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https://github.com/gnif/LookingGlass.git
synced 2024-11-21 21:17:19 +00:00
[client] audio/pw: refactor to use playback
for playback methods
This commit is contained in:
parent
fe7973ea24
commit
11acaa2957
@ -32,13 +32,19 @@ struct PipeWire
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{
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struct pw_loop * loop;
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struct pw_thread_loop * thread;
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struct pw_stream * stream;
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int channels;
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int sampleRate;
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int stride;
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RingBuffer buffer;
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bool active;
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struct
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{
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struct pw_stream * stream;
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int channels;
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int sampleRate;
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int stride;
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RingBuffer buffer;
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bool active;
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}
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playback;
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};
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static struct PipeWire pw = {0};
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@ -47,10 +53,11 @@ static void pipewire_on_process(void * userdata)
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{
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struct pw_buffer * pbuf;
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if (!ringbuffer_getCount(pw.buffer))
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if (!ringbuffer_getCount(pw.playback.buffer))
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return;
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if (!(pbuf = pw_stream_dequeue_buffer(pw.stream))) {
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if (!(pbuf = pw_stream_dequeue_buffer(pw.playback.stream)))
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{
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DEBUG_WARN("out of buffers");
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return;
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}
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@ -61,15 +68,15 @@ static void pipewire_on_process(void * userdata)
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if (!(dst = sbuf->datas[0].data))
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return;
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int frames = sbuf->datas[0].maxsize / pw.stride;
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void * values = ringbuffer_consume(pw.buffer, &frames);
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memcpy(dst, values, frames * pw.stride);
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int frames = sbuf->datas[0].maxsize / pw.playback.stride;
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void * values = ringbuffer_consume(pw.playback.buffer, &frames);
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memcpy(dst, values, frames * pw.playback.stride);
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sbuf->datas[0].chunk->offset = 0;
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sbuf->datas[0].chunk->stride = pw.stride;
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sbuf->datas[0].chunk->size = frames * pw.stride;
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sbuf->datas[0].chunk->stride = pw.playback.stride;
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sbuf->datas[0].chunk->size = frames * pw.playback.stride;
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pw_stream_queue_buffer(pw.stream, pbuf);
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pw_stream_queue_buffer(pw.playback.stream, pbuf);
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}
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static bool pipewire_init(void)
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@ -92,7 +99,7 @@ static bool pipewire_init(void)
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pw_context_destroy(context);
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/* PipeWire is available so create the loop thread and start it */
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pw.thread = pw_thread_loop_new_full(pw.loop, "Playback", NULL);
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pw.thread = pw_thread_loop_new_full(pw.loop, "PipeWire", NULL);
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if (!pw.thread)
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{
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DEBUG_ERROR("Failed to create the thread loop");
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@ -111,21 +118,21 @@ err:
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return false;
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}
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static void pipewire_stop_stream(void)
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static void pipewire_playbackStop_stream(void)
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{
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if (!pw.stream)
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if (!pw.playback.stream)
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return;
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pw_thread_loop_lock(pw.thread);
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pw_stream_flush(pw.stream, true);
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pw_stream_destroy(pw.stream);
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pw.stream = NULL;
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pw_stream_flush(pw.playback.stream, true);
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pw_stream_destroy(pw.playback.stream);
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pw.playback.stream = NULL;
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pw_thread_loop_unlock(pw.thread);
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}
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static void pipewire_free(void)
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{
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pipewire_stop_stream();
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pipewire_playbackStop_stream();
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pw_thread_loop_stop(pw.thread);
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pw_thread_loop_destroy(pw.thread);
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pw_loop_destroy(pw.loop);
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@ -133,11 +140,11 @@ static void pipewire_free(void)
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pw.loop = NULL;
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pw.thread = NULL;
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ringbuffer_free(&pw.buffer);
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ringbuffer_free(&pw.playback.buffer);
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pw_deinit();
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}
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static void pipewire_start(int channels, int sampleRate)
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static void pipewire_playbackPlaybackStart(int channels, int sampleRate)
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{
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const struct spa_pod * params[1];
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uint8_t buffer[1024];
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@ -148,18 +155,20 @@ static void pipewire_start(int channels, int sampleRate)
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.process = pipewire_on_process
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};
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if (pw.stream && pw.channels == channels && pw.sampleRate == sampleRate)
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if (pw.playback.stream &&
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pw.playback.channels == channels &&
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pw.playback.sampleRate == sampleRate)
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return;
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pipewire_stop_stream();
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pipewire_playbackStop_stream();
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pw.channels = channels;
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pw.sampleRate = sampleRate;
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pw.stride = sizeof(uint16_t) * channels;
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pw.buffer = ringbuffer_new(sampleRate / 10, channels * sizeof(uint16_t));
