed its
store, both stayed `origin: "builtin"`, and neither got a settings button. Heroic
reconciled (its art is http(s)) and has had its settings all along; rom-manager was
never affected because zero entries meant it never applied.

`art_path_is_servable` now decodes first, so both halves of the confinement judge the
same string. Confinement itself is unchanged: an out-of-root path is still refused in
`file://` clothing, which the test asserts alongside the accept case.

Diagnosing this took the HOST's journal, because both surfaces that should have
explained it lied. `HostRequestError` stringified to its bare tag, so the sync engine's
`${e.cause}` logged `HostRequestError` and discarded the method, the path and the
host's own message; it now renders all three, including an object-shaped cause that
used to print `[object Object]`. And the host logged "payload carries a field this lane
may not set" for BOTH refusals in `check_entry_fields`, so a 400 about an art path read
as an auth problem — it now logs the real reason and the entry title.

Verified on .21 (Linux): 463 host tests pass, clippy clean under `-D warnings`,
`cargo fmt --all --check` clean. The new art test fails without the fix and passes with
it. plugin-kit 71 and SDK 72 tests pass, both typecheck clean, biome clean.
2026-08-08 11:43:30 +02:00
..

@punktfunk/host

TypeScript SDK for the punktfunk streaming host: a typed management-API client plus the host's lifecycle event stream (client connect/disconnect, stream start/stop, pairing, displays, library) — built on Effect.

Two surfaces, one core:

  • @punktfunk/host — the Promise facade, the front door. connect(), then pf.api.* (the typed management API — every endpoint autocompletes, every response is typed) and pf.events.on(). You never need to know Effect exists.
  • @punktfunk/host/effect — the Effect-native surface for plugins and composed programs: the PunktfunkHost service + layer, Stream-based events, typed errors (AuthError | ApiError | TransportError | VersionSkew), and every wire shape as an effect/Schema (REST shapes generated from the host's OpenAPI spec; event shapes mirroring the host's snapshot-tested wire format).

Install

Published to the unom Gitea npm registry. Point the @punktfunk scope at it once — in your project's .npmrc (or ~/.npmrc):

@punktfunk:registry=https://git.unom.io/api/packages/unom/npm/

Then install:

bun add @punktfunk/host      # or: npm i @punktfunk/host

effect is a peer dependency (auto-installed by bun / npm ≥ 7) — so the SDK and your own @punktfunk/host/effect code share one Effect instance.

If the registry requires authentication (private org, or from CI), add a token line with a Gitea PAT that has read:package:

//git.unom.io/api/packages/unom/npm/:_authToken=${NODE_AUTH_TOKEN}

Quickstart

import { connect } from "@punktfunk/host";

const pf = await connect(); // zero config on the host box

// Typed API — autocomplete every endpoint, typed responses, no hand-written paths or casts.
const clients = await pf.api.listPairedClients();
console.log(`${clients.length} paired clients`);

// Live events:
pf.events.on("stream.started", (e) => {
  console.log(`${e.stream.client} started ${e.stream.mode}${e.stream.hdr ? " HDR" : ""}`);
});
pf.events.on("pairing.pending", async (e) => {
  // notify your phone, then decide through the typed API:
  const pending = await pf.api.listPendingDevices();
  const match = pending.find((d) => d.fingerprint === e.device.fingerprint);
  if (match) await pf.api.approvePendingDevice(String(match.id), { payload: {} });
});

Need something the generated client doesn't cover? pf.request(method, path, body) is the untyped escape hatch (returns unknown).

The same, Effect-native:

import { Effect, Stream } from "effect";
import { events, PunktfunkHostLive } from "@punktfunk/host/effect";

const program = events().pipe(
  Stream.filter((e) => e.kind === "stream.started"),
  Stream.runForEach((e) => Effect.log(`stream: ${e.stream.mode}`)),
);
Effect.runPromise(program.pipe(Effect.provide(PunktfunkHostLive())));

Examples

A complexity ladder in examples/ — start at the top:

  1. tail-events.tshello world: connect, one typed call, tail events.
  2. notify-pairing.tsevent → decision: approve/deny pairing through the typed API.
  3. provider-sync.tstyped bulk REST: declaratively reconcile a game-library provider.
  4. couch-preset.effect.tsadvanced, Effect-native: only if you're composing Effect programs.

Examples 13 are the plain Promise facade and cover most automation; you only need example 4's Effect surface for composed, interruptible programs. Run any in the repo with bun examples/<file>.ts. To deploy one on a host, install the package into its own directory (bun add @punktfunk/host) and change its ../src/… import to @punktfunk/host — see Running a single script as a service.

