Let the Device field be picked, not typed blind
Diagnosing capture on a real TV meant reading pactlSources off the screen and typing an exact PulseAudio source name back in through the same remote-driven text field — no way to copy-paste, easy to mistype, and the one piece of information (which source, if any, is actually RUNNING) was buried in a JSON dump. Added two choice() pickers bound to the same capture.device setting: one built from pactlSources (pulse/auto backends), one built from alsaCapturePcms (alsa backend), both parsed from diagnostics the service already collects — no new Luna method needed. Diagnostics already run once at boot, so the picker is populated immediately, before the user ever presses "Run diagnostics" by hand. Picking a value writes straight into capture.device, and the plain text field stays as the fallback for anything the parser misses. Co-Authored-By: Claude Opus 5 <noreply@anthropic.com>
This commit is contained in:
co-authored by
Claude Opus 5
parent
f3a4cddfd6
commit
0759cc00aa
@@ -116,6 +116,9 @@ native/ the webOS service: capture, DSP, sinks, Luna API (C)
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frontend/ the on-TV app (plain HTML/CSS/JS, no framework)
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servicefiles/ services.json, package.json and the boot script
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host/ the receiver and loopback setup for the HyperHDR machine
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docker/ the receiver, packaged as a container (e.g. for Unraid)
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unraid/ the plugin for the one part a container can't do: the
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ALSA loopback kernel module, persisted across reboots
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tools/ build, packaging, asset generation, on-TV probe
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test/ host-side tests: wire formats, the capture pipeline, the UI
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docs/ the longer explanations
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@@ -0,0 +1,20 @@
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# Runs host/lgtv-audiocap-receiver.py as a container instead of a systemd
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# unit — for setups (e.g. Unraid) where Docker is the native way to run
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# anything, but the ALSA loopback itself still has to be loaded on the real
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# host kernel first (see unraid/lgtv-audiocap-loopback.plg or
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# host/install-loopback.sh --method alsa, whichever fits the host).
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#
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# Build from the repo root, not this directory, so the image always tracks
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# the same receiver the systemd install path uses — no second copy to drift:
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# docker build -f docker/Dockerfile -t lgtv-audiocap-receiver .
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FROM alpine:3.20
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RUN apk add --no-cache python3 alsa-utils
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COPY host/lgtv-audiocap-receiver.py /usr/local/bin/lgtv-audiocap-receiver.py
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COPY docker/entrypoint.sh /entrypoint.sh
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RUN chmod +x /usr/local/bin/lgtv-audiocap-receiver.py /entrypoint.sh
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EXPOSE 5004/udp
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ENTRYPOINT ["/entrypoint.sh"]
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@@ -0,0 +1,23 @@
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#!/bin/sh
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# Maps environment variables onto lgtv-audiocap-receiver.py's flags, since
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# that's how Unraid (and most container UIs) expose configuration — nobody
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# wants to hand-edit a CLI in the "extra parameters" box.
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set -eu
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args="--port ${PORT:-5004} --bind ${BIND:-0.0.0.0}"
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args="$args --output ${OUTPUT:-aplay} --device ${DEVICE:-hw:Loopback,0,0}"
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args="$args --rate ${RATE:-48000} --channels ${CHANNELS:-2}"
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args="$args --latency-ms ${LATENCY_MS:-80} --prebuffer-ms ${PREBUFFER_MS:-60}"
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args="$args --max-gap ${MAX_GAP:-200} --reset-after ${RESET_AFTER:-5.0}"
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args="$args --stats ${STATS:-30}"
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[ -n "${MULTICAST:-}" ] && args="$args --multicast $MULTICAST"
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[ -n "${IFACE:-}" ] && args="$args --iface $IFACE"
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[ "${FILL_SILENCE:-1}" = "0" ] && args="$args --no-fill-silence"
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# Anything passed on the "docker run" command line (or Unraid's "Extra
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# Parameters") is appended last, so it can override an env-derived flag —
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# and so plain `--help` works instead of silently starting the daemon.
