mirror of
https://github.com/librespot-org/librespot.git
synced 2024-12-18 17:11:53 +00:00
Add support for S24 and S24_3 output formats
This commit is contained in:
parent
9dcaeee6d4
commit
770ea15498
14 changed files with 155 additions and 80 deletions
1
Cargo.lock
generated
1
Cargo.lock
generated
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@ -1473,6 +1473,7 @@ dependencies = [
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"ogg",
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"tempfile",
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"vorbis",
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"zerocopy",
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]
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[[package]]
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@ -22,6 +22,7 @@ log = "0.4"
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num-bigint = "0.3"
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num-traits = "0.2"
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tempfile = "3.1"
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zerocopy = "0.3"
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librespot-tremor = { version = "0.2.0", optional = true }
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vorbis = { version ="0.0.14", optional = true }
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@ -31,23 +31,35 @@ pub use fetch::{
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READ_AHEAD_DURING_PLAYBACK_ROUNDTRIPS, READ_AHEAD_DURING_PLAYBACK_SECONDS,
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};
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use std::fmt;
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use zerocopy::AsBytes;
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pub enum AudioPacket {
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Samples(Vec<f32>),
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OggData(Vec<u8>),
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}
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#[derive(AsBytes, Copy, Clone, Debug)]
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#[allow(non_camel_case_types)]
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#[repr(transparent)]
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pub struct i24([u8; 3]);
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impl i24 {
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fn pcm_from_i32(sample: i32) -> Self {
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// drop the least significant byte
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let [a, b, c, _d] = (sample >> 8).to_le_bytes();
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i24([a, b, c])
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}
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}
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// Losslessly represent [-1.0, 1.0] to [$type::MIN, $type::MAX] while maintaining DC linearity.
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macro_rules! convert_samples_to {
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($type: ident, $samples: expr) => {
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convert_samples_to!($type, $samples, 0)
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};
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($type: ident, $samples: expr, $shift: expr) => {
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$samples
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.iter()
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.map(|sample| {
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if *sample == 0.0 {
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0 as $type
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} else {
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(*sample as f64 * (std::$type::MAX as f64 + 0.5) - 0.5) as $type
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}
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(*sample as f64 * (std::$type::MAX as f64 + 0.5) - 0.5) as $type >> $shift
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})
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.collect()
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};
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@ -79,6 +91,17 @@ impl AudioPacket {
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convert_samples_to!(i32, samples)
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}
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pub fn f32_to_s24(samples: &[f32]) -> Vec<i32> {
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convert_samples_to!(i32, samples, 8)
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}
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pub fn f32_to_s24_3(samples: &[f32]) -> Vec<i24> {
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Self::f32_to_s32(samples)
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.iter()
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.map(|sample| i24::pcm_from_i32(*sample))
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.collect()
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}
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pub fn f32_to_s16(samples: &[f32]) -> Vec<i16> {
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convert_samples_to!(i16, samples)
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}
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@ -1,4 +1,4 @@
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use super::{Open, Sink};
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use super::{Open, Sink, SinkAsBytes};
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use crate::audio::AudioPacket;
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use crate::config::AudioFormat;
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use crate::player::{NUM_CHANNELS, SAMPLES_PER_SECOND, SAMPLE_RATE};
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@ -7,8 +7,8 @@ use alsa::pcm::{Access, Format, Frames, HwParams, PCM};
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use alsa::{Direction, Error, ValueOr};
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use std::cmp::min;
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use std::ffi::CString;
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use std::io;
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use std::process::exit;
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use std::{io, mem};
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const BUFFERED_LATENCY: f32 = 0.125; // seconds
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const BUFFERED_PERIODS: Frames = 4;
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@ -17,7 +17,7 @@ pub struct AlsaSink {
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pcm: Option<PCM>,
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format: AudioFormat,
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device: String,
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buffer: Vec<f32>,
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buffer: Vec<u8>,
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}
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fn list_outputs() {
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@ -39,16 +39,18 @@ fn list_outputs() {
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fn open_device(dev_name: &str, format: AudioFormat) -> Result<(PCM, Frames), Box<Error>> {
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let pcm = PCM::new(dev_name, Direction::Playback, false)?;
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let (alsa_format, sample_size) = match format {
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AudioFormat::F32 => (Format::float(), mem::size_of::<f32>()),
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AudioFormat::S32 => (Format::s32(), mem::size_of::<i32>()),
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AudioFormat::S16 => (Format::s16(), mem::size_of::<i16>()),
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let alsa_format = match format {
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AudioFormat::F32 => Format::float(),
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AudioFormat::S32 => Format::s32(),
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AudioFormat::S24 => Format::s24(),
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AudioFormat::S24_3 => Format::S243LE,
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AudioFormat::S16 => Format::s16(),
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};
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// http://www.linuxjournal.com/article/6735?page=0,1#N0x19ab2890.0x19ba78d8
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// latency = period_size * periods / (rate * bytes_per_frame)
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// For stereo samples encoded as 32-bit float, one frame has a length of eight bytes.