Plus a real-world recipe:

  • virtualhere-dualsense.tsUSB passthrough: bind a real DualSense (shared from the couch over VirtualHere) to the host for the length of each connection and release it after — full gyro, touchpad, adaptive triggers and USB rumble instead of an emulated pad. Shows the client.connected/disconnected bracket and clean release on systemctl stop.

Connection resolution

connect() / PunktfunkHostLive() resolve, in order:

What Source
URL { url }PUNKTFUNK_MGMT_URLhttps://127.0.0.1:47990
Token { token }PUNKTFUNK_MGMT_TOKENPUNKTFUNK_PLUGIN_TOKEN<config_dir>/plugin-token<config_dir>/mgmt-token
TLS pin { ca }PUNKTFUNK_MGMT_CA (path) → <config_dir>/cert.pem

<config_dir> is ~/.config/punktfunk (Linux/macOS) or %ProgramData%\punktfunk (Windows) — so a script running on the host box needs zero configuration. The TLS pin trusts exactly the host's self-signed identity cert (chain-verified; the hostname check is waived — the cert is deliberately CN-only, native clients pin its fingerprint). Bun and Node are first-class; other runtimes fall back to system trust (point your runtime's CA option at cert.pem).

The zero-config default is the host's scoped plugin token (plugin-token): the everyday surface — status, library, sessions, events, the plugin UI lease — but deliberately not hook registration or pairing administration, so a plugin defect can't install commands or admit devices. A script that needs the full admin surface opts in explicitly with PUNKTFUNK_MGMT_TOKEN or { token } (mgmt-token remains the fallback on hosts that predate the plugin token). Both tokens are honored from loopback only — run scripts on the host box (or through an SSH tunnel).

Events

  • Reconnects automatically (exponential backoff + jitter, capped) and resumes with Last-Event-ID — the host replays what you missed from its ring.
  • Default is live tail only (a fresh notify script must not re-fire on history); pass { since: 0 } on the Effect surface to replay the host's full ring, or since: N to resume after a seq you persisted.
  • on() patterns: exact kinds ("stream.started", typed callback), "domain.*" prefixes, "*", plus "dropped" (your cursor fell off the ring — resync via REST) and "unknown" (an event kind newer than this SDK — the additive-only wire at work).
  • Effect surface: events() is a Stream<HostEvent, EventStreamError>; eventsRaw() carries every SSE frame verbatim.

Plugins (punktfunk-plugin-*)

import { definePlugin } from "@punktfunk/host";
import { Effect } from "effect";
import { PunktfunkHost } from "@punktfunk/host/effect";

export default definePlugin({
  name: "romm-library",
  main: Effect.gen(function* () {
    const pf = yield* PunktfunkHost;
    // subscribe, sync, reconcile — scoped finalizers run on shutdown/interruption
  }),
  // …or the simple shape: main: async (pf) => { … }
});

In v1 a plugin is a script you run (see below); the managed runner package is a later step.

Persisting state — pluginStateDir

A plugin that keeps config or a cache must write it under pluginStateDir("<your-name>"), not directly under the config dir:

import { pluginStateDir } from "@punktfunk/host";
import * as fs from "node:fs";
import * as path from "node:path";

const dir = pluginStateDir("rom-manager"); // <config_dir>/plugin-state/rom-manager
fs.mkdirSync(dir, { recursive: true });
fs.writeFileSync(path.join(dir, "cache.json"), data);

This matters on Windows: the managed runner is de-privileged (NT AUTHORITY\LocalService) and the config dir is locked read-only, so a write straight under it fails with EPERM. punktfunk-host plugins enable grants the runner write on exactly plugin-state — the config dir and your plugin's code stay read-only. On Linux the runner owns the whole config dir, so the same path is writable with no special step.

Receiving data from an interactive-user app — pluginIngestDir

If a plugin needs data produced by a different account — e.g. a desktop app running as the logged-in user, like the Playnite exporter — it can't read it from that user's profile: the de-privileged Windows runner can't traverse C:\Users\<you>\…. pluginIngestDir("<your-name>") resolves an inbox (<config_dir>/ingest/<name>) that plugins enable makes user-writable, so your app drops a file there and the runner reads it:

import { pluginIngestDir } from "@punktfunk/host";
const inbox = pluginIngestDir("playnite"); // <config_dir>/ingest/playnite  (your app writes here)

Treat what you read from it as lower trust than your own state — the inbox is writable by any local user.