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pw.playback.channels = channels;
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pw.playback.sampleRate = sampleRate;
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pw.playback.stride = sizeof(uint16_t) * channels;
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pw.playback.buffer = ringbuffer_new(sampleRate / 10, channels * sizeof(uint16_t));
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pw_thread_loop_lock(pw.thread);
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pw.stream = pw_stream_new_simple(
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pw.playback.stream = pw_stream_new_simple(
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pw.loop,
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"Looking Glass",
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pw_properties_new(
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@ -173,7 +182,7 @@ static void pipewire_start(int channels, int sampleRate)
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NULL
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);
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if (!pw.stream)
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if (!pw.playback.stream)
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{
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pw_thread_loop_unlock(pw.thread);
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DEBUG_ERROR("Failed to create the stream");
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@ -188,7 +197,7 @@ static void pipewire_start(int channels, int sampleRate)
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));
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pw_stream_connect(
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pw.stream,
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pw.playback.stream,
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PW_DIRECTION_OUTPUT,
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PW_ID_ANY,
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PW_STREAM_FLAG_AUTOCONNECT |
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@ -200,47 +209,47 @@ static void pipewire_start(int channels, int sampleRate)
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pw_thread_loop_unlock(pw.thread);
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}
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static void pipewire_play(uint8_t * data, size_t size)
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static void pipewire_playbackPlay(uint8_t * data, size_t size)
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{
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if (!pw.stream)
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if (!pw.playback.stream)
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return;
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// if the buffer fill is higher then the average skip the update to reduce lag
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static unsigned int ttlSize = 0;
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static unsigned int count = 0;
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ttlSize += size;
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if (++count > 100 && ringbuffer_getCount(pw.buffer) > ttlSize / count)
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if (++count > 100 && ringbuffer_getCount(pw.playback.buffer) > ttlSize / count)
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{
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count = 0;
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ttlSize = 0;
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return;
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}
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ringbuffer_append(pw.buffer, data, size / pw.stride);
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ringbuffer_append(pw.playback.buffer, data, size / pw.playback.stride);
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if (!pw.active)
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if (!pw.playback.active)
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{
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pw_thread_loop_lock(pw.thread);
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pw_stream_set_active(pw.stream, true);
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pw.active = true;
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pw_stream_set_active(pw.playback.stream, true);
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pw.playback.active = true;
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pw_thread_loop_unlock(pw.thread);
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}
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}
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static void pipewire_stop(void)
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static void pipewire_playbackStop(void)
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{
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if (!pw.active)
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if (!pw.playback.active)
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return;
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pw_thread_loop_lock(pw.thread);
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pw_stream_set_active(pw.stream, false);
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pw.active = false;
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pw_stream_set_active(pw.playback.stream, false);
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pw.playback.active = false;
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pw_thread_loop_unlock(pw.thread);
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}
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static void pipewire_volume(int channels, const uint16_t volume[])
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static void pipewire_playbackVolume(int channels, const uint16_t volume[])
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{
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if (channels != pw.channels)
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if (channels != pw.playback.channels)
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return;
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float param[channels];
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@ -248,14 +257,15 @@ static void pipewire_volume(int channels, const uint16_t volume[])
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param[i] = 9.3234e-7 * pow(1.000211902, volume[i]) - 0.000172787;
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pw_thread_loop_lock(pw.thread);
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pw_stream_set_control(pw.stream, SPA_PROP_channelVolumes, channels, param, 0);
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pw_stream_set_control(pw.playback.stream, SPA_PROP_channelVolumes,
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channels, param, 0);
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pw_thread_loop_unlock(pw.thread);
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}
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static void pipewire_mute(bool mute)
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static void pipewire_playbackMute(bool mute)
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{
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pw_thread_loop_lock(pw.thread);
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pw_stream_set_control(pw.stream, SPA_PROP_mute, 1, (void *)&mute, 0);
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pw_stream_set_control(pw.playback.stream, SPA_PROP_mute, 1, (void *)&mute, 0);
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pw_thread_loop_unlock(pw.thread);
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}
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@ -266,10 +276,10 @@ struct LG_AudioDevOps LGAD_PipeWire =
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.free = pipewire_free,
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.playback =
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{
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.start = pipewire_start,
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.play = pipewire_play,
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.stop = pipewire_stop,
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.volume = pipewire_volume,
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.mute = pipewire_mute
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.start = pipewire_playbackPlaybackStart,
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.play = pipewire_playbackPlay,
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.stop = pipewire_playbackStop,
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.volume = pipewire_playbackVolume,
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.mute = pipewire_playbackMute
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}
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};
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