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let mut period_size = ((SAMPLES_PER_SECOND * sample_size as u32) as f32
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let mut period_size = ((SAMPLES_PER_SECOND * format.size() as u32) as f32
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* (BUFFERED_LATENCY / BUFFERED_PERIODS as f32)) as Frames;
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// Set hardware parameters: 44100 Hz / stereo / 32-bit float or 16-bit signed integer
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@ -85,7 +87,7 @@ impl Open for AlsaSink {
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}
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.to_string();
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AlsaSink {
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Self {
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pcm: None,
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format: format,
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device: name,
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@ -102,7 +104,9 @@ impl Sink for AlsaSink {
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Ok((p, period_size)) => {
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self.pcm = Some(p);
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// Create a buffer for all samples for a full period
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self.buffer = Vec::with_capacity((period_size * BUFFERED_PERIODS) as usize);
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self.buffer = Vec::with_capacity(
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period_size as usize * BUFFERED_PERIODS as usize * self.format.size(),
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);
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}
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Err(e) => {
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error!("Alsa error PCM open {}", e);
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@ -121,7 +125,7 @@ impl Sink for AlsaSink {
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{
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// Write any leftover data in the period buffer
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// before draining the actual buffer
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self.write_buf().expect("could not flush buffer");
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self.write_bytes(&[]).expect("could not flush buffer");
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let pcm = self.pcm.as_mut().unwrap();
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pcm.drain().unwrap();
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}
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@ -129,9 +133,12 @@ impl Sink for AlsaSink {
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Ok(())
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}
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fn write(&mut self, packet: &AudioPacket) -> io::Result<()> {
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sink_as_bytes!();
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}
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impl SinkAsBytes for AlsaSink {
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fn write_bytes(&mut self, data: &[u8]) -> io::Result<()> {
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let mut processed_data = 0;
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let data = packet.samples();
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while processed_data < data.len() {
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let data_to_buffer = min(
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self.buffer.capacity() - self.buffer.len(),
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@ -153,23 +160,8 @@ impl Sink for AlsaSink {
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impl AlsaSink {
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fn write_buf(&mut self) -> io::Result<()> {
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let pcm = self.pcm.as_mut().unwrap();
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let io_result = match self.format {
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AudioFormat::F32 => {
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let io = pcm.io_f32().unwrap();
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io.writei(&self.buffer)
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}
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AudioFormat::S32 => {
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let io = pcm.io_i32().unwrap();
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let buf_s32: Vec<i32> = AudioPacket::f32_to_s32(&self.buffer);
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io.writei(&buf_s32[..])
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}
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AudioFormat::S16 => {
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let io = pcm.io_i16().unwrap();
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let buf_s16: Vec<i16> = AudioPacket::f32_to_s16(&self.buffer);
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io.writei(&buf_s16[..])
