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@@ -1,12 +1,20 @@
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use super::{Open, Sink};
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use alsa::device_name::HintIter;
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-use alsa::pcm::{Access, Format, HwParams, PCM};
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+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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-pub struct AlsaSink(Option<PCM>, String);
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+const PREFERED_PERIOD_SIZE: Frames = 5512; // Period of roughly 125ms
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+const BUFFERED_PERIODS: Frames = 4;
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+
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+pub struct AlsaSink {
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+ pcm: Option<PCM>,
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+ device: String,
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+ buffer: Vec<i16>,
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+}
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fn list_outputs() {
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for t in &["pcm", "ctl", "hwdep"] {
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@@ -25,8 +33,9 @@ fn list_outputs() {
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}
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}
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-fn open_device(dev_name: &str) -> Result<(PCM), Box<Error>> {
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+fn open_device(dev_name: &str) -> Result<(PCM, Frames), Box<Error>> {
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let pcm = PCM::new(dev_name, Direction::Playback, false)?;
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+ let mut period_size = PREFERED_PERIOD_SIZE;
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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 16 Bit stereo data, one frame has a length of four bytes.
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@@ -41,7 +50,8 @@ fn open_device(dev_name: &str) -> Result<(PCM), Box<Error>> {
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hwp.set_format(Format::s16())?;
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hwp.set_rate(44100, ValueOr::Nearest)?;
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hwp.set_channels(2)?;
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- hwp.set_buffer_size_near(22050)?; // ~ 0.5s latency
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+ period_size = hwp.set_period_size_near(period_size, ValueOr::Greater)?;
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+ hwp.set_buffer_size_near(period_size * BUFFERED_PERIODS)?;
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pcm.hw_params(&hwp)?;
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let swp = pcm.sw_params_current()?;
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@@ -49,7 +59,7 @@ fn open_device(dev_name: &str) -> Result<(PCM), Box<Error>> {
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pcm.sw_params(&swp)?;
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}
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- Ok(pcm)
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+ Ok((pcm, period_size))
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}
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impl Open for AlsaSink {
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@@ -67,16 +77,24 @@ impl Open for AlsaSink {
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}
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.to_string();
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- AlsaSink(None, name)
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+ AlsaSink {
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+ pcm: None,
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+ device: name,
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+ buffer: vec![],
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+ }
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}
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}
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impl Sink for AlsaSink {
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fn start(&mut self) -> io::Result<()> {
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- if self.0.is_none() {
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- let pcm = open_device(&self.1);
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+ if self.pcm.is_none() {
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+ let pcm = open_device(&self.device);
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match pcm {
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- Ok(p) => self.0 = Some(p),
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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 * 2) as usize);
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+ }
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Err(e) => {
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error!("Alsa error PCM open {}", e);
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return Err(io::Error::new(
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@@ -92,20 +110,39 @@ impl Sink for AlsaSink {
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fn stop(&mut self) -> io::Result<()> {
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{
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- let pcm = self.0.as_ref().unwrap();
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+ let pcm = self.pcm.as_mut().unwrap();
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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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+ let io = pcm.io_i16().unwrap();
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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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pcm.drain().unwrap();
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}
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- self.0 = None;
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+ self.pcm = None;
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Ok(())
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}
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fn write(&mut self, data: &[i16]) -> io::Result<()> {
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- let pcm = self.0.as_mut().unwrap();
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- let io = pcm.io_i16().unwrap();
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-
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- match io.writei(&data) {
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- Ok(_) => (),
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- Err(err) => pcm.try_recover(err, false).unwrap(),
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+ let mut processed_data = 0;
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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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+ data.len() - processed_data,
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+ );
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+ self.buffer
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+ .extend_from_slice(&data[processed_data..processed_data + data_to_buffer]);
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+ processed_data += data_to_buffer;
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+ if self.buffer.len() == self.buffer.capacity() {
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+ let pcm = self.pcm.as_mut().unwrap();
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+ let io = pcm.io_i16().unwrap();
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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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+ self.buffer.clear();
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+ }
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}
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Ok(())
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