A plugin UI in the console — servePluginUi

A plugin can surface a web UI inside the punktfunk console — no second password or port for the operator. It serves the UI on a loopback ephemeral port behind a per-boot secret; servePluginUi registers it with the host, and the console reverse-proxies to it and adds a nav entry gated by the console's own session. Your code implements zero human auth.

import { definePlugin, servePluginUi } from "@punktfunk/host";

export default definePlugin({
  name: "rom-manager",
  main: async (pf) => {
    const ui = await servePluginUi(pf, {
      id: "rom-manager",
      title: "ROM Manager",
      icon: "gamepad-2",                            // a lucide icon name
      staticDir: new URL("../dist/ui", import.meta.url), // your built SPA
      fetch: (req) => appRouter(req),               // plugin-local REST/SSE (after a static miss)
    });
    try {
      await runForever();
    } finally {
      await ui.close();                             // deregister + stop
    }
  },
});

Requests reach fetch prefix-stripped (the console proxy removed /plugin-ui/<id>), so your app sees /, /api/scan, … — the original prefix is on X-Forwarded-Prefix. servePluginUi serves staticDir first (with an index.html SPA fallback for navigations); return undefined from fetch to fall through to it. Build your SPA with a relative base (base: "./" + hash routing) or an absolute base: "/plugin-ui/<id>/", and expect a dark canvas. Requires the Bun runtime (the runner is bun).

The runner: punktfunk-scripting

Instead of one unit file per script, run everything under the managed runner — it discovers your units and supervises them:

bun src/runner-cli.ts            # runs <config_dir>/scripts/* + installed punktfunk-plugin-*
bun src/runner-cli.ts --list     # show what it found

The same CLI manages plugin packages — it creates the plugins dir, points it at the @punktfunk registry, and installs on the bun it is already running on:

bun src/runner-cli.ts add playnite      # → @punktfunk/plugin-playnite (bare names resolve first-party)
bun src/runner-cli.ts remove playnite
bun src/runner-cli.ts list              # installed plugin packages + versions

On an installed host these are reached through the host CLI, which also drives the runner service and checks for elevation on Windows — that is the documented path for operators:

punktfunk-host plugins add playnite
punktfunk-host plugins enable          # enable + start the runner (opt-in)
punktfunk-host plugins status
  • Plugins (a definePlugin default export, from the scripts dir or a punktfunk-plugin-* package installed under <config_dir>/plugins/): supervised — a crash restarts them with capped exponential backoff; a clean return completes them.
  • Bare scripts: importing them is the run — one-shot, no restart (export a plugin to be supervised).
  • Shutdown is structural: SIGINT/SIGTERM interrupt every unit's fiber — Effect plugins' scoped finalizers run (release the preset, deregister cleanly) and facade clients close before the process exits. This is what makes systemctl stop clean.
  • The sshd rule applies: a group/world-writable unit file is refused loudly.

systemd user unit for the runner (~/.config/systemd/user/punktfunk-scripting.service):

[Unit]
Description=punktfunk script/plugin runner
After=punktfunk-host.service

[Service]
ExecStart=/usr/bin/bun /path/to/sdk/src/runner-cli.ts
Restart=on-failure
RestartSec=5
# SIGTERM (the default KillSignal) triggers the runner's structured shutdown.

[Install]
WantedBy=default.target

Running a single script as a service

systemd user unit (~/.config/systemd/user/punktfunk-myscript.service):

[Unit]
Description=punktfunk automation: myscript
After=punktfunk-host.service

[Service]
ExecStart=/usr/bin/bun /home/me/punktfunk-scripts/myscript.ts
Restart=on-failure
RestartSec=5

[Install]
WantedBy=default.target

Windows Task Scheduler: a task triggered At log on running bun C:\Users\me\punktfunk-scripts\myscript.ts (the SDK reads %ProgramData%\punktfunk\plugin-token — run the task as an account that can; the managed runner's plugins enable grants its LocalService principal exactly that read).

Compatibility

  • SDK majors track the management-API major; an event schema bump or an effect major is an SDK major too.
  • The wire is additive-only within a major: an older SDK keeps working against a newer host (unknown response keys are ignored; unknown event kinds ride the "unknown" channel).
  • A 2xx response that doesn't match its schema surfaces as VersionSkew on the Effect surface — a typed nudge to update, not an undefined three frames later.

Development

bun install
bun run gen        # regenerate src/gen/punktfunk.ts from ../api/openapi.json (@effect/openapi-generator)
bun run typecheck
bun test