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}
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};
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match io_result {
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let io = pcm.io_bytes();
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match io.writei(&self.buffer) {
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Ok(_) => (),
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Err(err) => pcm.try_recover(err, false).unwrap(),
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};
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@ -18,11 +18,18 @@ pub struct GstreamerSink {
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impl Open for GstreamerSink {
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fn open(device: Option<String>, format: AudioFormat) -> GstreamerSink {
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info!("Using GStreamer sink with format: {:?}", format);
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gst::init().expect("failed to init GStreamer!");
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// GStreamer calls S24 and S24_3 different from the rest of the world
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let gst_format = match format {
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AudioFormat::S24 => "S24_32".to_string(),
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AudioFormat::S24_3 => "S24".to_string(),
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_ => format!("{:?}", format),
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};
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let pipeline_str_preamble = format!(
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r#"appsrc caps="audio/x-raw,format={:?},layout=interleaved,channels={},rate={}" block=true max-bytes=4096 name=appsrc0 "#,
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format, NUM_CHANNELS, SAMPLE_RATE
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"appsrc caps=\"audio/x-raw,format={}LE,layout=interleaved,channels={},rate={}\" block=true max-bytes=4096 name=appsrc0 ",
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gst_format, NUM_CHANNELS, SAMPLE_RATE
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);
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let pipeline_str_rest = r#" ! audioconvert ! autoaudiosink"#;
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let pipeline_str: String = match device {
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@ -47,7 +54,7 @@ impl Open for GstreamerSink {
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let bufferpool = gst::BufferPool::new();
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let appsrc_caps = appsrc.get_caps().expect("couldn't get appsrc caps");
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let mut conf = bufferpool.get_config();
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conf.set_params(Some(&appsrc_caps), 8192, 0, 0);
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conf.set_params(Some(&appsrc_caps), 2048 * format.size() as u32, 0, 0);
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bufferpool
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.set_config(conf)
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.expect("couldn't configure the buffer pool");
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@ -55,7 +62,7 @@ impl Open for GstreamerSink {
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.set_active(true)
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.expect("couldn't activate buffer pool");
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let (tx, rx) = sync_channel::<Vec<u8>>(128);
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let (tx, rx) = sync_channel::<Vec<u8>>(64 * format.size());
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thread::spawn(move || {
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for data in rx {
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let buffer = bufferpool.acquire_buffer(None);
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@ -99,7 +106,7 @@ impl Open for GstreamerSink {
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.set_state(gst::State::Playing)
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.expect("unable to set the pipeline to the `Playing` state");
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GstreamerSink {
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Self {
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tx: tx,
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pipeline: pipeline,
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format: format,
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@ -61,7 +61,7 @@ impl Open for JackSink {
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};
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let active_client = AsyncClient::new(client, (), jack_data).unwrap();
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JackSink {
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Self {
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send: tx,
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active_client: active_client,
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}
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@ -32,6 +32,14 @@ macro_rules! sink_as_bytes {
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let samples_s32 = AudioPacket::f32_to_s32(samples);
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self.write_bytes(samples_s32.as_bytes())
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}
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AudioFormat::S24 => {
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let samples_s24 = AudioPacket::f32_to_s24(samples);
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self.write_bytes(samples_s24.as_bytes())
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}
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AudioFormat::S24_3 => {
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let samples_s24_3 = AudioPacket::f32_to_s24_3(samples);
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self.write_bytes(samples_s24_3.as_bytes())
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}
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AudioFormat::S16 => {
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let samples_s16 = AudioPacket::f32_to_s16(samples);
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self.write_bytes(samples_s16.as_bytes())
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@ -18,7 +18,7 @@ impl Open for StdoutSink {
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_ => Box::new(io::stdout()),
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};
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StdoutSink {
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Self {
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output: output,
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format: format,
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}
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@ -18,6 +18,10 @@ pub enum PortAudioSink<'a> {
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Option<portaudio_rs::stream::Stream<'a, i32, i32>>,
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StreamParameters<i32>,
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),
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S24(
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Option<portaudio_rs::stream::Stream<'a, i32, i32>>,
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StreamParameters<i32>,
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),
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S16(
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Option<portaudio_rs::stream::Stream<'a, i16, i16>>,
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StreamParameters<i16>,
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@ -85,9 +89,13 @@ impl<'a> Open for PortAudioSink<'a> {
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}};
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}
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match format {
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AudioFormat::F32 => open_sink!(PortAudioSink::F32, f32),
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AudioFormat::S32 => open_sink!(PortAudioSink::S32, i32),
