Files
punktfunk/clients/linux
enricobuehler cc8eb7df08
ci / bun-nix (pull_request) Successful in 26s
ci / web (pull_request) Successful in 1m4s
ci / docs-site (pull_request) Successful in 1m13s
apple / swift (pull_request) Successful in 1m44s
apple / screenshots (pull_request) Skipped
ci / rust-arm64 (pull_request) Successful in 3m10s
windows / build (x86_64-pc-windows-msvc) (pull_request) Successful in 4m39s
android / android (pull_request) Successful in 7m12s
ci / rust (pull_request) Successful in 7m58s
windows / build (aarch64-pc-windows-msvc) (pull_request) Failing after 11m18s
feat(clients): every pinned card gets a library, and it launches with that card's profile
The console fix before this one closed the leak on one client. The same question
has a different wrong answer on each of the others, so this closes it everywhere:
a pinned host+profile card can be browsed, and every title launched off a pinned
card's shelf streams with that card's profile.

Two shapes of bug, one per client:

**The library was not offered on a pinned card at all** — Apple (both UIs:
`hasLibrary: profile == nil` on the console tile, no menu item on the touch card),
Android (`hasLibrary` required `pinnedProfileId == null`, and the console host
options gated Library on `pin == null`), GTK (the pinned card's menu had Connect,
Copy link, Create shortcut, Unpin — no library) and Windows (pinned tiles had no
menu whatsoever). Each was justified in a comment as "a pin is a shortcut, not a
second host, so the host-level actions stay on the host's tile" — right about
wake, pair, edit and forget, wrong about the library. Browsing is not a property
of the machine: it is this card's connect with a title picked first, which is
exactly what a shortcut is for. So the library joins Connect on every pinned
surface, and the host-level actions stay where they were.

**The launch dropped the profile.** GTK already carried it (its library clones
the card's whole ConnectRequest) and Windows already carried it (its library page
launches through the shared target, which the tile parks). Apple did not: the
library was keyed on a bare `StoredHost`, so `launchTitle` connected with
`.inherit` and the host's binding won even from a pinned card. Android was worse
still, and not only for pins — `LibraryScreen` dialled `connectToHost` with the
RAW settings, so a library launch applied NO profile at all, not even the host's
binding, on every host. Its host list resolves
`settings.effectiveFor(profileStore.resolveFor(kh, oneOff))`; its library resolved
nothing.

So the shelf, not the host, is now the unit both clients navigate by. Apple gets
a `LibraryTarget` (host + `ProfileSelection`) threaded through `libraryTarget`,
the shell's screen enum, both presentations and `SessionModel`; Android passes
the pinned id into `LibraryScreen` and resolves it there through the same
`ProfileStore.resolveFor` rule the connect path uses. Falling out of that:

  * a game that exits returns to the shelf it was launched from, pin and all,
    rather than to the host's default one — `SessionModel.launchedShelf` on Apple,
    `ActiveSession.libraryProfileId` → `LibraryReturn` on Android. Android also
    drops a pin that was unpinned while the game ran, rather than reopening a card
    that no longer exists.
  * Android's stats overlay finally names the profile a library launch used
    (`profileName` was never set on that path).
  * Apple's `punktfunk://browse/<host>` honours `profile=`, which it parsed and
    ignored — and refuses an unknown or ambiguous reference exactly as the connect
    route does (§10.6) rather than degrading to the binding.
  * every shelf says which one it is, in the card's own `host · profile` shape:
    the console's title, GTK's page title, Android's ConsoleHeader, Apple's
    navigation title and its console heading.

Verified per platform, none of it on trust:
  * console + GTK: fmt, build, clippy `-D warnings` and 85 tests green in the
    pf-lxcheck2 container (a Mac `cargo test -p pf-console-ui` compiles nothing).
  * Apple: `swift build` green for macOS, iOS and tvOS. Worth all three — the tvOS
    pass alone caught `navigationDestination(item:)` needing Hashable, and an
    iOS-only screen was confirmed genuinely compiled by planting a type error.
  * Android: `compileDebugKotlin` + unit tests, with HomeTilesTest's pin
    expectation flipped to match.
  * Windows: `cargo check --all-targets` + clippy `-D warnings` on the CI runner,
    cold (3m10s) — that client cannot compile on a Mac.
2026-08-11 22:13:54 +02:00
..

punktfunk — Linux client

The native Linux app for streaming a punktfunk host to your desktop, laptop, or Steam Deck. It's a clean relm4/GTK4/libadwaita shell that finds hosts on your network, pairs with a PIN, and manages your settings and library — the stream itself runs in the sibling punktfunk-session Vulkan binary (clients/session), which the shell spawns, putting the picture on glass at your display's own resolution and refresh rate.