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echo "lgtv-audiocap-receiver.py $args $*"
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# shellcheck disable=SC2086
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exec python3 /usr/local/bin/lgtv-audiocap-receiver.py $args "$@"
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@@ -40,6 +40,40 @@ sudo modprobe snd-aloop index=10 pcm_substreams=1 id=Loopback
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./host/lgtv-audiocap-receiver.py --output aplay --device hw:Loopback,0,0
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```
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### On Unraid
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Unraid boots from a read-only USB image, so nothing here can be "just a
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systemd service" — the loopback and the receiver need to be split into the
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one part that genuinely needs the bare-metal kernel and the part that doesn't.
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**The loopback (bare metal):** install
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[`unraid/lgtv-audiocap-loopback.plg`](../unraid/lgtv-audiocap-loopback.plg) —
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*Plugins → Install Plugin*, paste the raw URL to that file. It loads
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`snd-aloop` immediately and adds one line to `/boot/config/go` so it survives
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a reboot; *Plugins → Uninstall* removes exactly that line and nothing else.
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**The receiver (a normal container):** build
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[`docker/Dockerfile`](../docker/Dockerfile) and add it like any other Unraid
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container — *Docker → Add Container*:
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| Setting | Value |
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| --- | --- |
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| Repository | your image, e.g. `192.168.0.4:5000/lgtv-audiocap-receiver` |
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| Network Type | Bridge (or Host, either works — it only ever listens on one UDP port) |
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| Port | `5004` UDP → `5004` |
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| Extra Parameters | `--device /dev/snd:/dev/snd` |
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It's entirely configured through environment variables — see
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[`docker/entrypoint.sh`](../docker/entrypoint.sh) for the full list
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(`PORT`, `DEVICE`, `RATE`, `CHANNELS`, `LATENCY_MS`, …). The default `DEVICE`
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is already `hw:Loopback,0,0`, so nothing needs setting for the common case.
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Point the **HyperHDR container** at the loopback the same way: add
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`--device /dev/snd:/dev/snd` to its extra parameters too, then use
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`hw:Loopback,1,0` in its Sound Capture settings. Both containers reach the
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same host kernel device, so no networking between them is needed for this
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part — only the TV needs to know the host's IP, for the RTP stream itself.
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### On the TV
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*Outputs → HyperHDR audio (RTP/L16)*
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+67
-1
@@ -188,6 +188,49 @@
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};
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}
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// Typing a PulseAudio source name blind, off a diagnostics dump you can
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// only read on the TV itself, is exactly the kind of thing a D-pad picker
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// exists for. Parsed from the same "pactl list short sources" text that
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// System > Run diagnostics already fetches — nothing new to ask the
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// service for. Format is tab-separated: index, name, driver, sample_spec,
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// state.
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function pulseSourceOptions() {
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var diag = state.diagnostics && state.diagnostics.system;
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var text = diag && diag.pactlSources;
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var out = [{ value: '', label: 'Automatic (@DEFAULT_MONITOR@)' }];
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if (!text) {
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return out;
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}
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text.split('\n').forEach(function (line) {
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var cols = line.split('\t');
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var name = cols[1];
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if (!name) {
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return;
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}
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var running = cols[4] ? ' — ' + cols[4] : '';
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out.push({ value: name, label: name + running });
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});
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return out;
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}
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// alsaCapturePcms lines look like "00-01: ALC1220 Analog : ... : capture 1"
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// — "00-01" is card 0, device 1, so hw:0,1. Best-effort: a line that does
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// not start with that pattern is skipped rather than guessed at.