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AudioFormat::S16 => open_sink!(PortAudioSink::S16, i16),
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AudioFormat::F32 => open_sink!(Self::F32, f32),
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AudioFormat::S32 => open_sink!(Self::S32, i32),
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AudioFormat::S24 => open_sink!(Self::S24, i32),
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AudioFormat::S24_3 => {
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unimplemented!("PortAudio currently does not support S24_3 output")
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}
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AudioFormat::S16 => open_sink!(Self::S16, i16),
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}
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}
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}
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@ -113,9 +121,10 @@ impl<'a> Sink for PortAudioSink<'a> {
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}};
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}
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match self {
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PortAudioSink::F32(stream, parameters) => start_sink!(stream, parameters),
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PortAudioSink::S32(stream, parameters) => start_sink!(stream, parameters),
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PortAudioSink::S16(stream, parameters) => start_sink!(stream, parameters),
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Self::F32(stream, parameters) => start_sink!(stream, parameters),
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Self::S32(stream, parameters) => start_sink!(stream, parameters),
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Self::S24(stream, parameters) => start_sink!(stream, parameters),
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Self::S16(stream, parameters) => start_sink!(stream, parameters),
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};
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Ok(())
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@ -129,9 +138,10 @@ impl<'a> Sink for PortAudioSink<'a> {
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}};
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}
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match self {
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PortAudioSink::F32(stream, _parameters) => stop_sink!(stream),
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PortAudioSink::S32(stream, _parameters) => stop_sink!(stream),
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PortAudioSink::S16(stream, _parameters) => stop_sink!(stream),
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Self::F32(stream, _parameters) => stop_sink!(stream),
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Self::S32(stream, _parameters) => stop_sink!(stream),
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Self::S24(stream, _parameters) => stop_sink!(stream),
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Self::S16(stream, _parameters) => stop_sink!(stream),
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};
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Ok(())
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@ -144,15 +154,19 @@ impl<'a> Sink for PortAudioSink<'a> {
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};
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}
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let result = match self {
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PortAudioSink::F32(stream, _parameters) => {
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Self::F32(stream, _parameters) => {
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let samples = packet.samples();
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write_sink!(stream, &samples)
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}
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PortAudioSink::S32(stream, _parameters) => {
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Self::S32(stream, _parameters) => {
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let samples_s32: Vec<i32> = AudioPacket::f32_to_s32(packet.samples());
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write_sink!(stream, &samples_s32)
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}
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PortAudioSink::S16(stream, _parameters) => {
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Self::S24(stream, _parameters) => {
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let samples_s24: Vec<i32> = AudioPacket::f32_to_s24(packet.samples());
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write_sink!(stream, &samples_s24)
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}
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Self::S16(stream, _parameters) => {
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let samples_s16: Vec<i16> = AudioPacket::f32_to_s16(packet.samples());
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write_sink!(stream, &samples_s16)
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}
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|
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@ -20,9 +20,12 @@ impl Open for PulseAudioSink {
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fn open(device: Option<String>, format: AudioFormat) -> PulseAudioSink {
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info!("Using PulseAudio sink with format: {:?}", format);
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// PulseAudio calls S24 and S24_3 different from the rest of the world
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let pulse_format = match format {
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AudioFormat::F32 => pulse::sample::Format::F32le,
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AudioFormat::S32 => pulse::sample::Format::S32le,
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AudioFormat::S24 => pulse::sample::Format::S24_32le,
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AudioFormat::S24_3 => pulse::sample::Format::S24le,
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AudioFormat::S16 => pulse::sample::Format::S16le,
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};
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|
@ -33,7 +36,7 @@ impl Open for PulseAudioSink {
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};
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debug_assert!(ss.is_valid());
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PulseAudioSink {
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Self {
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s: None,
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ss: ss,
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device: device,
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|
|
|
@ -7,8 +7,6 @@ use cpal::traits::{DeviceTrait, HostTrait};
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use std::process::exit;
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use std::{io, thread, time};
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const FORMAT_NOT_SUPPORTED: &'static str = "Rodio currently does not support that output format";
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// most code is shared between RodioSink and JackRodioSink
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macro_rules! rodio_sink {
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($name: ident) => {
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|
@ -35,7 +33,7 @@ macro_rules! rodio_sink {
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let source = rodio::buffer::SamplesBuffer::new(2, 44100, samples_s16);
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self.rodio_sink.append(source)
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},
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_ => panic!(FORMAT_NOT_SUPPORTED),
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_ => unimplemented!(),
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};
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// Chunk sizes seem to be about 256 to 3000 ish items long.