Built in Rust end to end (no C ABI): the shell shares its plumbing with the session binary through crates/pf-client-core, which links the punktfunk-core protocol crate and speaks the fast punktfunk/1 protocol — QUIC control plane, GF(2¹⁶) FEC + AES-GCM data plane.

Features

  • Zero-copy hardware decode, and it's ours — the session presenter decodes with Punktfunk's own decoders; no FFmpeg is linked or bundled. Vulkan Video (pf-vkdecode, decoding onto the presenter's own device) leads on NVIDIA and AMD, VAAPI (pf-vaadec driving a dlopen'd libva, exporting DRM-PRIME dmabufs) leads on Intel, whichever isn't first is the fallback, and an OpenH264/rav1d CPU rung is last.
  • Your display's native mode — the host builds a virtual output at exactly your WxH@Hz; no scaling, no letterboxing. Steady 60 fps at 1080p60, ~6 ms capture→decoded on the LAN.
  • Audio both ways — PipeWire playback with a jitter ring, plus mic uplink to the host.
  • Full controller support — SDL3 gamepads with rumble and DualSense fidelity (lightbar, player LEDs, touchpad, motion, adaptive-trigger replay). Click-to-capture keyboard and mouse, with a release chord (Ctrl+Alt+Shift+Q) and focus-loss release.
  • Find hosts automatically — mDNS discovery lists hosts on your LAN; saved hosts persist. First connect does a one-time SPAKE2 PIN pairing (or TOFU on trusted LANs), then reconnects on a pinned identity.
  • Per-host speed test to pick a bitrate, plus compositor and mode preferences in Settings.
  • Game library browser (experimental, off by default) — "Browse library…" on a saved host shows its games (Steam + custom) as a poster grid; click one to launch it in the session. Fetched from the host's management API over mTLS — paired devices are authorized by their certificate, no extra host setup.
  • Gamepad library launcher (--browse host) — a console-style, controller-driven library view of a paired host's games, rendered by the session binary's Skia console UI: A plays the focused title, B quits, L1/R1 jump. Built for the Steam Deck plugin's "Open library" launch; session end returns to the launcher. Arrow keys/Enter/Esc drive it too (no pad needed).

Get it

Most people should install a package rather than build from source:

Distro Install
Flatpak (any distro, Steam Deck) io.unom.Punktfunk — see packaging/flatpak
Ubuntu / Debian (apt) sudo apt install punktfunk-client (after adding the repo)
Fedora / Bazzite (rpm) rpm-ostree install punktfunk-client
Arch (PKGBUILD) see packaging/arch

Per-device install steps and pairing walkthrough: docs.punktfunk.unom.io/docs/install-client.

Build & run from source

Requires GTK ≥ 4.16, libadwaita ≥ 1.5, PipeWire, and SDL3 (with hidapi) development packages, plus a C compiler (the CPU rung builds OpenH264 from source). No decoder development package is needed: libva and the Vulkan loader are both opened at runtime rather than linked, so hardware decode is a fact about the box you run on — a Vulkan loader and your GPU's driver, and libva for the VAAPI rung — not about the one you build on.

# from the repo root
cargo run -p punktfunk-client-linux                 # launch the app
cargo run -p punktfunk-client-linux -- --connect HOST[:PORT]   # skip the host list and connect
cargo run -p punktfunk-client-linux -- --browse HOST           # the gamepad library launcher

The binary is named punktfunk-client — the relm4/libadwaita desktop shell (hosts, pairing/trust, settings, the desktop library page). Every stream and the console game library run in the sibling punktfunk-session Vulkan binary; the shell spawns it for connects, and --connect/--browse on the shell exec it directly (so the Decky wrapper keeps working unchanged). Headless flags stay in the shell: --pair <PIN> --connect host[:port] (pairing ceremony), --wake host[:port], and --library host[:mgmt_port] (print a host's game library).

Layout

src/
  main.rs · app.rs        entry point, relm4 AppModel (window, trust gate, session child
                          lifecycle, typed messages), primary menu, CSS
  cli.rs                  headless paths (--pair/--wake/--library), the --connect/--browse
                          exec handoff to punktfunk-session, screenshot scenes
  ui_hosts.rs             hosts page component (FactoryVecDeque cards, saved + discovered
                          grids, add-host dialog, banner)
  ui_library.rs           game-library poster grid (per-host, launches titles)
  ui_trust.rs             TOFU / PIN-pairing / request-access dialogs
  ui_settings.rs          resolution · refresh · decoder · bitrate · compositor · mic
  spawn.rs                the session-child plumbing (stdout contract → AppMsg)
tools/screenshots.sh      store screenshot capture (app self-capture; Xvfb fallback)

The UI-agnostic plumbing — session pump, the native decode ladder (Vulkan Video · VAAPI · OpenH264/rav1d), PipeWire audio, SDL3 gamepads + keymap, trust store, mDNS discovery, library client, Wake-on-LAN — lives in crates/pf-client-core, shared with the Vulkan session binary.