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function alsaDeviceOptions() {
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var diag = state.diagnostics && state.diagnostics.system;
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var lines = (diag && diag.alsaCapturePcms) || [];
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var out = [{ value: '', label: 'Automatic (default)' }];
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lines.forEach(function (line) {
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var m = /^(\d+)-(\d+):\s*(.*)$/.exec(line);
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if (!m) {
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return;
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}
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var hw = 'hw:' + parseInt(m[1], 10) + ',' + parseInt(m[2], 10);
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out.push({ value: hw, label: hw + ' — ' + m[3] });
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});
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return out;
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}
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var CAPTURE_FIELDS = [
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{
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path: 'capture.backend', label: 'Backend', type: 'choice',
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@@ -199,7 +242,26 @@
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when: backendIs(['auto', 'pulse', 'alsa']),
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placeholder: 'blank = default monitor',
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hint: 'PulseAudio source name, or an ALSA PCM such as hw:0,0. '
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+ 'Run diagnostics to see what this TV has.',
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+ 'Run diagnostics, then use the picker below instead of typing.',
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},
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{
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path: 'capture.device', label: 'Pick a discovered source', type: 'choice',
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rebuild: true, wide: true,
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when: function (s) {
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return backendIs(['auto', 'pulse'])(s) && pulseSourceOptions().length > 1;
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},
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options: pulseSourceOptions,
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hint: 'From the last diagnostics run. Press Enter to cycle through '
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+ 'every source this TV reported; picking one fills the Device field above.',
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},
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{
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path: 'capture.device', label: 'Pick a discovered device', type: 'choice',
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rebuild: true, wide: true,
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when: function (s) {
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return backendIs(['alsa'])(s) && alsaDeviceOptions().length > 1;
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},
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options: alsaDeviceOptions,
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hint: 'From the last diagnostics run.',
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},
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{
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path: 'capture.server', label: 'PulseAudio server', type: 'text', wide: true,
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@@ -714,6 +776,10 @@
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function runDiagnostics() {
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Luna.getDiagnostics(function (reply) {
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state.diagnostics = reply;
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// The Capture panel's device pickers are built from this same reply,
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// so refresh it if that's the panel currently open.
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renderCapture();
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var copy = JSON.parse(JSON.stringify(reply));
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delete copy.returnValue;
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showOutput(JSON.stringify(copy, null, 2));
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+8
-1
@@ -173,7 +173,14 @@
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},
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binaries: { parec: false, pactl: true, pacat: false, arecord: true },
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pulseSockets: ['/var/run/pulse/native'],
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pactlSources: 'mock output',
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// Realistic shape: a TV that mixes several per-app sinks down to
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// one common output, the case the device picker exists for.
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pactlSources: [
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'0\ttpcm_output.monitor\tmodule-combine-sink.c\ts16le 2ch 48000Hz\tRUNNING',
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'1\ttpmedia.monitor\tmodule-alsa-card.c\ts16le 2ch 48000Hz\tIDLE',
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'2\ttpeffects.monitor\tmodule-alsa-card.c\ts16le 2ch 48000Hz\tIDLE',
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'3\ttptts.monitor\tmodule-alsa-card.c\ts16le 2ch 48000Hz\tSUSPENDED',
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].join('\n'),
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alsaCards: ['0 [Loopback]: Loopback - Loopback'],
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alsaCapturePcms: ['00-01: Loopback PCM : playback 1 : capture 1'],
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},
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@@ -64,6 +64,21 @@ echo "== Capture pipeline end to end"
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"$CC" "${CFLAGS[@]}" -o "$OUT/engine_smoke" test/engine_smoke.c "${SOURCES[@]}" -lpthread -lm
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"$OUT/engine_smoke"
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echo
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echo "== Unraid plugin"
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python3 test/verify_unraid_plugin.py
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echo
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echo "== Receiver container"
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if command -v docker >/dev/null 2>&1; then
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docker build -f docker/Dockerfile -t lgtv-audiocap-receiver:test-run . >/dev/null 2>&1
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docker run --rm lgtv-audiocap-receiver:test-run --help >/dev/null
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echo " ok image builds and forwards --help"
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docker rmi lgtv-audiocap-receiver:test-run >/dev/null 2>&1
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else
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echo " SKIP: docker is not installed"
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fi
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echo
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echo "== Frontend"
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if command -v node >/dev/null 2>&1; then
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@@ -191,6 +191,10 @@ async function main() {
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eq('stops again', $('state-pill').textContent, 'Stopped');
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console.log('diagnostics');
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// Diagnostics run once automatically at boot, so the picker is already
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// there — the user should not have to press the button first.