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|
@ -60,7 +58,7 @@ macro_rules! rodio_sink {
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}
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},
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AudioFormat::S16 => {},
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_ => panic!(FORMAT_NOT_SUPPORTED),
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_ => unimplemented!("Rodio currently only supports F32 and S16 formats"),
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}
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let rodio_device = match_device(&host, device);
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|
@ -71,7 +69,7 @@ macro_rules! rodio_sink {
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|||
let sink = rodio::Sink::try_new(&stream.1).expect("couldn't create output sink.");
|
||||
debug!("Using Rodio sink");
|
||||
|
||||
$name {
|
||||
Self {
|
||||
rodio_sink: sink,
|
||||
stream: stream.0,
|
||||
format: format,
|
||||
|
|
|
@ -8,6 +8,7 @@ use std::{io, mem, thread, time};
|
|||
pub enum SdlSink {
|
||||
F32(AudioQueue<f32>),
|
||||
S32(AudioQueue<i32>),
|
||||
S24(AudioQueue<i32>),
|
||||
S16(AudioQueue<i16>),
|
||||
}
|
||||
|
||||
|
@ -16,7 +17,7 @@ impl Open for SdlSink {
|
|||
info!("Using SDL sink with format: {:?}", format);
|
||||
|
||||
if device.is_some() {
|
||||
panic!("SDL sink does not support specifying a device name");
|
||||
warn!("SDL sink does not support specifying a device name");
|
||||
}
|
||||
|
||||
let ctx = sdl2::init().expect("could not initialize SDL");
|
||||
|
@ -39,9 +40,11 @@ impl Open for SdlSink {
|
|||
}};
|
||||
}
|
||||
match format {
|
||||
AudioFormat::F32 => open_sink!(SdlSink::F32, f32),
|
||||
AudioFormat::S32 => open_sink!(SdlSink::S32, i32),
|
||||
AudioFormat::S16 => open_sink!(SdlSink::S16, i16),
|
||||
AudioFormat::F32 => open_sink!(Self::F32, f32),
|
||||
AudioFormat::S32 => open_sink!(Self::S32, i32),
|
||||
AudioFormat::S24 => open_sink!(Self::S24, i32),
|
||||
AudioFormat::S24_3 => unimplemented!("SDL currently does not support S24_3 output"),
|
||||
AudioFormat::S16 => open_sink!(Self::S16, i16),
|
||||
}
|
||||
}
|
||||
}
|
||||
|
@ -55,9 +58,10 @@ impl Sink for SdlSink {
|
|||
}};
|
||||
}
|
||||
match self {
|
||||
SdlSink::F32(queue) => start_sink!(queue),
|
||||
SdlSink::S32(queue) => start_sink!(queue),
|
||||
SdlSink::S16(queue) => start_sink!(queue),
|
||||
Self::F32(queue) => start_sink!(queue),
|
||||
Self::S32(queue) => start_sink!(queue),
|
||||
Self::S24(queue) => start_sink!(queue),
|
||||
Self::S16(queue) => start_sink!(queue),
|
||||
};
|
||||
Ok(())
|
||||
}
|
||||
|
@ -70,9 +74,10 @@ impl Sink for SdlSink {
|
|||
}};
|
||||
}
|
||||
match self {
|
||||
SdlSink::F32(queue) => stop_sink!(queue),
|
||||
SdlSink::S32(queue) => stop_sink!(queue),
|
||||