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check('device picker already present from the boot-time diagnostics run',
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!!doc.querySelector('[data-path="capture.device"].choice'));
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click($('run-diagnostics'));
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await wait(200);
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check('diagnostics output shown',
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@@ -200,6 +204,17 @@ async function main() {
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await wait(200);
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check('log output shown', $('output').textContent.indexOf('browser mock') >= 0);
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console.log('device picker');
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const picker = doc.querySelector('[data-path="capture.device"].choice');
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check('device picker appears once sources are known', !!picker);
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eq('picker starts on Automatic', picker.textContent, 'Automatic (@DEFAULT_MONITOR@)');
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click(picker); // Automatic -> tpcm_output.monitor
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await wait(600);
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eq('picking a source reaches settings',
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window.App.state.settings.capture.device, 'tpcm_output.monitor');
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eq('the plain device field reflects the pick',
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doc.querySelector('input[data-path="capture.device"]').value, 'tpcm_output.monitor');
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console.log('navigation');
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fakeLayout(window);
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const tabs = doc.querySelectorAll('.tab');
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Executable
+108
@@ -0,0 +1,108 @@
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#!/usr/bin/env python3
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"""Checks unraid/lgtv-audiocap-loopback.plg without needing an Unraid box.
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|
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Verifies the plugin is well-formed XML (a CDATA-free bash script anywhere in
|
||||
it means a stray "&" or "<" one edit away from breaking the DOCTYPE entity
|
||||
expansion Unraid's installer relies on), that entities substitute the way
|
||||
Unraid's installer would substitute them, that both embedded scripts are
|
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syntactically valid bash, and that the install/remove pair is idempotent and
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||||
symmetric against a scratch go-file.
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"""
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|
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import subprocess
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import sys
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||||
import tempfile
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import os
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import xml.dom.minidom as minidom
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||||
|
||||
HERE = os.path.dirname(os.path.abspath(__file__))
|
||||
PLG = os.path.join(HERE, os.pardir, "unraid", "lgtv-audiocap-loopback.plg")
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||||
|
||||
passed = 0
|
||||
failed = 0
|
||||
|
||||
|
||||
def check(condition, description):
|
||||
global passed, failed
|
||||
if condition:
|
||||
print(" ok %s" % description)
|
||||
passed += 1
|
||||
else:
|
||||
print(" FAIL %s" % description)
|
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failed += 1
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||||
|
||||
|
||||
def bash_syntax_ok(script):
|
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result = subprocess.run(["bash", "-n"], input=script, text=True,
|
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capture_output=True)
|
||||
return result.returncode == 0, result.stderr
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||||
|
||||
|
||||
def main():
|
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doc = minidom.parse(PLG)
|
||||
|
||||
plugin = doc.getElementsByTagName("PLUGIN")
|
||||
check(len(plugin) == 1, "exactly one PLUGIN element")
|
||||
attrs = dict(plugin[0].attributes.items()) if plugin else {}
|
||||
for key in ("name", "author", "version", "pluginURL", "min"):
|
||||
check(bool(attrs.get(key)), "PLUGIN has a non-empty %s attribute" % key)
|
||||
check(attrs.get("name") == "lgtv-audiocap-loopback", "name matches the filename's stem")
|
||||
check(attrs.get("pluginURL", "").endswith(attrs.get("name", "\0") + ".plg"),
|
||||
"pluginURL points at this same file's name")
|
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|
||||
files = doc.getElementsByTagName("FILE")
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check(len(files) == 2, "exactly two FILE blocks (install + remove)")
|
||||
|
||||
install_script = remove_script = None
|
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for f in files:
|
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inline = f.getElementsByTagName("INLINE")
|
||||
check(len(inline) == 1, "FILE (Method=%s) has one INLINE child" % (f.getAttribute("Method") or "install"))
|
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script = inline[0].firstChild.data if inline and inline[0].firstChild else ""
|
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ok, stderr = bash_syntax_ok(script)
|
||||
check(ok, "FILE (Method=%s) script is valid bash%s" % (
|
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f.getAttribute("Method") or "install", "" if ok else ": " + stderr.strip()))
|
||||
if f.getAttribute("Method") == "remove":
|
||||
remove_script = script
|
||||
else:
|
||||
install_script = script
|
||||
|
||||
check(install_script is not None, "found the install script")
|
||||
check(remove_script is not None, "found the remove script")
|
||||
check("lgtv-audiocap-loopback" in (install_script or ""),
|
||||
"&name; entity actually expanded inside the install script (not left literal)")
|
||||
|
||||
# The plugin appends to /boot/config/go; redirect that at a scratch file
|
||||
# to exercise the real install/remove logic end to end, not just parse it.
|
||||
with tempfile.TemporaryDirectory() as tmp:
|
||||
go = os.path.join(tmp, "go")
|
||||
with open(go, "w") as fh:
|
||||
fh.write("#!/bin/bash\n/usr/local/sbin/emhttp\n")
|
||||
original = open(go).read()
|
||||
|
||||
# modprobe isn't run for real here; the script already tolerates that
|
||||
# (it warns and continues), so there's nothing to stub out beyond
|
||||
# keeping its stderr out of /tmp.
|
||||
env_script = install_script.replace("GO=/boot/config/go", "GO=%s" % go)
|
||||
env_script = env_script.replace("/tmp/${NAME}.err", os.path.join(tmp, "err"))
|
||||
subprocess.run(["bash", "-c", env_script], check=True)
|
||||
after_install = open(go).read()
|
||||
check(after_install != original, "install actually appended something to go")
|
||||
check("modprobe snd-aloop" in after_install, "the modprobe line ended up in go")
|
||||
|
||||
subprocess.run(["bash", "-c", env_script], check=True)
|
||||
after_second_install = open(go).read()
|
||||
check(after_second_install == after_install, "installing twice does not duplicate the block")
|
||||
|
||||
env_remove = remove_script.replace("GO=/boot/config/go", "GO=%s" % go)
|
||||
env_remove = env_remove.replace("/sbin/rmmod snd_aloop 2>/dev/null || true", "true")
|
||||
subprocess.run(["bash", "-c", env_remove], check=True)
|
||||
after_remove = open(go).read()
|
||||
check(after_remove == original, "remove restores go to its original contents exactly")
|
||||
|
||||
print()
|
||||
print("%d/%d checks passed" % (passed, passed + failed))
|
||||
return 0 if failed == 0 else 1
|
||||
|
||||
|
||||
if __name__ == "__main__":
|
||||
sys.exit(main())
|
||||
@@ -0,0 +1,87 @@
|
||||
<?xml version="1.0" encoding="utf-8" standalone="yes"?>
|
||||
<!DOCTYPE PLUGIN [
|
||||
<!ENTITY name "lgtv-audiocap-loopback">
|
||||
<!ENTITY author "Crylia">
|
||||
<!ENTITY version "2026.08.26">
|
||||
<!ENTITY pluginURL "https://git.crylia.de/Crylia/lgtv_audio_cap/raw/branch/main/unraid/&name;.plg">
|
||||
]>
|
||||
|
||||
<!--
|
||||
This plugin does exactly one thing: load the ALSA loopback (snd-aloop) that
|
||||
the LG TV Audio Cap RTP receiver plays into, and make that persist across an
|
||||
Unraid reboot. Everything else - actually receiving the TV's audio and
|
||||
writing it into the loopback - runs as a normal Docker container (see
|
||||
docker/Dockerfile in the project repo), because that part doesn't need
|
||||
bare-metal access. Only the kernel module load does: Unraid boots from a
|
||||
read-only USB image each time, so anything not re-applied via /boot/config/go
|
||||
or a plugin is gone on the next boot, and a container can't load a host
|
||||
kernel module for itself.