SdlSink::S16(queue) => stop_sink!(queue),
|
||||
Self::F32(queue) => stop_sink!(queue),
|
||||
Self::S32(queue) => stop_sink!(queue),
|
||||
Self::S24(queue) => stop_sink!(queue),
|
||||
Self::S16(queue) => stop_sink!(queue),
|
||||
};
|
||||
Ok(())
|
||||
}
|
||||
|
@ -87,16 +92,21 @@ impl Sink for SdlSink {
|
|||
}};
|
||||
}
|
||||
match self {
|
||||
SdlSink::F32(queue) => {
|
||||
Self::F32(queue) => {
|
||||
drain_sink!(queue, mem::size_of::<f32>());
|
||||
queue.queue(packet.samples())
|
||||
}
|
||||
SdlSink::S32(queue) => {
|
||||
Self::S32(queue) => {
|
||||
drain_sink!(queue, mem::size_of::<i32>());
|
||||
let samples_s32: Vec<i32> = AudioPacket::f32_to_s32(packet.samples());
|
||||
queue.queue(&samples_s32)
|
||||
}
|
||||
SdlSink::S16(queue) => {
|
||||
Self::S24(queue) => {
|
||||
drain_sink!(queue, mem::size_of::<i32>());
|
||||
let samples_s24: Vec<i32> = AudioPacket::f32_to_s24(packet.samples());
|
||||
queue.queue(&samples_s24)
|
||||
}
|
||||
Self::S16(queue) => {
|
||||
drain_sink!(queue, mem::size_of::<i16>());
|
||||
let samples_s16: Vec<i16> = AudioPacket::f32_to_s16(packet.samples());
|
||||
queue.queue(&samples_s16)
|
||||
|
|
|
@ -1,4 +1,6 @@
|
|||
use crate::audio::i24;
|
||||
use std::convert::TryFrom;
|
||||
use std::mem;
|
||||
use std::str::FromStr;
|
||||
|
||||
#[derive(Clone, Copy, Debug, Hash, PartialOrd, Ord, PartialEq, Eq)]
|
||||
|
@ -30,6 +32,8 @@ impl Default for Bitrate {
|
|||
pub enum AudioFormat {
|
||||
F32,
|
||||
S32,
|
||||
S24,
|
||||
S24_3,
|
||||
S16,
|
||||
}
|
||||
|
||||
|
@ -37,17 +41,31 @@ impl TryFrom<&String> for AudioFormat {
|
|||
type Error = ();
|
||||
fn try_from(s: &String) -> Result<Self, Self::Error> {
|
||||
match s.to_uppercase().as_str() {
|
||||
"F32" => Ok(AudioFormat::F32),
|
||||
"S32" => Ok(AudioFormat::S32),
|
||||
"S16" => Ok(AudioFormat::S16),
|
||||
_ => unimplemented!(),
|
||||
"F32" => Ok(Self::F32),
|
||||
"S32" => Ok(Self::S32),
|
||||
"S24" => Ok(Self::S24),
|
||||
"S24_3" => Ok(Self::S24_3),
|
||||
"S16" => Ok(Self::S16),
|
||||
_ => Err(()),
|
||||
}
|
||||
}
|
||||
}
|
||||
|
||||
impl Default for AudioFormat {
|
||||
fn default() -> AudioFormat {
|
||||
AudioFormat::S16
|
||||
Self::S16
|
||||
}
|
||||
}
|
||||
|
||||
impl AudioFormat {
|
||||
// not used by all backends
|
||||
#[allow(dead_code)]
|
||||
pub fn size(&self) -> usize {
|
||||
match self {
|
||||
Self::S24_3 => mem::size_of::<i24>(),
|
||||
Self::S16 => mem::size_of::<i16>(),
|
||||
_ => mem::size_of::<i32>(),
|
||||
}
|
||||
}
|
||||
}
|
||||
|
||||
|
|
|
@ -156,7 +156,7 @@ fn setup(args: &[String]) -> Setup {
|
|||
.optopt(
|
||||
"",
|
||||
"format",
|
||||
"Output format (F32, S32 or S16). Defaults to S16",
|
||||
"Output format (F32, S32, S24, S24_3 or S16). Defaults to S16",
|
||||
"FORMAT",
|
||||
)
|
||||
.optopt("", "mixer", "Mixer to use (alsa or softvol)", "MIXER")
|
||||
|
|
Loading…
Reference in a new issue