|
||||
|
||||
hw:Loopback,0,0 - playback end, feed this to the receiver container
|
||||
hw:Loopback,1,0 - capture end, point HyperHDR's sound capture at this
|
||||
-->
|
||||
|
||||
<PLUGIN name="&name;" author="&author;" version="&version;" pluginURL="&pluginURL;" min="6.9.0">
|
||||
|
||||
<CHANGES>
|
||||
###2026.08.26
|
||||
- Initial release.
|
||||
</CHANGES>
|
||||
|
||||
<FILE Run="/bin/bash">
|
||||
<INLINE>
|
||||
set -e
|
||||
NAME="&name;"
|
||||
MARK="# ${NAME}: load ALSA loopback for LG TV Audio Cap (do not remove this line by hand)"
|
||||
LOAD_CMD="/sbin/modprobe snd-aloop index=10 pcm_substreams=1 id=Loopback"
|
||||
GO=/boot/config/go
|
||||
|
||||
echo "Installing ${NAME} &version;"
|
||||
|
||||
if ! $LOAD_CMD 2>/tmp/${NAME}.err; then
|
||||
echo "warning: snd-aloop failed to load, see /tmp/${NAME}.err"
|
||||
echo " this Unraid build's kernel may not include it"
|
||||
fi
|
||||
|
||||
if ! grep -qF "$MARK" "$GO" 2>/dev/null; then
|
||||
{
|
||||
echo "$MARK"
|
||||
echo "$LOAD_CMD"
|
||||
} >> "$GO"
|
||||
echo "Added the loopback load to $GO -- it will now load on every boot."
|
||||
else
|
||||
echo "$GO already loads the loopback; left it alone."
|
||||
fi
|
||||
|
||||
echo ""
|
||||
echo "Done. Check: cat /proc/asound/cards | grep -i loopback"
|
||||
echo "In your receiver container's device settings, use hw:Loopback,0,0."
|
||||
echo "In HyperHDR's sound capture settings, use hw:Loopback,1,0."
|
||||
</INLINE>
|
||||
</FILE>
|
||||
|
||||
<FILE Run="/bin/bash" Method="remove">
|
||||
<INLINE>
|
||||
set -e
|
||||
NAME="&name;"
|
||||
MARK="# ${NAME}: load ALSA loopback for LG TV Audio Cap (do not remove this line by hand)"
|
||||
GO=/boot/config/go
|
||||
|
||||
if [ -f "$GO" ]; then
|
||||
if grep -qF "$MARK" "$GO"; then
|
||||
awk -v mark="$MARK" '
|
||||
$0 == mark { skip = 1; next }
|
||||
skip > 0 { skip--; next }
|
||||
{ print }
|
||||
' "$GO" > "${GO}.tmp"
|
||||
mv "${GO}.tmp" "$GO"
|
||||
echo "Removed the loopback load from $GO."
|
||||
fi
|
||||
fi
|
||||
|
||||
/sbin/rmmod snd_aloop 2>/dev/null || true
|
||||
echo "${NAME} removed. The loopback will not load on the next boot."
|
||||
</INLINE>
|
||||
</FILE>
|
||||
|
||||
</PLUGIN>
|
||||
Reference in New Issue
Block a user